diff --git a/docs/index.md b/docs/index.md index 7eca2572ae2..dd84774305d 100644 --- a/docs/index.md +++ b/docs/index.md @@ -15,6 +15,7 @@ Welcome to [the F# compiler and tools repository](https://github.com/dotnet/fsha * [Memory usage](memory-usage.md) * [Optimizations](optimizations.md) * [Equality optimizations](optimizations-equality.md) +* [Runtime async](runtime-async.md) * [Project builds](project-builds.md) * [Tooling features](tooling-features.md) diff --git a/docs/release-notes/.FSharp.Compiler.Service/11.0.100.md b/docs/release-notes/.FSharp.Compiler.Service/11.0.100.md index 405a1c4b0d3..e0ac30372fe 100644 --- a/docs/release-notes/.FSharp.Compiler.Service/11.0.100.md +++ b/docs/release-notes/.FSharp.Compiler.Service/11.0.100.md @@ -171,6 +171,7 @@ * Added warning FS3884 when a function or delegate value is used as an interpolated string argument. ([PR #19289](https://github.com/dotnet/fsharp/pull/19289)) * Symbols: add ObsoleteDiagnosticInfo ([PR #19359](https://github.com/dotnet/fsharp/pull/19359)) * FCS: add FSharpCheckFileResults.HasErrors ([PR #19892](https://github.com/dotnet/fsharp/pull/19892)) +* Add preview compiler support for runtime-async `Task<'T>` methods through the `__runtimeAsyncReturn` intrinsic, including carrier validation, target-runtime capability checks, diagnostics for suspension calls outside runtime-async methods, diagnostics for byref, byref-like, or pinned values used after suspension, and recursive specialization of inline suspension fragments when optimization is disabled. ([PR #20235](https://github.com/dotnet/fsharp/pull/20235)) * Add `#version;;` directive to F# Interactive to display version and environment information. ([Issue #13307](https://github.com/dotnet/fsharp/issues/13307), [PR #19332](https://github.com/dotnet/fsharp/pull/19332)) * Add diagnostic FS3889 when a namespace and a type have the same fully-qualified name in the same assembly, replacing the misleading FS0247 "namespace and a module" error. ([Issue #17827](https://github.com/dotnet/fsharp/issues/17827), [PR #19802](https://github.com/dotnet/fsharp/pull/19802)) * Debug: rework for expressions stepping ([PR #19894](https://github.com/dotnet/fsharp/pull/19894)) @@ -191,6 +192,7 @@ * Add internal hot reload baseline reading for recorded EnC state and synthesized-name snapshot PDB data. ([PR #20026](https://github.com/dotnet/fsharp/pull/20026)) * Support for the `` XML documentation tag: at compile time, documentation is copied from an external XML file selected by an XPath query and emitted into the generated documentation file. `` remains unsupported. ([Issue #19175](https://github.com/dotnet/fsharp/issues/19175), [PR #19186](https://github.com/dotnet/fsharp/pull/19186)) * Expand `` at tooling time. In IDE tooltips, completion, and signature help, documentation is inherited from base classes, interfaces, overridden members, and constructors (matched by parameter signature). The FCS Symbols API (`FSharpSymbol.XmlDoc`) additionally resolves explicit `cref` targets, but does not expand constructor inheritance. The compiler emits the tag verbatim into generated XML documentation files, matching C#; `` is not implemented. ([Issue #19175](https://github.com/dotnet/fsharp/issues/19175), [PR #19188](https://github.com/dotnet/fsharp/pull/19188)) +* Prototype direct runtime-async sequences from statically known inline recipes, with asynchronous cleanup, direct interface dispatch, and preserved runtime call-await fusion. * Add symbol and type highlighting to F# diagnostics ([PR #20097](https://github.com/dotnet/fsharp/pull/20097)) * IL: hold custom attributes in fields rather than a union case ([PR #20287](https://github.com/dotnet/fsharp/pull/20287)) * IL: reuse the cached ILTypeRef in ILTypeInfo.FromType ([PR #20255](https://github.com/dotnet/fsharp/pull/20255)) diff --git a/docs/release-notes/.FSharp.Core/11.0.100.md b/docs/release-notes/.FSharp.Core/11.0.100.md index e6e003763db..5ed2d8ac4d7 100644 --- a/docs/release-notes/.FSharp.Core/11.0.100.md +++ b/docs/release-notes/.FSharp.Core/11.0.100.md @@ -12,6 +12,7 @@ ### Added +* Add the compiler-recognized `StateMachineHelpers.__runtimeAsyncReturn` intrinsic to the `net10.0` FSharp.Core target for .NET runtime-async methods. ([PR #20235](https://github.com/dotnet/fsharp/pull/20235)) * Add `Unchecked.withNull`, an interop escape hatch that re-types any `'T` to `'T | null` without the usual `not null`/`not struct` constraints, so unconstrained C# nullable-generic APIs (e.g. `T? M()`) can be implemented and consumed from F#. ([Issue #17734](https://github.com/dotnet/fsharp/issues/17734), [PR #20232](https://github.com/dotnet/fsharp/pull/20232)) * Added generic `print` and `printn` functions (`'T -> unit`) to `ExtraTopLevelOperators` for simple value printing to stdout. ([RFC FS-1125](https://github.com/fsharp/fslang-design/blob/main/RFCs/FS-1125-print-printn-functions.md), [PR #19265](https://github.com/dotnet/fsharp/pull/19265)) * Ship `FSharp.Core` with an additional `net10.0` target framework (next to `netstandard2.0` and `netstandard2.1`). The `net`-TFM assembly is public-surface-identical to the `netstandard2.1` one; the target version is a pinned, deliberately advanced knob. ([PR #20229](https://github.com/dotnet/fsharp/pull/20229)) @@ -27,6 +28,7 @@ * Add conversion functions `Task.ofValueTask` and `ValueTask.ofTask`. ([LanguageSuggestion #1466](https://github.com/fsharp/fslang-suggestions/issues/1466), [PR #19844](https://github.com/dotnet/fsharp/pull/19844)) * Add `parallelLimit` to `Task` and `Async` modules, for bounded-parallelism execution of async/task computations, flowing cancellation and returning the results as an array. ([LanguageSuggestion #1467](https://github.com/fsharp/fslang-suggestions/issues/1467), [PR #20294](https://github.com/dotnet/fsharp/pull/20294)) * Add `parallelDoLimit` to `Task` and `Async` modules, for bounded-parallelism execution of async/task computations, flowing cancellation. ([LanguageSuggestion #1467](https://github.com/fsharp/fslang-suggestions/issues/1467), [PR #20294](https://github.com/dotnet/fsharp/pull/20294)) +* Prototype a compiler-services entry and reference host for direct runtime-async sequences on the `net10.0` target, reusing the first enumerator instance. * Add `sequentialDo` to `Task` and `Async`, running computations one at a time, flowing cancellation, without yielding an egregious `unit[]`. ([LanguageSuggestion #1467](https://github.com/fsharp/fslang-suggestions/issues/1467), [PR #20294](https://github.com/dotnet/fsharp/pull/20294)) * Add `Task.sequential`, running task computations one at a time, flowing cancellation and returning the results as an array. ([LanguageSuggestion #1467](https://github.com/fsharp/fslang-suggestions/issues/1467), [PR #20294](https://github.com/dotnet/fsharp/pull/20294)) * Add `Task.startAsyncImmediate`, starting an `Async<'T>` on the current thread and returning a `Task<'T>`, flowing cancellation. ([LanguageSuggestion #1467](https://github.com/fsharp/fslang-suggestions/issues/1467), [PR #20294](https://github.com/dotnet/fsharp/pull/20294)) diff --git a/docs/release-notes/.Language/preview.md b/docs/release-notes/.Language/preview.md index 2c6bc2d944c..0efd4d69b57 100644 --- a/docs/release-notes/.Language/preview.md +++ b/docs/release-notes/.Language/preview.md @@ -1,5 +1,6 @@ ### Added +* Runtime async: `task`/`async`-style computation expressions can be compiled to use the .NET runtime async support (RuntimeAsync preview feature). ([PR #20235](https://github.com/dotnet/fsharp/pull/20235)) * **Extension members for operators and SRTP constraints** ([RFC FS-1043](https://github.com/fsharp/fslang-design/blob/main/RFCs/FS-1043-extension-members-for-operators-and-srtp-constraints.md), [fslang-suggestions#230](https://github.com/fsharp/fslang-suggestions/issues/230), [PR #19602](https://github.com/dotnet/fsharp/pull/19602)): Extension methods now participate in SRTP constraint resolution. This allows defining operators on types you don't own via type extensions: ```fsharp diff --git a/docs/runtime-async.md b/docs/runtime-async.md new file mode 100644 index 00000000000..aa9f5118663 --- /dev/null +++ b/docs/runtime-async.md @@ -0,0 +1,358 @@ +--- +title: Runtime async +category: Compiler Internals +categoryindex: 200 +index: 375 +--- + +# Runtime async + +This document describes the current proof-of-concept implementation of F# +support for the .NET runtime-async feature. It describes the code as +implemented, not an aspirational design. The .NET design is still evolving: + +* [Runtime-async specification](https://github.com/dotnet/runtime/blob/main/docs/design/specs/runtime-async.md) +* [Runtime-async code-generation contract](https://github.com/dotnet/runtime/blob/main/docs/design/coreclr/botr/runtime-async-codegen.md) +* [Roslyn runtime async design](https://github.com/dotnet/roslyn/blob/main/docs/compilers/CSharp/Runtime%20Async%20Design.md) — + how C# lowers `await` (including the exception-handling hoisting described below) + +The implementation targets functions, lambdas, and members returning +`System.Threading.Tasks.Task<'T>`, `Task`, `ValueTask<'T>`, or `ValueTask`. +Inline computation-expression builders can use the feature, but no such +builder is currently part of FSharp.Core. + +## Runtime contract + +Runtime-async methods are CIL methods marked with +`MethodImplOptions.Async` (`0x2000`). The runtime, rather than a compiler +generated state machine and method builder, owns suspension and resumption. + +The compiler provides a return intrinsic for each of these carrier shapes: +generic and non-generic `Task`, and generic and non-generic `ValueTask`. + +Suspension is explicit, via `System.Runtime.CompilerServices.AsyncHelpers`: + +* `Await` for `Task`, `ValueTask`, and configured awaitables +* `AwaitAwaiter` and `UnsafeAwaitAwaiter` for awaiters (used by SRTP + awaitable bindings) + +The compiler emits the adjacent IL sequence the runtime specification expects: + +```il +call Task SomeAsyncMethod(...) +call int32 AsyncHelpers::Await(Task) +``` + +Known runtime restrictions (currently **not** diagnosed by the F# compiler): + +* `tail.` and `localloc` are forbidden. +* generated suspension points cannot occur inside exception-handling regions. + Awaiting in a protected `try` body now works on the current runtime. Direct + intrinsic bodies rewrite suspending `try/with` handlers and filters, and + `try/finally` compensations, so the suspension runs outside the EH region. + + C# avoids this by rewriting EH-region awaits at lowering time (see the + Roslyn design doc): `try B finally { await x }` becomes + `try B catch-all { pend e }`, then `await x` outside the region, then + rethrow the pending exception. The compiler applies the same transformation + to a suspending compensation: it captures the body result or exception, + runs `DisposeAsync` (possibly suspending) *outside* the `try`, then restores + the pending exception. This makes `use` on an `IAsyncDisposable` work under + runtime async. +Byref, byref-like, and pinned locals that are used after a suspension are +rejected with diagnostic FS3917. + +Calls to `AsyncHelpers` suspension methods emitted outside a runtime-async +method are rejected during code generation. Explicitly `inline` method bodies +are treated as templates and checked at their eventual use site. + +## F# surface + +The source-level markers are compiler intrinsics on +`Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers`, available from +the `net10.0` FSharp.Core target and declared in `resumable.fsi` alongside the +other compiler intrinsics: + +```fsharp +val __runtimeAsyncReturn<'T> : 'T -> System.Threading.Tasks.Task<'T> +val __runtimeAsyncReturnValueTask<'T> : 'T -> System.Threading.Tasks.ValueTask<'T> +val __runtimeAsyncReturnUnit : unit -> System.Threading.Tasks.Task +val __runtimeAsyncReturnValueTaskUnit : unit -> System.Threading.Tasks.ValueTask +``` + +Their FSharp.Core implementations throw; the compiler consumes every +occurrence before code generation, so those bodies are never executed. They +are marked `NoInlining` so a missed consumption does not silently fold into a +caller. + +The feature is gated on `langversion:preview` +(`LanguageFeature.RuntimeAsync`) and on the target reference assemblies +exposing `MethodImplOptions.Async` (see "Runtime capability check" below). +Without the language version the checker reports error 3350; without runtime +support it reports 3351. + +Typical forms: + +```fsharp +let add (x: int) (y: int) : Task = + __runtimeAsyncReturn ( + let first = AsyncHelpers.Await (getTask x) + first + y) + +type C() = + member _.Add(x: int, y: int) : Task = + __runtimeAsyncReturn ( + AsyncHelpers.Await (getTask x) + y) + +// Let-bound value (not a function): also supported. +let answer : Task = __runtimeAsyncReturn 42 +``` + +There is no implicit awaiting: the argument of a generic return marker is +checked as the logical `'T` result, and flattening requires an explicit +`AsyncHelpers.Await`. + +## Type checking + +The return intrinsics are ordinary values in the typed tree; no new expression +node or `Val` flag is added. Type checking special-cases their applications in +two places in `CheckExpressions.fs`: + +* `Propagate` skips function-type propagation for the intrinsic so the + argument is not checked against a function domain. +* `TcApplicationThen` (`tryTcRuntimeAsyncApplication`) recognises the + intrinsic (possibly type-applied), gates the language feature and runtime + capability, extracts the result carrier and argument type from the + intrinsic's instantiated signature, and checks the argument with + `TcExprFlex2`. The result carrier then unifies with the declared return + type of the enclosing binding in the usual way. + +User code that defines its own same-named marker is unaffected: the intrinsic is +only recognised when the `ValRef` resolves (via `valRefEq`) to the FSharp.Core +declaration. + +## Optimization + +`Optimizer.fs` preserves the marker application as-is, optimizing its +argument and rewriting any suspending exception handlers in that argument. +The marked expression is forced to `HasEffect = true` and `UnknownValue`, so +the optimizer never inlines, duplicates, or discards it. The marker therefore +survives optimization as an ordinary `Expr.App` node; nothing else in the +typed tree records that a method is runtime-async. + +Inline values whose bodies contain a return marker or an `AsyncHelpers` +suspension are recursively specialized at their call sites, including when +optimization is disabled. The analysis follows inline and local values with a +cycle guard, and `InlineIfLambda` arguments are forced through when the caller +is already in a runtime-async context. The optimizer follows nested inline +calls and does not create a generated helper method for the specialized +suspension fragment, keeping every suspension in the eventual runtime-async +method. + +After specialization, lambda arguments are substituted and their applications +are beta-reduced before and after runtime-async reoptimization. This includes +debug-point-wrapped lambdas, compiler-generated `let` wrappers, curried +applications, and multi-argument lambdas. +That step is required for computation-expression shapes where `Bind` returns a +closure containing `Await`, and later `Combine`/`Delay` calls apply that closure. + +When runtime-async specialization is forced in a debug build, the builder +combinator is copied with its definition-site debug ranges remarked before +arguments are substituted. User continuation arguments keep their own ranges, +so `let!`, `do!`, `yield`, and other +computation-expression statements remain associated with the source that +authored them without exposing the implementation ranges of `Run`, `Bind`, +`Combine`, or `Yield`. + +Dead branches eliminated by optimization do not reach code generation and do +not produce a suspension-outside-runtime-async diagnostic. + +Runtime-async boundary recognition is centralized in +`TypedTree/RuntimeAsync.fs`. `IsRuntimeAsyncBoundary` (with the more specific +`TryGetRuntimeAsyncReturn` and `IsRuntimeAsyncSuspensionExpr`) lets consumers +use the shared recognizers rather than matching typed-tree shapes +independently. + +The optimizer uses a context-local `RuntimeAsyncAnalyzer`. It memoizes +completed expression results by reference identity and inline-value results by +value stamp, with a visiting set for recursive inline-value graphs. The cache +is not global: optimizer environments can provide different inline bodies, and +optimization creates new expression trees. Context-dependent decisions such as +`runtimeAsyncContext` remain outside the cached facts. + +## Code generation + +`IlxGen.fs` recognises the return-marker family in three placements through the +shared runtime-async boundary contract, which strips `DebugPoint` wrappers: + +1. **Method body** (`GenMethodForBinding`): the marker is unwrapped from the + top of the method lambda body; the generated `ILMethodDef` gets + `.WithAsync(true)`, which sets impl attribute bit `0x2000` + (`MethodImplOptions.Async`, written as a literal because older reference + assemblies do not define the enum member). +2. **Closure body** (`GenClosureAsLocalTypeFunction` and + `GenClosureAsFirstClassFunction`): the same unwrapping marks the closure + `Invoke` method's IL body (`ILMethodBody.IsRuntimeAsync`). + `EraseClosures.convIlxClosureDef` copies that flag onto the emitted + method. +3. **Any other expression position** (`GenRuntimeAsyncReturnAsStartedTask`), e.g. + a `let`-bound value initializer: the marker application is wrapped in a + fresh `fun () -> ...` lambda that is immediately applied to `unit` and + regenerated. The lambda flows through the closure path (2), producing a + generated runtime-async helper method whose call starts the task. This + relies on `GenApp` never beta-reducing a lambda application (it always + emits a closure plus an indirect call); see the comment at + `GenRuntimeAsyncReturnAsStartedTask`. + +A marker that ends up wrapped in anything other than `DebugPoint` at the top +of a method or closure body is not detected there, but still reaches the +catch-all case (3), so compilation stays correct — the cost is an extra +nested runtime-async helper method rather than marking the enclosing method +directly. + +## Debug stepping and call stacks + +The compiler emits ordinary Portable PDB sequence points for runtime-async +methods. It does not emit `StateMachineMethod` or async state-machine stepping +records because runtime-async methods have no compiler-generated `MoveNext` +method. Forced inlining therefore preserves user computation-expression +sequence points in the generated runtime-async method while remapping the +inlined builder implementation ranges. + +Suspension, continuation mapping, and reconstruction of logical async call +stacks are owned by the runtime and debugger through the `Async` method +implementation flag and the runtime-async debug information contract. Missing +logical frames after a continuation cannot be repaired by inventing F# state +machine metadata; such cases must be validated against the target runtime and +tracked with the runtime/debugger implementation. + +Case (3) re-homes the marker argument into a compiler-synthesized closure +during code generation, *after* `LowerLocalMutables` has run. Without special +handling, mutable locals used both in that body and in the enclosing scope +would be copied into the closure by value, silently disconnecting the two +copies. `LowerLocalMutables` therefore treats the marker argument as a lambda +body (`DecideExpr`), promoting its free mutable locals to reference cells so +the synthesized closure and the enclosing scope share them. + +`InvokeFast` is not a separate runtime-async path. It is the closure-erasure +shape for an indirect call with multiple arguments. Fragment substitution and +beta reduction happen before closure erasure; if a suspending fragment survives +until an indirect `InvokeFast` call, it is still outside a runtime-async method +and is rejected by code generation. + +## Runtime capability check + +`InfoReader` gates `LanguageFeature.RuntimeAsync` on the target reference +assemblies: it looks up the `Async` field on +`System.Runtime.CompilerServices.MethodImplOptions`. This is a metadata-only +probe of the *reference* assemblies; it does not prove the *executing* host +JIT supports runtime-async. Compiling against new reference assemblies and +running on an older runtime is not a supported configuration. + +## Computation-expression usage + +The feature is usable from an inline computation-expression builder. A +task-like builder can keep `Delay` and its other combinators synchronous and +inline; `Run` introduces the return marker: + +```fsharp +type RuntimeTaskBuilder() = + member inline _.Delay([] generator: unit -> 'T) = generator + member inline _.Run([] code: unit -> 'T) = + __runtimeAsyncReturn (code ()) + member inline _.Bind(task: Task<'T>, [] continuation: 'T -> 'U) = + continuation (AsyncHelpers.Await task) +``` + +`Bind`, `ReturnFrom`, and `MergeSources` can use `Await` for known +`Task`/`ValueTask` types and SRTP awaiter operations for arbitrary task-like +values. `MergeSources` awaits its already-started sources sequentially. +`Async<'T>` can be adapted with `Async.StartImmediateAsTask`. + +An async-sequence builder can use the same pattern to produce +`IAsyncEnumerable<'T>`. Its `Run` creates a producer that is started when +`GetAsyncEnumerator` is called. A `ManualResetValueTaskSourceCore` handshake +makes enumeration pull-driven: `yield` publishes one item and waits for the +next `MoveNextAsync` request. `yield!` and `for` can consume synchronous or +asynchronous enumerables, and nested async enumerables receive the caller's +cancellation token. A single active `MoveNextAsync` is enforced. A builder may +also hand off directly between compatible producers for `YieldFromFinal`, +avoiding a second enumeration handshake. + +These builders are examples rather than FSharp.Core APIs. Applications can +define their own inline builders over the same intrinsics, subject to the +runtime-async restrictions and inline-fragment rules described above. + +### Direct async-sequence proposal + +`__runtimeAsyncSequence` consumes a statically known `unit -> seq<'T>` recipe. It reuses sequence lowering, but emits runtime-async `MoveNextAsync(): ValueTask` and `DisposeAsync(): ValueTask` methods on a reference type. Each resume checks the enumeration's cancellation token before running recipe code. User awaits remain in these methods. Yield positions persist between calls. Ordinary nested sequences remain synchronous. + +Generated types implement the enumerator interfaces directly, without base-class forwarding. The first acquisition reuses the factory instance. Later acquisitions return independent, already-acquired clones. Immediately consumed runtime-async inputs remain adjacent to their awaits so the runtime can fuse the calls. + +The [example builder](../tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequenceBuilder.fs) uses existing sequence combinators. Its `Bind` supports tasks, value tasks, and typed custom/configured awaiters. `For` and `YieldFrom` select synchronous or asynchronous enumeration through library overloads, not compiler syntax cases. + +```fsharp +let values (work: Task) (resource: IAsyncDisposable) = + runtimeAsyncSeq { + use cleanup = resource + let! value = work + for offset in [1; 2] do + yield value + offset + yield! [10] + for value in runtimeAsyncSeq { yield 11 } do + yield value + yield! runtimeAsyncSeq { yield 12 } + } +``` + +The reference builder uses the compiler-recognized `cancellationToken()` helper to pass the current enumeration token to nested `IAsyncEnumerable` sources. Recipes can call the same helper for explicit cancellation checks without taking a token parameter. The `withCancellation (fun token -> runtimeAsyncSeq { ... })` adapter remains available when the recipe needs to capture the enumeration token explicitly. + +```fsharp +let tokens = + runtimeAsyncSeq { + let token = cancellationToken() + token.ThrowIfCancellationRequested() + yield token + } +``` + +Recipes undergo mandatory local normalization even with `--optimize-`. This does not enable optimization for surrounding code. It can remove intermediate recipe locals. Body faults await active cleanup before rethrowing with their original dispatch information. Successful moves do not allocate an exception-transport object. + +When cleanup can suspend, the saved exception lives on the iterator instead of enlarging every runtime continuation. The failure path clears it even if cleanup throws. + +Builder-generated `MoveNextAsync` can lose visible sequence points. The optimized control has no visible points, and its nonoptimized form omits the terminal yield's range. Direct-intrinsic and ordinary-sequence controls retain their ranges. This proposal does not guarantee complete source stepping. + +This is a proposal, not a drop-in TaskSeq replacement. Producer `try/with` is lowered through an ordinary nested sequence, while runtime-async suspensions inside that handler remain unsupported. Opaque recipes and optimized tail handoff are rejected. Early disposal retains ordinary sequence exception precedence: an outer cleanup failure replaces an inner cleanup failure. Concurrent move/dispose calls are unsupported. Awaiting a non-cancellable operation does not make it cancellable. Performance qualification must include genuinely pending operations, not only completed awaits. + +Build and run the small [usage and lifecycle example](../tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequence.fs) with the matching preview SDK: + +```sh +./build.sh -c Release +dotnet test --project tests/FSharp.Compiler.ComponentTests/FSharp.Compiler.ComponentTests.fsproj \ + -c Release --no-build --filter-class 'Language.RuntimeAsyncSequenceTests' +``` + +The tests compile the library and consumer together and separately, with optimization enabled and disabled. + +### Unsupported inline-fragment positions + +An inline fragment that escapes as a first-class value, is passed to a +non-inline function, or is dynamically dispatched cannot be preserved as a +runtime-async suspension fragment. If the suspension remains in the generated +non-runtime-async method, code generation reports FS3916 rather than emitting +an unsafe closure. Fragments in statically eliminated branches do not trigger +this diagnostic. + +## Not yet implemented + +* Complete diagnostics for runtime restrictions. The optimizer rewrites + suspending `try/with` handlers and filters, and `try/finally` compensations, + so they execute outside exception-handling regions. There is no general + diagnostic for runtime-contract violations in other generated or imported + shapes, and `localloc` has no dedicated diagnostic. Runtime-async methods + suppress `tail.` emission rather than reporting it. +* A builder in FSharp.Core; builders using the feature are currently + application/library code. +* Compile-time enforcement that the marker was actually consumed before + code generation (a missed marker throws only when its FSharp.Core stub is + reached at run time, or produces invalid IL as described above). diff --git a/src/Compiler/AbstractIL/il.fs b/src/Compiler/AbstractIL/il.fs index 2b400dd8c5b..4b2206ba042 100644 --- a/src/Compiler/AbstractIL/il.fs +++ b/src/Compiler/AbstractIL/il.fs @@ -1639,6 +1639,7 @@ type ILMethodBody = MaxStack: int32 NoInlining: bool AggressiveInlining: bool + IsRuntimeAsync: bool Locals: ILLocals Code: ILCode DebugRange: ILDebugPoint option @@ -2279,6 +2280,11 @@ type ILMethodDef member x.WithRuntime(condition) = x.With(implAttributes = (x.ImplAttributes |> conditionalAdd condition MethodImplAttributes.Runtime)) + member x.WithAsync(condition) = + // MethodImplOptions.Async is not present in all target reference assemblies. + let asyncFlag = enum 0x2000 + x.With(implAttributes = (x.ImplAttributes |> conditionalAdd condition asyncFlag)) + [] member x.DebugText = x.ToString() @@ -4288,6 +4294,7 @@ let mkILMethodBody (initlocals, locals, maxstack, code, tag, imports) : ILMethod MaxStack = maxstack NoInlining = false AggressiveInlining = false + IsRuntimeAsync = false Locals = locals Code = code DebugRange = tag diff --git a/src/Compiler/AbstractIL/il.fsi b/src/Compiler/AbstractIL/il.fsi index f6ed7d039de..e222614a88c 100644 --- a/src/Compiler/AbstractIL/il.fsi +++ b/src/Compiler/AbstractIL/il.fsi @@ -813,6 +813,7 @@ type internal ILMethodBody = MaxStack: int32 NoInlining: bool AggressiveInlining: bool + IsRuntimeAsync: bool Locals: ILLocals Code: ILCode DebugRange: ILDebugPoint option @@ -1247,6 +1248,8 @@ type ILMethodDef = member internal WithRuntime: bool -> ILMethodDef + member internal WithAsync: bool -> ILMethodDef + /// Tables of methods. Logically equivalent to a list of methods but /// the table is kept in a form optimized for looking up methods by /// name and arity. diff --git a/src/Compiler/AbstractIL/ilread.fs b/src/Compiler/AbstractIL/ilread.fs index 3c74e6b3246..12d0de81eed 100644 --- a/src/Compiler/AbstractIL/ilread.fs +++ b/src/Compiler/AbstractIL/ilread.fs @@ -3884,6 +3884,7 @@ and seekReadMethodRVA (pectxt: PEReader) (ctxt: ILMetadataReader) (nm, noinline, MaxStack = 8 NoInlining = noinline AggressiveInlining = aggressiveinline + IsRuntimeAsync = false Locals = List.empty Code = code DebugRange = None @@ -4032,6 +4033,7 @@ and seekReadMethodRVA (pectxt: PEReader) (ctxt: ILMetadataReader) (nm, noinline, MaxStack = maxstack NoInlining = noinline AggressiveInlining = aggressiveinline + IsRuntimeAsync = false Locals = locals Code = code DebugRange = None diff --git a/src/Compiler/Checking/Expressions/CheckExpressions.fs b/src/Compiler/Checking/Expressions/CheckExpressions.fs index 7687f6f2294..7619698149c 100644 --- a/src/Compiler/Checking/Expressions/CheckExpressions.fs +++ b/src/Compiler/Checking/Expressions/CheckExpressions.fs @@ -29,6 +29,7 @@ open FSharp.Compiler.MethodCalls open FSharp.Compiler.MethodOverrides open FSharp.Compiler.NameResolution open FSharp.Compiler.PatternMatchCompilation +open FSharp.Compiler.RuntimeAsync open FSharp.Compiler.Syntax open FSharp.Compiler.SyntaxTrivia open FSharp.Compiler.Syntax.PrettyNaming @@ -8694,6 +8695,19 @@ and Propagate (cenv: cenv) (overallTy: OverallTy) (env: TcEnv) tpenv (expr: Appl | DelayedApp (atomicFlag, isSugar, synLeftExprOpt, synArg, mExprAndArg) :: delayedList' -> let denv = env.DisplayEnv + + match expr.Expr with + | RuntimeAsyncReturnFunction g _ -> + checkLanguageFeatureAndRecover g.langVersion LanguageFeature.RuntimeAsync mExpr + | OpPipeRight g (_, _, fExpr, _) + | OpPipeRight2 g (_, _, _, fExpr, _) + | OpPipeRight3 g (_, _, _, _, fExpr, _) + when (match fExpr with + | RuntimeAsyncReturnFunction g _ -> true + | _ -> false) -> + checkLanguageFeatureAndRecover g.langVersion LanguageFeature.RuntimeAsync mExpr + | _ -> + match UnifyFunctionTypeUndoIfFailed cenv denv mExpr exprTy with | ValueSome (_, resultTy) -> @@ -8985,6 +8999,51 @@ and TcApplicationThen (cenv: cenv) (overallTy: OverallTy) env tpenv mExprAndArg else None + match leftExpr with + | ApplicableExpr(expr = RuntimeAsyncSequenceFunction g _) -> + checkLanguageFeatureAndRecover g.langVersion LanguageFeature.RuntimeAsync mExprAndArg + checkLanguageFeatureRuntimeAndRecover cenv.infoReader LanguageFeature.RuntimeAsync mExprAndArg + | _ -> () + + let (|RuntimeAsyncApplication|_|) = + function + | ApplicableExpr(expr = (RuntimeAsyncReturnFunction g (vref, flags, m))) -> + checkLanguageFeatureAndRecover g.langVersion LanguageFeature.RuntimeAsync m + + let _, carrierTy = stripFunTy g exprTy + + let bodyResultTy, markerTyargs = + match stripTyEqns g carrierTy with + | AppTy g (_, [ resultTy ]) -> resultTy, [ resultTy ] + | AppTy g (_, []) -> g.unit_ty, [] + | AppTy g (_, _) -> error (InternalError("Unexpected runtime-async return carrier arity", m)) + | _ -> error (InternalError("Unexpected runtime-async return carrier type", m)) + + checkLanguageFeatureRuntimeAndRecover cenv.infoReader LanguageFeature.RuntimeAsync m + + let arg, tpenv = TcExprFlex2 cenv bodyResultTy env false tpenv synArg + let marker = + Expr.App(Expr.Val(vref, flags, m), vref.Type, markerTyargs, [ arg ], mExprAndArg) + + ValueSome( + TcDelayed + cenv + overallTy + env + tpenv + mExprAndArg + (MakeApplicableExprNoFlex cenv marker) + carrierTy + atomicFlag + delayed + ) + | _ -> + ValueNone + + match leftExpr with + | RuntimeAsyncApplication result -> result + | _ -> + // If the type of 'synArg' unifies as a function type, then this is a function application, otherwise // it is an error or a computation expression or indexer or delegate invoke match UnifyFunctionTypeUndoIfFailed cenv denv mLeftExpr exprTy with @@ -12145,7 +12204,12 @@ and TcLetBinding (cenv: cenv) isUse env containerInfo declKind tpenv (synBinds, let valSchemes = NameMap.map (UseCombinedValReprInfo g declKind rhsExpr) prelimValSchemes2 let values = MakeAndPublishVals cenv env (altActualParent, false, declKind, ValNotInRecScope, valSchemes, attrs, xmlDoc, literalValue) let checkedPat = tcPatPhase2 (TcPatPhase2Input (values, true)) - let prelimRecValues = NameMap.map fst values + let prelimRecValues = + let prelimRecValues = NameMap.map fst values + if isFixed then + NameMap.map (fun (v: Val) -> v.SetIsPinning(); v) prelimRecValues + else + prelimRecValues // Now bind the r.h.s. to the l.h.s. let rhsExpr = mkTypeLambda m generalizedTypars (rhsExpr, tauTy) diff --git a/src/Compiler/Checking/InfoReader.fs b/src/Compiler/Checking/InfoReader.fs index 364047051ba..25ac3c478aa 100644 --- a/src/Compiler/Checking/InfoReader.fs +++ b/src/Compiler/Checking/InfoReader.fs @@ -860,6 +860,15 @@ type InfoReader(g: TcGlobals, amap: ImportMap) as this = let isRuntimeFeatureVirtualStaticsInInterfacesSupported = lazy isRuntimeFeatureSupported "VirtualStaticsInInterfaces" + let isRuntimeAsyncSupported = + lazy ( + match g.System_Runtime_CompilerServices_MethodImplOptions_ty with + | Some methodImplOptionsTy -> + GetIntrinsicILFieldInfosUncached ((None, AccessorDomain.AccessibleFromEverywhere), range0, methodImplOptionsTy) + |> List.exists (fun (ilFieldInfo: ILFieldInfo) -> ilFieldInfo.FieldName = "Async") + | _ -> + false) + member _.g = g member _.amap = amap @@ -918,6 +927,12 @@ type InfoReader(g: TcGlobals, amap: ImportMap) as this = member _.GetPrimaryTypeHierarchy (allowMultiIntfInst, m, ty) = primaryTypeHierarchyCache.Apply((allowMultiIntfInst, m, ty)) + /// Check if the given language feature is supported by the runtime. + member _.IsLanguageFeatureRuntimeSupported langFeature = + match langFeature with + | LanguageFeature.RuntimeAsync -> isRuntimeAsyncSupported.Value + | _ -> true + /// Check if the target runtime supports default implementations of interfaces (DefaultImplementationsOfInterfaces). member _.IsRuntimeSupportForDefaultImplementationsOfInterfaces = isRuntimeFeatureDefaultImplementationsOfInterfacesSupported.Value @@ -1031,6 +1046,11 @@ type InfoReader(g: TcGlobals, amap: ImportMap) as this = else unimplementedStaticAbstractMemberCache.Apply(((None, AccessibleFromSomewhere, AllowMultiIntfInstantiations.Yes), m, interfaceTy)) +let checkLanguageFeatureRuntimeAndRecover (infoReader: InfoReader) langFeature m = + if not (infoReader.IsLanguageFeatureRuntimeSupported langFeature) then + let featureStr = LanguageVersion.GetFeatureString langFeature + errorR (Error(FSComp.SR.chkFeatureNotRuntimeSupported (RichText.mkText featureStr), m)) + let checkRuntimeSupportForDefaultInterfaceMembersAndRecover (infoReader: InfoReader) m = if not infoReader.IsRuntimeSupportForDefaultImplementationsOfInterfaces then errorR (Error(FSComp.SR.chkFeatureNotRuntimeSupported (RichText.mkText "default interface member consumption"), m)) diff --git a/src/Compiler/Checking/InfoReader.fsi b/src/Compiler/Checking/InfoReader.fsi index 53851d4a404..50b71cf43bb 100644 --- a/src/Compiler/Checking/InfoReader.fsi +++ b/src/Compiler/Checking/InfoReader.fsi @@ -6,6 +6,7 @@ module internal FSharp.Compiler.InfoReader open Internal.Utilities.Library open FSharp.Compiler open FSharp.Compiler.AccessibilityLogic +open FSharp.Compiler.Features open FSharp.Compiler.Import open FSharp.Compiler.Infos open FSharp.Compiler.TcGlobals @@ -147,6 +148,15 @@ type InfoReader = ty: TType -> MethInfo list list + /// Read the raw property sets of a type, including inherited ones. Cache the result for monomorphic types + member GetRawIntrinsicPropertySetsOfType: + optFilter: string option * + ad: AccessorDomain * + allowMultiIntfInst: AllowMultiIntfInstantiations * + m: range * + ty: TType -> + PropInfo list list + /// Read the record or class fields of a type, including inherited ones. Cache the result for monomorphic types. member GetRecordOrClassFieldsOfType: optFilter: string option * ad: AccessorDomain * m: range * ty: TType -> RecdFieldInfo list @@ -157,6 +167,9 @@ type InfoReader = /// Check if the target runtime supports static abstract members in interfaces (VirtualStaticsInInterfaces). member IsRuntimeSupportForVirtualStaticsInInterfaces: bool + /// Check if the given language feature is supported by the runtime. + member IsLanguageFeatureRuntimeSupported: langFeature: LanguageFeature -> bool + /// Try and find a record or class field for a type. member TryFindRecdOrClassFieldInfoOfType: nm: string * m: range * ty: TType -> RecdFieldInfo voption member amap: ImportMap @@ -233,6 +246,8 @@ type InfoReader = /// Results are cached per interface type definition. member TryFindUnimplementedStaticAbstractMemberOfType: m: range -> interfaceTy: TType -> string option +val checkLanguageFeatureRuntimeAndRecover: infoReader: InfoReader -> langFeature: LanguageFeature -> m: range -> unit + val checkRuntimeSupportForDefaultInterfaceMembersAndRecover: infoReader: InfoReader -> m: range -> unit /// Get the declared constructors of any F# type diff --git a/src/Compiler/CodeGen/EraseClosures.fs b/src/Compiler/CodeGen/EraseClosures.fs index 9aad82b0521..64e3ac9dae6 100644 --- a/src/Compiler/CodeGen/EraseClosures.fs +++ b/src/Compiler/CodeGen/EraseClosures.fs @@ -722,6 +722,7 @@ let rec convIlxClosureDef cenv encl (td: ILTypeDef) clo = mkILReturn fixedNowReturnTy, MethodBody.IL(notlazy convil) ) + |> fun mdef -> mdef.WithAsync(clo.cloCode.Value.IsRuntimeAsync) let ctorMethodDef = mkILStorageCtor ( diff --git a/src/Compiler/CodeGen/IlxGen.fs b/src/Compiler/CodeGen/IlxGen.fs index ca9dde6b47f..cb7a345c986 100644 --- a/src/Compiler/CodeGen/IlxGen.fs +++ b/src/Compiler/CodeGen/IlxGen.fs @@ -28,9 +28,11 @@ open FSharp.Compiler.CompilerGlobalState open FSharp.Compiler.DelegateForwarding open FSharp.Compiler.DiagnosticsLogger open FSharp.Compiler.Features +open FSharp.Compiler.InfoReader open FSharp.Compiler.Infos open FSharp.Compiler.Import open FSharp.Compiler.LowerStateMachines +open FSharp.Compiler.RuntimeAsync open FSharp.Compiler.Syntax open FSharp.Compiler.Syntax.PrettyNaming open FSharp.Compiler.SyntaxTreeOps @@ -1274,6 +1276,12 @@ and IlxGenEnv = /// Are we under the scope of a try, catch or finally? If so we can't tailcall. SEH = structured exception handling withinSEH: bool + /// We are generating a runtime-async method/closure body, which forbids tail prefixes. + inRuntimeAsyncMethod: bool + + /// Inline method bodies are templates whose suspension calls are checked at their eventual use site. + inInlineMethod: bool + /// Suppresses filter block emission inside finally/fault handlers (workaround for dotnet/runtime#112406). insideFinallyOrFaultHandler: bool @@ -3218,6 +3226,8 @@ and GenExprPreSteps (cenv: cenv) (cgbuf: CodeGenBuffer) eenv expr sequel = GenExpr cenv cgbuf eenv codeExpr sequel true + | _ when TryGetRuntimeAsyncSequence g expr |> Option.isSome -> GenRuntimeAsyncSequenceExpr cenv cgbuf eenv expr sequel + | _ -> //ProcessDebugPointForExpr cenv cgbuf expr @@ -3237,13 +3247,13 @@ and GenExprPreSteps (cenv: cenv) (cgbuf: CodeGenBuffer) eenv expr sequel = let lowering = if compileSequenceExpressions then - LowerSequenceExpressions.ConvertSequenceExprToObject g cenv.amap expr + LowerSequenceExpressions.ConvertSequenceExprToObject g cenv.amap false expr else None match lowering with | Some info -> - GenSequenceExpr cenv cgbuf eenv info sequel + GenSequenceExpr cenv cgbuf eenv false info None sequel true | None -> @@ -3321,6 +3331,8 @@ and GenExprAux (cenv: cenv) (cgbuf: CodeGenBuffer) eenv expr (sequel: sequel) = // application of local type functions with type parameters = measure types and body = local value - inline the body GenExpr cenv cgbuf eenv v sequel + | Expr.App _ when TryGetRuntimeAsyncReturn g expr |> Option.isSome -> GenRuntimeAsyncReturnAsStartedTask cenv cgbuf eenv expr sequel + | Expr.App(f, fty, tyargs, curriedArgs, m) -> GenApp cenv cgbuf eenv (f, fty, tyargs, curriedArgs, m) sequel | Expr.Val(v, _, m) -> GenGetVal cenv cgbuf eenv (v, m) sequel @@ -3422,6 +3434,49 @@ and GenExprAux (cenv: cenv) (cgbuf: CodeGenBuffer) eenv expr (sequel: sequel) = | Expr.TyChoose(_, _, m) -> error (InternalError("Unexpected Expr.TyChoose", m)) +and GenRuntimeAsyncSequenceExpr cenv cgbuf eenv expr sequel = + let g = cenv.g + let m = expr.Range + checkLanguageFeatureAndRecover g.langVersion LanguageFeature.RuntimeAsync m + checkLanguageFeatureRuntimeAndRecover (InfoReader(g, cenv.amap)) LanguageFeature.RuntimeAsync m + + match LowerAsyncSeq.TryConvert g cenv.amap expr with + | Some(LowerAsyncSeq.Evaluate expr) -> + GenExpr cenv cgbuf eenv expr sequel + true + | Some(LowerAsyncSeq.Sequence(info, cancellationTokenValRef)) -> + GenSequenceExpr cenv cgbuf eenv true info cancellationTokenValRef sequel + true + | None when eenv.inInlineMethod -> false + | None -> error (Error(FSComp.SR.ilRuntimeAsyncSequenceNotStaticallyKnown (), m)) + +// A __runtimeAsyncReturn marker that is not at the top of a method or closure body is lowered +// as a "started task": the marked expression becomes the body of a fresh closure whose +// Invoke method is the runtime-async method, and the closure is invoked immediately. +// This relies on GenApp never beta-reducing a lambda application - it always emits a +// closure value followed by an indirect call (the "worst case" path), which routes the +// lambda through the closure generation that consumes the marker. If that invariant ever +// changes, the marker expression would reach GenExprAux again and recurse without bound. +and GenRuntimeAsyncReturnAsStartedTask cenv cgbuf eenv expr sequel = + let m = expr.Range + + checkLanguageFeatureError cenv.g.langVersion LanguageFeature.RuntimeAsync m + + let nonPreservableFreeVal = + (freeInExpr CollectLocals expr).FreeLocals + |> Zset.elements + |> List.tryFind (fun v -> v.IsPinning || isByrefTy cenv.g v.Type || isByrefLikeTy cenv.g m v.Type) + + match nonPreservableFreeVal with + | Some v -> errorR (Error(FSComp.SR.chkByrefUsedInInvalidWay (richTextOfValName cenv.g v), v.Range)) + | None -> () + + let unitVal, _ = mkLocal m "unit" cenv.g.unit_ty + let lambdaExpr = mkLambda m unitVal (expr, tyOfExpr cenv.g expr) + let lambdaTy = tyOfExpr cenv.g lambdaExpr + let application = mkApps cenv.g ((lambdaExpr, lambdaTy), [], [ mkUnit cenv.g m ], m) + GenExpr cenv cgbuf eenv application sequel + and GenExprs cenv cgbuf eenv es = List.iter (fun e -> GenExpr cenv cgbuf eenv e Continue) es @@ -4699,6 +4754,7 @@ and GenApp (cenv: cenv) cgbuf eenv (f, fty, tyargs, curriedArgs, m) sequel = isDllImport, isSelfInit, makesNoCriticalTailcalls, + eenv.inRuntimeAsyncMethod, cgbuf, sequel ) @@ -4829,6 +4885,7 @@ and CanTailcall isDllImport, isSelfInit, makesNoCriticalTailcalls, + inRuntimeAsyncMethod, cgbuf: CodeGenBuffer, sequel ) = @@ -4836,6 +4893,7 @@ and CanTailcall // Can't tailcall with a struct object arg since it involves a byref // Can't tailcall with a .NET 2.0 generic constrained call since it involves a byref // Can't tailcall when there are pinned locals since the stack frame must remain alive + // Runtime-async methods forbid .tail according to the CLI spec. let hasPinnedLocals = cgbuf.HasPinnedLocals() let hasStackAllocatedLocals = cgbuf.HasStackAllocatedLocals() @@ -4843,6 +4901,7 @@ and CanTailcall not hasStructObjArg && Option.isNone ccallInfo && not withinSEH + && not inRuntimeAsyncMethod && not hasByrefArg && not isDllImport && not isSelfInit @@ -5047,7 +5106,7 @@ and GenIndirectCall cenv cgbuf eenv (funcTy, tyargs, curriedArgs, m) sequel = check ilxClosureApps let isTailCall = - CanTailcall(false, None, eenv.withinSEH, hasByrefArg, false, false, false, false, cgbuf, sequel) + CanTailcall(false, None, eenv.withinSEH, hasByrefArg, false, false, false, false, eenv.inRuntimeAsyncMethod, cgbuf, sequel) CountCallFuncInstructions() @@ -5506,6 +5565,14 @@ and GenWhileLoop cenv cgbuf eenv (spWhile, condExpr, bodyExpr, m) sequel = and GenAsmCode cenv cgbuf eenv (il, tyargs, args, returnTys, m) sequel = let g = cenv.g + + if + eenv.inRuntimeAsyncMethod + && not eenv.inInlineMethod + && List.contains I_localloc il + then + errorR (Error(FSComp.SR.ilRuntimeAsyncStackAllocation (), m)) + let ilTyArgs = GenTypesPermitVoid cenv m eenv.tyenv tyargs let ilReturnTys = GenTypesPermitVoid cenv m eenv.tyenv returnTys @@ -5793,6 +5860,13 @@ and GenILCall let makesNoCriticalTailcalls = (newobj || not virt) // Don't tailcall for 'newobj', or 'call' to IL code let hasStructObjArg = valu && ilMethRef.CallingConv.IsInstance + if + not eenv.inRuntimeAsyncMethod + && not eenv.inInlineMethod + && IsRuntimeAsyncSuspensionMethod cenv.g ilMethRef + then + errorR (Error(FSComp.SR.ilRuntimeAsyncSuspensionOutsideRuntimeAsync (RichText.mkText ilMethRef.Name), m)) + let tail = CanTailcall( hasStructObjArg, @@ -5803,6 +5877,7 @@ and GenILCall isDllImport, false, makesNoCriticalTailcalls, + eenv.inRuntimeAsyncMethod, cgbuf, sequel ) @@ -6370,6 +6445,12 @@ and GenObjectExprMethod cenv eenvinner (cgbuf: CodeGenBuffer) useMethodImpl tmet Return) let ilMethodBody = + let eenvForMeth = + { eenvForMeth with + inRuntimeAsyncMethod = false + inInlineMethod = false + } + CodeGenMethodForExpr cenv cgbuf.mgbuf ([], nameOfOverridenMethod, eenvForMeth, 0, selfArgOpt, methBodyExpr, sequel) let nameOfOverridingMethod, methodImplGenerator = @@ -6848,21 +6929,24 @@ and GenSequenceExpr cenv (cgbuf: CodeGenBuffer) eenvouter + directRuntimeSequence ( nextEnumeratorValRef: ValRef, pcvref: ValRef, currvref: ValRef, - stateVars, + stateVars: ValRef list, generateNextExpr, closeExpr, checkCloseExpr: Expr, seqElemTy, m ) + cancellationTokenValRef sequel = let g = cenv.g + let stateVars = [ pcvref; currvref ] @ stateVars let stateVarsSet = @@ -6882,17 +6966,36 @@ and GenSequenceExpr ILBoxity.AsObject eenvouter [] - (mkLambda m nextEnumeratorValRef.Deref (generateNextExpr, g.int32_ty)) + (mkLambda m nextEnumeratorValRef.Deref (generateNextExpr, tyOfExpr g generateNextExpr)) let ilCloSeqElemTy = GenType cenv m eenvinner.tyenv seqElemTy - let cloRetTy = mkSeqTy g seqElemTy + + let cloRetTy = + if directRuntimeSequence then + g.mk_IAsyncEnumerable_ty seqElemTy + else + mkSeqTy g seqElemTy + let ilCloRetTyInner = GenType cenv m eenvinner.tyenv cloRetTy let ilCloRetTyOuter = GenType cenv m eenvouter.tyenv cloRetTy - let ilCloEnumeratorTy = GenType cenv m eenvinner.tyenv (mkIEnumeratorTy g seqElemTy) + + let ilCloEnumeratorTy = + GenType + cenv + m + eenvinner.tyenv + (if directRuntimeSequence then + g.mk_IAsyncEnumerator_ty seqElemTy + else + mkIEnumeratorTy g seqElemTy) + let ilCloEnumerableTy = GenType cenv m eenvinner.tyenv (mkSeqTy g seqElemTy) let ilCloBaseTy = - GenType cenv m eenvinner.tyenv (g.mk_GeneratedSequenceBase_ty seqElemTy) + if directRuntimeSequence then + GenType cenv m eenvinner.tyenv (g.mk_GeneratedRuntimeAsyncSequenceBase_ty seqElemTy) + else + GenType cenv m eenvinner.tyenv (g.mk_GeneratedSequenceBase_ty seqElemTy) let ilCloGenericParams = GenGenericParams cenv eenvinner cloFreeTyvars @@ -6927,11 +7030,7 @@ and GenSequenceExpr else GenGetFreeVarForClosure cenv cgbuf eenv m fv - CG.EmitInstr - cgbuf - (pop ilCloAllFreeVars.Length) - (Push [ ilCloRetTyInner ]) - (I_newobj(formalClospec.Constructor, None)) + CG.EmitInstr cgbuf (pop ilCloAllFreeVars.Length) (Push [ ilCloTyInner ]) (I_newobj(formalClospec.Constructor, None)) GenSequel cenv eenv.cloc cgbuf Return), m) @@ -6940,22 +7039,79 @@ and GenSequenceExpr "GetFreshEnumerator", ILMemberAccess.Public, [], - mkILReturn ilCloEnumeratorTy, + mkILReturn ( + if directRuntimeSequence then + ilCloBaseTy + else + ilCloEnumeratorTy + ), MethodBody.IL(InterruptibleLazy.FromValue mbody) ) |> AddNonUserCompilerGeneratedAttribs g + let setCancellationTokenMethod = + match cancellationTokenValRef with + | None -> None + | Some cancellationTokenValRef -> + let cancellationTokenArg, cancellationTokenArgExpr = + mkLocal m "cancellationToken" cancellationTokenValRef.Type + + let methodEnv = + eenvinner |> AddStorageForLocalVals g [ (cancellationTokenArg, Arg 1) ] + + let body = mkValSet m cancellationTokenValRef cancellationTokenArgExpr + + let ilCode = + CodeGenMethodForExpr cenv cgbuf.mgbuf ([], "SetCancellationToken", methodEnv, 2, None, body, discardAndReturnVoid) + + Some( + mkILNonGenericVirtualInstanceMethod ( + "SetCancellationToken", + ILMemberAccess.Public, + [ + mkILParamNamed (cancellationTokenArg.LogicalName, GenType cenv m eenvinner.tyenv cancellationTokenArg.Type) + ], + mkILReturn ILType.Void, + MethodBody.IL(InterruptibleLazy.FromValue ilCode) + ) + |> AddNonUserCompilerGeneratedAttribs g + ) + let closeMethod = + let marker = TryGetRuntimeAsyncReturn g closeExpr + + let body = + marker |> Option.map (fun info -> info.Body) |> Option.defaultValue closeExpr + + let name = if marker.IsSome then "DisposeAsync" else "Close" + + let methodEnv = + { eenvinner with + inRuntimeAsyncMethod = marker.IsSome + inInlineMethod = false + } + let ilCode = - CodeGenMethodForExpr cenv cgbuf.mgbuf ([], "Close", eenvinner, 1, None, closeExpr, discardAndReturnVoid) + CodeGenMethodForExpr cenv cgbuf.mgbuf ([], name, methodEnv, 1, None, body, discardAndReturnVoid) + |> fun code -> + { code with + IsRuntimeAsync = marker.IsSome + } + + let resultTy = + if marker.IsSome then + GenType cenv m eenvinner.tyenv (tyOfExpr g closeExpr) + else + ILType.Void mkILNonGenericVirtualInstanceMethod ( - "Close", + name, ILMemberAccess.Public, [], - mkILReturn ILType.Void, + mkILReturn resultTy, MethodBody.IL(InterruptibleLazy.FromValue ilCode) ) + |> fun methodDef -> methodDef.WithAsync(marker.IsSome) let checkCloseMethod = let ilCode = @@ -6974,23 +7130,61 @@ and GenSequenceExpr let eenvinner = eenvinner |> AddStorageForLocalVals g [ (nextEnumeratorValRef.Deref, Arg 1) ] - let ilParams = [ mkILParamNamed ("next", ILType.Byref ilCloEnumerableTy) ] - let ilReturn = mkILReturn g.ilg.typ_Int32 + let marker = TryGetRuntimeAsyncReturn g generateNextExpr + + let body = + marker + |> Option.map (fun info -> info.Body) + |> Option.defaultValue generateNextExpr + + let name = if marker.IsSome then "MoveNextAsync" else "GenerateNext" + + let methodEnv = + { eenvinner with + inRuntimeAsyncMethod = marker.IsSome + inInlineMethod = false + } + + let ilParams = + if marker.IsSome then + [] + else + [ mkILParamNamed ("next", ILType.Byref ilCloEnumerableTy) ] + + let resultTy = + if marker.IsSome then + GenType cenv m eenvinner.tyenv (tyOfExpr g generateNextExpr) + else + g.ilg.typ_Int32 + + let ilReturn = mkILReturn resultTy + let usedArgs = if marker.IsSome then 1 else 2 let ilCode = MethodBody.IL( InterruptibleLazy(fun _ -> - CodeGenMethodForExpr cenv cgbuf.mgbuf ([], "GenerateNext", eenvinner, 2, None, generateNextExpr, Return)) + CodeGenMethodForExpr cenv cgbuf.mgbuf ([], name, methodEnv, usedArgs, None, body, Return) + |> fun code -> + { code with + IsRuntimeAsync = marker.IsSome + }) ) - mkILNonGenericVirtualInstanceMethod ("GenerateNext", ILMemberAccess.Public, ilParams, ilReturn, ilCode) + mkILNonGenericVirtualInstanceMethod (name, ILMemberAccess.Public, ilParams, ilReturn, ilCode) + |> fun methodDef -> methodDef.WithAsync(marker.IsSome) let lastGeneratedMethod = + let name = + if directRuntimeSequence then + "get_Current" + else + "get_LastGenerated" + let ilCode = - CodeGenMethodForExpr cenv cgbuf.mgbuf ([], "get_LastGenerated", eenvinner, 1, None, exprForValRef m currvref, Return) + CodeGenMethodForExpr cenv cgbuf.mgbuf ([], name, eenvinner, 1, None, exprForValRef m currvref, Return) mkILNonGenericVirtualInstanceMethod ( - "get_LastGenerated", + name, ILMemberAccess.Public, [], mkILReturn ilCloSeqElemTy, @@ -7005,11 +7199,20 @@ and GenSequenceExpr [ generateNextMethod closeMethod - checkCloseMethod + yield! Option.toList setCancellationTokenMethod + if not directRuntimeSequence then + checkCloseMethod lastGeneratedMethod getFreshMethod ] + let ilInterfaceTys = + if directRuntimeSequence then + AllInterfacesOfType g cenv.amap m AllowMultiIntfInstantiations.Yes (g.mk_IAsyncEnumerator_ty seqElemTy) + |> List.map (GenType cenv m eenvinner.tyenv >> InterfaceImpl.Create) + else + [] + let cloTypeDefs = GenClosureTypeDefs cenv @@ -7022,7 +7225,7 @@ and GenSequenceExpr cloMethods, [], ilCloBaseTy, - [], + ilInterfaceTys, Some ilxCloSpec) for cloTypeDef in cloTypeDefs do @@ -7149,6 +7352,11 @@ and GenGenericArgs cenv m (tyenv: TypeReprEnv) tps = |> DropErasedTypars |> List.map (fun tp -> GenType cenv m tyenv (mkTyparTy tp)) +and CheckRuntimeAsyncFreeVars g m (cloinfo: IlxClosureInfo) = + for fv in cloinfo.cloFreeVars do + if fv.IsPinning || isByrefTy g fv.Type || isByrefLikeTy g m fv.Type then + errorR (Error(FSComp.SR.chkByrefUsedInInvalidWay (richTextOfValName g fv), fv.Range)) + /// Generate a local type function contract class and implementation and GenClosureAsLocalTypeFunction cenv (cgbuf: CodeGenBuffer) eenv thisVars expr m = let g = cenv.g @@ -7176,8 +7384,28 @@ and GenClosureAsLocalTypeFunction cenv (cgbuf: CodeGenBuffer) eenv thisVars expr strip cloinfo.ilCloLambdas + let isRuntimeAsync, isRuntimeAsyncUnit, body = + match TryGetRuntimeAsyncReturn g body with + | Some info -> true, List.isEmpty info.TypeArgs, info.Body + | None -> false, false, body + + if isRuntimeAsync then + CheckRuntimeAsyncFreeVars g m cloinfo + + let eenvinner = + { eenvinner with + inRuntimeAsyncMethod = isRuntimeAsync + } + let ilCloBody = - CodeGenMethodForExpr cenv cgbuf.mgbuf (entryPointInfo, cloinfo.cloName, eenvinner, 1, None, body, Return) + let sequel = if isRuntimeAsyncUnit then discardAndReturnVoid else Return + CodeGenMethodForExpr cenv cgbuf.mgbuf (entryPointInfo, cloinfo.cloName, eenvinner, 1, None, body, sequel) + + let ilCloBody = + if isRuntimeAsync then + { ilCloBody with IsRuntimeAsync = true } + else + ilCloBody let ilCtorBody = mkILMethodBody (true, [], 8, nonBranchingInstrsToCode (mkCallBaseConstructor (g.ilg.typ_Object, [])), None, eenv.imports) @@ -7193,6 +7421,7 @@ and GenClosureAsLocalTypeFunction cenv (cgbuf: CodeGenBuffer) eenv thisVars expr mkILReturn ilCloFormalReturnTy, MethodBody.IL(InterruptibleLazy.FromValue ilCloBody) ) + |> fun mdef -> mdef.WithAsync(isRuntimeAsync) ] let cloTypeDefs = @@ -7223,8 +7452,28 @@ and GenClosureAsFirstClassFunction cenv (cgbuf: CodeGenBuffer) eenv thisVars m e let ilCloTypeRef = cloinfo.cloSpec.TypeRef + let isRuntimeAsync, isRuntimeAsyncUnit, body = + match TryGetRuntimeAsyncReturn g body with + | Some info -> true, List.isEmpty info.TypeArgs, info.Body + | None -> false, false, body + + if isRuntimeAsync then + CheckRuntimeAsyncFreeVars g m cloinfo + + let eenvinner = + { eenvinner with + inRuntimeAsyncMethod = isRuntimeAsync + } + let ilCloBody = - CodeGenMethodForExpr cenv cgbuf.mgbuf (entryPointInfo, cloinfo.cloName, eenvinner, 1, None, body, Return) + let sequel = if isRuntimeAsyncUnit then discardAndReturnVoid else Return + CodeGenMethodForExpr cenv cgbuf.mgbuf (entryPointInfo, cloinfo.cloName, eenvinner, 1, None, body, sequel) + + let ilCloBody = + if isRuntimeAsync then + { ilCloBody with IsRuntimeAsync = true } + else + ilCloBody let cloTypeDefs = GenClosureTypeDefs @@ -9878,6 +10127,14 @@ and GenMethodForBinding | h :: t -> [ h ], t, true | _ -> [], methLambdaVars, false + let isRuntimeAsync, isRuntimeAsyncUnit, methLambdaBody = + match TryGetRuntimeAsyncReturn g methLambdaBody with + | Some info -> true, List.isEmpty info.TypeArgs, info.Body + | None -> false, false, methLambdaBody + + if isRuntimeAsync then + checkLanguageFeatureError g.langVersion LanguageFeature.RuntimeAsync m + let nonUnitNonSelfMethodVars, body = BindUnitVars cenv.g (nonSelfMethodVars, paramInfos, methLambdaBody) @@ -9933,7 +10190,10 @@ and GenMethodForBinding else eenvForMeth - eenvForMeth + { eenvForMeth with + inRuntimeAsyncMethod = isRuntimeAsync + inInlineMethod = v.InlineInfo = ValInline.Always + } let tailCallInfo = [ @@ -9950,7 +10210,8 @@ and GenMethodForBinding // Discard the result on a 'void' return type. For a constructor just return 'void' let sequel = - if isUnitTy g returnTy then discardAndReturnVoid + if isRuntimeAsyncUnit then discardAndReturnVoid + elif isUnitTy g returnTy then discardAndReturnVoid elif isCtor then ReturnVoid else Return @@ -10020,6 +10281,9 @@ and GenMethodForBinding let hasPreserveSigImplFlag, hasSynchronizedImplFlag, hasNoInliningFlag, hasAggressiveInliningImplFlag, attrs = ComputeMethodImplAttribs cenv v attrs + if isRuntimeAsync && hasSynchronizedImplFlag then + error (Error(FSComp.SR.ilRuntimeAsyncSynchronizedMethod (), m)) + let attrsAppliedToGetterOrSetter, attrs = List.partition (fun (Attrib(_, _, _, _, isAppliedToGetterOrSetter, _, _)) -> isAppliedToGetterOrSetter) attrs @@ -10310,8 +10574,9 @@ and GenMethodForBinding .WithPInvoke(hasDllImport) .WithPreserveSig(hasPreserveSigImplFlag || hasPreserveSigNamedArg) .WithSynchronized(hasSynchronizedImplFlag) - .WithNoInlining(hasNoInliningFlag) .WithAggressiveInlining(hasAggressiveInliningImplFlag) + .WithAsync(isRuntimeAsync) + .WithNoInlining(hasNoInliningFlag) .With(isEntryPoint = isExplicitEntryPoint, securityDecls = secDecls) let mdef = @@ -13096,6 +13361,8 @@ let GetEmptyIlxGenEnv (g: TcGlobals) ccu = innerVals = [] sigToImplRemapInfo = [] (* "module remap info" *) withinSEH = false + inRuntimeAsyncMethod = false + inInlineMethod = false insideFinallyOrFaultHandler = false isInLoop = false initLocals = true diff --git a/src/Compiler/FSComp.txt b/src/Compiler/FSComp.txt index 13ad1864268..c75d041e7bb 100644 --- a/src/Compiler/FSComp.txt +++ b/src/Compiler/FSComp.txt @@ -1559,6 +1559,7 @@ featurePackageManagement,"package management" featureFromEndSlicing,"from-end slicing" featureNullnessChecking,"nullness checking" featureResumableStateMachines,"resumable state machines" +featureRuntimeAsync,"runtime async" featureStringInterpolation,"string interpolation" featureWitnessPassing,"witness passing for trait constraints in F# quotations" featureAdditionalImplicitConversions,"additional type-directed conversions" @@ -1816,3 +1817,8 @@ featureTypeArgumentDependencyOrdering,"ordering explicit type arguments by their 3915,tcTupleTypeExtensionTooManyElements,"Tuple type extensions are supported only for tuples of up to 7 elements, but this tuple type has %d elements. Extensions of larger tuples are not supported." 3916,tcOptimizeClosureIfNotInlinedRequiresInlineIfLambdaAndMultiArg,"The 'OptimizeClosureIfNotInlined' attribute requires 'InlineIfLambda' on a separately curried parameter of an inline function or method whose type is a curried F# function of arity 2 to 5." 3917,implMissingOptimizeClosureIfNotInlined,"The 'OptimizeClosureIfNotInlined' attribute is present in the signature but not the implementation." +3918,ilRuntimeAsyncSuspensionOutsideRuntimeAsync,"Runtime async suspension method '%s' may only be called from a runtime async method." +3919,ilRuntimeAsyncLocalUsedAfterSuspension,"A byref, byref-like, or pinned local '%s' cannot be used after a runtime async suspension." +3920,ilRuntimeAsyncStackAllocation,"Stack allocation is not permitted in a runtime async method." +3921,ilRuntimeAsyncSynchronizedMethod,"A runtime async method cannot use MethodImplOptions.Synchronized." +3922,ilRuntimeAsyncSequenceNotStaticallyKnown,"The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder." diff --git a/src/Compiler/FSharp.Compiler.Service.fsproj b/src/Compiler/FSharp.Compiler.Service.fsproj index b274796ff49..07dcf0c5530 100644 --- a/src/Compiler/FSharp.Compiler.Service.fsproj +++ b/src/Compiler/FSharp.Compiler.Service.fsproj @@ -377,6 +377,8 @@ + + @@ -449,6 +451,10 @@ + + + + @@ -459,6 +465,8 @@ + + diff --git a/src/Compiler/Facilities/LanguageFeatures.fs b/src/Compiler/Facilities/LanguageFeatures.fs index 17c5d6f2998..3fa4e32b427 100644 --- a/src/Compiler/Facilities/LanguageFeatures.fs +++ b/src/Compiler/Facilities/LanguageFeatures.fs @@ -19,6 +19,7 @@ type LanguageFeature = | PackageManagement | FromEndSlicing | ResumableStateMachines + | RuntimeAsync | WitnessPassing | AdditionalTypeDirectedConversions | StringInterpolation @@ -200,6 +201,7 @@ type LanguageVersion(versionText, ?disabledFeaturesArray: LanguageFeature array) // previewVersion is only when "preview" is specified explicitly in project files and users also need a preview SDK // F# preview + LanguageFeature.RuntimeAsync, previewVersion LanguageFeature.RecordConstructorSyntax, previewVersion // Allow constructing a record via its all-fields constructor, e.g. MyRecord(a, b) // Unfinished features that still need work before they can be assigned a release language version. @@ -298,6 +300,7 @@ type LanguageVersion(versionText, ?disabledFeaturesArray: LanguageFeature array) | LanguageFeature.FromEndSlicing -> FSComp.SR.featureFromEndSlicing () | LanguageFeature.NullnessChecking -> FSComp.SR.featureNullnessChecking () | LanguageFeature.ResumableStateMachines -> FSComp.SR.featureResumableStateMachines () + | LanguageFeature.RuntimeAsync -> FSComp.SR.featureRuntimeAsync () | LanguageFeature.WitnessPassing -> FSComp.SR.featureWitnessPassing () | LanguageFeature.AdditionalTypeDirectedConversions -> FSComp.SR.featureAdditionalImplicitConversions () | LanguageFeature.StringInterpolation -> FSComp.SR.featureStringInterpolation () diff --git a/src/Compiler/Facilities/LanguageFeatures.fsi b/src/Compiler/Facilities/LanguageFeatures.fsi index ce37f2beeda..b77e6b0de4c 100644 --- a/src/Compiler/Facilities/LanguageFeatures.fsi +++ b/src/Compiler/Facilities/LanguageFeatures.fsi @@ -9,6 +9,7 @@ type LanguageFeature = | PackageManagement | FromEndSlicing | ResumableStateMachines + | RuntimeAsync | WitnessPassing | AdditionalTypeDirectedConversions | StringInterpolation diff --git a/src/Compiler/Optimize/LowerAsyncSeq.fs b/src/Compiler/Optimize/LowerAsyncSeq.fs new file mode 100644 index 00000000000..e844c42b571 --- /dev/null +++ b/src/Compiler/Optimize/LowerAsyncSeq.fs @@ -0,0 +1,269 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.LowerAsyncSeq + +open System.Collections.Generic +open FSharp.Compiler +open FSharp.Compiler.AbstractIL.IL +open FSharp.Compiler.AccessibilityLogic +open FSharp.Compiler.DiagnosticsLogger +open FSharp.Compiler.InfoReader +open FSharp.Compiler.LowerSequenceExpressions +open FSharp.Compiler.MethodCalls +open FSharp.Compiler.RuntimeAsync +open FSharp.Compiler.RuntimeAsyncAnalysis +open FSharp.Compiler.RuntimeAsyncExceptionRewrite +open FSharp.Compiler.Syntax +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.Text +open FSharp.Compiler.TypedTree +open FSharp.Compiler.TypedTreeBasics +open FSharp.Compiler.TypedTreeOps +open FSharp.Compiler.TypeRelations + +type Lowering = + | Evaluate of Expr + | Sequence of ((ValRef * ValRef * ValRef * ValRef list * Expr * Expr * Expr * TType * range) * ValRef option) + +let private rewrite (g: TcGlobals) transform = + RewriteExpr + { + PreIntercept = + Some(fun _ expr -> + match expr with + | Seq g _ -> Some expr + | _ when TryGetRuntimeAsyncSequence g expr |> Option.isSome -> Some expr + | _ -> transform expr) + PreInterceptBinding = None + PostTransform = (fun _ -> None) + RewriteQuotations = false + StackGuard = StackGuard("LowerAsyncSeq") + } + +let private rewriteCancellationToken (g: TcGlobals) tokenExpr = + RewriteExpr + { + PreIntercept = + Some(fun _ expr -> + match expr with + | ValApp g g.cgh__runtimeAsyncSequenceCancellationToken_vref ([], [ _ ], _) -> Some tokenExpr + | Expr.App(Expr.Val(value, _, _), _, [], [ _ ], _) -> + if valRefEq g value g.cgh__runtimeAsyncSequenceCancellationToken_vref then + Some tokenExpr + else + None + | _ -> None) + PreInterceptBinding = None + PostTransform = (fun _ -> None) + RewriteQuotations = false + StackGuard = StackGuard("LowerAsyncSeqCancellationToken") + } + +let private prepareMethods (g: TcGlobals) amap m (stateVars: ValRef list) generateNext close cancellationTokenValRef = + for value in stateVars do + if value.Deref.IsPinning || isByrefTy g value.Type || isByrefLikeTy g m value.Type then + error (Error(FSComp.SR.ilRuntimeAsyncSequenceNotStaticallyKnown (), value.Range)) + + let resultVar, resultExpr = + mkMutableCompGenLocal m "__sequenceStepResult" g.int32_ty + + let stepExit = generateCodeLabel () + + let body = + generateNext + |> rewrite g (function + | Expr.Op(TOp.Return, [], [ Expr.Const(Const.Int32 status, _, _) ], range) when status = 0 || status = 1 -> + Some( + mkCompGenSequential + range + (mkValSet range (mkLocalValRef resultVar) (mkInt32 g range status)) + (Expr.Op(TOp.Goto stepExit, [], [], range)) + ) + | _ -> None) + + let body = + match cancellationTokenValRef with + | Some cancellationTokenValRef -> + let wrap, cancellationTokenAddress, _, _ = + mkExprAddrOfExpr g true false NeverMutates (exprForValRef m cancellationTokenValRef) None m + + let cancellationCheck = + callNonOverloadedILMethod g amap m "ThrowIfCancellationRequested" g.system_CancellationToken_ty [ cancellationTokenAddress ] + |> wrap + + mkCompGenSequential m cancellationCheck body + | None -> body + + // Yield exits leave the protected body without running fault cleanup. + let body = mkCompGenSequential m body (mkLabelled m stepExit (mkUnit g m)) + + let labels = Dictionary() + + let relabel label = + match labels.TryGetValue label with + | true, target -> target + | _ -> + let target = generateCodeLabel () + labels.Add(label, target) + target + + let closeOnFailure = + copyExpr g CloneAll close + |> rewrite g (function + | Expr.Op(TOp.Label label, tys, args, range) -> Some(Expr.Op(TOp.Label(relabel label), tys, args, range)) + | Expr.Op(TOp.Goto label, tys, args, range) -> Some(Expr.Op(TOp.Goto(relabel label), tys, args, range)) + | _ -> None) + + let filterVar, _ = mkLocal m "__sequenceFilter" g.exn_ty + let errorVar, errorExpr = mkLocal m "__sequenceError" g.exn_ty + + let ediTy = + g.system_ExceptionDispatchInfo_ty + |> Option.defaultWith (fun () -> error (Error(FSComp.SR.ilRuntimeAsyncSequenceNotStaticallyKnown (), m))) + + let callEdi name resultTy (objArgs: Expr list) (args: Expr list) = + let signature = List.map (tyOfExpr g) args @ [ resultTy ] + + let methodInfo = + TryFindIntrinsicMethInfo (InfoReader(g, amap)) m AccessorDomain.AccessibleFromEverywhere name ediTy + |> List.tryFind (fun methodInfo -> + let methodSignature = + List.concat (methodInfo.GetParamTypes(amap, m, [])) + @ [ methodInfo.GetFSharpReturnType(amap, m, []) ] + + methodInfo.IsInstance = not objArgs.IsEmpty + && methodSignature.Length = signature.Length + && List.forall2 (typeEquiv g) methodSignature signature) + |> Option.defaultWith (fun () -> error (Error(FSComp.SR.ilRuntimeAsyncSequenceNotStaticallyKnown (), m))) + + MakeMethInfoCall amap m methodInfo [] (objArgs @ args) None + + let dispatchVar, dispatchExpr = mkMutableCompGenLocal m "__sequenceException" ediTy + // Keep the exception out of every continuation when cleanup can suspend. + let preserveDispatch = RuntimeAsyncAnalyzer(g).ContainsSuspension close + + let guardedBody = + mkTryWith + g + (body, + filterVar, + mkTrue g m, + errorVar, + mkCompGenSequential + m + (mkValSet m (mkLocalValRef dispatchVar) (callEdi "Capture" ediTy [] [ errorExpr ])) + (mkValSet m (mkLocalValRef resultVar) (mkInt32 g m -1)), + m, + g.unit_ty, + DebugPointAtTry.No, + DebugPointAtWith.No) + + let failure = + mkCompGenSequential + m + closeOnFailure + (mkCompGenSequential m (callEdi "Throw" g.unit_ty [ dispatchExpr ] []) (mkDefault (m, g.bool_ty))) + + let failure = + if preserveDispatch then + mkTryFinally + g + (failure, + mkValSet m (mkLocalValRef dispatchVar) (mkDefault (m, ediTy)), + m, + g.bool_ty, + DebugPointAtTry.No, + DebugPointAtFinally.No) + else + failure + + let body = + let body = + mkCompGenSequential + m + guardedBody + (mkCond + DebugPointAtBinding.NoneAtInvisible + m + g.bool_ty + (mkILAsmCeq g m resultExpr (mkInt32 g m -1)) + failure + (mkILAsmCeq g m resultExpr (mkInt32 g m 1))) + + let body = + if preserveDispatch then + body + else + mkCompGenLet m dispatchVar (mkDefault (m, ediTy)) body + + mkCompGenLet m resultVar (mkInt32 g m 0) body + + let envelope marker typeArgs body = + for value in GetRuntimeAsyncNonPreservableUses g body do + error (Error(FSComp.SR.ilRuntimeAsyncLocalUsedAfterSuspension value.DisplayName, value.Range)) + + let body = RewriteRuntimeAsyncExceptionHandlers g body + primMkApp (exprForValRef m marker, marker.Type) typeArgs [ body ] m + + let stateVars = + if preserveDispatch then + mkLocalValRef dispatchVar :: stateVars + else + stateVars + + stateVars, + envelope g.cgh__runtimeAsyncReturnValueTask_vref [ g.bool_ty ] body, + envelope g.cgh__runtimeAsyncReturnValueTaskUnit_vref [] close + +let TryConvert g amap (expr: Expr) = + let m = expr.Range + let recipe, elementTy = TryGetRuntimeAsyncSequence g expr |> Option.get + + let rebuild recipe = + let value = g.cgh__runtimeAsyncSequence_vref + primMkApp (exprForValRef m value, value.Type) [ elementTy ] [ recipe ] m + + match stripDebugPoints recipe with + | Expr.Let(binding, body, range, _) -> Some(Evaluate(mkLetBind range binding (rebuild body))) + | Expr.Sequential(first, rest, kind, range) -> Some(Evaluate(Expr.Sequential(first, rebuild rest, kind, range))) + | Expr.Lambda(_, _, _, [ parameter ], _, _, _) as recipe when isUnitTy g parameter.Type -> + let cancellationTokenVar, cancellationTokenExpr = + mkMutableCompGenLocal m "__cancellationToken" g.system_CancellationToken_ty + + // Unwrap only the recipe's result spine, never nested sequence inputs. + let rec stripRoot expr = + match expr with + | Seq g (inner, _) -> inner + | Expr.Let(binding, rest, range, _) -> mkLetBind range binding (stripRoot rest) + | Expr.Sequential(first, rest, kind, range) -> Expr.Sequential(first, stripRoot rest, kind, range) + | Expr.DebugPoint(point, inner) -> Expr.DebugPoint(point, stripRoot inner) + | _ -> expr + + let body = + MakeApplicationAndBetaReduce g (recipe, tyOfExpr g recipe, [], [ mkUnit g m ], m) + |> rewriteCancellationToken g cancellationTokenExpr + + let root = mkCallSeq g m elementTy (stripRoot body) + + match ConvertSequenceExprToObject g amap true root with + | Some(next, pc, current, stateVars, generateNext, close, checkClose, elementTy, range) when + not ((freeInExpr CollectLocals generateNext).FreeLocals.Contains next.Deref) + -> + let stateVars, generateNext, close = + prepareMethods + g + amap + range + (mkLocalValRef cancellationTokenVar :: stateVars) + generateNext + close + (Some(mkLocalValRef cancellationTokenVar)) + + Some( + Sequence( + (next, pc, current, stateVars, generateNext, close, checkClose, elementTy, range), + Some(mkLocalValRef cancellationTokenVar) + ) + ) + | _ -> None + | _ -> None diff --git a/src/Compiler/Optimize/LowerAsyncSeq.fsi b/src/Compiler/Optimize/LowerAsyncSeq.fsi new file mode 100644 index 00000000000..192e7fb1618 --- /dev/null +++ b/src/Compiler/Optimize/LowerAsyncSeq.fsi @@ -0,0 +1,14 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.LowerAsyncSeq + +open FSharp.Compiler.Import +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.Text +open FSharp.Compiler.TypedTree + +type Lowering = + | Evaluate of Expr + | Sequence of ((ValRef * ValRef * ValRef * ValRef list * Expr * Expr * Expr * TType * range) * ValRef option) + +val TryConvert: g: TcGlobals -> amap: ImportMap -> expr: Expr -> Lowering option diff --git a/src/Compiler/Optimize/LowerLocalMutables.fs b/src/Compiler/Optimize/LowerLocalMutables.fs index 532da5ad19d..5ab29e065b1 100644 --- a/src/Compiler/Optimize/LowerLocalMutables.fs +++ b/src/Compiler/Optimize/LowerLocalMutables.fs @@ -6,6 +6,7 @@ open Internal.Utilities.Collections open Internal.Utilities.Library.Extras open FSharp.Compiler open FSharp.Compiler.DiagnosticsLogger +open FSharp.Compiler.RuntimeAsync open FSharp.Compiler.TypedTree open FSharp.Compiler.TypedTreeBasics open FSharp.Compiler.TypedTreeOps @@ -105,7 +106,13 @@ let DecideExpr cenv exprF noInterceptF z expr = DecideExprOp exprF noInterceptF z expr (c, tyargs, args) | _ -> - noInterceptF z expr + match TryGetRuntimeAsyncReturn g expr with + | Some info -> + let z = Zset.union z (DecideEscapes [] info.Body) + exprF z info.Body + | None -> + noInterceptF z expr + /// Find all the mutable locals that escape a binding let DecideBinding cenv z (TBind(v, expr, _m) as bind) = @@ -196,4 +203,3 @@ let TransformImplFile g amap implFile = RewriteQuotations = true StackGuard = StackGuard("AutoboxRewriteStackGuardDepth") } - diff --git a/src/Compiler/Optimize/LowerSequences.fs b/src/Compiler/Optimize/LowerSequences.fs index e8c81b96617..04cfb968804 100644 --- a/src/Compiler/Optimize/LowerSequences.fs +++ b/src/Compiler/Optimize/LowerSequences.fs @@ -95,7 +95,7 @@ let (|SeqElemTy|_|) g amap m ty = /// The analysis is done in two phases. The first phase determines the state variables and state labels (as Abstract IL code labels). /// We then allocate an integer pc for each state label and proceed with the second phase, which builds two related state machine /// expressions: one for 'MoveNext' and one for 'Dispose'. -let ConvertSequenceExprToObject g amap overallExpr = +let ConvertSequenceExprToObject g amap isRuntimeAsync overallExpr = /// Implement a decision to represent a 'let' binding as a non-escaping local variable (rather than a state machine variable) let RepresentBindingAsLocal (bind: Binding) resBody m = if verbose then @@ -339,6 +339,17 @@ let ConvertSequenceExprToObject g amap overallExpr = | _ -> None + | (ValApp g (FSharp.Compiler.TcGlobals.ValRefForIntrinsic g.seq_trywith_info) ([ elementTy ], [ _source; _filter; _handler ], m) as tryWithExpr) + when isRuntimeAsync -> + // Keep the try/with sequence as an ordinary nested source. Its exception and disposal + // semantics are implemented by EnumerateTryWith; the surrounding producer remains + // statically lowered. + let value, valueExpr = mkCompGenLocal m "value" elementTy + let body = mkCallSeqSingleton g m elementTy valueExpr + let body = mkLambdaNoType g m value body + let nestedFor = mkCallSeqCollect g m elementTy elementTy body tryWithExpr + ConvertSeqExprCode isWholeExpr isTailCall noDisposeContinuationLabel currentDisposeContinuationLabel nestedFor + | SeqEmpty g m -> // printfn "found Seq.empty" Some { phase2 = (fun _ -> @@ -721,4 +732,3 @@ let ConvertSequenceExprToObject g amap overallExpr = // printfn "FAILED: no compilation found! %s" (stringOfRange m) None | _ -> None - diff --git a/src/Compiler/Optimize/LowerSequences.fsi b/src/Compiler/Optimize/LowerSequences.fsi index 18e94c98e7e..f1778b2fcfe 100644 --- a/src/Compiler/Optimize/LowerSequences.fsi +++ b/src/Compiler/Optimize/LowerSequences.fsi @@ -23,6 +23,7 @@ val callNonOverloadedILMethod: val ConvertSequenceExprToObject: g: TcGlobals -> amap: ImportMap -> + isRuntimeAsync: bool -> overallExpr: Expr -> (ValRef * ValRef * ValRef * ValRef list * Expr * Expr * Expr * TType * range) option diff --git a/src/Compiler/Optimize/Optimizer.fs b/src/Compiler/Optimize/Optimizer.fs index 03066992864..436401643f7 100644 --- a/src/Compiler/Optimize/Optimizer.fs +++ b/src/Compiler/Optimize/Optimizer.fs @@ -15,6 +15,9 @@ open FSharp.Compiler.CompilerGlobalState open FSharp.Compiler.DelegateForwarding open FSharp.Compiler.DiagnosticsLogger open FSharp.Compiler.Features +open FSharp.Compiler.RuntimeAsync +open FSharp.Compiler.RuntimeAsyncAnalysis +open FSharp.Compiler.RuntimeAsyncExceptionRewrite open FSharp.Compiler.Text.Range open FSharp.Compiler.Syntax.PrettyNaming open FSharp.Compiler.Syntax @@ -498,6 +501,13 @@ type IncrementalOptimizationEnv = /// definition-site replay finds no match; this call site does, letting the correct extension be honored /// instead of degrading to the throwing dynamic stub. None outside the debug-specialization path. debugInlineCallSite: range option + + /// Indicates that the expression being optimized is the body of a runtime-async marker. + runtimeAsyncContext: bool + + /// Runtime async diagnostics must only be reported once across optimization passes. + runtimeAsyncReportedRanges: HashSet + } static member Empty = @@ -512,7 +522,9 @@ type IncrementalOptimizationEnv = methEnv = { pipelineCount = 0 } referencedCcus = [] earlierImplFileSignatures = [] - debugInlineCallSite = None } + debugInlineCallSite = None + runtimeAsyncContext = false + runtimeAsyncReportedRanges = HashSet() } override x.ToString() = "" @@ -578,6 +590,12 @@ let UnknownValInfo = { ValExprInfo=UnknownValue; ValMakesNoCriticalTailcalls=fal let mkValInfo info (v: Val) = { ValExprInfo=info.Info; ValMakesNoCriticalTailcalls= v.MakesNoCriticalTailcalls } +let rec private RestoreRuntimeAsyncPinningInValInfo = function + | CurriedLambdaValue (_, _, _, expr, _) -> RestoreRuntimeAsyncPinning expr + | ValValue (_, info) + | SizeValue (_, info) -> RestoreRuntimeAsyncPinningInValInfo info + | _ -> () + (* Bind a value *) let BindInternalLocalVal cenv (v: Val) vval env = let vval = if v.IsMutable then UnknownValInfo else vval @@ -689,6 +707,10 @@ let TryGetInfoForNonLocalEntityRef env (nleref: NonLocalEntityRef) = let GetInfoForNonLocalVal cenv env (vref: ValRef) = let g = cenv.g + let restorePinning info = + if vref.ShouldInline || vref.InlineIfLambda then + RestoreRuntimeAsyncPinningInValInfo info.ValExprInfo + info if vref.IsDispatchSlot then UnknownValInfo @@ -697,13 +719,13 @@ let GetInfoForNonLocalVal cenv env (vref: ValRef) = match TryGetInfoForNonLocalEntityRef env vref.nlr.EnclosingEntity.nlr with | Some structInfo -> match structInfo.ValInfos.TryFind vref with - | Some ninfo -> snd ninfo + | Some ninfo -> restorePinning (snd ninfo) | None -> //dprintn ("\n\n*** Optimization info for value "+n+" from module "+(full_name_of_nlpath smv)+" not found, module contains values: "+String.concat ", " (NameMap.domainL structInfo.ValInfos)) //System.Diagnostics.Debug.Assert(false, sprintf "Break for module %s, value %s" (full_name_of_nlpath smv) n) if g.compilingFSharpCore then match structInfo.ValInfos.TryFindForFslib (g, vref) with - | true, ninfo -> snd ninfo + | true, ninfo -> restorePinning (snd ninfo) | _ -> UnknownValInfo else UnknownValInfo @@ -1799,7 +1821,7 @@ let AddDirectDelegateTargetToDontInlineSet cenv env (slotsig: SlotSig) tmvs body else env -let TryEliminateBinding cenv _env bind e2 _m = +let TryEliminateBinding cenv env bind e2 _m = let g = cenv.g let (TBind(vspec1, e1, spBind)) = bind @@ -1832,8 +1854,55 @@ let TryEliminateBinding cenv _env bind e2 _m = | _ -> None let (DebugPoints(e2, recreate0)) = e2 + // Effect-free projections can still throw before the source has been evaluated. + let rec canMovePast expr = + match stripDebugPoints expr with + | Expr.Const _ -> true + | Expr.Val(vref, _, _) -> + not vref.IsMutable && not vref.IsTypeFunction && + (match vref.ValReprInfo with + | None -> true + | Some info -> info.NumCurriedArgs > 0) + | Expr.App(f, _, _, [], _) -> canMovePast f + | _ -> false + + let rec inlineAwaitInput insideAwait expr = + cenv.stackGuard.Guard(fun () -> + let (DebugPoints(expr, recreate)) = expr + let result = + match expr with + | Expr.Val(VRefLocal value, _, _) when insideAwait && valEq vspec1 value -> Some e1 + | Expr.App(f, fty, tyargs, args, m) -> + inlineAwaitArgs insideAwait [] (f :: args) + |> Option.map (fun args -> Expr.App(List.head args, fty, tyargs, List.tail args, m)) + | Expr.Op((TOp.ILCall _ | TOp.ILAsm _ | TOp.Coerce | TOp.Tuple _ | TOp.Recd _ | TOp.UnionCase _) as op, tyargs, args, m) -> + inlineAwaitArgs (insideAwait || IsRuntimeAsyncSuspensionExpr g expr) [] args + |> Option.map (fun args -> Expr.Op(op, tyargs, args, m)) + | Expr.Let(TBind(v, rhs, sp), rest, m, _) when IsUniqueUse vspec1 [rest] -> + inlineAwaitInput insideAwait rhs + |> Option.map (fun rhs -> mkLetBind m (TBind(v, rhs, sp)) rest) + | Expr.Sequential(first, rest, NormalSeq, m) when IsUniqueUse vspec1 [rest] -> + inlineAwaitInput insideAwait first + |> Option.map (fun first -> Expr.Sequential(first, rest, NormalSeq, m)) + | _ -> None + result |> Option.map recreate) + + and inlineAwaitArgs insideAwait prefix args = + match args with + | arg :: rest -> + match inlineAwaitInput insideAwait arg with + | Some arg when IsUniqueUse vspec1 (List.rev prefix @ rest) -> Some(List.rev prefix @ (arg :: rest)) + | _ when canMovePast arg -> inlineAwaitArgs insideAwait (arg :: prefix) rest + | _ -> None + | [] -> None + + let (|ImmediateRuntimeAwait|_|) expr = + if env.runtimeAsyncContext then inlineAwaitInput false expr else None + match e2 with + | ImmediateRuntimeAwait expr -> Some(expr |> recreate0) + // Immediate consumption of value as itself 'let x = e in x' | Expr.Val (VRefLocal vspec2, _, _) when IsUniqueUse vspec2 [] -> @@ -2628,6 +2697,9 @@ let rec OptimizeExpr cenv (env: IncrementalOptimizationEnv) expr = let env = { env with disableMethodSplitting = env.disableMethodSplitting || isStateMachineE } + let runtimeAsyncReturn = TryGetRuntimeAsyncReturn g expr + let runtimeAsyncSequence = TryGetRuntimeAsyncSequence g expr + match expr with // treat the common linear cases to avoid stack overflows, using an explicit continuation | LinearOpExpr _ @@ -2672,7 +2744,30 @@ let rec OptimizeExpr cenv (env: IncrementalOptimizationEnv) expr = | Expr.Op (op, tyargs, args, m) -> OptimizeExprOp cenv env (op, tyargs, args, m) - | Expr.App (f, fty, tyargs, argsl, m) -> + | Expr.App (f, fty, tyargs, _, m) when runtimeAsyncSequence.IsSome -> + let recipe, _ = runtimeAsyncSequence.Value + let recipeCenv = + { cenv with + settings = { cenv.settings with alwaysInline = true; localOptUser = Some true } } + let recipeR, recipeInfo = + OptimizeExpr recipeCenv { env with runtimeAsyncContext = true; disableMethodSplitting = true } recipe + Expr.App(f, fty, tyargs, [recipeR], m), + { recipeInfo with HasEffect = true; Info = UnknownValue } + + | Expr.App (f, fty, tyargs, _, m) when runtimeAsyncReturn.IsSome -> + let info = runtimeAsyncReturn.Value + let bodyR, bodyInfo = OptimizeExpr cenv { env with runtimeAsyncContext = true } info.Body + for v in GetRuntimeAsyncNonPreservableUses g bodyR do + if env.runtimeAsyncReportedRanges.Add v.Range then + errorR(Error(FSComp.SR.ilRuntimeAsyncLocalUsedAfterSuspension(RichText.mkText v.DisplayName), v.Range)) + + let bodyR = RewriteRuntimeAsyncExceptionHandlers g bodyR + Expr.App(f, fty, tyargs, [ bodyR ], m), + { bodyInfo with + HasEffect = true + Info = UnknownValue } + + | Expr.App (f, fty, tyargs, argsl, m) -> match expr with | DelegateInvokeExpr g (delInvokeRef, delInvokeTy, tyargs, delExpr, delInvokeArg, m) -> OptimizeFSharpDelegateInvoke cenv env (delInvokeRef, delExpr, delInvokeTy, tyargs, delInvokeArg, m) @@ -2751,7 +2846,11 @@ and OptimizeMethods cenv env baseValOpt methods = OptimizeList (OptimizeMethod cenv env baseValOpt) methods and OptimizeMethod cenv env baseValOpt (TObjExprMethod(slotsig, attribs, tps, vs, e, m) as tmethod) = - let env = {env with latestBoundId=Some tmethod.Id; functionVal = None} + let env = + { env with + latestBoundId = Some tmethod.Id + functionVal = None + runtimeAsyncContext = false } let env = BindTyparsToUnknown tps env let env = BindInternalValsToUnknown cenv vs env let env = Option.foldBack (BindInternalValToUnknown cenv) baseValOpt env @@ -3356,14 +3455,17 @@ and OptimizeTraitCall cenv env (traitInfo, args, m) = and CopyExprForInlining cenv isInlineIfLambda expr (m: range) = let g = cenv.g + // 'InlineIfLambda' doesn't erase ranges, e.g. if the lambda is user code. - if isInlineIfLambda then - expr - |> copyExpr g CloneAll - else - expr - |> copyExpr g CloneAllAndMarkExprValsAsCompilerGenerated - |> remarkExpr m + let result = + if isInlineIfLambda then + expr |> copyExpr g CloneAll + else + expr + |> copyExpr g CloneAllAndMarkExprValsAsCompilerGenerated + |> remarkExpr m + + result /// Make optimization decisions once we know the optimization information /// for a value @@ -3758,9 +3860,52 @@ and TryDevirtualizeApplication cenv env (f, tyargs, args, m) = /// Attempt to inline an application of a known value at callsites and TryInlineApplication cenv env finfo (valExpr: Expr) (tyargs: TType list, args: Expr list, m) = let g = cenv.g + let getRuntimeAsyncLambdaBody (vref: ValRef) = + TryGetInfoForVal cenv env vref + |> Option.map (fun info -> stripValue info.ValExprInfo) + |> Option.bind (function + | CurriedLambdaValue (_, _, _, body, _) -> Some body + | _ -> None) + + let inlineBody = + match stripValue finfo.Info with + | CurriedLambdaValue (_, _, _, body, _) -> Some body + | _ -> None + + let runtimeAsyncAnalyzer = + if g.langVersion.SupportsFeature LanguageFeature.RuntimeAsync then + Some(RuntimeAsyncAnalyzer(g, getRuntimeAsyncLambdaBody)) + else + None + + let containsRuntimeAsyncFragment expr = + match runtimeAsyncAnalyzer with + | Some analyzer -> analyzer.ContainsFragment expr + | None -> false + + let reoptimizeRuntimeAsync reduced = + let reduced = InlineRuntimeAsyncLambdaArgument g containsRuntimeAsyncFragment reduced + + let reduced = + if containsRuntimeAsyncFragment reduced then + fst (OptimizeExpr cenv { env with runtimeAsyncContext = true } reduced) + else + reduced + + InlineRuntimeAsyncLambdaArgument g containsRuntimeAsyncFragment reduced + + let mustInlineRuntimeAsync = + match runtimeAsyncAnalyzer, stripExpr valExpr with + | Some analyzer, Expr.Val(vref, _, _) -> + ShouldForceRuntimeAsyncApplication analyzer env.runtimeAsyncContext vref inlineBody args + | _ -> false match cenv.settings.alwaysInline, stripExpr valExpr with - | false, Expr.Val(vref, _, _) when vref.ShouldInline && not (shouldForceInlineInDebug cenv env vref) -> + | alwaysInline, Expr.Val(vref, _, _) + when mustInlineRuntimeAsync + || (not alwaysInline + && vref.ShouldInline + && not (shouldForceInlineInDebug cenv env vref)) -> let hasNoTraits = let tps, _ = tryDestForallTy g vref.Type GetTraitConstraintInfosOfTypars g tps |> List.isEmpty @@ -3779,19 +3924,39 @@ and TryInlineApplication cenv env finfo (valExpr: Expr) (tyargs: TType list, arg // so route those through the specialization path which inlines the body. let isHiddenBySignature = cenv.signatureHidingInfo.HiddenVals.Contains vref.Deref let canCallDirectly = + not mustInlineRuntimeAsync && (cenv.optimizing || (vref.Accessibility.IsPublic && not isHiddenBySignature)) && (hasNoTraits || (allTyargsAreBareTypars && vref.ValReprInfo.IsSome)) - let argsR = args |> List.map (OptimizeExpr cenv env >> fst) + let argEnv = + if mustInlineRuntimeAsync then + { env with runtimeAsyncContext = true } + else + env + + let argsR = args |> List.map (OptimizeExpr cenv argEnv >> fst) let info = { TotalSize = 1; FunctionSize = 1; HasEffect = true; MightMakeCriticalTailcall = false; Info = UnknownValue } + let reduceRuntimeAsyncApplication specLambdaR specLambdaTy = + let reduced = MakeApplicationAndBetaReduce g (specLambdaR, specLambdaTy, [], argsR, m) + let reduced = + match reduced with + | Expr.Let(bind, body, _, _) -> fst (TryEliminateLet cenv env bind body m) + | _ -> reduced + Some(reoptimizeRuntimeAsync reduced, info) if canCallDirectly then Some(mkApps g ((exprForValRef m vref, vref.Type), [tyargs], argsR, m), info) else let origFinfo = GetInfoForVal cenv env m vref - match stripValue origFinfo.ValExprInfo with - | CurriedLambdaValue(origLambdaId, _, _, origLambda, origLambdaTy) -> + let lambdaInfo = + match stripValue finfo.Info, stripValue origFinfo.ValExprInfo with + | (CurriedLambdaValue _ as info), _ + | _, (CurriedLambdaValue _ as info) -> Some info + | _ -> None + + match lambdaInfo with + | Some(CurriedLambdaValue(origLambdaId, _, _, origLambda, origLambdaTy)) -> let f2R = CopyExprForInlining cenv true origLambda m let specLambda = MakeApplicationAndBetaReduce g (f2R, origLambdaTy, [tyargs], [], m) let specLambdaTy = tyOfExpr g specLambda @@ -3830,7 +3995,10 @@ and TryInlineApplication cenv env finfo (valExpr: Expr) (tyargs: TType list, arg | None -> true if not canSpecialize then - None else + if mustInlineRuntimeAsync then + errorR(Error(FSComp.SR.optFailedToInlineValue(RichText.mkText vref.LogicalName), m)) + None + else let specLambdaR = if allTyargsAreConcrete then @@ -3838,13 +4006,25 @@ and TryInlineApplication cenv env finfo (valExpr: Expr) (tyargs: TType list, arg | Some (_, body) -> copyExpr g CloneAll body | None -> - let existingTypes = defaultArg (Map.tryFind origLambdaId env.dontInline) [] - let env = { env with dontInline = Map.add origLambdaId (specLambdaTy :: existingTypes) env.dontInline; debugInlineCallSite = Some m } + let existingTypes = defaultArg (Map.tryFind origLambdaId argEnv.dontInline) [] + let env = { argEnv with dontInline = Map.add origLambdaId (specLambdaTy :: existingTypes) argEnv.dontInline; debugInlineCallSite = Some m } let specLambdaR, _ = OptimizeExpr cenv env specLambda cenv.specializedInlineVals.Add(origLambdaId, (specLambdaTy, specLambdaR)) specLambdaR else - let specLambdaR, _ = OptimizeExpr cenv { env with dontInline = Map.add origLambdaId [] env.dontInline; debugInlineCallSite = Some m } specLambda + let specLambdaR, _ = + OptimizeExpr + cenv + { argEnv with + dontInline = Map.add origLambdaId [] argEnv.dontInline + debugInlineCallSite = Some m } + specLambda + specLambdaR + + let specLambdaR = + if mustInlineRuntimeAsync then + remarkExpr m specLambdaR + else specLambdaR // Abstract the specialized lambda over its free typars so IlxGen emits a static @@ -3875,7 +4055,8 @@ and TryInlineApplication cenv env finfo (valExpr: Expr) (tyargs: TType list, arg || capturedVals |> List.exists (fun v -> v.IsMutable) if not (List.isEmpty capturedVals) && cannotLiftCapturedVals then - Some(MakeApplicationAndBetaReduce g (specLambdaR, specLambdaTy, [], argsR, m), info) else + reduceRuntimeAsyncApplication specLambdaR specLambdaTy + else let debugValName = $"<{vref.LogicalName}>__debug" @@ -3898,39 +4079,44 @@ and TryInlineApplication cenv env finfo (valExpr: Expr) (tyargs: TType list, arg check specLambdaTy if freeTyparsNeedWitnesses && specArgsHaveByref then - None else - - // Static method path (no witnesses needed): abstract over free typars so IlxGen emits - // a method with flattened arguments rather than a closure that wraps args in Tuple<>. - // Closure path (witnesses needed, no byref): keep the body as-is; witnesses from the - // enclosing scope flow through the closure, so no typar abstraction is needed. - let debugValTy, debugValBody, valReprInfo, typeInstForCall, capturedArgs = - if not freeTyparsNeedWitnesses then - let liftedBody, liftedTy = mkMultiLambdasCore g m capturedArgGroups (specLambdaR, specLambdaTy) - let ty = mkForallTyIfNeeded freeTypars liftedTy - let body = mkTypeLambda m freeTypars (liftedBody, liftedTy) - let argInfos, retInfo = - match vref.ValReprInfo with - | Some(ValReprInfo(_, argInfos, retInfo)) -> argInfos, retInfo - | None -> - let (ValReprInfo(_, a, r)) = - InferValReprInfoOfExpr g AllowTypeDirectedDetupling.No specLambdaTy [] [] specLambdaR - a, r - let capturedArgInfos = - capturedArgGroups - |> List.map (List.map (fun (v: Val) -> { ValReprInfo.unnamedTopArg1 with Name = Some v.Id })) - let reprInfo = ValReprInfo(ValReprInfo.InferTyparInfo freeTypars, capturedArgInfos @ argInfos, retInfo) - ty, body, Some reprInfo, [List.map mkTyparTy freeTypars], List.map (mkRefTupledVars g m) capturedArgGroups + if mustInlineRuntimeAsync then + errorR(Error(FSComp.SR.optFailedToInlineValue(RichText.mkText vref.LogicalName), m)) + None + else + if mustInlineRuntimeAsync then + reduceRuntimeAsyncApplication specLambdaR specLambdaTy else - specLambdaTy, specLambdaR, None, [], [] - - let debugVal = - Construct.NewVal(debugValName, m, None, debugValTy, Immutable, true, valReprInfo, taccessPublic, ValNotInRecScope, None, - NormalVal, [], ValInline.InlinedDefinition, XmlDoc.Empty, true, false, false, false, false, false, None, - ParentNone) - - let callExpr = mkApps g ((exprForVal m debugVal, debugValTy), typeInstForCall, capturedArgs @ argsR, m) - Some(mkCompGenLet m debugVal debugValBody callExpr, info) + // Static method path (no witnesses needed): abstract over free typars so IlxGen emits + // a method with flattened arguments rather than a closure that wraps args in Tuple<>. + // Closure path (witnesses needed, no byref): keep the body as-is; witnesses from the + // enclosing scope flow through the closure, so no typar abstraction is needed. + let debugValTy, debugValBody, valReprInfo, typeInstForCall, capturedArgs = + if not freeTyparsNeedWitnesses then + let liftedBody, liftedTy = mkMultiLambdasCore g m capturedArgGroups (specLambdaR, specLambdaTy) + let ty = mkForallTyIfNeeded freeTypars liftedTy + let body = mkTypeLambda m freeTypars (liftedBody, liftedTy) + let argInfos, retInfo = + match vref.ValReprInfo with + | Some(ValReprInfo(_, argInfos, retInfo)) -> argInfos, retInfo + | None -> + let (ValReprInfo(_, a, r)) = + InferValReprInfoOfExpr g AllowTypeDirectedDetupling.No specLambdaTy [] [] specLambdaR + a, r + let capturedArgInfos = + capturedArgGroups + |> List.map (List.map (fun (v: Val) -> { ValReprInfo.unnamedTopArg1 with Name = Some v.Id })) + let reprInfo = ValReprInfo(ValReprInfo.InferTyparInfo freeTypars, capturedArgInfos @ argInfos, retInfo) + ty, body, Some reprInfo, [List.map mkTyparTy freeTypars], List.map (mkRefTupledVars g m) capturedArgGroups + else + specLambdaTy, specLambdaR, None, [], [] + + let debugVal = + Construct.NewVal(debugValName, m, None, debugValTy, Immutable, true, valReprInfo, taccessPublic, ValNotInRecScope, None, + NormalVal, [], ValInline.InlinedDefinition, XmlDoc.Empty, true, false, false, false, false, false, None, + ParentNone) + + let callExpr = mkApps g ((exprForVal m debugVal, debugValTy), typeInstForCall, capturedArgs @ argsR, m) + Some(mkCompGenLet m debugVal debugValBody callExpr, info) | _ -> None | _ -> @@ -4300,20 +4486,26 @@ and OptimizeDebugPipeRights cenv env expr = let inputVals, inputValExprs = xs0R |> List.mapi (fun i x0R -> - let nm = $"Pipe #%d{env.methEnv.pipelineCount} input" + (if nxs0R > 1 then " #" + string (i+1) else "") + $" at line %d{x0R.Range.StartLine}" + let nm = $"Pipe #%d{env.methEnv.pipelineCount} input" + (if nxs0R > 1 then " #" + string (i+1) else "") + $" at line %d{x0R.Range.StartLine}" mkLocal x0R.Range nm (tyOfExpr g x0R)) |> List.unzip + let pipesExprR, pipesInfo = pipesBinder (inputValExprs, xs0Info) // Build up the chain of 'let' related to the first input let expr = List.foldBack2 (fun (x0R: Expr) inputVal e -> - let xRange0 = x0R.Range - mkLet (DebugPointAtBinding.Yes xRange0) expr.Range inputVal x0R e) + mkLet (DebugPointAtBinding.Yes x0R.Range) expr.Range inputVal x0R e) xs0R inputVals pipesExprR + // Runtime-async inlining can capture a synthetic pipe input, so reoptimize after its binding is in scope. + let expr = + if env.runtimeAsyncContext then + OptimizeExpr cenv env expr |> fst + else + expr expr, { pipesInfo with HasEffect=true} and OptimizeFSharpDelegateInvoke cenv env (delInvokeRef, delExpr, delInvokeTy, tyargs, delInvokeArg, m) = @@ -4469,6 +4661,9 @@ and ComputeSplitToMethodCondition flag threshold cenv env (e: Expr, einfo) = // NOTE: The method splitting optimization is completely disabled if we are not taking tailcalls. cenv.emitTailcalls && not env.disableMethodSplitting && + // Never split a runtime-async body: the split-off method would not be a runtime-async + // method, so its Await calls would be rejected by IlxGen (FS3916). + not (env.runtimeAsyncContext && RuntimeAsyncAnalyzer(g).ContainsSuspension e) && einfo.FunctionSize >= threshold && // We can only split an expression out as a method if certain conditions are met. @@ -4661,6 +4856,12 @@ and OptimizeBinding cenv isRec env (TBind(vref, expr, spBind)) = let size = localVarSize exprOptimized, {einfo with FunctionSize=einfo.FunctionSize+size; TotalSize = einfo.TotalSize+size} + // A runtime-async method cannot be exported as an F# inline definition. Its body contains + // suspension calls that are valid only in the generated runtime-async method, not at an + // arbitrary consumer call site. + if TryGetRuntimeAsyncReturn g exprOptimized |> Option.isSome then + vref.SetInlineInfo ValInline.Never + // Trim out optimization information for large lambdas we'll never inline // Trim out optimization information for expressions that call protected members let rec cut ivalue = @@ -4717,7 +4918,8 @@ and OptimizeBinding cenv isRec env (TBind(vref, expr, spBind)) = // FSharp.Core). (let nvref = mkLocalValRef vref g.compilingFSharpCore && - (valRefEq g nvref g.seq_vref || + (valRefEq g nvref g.cgh__runtimeAsyncSequence_vref || + valRefEq g nvref g.seq_vref || valRefEq g nvref g.seq_generated_vref || valRefEq g nvref g.seq_finally_vref || valRefEq g nvref g.seq_using_vref || @@ -5267,7 +5469,7 @@ let rec u_ExprInfo st = | 2 -> u_tup2 u_vref loop st |> ValValue | 3 -> u_array loop st |> TupleValue | 4 -> u_tup2 u_ucref (u_array loop) st |> UnionCaseValue - | 5 -> u_tup4 u_int u_int u_expr u_ty st |> (fun (b, c, d, e) -> CurriedLambdaValue (newUnique(), b, c, d, e)) + | 5 -> u_tup4 u_int u_int u_expr u_ty st |> (fun (b, c, d, e) -> CurriedLambdaValue(newUnique(), b, c, d, e)) | 6 -> u_tup2 u_int u_expr st |> ConstExprValue | 7 -> u_tup2 u_tcref (u_array loop) st |> RecdValue | _ -> failwith "loop" diff --git a/src/Compiler/Optimize/RuntimeAsyncAnalysis.fs b/src/Compiler/Optimize/RuntimeAsyncAnalysis.fs new file mode 100644 index 00000000000..e76aa5caeed --- /dev/null +++ b/src/Compiler/Optimize/RuntimeAsyncAnalysis.fs @@ -0,0 +1,573 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.RuntimeAsyncAnalysis + +open Internal.Utilities.Collections +open Internal.Utilities.Library +open Internal.Utilities.Library.Extras + +open System.Collections.Generic + +open FSharp.Compiler +open FSharp.Compiler.DiagnosticsLogger +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.Text +open FSharp.Compiler.TypedTree +open FSharp.Compiler.TypedTreeBasics +open FSharp.Compiler.TypedTreeOps +open FSharp.Compiler.TypeRelations + +open FSharp.Compiler.RuntimeAsync + +let rec private containsRecipeConstruction visit expr = + match stripDebugPoints expr with + | Expr.Lambda _ + | Expr.TyLambda _ -> false + | Expr.Let(binding, body, _, _) -> visit binding.Expr || containsRecipeConstruction visit body + | Expr.Sequential(first, rest, _, _) -> visit first || containsRecipeConstruction visit rest + | _ -> visit expr + +type RuntimeAsyncAnalyzer(g: TcGlobals, getLambdaBody: ValRef -> Expr option) = + let expressionCache = Dictionary(HashIdentity.Reference) + let suspensionCache = Dictionary(HashIdentity.Reference) + let valueCache = Dictionary() + let visitingValues = HashSet() + + let rec containsValue (vref: ValRef) = + match valueCache.TryGetValue vref.Stamp with + | true, result -> result, true + | _ when visitingValues.Contains vref.Stamp -> false, false + | _ -> + visitingValues.Add vref.Stamp |> ignore + + let result, complete = + match getLambdaBody vref with + | Some body -> containsExpression body + | None -> false, true + + visitingValues.Remove vref.Stamp |> ignore + + if complete then + valueCache[vref.Stamp] <- result + + result, complete + + and containsExpression expr = + match expressionCache.TryGetValue expr with + | true, result -> result, true + | _ -> + let mutable complete = true + + let folder = + { ExprFolder0 with + exprIntercept = + fun _ noInterceptF acc expr -> + if acc then + true + elif IsRuntimeAsyncBoundary g expr || (TryGetRuntimeAsyncSequence g expr).IsSome then + true + else + match stripExpr expr with + | Expr.Val(vref, _, _) when vref.ShouldInline || vref.IsLocalRef -> + let result, valueComplete = containsValue vref + + if not valueComplete then + complete <- false + + result + | _ -> noInterceptF acc expr + } + + let result = FoldExpr folder false expr + + if complete then + expressionCache[expr] <- result + + result, complete + + new(g: TcGlobals) = RuntimeAsyncAnalyzer(g, fun _ -> None) + + member _.ContainsFragment expr = containsExpression expr |> fst + + member this.ContainsSuspension expr = + match suspensionCache.TryGetValue expr with + | true, result -> result + | _ -> + let folder = + { ExprFolder0 with + exprIntercept = + fun _ noInterceptF acc expr -> + if acc then + true + else + match TryGetRuntimeAsyncSequence g expr with + | Some(recipe, _) -> containsRecipeConstruction this.ContainsSuspension recipe + | None -> IsRuntimeAsyncSuspensionExpr g expr || noInterceptF acc expr + } + + let result = FoldExpr folder false expr + suspensionCache[expr] <- result + result + +let ShouldForceRuntimeAsyncInline (analyzer: RuntimeAsyncAnalyzer) runtimeAsyncContext (vref: ValRef) inlineBody = + let containsRuntimeAsyncFragment = + match inlineBody with + | Some body -> analyzer.ContainsFragment body + | None -> analyzer.ContainsFragment(exprForValRef vref.Range vref) + + if containsRuntimeAsyncFragment then + true + elif runtimeAsyncContext && vref.InlineIfLambda && not vref.ShouldInline then + true + elif not (vref.ShouldInline || vref.IsLocalRef) then + false + else + analyzer.ContainsFragment(exprForValRef vref.Range vref) + +let ShouldForceRuntimeAsyncApplication (analyzer: RuntimeAsyncAnalyzer) runtimeAsyncContext (vref: ValRef) inlineBody args = + ShouldForceRuntimeAsyncInline analyzer runtimeAsyncContext vref inlineBody + || ((vref.ShouldInline || vref.InlineIfLambda) + && List.exists analyzer.ContainsFragment args) + || (runtimeAsyncContext + && vref.ShouldInline + && List.exists + (fun arg -> + match stripExpr arg with + | Expr.Lambda _ + | Expr.TyLambda _ -> true + | _ -> false) + args) + +let rec private IsRuntimeAsyncEffectFree expr = + match stripExpr expr with + | Expr.Const _ + | Expr.Lambda _ + | Expr.TyLambda _ -> true + | Expr.Val(vref, _, _) -> not vref.IsMutable && not vref.IsTypeFunction + | Expr.App(funcExpr, _, _, [], _) -> IsRuntimeAsyncEffectFree funcExpr + | Expr.Op(TOp.Tuple _, _, args, _) + | Expr.Op(TOp.AnonRecd _, _, args, _) -> List.forall IsRuntimeAsyncEffectFree args + | _ -> false + +let InlineRuntimeAsyncLambdaArgument (g: TcGlobals) (isRuntimeAsyncFragment: Expr -> bool) expr = + let rec isLambdaExpression expr = + match stripExpr expr with + | Expr.DebugPoint(_, innerExpr) -> isLambdaExpression innerExpr + | Expr.Let(TBind(_, rhs, _), innerExpr, _, _) -> IsRuntimeAsyncEffectFree rhs && isLambdaExpression innerExpr + | Expr.Lambda _ + | Expr.TyLambda _ -> true + | _ -> false + + let rec stripLambdaDebugPoints expr = + match expr with + | Expr.DebugPoint(_, innerExpr) -> + match stripDebugPoints innerExpr with + | Expr.Lambda _ + | Expr.TyLambda _ -> stripLambdaDebugPoints innerExpr + | _ -> expr + | Expr.Lambda(unique, ctorThisValOpt, baseValOpt, valParams, bodyExpr, m, overallType) -> + match bodyExpr with + | Expr.DebugPoint(_, innerExpr) -> + match stripDebugPoints innerExpr with + | Expr.Lambda _ + | Expr.TyLambda _ -> + Expr.Lambda(unique, ctorThisValOpt, baseValOpt, valParams, stripLambdaDebugPoints bodyExpr, m, overallType) + | _ -> expr + | _ -> expr + | Expr.TyLambda(unique, typeParams, bodyExpr, m, overallType) -> + match bodyExpr with + | Expr.DebugPoint(_, innerExpr) -> + match stripDebugPoints innerExpr with + | Expr.Lambda _ + | Expr.TyLambda _ -> Expr.TyLambda(unique, typeParams, stripLambdaDebugPoints bodyExpr, m, overallType) + | _ -> expr + | _ -> expr + | _ -> expr + + let rec betaReduceLambdaApplication expr = + let rec apply f fty tyargs args m = + match args with + | [] -> None + | firstArg :: rest -> + let f = stripLambdaDebugPoints f + + match f with + | Expr.Let(bind, body, mLet, _) -> apply body (tyOfExpr g body) tyargs args m |> Option.map (mkLetBind mLet bind) + | Expr.Lambda(_, _, _, valParams, body, _, _) when + valParams.Length = 1 + && not rest.IsEmpty + && (IsRuntimeAsyncEffectFree body || List.forall IsRuntimeAsyncEffectFree rest) + -> + let reduced = MakeApplicationAndBetaReduce g (f, fty, [ tyargs ], [ firstArg ], m) + + match reduced with + | Expr.Let(bind, body, mLet, _) -> + match apply body (tyOfExpr g body) [] rest m with + | Some bodyR -> Some(mkLetBind mLet bind bodyR) + | None -> Some(mkAppsAux g reduced (tyOfExpr g reduced) [] rest m) + | _ -> Some reduced + | Expr.Lambda _ + | Expr.TyLambda _ -> Some(MakeApplicationAndBetaReduce g (f, fty, [ tyargs ], args, m)) + | _ -> None + + match stripDebugPoints expr with + | Expr.App(f, fty, tyargs, args, m) -> apply f fty tyargs args m + | _ -> None + + let mkRwenv (preIntercept: (Expr -> Expr) -> Expr -> Expr option) : ExprRewritingEnv = + { + PreIntercept = Some preIntercept + PreInterceptBinding = None + PostTransform = betaReduceLambdaApplication + RewriteQuotations = false + StackGuard = StackGuard("InlineRuntimeAsyncLambdaArgument") + } + + let rec inlineBinding (boundVal: Val) boundExpr body = + match boundExpr with + | Expr.DebugPoint(point, inner) -> Expr.DebugPoint(point, inlineBinding boundVal inner body) + | Expr.Let(binding, rest, m, _) -> mkLetBind m binding (inlineBinding boundVal rest body) + | Expr.Sequential(first, rest, NormalSeq, m) -> Expr.Sequential(first, inlineBinding boundVal rest body, NormalSeq, m) + | _ -> + let rwenv = + mkRwenv (fun _ expr -> + match betaReduceLambdaApplication expr with + | Some reduced -> Some reduced + | None -> + match stripExpr expr with + | Expr.App(f, _, tyargs, args, m) -> + match stripDebugPoints f with + | Expr.Val(vref, _, _) when valEq boundVal vref.Deref -> + Some( + MakeApplicationAndBetaReduce + g + (copyExpr g CloneAll boundExpr, tyOfExpr g boundExpr, [ tyargs ], args, m) + ) + | _ -> None + | Expr.Val(vref, _, _) when valEq boundVal vref.Deref -> Some(copyExpr g CloneAll boundExpr) + | _ -> None) + + RewriteExpr rwenv body + + let rwenv = + mkRwenv (fun cont expr -> + match stripExpr expr with + | Expr.Let(TBind(boundVal, boundExpr, _), body, _, _) when + (boundVal.InlineIfLambda + && (isLambdaExpression boundExpr + || isRuntimeAsyncFragment boundExpr + || match stripExpr boundExpr with + | Expr.App(_, _, _, args, _) -> List.isEmpty args + | _ -> true)) + || (isLambdaExpression boundExpr && isRuntimeAsyncFragment boundExpr) + -> + if not boundVal.InlineIfLambda then + boundVal.SetInlineIfLambda() + + Some(cont (inlineBinding boundVal boundExpr body)) + | _ -> None) + + RewriteExpr rwenv expr + +type private RuntimeAsyncFlowSummary = + { + MaySuspend: bool + UsedAfterSuspend: FreeLocals + FreeLocals: FreeLocals + } + +let private emptyRuntimeAsyncFlowSummary = + { + MaySuspend = false + UsedAfterSuspend = emptyFreeLocals + FreeLocals = emptyFreeLocals + } + +let private mergeRuntimeAsyncFlowSummaries left right = + { + MaySuspend = left.MaySuspend || right.MaySuspend + UsedAfterSuspend = Zset.union left.UsedAfterSuspend right.UsedAfterSuspend + FreeLocals = Zset.union left.FreeLocals right.FreeLocals + } + +let private sequenceRuntimeAsyncFlowSummaries left right = + { + MaySuspend = left.MaySuspend || right.MaySuspend + UsedAfterSuspend = + if left.MaySuspend then + Zset.union left.UsedAfterSuspend (Zset.union right.UsedAfterSuspend right.FreeLocals) + else + Zset.union left.UsedAfterSuspend right.UsedAfterSuspend + FreeLocals = Zset.union left.FreeLocals right.FreeLocals + } + +let private removeRuntimeAsyncBoundVals vals (summary: RuntimeAsyncFlowSummary) = + let remove vals set = + (set, vals) ||> List.fold (fun set v -> Zset.remove v set) + + { summary with + FreeLocals = remove vals summary.FreeLocals + } + +let private addRuntimeAsyncSuspension summary = { summary with MaySuspend = true } + +let private IsRuntimeAsyncNonPreservableVal (g: TcGlobals) (v: Val) = + v.IsPinning || v.IsFixed || isByrefTy g v.Type || isByrefLikeTy g v.Range v.Type + +let private TryGetRuntimeAsyncNonPreservableAlias (g: TcGlobals) expr = + match stripExpr expr with + | Expr.Val(vref, _, _) when IsRuntimeAsyncNonPreservableVal g vref.Deref -> Some vref.Deref + | _ -> None + +let private analyzeRuntimeAsyncExpr (g: TcGlobals) expr = + let cache = Dictionary(HashIdentity.Reference) + + let rec analyzeExpr expr = + match cache.TryGetValue expr with + | true, summary -> summary + | _ -> + let summary = analyzeExprCore expr + cache[expr] <- summary + summary + + and analyzeExprCore expr = + let expr = stripExpr expr + + match expr with + | Expr.Const _ + | Expr.Val _ + | Expr.WitnessArg _ + | Expr.Lambda _ + | Expr.TyLambda _ -> + match expr with + | Expr.Val(vref, _, _) -> + { emptyRuntimeAsyncFlowSummary with + FreeLocals = Zset.add vref.Deref (Zset.empty valOrder) + } + | _ -> emptyRuntimeAsyncFlowSummary + + | Expr.Sequential(expr1, expr2, _, _) -> sequenceRuntimeAsyncFlowSummaries (analyzeExpr expr1) (analyzeExpr expr2) + + | Expr.Let(TBind(v, rhs, _), body, _, _) -> + let rhsSummary = analyzeExpr rhs + let bodySummary = removeRuntimeAsyncBoundVals [ v ] (analyzeExpr body) + + let bodySummary = + match TryGetRuntimeAsyncNonPreservableAlias g rhs with + | Some source when Zset.contains v bodySummary.UsedAfterSuspend -> + { bodySummary with + UsedAfterSuspend = Zset.add source bodySummary.UsedAfterSuspend + } + | _ -> bodySummary + + sequenceRuntimeAsyncFlowSummaries rhsSummary bodySummary + + | Expr.LetRec(bindings, body, _, _) -> + let bindingSummary = + (emptyRuntimeAsyncFlowSummary, bindings) + ||> List.fold (fun summary (TBind(_, bindingExpr, _)) -> + sequenceRuntimeAsyncFlowSummaries summary (analyzeExpr bindingExpr)) + + let bodySummary = analyzeExpr body + let boundVals = bindings |> List.map (fun binding -> binding.Var) + let bodySummary = removeRuntimeAsyncBoundVals boundVals bodySummary + sequenceRuntimeAsyncFlowSummaries bindingSummary bodySummary + + | Expr.Match(_, _, decisionTree, targets, _, _) -> analyzeDecisionTree targets decisionTree + + | Expr.Op(TOp.While _, _, [ Expr.Lambda(_, _, _, _, guardExpr, _, _); Expr.Lambda(_, _, _, _, bodyExpr, _, _) ], _) -> + let guardSummary = analyzeExpr guardExpr + let bodySummary = analyzeExpr bodyExpr + let loopSummary = mergeRuntimeAsyncFlowSummaries guardSummary bodySummary + + if loopSummary.MaySuspend then + { loopSummary with + UsedAfterSuspend = Zset.union loopSummary.UsedAfterSuspend loopSummary.FreeLocals + } + else + loopSummary + + | Expr.Op(TOp.IntegerForLoop _, + _, + [ Expr.Lambda(_, _, _, _, startExpr, _, _) + Expr.Lambda(_, _, _, _, finishExpr, _, _) + Expr.Lambda(_, _, _, [ loopVal ], bodyExpr, _, _) ], + _) -> + let loopSummary = + [ analyzeExpr startExpr; analyzeExpr finishExpr; analyzeExpr bodyExpr ] + |> List.reduce sequenceRuntimeAsyncFlowSummaries + |> removeRuntimeAsyncBoundVals [ loopVal ] + + if loopSummary.MaySuspend then + { loopSummary with + UsedAfterSuspend = Zset.union loopSummary.UsedAfterSuspend loopSummary.FreeLocals + } + else + loopSummary + + | Expr.Op(TOp.TryFinally _, _, [ Expr.Lambda(_, _, _, _, bodyExpr, _, _); Expr.Lambda(_, _, _, _, compensationExpr, _, _) ], _) -> + let bodySummary = analyzeExpr bodyExpr + let compensationSummary = analyzeExpr compensationExpr + let summary = mergeRuntimeAsyncFlowSummaries bodySummary compensationSummary + + if bodySummary.MaySuspend then + { summary with + UsedAfterSuspend = Zset.union summary.UsedAfterSuspend compensationSummary.FreeLocals + } + else + summary + + | Expr.Op(TOp.TryWith _, + _, + [ Expr.Lambda(_, _, _, _, bodyExpr, _, _) + Expr.Lambda(_, _, _, [ _ ], filterExpr, _, _) + Expr.Lambda(_, _, _, [ _ ], handlerExpr, _, _) ], + _) -> + let bodySummary = analyzeExpr bodyExpr + let filterSummary = analyzeExpr filterExpr + let handlerSummary = analyzeExpr handlerExpr + + let summary = + mergeRuntimeAsyncFlowSummaries bodySummary (mergeRuntimeAsyncFlowSummaries filterSummary handlerSummary) + + let usedAfterSuspend = + summary.UsedAfterSuspend + |> fun used -> + if bodySummary.MaySuspend then + Zset.union used (Zset.union filterSummary.FreeLocals handlerSummary.FreeLocals) + else + used + |> fun used -> + if filterSummary.MaySuspend then + Zset.union used handlerSummary.FreeLocals + else + used + + { summary with + UsedAfterSuspend = usedAfterSuspend + } + + | Expr.Op(TOp.LValueOp(_, vref), _, args, _) -> + let argsSummary = + (emptyRuntimeAsyncFlowSummary, args) + ||> List.fold (fun summary arg -> sequenceRuntimeAsyncFlowSummaries summary (analyzeExpr arg)) + + { argsSummary with + FreeLocals = Zset.add vref.Deref argsSummary.FreeLocals + } + + | Expr.Op(_op, _, args, _) -> + let argsSummary = + (emptyRuntimeAsyncFlowSummary, args) + ||> List.fold (fun summary arg -> + match stripExpr arg with + | Expr.Lambda _ + | Expr.TyLambda _ -> summary + | _ -> sequenceRuntimeAsyncFlowSummaries summary (analyzeExpr arg)) + + if IsRuntimeAsyncSuspensionExpr g expr then + addRuntimeAsyncSuspension argsSummary + else + argsSummary + + | Expr.App(funcExpr, _, _, argGroups, _) -> + let funcSummary = analyzeExpr funcExpr + + (funcSummary, argGroups) + ||> List.fold (fun summary arg -> sequenceRuntimeAsyncFlowSummaries summary (analyzeExpr arg)) + + | Expr.Obj(_, _, _, ctorCall, _, _, _) -> analyzeExpr ctorCall + + | Expr.StaticOptimization(_, expr1, expr2, _) -> mergeRuntimeAsyncFlowSummaries (analyzeExpr expr1) (analyzeExpr expr2) + + | Expr.Quote(_, splices, _, _, _) -> + let analyzeSplices (_, _, exprs, _) = + exprs + |> List.map analyzeExpr + |> List.fold mergeRuntimeAsyncFlowSummaries emptyRuntimeAsyncFlowSummary + + match splices.Value with + | None -> emptyRuntimeAsyncFlowSummary + | Some(data1, data2) -> mergeRuntimeAsyncFlowSummaries (analyzeSplices data1) (analyzeSplices data2) + + | Expr.Link eref -> analyzeExpr eref.Value + + | Expr.DebugPoint(_, innerExpr) -> analyzeExpr innerExpr + + | Expr.TyChoose(_, innerExpr, _) -> analyzeExpr innerExpr + + and analyzeDecisionTree targets decisionTree = + let analyzeTarget targetNum = + let (TTarget(boundVals, targetExpr, _)) = targets[targetNum] + analyzeExpr targetExpr |> removeRuntimeAsyncBoundVals boundVals + + let rec analyzeTree tree = + match tree with + | TDSuccess(results, targetNum) -> + let resultSummary = + (emptyRuntimeAsyncFlowSummary, results) + ||> List.fold (fun summary resultExpr -> sequenceRuntimeAsyncFlowSummaries summary (analyzeExpr resultExpr)) + + sequenceRuntimeAsyncFlowSummaries resultSummary (analyzeTarget targetNum) + + | TDBind(TBind(v, bindingExpr, _), rest) -> + let bindingSummary = analyzeExpr bindingExpr + let restSummary = analyzeTree rest |> removeRuntimeAsyncBoundVals [ v ] + sequenceRuntimeAsyncFlowSummaries bindingSummary restSummary + + | TDSwitch(inputExpr, cases, defaultOpt, _) -> + let inputSummary = analyzeExpr inputExpr + let branches = cases |> List.map (fun (TCase(_, tree)) -> analyzeTree tree) + + let branches = + match defaultOpt with + | Some tree -> analyzeTree tree :: branches + | None -> branches + + let branchSummary = + branches + |> List.fold mergeRuntimeAsyncFlowSummaries emptyRuntimeAsyncFlowSummary + + sequenceRuntimeAsyncFlowSummaries inputSummary branchSummary + + analyzeTree decisionTree + + analyzeExpr expr + +let GetRuntimeAsyncNonPreservableUses (g: TcGlobals) expr = + let summary = analyzeRuntimeAsyncExpr g expr + + summary.UsedAfterSuspend + |> Zset.elements + |> List.filter (IsRuntimeAsyncNonPreservableVal g) + +let RestoreRuntimeAsyncPinning expr = + let containsFixedBinding (expr: Expr) = + ExistsExpr + (fun expr -> + match stripExpr expr with + | Expr.Let(TBind(v, _, _), _, _, _) + | Expr.LetRec([ TBind(v, _, _) ], _, _, _) -> v.IsFixed + | Expr.Val(vref, _, _) -> vref.Deref.IsFixed + | _ -> false) + expr + + let restoreBindingPinning (v: Val) (rhs: Expr) = + if containsFixedBinding rhs && not v.IsPinning then + v.SetIsPinning() + + let folder = + { ExprFolder0 with + exprIntercept = + fun _ noInterceptF () expr -> + match stripExpr expr with + | Expr.Let(TBind(v, rhs, _), _, _, _) -> restoreBindingPinning v rhs + | Expr.LetRec(bindings, _, _, _) -> + for TBind(v, rhs, _) in bindings do + restoreBindingPinning v rhs + | _ -> () + + noInterceptF () expr + } + + FoldExpr folder () expr |> ignore diff --git a/src/Compiler/Optimize/RuntimeAsyncAnalysis.fsi b/src/Compiler/Optimize/RuntimeAsyncAnalysis.fsi new file mode 100644 index 00000000000..54518fc605d --- /dev/null +++ b/src/Compiler/Optimize/RuntimeAsyncAnalysis.fsi @@ -0,0 +1,31 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.RuntimeAsyncAnalysis + +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.TypedTree + +type RuntimeAsyncAnalyzer = + new: g: TcGlobals -> RuntimeAsyncAnalyzer + + new: g: TcGlobals * getLambdaBody: (ValRef -> Expr option) -> RuntimeAsyncAnalyzer + + member ContainsFragment: expr: Expr -> bool + member ContainsSuspension: expr: Expr -> bool + +val ShouldForceRuntimeAsyncInline: + analyzer: RuntimeAsyncAnalyzer -> runtimeAsyncContext: bool -> vref: ValRef -> inlineBody: Expr option -> bool + +val ShouldForceRuntimeAsyncApplication: + analyzer: RuntimeAsyncAnalyzer -> + runtimeAsyncContext: bool -> + vref: ValRef -> + inlineBody: Expr option -> + args: Expr list -> + bool + +val InlineRuntimeAsyncLambdaArgument: g: TcGlobals -> isRuntimeAsyncFragment: (Expr -> bool) -> expr: Expr -> Expr + +val GetRuntimeAsyncNonPreservableUses: g: TcGlobals -> expr: Expr -> Val list + +val RestoreRuntimeAsyncPinning: expr: Expr -> unit diff --git a/src/Compiler/Optimize/RuntimeAsyncExceptionRewrite.fs b/src/Compiler/Optimize/RuntimeAsyncExceptionRewrite.fs new file mode 100644 index 00000000000..222998706e5 --- /dev/null +++ b/src/Compiler/Optimize/RuntimeAsyncExceptionRewrite.fs @@ -0,0 +1,123 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.RuntimeAsyncExceptionRewrite + +open FSharp.Compiler +open FSharp.Compiler.DiagnosticsLogger +open FSharp.Compiler.RuntimeAsync +open FSharp.Compiler.RuntimeAsyncAnalysis +open FSharp.Compiler.Syntax +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.TypedTree +open FSharp.Compiler.TypedTreeOps + +let private RuntimeAsyncChoiceTy (g: TcGlobals) (ty: TType) = + TType_app(g.choice2_tcr, [ ty; g.exn_ty ], g.knownWithoutNull) + +let private RuntimeAsyncChoiceCase g m ty caseIndex expr = + mkUnionCaseExpr (mkChoiceCaseRef g m 2 caseIndex, [ ty; g.exn_ty ], [ expr ], m) + +let private RuntimeAsyncReraise m resultTy exnExpr = mkThrow m resultTy exnExpr + +let private RewriteRuntimeAsyncReraise g resultTy handlerVal handler = + RewriteExpr + { + PreIntercept = + Some(fun _ expr -> + match stripExpr expr with + | TryWithExpr _ -> Some expr + | Expr.Op(TOp.Reraise, _, _, m) -> Some(mkThrow m resultTy (exprForVal m handlerVal)) + | Expr.App(Expr.Val(vref, _, m), _, _, _, _) when valRefEq g vref g.reraise_vref -> + Some(mkThrow m resultTy (exprForVal m handlerVal)) + | _ -> None) + PreInterceptBinding = None + PostTransform = (fun _ -> None) + RewriteQuotations = false + StackGuard = StackGuard("RewriteRuntimeAsyncReraise") + } + handler + +let private IsRuntimeAsyncExceptionHandler (analyzer: RuntimeAsyncAnalyzer) expr = + match stripExpr expr with + | TryFinallyExpr(_, _, _, _, compensation, _) -> analyzer.ContainsSuspension compensation + | TryWithExpr(_, _, _, _, _, filter, _, handler, _) -> analyzer.ContainsSuspension filter || analyzer.ContainsSuspension handler + | _ -> false + +let private ExprContainsRuntimeAsyncExceptionHandler (analyzer: RuntimeAsyncAnalyzer) expr = + ExistsExpr (IsRuntimeAsyncExceptionHandler analyzer) expr + +let RewriteRuntimeAsyncExceptionHandlers (g: TcGlobals) expr = + let analyzer = RuntimeAsyncAnalyzer(g) + + let rewriteCapturedException m resultTy body buildResult = + let choiceTy = RuntimeAsyncChoiceTy g resultTy + let resultVal, _ = mkCompGenLocal m "__runtimeAsyncResult" choiceTy + let caughtVal, _ = mkCompGenLocal m "__runtimeAsyncCaughtException" g.exn_ty + let captured = exprForVal m resultVal + + let bodyValue = + mkUnionCaseFieldGetUnprovenViaExprAddr (captured, mkChoiceCaseRef g m 2 0, [ resultTy; g.exn_ty ], 0, m) + + let exceptionValue = + mkUnionCaseFieldGetUnprovenViaExprAddr (captured, mkChoiceCaseRef g m 2 1, [ resultTy; g.exn_ty ], 0, m) + + let bodySucceeded = + mkUnionCaseTest g (captured, mkChoiceCaseRef g m 2 0, [ resultTy; g.exn_ty ], m) + + let result = buildResult bodySucceeded bodyValue exceptionValue + + mkCompGenLet + m + resultVal + (mkTryWith + g + (RuntimeAsyncChoiceCase g m resultTy 0 body, + caughtVal, + mkTrue g m, + caughtVal, + RuntimeAsyncChoiceCase g m resultTy 1 (exprForVal m caughtVal), + m, + choiceTy, + DebugPointAtTry.No, + DebugPointAtWith.No)) + result + + let postTransform expr = + match expr with + | TryFinallyExpr(_, _, resultTy, body, compensation, m) when IsRuntimeAsyncExceptionHandler analyzer expr -> + Some( + rewriteCapturedException m resultTy body (fun bodySucceeded bodyValue exceptionValue -> + let result = + mkCond + DebugPointAtBinding.NoneAtInvisible + m + resultTy + bodySucceeded + bodyValue + (RuntimeAsyncReraise m resultTy exceptionValue) + + mkCompGenSequential m compensation result) + ) + | TryWithExpr(_, _, resultTy, body, _, _, handlerVal, handler, m) when IsRuntimeAsyncExceptionHandler analyzer expr -> + Some( + rewriteCapturedException m resultTy body (fun bodySucceeded bodyValue exceptionExpr -> + let handler = RewriteRuntimeAsyncReraise g resultTy handlerVal handler + + let handler = mkCompGenLet m handlerVal exceptionExpr handler + + mkCond DebugPointAtBinding.NoneAtInvisible m resultTy bodySucceeded bodyValue handler) + ) + | _ -> None + + if ExprContainsRuntimeAsyncExceptionHandler analyzer expr then + RewriteExpr + { + PreIntercept = None + PostTransform = postTransform + PreInterceptBinding = None + RewriteQuotations = false + StackGuard = StackGuard("RuntimeAsyncExceptionRewrite") + } + expr + else + expr diff --git a/src/Compiler/Optimize/RuntimeAsyncExceptionRewrite.fsi b/src/Compiler/Optimize/RuntimeAsyncExceptionRewrite.fsi new file mode 100644 index 00000000000..7f4607630d4 --- /dev/null +++ b/src/Compiler/Optimize/RuntimeAsyncExceptionRewrite.fsi @@ -0,0 +1,8 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.RuntimeAsyncExceptionRewrite + +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.TypedTree + +val RewriteRuntimeAsyncExceptionHandlers: g: TcGlobals -> expr: Expr -> Expr diff --git a/src/Compiler/SyntaxTree/LexFilter.fs b/src/Compiler/SyntaxTree/LexFilter.fs index 290f8b0ff45..9fbf83ba817 100644 --- a/src/Compiler/SyntaxTree/LexFilter.fs +++ b/src/Compiler/SyntaxTree/LexFilter.fs @@ -477,7 +477,7 @@ type TokenTupPool() = /// When parsing the compiler's source files, the pool didn't come close to reaching this limit. /// Therefore, this seems like a reasonable limit to handle 99% of cases. [] - let maxSize = 100 + let maxSize = 200 let mutable currentPoolSize = 0 let stack = Stack(10) diff --git a/src/Compiler/TypedTree/RuntimeAsync.fs b/src/Compiler/TypedTree/RuntimeAsync.fs new file mode 100644 index 00000000000..ff7983cf918 --- /dev/null +++ b/src/Compiler/TypedTree/RuntimeAsync.fs @@ -0,0 +1,74 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.RuntimeAsync + +open FSharp.Compiler +open FSharp.Compiler.AbstractIL.IL +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.TypedTree +open FSharp.Compiler.TypedTreeOps + +type RuntimeAsyncReturnInfo = { Body: Expr; TypeArgs: TType list } + +let (|RuntimeAsyncReturn|_|) (g: TcGlobals) (vref: ValRef) = + valRefEq g vref g.cgh__runtimeAsyncReturn_vref + || valRefEq g vref g.cgh__runtimeAsyncReturnValueTask_vref + || valRefEq g vref g.cgh__runtimeAsyncReturnUnit_vref + || valRefEq g vref g.cgh__runtimeAsyncReturnValueTaskUnit_vref + +let rec TryGetRuntimeAsyncReturn (g: TcGlobals) expr = + match expr with + | Expr.DebugPoint(_, innerExpr) -> TryGetRuntimeAsyncReturn g innerExpr + | Expr.App(Expr.Val(RuntimeAsyncReturn g, _, _), _, typeArgs, [ body ], _) -> Some { Body = body; TypeArgs = typeArgs } + | _ -> None + +let (|RuntimeAsyncReturnFunction|_|) (g: TcGlobals) expr = + match stripExpr expr with + | Expr.Val(RuntimeAsyncReturn g as value, flags, m) + | Expr.App(Expr.Val(RuntimeAsyncReturn g as value, flags, m), _, [ _ ], [], _) -> ValueSome(value, flags, m) + | _ -> ValueNone + +let TryGetRuntimeAsyncSequence (g: TcGlobals) expr = + match expr with + | ValApp g g.cgh__runtimeAsyncSequence_vref ([ elementTy ], [ recipe ], _) -> Some(recipe, elementTy) + | _ -> None + +let (|RuntimeAsyncSequenceFunction|_|) (g: TcGlobals) expr = + match stripExpr expr with + | Expr.Val(value, _, _) + | Expr.App(Expr.Val(value, _, _), _, [ _ ], [], _) when valRefEq g value g.cgh__runtimeAsyncSequence_vref -> ValueSome value + | _ -> ValueNone + +let private runtimeAsyncHelpersTypeName = + "System.Runtime.CompilerServices.AsyncHelpers" + +let private runtimeAsyncSuspensionMethodNames = + [ "Await"; "AwaitAwaiter"; "UnsafeAwaitAwaiter" ] + +let IsRuntimeAsyncSuspensionMethod (g: TcGlobals) (ilMethRef: ILMethodRef) = + let (TILObjectReprData(coreLibScope, _, _)) = g.system_Object_tcref.ILTyconInfo + + ilMethRef.DeclaringTypeRef.Scope = coreLibScope + && ilMethRef.DeclaringTypeRef.FullName = runtimeAsyncHelpersTypeName + && List.contains ilMethRef.Name runtimeAsyncSuspensionMethodNames + +let IsRuntimeAsyncSuspensionExpr (g: TcGlobals) expr = + match stripExpr expr with + | Expr.Op(TOp.ILCall(_, _, _, _, _, _, _, ilMethodRef, _, _, _), _, _, _) -> IsRuntimeAsyncSuspensionMethod g ilMethodRef + | _ -> false + +let IsRuntimeAsyncBoundary (g: TcGlobals) expr = + (TryGetRuntimeAsyncReturn g expr).IsSome || IsRuntimeAsyncSuspensionExpr g expr + +/// Returns true when any sub-expression matches the predicate, short-circuiting at the first match. +let ExistsExpr (predicate: Expr -> bool) expr = + let folder = + { ExprFolder0 with + exprIntercept = + fun _ noInterceptF acc expr -> + if acc then true + elif predicate expr then true + else noInterceptF acc expr + } + + FoldExpr folder false expr diff --git a/src/Compiler/TypedTree/RuntimeAsync.fsi b/src/Compiler/TypedTree/RuntimeAsync.fsi new file mode 100644 index 00000000000..f59d8909d7a --- /dev/null +++ b/src/Compiler/TypedTree/RuntimeAsync.fsi @@ -0,0 +1,26 @@ +// Copyright (c) Microsoft Corporation. All Rights Reserved. See License.txt in the project root for license information. + +module internal FSharp.Compiler.RuntimeAsync + +open FSharp.Compiler.AbstractIL.IL +open FSharp.Compiler.TcGlobals +open FSharp.Compiler.Text +open FSharp.Compiler.TypedTree + +type RuntimeAsyncReturnInfo = { Body: Expr; TypeArgs: TType list } + +val TryGetRuntimeAsyncReturn: g: TcGlobals -> expr: Expr -> RuntimeAsyncReturnInfo option + +val (|RuntimeAsyncReturnFunction|_|): g: TcGlobals -> expr: Expr -> (ValRef * ValUseFlag * range) voption + +val TryGetRuntimeAsyncSequence: g: TcGlobals -> expr: Expr -> (Expr * TType) option + +val (|RuntimeAsyncSequenceFunction|_|): g: TcGlobals -> expr: Expr -> ValRef voption + +val IsRuntimeAsyncSuspensionMethod: g: TcGlobals -> ilMethRef: ILMethodRef -> bool + +val IsRuntimeAsyncSuspensionExpr: g: TcGlobals -> expr: Expr -> bool + +val IsRuntimeAsyncBoundary: g: TcGlobals -> expr: Expr -> bool + +val ExistsExpr: predicate: (Expr -> bool) -> expr: Expr -> bool diff --git a/src/Compiler/TypedTree/TcGlobals.fs b/src/Compiler/TypedTree/TcGlobals.fs index 4711544b314..adf0d4a7ea9 100644 --- a/src/Compiler/TypedTree/TcGlobals.fs +++ b/src/Compiler/TypedTree/TcGlobals.fs @@ -414,6 +414,10 @@ type TcGlobals( let v_tcref_IObservable = findSysTyconRef sys "IObservable`1" let v_tcref_IObserver = findSysTyconRef sys "IObserver`1" let v_fslib_IDelegateEvent_tcr = mk_MFControl_tcref fslibCcu "IDelegateEvent`1" + let v_task_tcr = findSysTyconRef ["System"; "Threading"; "Tasks"] "Task`1" + let v_task_nonGeneric_tcr = findSysTyconRef ["System"; "Threading"; "Tasks"] "Task" + let v_valueTask_tcr = findSysTyconRef ["System"; "Threading"; "Tasks"] "ValueTask`1" + let v_valueTask_nonGeneric_tcr = findSysTyconRef ["System"; "Threading"; "Tasks"] "ValueTask" let v_option_tcr_nice = mk_MFCore_tcref fslibCcu "option`1" let v_valueoption_tcr_nice = mk_MFCore_tcref fslibCcu "voption`1" @@ -426,6 +430,8 @@ type TcGlobals( let v_date_tcr = findSysTyconRef sys "DateTime" let v_IEnumerable_tcr = findSysTyconRef sysGenerics "IEnumerable`1" let v_IEnumerator_tcr = findSysTyconRef sysGenerics "IEnumerator`1" + let v_IAsyncEnumerable_tcr = findSysTyconRef sysGenerics "IAsyncEnumerable`1" + let v_IAsyncEnumerator_tcr = findSysTyconRef sysGenerics "IAsyncEnumerator`1" let v_System_Attribute_tcr = findSysTyconRef sys "Attribute" let v_expr_tcr = mk_MFQuotations_tcref fslibCcu "Expr`1" let v_raw_expr_tcr = mk_MFQuotations_tcref fslibCcu "Expr" @@ -512,6 +518,7 @@ type TcGlobals( let v_IEqualityComparer_ty = mkSysNonGenericTy sysCollections "IEqualityComparer" let v_system_RuntimeMethodHandle_ty = mkSysNonGenericTy sys "RuntimeMethodHandle" + let v_system_CancellationToken_ty = mkSysNonGenericTy ["System"; "Threading"] "CancellationToken" let mk_unop_ty ty = [[ty]], ty let mk_binop_ty ty = [[ty]; [ty]], ty @@ -905,6 +912,12 @@ type TcGlobals( let v_cgh__resumeAt_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__resumeAt" , None , None , [vara], ([[v_int_ty]; [varaTy]], varaTy)) let v_cgh__stateMachine_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__stateMachine" , None , None , [vara; varb], ([[varaTy]], varbTy)) // inaccurate type but it doesn't matter for linking let v_cgh__resumableEntry_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__resumableEntry" , None , None , [vara], ([[v_int_ty --> varaTy]; [v_unit_ty --> varaTy]], varaTy)) + let v_cgh__runtimeAsyncReturn_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__runtimeAsyncReturn" , None , None , [vara], ([[varaTy]], TType_app(v_task_tcr, [varaTy], v_knownWithoutNull))) // handled specially by the checker + let v_cgh__runtimeAsyncReturnValueTask_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__runtimeAsyncReturnValueTask" , None , None , [vara], ([[varaTy]], TType_app(v_valueTask_tcr, [varaTy], v_knownWithoutNull))) // handled specially by the checker + let v_cgh__runtimeAsyncReturnUnit_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__runtimeAsyncReturnUnit" , None , None , [], ([[v_unit_ty]], mkNonGenericTy v_task_nonGeneric_tcr)) // handled specially by the checker + let v_cgh__runtimeAsyncReturnValueTaskUnit_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__runtimeAsyncReturnValueTaskUnit" , None , None , [], ([[v_unit_ty]], mkNonGenericTy v_valueTask_nonGeneric_tcr)) // handled specially by the checker + let v_cgh__runtimeAsyncSequence_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__runtimeAsyncSequence", None, None, [vara], ([[v_unit_ty --> mkSeqTy varaTy]], TType_app(v_IAsyncEnumerable_tcr, [varaTy], v_knownWithoutNull))) + let v_cgh__runtimeAsyncSequenceCancellationToken_info = makeIntrinsicValRef(fslib_MFStateMachineHelpers_nleref, "__runtimeAsyncSequenceCancellationToken", None, None, [], ([[v_unit_ty]], v_system_CancellationToken_ty)) let v_seq_to_array_info = makeIntrinsicValRef(fslib_MFSeqModule_nleref, "toArray" , None , Some "ToArray", [varb], ([[mkSeqTy varbTy]], mkArrayType 1 varbTy)) let v_seq_to_list_info = makeIntrinsicValRef(fslib_MFSeqModule_nleref, "toList" , None , Some "ToList" , [varb], ([[mkSeqTy varbTy]], mkListTy varbTy)) let v_seq_map_info = makeIntrinsicValRef(fslib_MFSeqModule_nleref, "map" , None , Some "Map" , [vara;varb], ([[varaTy --> varbTy]; [mkSeqTy varaTy]], mkSeqTy varbTy)) @@ -1317,6 +1330,7 @@ type TcGlobals( member _.seq_tcr = v_seq_tcr member val seq_base_tcr = mk_MFCompilerServices_tcref fslibCcu "GeneratedSequenceBase`1" + member val runtime_async_seq_base_tcr = mk_MFCompilerServices_tcref fslibCcu "GeneratedRuntimeAsyncSequenceBase`1" member val ListCollector_tcr = mk_MFCompilerServices_tcref fslibCcu "ListCollector`1" @@ -1329,6 +1343,9 @@ type TcGlobals( embeddedILTypeDefs.TryAdd(tref.Name, mkEmbeddableType()) |> ignore member g.mk_GeneratedSequenceBase_ty seqElemTy = TType_app(g.seq_base_tcr,[seqElemTy], v_knownWithoutNull) + member g.mk_GeneratedRuntimeAsyncSequenceBase_ty seqElemTy = TType_app(g.runtime_async_seq_base_tcr, [seqElemTy], v_knownWithoutNull) + member _.mk_IAsyncEnumerable_ty seqElemTy = TType_app(v_IAsyncEnumerable_tcr, [seqElemTy], v_knownWithoutNull) + member _.mk_IAsyncEnumerator_ty seqElemTy = TType_app(v_IAsyncEnumerator_tcr, [seqElemTy], v_knownWithoutNull) member val ResumableStateMachine_tcr = mk_MFCompilerServices_tcref fslibCcu "ResumableStateMachine`1" @@ -1485,6 +1502,7 @@ type TcGlobals( member val system_IntPtr_tcref = findSysTyconRef sys "IntPtr" member val system_Bool_tcref = findSysTyconRef sys "Boolean" member val system_Byte_tcref = findSysTyconRef sys "Byte" + member _.system_CancellationToken_ty = v_system_CancellationToken_ty member val system_UInt16_tcref = findSysTyconRef sys "UInt16" member val system_Char_tcref = findSysTyconRef sys "Char" member val system_UInt32_tcref = findSysTyconRef sys "UInt32" @@ -1543,6 +1561,8 @@ type TcGlobals( // Review: Does this need to be an option type? member val System_Runtime_CompilerServices_RuntimeFeature_ty = tryFindSysTyconRef sysCompilerServices "RuntimeFeature" |> Option.map mkNonGenericTy + member val System_Runtime_CompilerServices_MethodImplOptions_ty = + tryFindSysTyconRef sysCompilerServices "MethodImplOptions" |> Option.map mkNonGenericTy member val iltyp_StreamingContext = tryFindSysILTypeRef tname_StreamingContext |> Option.map mkILNonGenericValueTy member val iltyp_SerializationInfo = tryFindSysILTypeRef tname_SerializationInfo |> Option.map mkILNonGenericBoxedTy @@ -1852,6 +1872,12 @@ type TcGlobals( member val cgh__stateMachine_vref = ValRefForIntrinsic v_cgh__stateMachine_info + member val cgh__runtimeAsyncReturn_vref = ValRefForIntrinsic v_cgh__runtimeAsyncReturn_info + member val cgh__runtimeAsyncReturnValueTask_vref = ValRefForIntrinsic v_cgh__runtimeAsyncReturnValueTask_info + member val cgh__runtimeAsyncReturnUnit_vref = ValRefForIntrinsic v_cgh__runtimeAsyncReturnUnit_info + member val cgh__runtimeAsyncReturnValueTaskUnit_vref = ValRefForIntrinsic v_cgh__runtimeAsyncReturnValueTaskUnit_info + member val cgh__runtimeAsyncSequence_vref = ValRefForIntrinsic v_cgh__runtimeAsyncSequence_info + member val cgh__runtimeAsyncSequenceCancellationToken_vref = ValRefForIntrinsic v_cgh__runtimeAsyncSequenceCancellationToken_info member val cgh__useResumableCode_vref = ValRefForIntrinsic v_cgh__useResumableCode_info member val cgh__debugPoint_vref = ValRefForIntrinsic v_cgh__debugPoint_info member val cgh__resumeAt_vref = ValRefForIntrinsic v_cgh__resumeAt_info diff --git a/src/Compiler/TypedTree/TcGlobals.fsi b/src/Compiler/TypedTree/TcGlobals.fsi index b0dcdc37df7..2964f5f20ed 100644 --- a/src/Compiler/TypedTree/TcGlobals.fsi +++ b/src/Compiler/TypedTree/TcGlobals.fsi @@ -255,6 +255,9 @@ type internal TcGlobals = member mk_ArrayCollector_ty: seqElemTy: TypedTree.TType -> TypedTree.TType member mk_GeneratedSequenceBase_ty: seqElemTy: TypedTree.TType -> TypedTree.TType + member mk_GeneratedRuntimeAsyncSequenceBase_ty: seqElemTy: TypedTree.TType -> TypedTree.TType + member mk_IAsyncEnumerable_ty: seqElemTy: TypedTree.TType -> TypedTree.TType + member mk_IAsyncEnumerator_ty: seqElemTy: TypedTree.TType -> TypedTree.TType member mk_IResumableStateMachine_ty: dataTy: TypedTree.TType -> TypedTree.TType @@ -292,6 +295,8 @@ type internal TcGlobals = member System_Runtime_CompilerServices_RuntimeFeature_ty: TypedTree.TType option + member System_Runtime_CompilerServices_MethodImplOptions_ty: TypedTree.TType option + member addrof2_vref: TypedTree.ValRef member addrof_vref: TypedTree.ValRef @@ -458,6 +463,17 @@ type internal TcGlobals = member cgh__stateMachine_vref: TypedTree.ValRef + member cgh__runtimeAsyncReturn_vref: TypedTree.ValRef + + member cgh__runtimeAsyncReturnValueTask_vref: TypedTree.ValRef + + member cgh__runtimeAsyncReturnUnit_vref: TypedTree.ValRef + + member cgh__runtimeAsyncReturnValueTaskUnit_vref: TypedTree.ValRef + member cgh__runtimeAsyncSequence_vref: TypedTree.ValRef + + member cgh__runtimeAsyncSequenceCancellationToken_vref: TypedTree.ValRef + member cgh__useResumableCode_vref: TypedTree.ValRef member char_operator_info: IntrinsicValRef @@ -1065,6 +1081,8 @@ type internal TcGlobals = member system_Byte_tcref: TypedTree.EntityRef + member system_CancellationToken_ty: TypedTree.TType + member system_Char_tcref: TypedTree.EntityRef member system_Decimal_tcref: TypedTree.EntityRef diff --git a/src/Compiler/TypedTree/TypedTree.fs b/src/Compiler/TypedTree/TypedTree.fs index 62de85f9d42..05cdeb91759 100644 --- a/src/Compiler/TypedTree/TypedTree.fs +++ b/src/Compiler/TypedTree/TypedTree.fs @@ -236,6 +236,10 @@ type ValFlags(flags: int64) = member x.WithIsFixed = ValFlags(flags ||| 0b01000000000000000000L) + member x.IsPinning = (flags &&& 0b1000000000000000000000000L) <> 0L + + member x.WithIsPinning = ValFlags(flags ||| 0b1000000000000000000000000L) + member x.IgnoresByrefScope = (flags &&& 0b10000000000000000000L) <> 0L member x.WithIgnoresByrefScope = ValFlags(flags ||| 0b10000000000000000000L) @@ -263,7 +267,8 @@ type ValFlags(flags: int64) = // Clear the HasBeenReferenced, only used to report "unreferenced variable" warnings and to help collect 'it' values in FSI.EXE // Clear the IsGeneratedEventVal, since there's no use in propagating specialname information for generated add/remove event vals // Clear the IsParameter, only used during type checking of the current compilation to specialize diagnostics - let bits = (flags &&& ~~~0b10010011001100000000000L) + // Clear the IsPinning, only used during compilation to track bindings that keep a fixed value pinned + let bits = (flags &&& ~~~(0b10010011001100000000000L ||| 0b1000000000000000000000000L)) // Pickle ValInline.InlinedDefinition as ValInline.Always. if bits &&& 0b00000000000000110000L = 0L then bits ||| 0b00000000000000010000L @@ -3152,6 +3157,9 @@ type Val = /// Indicates if the value is pinned/fixed member x.IsFixed = x.val_flags.IsFixed + /// Indicates if the value names a binding whose lifetime keeps a fixed value pinned + member x.IsPinning = x.val_flags.IsPinning + /// Indicates if the value will ignore byref scoping rules member x.IgnoresByrefScope = x.val_flags.IgnoresByrefScope @@ -3443,6 +3451,8 @@ type Val = member x.SetIsFixed() = x.val_flags <- x.val_flags.WithIsFixed + member x.SetIsPinning() = x.val_flags <- x.val_flags.WithIsPinning + member x.SetIgnoresByrefScope() = x.val_flags <- x.val_flags.WithIgnoresByrefScope member x.SetInlineIfLambda() = x.val_flags <- x.val_flags.WithInlineIfLambda diff --git a/src/Compiler/TypedTree/TypedTree.fsi b/src/Compiler/TypedTree/TypedTree.fsi index 655a2441537..d93c232341f 100644 --- a/src/Compiler/TypedTree/TypedTree.fsi +++ b/src/Compiler/TypedTree/TypedTree.fsi @@ -139,6 +139,8 @@ type ValFlags = member IsFixed: bool + member IsPinning: bool + member IsGeneratedEventVal: bool member IsIncrClassSpecialMember: bool @@ -175,6 +177,8 @@ type ValFlags = member WithIsFixed: ValFlags + member WithIsPinning: ValFlags + member WithIsMemberOrModuleBinding: ValFlags member WithMakesNoCriticalTailcalls: ValFlags @@ -2083,6 +2087,8 @@ type Val = member SetIsFixed: unit -> unit + member SetIsPinning: unit -> unit + member SetIsMemberOrModuleBinding: unit -> unit member SetLogicalName: nm: string -> unit @@ -2245,6 +2251,9 @@ type Val = /// Indicates if the value is pinned/fixed member IsFixed: bool + /// Indicates if the value names a binding whose lifetime keeps a fixed value pinned + member IsPinning: bool + /// Indicates if this is a constructor member generated from the de-sugaring of implicit constructor for a class type? member IsIncrClassConstructor: bool diff --git a/src/Compiler/xlf/FSComp.txt.cs.xlf b/src/Compiler/xlf/FSComp.txt.cs.xlf index 53358117ee5..286c868853b 100644 --- a/src/Compiler/xlf/FSComp.txt.cs.xlf +++ b/src/Compiler/xlf/FSComp.txt.cs.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Sdílení podkladových polí v rozlišeném sjednocení [<Struct>] za předpokladu, že mají stejný název a typ + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Neznámý bod ladění {0}. Dostupné body ladění jsou {1}. diff --git a/src/Compiler/xlf/FSComp.txt.de.xlf b/src/Compiler/xlf/FSComp.txt.de.xlf index b155bcbeb82..70da9e20c06 100644 --- a/src/Compiler/xlf/FSComp.txt.de.xlf +++ b/src/Compiler/xlf/FSComp.txt.de.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Teilen sie zugrunde liegende Felder in einen [<Struct>]-diskriminierten Union, solange sie denselben Namen und Typ aufweisen. + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Unbekannter Debugpunkt „{0}“. Die verfügbaren Debugpunkte sind „{1}“. diff --git a/src/Compiler/xlf/FSComp.txt.es.xlf b/src/Compiler/xlf/FSComp.txt.es.xlf index ffd02cc59c1..bd93ba5b340 100644 --- a/src/Compiler/xlf/FSComp.txt.es.xlf +++ b/src/Compiler/xlf/FSComp.txt.es.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Compartir campos subyacentes en una unión discriminada [<Struct>] siempre y cuando tengan el mismo nombre y tipo + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Punto de depuración desconocido \"{0}\". Los puntos de depuración disponibles son \"{1}\". diff --git a/src/Compiler/xlf/FSComp.txt.fr.xlf b/src/Compiler/xlf/FSComp.txt.fr.xlf index 0589f3f27c6..32bbd06b4c6 100644 --- a/src/Compiler/xlf/FSComp.txt.fr.xlf +++ b/src/Compiler/xlf/FSComp.txt.fr.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Partager les champs sous-jacents dans une union discriminée [<Struct>] tant qu’ils ont le même nom et le même type + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Point de débogage inconnu « {0} ». Les points de débogage disponibles sont «{1}». diff --git a/src/Compiler/xlf/FSComp.txt.it.xlf b/src/Compiler/xlf/FSComp.txt.it.xlf index 3d7dea7d1f3..b67716bc679 100644 --- a/src/Compiler/xlf/FSComp.txt.it.xlf +++ b/src/Compiler/xlf/FSComp.txt.it.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Condividi i campi sottostanti in un'unione discriminata di [<Struct>] purché abbiano lo stesso nome e tipo + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Punto di debug '{0}' sconosciuto. I punti di debug disponibili sono '{1}'. diff --git a/src/Compiler/xlf/FSComp.txt.ja.xlf b/src/Compiler/xlf/FSComp.txt.ja.xlf index db003051ffe..d1578e91e0d 100644 --- a/src/Compiler/xlf/FSComp.txt.ja.xlf +++ b/src/Compiler/xlf/FSComp.txt.ja.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ 名前と型が同じである限り、[<Struct>] 判別可能な共用体で基になるフィールドを共有する + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. 不明なデバッグ ポイントの `{0}`。使用可能なデバッグ ポイントは `{1}` です。 diff --git a/src/Compiler/xlf/FSComp.txt.ko.xlf b/src/Compiler/xlf/FSComp.txt.ko.xlf index 680c7d674a8..ad283319f7f 100644 --- a/src/Compiler/xlf/FSComp.txt.ko.xlf +++ b/src/Compiler/xlf/FSComp.txt.ko.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ 이름과 형식이 같으면 [<Struct>] 구분된 공용 구조체에서 기본 필드 공유 + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. 알 수 없는 디버그 지점 '{0}'. 사용 가능한 디버그 지점은 '{1}'입니다. diff --git a/src/Compiler/xlf/FSComp.txt.pl.xlf b/src/Compiler/xlf/FSComp.txt.pl.xlf index 5fcb1ddd826..334e6bc763d 100644 --- a/src/Compiler/xlf/FSComp.txt.pl.xlf +++ b/src/Compiler/xlf/FSComp.txt.pl.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Udostępnij pola źródłowe w unii rozłącznej [<Struct>], o ile mają taką samą nazwę i ten sam typ + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Nieznany punkt debugowania „{0}”. Dostępnymi punktami debugowania są „{1}”. diff --git a/src/Compiler/xlf/FSComp.txt.pt-BR.xlf b/src/Compiler/xlf/FSComp.txt.pt-BR.xlf index 8621c128d8a..f680dedba51 100644 --- a/src/Compiler/xlf/FSComp.txt.pt-BR.xlf +++ b/src/Compiler/xlf/FSComp.txt.pt-BR.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Compartilhar campos subjacentes em uma união discriminada [<Struct>], desde que tenham o mesmo nome e tipo + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Ponto de depuração desconhecido '{0}'. Os pontos de depuração disponíveis são '{1}'. diff --git a/src/Compiler/xlf/FSComp.txt.ru.xlf b/src/Compiler/xlf/FSComp.txt.ru.xlf index a6cf1afe434..dd907a78d2c 100644 --- a/src/Compiler/xlf/FSComp.txt.ru.xlf +++ b/src/Compiler/xlf/FSComp.txt.ru.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Совместное использование базовых полей в дискриминируемом объединении [<Struct>], если они имеют одинаковое имя и тип. + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Неизвестная точка отладки \"{0}\". Доступные точки отладки: \"{1}\". diff --git a/src/Compiler/xlf/FSComp.txt.tr.xlf b/src/Compiler/xlf/FSComp.txt.tr.xlf index db6a1afb914..077dc61653e 100644 --- a/src/Compiler/xlf/FSComp.txt.tr.xlf +++ b/src/Compiler/xlf/FSComp.txt.tr.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ Aynı ada ve türe sahip oldukları sürece temel alınan alanları [<Struct>] ayırt edici birleşim biçiminde paylaşın + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. Bilinmeyen hata ayıklama noktası '{0}'. Kullanılabilir hata ayıklama noktaları '{1}'. diff --git a/src/Compiler/xlf/FSComp.txt.zh-Hans.xlf b/src/Compiler/xlf/FSComp.txt.zh-Hans.xlf index 78b888d493f..618983518eb 100644 --- a/src/Compiler/xlf/FSComp.txt.zh-Hans.xlf +++ b/src/Compiler/xlf/FSComp.txt.zh-Hans.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ 只要它们具有相同的名称和类型,即可在 [<Struct>] 中共享基础字段 + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. 调试点“{0}”未知。可用的调试点为“{1}”。 diff --git a/src/Compiler/xlf/FSComp.txt.zh-Hant.xlf b/src/Compiler/xlf/FSComp.txt.zh-Hant.xlf index 93181cdf775..36d30ff44e9 100644 --- a/src/Compiler/xlf/FSComp.txt.zh-Hant.xlf +++ b/src/Compiler/xlf/FSComp.txt.zh-Hant.xlf @@ -1,4 +1,4 @@ - + @@ -547,6 +547,11 @@ 只要 [<Struct>] 具有相同名稱和類型,就以強制聯集共用基礎欄位 + + runtime async + runtime async + + Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules Support for scoped enabling / disabling of warnings by #warn and #nowarn directives, also inside modules @@ -672,6 +677,31 @@ The type '{0}' is not a valid custom attribute argument type. Custom attribute arrays must have elements of primitive types, enums, string, System.Type, or System.Object. + + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + A byref, byref-like, or pinned local '{0}' cannot be used after a runtime async suspension. + + + + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + The runtime-async sequence recipe could not be statically lowered. Supply a statically known delayed sequence recipe through an inline builder. + + + + Stack allocation is not permitted in a runtime async method. + Stack allocation is not permitted in a runtime async method. + + + + Runtime async suspension method '{0}' may only be called from a runtime async method. + Runtime async suspension method '{0}' may only be called from a runtime async method. + + + + A runtime async method cannot use MethodImplOptions.Synchronized. + A runtime async method cannot use MethodImplOptions.Synchronized. + + Unknown debug point '{0}'. The available debug points are '{1}'. 未知的偵錯點 '{0}'。可用的偵錯點為 '{1}'。 diff --git a/src/FSharp.Core/resumable.fs b/src/FSharp.Core/resumable.fs index 1ace0d12241..eaba70d33c4 100644 --- a/src/FSharp.Core/resumable.fs +++ b/src/FSharp.Core/resumable.fs @@ -11,6 +11,8 @@ namespace Microsoft.FSharp.Core.CompilerServices open System open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Tasks open Microsoft.FSharp.Core open Microsoft.FSharp.Core.LanguagePrimitives.IntrinsicOperators open Microsoft.FSharp.Collections @@ -110,6 +112,41 @@ module StateMachineHelpers = failwith "__stateMachine should always be guarded by __useResumableCode and only used in valid state machine implementations" +#if NET + [] + let __runtimeAsyncReturn (value: 'T) : Task<'T> = + ignore value + + failwith "__runtimeAsyncReturn is a compiler intrinsic and should only be used in runtime-async method bodies" + + [] + let __runtimeAsyncReturnValueTask (value: 'T) : ValueTask<'T> = + ignore value + + failwith + "__runtimeAsyncReturnValueTask is a compiler intrinsic and should only be used in runtime-async method bodies" + + [] + let __runtimeAsyncReturnUnit () : Task = + failwith + "__runtimeAsyncReturnUnit is a compiler intrinsic and should only be used in runtime-async method bodies" + + [] + let __runtimeAsyncReturnValueTaskUnit () : ValueTask = + failwith + "__runtimeAsyncReturnValueTaskUnit is a compiler intrinsic and should only be used in runtime-async method bodies" + + [] + let __runtimeAsyncSequence (recipe: unit -> seq<'T>) : System.Collections.Generic.IAsyncEnumerable<'T> = + ignore recipe + failwith "__runtimeAsyncSequence is a compiler intrinsic and requires a statically known sequence recipe" + + [] + let __runtimeAsyncSequenceCancellationToken () : CancellationToken = + failwith + "__runtimeAsyncSequenceCancellationToken is a compiler intrinsic and requires a statically known sequence recipe" +#endif + module ResumableCode = open System.Runtime.ExceptionServices diff --git a/src/FSharp.Core/resumable.fsi b/src/FSharp.Core/resumable.fsi index f6feef15828..0082b32f3b8 100644 --- a/src/FSharp.Core/resumable.fsi +++ b/src/FSharp.Core/resumable.fsi @@ -6,6 +6,7 @@ open Microsoft.FSharp.Collections open Microsoft.FSharp.Core open System open System.Runtime.CompilerServices +open System.Threading /// Acts as a template for struct state machines introduced by __stateMachine, and also as a reflective implementation [] @@ -194,6 +195,32 @@ module StateMachineHelpers = afterCode: AfterCode<'Data, 'Result> -> 'Result +#if NET + /// Marks an expression result for lowering as a .NET runtime-async method. + /// This function is compiler-recognised and must not be called directly. + [] + val __runtimeAsyncReturn : 'T -> System.Threading.Tasks.Task<'T> + + [] + val __runtimeAsyncReturnValueTask : 'T -> System.Threading.Tasks.ValueTask<'T> + + [] + val __runtimeAsyncReturnUnit : unit -> System.Threading.Tasks.Task + + [] + val __runtimeAsyncReturnValueTaskUnit : unit -> System.Threading.Tasks.ValueTask + + /// Compiles a statically known sequence recipe as an experimental runtime-async sequence. + /// This compiler intrinsic requires preview language and runtime support. It must not be called directly. + [] + val __runtimeAsyncSequence: recipe: (unit -> seq<'T>) -> System.Collections.Generic.IAsyncEnumerable<'T> + + /// Gets the cancellation token for the current runtime-async sequence enumeration. + /// This compiler intrinsic must only be used inside a statically known runtime-async sequence recipe. + [] + val __runtimeAsyncSequenceCancellationToken: unit -> CancellationToken +#endif + /// Adding this attribute to the method adjusts the processing of some generic methods /// during overload resolution. /// diff --git a/src/FSharp.Core/seqcore.fs b/src/FSharp.Core/seqcore.fs index ef9c57eb7a1..1f9daac7884 100644 --- a/src/FSharp.Core/seqcore.fs +++ b/src/FSharp.Core/seqcore.fs @@ -526,6 +526,34 @@ type GeneratedSequenceBase<'T>() = member _.Reset() = raise <| NotSupportedException() +#if NET +[] +type GeneratedRuntimeAsyncSequenceBase<'T>() = + [] + val mutable private claimed: int + abstract GetFreshEnumerator: unit -> GeneratedRuntimeAsyncSequenceBase<'T> + abstract SetCancellationToken: System.Threading.CancellationToken -> unit + abstract MoveNextAsync: unit -> System.Threading.Tasks.ValueTask + abstract DisposeAsync: unit -> System.Threading.Tasks.ValueTask + abstract Current: 'T + + interface IAsyncEnumerable<'T> with + member x.GetAsyncEnumerator(cancellationToken) = + if System.Threading.Interlocked.CompareExchange(&x.claimed, 1, 0) = 0 then + x.SetCancellationToken(cancellationToken) + x :> IAsyncEnumerator<'T> + else + let fresh = x.GetFreshEnumerator() + fresh.claimed <- 1 + fresh.SetCancellationToken(cancellationToken) + fresh :> IAsyncEnumerator<'T> + + interface IAsyncEnumerator<'T> with + member x.Current = x.Current + member x.MoveNextAsync() = x.MoveNextAsync() + member x.DisposeAsync() = x.DisposeAsync() +#endif + [] type ListCollector<'T> = [] @@ -658,4 +686,3 @@ type ArrayCollector<'T> = let res = this.ResizeArray.ToArray() this <- ArrayCollector<'T>() res - diff --git a/src/FSharp.Core/seqcore.fsi b/src/FSharp.Core/seqcore.fsi index 17226767a2d..2a19185817b 100644 --- a/src/FSharp.Core/seqcore.fsi +++ b/src/FSharp.Core/seqcore.fsi @@ -160,6 +160,22 @@ type GeneratedSequenceBase<'T> = interface IEnumerator interface IDisposable +#if NET +/// The compiler emits subclasses of this experimental runtime-async sequence host. +/// The sequence recipe receives the cancellation token for each enumeration and runs when the enumerator advances. +[] +type GeneratedRuntimeAsyncSequenceBase<'T> = + new: unit -> GeneratedRuntimeAsyncSequenceBase<'T> + abstract GetFreshEnumerator: unit -> GeneratedRuntimeAsyncSequenceBase<'T> + abstract SetCancellationToken: System.Threading.CancellationToken -> unit + abstract MoveNextAsync: unit -> System.Threading.Tasks.ValueTask + abstract DisposeAsync: unit -> System.Threading.Tasks.ValueTask + abstract Current: 'T + interface IAsyncEnumerable<'T> + interface IAsyncEnumerator<'T> + interface IAsyncDisposable +#endif + /// Collects elements and builds a list [] type ListCollector<'T> = diff --git a/tests/FSharp.Compiler.ComponentTests/FSharp.Compiler.ComponentTests.fsproj b/tests/FSharp.Compiler.ComponentTests/FSharp.Compiler.ComponentTests.fsproj index 11e28390319..86a67b53d08 100644 --- a/tests/FSharp.Compiler.ComponentTests/FSharp.Compiler.ComponentTests.fsproj +++ b/tests/FSharp.Compiler.ComponentTests/FSharp.Compiler.ComponentTests.fsproj @@ -400,6 +400,9 @@ + + + diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/ComposedRuntimeAsync.bsl b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/ComposedRuntimeAsync.bsl new file mode 100644 index 00000000000..f5c05aa112c --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/ComposedRuntimeAsync.bsl @@ -0,0 +1,114 @@ +module M +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let helper x = x * 2 + +let outer (n: int) : Task = + let inner y = y + helper n + let baseline = inner 10 + StateMachineHelpers.__runtimeAsyncReturn ( + let mutable total = baseline + for i in 1 .. n do + let d = AsyncHelpers.Await(Task.FromResult i) + total <- total + d + AsyncHelpers.Await(Task.Delay 1) + if total > 0 then total else -1) +-------------------------------------------------------------------------------- + +M::helper + (7,16-7,21) x * 2 + IL_0000: ldarg.0 + IL_0001: ldc.i4.2 + IL_0002: mul + IL_0003: ret + +M::outer + + IL_0000: ldarg.0 + IL_0001: newobj inner@10::.ctor + IL_0006: stloc.0 + + (11,5-11,28) let baseline = inner 10 + IL_0007: ldloc.0 + IL_0008: ldc.i4.s 10 + IL_000a: callvirt Invoke + IL_000f: stloc.1 + + (12,5-18,41) StateMachineHelpers.__runtimeAsyncReturn ( let mutable total = baseline for i in 1 .. n do let d = AsyncHelpers.Await(Task.FromResult i) total <- total + d AsyncHelpers.Await(Task.Delay 1) if total > 0 then total else -1) + IL_0010: ldarg.0 + IL_0011: ldloc.1 + IL_0012: newobj outer@12::.ctor + IL_0017: ldnull + IL_0018: tail. + IL_001a: callvirt Invoke + IL_001f: ret + +inner@10::Invoke + (10,19-10,31) y + helper n + IL_0000: ldarg.1 + IL_0001: ldarg.0 + IL_0002: ldfld inner@10::n + IL_0007: call M::helper + IL_000c: add + IL_000d: ret + +outer@12::Invoke + (13,9-13,37) let mutable total = baseline + IL_0000: ldarg.0 + IL_0001: ldfld outer@12::baseline + IL_0006: stloc.0 + + (14,9-14,12) for + IL_0007: ldc.i4.1 + IL_0008: stloc.2 + IL_0009: ldarg.0 + IL_000a: ldfld outer@12::n + IL_000f: stloc.1 + IL_0010: ldloc.1 + IL_0011: ldloc.2 + IL_0012: blt.s IL_002e + + (15,13-15,58) let d = AsyncHelpers.Await(Task.FromResult i) + IL_0014: ldloc.2 + IL_0015: call Task::FromResult + IL_001a: call AsyncHelpers::Await + IL_001f: stloc.3 + + (16,13-16,31) total <- total + d + IL_0020: ldloc.0 + IL_0021: ldloc.3 + IL_0022: add + IL_0023: stloc.0 + + + IL_0024: ldloc.2 + IL_0025: ldc.i4.1 + IL_0026: add + IL_0027: stloc.2 + + (14,15-14,17) in + IL_0028: ldloc.2 + IL_0029: ldloc.1 + IL_002a: ldc.i4.1 + IL_002b: add + IL_002c: bne.un.s IL_0014 + + (17,9-17,41) AsyncHelpers.Await(Task.Delay 1) + IL_002e: ldc.i4.1 + IL_002f: call Task::Delay + IL_0034: call AsyncHelpers::Await + + (18,9-18,26) if total > 0 then + IL_0039: ldloc.0 + IL_003a: ldc.i4.0 + IL_003b: ble.s IL_003f + + (18,27-18,32) total + IL_003d: ldloc.0 + IL_003e: ret + + (18,38-18,40) -1 + IL_003f: ldc.i4.m1 + IL_0040: ret diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncAsyncLocal.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncAsyncLocal.fs new file mode 100644 index 00000000000..0bd7899d658 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncAsyncLocal.fs @@ -0,0 +1,65 @@ +module RuntimeAsyncAsyncLocal + +open System.Threading +open System.Threading.Tasks + +open RuntimeTaskBuilder.RuntimeTask + +let private context = AsyncLocal() + +let private preservesValueAcrossAwait () = + runtimeTask { + context.Value <- "before" + do! Task.Delay(1) + + if context.Value <> "before" then + failwith "AsyncLocal value was not preserved across await" + } + +let private propagatesValueToNestedRuntimeTask () = + runtimeTask { + context.Value <- "parent" + + let! nestedValue = + runtimeTask { + do! Task.Delay(1) + return context.Value + } + + if nestedValue <> "parent" then + failwith "AsyncLocal value was not propagated to nested runtimeTask" + } + +let private isolatesChildTaskChanges () = + runtimeTask { + context.Value <- "parent" + + let! childValue = + Task.Run(fun () -> + context.Value <- "child" + context.Value) + + if childValue <> "child" then + failwith "AsyncLocal child value was not set" + + if context.Value <> "parent" then + failwith "AsyncLocal child change leaked to parent" + } + +[] +let main _ = + context.Value <- "main" + + [| + preservesValueAcrossAwait () + propagatesValueToNestedRuntimeTask () + isolatesChildTaskChanges () + |] + |> Task.WhenAll + |> _.Result + |> ignore + + if context.Value <> "main" then + failwith "AsyncLocal value was not preserved after all tasks completed" + + 0 diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncBasic.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncBasic.fs new file mode 100644 index 00000000000..5022f08f153 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncBasic.fs @@ -0,0 +1,69 @@ +module RuntimeAsyncBasic + +open System +open System.Runtime.CompilerServices +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let private delayed value = + Task.Delay(1).ContinueWith(fun (_: Task) -> value) + +let add (x: int) (y: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + let first = AsyncHelpers.Await(delayed x) + first + y + ) + +let lambdaAdd: int -> Task = + fun value -> + StateMachineHelpers.__runtimeAsyncReturn ( + let result = AsyncHelpers.Await(delayed value) + result + 1 + ) + +let makeAdder (offset: int) : int -> Task = + fun value -> + StateMachineHelpers.__runtimeAsyncReturn ( + let result = AsyncHelpers.Await(delayed value) + result + offset + ) + +let inline apply ([] operation: int -> int) (value: int) = operation value + +let inline awaitAndAdd (value: int) = + let result = AsyncHelpers.Await(Task.Delay(1).ContinueWith(fun (_: Task) -> value)) + + apply (fun current -> current + 1) result + +let addWithInline (value: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn (awaitAndAdd value) + +type Calculator() = + member _.Add(x: int, y: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + let first = AsyncHelpers.Await(delayed x) + first + y + ) + + static member Double(value: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn (value * 2) + +let private resultOf (task: Task) = task.GetAwaiter().GetResult() + +[] +let main _ = + let calculator = Calculator() + let capturedAdder = makeAdder 10 + + let results = + [ + add 20 22 + lambdaAdd 41 + capturedAdder 32 + addWithInline 41 + calculator.Add(20, 22) + Calculator.Double 21 + ] + |> List.map resultOf + + if results = [ 42; 42; 42; 42; 42; 42 ] then 0 else 1 diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEdgeCases.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEdgeCases.fs new file mode 100644 index 00000000000..85bd3634c17 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEdgeCases.fs @@ -0,0 +1,115 @@ +// Runtime-behavior edge cases for runtime-async, exercised through the runtimeTask CE builder +// (RuntimeTaskBuilder.fs, treated here as a hypothetical library). Verified to run green on the +// pinned net11 preview runtime. Referenced from RuntimeAsyncEdgeCaseTests.fs via compileExeAndRun. +module RuntimeAsyncEdgeCases + +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices +open RuntimeTaskBuilder.RuntimeTask + +let private delayed v = + Task.Delay(1).ContinueWith(fun (_: Task) -> v) + +let private resultOf (t: Task<'T>) = t.GetAwaiter().GetResult() + +// locals: a normal local is hoisted by the JIT and preserved across a suspension. +let normalLocalAcross () : Task = + runtimeTask { + let captured = 40 + let! delta = delayed 2 + return captured + delta + } + +// loops: await inside both a while body and a for body; results checked separately. +let loopsAcrossAwait () : Task = + runtimeTask { + let mutable whileAcc = 0 + let mutable i = 0 + + while i < 3 do + let! x = delayed 1 + whileAcc <- whileAcc + x + i <- i + 1 + + let mutable forAcc = 0 + + for x in [ 1; 2; 3 ] do + let! y = delayed x + forAcc <- forAcc + y + + return (whileAcc, forAcc) + } + +// a non-ref (readonly) value struct is hoisted and keeps its fields across a suspension, unlike the +// ref-struct/ReadOnlySpan case which is contract-forbidden. +[] +type Pair = { A: int; B: int } + +let structAcross () : Task = + runtimeTask { + let p = { A = 20; B = 22 } + let! _ = delayed 0 + return p.A + p.B + } + +// operand: change a bound source from Task to ValueTask keeps working. +let awaitValueTask () : Task = + runtimeTask { + let! x = ValueTask(41) + return x + 1 + } + +// exception thrown after a suspension surfaces through the returned Task. +let exnAfterAwait () : Task = + runtimeTask { + let! _ = delayed 1 + return failwith "boom" + } + +// use on an IAsyncDisposable: the builder's Using hoists DisposeAsync out of the finally, +// so disposal (which suspends) never runs inside an EH region. DisposeAsync genuinely suspends +// before recording the disposal, so a passing `sink = 1` proves the builder awaited it. +type AsyncProbe(sink: int ref) = + interface IAsyncDisposable with + member _.DisposeAsync() = + ValueTask(Task.Delay(1).ContinueWith(fun (_: Task) -> sink.Value <- 1)) + +let useAsyncDisposable (sink: int ref) : Task = + runtimeTask { + use _p = new AsyncProbe(sink) + let! x = delayed 7 + return x + } + +[] +let main _ = + let mutable failures = 0 + + let check name cond = + if not cond then + eprintfn "FAILED: %s" name + failures <- failures + 1 + + check "normalLocalAcross" (resultOf (normalLocalAcross ()) = 42) + let (whileAcc, forAcc) = resultOf (loopsAcrossAwait ()) + check "awaitInWhile" (whileAcc = 3) + check "awaitInFor" (forAcc = 6) + check "structAcross" (resultOf (structAcross ()) = 42) + check "awaitValueTask" (resultOf (awaitValueTask ()) = 42) + + let threw = + try + resultOf (exnAfterAwait ()) |> ignore + false + with _ -> + true + + check "exnAfterAwait propagates" threw + + let sink = ref 0 + check "useAsyncDisposable result" (resultOf (useAsyncDisposable sink) = 7) + check "useAsyncDisposable disposed" (sink.Value = 1) + + if failures = 0 then 0 else 1 diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerable.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerable.fs new file mode 100644 index 00000000000..517e59612de --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerable.fs @@ -0,0 +1,340 @@ +module RuntimeAsyncEnumerable + +open System +open System.Collections.Generic +open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Channels +open System.Threading.Tasks +open System.Threading.Tasks.Sources +open Microsoft.FSharp.Control +open Microsoft.FSharp.Core.CompilerServices +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers + +[] +type AsyncSequenceEvent<'t> = + | Item of 't + | Completed + | Faulted of exn + +type AsyncManualResetSignal<'t>() = + let mutable source = ManualResetValueTaskSourceCore<'t>() + do source.RunContinuationsAsynchronously <- true + + member this.WaitAsync() = ValueTask<'t>(this, source.Version) + member _.SetResult value = source.SetResult value + member _.Reset() = source.Reset() + + interface IValueTaskSource<'t> with + member _.GetResult(token) = source.GetResult(token) + member _.GetStatus(token) = source.GetStatus(token) + member _.OnCompleted(continuation, state, token, flags) = + source.OnCompleted(continuation, state, token, flags) + +[] +type AsyncSequenceState<'T> = { + MoveNextRequest: AsyncManualResetSignal + ItemResponse: AsyncManualResetSignal> + CancellationToken: CancellationToken + KickOff: bool +} + +module AsyncSequenceState = + let publishItem state item = state.ItemResponse.SetResult(Item item) + let publishCompleted state = state.ItemResponse.SetResult(Completed) + let create cancellationToken = + { + MoveNextRequest = AsyncManualResetSignal() + ItemResponse = AsyncManualResetSignal>() + CancellationToken = cancellationToken + KickOff = true + } + + +type AsyncSeqEnumerator<'T>(state: AsyncSequenceState<'T>) = + let mutable current = Unchecked.defaultof<'T> + let mutable moveNextInProgress = 0 + + interface IAsyncEnumerator<'T> with + member _.Current = current + + member this.MoveNextAsync() = + if Interlocked.Exchange(&moveNextInProgress, 1) = 1 then + invalidOp "MoveNextAsync cannot be called concurrently." + + __runtimeAsyncReturnValueTask( + try + state.MoveNextRequest.SetResult() + + match AsyncHelpers.Await(state.ItemResponse.WaitAsync()) with + | Item value -> + current <- value + true + | Completed -> + current <- Unchecked.defaultof<'T> + false + | Faulted error -> + raise error + finally + state.ItemResponse.Reset() + Interlocked.Exchange(&moveNextInProgress, 0) |> ignore + ) + + member this.DisposeAsync() = ValueTask.CompletedTask + +type AsyncEnumerable<'T>(runProducer: AsyncSequenceState<'T> -> Task) = + let getEnumerator ct = + let state = AsyncSequenceState.create ct + Task.Run<_>(fun () -> runProducer state) |> ignore + AsyncSeqEnumerator<'T>(state) + + member _.RunProducer(state: AsyncSequenceState<'T>) = runProducer state + + interface IAsyncEnumerable<'T> with + member _.GetAsyncEnumerator(cancellationToken: CancellationToken) = + getEnumerator cancellationToken + +type AsyncSequenceBody<'T> = AsyncSequenceState<'T> -> unit + +type AsyncSeqBuilder() = + member inline _.Delay([] generator: unit -> AsyncSequenceBody<'T>) : AsyncSequenceBody<'T> = + fun state -> generator() state + + member inline _.Run([] code: AsyncSequenceBody<'T>) : IAsyncEnumerable<'T> = + let runProducer state = + __runtimeAsyncReturn( + // wait for kick off. + if state.KickOff then + AsyncHelpers.Await(state.MoveNextRequest.WaitAsync()) + state.MoveNextRequest.Reset() + + code state + + if state.KickOff then AsyncSequenceState.publishCompleted state + ) + + AsyncEnumerable(runProducer) + + member inline _.Zero() : AsyncSequenceBody<'T> = + fun _ -> () + + member inline _.Return(_: unit) : AsyncSequenceBody<'T> = + fun _ -> () + + member inline _.ReturnFrom(task: Task) : AsyncSequenceBody<'T> = + fun _ -> AsyncHelpers.Await task + + member inline _.ReturnFrom(task: Task<'U>) : AsyncSequenceBody<'T> = + fun _ -> AsyncHelpers.Await task |> ignore + + member inline _.ReturnFrom(task: ValueTask) : AsyncSequenceBody<'T> = + fun _ -> AsyncHelpers.Await task + + member inline _.ReturnFrom(task: ValueTask<'U>) : AsyncSequenceBody<'T> = + fun _ -> AsyncHelpers.Await task |> ignore + + member inline _.ReturnFrom(computation: Async<'U>) : AsyncSequenceBody<'T> = + fun _ -> AsyncHelpers.Await(Async.StartImmediateAsTask computation) |> ignore + + member inline _.Bind(task: Task, [] continuation: unit -> AsyncSequenceBody<'T>) : AsyncSequenceBody<'T> = + fun state -> + AsyncHelpers.Await task + continuation() state + + member inline _.Bind(task: Task<'U>, [] continuation: 'U -> AsyncSequenceBody<'T>) : AsyncSequenceBody<'T> = + fun state -> + continuation (AsyncHelpers.Await task) state + + member inline _.Bind(task: ValueTask, [] continuation: unit -> AsyncSequenceBody<'T>) : AsyncSequenceBody<'T> = + fun state -> + AsyncHelpers.Await task + continuation() state + + member inline _.Bind(task: ValueTask<'U>, [] continuation: 'U -> AsyncSequenceBody<'T>) : AsyncSequenceBody<'T> = + fun state -> + continuation (AsyncHelpers.Await task) state + + member inline _.Bind(computation: Async<'U>, [] continuation: 'U -> AsyncSequenceBody<'T>) : AsyncSequenceBody<'T> = + fun state -> + continuation (AsyncHelpers.Await(Async.StartImmediateAsTask computation)) state + + member inline _.Bind( + values: struct ('U1 * 'U2), + [] continuation: struct ('U1 * 'U2) -> AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> continuation values state + + member inline _.Combine( + [] first: AsyncSequenceBody<'T>, + [] second: AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> + first state + second state + + member inline _.TryWith( + [] body: AsyncSequenceBody<'T>, + [] handler: exn -> AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> + try + body state + with error -> + handler error state + + member inline _.TryFinally( + [] body: AsyncSequenceBody<'T>, + [] compensation: unit -> unit + ) : AsyncSequenceBody<'T> = + fun state -> + try + body state + finally + compensation() + + member inline _.Using( + resource: 'Resource, + [] body: 'Resource -> AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> + try + body resource state + finally + match box resource with + | :? IAsyncDisposable as disposable -> AsyncHelpers.Await(disposable.DisposeAsync()) + | :? IDisposable as disposable -> disposable.Dispose() + | _ -> () + + member inline _.While( + [] guard: unit -> bool, + [] body: AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> + while guard() do + body state + + member inline _.For( + sequence: seq<'U>, + [] body: 'U -> AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> + for item in sequence do + body item state + + member inline _.For( + sequence: IAsyncEnumerable<'U>, + [] body: 'U -> AsyncSequenceBody<'T> + ) : AsyncSequenceBody<'T> = + fun state -> + let innerEnumerator = sequence.GetAsyncEnumerator(state.CancellationToken) + + try + while AsyncHelpers.Await(innerEnumerator.MoveNextAsync()) do + let value = innerEnumerator.Current + body value state + finally + AsyncHelpers.Await(innerEnumerator.DisposeAsync()) + + member inline _.Yield(value: 'T) : AsyncSequenceBody<'T> = + fun state -> + AsyncSequenceState.publishItem state value + AsyncHelpers.Await(state.MoveNextRequest.WaitAsync()) + state.MoveNextRequest.Reset() + + member inline _.YieldFrom(sequence: seq<'T>) : AsyncSequenceBody<'T> = + fun state -> + for value in sequence do + AsyncSequenceState.publishItem state value + AsyncHelpers.Await(state.MoveNextRequest.WaitAsync()) + state.MoveNextRequest.Reset() + + member inline _.YieldFrom(sequence: IAsyncEnumerable<'T>) : AsyncSequenceBody<'T> = + fun state -> + let innerEnumerator = sequence.GetAsyncEnumerator(state.CancellationToken) + + try + while AsyncHelpers.Await(innerEnumerator.MoveNextAsync()) do + let value = innerEnumerator.Current + AsyncSequenceState.publishItem state value + AsyncHelpers.Await(state.MoveNextRequest.WaitAsync()) + state.MoveNextRequest.Reset() + finally + AsyncHelpers.Await(innerEnumerator.DisposeAsync()) + + member inline this.YieldFromFinal(sequence: IAsyncEnumerable<'T>) : AsyncSequenceBody<'T> = + match sequence with + | :? AsyncEnumerable<'T> as asyncSeq -> + fun state -> + AsyncHelpers.Await (asyncSeq.RunProducer { state with KickOff = false }) + | _ -> + this.YieldFrom sequence + +module AsyncSeqAwaitableExtensions = + let inline awaitTaskLike + ([] getAwaiter: unit -> 'Awaiter) + ([] getResult: 'Awaiter -> 'T) + = + let awaiter = getAwaiter() + AsyncHelpers.AwaitAwaiter awaiter + getResult awaiter + + type AsyncSeqBuilder with + [] + member inline _.Bind< ^TaskLike, ^Awaiter, 'U, 'T + when ^TaskLike: (member GetAwaiter: unit -> ^Awaiter) + and ^Awaiter :> ICriticalNotifyCompletion + and ^Awaiter: (member get_IsCompleted: unit -> bool) + and ^Awaiter: (member GetResult: unit -> 'U)> + (task: ^TaskLike, [] continuation: 'U -> AsyncSequenceBody<'T>) + : AsyncSequenceBody<'T> = + fun state -> + let result = + awaitTaskLike + (fun () -> (^TaskLike: (member GetAwaiter: unit -> ^Awaiter) task)) + (fun awaiter -> (^Awaiter: (member GetResult: unit -> 'U) awaiter)) + + continuation result state + + [] + member inline _.ReturnFrom< ^TaskLike, ^Awaiter, 'U, 'T + when ^TaskLike: (member GetAwaiter: unit -> ^Awaiter) + and ^Awaiter :> ICriticalNotifyCompletion + and ^Awaiter: (member get_IsCompleted: unit -> bool) + and ^Awaiter: (member GetResult: unit -> 'U)> + (task: ^TaskLike) + : AsyncSequenceBody<'T> = + fun _ -> + awaitTaskLike + (fun () -> (^TaskLike: (member GetAwaiter: unit -> ^Awaiter) task)) + (fun awaiter -> (^Awaiter: (member GetResult: unit -> 'U) awaiter)) + |> ignore + + [] + member inline _.MergeSources< ^TaskLike1, ^TaskLike2, ^Awaiter1, ^Awaiter2, 'U1, 'U2 + when ^TaskLike1: (member GetAwaiter: unit -> ^Awaiter1) + and ^TaskLike2: (member GetAwaiter: unit -> ^Awaiter2) + and ^Awaiter1 :> ICriticalNotifyCompletion + and ^Awaiter2 :> ICriticalNotifyCompletion + and ^Awaiter1: (member get_IsCompleted: unit -> bool) + and ^Awaiter1: (member GetResult: unit -> 'U1) + and ^Awaiter2: (member get_IsCompleted: unit -> bool) + and ^Awaiter2: (member GetResult: unit -> 'U2)> + (left: ^TaskLike1, right: ^TaskLike2) + : struct ('U1 * 'U2) = + let awaitLeft () = + awaitTaskLike + (fun () -> (^TaskLike1: (member GetAwaiter: unit -> ^Awaiter1) left)) + (fun awaiter -> (^Awaiter1: (member GetResult: unit -> 'U1) awaiter)) + + let awaitRight () = + awaitTaskLike + (fun () -> (^TaskLike2: (member GetAwaiter: unit -> ^Awaiter2) right)) + (fun awaiter -> (^Awaiter2: (member GetResult: unit -> 'U2) awaiter)) + + struct (awaitLeft(), awaitRight()) + +open AsyncSeqAwaitableExtensions + +[] +module AsyncSeq = + let asyncSeq = AsyncSeqBuilder() diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerableLowLevel.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerableLowLevel.fs new file mode 100644 index 00000000000..6b9c700b52b --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerableLowLevel.fs @@ -0,0 +1,96 @@ +module RuntimeAsyncEnumerableLowLevel + +open System +open System.Collections.Generic +open System.Diagnostics +open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Tasks +open Microsoft.FSharp.Control +open Microsoft.FSharp.Core.CompilerServices + +type CounterEnumerator(count: int) = + let mutable current = -1 + + member private _.MoveNextCore() : ValueTask = + StateMachineHelpers.__runtimeAsyncReturnValueTask ( + AsyncHelpers.Await(Task.Delay(1)) + current <- current + 1 + current < count + ) + + interface IAsyncEnumerator with + member _.Current = current + member this.MoveNextAsync() = this.MoveNextCore() + member _.DisposeAsync() = ValueTask() + +type CounterEnumerable(count: int) = + interface IAsyncEnumerable with + member _.GetAsyncEnumerator(_cancellationToken: CancellationToken) = + CounterEnumerator(count) :> IAsyncEnumerator + +let objectExpressionEnumerable count : IAsyncEnumerable = + { new IAsyncEnumerable with + member _.GetAsyncEnumerator(_cancellationToken: CancellationToken) = + let mutable current = -1 + + { new IAsyncEnumerator with + member _.Current = current + + member _.MoveNextAsync() : ValueTask = + StateMachineHelpers.__runtimeAsyncReturnValueTask ( + AsyncHelpers.Await(Task.Delay(100)) + current <- current + 1 + current < count + ) + + member _.DisposeAsync() = ValueTask() + } + } + +let collect (enumerable: IAsyncEnumerable) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + let enumerator = enumerable.GetAsyncEnumerator(CancellationToken.None) + let values = ResizeArray() + let mutable hasNext = AsyncHelpers.Await(enumerator.MoveNextAsync()) + + while hasNext do + values.Add enumerator.Current + hasNext <- AsyncHelpers.Await(enumerator.MoveNextAsync()) + + AsyncHelpers.Await(enumerator.DisposeAsync()) + Seq.toArray values + ) + +let collectWithTaskCe (enumerable: IAsyncEnumerable) = + task { + use enumerator = enumerable.GetAsyncEnumerator(CancellationToken.None) + let values = ResizeArray() + let stopwatch = Stopwatch.StartNew() + + while! enumerator.MoveNextAsync() do + values.Add enumerator.Current + + return Seq.toArray values, stopwatch.Elapsed + } + +[] +let main _ = + let expected = [| 0; 1; 2 |] + let classEnumerable = CounterEnumerable(3) :> IAsyncEnumerable + + let classValues = + collect classEnumerable |> fun task -> task.GetAwaiter().GetResult() + + let taskValues, elapsed = + collectWithTaskCe (objectExpressionEnumerable 3) + |> fun task -> task.GetAwaiter().GetResult() + + if + classValues = expected + && taskValues = expected + && elapsed >= TimeSpan.FromMilliseconds(300.) + then + 0 + else + 1 diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerableTests.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerableTests.fs new file mode 100644 index 00000000000..532257c81b9 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncEnumerableTests.fs @@ -0,0 +1,308 @@ +module Tests + +open System +open System.Collections.Generic +open System.Threading +open System.Threading.Tasks +open RuntimeAsyncEnumerable +open RuntimeTaskBuilder +open RuntimeTaskBuilder.RuntimeTask +open AsyncSeqAwaitableExtensions + +// Test that the runtime-async computation is not split by the Optimizer +let except (itemsToExclude: IAsyncEnumerable<_>) (source: IAsyncEnumerable<_>) = + + asyncSeq { + use e = source.GetAsyncEnumerator CancellationToken.None + let! hasFirst = e.MoveNextAsync() + + if hasFirst then + // only create hashset by the time we actually start iterating; + // taskSeq enumerates sequentially, so a plain HashSet suffices — no locking needed. + let hashSet = HashSet<_>(HashIdentity.Structural) + + use excl = itemsToExclude.GetAsyncEnumerator CancellationToken.None + + while! excl.MoveNextAsync() do + hashSet.Add excl.Current |> ignore + + // if true, it was added, and therefore unique, so we return it + // if false, it existed, and therefore a duplicate, and we skip + if hashSet.Add e.Current then + yield e.Current + + while! e.MoveNextAsync() do + let current = e.Current + + if hashSet.Add current then + yield current + } + +let private assertEqual name expected actual = + if expected <> actual then + failwithf "%s failed. Expected %A, got %A." name expected actual + +let private assertTrue name condition = + if not condition then + failwithf "%s failed." name + +let private collect (source: IAsyncEnumerable<'T>) = + runtimeTask { + use enumerator = source.GetAsyncEnumerator(CancellationToken.None) + let values = ResizeArray<'T>() + + while! enumerator.MoveNextAsync() do + //printfn "Collected value: %A" enumerator.Current + values.Add enumerator.Current + + return Seq.toArray values + } + +type CustomAwaitable(value: int) = + member _.GetAwaiter() = Task.FromResult(value).GetAwaiter() + +type private TrackingDisposable(onDispose: unit -> unit) = + interface IDisposable with + member _.Dispose() = onDispose() + +type private TestAsyncSource(values: int[]) = + interface IAsyncEnumerable with + member _.GetAsyncEnumerator(_cancellationToken: CancellationToken) = + let mutable index = -1 + + { new IAsyncEnumerator with + member _.Current = + if index < 0 || index >= values.Length then + invalidOp "Current is not available." + + values[index] + + member _.MoveNextAsync() = + index <- index + 1 + ValueTask(index < values.Length) + + member _.DisposeAsync() = ValueTask() } + +let private basicSequence () = + asyncSeq { + do! Task.Delay(5) + yield "1" + do! Task.Delay(5) + yield "x" + do! Task.Delay(5) + yield "2" + } + +let private testBasicSequence () = + runtimeTask { + let! values = collect (basicSequence()) + assertEqual "basic sequence" [| "1"; "x"; "2" |] values + } + +let private testAwaitableKinds () = + runtimeTask { + let source = + asyncSeq { + let! taskValue = Task.FromResult 1 + let! valueTaskValue = ValueTask(2) + let! asyncValue = async { return 3 } + let! customValue = CustomAwaitable 4 + let! runtimeTaskValue = runtimeTask { return 5 } + yield taskValue + valueTaskValue + asyncValue + customValue + runtimeTaskValue + } + + let! values = collect source + assertEqual "awaitable kinds" [| 15 |] values + } + +let private testMergedAwaitables () = + runtimeTask { + let source = + asyncSeq { + do! Task.Delay(25) + let! taskValue = Task.FromResult 1 + let! valueTaskValue = ValueTask(2) + let! asyncValue = async { return 3 } + do! Task.Delay(25) + yield taskValue + valueTaskValue + asyncValue + } + + let! values = collect source + assertEqual "merged awaitables" [| 6 |] values + } + +let private testTryWith () = + runtimeTask { + let source = + asyncSeq { + try + yield 1 + do! Task.Delay(10) + raise (InvalidOperationException("expected")) + with + | :? InvalidOperationException -> yield 2 + } + + let! values = collect source + assertEqual "try/with" [| 1; 2 |] values + } + +let private testTryFinally () = + runtimeTask { + let mutable cleanedUp = false + let source = + asyncSeq { + try + yield 3 + finally + cleanedUp <- true + } + + let! values = collect source + assertEqual "try/finally values" [| 3 |] values + assertTrue "try/finally cleanup" cleanedUp + } + +let private testUsing () = + runtimeTask { + let mutable disposed = false + let source = + asyncSeq { + use resource = new TrackingDisposable(fun () -> disposed <- true) + yield 4 + } + + let! values = collect source + assertEqual "using values" [| 4 |] values + assertTrue "using disposal" disposed + } + +let private testWhile () = + runtimeTask { + let source = + asyncSeq { + let mutable value = 0 + + while value < 3 do + do! Task.Delay(10) + yield value + value <- value + 1 + } + + let! values = collect source + assertEqual "while loop" [| 0; 1; 2 |] values + } + +let private testYieldFrom () = + runtimeTask { + let source = + asyncSeq { + yield! [ 5; 6 ] + yield! (TestAsyncSource [| 7; 8 |] :> IAsyncEnumerable) + } + + let! values = collect source + assertEqual "yield!" [| 5; 6; 7; 8 |] values + } + +let private testForAsyncEnumerable () = + runtimeTask { + let source = + asyncSeq { + for value in (TestAsyncSource [| 9; 10 |] :> IAsyncEnumerable) do + yield value + 1 + } + + let! values = collect source + assertEqual "async for loop" [| 10; 11 |] values + } + +let private testPullDrivenEnumeration () = + runtimeTask { + let mutable sideEffects = 0 + let source = + asyncSeq { + sideEffects <- sideEffects + 1 + yield 1 + sideEffects <- sideEffects + 1 + yield 2 + } + + use enumerator = source.GetAsyncEnumerator(CancellationToken.None) + assertEqual "pull before first move" 0 sideEffects + let! firstMove = enumerator.MoveNextAsync() + assertTrue "pull first move" firstMove + assertEqual "pull first side effect" 1 sideEffects + assertEqual "pull first value" 1 enumerator.Current + let! secondMove = enumerator.MoveNextAsync() + assertTrue "pull second move" secondMove + assertEqual "pull second side effect" 2 sideEffects + assertEqual "pull second value" 2 enumerator.Current + let! completed = enumerator.MoveNextAsync() + assertTrue "pull completion" (not completed) + } + +let private testConcurrentMoveNext () = + runtimeTask { + let gate = TaskCompletionSource(TaskCreationOptions.RunContinuationsAsynchronously) + let source = + asyncSeq { + do! gate.Task + yield 1 + } + + use enumerator = source.GetAsyncEnumerator(CancellationToken.None) + let firstMove = enumerator.MoveNextAsync() + let rejected = + try + enumerator.MoveNextAsync() |> ignore + false + with + | :? InvalidOperationException -> true + + gate.SetResult(()) + assertTrue "concurrent MoveNext rejection" rejected + let! firstMoveResult = firstMove + assertTrue "concurrent MoveNext result" firstMoveResult + } + +let testTailRecursion () = + runtimeTask { + let rec loop n = + asyncSeq { + if n > 0 then + if n % 10000 = 0 then + do! Task.Delay 1 // simulate some async work + yield n + yield! loop (n - 1) + } + let! values = collect (loop 100_000) + assertEqual "tail recursion" [| for i in 100_000 .. -1 .. 1 -> i |] values + } + +let runTests () = + let tests : (string * Task) list = + [ "basic sequence", testBasicSequence () + "awaitable kinds", testAwaitableKinds () + "merged awaitables", testMergedAwaitables () + "try/with", testTryWith () + "try/finally", testTryFinally () + "using", testUsing () + "while", testWhile () + "yield!", testYieldFrom () + "async for loop", testForAsyncEnumerable () + "pull-driven enumeration", testPullDrivenEnumeration () + "concurrent MoveNext", testConcurrentMoveNext () + "tail recursion", testTailRecursion () ] + + runtimeTask { + for name, test in tests do + do! test + printfn "PASS: %s" name + + return 0 + } + +[] +let main _ = + runTests() |> _.Result diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequence.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequence.fs new file mode 100644 index 00000000000..f7bc835b4ae --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequence.fs @@ -0,0 +1,237 @@ +module RuntimeAsyncSequence + +open System +open System.Collections.Generic +open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Tasks +open System.Threading.Tasks.Sources +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers +open RuntimeAsyncSequenceBuilder + +let check message condition = if not condition then failwith message +let gate<'T> () = TaskCompletionSource<'T>(TaskCreationOptions.RunContinuationsAsynchronously) + +let checkDispatch (iterator: IAsyncEnumerator<'T>) = + let generatedType = iterator.GetType() + for interfaceType in [typeof>; typeof] do + let mapping = generatedType.GetInterfaceMap interfaceType + let targets = mapping.TargetMethods |> Array.map (fun method -> $"{method.DeclaringType.FullName}.{method.Name}") + check (String.Join(", ", targets)) + (mapping.TargetMethods |> Array.forall (fun method -> method.DeclaringType = generatedType)) + +type SingleConsumeSource() = + let mutable core = ManualResetValueTaskSourceCore() + let mutable consumed = 0 + member this.Value = ValueTask(this, core.Version) + member this.GetAwaiter() = this.Value.GetAwaiter() + member _.Complete() = core.SetResult 42 + member _.Consumed = consumed + interface IValueTaskSource with + member _.GetStatus(token) = core.GetStatus token + member _.OnCompleted(continuation, state, token, flags) = core.OnCompleted(continuation, state, token, flags) + member _.GetResult(token) = + consumed <- consumed + 1 + check "single consumption" (consumed = 1) + core.GetResult token + +let example (work: Task) (resource: IAsyncDisposable) = runtimeAsyncSeq { + use cleanup = resource + let! value = work + let! value = ValueTask.FromResult(value).ConfigureAwait(false) + do! ValueTask.CompletedTask.ConfigureAwait(false) + for offset in [1; 2] do + yield value + offset + yield! [10] + for value in runtimeAsyncSeq { yield 11 } do + yield value + yield! runtimeAsyncSeq { yield 12 } +} + +let run () = __runtimeAsyncReturnUnit ( + let work, cleanup = gate(), gate() + let mutable closed = 0 + let resource = { new IAsyncDisposable with member _.DisposeAsync() = closed <- closed + 1; ValueTask(cleanup.Task) } + let source = example work.Task resource + let iterator = source.GetAsyncEnumerator() + check "reuse first enumeration" (obj.ReferenceEquals(source, iterator)) + checkDispatch iterator + let unused = source.GetAsyncEnumerator() + let nestedFresh = (unused :?> IAsyncEnumerable).GetAsyncEnumerator() + check "fresh clones are already acquired" (not (obj.ReferenceEquals(iterator, unused)) && not (obj.ReferenceEquals(unused, nestedFresh))) + AsyncHelpers.Await(unused.DisposeAsync()) + AsyncHelpers.Await(nestedFresh.DisposeAsync()) + check "unstarted disposal is cold" (closed = 0) + let move = iterator.MoveNextAsync() + check "pending move" (not move.IsCompleted && closed = 0) + work.SetResult 40 + let moved = AsyncHelpers.Await move + check "first value" (moved && iterator.Current = 41) + let disposal = iterator.DisposeAsync() + check "pending cleanup" (not disposal.IsCompleted && closed = 1) + cleanup.SetResult() + AsyncHelpers.Await disposal + AsyncHelpers.Await(iterator.DisposeAsync()) + + let ordering = ResizeArray() + let next () = ordering.Add 1; Task.FromResult 40 + let receiver () = ordering.Add 2; fun value -> value + 2 + let value = + let pending = next() + (receiver()) (AsyncHelpers.Await pending) + check "source precedes effectful receiver" (value = 42 && List.ofSeq ordering = [1; 2]) + ordering.Clear() + let shared = next() + let total = AsyncHelpers.Await shared + AsyncHelpers.Await shared + check "shared source is evaluated once" (total = 80 && List.ofSeq ordering = [1]) + + let mutable entered = 0 + let concurrent = runtimeAsyncSeq { entered <- entered + 1; yield 1 } + let acquisitions = Array.init 8 (fun _ -> Task.Run(fun () -> concurrent.GetAsyncEnumerator())) + let iterators = AsyncHelpers.Await(Task.WhenAll acquisitions) + let identities = HashSet>(HashIdentity.Reference) + for iterator in iterators do + check "independent concurrent acquisitions" (identities.Add iterator) + AsyncHelpers.Await(iterator.DisposeAsync()) + check "one first-enumeration reuse" ((iterators |> Array.filter (fun iterator -> obj.ReferenceEquals(concurrent, iterator))).Length = 1) + check "concurrent acquisition is cold" (entered = 0) + let moved = AsyncHelpers.Await(iterator.MoveNextAsync()) + check "terminal disposal" (not moved && closed = 1) + + let values = ResizeArray() + let iterator = source.GetAsyncEnumerator() + let mutable more = true + while more do + let moved = AsyncHelpers.Await(iterator.MoveNextAsync()) + more <- moved + if moved then values.Add iterator.Current + AsyncHelpers.Await(iterator.DisposeAsync()) + check "fresh enumeration" (Seq.toList values = [41; 42; 10; 11; 12] && closed = 2) + + for prefix, cleanupFails in [false, false; true, false; false, true; true, true] do + let bodyError = InvalidOperationException("body") + let cleanupError = InvalidOperationException("cleanup") + let work, cleanup, cleanupEntered = gate(), gate(), gate() + let resource = + { new IAsyncDisposable with + member _.DisposeAsync() = + cleanupEntered.SetResult() + ValueTask(cleanup.Task) } + let source = runtimeAsyncSeq { + use cleanup = resource + if prefix then yield 1 + let! value = work.Task + yield value + } + let iterator = source.GetAsyncEnumerator() + if prefix then check "before fault" (AsyncHelpers.Await(iterator.MoveNextAsync())) + let fault = iterator.MoveNextAsync() + check "pending before fault" (not fault.IsCompleted) + work.SetException bodyError + AsyncHelpers.Await cleanupEntered.Task + check "fault awaits cleanup" (not fault.IsCompleted) + if cleanupFails then cleanup.SetException cleanupError else cleanup.SetResult() + try + AsyncHelpers.Await fault |> ignore + failwith "lost body exception" + with error -> + let expected = if cleanupFails then cleanupError else bodyError + check "fault origin" (obj.ReferenceEquals(error, expected) && error.StackTrace.Contains("MoveNextAsync")) + check "terminal fault" (not (AsyncHelpers.Await(iterator.MoveNextAsync()))) + AsyncHelpers.Await(iterator.DisposeAsync()) + + for cleanupFails in [false; true] do + let work = gate() + let bodyError, cleanupError = InvalidOperationException("body"), InvalidOperationException("cleanup") + let mutable closed = 0 + let source = runtimeAsyncSeq { + try + let! value = work.Task + yield value + finally + closed <- closed + 1 + if cleanupFails then raise cleanupError + } + let iterator = source.GetAsyncEnumerator() + let pending = iterator.MoveNextAsync() + check "pending before synchronous cleanup" (not pending.IsCompleted) + work.SetException bodyError + try + AsyncHelpers.Await pending |> ignore + failwith "lost synchronous cleanup fault" + with error -> + check "synchronous cleanup exception" (obj.ReferenceEquals(error, if cleanupFails then cleanupError else bodyError)) + check "synchronous cleanup stack" (error.StackTrace.Contains("MoveNextAsync")) + check "synchronous cleanup is terminal" (closed = 1 && not (AsyncHelpers.Await(iterator.MoveNextAsync()))) + AsyncHelpers.Await(iterator.DisposeAsync()) + check "synchronous cleanup runs once" (closed = 1) + + for form in [0; 1; 2] do + let pending = SingleConsumeSource() + let source = + match form with + | 0 -> runtimeAsyncSeq { let! value = pending.Value in yield value } + | 1 -> runtimeAsyncSeq { let! value = pending.Value.ConfigureAwait(false) in yield value } + | _ -> runtimeAsyncSeq { let! value = pending in yield value } + let iterator = source.GetAsyncEnumerator() + let move = iterator.MoveNextAsync() + check "pending source" (not move.IsCompleted && pending.Consumed = 0) + pending.Complete() + check "typed awaiter result" (AsyncHelpers.Await move && iterator.Current = 42 && pending.Consumed = 1) + AsyncHelpers.Await(iterator.DisposeAsync()) + + let callbacks = Queue() + let context = { new SynchronizationContext() with override _.Post(callback, state) = callbacks.Enqueue(callback, state) } + let source = runtimeAsyncSeq { + do! Task.CompletedTask.ConfigureAwait(ConfigureAwaitOptions.ForceYielding ||| ConfigureAwaitOptions.ContinueOnCapturedContext) + yield 1 + } + let iterator = source.GetAsyncEnumerator() + let previous = SynchronizationContext.Current + let move = + try + SynchronizationContext.SetSynchronizationContext context + iterator.MoveNextAsync() + finally + SynchronizationContext.SetSynchronizationContext previous + check "forced yield posts to captured context" (not move.IsCompleted && callbacks.Count = 1) + let callback, state = callbacks.Dequeue() + callback.Invoke state + check "forced yield result" (AsyncHelpers.Await move && iterator.Current = 1) + AsyncHelpers.Await(iterator.DisposeAsync()) + + let mutable effects = 0 + let mutable entered = 0 + let source = + runtimeAsyncSeq.Run(effects <- effects + 1; fun () -> + entered <- entered + 1 + seq { yield entered }) + check "eager prefix, cold body" (effects = 1 && entered = 0) + for enumeration in 1..2 do + let iterator = source.GetAsyncEnumerator() + let moved = AsyncHelpers.Await(iterator.MoveNextAsync()) + check "prefix once, fresh body" (moved && iterator.Current = enumeration && effects = 1 && entered = enumeration) + AsyncHelpers.Await(iterator.DisposeAsync()) + + let source = withCancellation(fun token -> runtimeAsyncSeq { + token.ThrowIfCancellationRequested() + yield token + }) + use first = new CancellationTokenSource() + use second = new CancellationTokenSource() + for token in [first.Token; second.Token] do + let iterator = source.GetAsyncEnumerator(token) + check "token identity" (AsyncHelpers.Await(iterator.MoveNextAsync()) && iterator.Current = token) + AsyncHelpers.Await(iterator.DisposeAsync()) + first.Cancel() + let iterator = source.GetAsyncEnumerator(first.Token) + try + AsyncHelpers.Await(iterator.MoveNextAsync()) |> ignore + failwith "lost cancellation" + with :? OperationCanceledException as error -> + check "cancellation identity" (error.CancellationToken = first.Token) + AsyncHelpers.Await(iterator.DisposeAsync()) +) + +[] +let main _ = run().GetAwaiter().GetResult(); 0 diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequenceBuilder.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequenceBuilder.fs new file mode 100644 index 00000000000..5ec15907f24 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeAsyncSequenceBuilder.fs @@ -0,0 +1,76 @@ +module RuntimeAsyncSequenceBuilder + +open System +open System.Collections.Generic +open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let inline cancellationToken () = + StateMachineHelpers.__runtimeAsyncSequenceCancellationToken() + +type RuntimeAsyncSequenceBuilder() = + member inline _.Zero() = Seq.empty + member inline _.Yield(value) = Seq.singleton value + member inline _.Delay([] body: unit -> seq<'T>) = body + member inline _.Combine(first, [] rest) = + Seq.append first (Seq.delay (fun () -> rest())) + member inline _.For(source: seq<'U>, [] body: 'U -> seq<'T>) = + Seq.collect (fun value -> body value) source + member inline _.While([] guard, [] body) = + RuntimeHelpers.EnumerateWhile (fun () -> guard()) (Seq.delay (fun () -> body())) + member inline _.TryFinally([] body, [] compensation) = + RuntimeHelpers.EnumerateThenFinally (Seq.delay (fun () -> body())) (fun () -> compensation()) + member inline _.Using(resource: 'R when 'R :> IAsyncDisposable, [] body: 'R -> seq<'T>) = + RuntimeHelpers.EnumerateThenFinally + (Seq.delay (fun () -> body resource)) + (fun () -> + if not (isNull (box resource)) then + AsyncHelpers.Await(resource.DisposeAsync())) + member inline this.For(source: IAsyncEnumerable<'U>, [] body: 'U -> seq<'T>) = + Seq.delay (fun () -> + let iterator = source.GetAsyncEnumerator() + this.Using(iterator, fun iterator -> + this.While( + (fun () -> AsyncHelpers.Await(iterator.MoveNextAsync())), + (fun () -> body iterator.Current)))) + member inline this.YieldFrom(source: seq<'T>) = this.For(source, fun value -> this.Yield value) + member inline this.YieldFrom(source: IAsyncEnumerable<'T>) = this.For(source, fun value -> this.Yield value) + member inline _.Bind(source: Task<'U>, [] continuation: 'U -> seq<'T>) = + continuation (AsyncHelpers.Await source) + member inline _.Bind(source: Task, [] continuation: unit -> seq<'T>) = + AsyncHelpers.Await source + continuation() + member inline _.Bind(source: ValueTask<'U>, [] continuation: 'U -> seq<'T>) = + continuation (AsyncHelpers.Await source) + member inline _.Bind(source: ValueTask, [] continuation: unit -> seq<'T>) = + AsyncHelpers.Await source + continuation() + member inline _.Bind(source: ConfiguredValueTaskAwaitable<'U>, [] continuation: 'U -> seq<'T>) = + continuation (AsyncHelpers.Await source) + member inline _.Bind(source: ConfiguredValueTaskAwaitable, [] continuation: unit -> seq<'T>) = + AsyncHelpers.Await source + continuation() + member inline _.Bind(source: ConfiguredTaskAwaitable<'U>, [] continuation: 'U -> seq<'T>) = + continuation (AsyncHelpers.Await source) + member inline _.Bind(source: ConfiguredTaskAwaitable, [] continuation: unit -> seq<'T>) = + AsyncHelpers.Await source + continuation() + member inline _.Run([] recipe: unit -> seq<'T>) : IAsyncEnumerable<'T> = + StateMachineHelpers.__runtimeAsyncSequence recipe + +let runtimeAsyncSeq = RuntimeAsyncSequenceBuilder() + +[] +module Extensions = + type RuntimeAsyncSequenceBuilder with + member inline _.Bind(source: ^Awaitable, [] continuation: 'T -> seq<'U>) = + let awaiter = (^Awaitable: (member GetAwaiter: unit -> ^Awaiter) source) + if not (^Awaiter: (member get_IsCompleted: unit -> bool) awaiter) then + AsyncHelpers.UnsafeAwaitAwaiter awaiter + continuation (^Awaiter: (member GetResult: unit -> 'T) awaiter) + +let inline withCancellation ([] create: CancellationToken -> IAsyncEnumerable<'T>) = + { new IAsyncEnumerable<'T> with + member _.GetAsyncEnumerator(token) = (create token).GetAsyncEnumerator() } diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTaskBuilder.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTaskBuilder.fs new file mode 100644 index 00000000000..e7cf86474f3 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTaskBuilder.fs @@ -0,0 +1,106 @@ +module RuntimeTaskBuilder + +open System +open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Tasks +open System.Collections.Generic +open Microsoft.FSharp.Core +open Microsoft.FSharp.Core.CompilerServices +open Microsoft.FSharp.Core.LanguagePrimitives.IntrinsicOperators +open Microsoft.FSharp.Collections + +module InternalHelpers = + + /// A structure that looks like an Awaiter + type Awaiter<'Awaiter, 'TResult + when 'Awaiter :> ICriticalNotifyCompletion + and 'Awaiter: (member get_IsCompleted: unit -> bool) + and 'Awaiter: (member GetResult: unit -> 'TResult)> = 'Awaiter + + type Awaitable<'Awaitable, 'Awaiter, 'TResult when 'Awaitable: (member GetAwaiter: unit -> Awaiter<'Awaiter, 'TResult>)> = 'Awaitable + + module Awaiter = + let inline isCompleted (awaiter: Awaiter<_, _>) = awaiter.get_IsCompleted () + let inline getResult (awaiter: Awaiter<_, _>) = awaiter.GetResult() + let inline onCompleted (awaiter: Awaiter<_, _>) continuation = awaiter.OnCompleted continuation + let inline unsafeOnCompleted (awaiter: Awaiter<_, _>) continuation = awaiter.UnsafeOnCompleted continuation + + module Awaitable = + let inline getAwaiter (awaitable: Awaitable<_, _, _>) = awaitable.GetAwaiter() + +open InternalHelpers + +type RuntimeTaskBuilder() = + + member inline this.ReturnFrom(source) = source + + member inline _.Bind(source, continuation) = continuation source + + member inline _.Delay([] generator: unit -> 'T) : unit -> 'T = generator + + member inline _.Run([] code: unit -> 'T) : Task<'T> = + __runtimeAsyncReturn (code()) + + member inline _.Zero() = () + member inline _.Return(value: 'T) = value + + member inline _.Combine(first: unit, [] second) = + ignore first + second() + + member inline _.Combine(first, [] second) = + first() + second() + member inline _.TryWith([] body: unit -> 'T, [] handler: exn -> 'T) = + try body() with error -> handler error + member inline _.TryFinally([] body: unit -> 'T, [] compensation: unit -> unit) = + try body() finally compensation() + member inline _.Using(resource, [] body) = + try + body resource + finally + match box resource with + | :? IAsyncDisposable as disposable -> AsyncHelpers.Await(disposable.DisposeAsync()) + | :? IDisposable as disposable -> disposable.Dispose() + | _ -> () + + member inline _.While(guard: unit -> bool, [] body: unit -> unit) = + while guard() do body() + + member inline _.For(sequence: seq<'T>, [] body: 'T -> unit) = + for item in sequence do body item + + member inline this.For(sequence: IAsyncEnumerable<'T>, [] body: 'T -> unit) = + this.Using(sequence.GetAsyncEnumerator(), fun enumerator -> + while enumerator.MoveNextAsync() |> AsyncHelpers.Await do + body enumerator.Current) + + member inline _.MergeSources(left, right) = struct(left, right) + + member inline _.Source(sequence: seq<'T>) = sequence // sketchy + member inline _.Source(sequence: IAsyncEnumerable<'T>) = sequence // sketchy + member inline _.Source(task: Task<'T>) = AsyncHelpers.Await task + member inline _.Source(task: Task) = AsyncHelpers.Await task + member inline _.Source(task: ValueTask<'T>) = AsyncHelpers.Await task + member inline _.Source(task: ValueTask) = AsyncHelpers.Await task + member inline _.Source(computation: Async<'T>) = AsyncHelpers.Await(Async.StartImmediateAsTask computation) + +type BackgroundTaskBuilder() = + inherit RuntimeTaskBuilder() + member inline _.Run([] code: unit -> 'T) : Task<'T> = + Task.Run<'T>(fun () -> __runtimeAsyncReturn (code())) + +module RuntimeTask = + let runtimeTask = RuntimeTaskBuilder() + let backgroundRuntimeTask = RuntimeTaskBuilder() + +[] +module Extensions = + open InternalHelpers + type RuntimeTaskBuilder with + member inline _.Source(awaitable: Awaitable<_, _, _>) = + let awaiter = Awaitable.getAwaiter awaitable + if not (Awaiter.isCompleted awaiter) then + AsyncHelpers.AwaitAwaiter awaiter + Awaiter.getResult awaiter diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTasks.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTasks.fs new file mode 100644 index 00000000000..b6c12272034 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTasks.fs @@ -0,0 +1,1619 @@ +// Tests for the runtime-async RuntimeTaskBuilder, ported from the TaskBuilder tests in +// tests/FSharp.Core.UnitTests/FSharp.Core/Microsoft.FSharp.Control/Tasks.fs +// with `task {` replaced by `runtimeTask {`. Test names and bodies are kept as +// close to the originals as possible. +// +// `backgroundTask` tests have no runtimeTask equivalent and are omitted. + +module RuntimeTasks + +open System +open System.Collections +open System.Collections.Generic +open System.Diagnostics +open System.Threading +open System.Threading.Tasks +open Microsoft.FSharp.Control +open Microsoft.FSharp.Core.CompilerServices + +open RuntimeTaskBuilder.RuntimeTask +open RuntimeTaskBuilder.Extensions + +exception TestException of string + +let BIG = 10 + +let require x msg = + if not x then + failwith msg + +let failtest str = raise (TestException str) +let resultOf (task: Task<'T>) = task.GetAwaiter().GetResult() + +let private delayed value = + Task.Delay(1).ContinueWith(fun (_: Task) -> value) + +// --------------------------------------------------------------------------- +// SmokeTestsForCompilation +// --------------------------------------------------------------------------- + +let tinyTask () = + runtimeTask { return 1 } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let tbind () = + runtimeTask { + let! x = Task.FromResult(1) + return 1 + x + } + |> fun t -> + t.Wait() + + if t.Result <> 2 then + failwith "failed" + +let tnested () = + runtimeTask { + let! x = runtimeTask { return 1 } + return x + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let tcatch0 () = + runtimeTask { + try + return 1 + with e -> + return 2 + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let tcatch1 () = + runtimeTask { + try + let! x = Task.FromResult 1 + return x + with e -> + return 2 + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let t3 () = + let t2 () = + runtimeTask { + System.Console.WriteLine("hello") + return 1 + } + + runtimeTask { + System.Console.WriteLine("hello") + let! x = t2 () + System.Console.WriteLine("world") + return 1 + x + } + |> fun t -> + t.Wait() + + if t.Result <> 2 then + failwith "failed" + +let t3b () = + runtimeTask { + System.Console.WriteLine("hello") + let! x = Task.FromResult(1) + System.Console.WriteLine("world") + return 1 + x + } + |> fun t -> + t.Wait() + + if t.Result <> 2 then + failwith "failed" + +let t3c () = + runtimeTask { + System.Console.WriteLine("hello") + do! Task.Delay(100) + System.Console.WriteLine("world") + return 1 + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +// This tests an exception match +let t67 () = + runtimeTask { + try + do! Task.Delay(0) + with + | :? ArgumentException -> () + | _ -> () + } + |> fun t -> + t.Wait() + + if t.Result <> () then + failwith "failed" + +// This tests compiling an incomplete exception match +let t68 () = + runtimeTask { + try + do! Task.Delay(0) + with :? ArgumentException -> + () + } + |> fun t -> + t.Wait() + + if t.Result <> () then + failwith "failed" + +let testCompileAsyncWhileLoop () = + runtimeTask { + let mutable i = 0 + + while i < 5 do + i <- i + 1 + do! Task.Yield() + + return i + } + |> fun t -> + t.Wait() + + if t.Result <> 5 then + failwith "failed" + +let merge2tasks () = + runtimeTask { + let! x = Task.FromResult(1) + and! y = Task.FromResult(2) + return x + y + } + |> fun t -> + t.Wait() + + if t.Result <> 3 then + failwith "failed" + +let merge3tasks () = + runtimeTask { + let! x = Task.FromResult(1) + and! y = Task.FromResult(2) + and! z = Task.FromResult(3) + return x + y + z + } + |> fun t -> + t.Wait() + + if t.Result <> 6 then + failwith "failed" + +let mergeYieldAndTask () = + runtimeTask { + let! _ = Task.Yield() + and! y = Task.FromResult(1) + return y + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let mergeTaskAndYield () = + runtimeTask { + let! x = Task.FromResult(1) + and! _ = Task.Yield() + return x + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let merge2valueTasks () = + runtimeTask { + let! x = ValueTask(Task.FromResult(1)) + and! y = ValueTask(Task.FromResult(2)) + return x + y + } + |> fun t -> + t.Wait() + + if t.Result <> 3 then + failwith "failed" + +let merge2valueTasksAndYield () = + runtimeTask { + let! x = ValueTask(Task.FromResult(1)) + and! y = ValueTask(Task.FromResult(2)) + and! _ = Task.Yield() + return x + y + } + |> fun t -> + t.Wait() + + if t.Result <> 3 then + failwith "failed" + +let mergeYieldAnd2tasks () = + runtimeTask { + let! _ = Task.Yield() + and! x = Task.FromResult(1) + and! y = Task.FromResult(2) + return x + y + } + |> fun t -> + t.Wait() + + if t.Result <> 3 then + failwith "failed" + +let merge2tasksAndValueTask () = + runtimeTask { + let! x = Task.FromResult(1) + and! y = Task.FromResult(2) + and! z = ValueTask(Task.FromResult(3)) + return x + y + z + } + |> fun t -> + t.Wait() + + if t.Result <> 6 then + failwith "failed" + +let merge2asyncs () = + runtimeTask { + let! x = async { return 1 } + and! y = async { return 2 } + return x + y + } + |> fun t -> + t.Wait() + + if t.Result <> 3 then + failwith "failed" + +let merge3asyncs () = + runtimeTask { + let! x = async { return 1 } + and! y = async { return 2 } + and! z = async { return 3 } + return x + y + z + } + |> fun t -> + t.Wait() + + if t.Result <> 6 then + failwith "failed" + +let mergeYieldAndAsync () = + runtimeTask { + let! _ = Task.Yield() + and! y = async { return 1 } + return y + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let mergeAsyncAndYield () = + runtimeTask { + let! x = async { return 1 } + and! _ = Task.Yield() + return x + } + |> fun t -> + t.Wait() + + if t.Result <> 1 then + failwith "failed" + +let mergeYieldAnd2asyncs () = + runtimeTask { + let! _ = Task.Yield() + and! x = async { return 1 } + and! y = async { return 2 } + return x + y + } + |> fun t -> + t.Wait() + + if t.Result <> 3 then + failwith "failed" + +let merge2asyncsAndValueTask () = + runtimeTask { + let! x = async { return 1 } + and! y = async { return 2 } + and! z = ValueTask(Task.FromResult(3)) + return x + y + z + } + |> fun t -> + t.Wait() + + if t.Result <> 6 then + failwith "failed" + +// --------------------------------------------------------------------------- +// Basics +// --------------------------------------------------------------------------- + +let testShortCircuitResult () = + let t = + runtimeTask { + let! x = Task.FromResult(1) + let! y = Task.FromResult(2) + return x + y + } + + require t.IsCompleted "didn't short-circuit already completed tasks" + require (t.Result = 3) "wrong result" + +let testDelay () = + let mutable x = 0 + + let t = + runtimeTask { + do! Task.Delay(50) + x <- x + 1 + } + + require (x = 0) "task already ran" + t.Wait() + +let testNonBlocking () = + let allowContinue = new SemaphoreSlim(0) + let continueToFinish = new ManualResetEventSlim(false) + let finished = new ManualResetEventSlim() + + let t = + runtimeTask { + do! allowContinue.WaitAsync() + continueToFinish.Wait() + finished.Set() + } + + allowContinue.Release() |> ignore + require (not finished.IsSet) "sleep blocked caller" + continueToFinish.Set() + t.Wait() + +// Exception-handling and disposal coverage. + +let testCatching1 () = + let mutable x = 0 + let mutable y = 0 + + let t = + runtimeTask { + try + do! Task.Delay(0) + failtest "hello" + x <- 1 + do! Task.Delay(100) + with + | TestException msg -> require (msg = "hello") "message tampered" + | _ -> require false "other exn type" + + y <- 1 + } + + t.Wait() + require (y = 1) "bailed after exn" + require (x = 0) "ran past failure" + +let testCatching2 () = + let mutable x = 0 + let mutable y = 0 + + let t = + runtimeTask { + try + do! Task.Yield() // can't skip through this + failtest "hello" + x <- 1 + do! Task.Delay(100) + with + | TestException msg -> require (msg = "hello") "message tampered" + | _ -> require false "other exn type" + + y <- 1 + } + + t.Wait() + require (y = 1) "bailed after exn" + require (x = 0) "ran past failure" + +let testCatchingInApplicative () = + let mutable x = 0 + let mutable y = 0 + + let t = + runtimeTask { + try + let! _ = + runtimeTask { + do! Task.Delay(100) + x <- 1 + } + + and! _ = runtimeTask { failtest "hello" } + () + with + | TestException msg -> require (msg = "hello") "message tampered" + | _ -> require false "other exn type" + + y <- 1 + } + + t.Wait() + require (y = 1) "bailed after exn" + require (x = 1) "exit too early" + +let testNestedCatching () = + let mutable counter = 1 + let mutable caughtInner = 0 + let mutable caughtOuter = 0 + + let t1 () = + runtimeTask { + try + do! Task.Yield() + failtest "hello" + with TestException msg as exn -> + caughtInner <- counter + counter <- counter + 1 + raise exn + } + + let t2 = + runtimeTask { + try + do! t1 () + with + | TestException msg as exn -> + caughtOuter <- counter + raise exn + | e -> require false (sprintf "invalid msg type %s" e.Message) + } + + try + t2.Wait() + require false "ran past failed task wait" + with :? AggregateException as exn -> + require (exn.InnerExceptions.Count = 1) "more than 1 exn" + + require (caughtInner = 1) "didn't catch inner" + require (caughtOuter = 2) "didn't catch outer" + +let testWhileLoopSync () = + let t = + runtimeTask { + let mutable i = 0 + + while i < 10 do + i <- i + 1 + + return i + } + //t.Wait() no wait required for sync loop + require (t.IsCompleted) "didn't do sync while loop properly - not completed" + require (t.Result = 10) "didn't do sync while loop properly - wrong result" + +let testWhileLoopAsyncZeroIteration () = + for i in 1..5 do + let t = + runtimeTask { + let mutable i = 0 + + while i < 0 do + i <- i + 1 + do! Task.Yield() + + return i + } + + t.Wait() + require (t.Result = 0) "didn't do while loop properly" + +let testWhileLoopAsyncOneIteration () = + for i in 1..5 do + let t = + runtimeTask { + let mutable i = 0 + + while i < 1 do + i <- i + 1 + do! Task.Yield() + + return i + } + + t.Wait() + require (t.Result = 1) "didn't do while loop properly" + +let testWhileLoopAsync () = + for i in 1..5 do + let t = + runtimeTask { + let mutable i = 0 + + while i < 10 do + i <- i + 1 + do! Task.Yield() + + return i + } + + t.Wait() + require (t.Result = 10) "didn't do while loop properly" + +let testForLoopA () = + let list = [ "a"; "b"; "c" ] |> Seq.ofList + + let t = + runtimeTask { + let mutable x = Unchecked.defaultof<_> + let e = list.GetEnumerator() + + while e.MoveNext() do + x <- e.Current + do! Task.Yield() + } + + t.Wait() + +let testForLoopComplex () = + let mutable disposed = false + + let wrapList = + let raw = [ "a"; "b"; "c" ] |> Seq.ofList + + let getEnumerator () = + let raw = raw.GetEnumerator() + + { new IEnumerator with + member _.MoveNext() = + require (not disposed) "moved next after disposal" + raw.MoveNext() + + member _.Current = + require (not disposed) "accessed current after disposal" + raw.Current + + member _.Current = + require (not disposed) "accessed current (boxed) after disposal" + box raw.Current + + member _.Dispose() = + require (not disposed) "disposed twice" + disposed <- true + raw.Dispose() + + member _.Reset() = + require (not disposed) "reset after disposal" + raw.Reset() + } + + { new IEnumerable with + member _.GetEnumerator() : IEnumerator = getEnumerator () + member _.GetEnumerator() : IEnumerator = upcast getEnumerator () + } + + let t = + runtimeTask { + let mutable index = 0 + do! Task.Yield() + + for x in wrapList do + do! Task.Yield() + do! Task.Yield() + + match index with + | 0 -> require (x = "a") "wrong first value" + | 1 -> require (x = "b") "wrong second value" + | 2 -> require (x = "c") "wrong third value" + | _ -> require false "iterated too far!" + + index <- index + 1 + do! Task.Yield() + do! Task.Yield() + + do! Task.Yield() + return 1 + } + + t.Wait() + require disposed "never disposed D" + require (t.Result = 1) "wrong result" + +let testForLoopSadPath () = + for i in 1..5 do + let wrapList = [ "a"; "b"; "c" ] + + let t = + runtimeTask { + let mutable index = 0 + do! Task.Yield() + + for x in wrapList do + do! Task.Yield() + index <- index + 1 + + return 1 + } + + require (t.Result = 1) "wrong result" + +let testForLoopSadPathComplex () = + for i in 1..5 do + let mutable disposed = false + + let wrapList = + let raw = [ "a"; "b"; "c" ] |> Seq.ofList + + let getEnumerator () = + let raw = raw.GetEnumerator() + + { new IEnumerator with + member _.MoveNext() = + require (not disposed) "moved next after disposal" + raw.MoveNext() + + member _.Current = + require (not disposed) "accessed current after disposal" + raw.Current + + member _.Current = + require (not disposed) "accessed current (boxed) after disposal" + box raw.Current + + member _.Dispose() = + require (not disposed) "disposed twice" + disposed <- true + raw.Dispose() + + member _.Reset() = + require (not disposed) "reset after disposal" + raw.Reset() + } + + { new IEnumerable with + member _.GetEnumerator() : IEnumerator = getEnumerator () + member _.GetEnumerator() : IEnumerator = upcast getEnumerator () + } + + let mutable caught = false + + let t = + runtimeTask { + try + let mutable index = 0 + do! Task.Yield() + + for x in wrapList do + do! Task.Yield() + + match index with + | 0 -> require (x = "a") "wrong first value" + | _ -> failtest "uhoh" + + index <- index + 1 + do! Task.Yield() + + do! Task.Yield() + return 1 + with TestException "uhoh" -> + caught <- true + return 2 + } + + require (t.Result = 2) "wrong result" + require caught "didn't catch exception" + require disposed "never disposed A" + +let testExceptionAttachedToTaskWithoutAwait () = + for i in 1..5 do + let mutable ranA = false + let mutable ranB = false + + let t = + runtimeTask { + ranA <- true + failtest "uhoh" + ranB <- true + } + + require ranA "didn't run immediately" + require (not ranB) "ran past exception" + require (not (isNull t.Exception)) "didn't capture exception" + require (t.Exception.InnerExceptions.Count = 1) "captured more exceptions" + require (t.Exception.InnerException = TestException "uhoh") "wrong exception" + let mutable caught = false + let mutable ranCatcher = false + + let catcher = + runtimeTask { + try + ranCatcher <- true + let! result = t + return false + with TestException "uhoh" -> + caught <- true + return true + } + + require ranCatcher "didn't run" + require catcher.Result "didn't catch" + require caught "didn't catch" + +let testExceptionAttachedToTaskWithAwait () = + for i in 1..5 do + let mutable ranA = false + let mutable ranB = false + + let t = + runtimeTask { + ranA <- true + failtest "uhoh" + do! Task.Delay(100) + ranB <- true + } + + require ranA "didn't run immediately" + require (not ranB) "ran past exception" + require (not (isNull t.Exception)) "didn't capture exception" + require (t.Exception.InnerExceptions.Count = 1) "captured more exceptions" + require (t.Exception.InnerException = TestException "uhoh") "wrong exception" + let mutable caught = false + let mutable ranCatcher = false + + let catcher = + runtimeTask { + try + ranCatcher <- true + let! result = t + return false + with TestException "uhoh" -> + caught <- true + return true + } + + require ranCatcher "didn't run" + require catcher.Result "didn't catch" + require caught "didn't catch" + +let testFixedStackWhileLoop () = + for i in 1..100 do + let t = + runtimeTask { + let mutable maxDepth = Nullable() + let mutable i = 0 + + while i < BIG do + i <- i + 1 + do! Task.Yield() + + if i % 100 = 0 then + let stackDepth = StackTrace().FrameCount + + if maxDepth.HasValue && stackDepth > maxDepth.Value then + failwith "Stack depth increased!" + + maxDepth <- Nullable(stackDepth) + + return i + } + + t.Wait() + require (t.Result = BIG) "didn't get to big number" + +let testFixedStackForLoop () = // needs investigation: code after a suspending for loop is not run + for i in 1..100 do + let mutable ran = false + + let t = + runtimeTask { + let mutable maxDepth = Nullable() + + for i in Seq.init BIG id do + do! Task.Yield() + + if i % 100 = 0 then + let stackDepth = StackTrace().FrameCount + + if maxDepth.HasValue && stackDepth > maxDepth.Value then + failwith "Stack depth increased!" + + maxDepth <- Nullable(stackDepth) + + ran <- true + return () + } + + t.Wait() + require ran "didn't run all" + +let testTypeInference () = + let t1: string Task = runtimeTask { return "hello" } + + let t2 = + runtimeTask { + // Divergence from task {}: the runtimeTask Bind overload set does not + // propagate the element type here, so the annotation is required. + let! (s: string) = t1 + return s.Length + } + + t2.Wait() + +let testNoStackOverflowWithImmediateResult () = + let longLoop = + runtimeTask { + let mutable n = 0 + + while n < BIG do + n <- n + 1 + return! Task.FromResult(()) + } + + longLoop.Wait() + +let testNoStackOverflowWithYieldResult () = + let longLoop = + runtimeTask { + let mutable n = 0 + + while n < BIG do + let! _ = + runtimeTask { + do! Task.Yield() + let! _ = Task.FromResult(0) + n <- n + 1 + } + + n <- n + 1 + } + + longLoop.Wait() + +let testSmallTailRecursion () = + let rec loop n = + runtimeTask { + if n < 100 then + do! Task.Yield() + let! _ = Task.FromResult(0) + return! loop (n + 1) + else + return () + } + + let shortLoop = runtimeTask { return! loop 0 } + shortLoop.Wait() + +let testTryOverReturnFrom () = + let inner () = + runtimeTask { + do! Task.Yield() + failtest "inner" + return 1 + } + + let t = + runtimeTask { + try + do! Task.Yield() + return! inner () + with TestException "inner" -> + return 2 + } + + require (t.Result = 2) "didn't catch" + +let testAsyncsMixedWithTasks () = + let t = + runtimeTask { + do! Task.Delay(1) + do! Async.Sleep(1) + + let! x = + async { + do! Async.Sleep(1) + return 5 + } + + return! async { return x + 3 } + } + + let result = t.Result + require (result = 8) "something weird happened" + +let testAsyncsMixedWithTasks_ShouldNotSwitchContext () = + let t = + runtimeTask { + let a = Thread.CurrentThread.ManagedThreadId + let! b = async { return Thread.CurrentThread.ManagedThreadId } + let c = Thread.CurrentThread.ManagedThreadId + return $"Before: {a}, in async: {b}, after async: {c}" + } + + let d = Thread.CurrentThread.ManagedThreadId + let actual = $"{t.Result}, after task: {d}" + + require (actual = $"Before: {d}, in async: {d}, after async: {d}, after task: {d}") actual + +// no need to call this, we just want to check that it compiles w/o warnings +let testTrivialReturnCompiles (x: 'a) : 'a Task = + runtimeTask { + do! Task.Yield() + return x + } + +// no need to call this, we just want to check that it compiles w/o warnings +let testTrivialTransformedReturnCompiles (x: 'a) (f: 'a -> 'b) : 'b Task = + runtimeTask { + do! Task.Yield() + return f x + } + +// no need to call this, we just want to check that it compiles w/o warnings +let testDefaultInferenceForReturnFrom () = + let t = runtimeTask { return Some "x" } + + runtimeTask { + let! r = t + + if r = None then + // Divergence from task {}: ReturnFrom is overloaded, so the generic + // failwithf result needs an explicit Task<_> annotation. + return! (failwithf "Could not find x": string option Task) + else + return r + } + |> ignore + +// no need to call this, just check that it compiles +let testCompilerInfersArgumentOfReturnFrom () = + runtimeTask { if true then return 1 else return! (failwith "": int Task) } + |> ignore + +// Overload-resolution cases from the bottom of Tasks.fs (Issue12184*), compile-only. +type Issue12184() = + member this.TaskMethod() = + runtimeTask { + // The overload resolution for Bind commits to 'Async' since the type annotation is present. + let! result = this.AsyncMethod(21) + return result + } + + member _.AsyncMethod(value: int) : Async = async { return (value * 2) } + +type Issue12184b() = + member this.TaskMethod() = + runtimeTask { + // The overload resolution for Bind commits to 'YieldAwaitable' since the type annotation is present. + let! result = this.AsyncMethod(21) + return result + } + + member _.AsyncMethod(_value: int) : System.Runtime.CompilerServices.YieldAwaitable = Task.Yield() + +// Issue12184c from Tasks.fs is omitted: it relies on task {}'s Bind overload +// resolution committing to Task<_> for an unannotated argument, which the +// runtimeTask builder's overload set does not support. + +module Issue12184d = + let TaskMethod (t: ValueTask) = + runtimeTask { + let! result = t + return result + } + +module Issue12184e = + let TaskMethod (t: ValueTask) = + runtimeTask { + let! result = t + return result + } + +module Issue12184f = + let TaskMethod (t: Task) = + runtimeTask { + let! result = t + return result + } + +// --------------------------------------------------------------------------- +// Exception-handling and disposal coverage. +// --------------------------------------------------------------------------- + +let testNoDelay () = + let mutable x = 0 + + let t = + runtimeTask { + x <- x + 1 + do! Task.Delay(5) + x <- x + 1 + } + + require (x = 1) "first part didn't run yet" + t.Wait() + +let testTryFinallyHappyPath () = + for i in 1..5 do + let mutable ran = false + + let t = + runtimeTask { + try + require (not ran) "ran way early" + do! Task.Delay(100) + require (not ran) "ran kinda early" + finally + ran <- true + } + + t.Wait() + require ran "never ran" + +let testTryFinallySadPath () = + for i in 1..5 do + let mutable ran = false + + let t = + runtimeTask { + try + require (not ran) "ran way early" + do! Task.Delay(100) + require (not ran) "ran kinda early" + failtest "uhoh" + finally + ran <- true + } + + try + t.Wait() + with _ -> + () + + require ran "never ran" + +let testTryFinallyCaught () = + for i in 1..5 do + let mutable ran = false + + let t = + runtimeTask { + try + try + require (not ran) "ran way early" + do! Task.Delay(100) + require (not ran) "ran kinda early" + failtest "uhoh" + finally + ran <- true + + return 1 + with _ -> + return 2 + } + + require (t.Result = 2) "wrong return" + require ran "never ran" + +let testUsing () = + for i in 1..5 do + let mutable disposed = false + + let t = + runtimeTask { + use d = + { new IDisposable with + member _.Dispose() = disposed <- true + } + + require (not disposed) "disposed way early" + do! Task.Delay(100) + require (not disposed) "disposed kinda early" + } + + t.Wait() + require disposed "never disposed B" + +let testUsingFromTask () = + let mutable disposedInner = false + let mutable disposed = false + + let t = + runtimeTask { + use! d = + runtimeTask { + do! Task.Delay(50) + + use i = + { new IDisposable with + member _.Dispose() = disposedInner <- true + } + + require (not disposed && not disposedInner) "disposed inner early" + + return + { new IDisposable with + member _.Dispose() = disposed <- true + } + } + + require disposedInner "did not dispose inner after task completion" + require (not disposed) "disposed way early" + do! Task.Delay(50) + require (not disposed) "disposed kinda early" + } + + t.Wait() + require disposed "never disposed C" + +let testUsingSadPath () = + let mutable disposedInner = false + let mutable disposed = false + + let t = + runtimeTask { + try + use! d = + runtimeTask { + do! Task.Delay(50) + + use i = + { new IDisposable with + member _.Dispose() = disposedInner <- true + } + + failtest "uhoh" + require (not disposed && not disposedInner) "disposed inner early" + + return + { new IDisposable with + member _.Dispose() = disposed <- true + } + } + + () + with TestException msg -> + require disposedInner "did not dispose inner after task completion" + require (not disposed) "disposed way early" + do! Task.Delay(50) + require (not disposed) "disposed kinda early" + } + + t.Wait() + require (not disposed) "disposed thing that never should've existed" + +let testUsingAsyncDisposableSync () = + for i in 1..5 do + let mutable disposed = 0 + + let t = + runtimeTask { + use d = + { new IAsyncDisposable with + member _.DisposeAsync() = + runtimeTask { disposed <- disposed + 1 } |> ValueTask + } + + require (disposed = 0) "disposed way early" + do! Task.Delay(100) + require (disposed = 0) "disposed kinda early" + } + + t.Wait() + require (disposed >= 1) "never disposed B" + require (disposed <= 1) "too many dispose on B" + +let testUsingAsyncDisposableAsync () = + for i in 1..5 do + let mutable disposed = 0 + + let t = + runtimeTask { + use d = + { new IAsyncDisposable with + member _.DisposeAsync() = + runtimeTask { + do! Task.Delay(10) + disposed <- disposed + 1 + } + |> ValueTask + } + + require (disposed = 0) "disposed way early" + do! Task.Delay(100) + require (disposed = 0) "disposed kinda early" + } + + t.Wait() + require (disposed >= 1) "never disposed B" + require (disposed <= 1) "too many dispose on B" + +let testUsingAsyncDisposableExnAsync () = + for i in 1..5 do + let mutable disposed = 0 + + let t = + runtimeTask { + use d = + { new IAsyncDisposable with + member _.DisposeAsync() = + runtimeTask { + do! Task.Delay(10) + disposed <- disposed + 1 + } + |> ValueTask + } + + require (disposed = 0) "disposed way early" + failtest "oops" + } + + try + t.Wait() + with :? AggregateException -> + require (disposed >= 1) "never disposed B" + require (disposed <= 1) "too many dispose on B" + +let testUsingAsyncDisposableExnSync () = + for i in 1..5 do + let mutable disposed = 0 + + let t = + runtimeTask { + use d = + { new IAsyncDisposable with + member _.DisposeAsync() = + runtimeTask { + disposed <- disposed + 1 + do! Task.Delay(10) + } + |> ValueTask + } + + require (disposed = 0) "disposed way early" + failtest "oops" + } + + try + t.Wait() + with :? AggregateException -> + require (disposed >= 1) "never disposed B" + require (disposed <= 1) "too many dispose on B" + +let testUsingAsyncDisposableDelayExnSync () = + for i in 1..5 do + let mutable disposed = 0 + + let t = + runtimeTask { + use d = + { new IAsyncDisposable with + member _.DisposeAsync() = + runtimeTask { + disposed <- disposed + 1 + do! Task.Delay(10) + } + |> ValueTask + } + + require (disposed = 0) "disposed way early" + do! Task.Delay(10) + require (disposed = 0) "disposed kind of early" + failtest "oops" + } + + try + t.Wait() + with :? AggregateException -> + require (disposed >= 1) "never disposed B" + require (disposed <= 1) "too many dispose on B" + +let testUsingBindAsyncDisposableSync () = + for i in 1..5 do + let mutable disposed = 0 + + let t = + runtimeTask { + use! d = + runtimeTask { + do! Task.Delay(10) + + return + { new IAsyncDisposable with + member _.DisposeAsync() = + runtimeTask { disposed <- disposed + 1 } |> ValueTask + } + } + + require (disposed = 0) "disposed way early" + do! Task.Delay(100) + require (disposed = 0) "disposed kinda early" + } + + t.Wait() + require (disposed >= 1) "never disposed B" + require (disposed <= 1) "too many dispose on B" + +let testExceptionThrownInFinally () = + for i in 1..5 do + use stepOutside = new SemaphoreSlim(0) + use ranInitial = new ManualResetEventSlim() + use ranNext = new ManualResetEventSlim() + let mutable ranFinally = 0 + + let t = + runtimeTask { + try + ranInitial.Set() + do! Task.Yield() + do! stepOutside.WaitAsync() + ranNext.Set() + finally + ranFinally <- ranFinally + 1 + failtest "finally exn!" + } + + require ranInitial.IsSet "didn't run initial" + require (not ranNext.IsSet) "ran next too early" + stepOutside.Release() |> ignore + + try + t.Wait() + require false "shouldn't get here" + with _ -> + () + + require ranNext.IsSet "didn't run next" + require (ranFinally = 1) "didn't run finally exactly once" + +let test2ndExceptionThrownInFinally () = + for i in 1..5 do + use ranInitial = new ManualResetEventSlim() + use continueTask = new SemaphoreSlim(0) + use ranNext = new ManualResetEventSlim() + let mutable ranFinally = 0 + + let t = + runtimeTask { + try + ranInitial.Set() + do! continueTask.WaitAsync() + ranNext.Set() + do! Task.Yield() + failtest "uhoh" + finally + ranFinally <- ranFinally + 1 + failtest "2nd exn!" + } + + ranInitial.Wait() + continueTask.Release() |> ignore + + try + t.Wait() + require false "shouldn't get here" + with _ -> + () + + require ranNext.IsSet "didn't run next" + require (ranFinally = 1) "didn't run finally exactly once" + +let testTryFinallyOverReturnFromWithException () = + let inner () = + runtimeTask { + do! Task.Yield() + failtest "inner" + return 1 + } + + let mutable m = 0 + + let t = + runtimeTask { + try + do! Task.Yield() + return! inner () + finally + m <- 1 + } + + try + t.Wait() + with :? AggregateException -> + () + + require (m = 1) "didn't run finally" + +let testTryFinallyOverReturnFromWithoutException () = + let inner () = + runtimeTask { + do! Task.Yield() + return 1 + } + + let mutable m = 0 + + let t = + runtimeTask { + try + do! Task.Yield() + return! inner () + finally + m <- 1 + } + + try + t.Wait() + with :? AggregateException -> + () + + require (m = 1) "didn't run finally" + +// A minimal custom awaitable, exercising the SRTP Bind/ReturnFrom/MergeSources +// fallbacks (task {} supports arbitrary task-likes the same way). +type CustomAwaitable(result: int) = + member _.GetAwaiter() = (Task.FromResult result).GetAwaiter() + +let testCustomAwaitable () = + let t = + runtimeTask { + let! x = CustomAwaitable 20 + let! y = CustomAwaitable 20 + return x + y + } + + require (t.Result = 40) "custom awaitable bind" + + let t2 = runtimeTask { return! CustomAwaitable 42 } + require (t2.Result = 42) "custom awaitable return from" + + let t3 = + runtimeTask { + let! x = CustomAwaitable 20 + and! y = CustomAwaitable 22 + return x + y + } + + require (t3.Result = 42) "custom awaitable merge sources" + +let testTaskUsesSyncContext () = // task completes without the body observably running when a SynchronizationContext is installed + for i in 1..5 do + let mutable ran = false + let mutable posted = false + let oldSyncContext = SynchronizationContext.Current + + let syncContext = + { new SynchronizationContext() with + member _.Post(d, state) = + posted <- true + d.Invoke(state) + } + + try + SynchronizationContext.SetSynchronizationContext syncContext + let tid = System.Threading.Thread.CurrentThread.ManagedThreadId + require (not (isNull SynchronizationContext.Current)) "need sync context non null on foreground thread A" + require (SynchronizationContext.Current = syncContext) "need sync context known on foreground thread A" + + let t = + runtimeTask { + let tid2 = System.Threading.Thread.CurrentThread.ManagedThreadId + require (not (isNull SynchronizationContext.Current)) "need sync context non null on foreground thread B" + require (SynchronizationContext.Current = syncContext) "need sync context known on foreground thread B" + do! Task.Yield() + require (not (isNull SynchronizationContext.Current)) "need sync context non null on foreground thread C" + require (SynchronizationContext.Current = syncContext) "need sync context known on foreground thread C" + ran <- true + } + + t.Wait() + require ran "never ran" + require posted "never posted" + finally + SynchronizationContext.SetSynchronizationContext oldSyncContext + +[] +let main _ = + tinyTask () + tbind () + tnested () + tcatch0 () + tcatch1 () + t3 () + t3b () + t3c () + t67 () + t68 () + testCompileAsyncWhileLoop () + merge2tasks () + merge3tasks () + mergeYieldAndTask () + mergeTaskAndYield () + merge2valueTasks () + merge2valueTasksAndYield () + mergeYieldAnd2tasks () + merge2tasksAndValueTask () + merge2asyncs () + merge3asyncs () + mergeYieldAndAsync () + mergeAsyncAndYield () + mergeYieldAnd2asyncs () + merge2asyncsAndValueTask () + testShortCircuitResult () + testDelay () + testNonBlocking () + testCatching1 () + testCatching2 () + testCatchingInApplicative () + testNestedCatching () + testWhileLoopSync () + testWhileLoopAsyncZeroIteration () + testWhileLoopAsyncOneIteration () + testWhileLoopAsync () + testForLoopA () + testForLoopComplex () + testForLoopSadPath () + testForLoopSadPathComplex () + testFixedStackWhileLoop () + testFixedStackForLoop () + testTypeInference () + testNoStackOverflowWithImmediateResult () + testNoStackOverflowWithYieldResult () + testSmallTailRecursion () + testTryOverReturnFrom () + testTryFinallyOverReturnFromWithException () + testTryFinallyOverReturnFromWithoutException () + testAsyncsMixedWithTasks () + testAsyncsMixedWithTasks_ShouldNotSwitchContext () + testCustomAwaitable () + testUsingAsyncDisposableSync () + testUsingAsyncDisposableAsync () + testUsingAsyncDisposableExnAsync () + testUsingAsyncDisposableExnSync () + testUsingAsyncDisposableDelayExnSync () + testUsingBindAsyncDisposableSync () + testTryFinallyHappyPath () + testTryFinallySadPath () + testTryFinallyCaught () + testNoDelay() + testUsing () + testUsingFromTask () + testUsingSadPath () + testExceptionThrownInFinally () + test2ndExceptionThrownInFinally () + testTaskUsesSyncContext () + testExceptionAttachedToTaskWithoutAwait () + testExceptionAttachedToTaskWithAwait () + 0 \ No newline at end of file diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTasksAsyncDisposalException.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTasksAsyncDisposalException.fs new file mode 100644 index 00000000000..8e0b9188ede --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsync/RuntimeTasksAsyncDisposalException.fs @@ -0,0 +1,51 @@ +// Direct runtime-async calls must move suspension points out of exception handlers. +module RuntimeAsyncAwaitInExceptionRegion + +open System.Runtime.CompilerServices +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let run () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + 1 + finally + AsyncHelpers.Await(Task.Delay(1)) + ) + +let runCatch () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + failwith "boom" + with _ -> + AsyncHelpers.Await(Task.Delay(1)) + 2 + ) + +let runFilter () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + try + raise (System.InvalidOperationException()) + with :? System.InvalidOperationException when + (AsyncHelpers.Await(Task.Delay(1)) + false) -> + 2 + with :? System.InvalidOperationException -> + 3 + ) + +[] +let main _ = + let first = run () + let second = runCatch () + let third = runFilter () + + let results = + [| + first.GetAwaiter().GetResult() + second.GetAwaiter().GetResult() + third.GetAwaiter().GetResult() + |] + + if results = [| 1; 2; 3 |] then 0 else 1 diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncEdgeCaseTests.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncEdgeCaseTests.fs new file mode 100644 index 00000000000..a15d77fee7c --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncEdgeCaseTests.fs @@ -0,0 +1,482 @@ +module Language.RuntimeAsyncEdgeCaseTests + +// Edge-case tests for runtime-async, inspired by the Roslyn async2 test surface (try/catch, +// try/finally, loops, Task vs ValueTask, ref-struct/ReadOnlySpan, disposal). Two halves: +// * Execution facts (runtime behavior) — driven through the runtimeTask CE builder, which is +// treated as a hypothetical library (RuntimeAsync/RuntimeTaskBuilder.fs). +// * EmittedIL facts — assert the runtime-async codegen contract so dotnet/runtime folks can be +// pointed at concrete IL. Every asserted substring was captured from the PR's own fsc on the +// pinned net11 preview and normalized the way ILChecker does ([System.Runtime] -> [runtime]). +// +// IL facts that assert the *absence* of a token use direct StateMachineHelpers.__runtimeAsyncReturn +// sources (single async method, clean assembly), because ILChecker's NotPresent check is +// assembly-scoped and the CE builder's own inline members legitimately contain `tail.`/`MoveNext`. +// The CE `Run` lowers `do!`/`let!` to exactly this intrinsic form (see the execution facts). +// +// The "undiagnosed forbidden pattern" facts below pin restrictions that docs/runtime-async.md +// records as known and currently NOT diagnosed by the F# compiler (tail./localloc forbidden). + +open Xunit +open FSharp.Test.Compiler +open System.IO +open System.Reflection.Metadata + +let private runtimeAsyncDir = Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync") +let private builderPath = Path.Combine(runtimeAsyncDir, "RuntimeTaskBuilder.fs") + +// Builds a minimal direct-intrinsic compilation unit: the module header plus the opens every +// StateMachineHelpers.__runtimeAsyncReturn body needs, then the supplied one-liner body. Used for the +// shape / absence / undiagnosed-pattern assertions, which must run on a single-method assembly. +let private directIntrinsicSource body = + String.concat "\n" [ + "module M" + "open System" + "open System.Threading.Tasks" + "open System.Runtime.CompilerServices" + "open Microsoft.FSharp.Core.CompilerServices" + body + ] + +let private compileDirect body = + FSharp(directIntrinsicSource body) + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> compile + +let private assertSingleDiagnostic errorNumber (result: CompilationResult) = + let diagnostics = + result.Output.Diagnostics + |> List.filter (fun diagnostic -> + match diagnostic.Error with + | Error number -> number = errorNumber + | _ -> false) + + Assert.Equal(1, List.length diagnostics) + result + +// ---- CE-builder sources (compiled against RuntimeTaskBuilder.fs, the hypothetical library) ------- + +// ref-struct-across-suspension written through the CE builder: the `do!` desugars to a continuation +// lambda that captures the span, so F#'s byref-capture check rejects it (FS0406). +let private refStructAcrossAwaitCE = """ +module M +open System +open System.Threading.Tasks +open RuntimeTaskBuilder.RuntimeTask +let f () : Task = + runtimeTask { + let data = [| 10; 20; 30 |] + let span = ReadOnlySpan(data) + do! Task.Delay(1) + return span[0] + span[1] + span[2] + } +""" + +let private ceStateMachineSource = """ +module CeUser +open System.Threading.Tasks +open RuntimeTaskBuilder.RuntimeTask +let f () : Task = + runtimeTask { + let! x = Task.FromResult 41 + return x + 1 + } +""" + +#if NETCOREAPP + +// ============================ execution (runtime behavior) ============================ + +[] +[] +[] +let ``runtime async edge cases execute through the CE builder`` (optimize: bool) = + FsFromPath builderPath + |> withAdditionalSourceFile (SourceFromPath (Path.Combine(runtimeAsyncDir, "RuntimeAsyncEdgeCases.fs"))) + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +// ============================ emitted IL (codegen contract) ============================ +// Each fact pins the whole method body captured from the PR's fsc, so dotnet/runtime reviewers get +// the exact lowering to check against docs/runtime-async.md. ILChecker normalizes both sides +// ([System.Runtime] -> [runtime], collapses the `.method` signature, strips comments); a codegen +// exhibit is meant to change when the codegen changes. + +// `Await(Task); 1` — direct call to the non-generic Await overload, then push 1 and ret. +let private simpleAwaitBody = """ + .method public static class [System.Runtime]System.Threading.Tasks.Task`1 + f() cil managed + { + // Code size 13 (0xd) + .maxstack 8 + IL_0000: ldc.i4.1 + IL_0001: call class [System.Runtime]System.Threading.Tasks.Task [System.Runtime]System.Threading.Tasks.Task::Delay(int32) + IL_0006: call void [System.Runtime]System.Runtime.CompilerServices.AsyncHelpers::Await(class [System.Runtime]System.Threading.Tasks.Task) + IL_000b: ldc.i4.1 + IL_000c: ret + } // end of method M::f +""" + +// `let x = Await(Task) in x + 1` — the generic Await overload; result feeds directly +// into `add` with no spill local (optimized). +let private genericAwaitBody = """ + .method public static class [System.Runtime]System.Threading.Tasks.Task`1 + f(class [System.Runtime]System.Threading.Tasks.Task`1 t) cil managed + { + // Code size 9 (0x9) + .maxstack 8 + IL_0000: ldarg.0 + IL_0001: call !!0 [System.Runtime]System.Runtime.CompilerServices.AsyncHelpers::Await(class [System.Runtime]System.Threading.Tasks.Task`1) + IL_0006: ldc.i4.1 + IL_0007: add + IL_0008: ret + } // end of method M::f +""" + +// `Await(ValueTask); 1` — the ValueTask (non-generic) Await overload bound by operand type. +let private valueTaskAwaitBody = """ + .method public static class [System.Runtime]System.Threading.Tasks.Task`1 + f(valuetype [System.Runtime]System.Threading.Tasks.ValueTask vt) cil managed + { + // Code size 8 (0x8) + .maxstack 8 + IL_0000: ldarg.0 + IL_0001: call void [System.Runtime]System.Runtime.CompilerServices.AsyncHelpers::Await(valuetype [System.Runtime]System.Threading.Tasks.ValueTask) + IL_0006: ldc.i4.1 + IL_0007: ret + } // end of method M::f +""" + +// The operand's type selects the AsyncHelpers.Await overload; pinning the whole body (not just the +// call line) shows the surrounding shape a runtime reviewer needs (arg load, no spill, no builder). +[] +let ``ValueTask operand binds the non-generic Await (full body)`` () = + compileDirect "let f (vt: ValueTask) : Task = StateMachineHelpers.__runtimeAsyncReturn (AsyncHelpers.Await(vt); 1)" + |> verifyILContains [ valueTaskAwaitBody ] + |> shouldSucceed + +[] +let ``Task<'T> operand binds the generic Await (full body)`` () = + compileDirect "let f (t: Task) : Task = StateMachineHelpers.__runtimeAsyncReturn (let x = AsyncHelpers.Await(t) in x + 1)" + |> verifyILContains [ genericAwaitBody ] + |> shouldSucceed + +[] +let ``suspension lowers to the full Await body with no compiler state machine`` () = + compileDirect "let f () : Task = StateMachineHelpers.__runtimeAsyncReturn (AsyncHelpers.Await(Task.Delay(1)); 1)" + |> verifyILContains [ simpleAwaitBody ] + |> verifyILNotPresent [ + "AsyncTaskMethodBuilder" + "IAsyncStateMachine" + ] + +[] +// The runtimeTask CE lowers `let!`/`do!` to Await calls without a compiler-generated state machine +// (unlike the task { } builder). This ties the hypothetical library to the runtime-async contract. +let ``the CE builder lowers to Await with no state machine`` () = + FsFromPath builderPath + |> withAdditionalSourceFile (FsSource ceStateMachineSource) + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> compile + |> verifyILContains [ "AsyncHelpers::Await(class [runtime]System.Threading.Tasks.Task`1)" ] + |> verifyILNotPresent [ + "AsyncTaskMethodBuilder" + "IAsyncStateMachine" + ] + +// Runtime-async methods must not emit `.tail`. This body is the contract pin: a function-value call +// in the runtime-async return position is normal (non-tail) so the runtime-async spec's TailRetType +// requirement remains satisfied. +let private tailPrefixBody = """ + .method public static class [System.Runtime]System.Threading.Tasks.Task`1 + f(class [FSharp.Core]Microsoft.FSharp.Core.FSharpFunc`2 g, + int32 x) cil managed + { + .custom instance void [FSharp.Core]Microsoft.FSharp.Core.CompilationArgumentCountsAttribute::.ctor(int32[]) = ( 01 00 02 00 00 00 01 00 00 00 01 00 00 00 00 00 ) + // Code size 20 (0x14) + .maxstack 8 + IL_0000: ldc.i4.1 + IL_0001: call class [System.Runtime]System.Threading.Tasks.Task [System.Runtime]System.Threading.Tasks.Task::Delay(int32) + IL_0006: call void [System.Runtime]System.Runtime.CompilerServices.AsyncHelpers::Await(class [System.Runtime]System.Threading.Tasks.Task) + IL_000b: ldarg.0 + IL_000c: ldarg.1 + IL_000d: callvirt instance !1 class [FSharp.Core]Microsoft.FSharp.Core.FSharpFunc`2::Invoke(!0) + IL_0012: ret + } // end of method M::f +""" + +[] +let ``runtime async avoids a forbidden tail prefix (C1)`` () = + compileDirect "let f (g: int -> int) (x: int) : Task = StateMachineHelpers.__runtimeAsyncReturn (AsyncHelpers.Await(Task.Delay(1)); g x)" + |> verifyILContains [ tailPrefixBody ] + |> shouldSucceed + +// ===== composed CE case: async marking follows the emitted method, not F# source layout ===== +// A larger `outer` (nested `inner`, non-async code before/after, a runtimeTask CE combining +// for/let!/use/try-finally/do!/if). Empirically the 0x2000 (MethodImplOptions.Async) bit lands on +// the lifted `outer@::Invoke` (0x2000, async) and RuntimeTaskBuilder::Run, never on +// `M::outer`/`M::helper` — asserted via assertAsyncFlagOnLiftedClosureOnly (ildasm/.bsl can't show it). +let private composedLayoutProgram = """ +module M +open System +open System.Threading.Tasks +open RuntimeTaskBuilder.RuntimeTask + +let helper x = x * 2 + +let outer (n: int) : Task = + let inner y = y + helper n // nested, non-async local function + let baseline = inner 10 // non-async code BEFORE the async part + let work : Task = + runtimeTask { + let mutable total = baseline + for i in 1 .. n do + let! d = Task.FromResult i + total <- total + d + use _ = { new IDisposable with member _.Dispose() = () } + try + do! Task.Delay 1 + total <- total + 1 + finally + total <- total + 100 + if total > 0 then return total else return -1 + } + work // non-async code AFTER the async part +""" + +// Two CE-only IL shapes the direct-intrinsic .bsl program cannot show (it has no use/try-finally), +// pinned as targeted contiguous slices of outer@::Invoke rather than the whole lifted body. +// Captured from the PR's fsc; ILChecker normalizes [System.Runtime] -> [runtime]. + +// (1) `do!` suspends INSIDE the try; the finally does only arithmetic. Await in a finally is +// forbidden (docs/runtime-async.md), so the suspension must sit in the protected region. The `use` +// wraps it in an outer try/catch; the exhibit keeps both frames so the nesting is visible. +let private ceAwaitInsideTry = """ + .try + { + .try + { + IL_0028: ldc.i4.1 + IL_0029: call class [runtime]System.Threading.Tasks.Task [runtime]System.Threading.Tasks.Task::Delay(int32) + IL_002e: call void [runtime]System.Runtime.CompilerServices.AsyncHelpers::Await(class [runtime]System.Threading.Tasks.Task) + IL_0033: ldloc.0 + IL_0034: ldc.i4.1 + IL_0035: add + IL_0036: stloc.0 + IL_0037: leave.s IL_003f + + } + finally + { + IL_0039: ldloc.0 + IL_003a: ldc.i4.s 100 + IL_003c: add + IL_003d: stloc.0 + IL_003e: endfinally + } +""" + +// (2) `use` disposal emitted AFTER the protected region: the compiler rewrite hoists the awaited +// DisposeAsync out of the finally — isinst IAsyncDisposable -> DisposeAsync() -> Await(ValueTask). +let private ceDisposalHoist = """ + IL_0070: isinst [runtime]System.IAsyncDisposable + IL_0075: stloc.s V_8 + IL_0077: ldloc.s V_8 + IL_0079: brfalse.s IL_008d + + IL_007b: ldloc.s V_8 + IL_007d: stloc.s V_9 + IL_007f: ldloc.s V_9 + IL_0081: callvirt instance valuetype [runtime]System.Threading.Tasks.ValueTask [runtime]System.IAsyncDisposable::DisposeAsync() + IL_0086: call void [runtime]System.Runtime.CompilerServices.AsyncHelpers::Await(valuetype [runtime]System.Threading.Tasks.ValueTask) +""" + +// MethodImplOptions.Async (0x2000) is a *method header* flag, not an IL instruction — neither the +// ildasm we use nor the sequence-points decoder render it, so both the composed IL exhibit and the +// sequence-points baseline show the lifted async body as an ordinary `outer@` closure. This +// reads it from metadata and pins the placement: the flag lands only on that lifted `__runtimeAsyncReturn` +// body and never leaks onto the user's own `outer`/`helper` methods just because the async part is +// written lexically inside `outer`. The lifted `Invoke` carries 0x2000 (async). +let private assertAsyncFlagOnLiftedClosureOnly (md: MetadataReader) = + let asyncBit = 0x2000 + let methods = + [ for th in md.TypeDefinitions do + let td = md.GetTypeDefinition th + let typeName = md.GetString td.Name + for mh in td.GetMethods() do + let m = md.GetMethodDefinition mh + yield typeName, md.GetString m.Name, ((int m.ImplAttributes) &&& asyncBit) <> 0 ] + + let isAsync typeName methodName = + methods |> List.exists (fun (t, m, a) -> t = typeName && m = methodName && a) + + Assert.False(isAsync "M" "outer", "outer must not carry the async impl flag") + Assert.False(isAsync "M" "helper", "helper must not carry the async impl flag") + Assert.True( + methods |> List.exists (fun (t, _, a) -> a && t.StartsWith "outer@"), + "the lifted closure holding outer's async body must carry the async impl flag") + +[] +let ``composed CE body: await inside try, hoisted disposal, async flag on the lifted method`` () = + FsFromPath builderPath + |> withAdditionalSourceFile (FsSource composedLayoutProgram) + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldSucceed + |> verifyILContains [ ceAwaitInsideTry; ceDisposalHoist ] + |> withMetadataReader assertAsyncFlagOnLiftedClosureOnly + +// DEMO (auduchinok's sequence-points baseline format): source spans interleaved with the IL that +// implements them, so a large async body is readable and each Await maps to its `do!`/`let!`. +// NOTE: like ildasm, this decoder cannot render the MethodImplOptions.Async flag, so in the .bsl the +// lifted `outer@::Invoke` looks like a plain closure. The flag that actually makes it a +// runtime-async method is asserted on the very same compilation via assertAsyncFlagOnLiftedClosureOnly. +let private composedDirectProgram = """ +module M +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let helper x = x * 2 + +let outer (n: int) : Task = + let inner y = y + helper n + let baseline = inner 10 + StateMachineHelpers.__runtimeAsyncReturn ( + let mutable total = baseline + for i in 1 .. n do + let d = AsyncHelpers.Await(Task.FromResult i) + total <- total + d + AsyncHelpers.Await(Task.Delay 1) + if total > 0 then total else -1) +""" + +[] +let ``composed runtime-async body: source-mapped IL (sequence points baseline)`` () = + FSharp composedDirectProgram + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withPortablePdb + |> withNoOptimize + |> compile + |> shouldSucceed + |> verifySequencePointsBaseline composedDirectProgram (Path.Combine(runtimeAsyncDir, "ComposedRuntimeAsync.bsl")) + |> withMetadataReader assertAsyncFlagOnLiftedClosureOnly + +[] +[ = StateMachineHelpers.__runtimeAsyncReturn (try 1 finally AsyncHelpers.Await(Task.Delay(1))) in f().Result |> ignore")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (try failwith \"boom\" with _ -> AsyncHelpers.Await(Task.Delay(1)); 7) in f().Result |> ignore")>] +let ``exception handling block suspensions compile and run correctly`` (_label: string) (body: string) = + FSharp(directIntrinsicSource body) + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> compileExeAndRun + |> shouldSucceed + + + +[] +[) : Task = StateMachineHelpers.__runtimeAsyncReturn (try AsyncHelpers.Await(Task.Delay(1)); 1 finally AsyncHelpers.Await(Task.FromResult(1)) + x)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (let data = [| 10; 20; 30 |] in let span = ReadOnlySpan(data) in AsyncHelpers.Await(Task.Delay(1)); span[0] + span[1] + span[2])")>] +[) : Task = StateMachineHelpers.__runtimeAsyncReturn (AsyncHelpers.Await(Task.Delay(1)); x)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in AsyncHelpers.Await(Task.Delay(1)); FSharp.NativeInterop.NativePtr.get p 0)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let q = p in AsyncHelpers.Await(Task.Delay(1)); FSharp.NativeInterop.NativePtr.get q 0)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let p1 = p in let p2 = p1 in AsyncHelpers.Await(Task.Delay(1)); FSharp.NativeInterop.NativePtr.get p2 0)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let mutable p1 = p in AsyncHelpers.Await(Task.Delay(1)); FSharp.NativeInterop.NativePtr.get p1 0)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let q = (p, 1) in AsyncHelpers.Await(Task.Delay(1)); FSharp.NativeInterop.NativePtr.get (fst q) 0)")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let q = fun () -> FSharp.NativeInterop.NativePtr.get p 0 in AsyncHelpers.Await(Task.Delay(1)); q())")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let q = System.Func(fun () -> FSharp.NativeInterop.NativePtr.get p 0) in AsyncHelpers.Await(Task.Delay(1)); q.Invoke())", + Skip = "Known gap: pinned provenance is not propagated through captured delegates")>] +[ = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let q = ref p in AsyncHelpers.Await(Task.Delay(1)); FSharp.NativeInterop.NativePtr.get q.Value 0)", + Skip = "Known gap: pinned provenance is not propagated through ref cells")>] +[) : Task = StateMachineHelpers.__runtimeAsyncReturn (let mutable i = 0 in let _ = while i < 2 do (AsyncHelpers.Await(Task.Delay(1)); x <- x + 1; i <- i + 1) in 0)")>] +let ``non-preservable values after suspension are rejected`` (_label: string) (body: string) = + compileDirect body + |> shouldFail + |> withErrorCode 3919 + +[] +let ``non-preservable value in an unrelated branch is allowed`` () = + compileDirect + "let f (x: int) : Task = StateMachineHelpers.__runtimeAsyncReturn (let span = ReadOnlySpan([| 1; 2; 3 |]) in if x > 0 then AsyncHelpers.Await(Task.Delay(1)); x else span[0] + span[1])" + |> shouldSucceed + +[] +let ``non-preservable value used before suspension is allowed`` () = + compileDirect + "let f () : Task = StateMachineHelpers.__runtimeAsyncReturn (let span = ReadOnlySpan([| 1; 2; 3 |]) in span[0] + AsyncHelpers.Await(Task.FromResult(1)))" + |> shouldSucceed + +[] +let ``non-preservable pinned value used before suspension is allowed`` () = + FSharp(directIntrinsicSource + "let f (arr: int[]) : Task = StateMachineHelpers.__runtimeAsyncReturn (use p = fixed arr in let value = FSharp.NativeInterop.NativePtr.get p 0 in AsyncHelpers.Await(Task.Delay(1)); value)" + ) + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> withNoWarn 9 + |> compile + |> shouldSucceed + +[] +let ``captured pinning value is rejected`` () = + FSharp(directIntrinsicSource + "let f (arr: int[]) : Task = use p = fixed arr in StateMachineHelpers.__runtimeAsyncReturn (FSharp.NativeInterop.NativePtr.get p 0)" + ) + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> withNoWarn 9 + |> compile + |> shouldFail + |> withErrorCode 406 + +[] +let ``non-preservable value not used after suspension is allowed`` () = + compileDirect + "let f (x: byref) : Task = StateMachineHelpers.__runtimeAsyncReturn (AsyncHelpers.Await(Task.Delay(1)); 1)" + |> shouldSucceed + +[] +let ``runtime async reports a byref local after suspension once`` () = + FSharp( + directIntrinsicSource + "let f (a: int[]) : Task = StateMachineHelpers.__runtimeAsyncReturn (let p = &a.[0] in AsyncHelpers.Await(Task.Delay(1)); p)" + ) + |> withOptions [ "--extraoptimizationloops:1" ] + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> compile + |> shouldFail + |> assertSingleDiagnostic 3919 + +[] +// The CE builder rejects a ref-struct local captured by its continuation lambda (FS0406). +let ``ref struct across a suspension is rejected through the CE builder`` () = + FsFromPath builderPath + |> withAdditionalSourceFile (FsSource refStructAcrossAwaitCE) + |> withFSharpCoreShippedNet + |> withLangVersionPreview + |> compile + |> shouldFail + |> withErrorCode 406 + +#endif diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncSequenceTests.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncSequenceTests.fs new file mode 100644 index 00000000000..01db4556795 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncSequenceTests.fs @@ -0,0 +1,227 @@ +module Language.RuntimeAsyncSequenceTests + +open System.IO +open System.Text.RegularExpressions +open FSharp.Test +open FSharp.Test.Compiler +open Xunit + +#if NETCOREAPP +let private source name = Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", name) +let private preview compilation = compilation |> withLangVersionPreview |> withFSharpCoreShippedNet +let private optimize enabled compilation = if enabled then withOptimize compilation else withOptions ["--optimize-"] compilation + +[] +[] +[] +[] +[] +let ``runtime async sequence library executes`` (crossAssembly: bool, optimized: bool) = + let builder = FsFromPath(source "RuntimeAsyncSequenceBuilder.fs") |> preview |> optimize optimized |> asLibrary + (if crossAssembly then + FsFromPath(source "RuntimeAsyncSequence.fs") |> withReferences [builder] + else + builder |> withAdditionalSourceFile (SourceFromPath(source "RuntimeAsyncSequence.fs"))) + |> preview + |> optimize optimized + |> compileExeAndRun + |> shouldSucceed + +let private header = """ +module M +open System.Runtime.CompilerServices +open System.Threading +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers +""" + +[] +[] +[] +let ``runtime async input evaluation precedes throwing projections`` optimized = + FSharp """ +module PrefixOrder +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let events = ResizeArray() +[] +let source () = events.Add "source"; Task.FromResult 42 +type Holder = { Pair: int * int } +[] +let probe (holder: Holder) = + StateMachineHelpers.__runtimeAsyncReturn ( + let input = source() + (fst holder.Pair, AsyncHelpers.Await input)) + +[] +let main _ = + for holder, shouldThrow in + [{ Pair = (1, 2) }, false + { Pair = Unchecked.defaultof }, true + Unchecked.defaultof, true] do + events.Clear() + let mutable threw = false + try + let result = (probe holder).GetAwaiter().GetResult() + if result <> (1, 42) then failwith "result" + with :? NullReferenceException -> threw <- true + if threw <> shouldThrow then failwith "exception" + if List.ofSeq events <> ["source"] then failwith "source must precede projection" + 0 +""" + |> preview + |> optimize optimized + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async sequence pipe input compiles`` optimized = + FSharp """ +module RuntimeAsyncSequencePipeInput + +open System.Threading +open System.Threading.Tasks +open System.Collections.Generic +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers + +let consume (source: IAsyncEnumerable) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + let iterator = source.GetAsyncEnumerator(CancellationToken.None) + let moved = AsyncHelpers.Await(iterator.MoveNextAsync()) + if moved then iterator.Current else -1) + +let run () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + AsyncHelpers.Await ( + __runtimeAsyncSequence (fun _ -> seq { yield 42 }) + |> consume)) + +[] +let main _ = if run().GetAwaiter().GetResult() = 42 then 0 else 1 +""" + |> preview + |> optimize optimized + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +[] +[] +[] +[] +let ``runtime async sequence keeps source calls adjacent to awaits`` (optimized, resultExpression) = + let inputs = + CSharp "public static class AwaitInputs { public static System.Threading.Tasks.Task Next() => System.Threading.Tasks.Task.FromResult(42); }" + |> withName "AwaitInputs" + let builder = FsFromPath(source "RuntimeAsyncSequenceBuilder.fs") |> preview |> asLibrary + let result = + FSharp(header + "\nlet values () = RuntimeAsyncSequenceBuilder.runtimeAsyncSeq { let! value = AwaitInputs.Next() in yield " + resultExpression + " }") + |> withReferences [inputs; builder] + |> preview + |> optimize optimized + |> compile + |> shouldSucceed + match result with + | CompilationResult.Success output -> + let _, _, il = ILChecker.verifyILAndReturnActual [] output.OutputPath.Value [] + let start = il.IndexOf("AwaitInputs::Next()") + let finish = il.IndexOf("AsyncHelpers::Await", start) + Assert.True(start >= 0 && finish > start) + Assert.DoesNotContain("stfld", il.Substring(start, finish - start)) + Assert.DoesNotContain("stloc", il.Substring(start, finish - start)) + Assert.DoesNotContain("ldloc", il.Substring(start, finish - start)) + | _ -> failwith "expected compiled sequence" + +[] +[] +[] +let ``runtime async sequence isolates ordinary sources`` optimized = + let body = """ +let factory (work: Task) = __runtimeAsyncSequence(fun _ -> seq { + for value in seq { try yield 1 with _ -> yield 2 } do + yield value + AsyncHelpers.Await work +}) +""" + let result = FSharp(header + body) |> preview |> optimize optimized |> compile |> shouldSucceed + result |> withMetadataReader (fun md -> + let names = [for handle in md.MethodDefinitions -> md.GetString(md.GetMethodDefinition(handle).Name)] + Assert.Single(names |> List.filter ((=) "MoveNextAsync")) |> ignore + Assert.Single(names |> List.filter ((=) "DisposeAsync")) |> ignore + for handle in md.MethodDefinitions do + let method = md.GetMethodDefinition handle + let name = md.GetString method.Name + if name = "MoveNextAsync" || name = "DisposeAsync" then + Assert.Equal(0x2000, int method.ImplAttributes &&& 0x2000) + let mutable signature = md.GetBlobReader method.Signature + Assert.False(signature.ReadSignatureHeader().IsGeneric) + Assert.Equal(0, signature.ReadCompressedInteger()) + elif name = "factory" || name = "GenerateNext" then + Assert.Equal(0, int method.ImplAttributes &&& 0x2000)) + match result with + | CompilationResult.Success output -> + let _, _, il = ILChecker.verifyILAndReturnActual [] output.OutputPath.Value [] + let methodBody = + Regex.Match(il, @"(?ms)^(?[ \t]*)\.method[^\n]*MoveNextAsync\(\)[^\n]*\n\k\{.*?^\k\}").Value + Assert.Contains("ValueTask`1", methodBody) + Assert.Contains("AsyncHelpers::Await", methodBody) + Assert.DoesNotContain("__runtimeAsyncSequence", il) + | _ -> failwith "expected compiled sequence" + +[] +[] +[] +let ``runtime async sequence handles inline producer try with`` optimized = + let body = """ +let inline test () = seq { + try + yield 1 + failwith "error" + with + | _ -> + yield -1 +} + +let sequence = __runtimeAsyncSequence test + +[] +let main _ = + let iterator = sequence.GetAsyncEnumerator() + let first = iterator.MoveNextAsync().GetAwaiter().GetResult() + let firstValue = iterator.Current + let second = iterator.MoveNextAsync().GetAwaiter().GetResult() + let secondValue = iterator.Current + let finished = iterator.MoveNextAsync().GetAwaiter().GetResult() + iterator.DisposeAsync().GetAwaiter().GetResult() + if not first || firstValue <> 1 || not second || secondValue <> -1 || finished then + failwith "unexpected sequence values" + 0 +""" + + FSharp(header + body) + |> preview + |> optimize optimized + |> compileExeAndRun + |> shouldSucceed + +[] +[ seq) = __runtimeAsyncSequence recipe")>] +[) = __runtimeAsyncSequence(fun _ -> seq { yield 1; yield! input })")>] +[ seq { for n in seq { yield AsyncHelpers.Await(Task.FromResult 1) } do yield n })")>] +[ seq { yield 1 })")>] +let ``runtime async sequence rejects unsupported entries`` (language: string, code: int, body: string) = + FSharp(header + body) + |> withFSharpCoreShippedNet + |> withLangVersion language + |> compile + |> shouldFail + |> withErrorCode code +#endif diff --git a/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncTests.fs b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncTests.fs new file mode 100644 index 00000000000..2482107f5f7 --- /dev/null +++ b/tests/FSharp.Compiler.ComponentTests/Language/RuntimeAsyncTests.fs @@ -0,0 +1,1068 @@ +module Language.RuntimeAsyncTests + +open Xunit +open FSharp.Test.Compiler +open System.IO + +let private runtimeAsyncSource = """ +module RuntimeAsyncTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let add (x: int) (y: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + AsyncHelpers.Await(Task.Delay(1)) + x + y) + +let rawBody () : Task = + StateMachineHelpers.__runtimeAsyncReturn 1 + +type Calculator() = + member _.Add(x: int, y: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + AsyncHelpers.Await(Task.Delay(1)) + x + y) + + member _.AddRaw(x: int) : Task = + StateMachineHelpers.__runtimeAsyncReturn (x + 1) +""" + +let private runtimeAsyncRawSource = """ +module RuntimeAsyncRawTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices +open System.Runtime.CompilerServices + +type RuntimeTaskBuilder() = + member inline _.Delay([] generator: unit -> 'T) = + generator + + member inline _.Run([] code: unit -> 'T) : Task<'T> = + StateMachineHelpers.__runtimeAsyncReturn (code()) + + member inline _.Zero() = () + + member inline _.Return(value: 'T) = value + + member inline _.Bind(task: Task, [] continuation: unit -> 'U) = + AsyncHelpers.Await task + continuation() + + member inline _.Combine( + [] first: unit -> unit, + [] second: unit -> 'T + ) = + first() + second() + +[] +module RuntimeTask = + let runtimeTask = RuntimeTaskBuilder() + +type ICalculator = + abstract Combined: unit -> Task + +type Calculator() = + member _.Combined() : Task = + runtimeTask { + do! Task.Delay(1) + do! Task.Delay(1) + return 42 + } + + interface ICalculator with + member this.Combined() = this.Combined() + +""" + +#if NETCOREAPP +let private runtimeAsyncCrossAssemblyLibrary = """ +module RuntimeAsyncCrossAssemblyLibrary + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let inline getValue () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + AsyncHelpers.Await(Task.Delay(1)) + 42) +""" + +let private runtimeAsyncCrossAssemblyConsumer = """ +module RuntimeAsyncCrossAssemblyConsumer + +open RuntimeAsyncCrossAssemblyLibrary + +[] +let main _ = + if getValue().GetAwaiter().GetResult() = 42 then 0 else 1 +""" + +[] +[] +[] +let ``runtime async rejects pinning from an imported inline function after suspension`` (optimize: bool) = + let library = + FSharp """ +module RuntimeAsyncPinningCrossAssemblyLibrary + +open FSharp.NativeInterop + +let inline comparePin (array: byte[]) ([] action) = + use before = fixed array + action () + use after = fixed array + struct (NativePtr.toNativeInt before, NativePtr.toNativeInt after) +""" + |> withName "RuntimeAsyncPinningCrossAssemblyLibrary" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withNoWarn 9 + + FSharp """ +module RuntimeAsyncPinningCrossAssemblyConsumer + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices +open RuntimeAsyncPinningCrossAssemblyLibrary + +let run (data: byte[]) (gate: Task) = + StateMachineHelpers.__runtimeAsyncReturn ( + comparePin data (fun () -> AsyncHelpers.Await gate)) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> withNoWarn 9 + |> withReferences [ library ] + |> compile + |> shouldFail + |> withErrorCode 3919 + +[] +[] +[] +let ``runtime async methods execute across assemblies`` (optimize: bool) = + FSharp runtimeAsyncCrossAssemblyConsumer + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> withReferences [ + FSharp runtimeAsyncCrossAssemblyLibrary + |> withName "RuntimeAsyncCrossAssemblyLibrary" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + ] + |> compileExeAndRun + |> shouldSucceed +#endif + +let private runtimeAsyncNestedInlineSource = """ +module RuntimeAsyncNestedInlineTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +type InlineAwait = + static member inline Await1(task: Task) = AsyncHelpers.Await task + static member inline Await2(task: Task) = InlineAwait.Await1 task + static member inline AddOne(value: int) = value + 1 + static member inline Await3(task: Task) = InlineAwait.AddOne (InlineAwait.Await2 task) + +let f (task: Task) : Task = + StateMachineHelpers.__runtimeAsyncReturn (InlineAwait.Await3 task) +""" + +#if NETCOREAPP +[] +let ``runtime async requires preview language version`` () = + FSharp """ +module RuntimeAsyncPreviewTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let f : Task = + StateMachineHelpers.__runtimeAsyncReturn 1 +""" + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 3350 + +[] +let ``runtime async suspension outside runtime async is rejected`` () = + FSharp """ +module RuntimeAsyncSuspensionContextTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices + +let f () = + AsyncHelpers.Await(Task.Delay(1)) + AsyncHelpers.AwaitAwaiter(Task.Delay(1).GetAwaiter()) + AsyncHelpers.UnsafeAwaitAwaiter(Task.Delay(1).GetAwaiter()) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCodes [ 3918; 3918; 3918 ] + +[] +let ``runtime async rejects non Task result carriers`` () = + FSharp """ +module RuntimeAsyncCarrierTest + +open Microsoft.FSharp.Core.CompilerServices + +let f : string = + StateMachineHelpers.__runtimeAsyncReturn "result" +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 1 + +[] +let ``runtime async intrinsic does not capture user-defined same-named values`` () = + FSharp """ +let __runtimeAsyncReturn value = value +let result = __runtimeAsyncReturn 1 +""" + |> typecheck + |> shouldSucceed + +[] +let ``runtime async compiles functions and members`` () = + FSharp runtimeAsyncSource + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldSucceed + +[] +let ``runtime async supports Task and ValueTask return intrinsics`` () = + FSharp """ +module RuntimeAsyncReturnShapesTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let taskResult () : Task = + StateMachineHelpers.__runtimeAsyncReturn 1 + +let valueTaskResult () : ValueTask = + StateMachineHelpers.__runtimeAsyncReturnValueTask 1 + +let taskUnit () : Task = + StateMachineHelpers.__runtimeAsyncReturnUnit () + +let valueTaskUnit () : ValueTask = + StateMachineHelpers.__runtimeAsyncReturnValueTaskUnit () + +[] +let main _ = + taskUnit().Wait() + taskResult().Result |> ignore + valueTaskResult().Result |> ignore + valueTaskUnit().AsTask().Wait() + 0 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async supports inlining of a lambda`` () = + FSharp """ +module RuntimeAsyncInlineLambdaTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers + +let inline makeFragment () = + fun x -> + AsyncHelpers.Await (Task.Delay 1000) + printfn "Hello from async function with input: %d" x + +let inline consume([] f) = + __runtimeAsyncReturn(f 42) + +[] +let main _ = + consume (makeFragment()) |> _.Result |> ignore + 0 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async supports inlining of a multi argument lambda`` () = + FSharp """ +module RuntimeAsyncInlineMultiArgumentLambdaTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers + +let inline makeFragment () = + fun x y -> + AsyncHelpers.Await (Task.Delay 1) + x + y + +let inline consume([] f) = + __runtimeAsyncReturn(f 40 2) + +[] +let main _ = + if (consume (makeFragment())).Result <> 42 then 1 else 0 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async fuses suspension in inline returned closures`` () = + FSharp """ +module RuntimeAsyncInlineReturnedClosureTest + +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +type Code = obj -> unit + +type Builder() = + member inline _.Delay([] generator: unit -> Code) : Code = + fun state -> generator() state + + member inline _.Zero() : Code = + fun _ -> () + + member inline _.Yield(_: int) : Code = + fun _ -> () + + member inline _.Bind(task: Task, [] continuation: unit -> Code) : Code = + fun state -> + AsyncHelpers.Await task + continuation() state + + member inline _.Combine(first: Code, [] second: Code) : Code = + fun state -> + first state + second state + + member inline _.Run([] code: Code) : Task = + StateMachineHelpers.__runtimeAsyncReturnUnit (code null) + +[] +let main _ = + let builder = Builder() + builder { + yield 1 + do! Task.Delay(1) + } + |> _.Wait() + 0 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async ignores unreachable suspension`` () = + FSharp """ +module RuntimeAsyncUnreachableSuspensionTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices + +let f () = + if false then + AsyncHelpers.Await (Task.Delay 1) + +[] +let main _ = + f () + 0 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async preserves reraise after a suspending handler`` (optimize: bool) = + FSharp """ +module RuntimeAsyncReraiseTest + +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let f () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + failwith "boom" + 0 + with _ -> + AsyncHelpers.Await(Task.Delay 1) + reraise ()) + +[] +let main _ = + try + f().GetAwaiter().GetResult() |> ignore + 1 + with + | e when e.Message = "boom" -> 0 + | _ -> 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async rejects stackalloc across suspension`` () = + FSharp """ +module RuntimeAsyncStackallocTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices +open Microsoft.FSharp.NativeInterop + +let f () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + let p = NativePtr.stackalloc 1 + NativePtr.write p 42 + AsyncHelpers.Await(Task.Delay 1) + NativePtr.read p) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 3920 + +[] +let ``runtime async rejects stackalloc without suspension`` () = + FSharp """ +module RuntimeAsyncStackallocWithoutSuspensionTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices +open Microsoft.FSharp.NativeInterop + +let f () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + let p = NativePtr.stackalloc 1 + NativePtr.write p 42 + NativePtr.read p) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 3920 + +[] +let ``runtime async rejects a byref captured by an inlined closure`` () = + FSharp """ +module RuntimeAsyncByrefClosureTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +[] +let f (x: byref) : Task = + let y = x + StateMachineHelpers.__runtimeAsyncReturn (x + y) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 406 + +[] +[] +[] +let ``runtime async does not duplicate effectful InlineIfLambda arguments`` (optimize: bool) = + FSharp """ +module RuntimeAsyncInlineIfLambdaEffectsTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers + +let mutable calls = 0 + +let effect () = + calls <- calls + 1 + fun () -> 1 + +let inline plainTwice ([] f: unit -> int) = f () + f () +let inline twice ([] f: unit -> int) = + __runtimeAsyncReturn (f () + f ()) +let inline unused ([] f: unit -> int) = + __runtimeAsyncReturn 20 + +[] +let main _ = + let plainResult = plainTwice (effect ()) + let plainCalls = calls + calls <- 0 + let twiceResult = (twice (effect ())).GetAwaiter().GetResult() + let twiceCalls = calls + calls <- 0 + let unusedResult = (unused (effect ())).GetAwaiter().GetResult() + let unusedCalls = calls + + if plainResult = 2 && plainCalls = 1 + && twiceResult = 2 && twiceCalls = 1 + && unusedResult = 20 && unusedCalls = 1 then + 0 + else + 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async pipe syntax is gated by the language version`` () = + FSharp """ +module RuntimeAsyncPipeGateTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let f (x: int) : Task = + x |> StateMachineHelpers.__runtimeAsyncReturn +""" + |> withLangVersion90 + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 3350 + +[] +[] +[] +let ``runtime async preserves evaluation order for curried inline applications`` (optimize: bool) = + FSharp """ +module RuntimeAsyncCurriedApplicationTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let events = ResizeArray() + +let step name value = + events.Add name + value + +let inline apply f x y = f x y + +let f () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + apply + (fun x -> + events.Add "body" + fun y -> x + y) + (step "arg1" 1) + (step "arg2" 2)) + +[] +let main _ = + let result = f().GetAwaiter().GetResult() + + if result = 3 && (events |> Seq.toList) = [ "arg1"; "arg2"; "body" ] then + 0 + else + 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async rejects synchronized methods`` () = + FSharp """ +module RuntimeAsyncSynchronizedTest + +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +[] +let f () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + AsyncHelpers.Await(Task.Delay(1).ContinueWith(fun _ -> 1))) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 3921 + +[] +let ``runtime async combines awaited chunks without delegates`` () = + FSharp runtimeAsyncRawSource + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> verifyILContains [ + "Task::Delay(int32)" + "AsyncHelpers::Await(class [runtime]System.Threading.Tasks.Task)" + ] + |> shouldSucceed + +[] +let ``runtime async specializes nested inline suspensions without optimization`` () = + FSharp runtimeAsyncNestedInlineSource + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withNoOptimize + |> compile + |> verifyILContains [ "AsyncHelpers::Await(class [runtime]System.Threading.Tasks.Task`1)" ] + +[] +[] +[] +let ``runtime task builder fixture executes through runtime async`` (optimize: bool) = + FsFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeTaskBuilder.fs")) + |> withAdditionalSourceFile ( + SourceFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeTasks.fs")) + ) + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime task AsyncLocal values propagate through runtime async`` () = + FsFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeTaskBuilder.fs")) + |> withAdditionalSourceFile ( + SourceFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeAsyncAsyncLocal.fs")) + ) + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async direct intrinsic fixture executes`` () = + Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeAsyncBasic.fs") + |> FsFromPath + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async low level async enumerable fixture executes`` (optimize: bool) = + Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeAsyncEnumerableLowLevel.fs") + |> FsFromPath + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async enumerable builder fixture executes`` (optimize: bool) = + FsFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeTaskBuilder.fs")) + |> withAdditionalSourceFile ( + SourceFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeAsyncEnumerable.fs")) + ) + |> withAdditionalSourceFile ( + SourceFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeAsyncEnumerableTests.fs")) + ) + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async enumerable CE debug points stay at call sites`` () = + let source = + """module RuntimeAsyncEnumerableDebug +open System.Threading.Tasks +open RuntimeAsyncEnumerable + +let first () = + asyncSeq { + do! Task.Delay 1 + yield 1 + } + +let second () = + asyncSeq { + do! Task.Delay 1 + yield 2 + } +""" + + FsFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeTaskBuilder.fs")) + |> withAdditionalSourceFile ( + SourceFromPath (Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeAsyncEnumerable.fs")) + ) + |> withAdditionalSourceFile (FsSourceWithFileName "RuntimeAsyncEnumerableDebug.fs" source) + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withPortablePdb + |> withNoOptimize + |> compile + |> shouldSucceed + |> verifyPdb [ + VerifyRuntimeAsyncMethodSequencePointsInSource("RuntimeAsyncEnumerableDebug.fs", 6, 8) + VerifyRuntimeAsyncMethodSequencePointsInSource("RuntimeAsyncEnumerableDebug.fs", 12, 14) + ] + +[] +let ``runtime async suspension in exception region executes`` () = + Path.Combine(__SOURCE_DIRECTORY__, "RuntimeAsync", "RuntimeTasksAsyncDisposalException.fs") + |> FsFromPath + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async reraise preserves the innermost exception after suspension`` () = + FSharp """ +module RuntimeAsyncReraiseTest + +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let f () : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + raise (InvalidOperationException("outer")) + with _ -> + AsyncHelpers.Await(Task.Delay(1)) + try + raise (ArgumentException("inner")) + with _ -> + reraise ()) + +[] +let main _ = + try + f().GetAwaiter().GetResult() |> ignore + 1 + with + | :? ArgumentException as ex when ex.Message = "inner" -> 0 + | _ -> 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async preserves an outer reraise after a nested suspension`` (optimize: bool) = + FSharp """ +module RuntimeAsyncNestedReraiseTest + +open System +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let run (gate: Task) (outer: exn) (trace: ResizeArray) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + raise outer + with _ -> + AsyncHelpers.Await gate + try + reraise () + finally + trace.Add "finally") + +[] +let main _ = + let gate = TaskCompletionSource() + let trace = ResizeArray() + let outer = InvalidOperationException("outer") + let work = run gate.Task outer trace + gate.SetResult(()) + + try + work.GetAwaiter().GetResult() |> ignore + 1 + with + | ex when obj.ReferenceEquals(ex, outer) && trace.ToArray() = [| "finally" |] -> 0 + | _ -> 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async rejects suspension in an unmarked object member`` (optimize: bool) = + FSharp """ +module RuntimeAsyncUnmarkedMemberTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +type IInt = + abstract Get : unit -> int + +let make (gate: Task) = + StateMachineHelpers.__runtimeAsyncReturn ( + { new IInt with + member _.Get() = AsyncHelpers.Await gate }) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compile + |> shouldFail + |> withErrorCode 3918 + +[] +[] +[] +let ``runtime async marker inside an object member remains supported`` (optimize: bool) = + FSharp """ +module RuntimeAsyncMarkedObjectMemberTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +type IInt = + abstract Get : unit -> Task + +let make (gate: Task) = + { new IInt with + member _.Get() = + StateMachineHelpers.__runtimeAsyncReturn (AsyncHelpers.Await gate) } + +[] +let main _ = + let value = (make (Task.FromResult 41)).Get().GetAwaiter().GetResult() + if value = 41 then 0 else 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async evaluates conditional callback construction once`` (optimize: bool) = + FSharp """ +module RuntimeAsyncConditionalCallbackConstructionTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let events = ResizeArray() +let note text = events.Add text + +[] +let choose () = + note "choose" + true + +let inline twice ([] body: unit -> int) = + StateMachineHelpers.__runtimeAsyncReturn (body() + body()) + +let run (gate: Task) = + twice ( + if choose() then + note "construct" + fun () -> + note "body" + AsyncHelpers.Await gate + else + fun () -> 0) + +[] +let main _ = + let gate = TaskCompletionSource() + let work = run gate.Task + gate.SetResult(21) + let result = work.GetAwaiter().GetResult() + + if result = 42 && events.ToArray() = [| "choose"; "construct"; "body"; "body" |] then 0 else 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +[] +[] +let ``runtime async evaluates a suspending exception filter once`` (optimize: bool) = + FSharp """ +module RuntimeAsyncExceptionFilterTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let run (gate: Task) (predicate: unit -> bool) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + try + failwith "body" + with _ when (AsyncHelpers.Await gate; predicate()) -> + 7) + +[] +let main _ = + let gate = TaskCompletionSource() + let mutable calls = 0 + + let firstTrue () = + calls <- calls + 1 + calls = 1 + + let work = run gate.Task firstTrue + gate.SetResult(()) + + try + if work.GetAwaiter().GetResult() = 7 && calls = 1 then 0 else 1 + with _ -> + 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> withOptimization optimize + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async evaluates inline callback construction once`` () = + FSharp """ +module RuntimeAsyncCallbackConstructionTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let mutable constructed = 0 + +let inline twice ([] f: unit -> int) = + StateMachineHelpers.__runtimeAsyncReturn (f () + f ()) + +let run () = + twice (constructed <- constructed + 1; fun () -> 21) + +[] +let main _ = + let result = run().GetAwaiter().GetResult() + if result = 42 && constructed = 1 then 0 else 1 +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compileExeAndRun + |> shouldSucceed + +[] +let ``runtime async is gated without preview when optimization is disabled`` () = + FSharp """ +module RuntimeAsyncNoOptimizePreviewTest + +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let f (x: int) : Task = + x |> StateMachineHelpers.__runtimeAsyncReturn +""" + |> withLangVersion90 + |> withFSharpCoreShippedNet + |> withNoOptimize + |> compile + |> shouldFail + |> withErrorCode 3350 + +[] +let ``runtime async rejects suspension inside an ordinary sequence`` () = + FSharp """ +module RuntimeAsyncNestedSequenceTest + +open System.Threading.Tasks +open System.Runtime.CompilerServices +open Microsoft.FSharp.Core.CompilerServices + +let f (gate: Task) : Task = + StateMachineHelpers.__runtimeAsyncReturn ( + seq { + let value = AsyncHelpers.Await gate + yield value + yield value + 1 + }) +""" + |> withLangVersionPreview + |> withFSharpCoreShippedNet + |> compile + |> shouldFail + |> withErrorCode 3918 + +#else +[] +let ``runtime async intrinsic is only available in the shipped net FSharp.Core`` () = + FSharp """ +open System.Threading.Tasks +open Microsoft.FSharp.Core.CompilerServices + +let f : Task = + StateMachineHelpers.__runtimeAsyncReturn 1 +""" + |> typecheck + |> shouldFail + |> withErrorCode 39 +#endif diff --git a/tests/FSharp.Core.UnitTests/FSharp.Core.SurfaceArea.netcore.debug.bsl b/tests/FSharp.Core.UnitTests/FSharp.Core.SurfaceArea.netcore.debug.bsl new file mode 100644 index 00000000000..6964d31c0e3 --- /dev/null +++ b/tests/FSharp.Core.UnitTests/FSharp.Core.SurfaceArea.netcore.debug.bsl @@ -0,0 +1,2742 @@ +Microsoft.FSharp.Collections.Array2DModule: Int32 Base1[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: Int32 Base2[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: Int32 Length1[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: Int32 Length2[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: T Get[T](T[,], Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: TResult[,] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]]], T[,]) +Microsoft.FSharp.Collections.Array2DModule: TResult[,] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[,]) +Microsoft.FSharp.Collections.Array2DModule: T[,] Copy[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: T[,] CreateBased[T](Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array2DModule: T[,] Create[T](Int32, Int32, T) +Microsoft.FSharp.Collections.Array2DModule: T[,] InitializeBased[T](Int32, Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]) +Microsoft.FSharp.Collections.Array2DModule: T[,] Initialize[T](Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]) +Microsoft.FSharp.Collections.Array2DModule: T[,] Rebase[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: T[,] ZeroCreateBased[T](Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: T[,] ZeroCreate[T](Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: Void CopyTo[T](T[,], Int32, Int32, T[,], Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]]], T[,]) +Microsoft.FSharp.Collections.Array2DModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[,]) +Microsoft.FSharp.Collections.Array2DModule: Void Set[T](T[,], Int32, Int32, T) +Microsoft.FSharp.Collections.Array3DModule: Int32 Length1[T](T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Int32 Length2[T](T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Int32 Length3[T](T[,,]) +Microsoft.FSharp.Collections.Array3DModule: T Get[T](T[,,], Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array3DModule: TResult[,,] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]]]], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: TResult[,,] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: T[,,] Create[T](Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array3DModule: T[,,] Initialize[T](Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]]) +Microsoft.FSharp.Collections.Array3DModule: T[,,] ZeroCreate[T](Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array3DModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]]]], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Void Set[T](T[,,], Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length1[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length2[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length3[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length4[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: T Get[T](T[,,,], Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array4DModule: T[,,,] Create[T](Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array4DModule: T[,,,] Initialize[T](Int32, Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]]]) +Microsoft.FSharp.Collections.Array4DModule: T[,,,] ZeroCreate[T](Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array4DModule: Void Set[T](T[,,,], Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[T1,T2][] Zip[T1,T2](T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[T1[],T2[]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[TKey,T[]][] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[T[],T[]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Average[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Max[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Min[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Sum[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult ReduceBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] Collect[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult[]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] Initialize[T](Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortByDescending[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortDescending[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] Sort[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void SortInPlaceBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void SortInPlaceWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void SortInPlace[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean Contains[T](T, T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean Exists2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean ForAll2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean IsEmpty[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 CompareWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[], T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 FindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 FindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 Length[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Collections.ArrayModule+Parallel +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryExactlyOne[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryHead[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryItem[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryLast[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Collections.Generic.IEnumerable`1[T] ToSeq[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[System.Int32,T][] Indexed[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T,T][] Pairwise[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1,T2][] AllPairs[T1,T2](T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1,T2][] Zip[T1,T2](T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1[],T2[]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1[],T2[]] Unzip[T1,T2](System.Tuple`2[T1,T2][]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TKey,System.Int32][] CountBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TKey,T[]][] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TResult[],TState] MapFoldBack[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,System.Tuple`2[TResult,TState]]], T[], TState) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TResult[],TState] MapFold[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Tuple`2[TResult,TState]]], TState, T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T[],T[]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T[],T[]] SplitAt[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`3[T1,T2,T3][] Zip3[T1,T2,T3](T1[], T2[], T3[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`3[T1[],T2[],T3[]] Unzip3[T1,T2,T3](System.Tuple`3[T1,T2,T3][]) +Microsoft.FSharp.Collections.ArrayModule: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Average[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T ExactlyOne[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T FindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Find[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Get[T](T[], Int32) +Microsoft.FSharp.Collections.ArrayModule: T Head[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T Item[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T Last[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Max[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Min[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T RandomChoiceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], T[]) +Microsoft.FSharp.Collections.ArrayModule: T RandomChoiceWith[T](System.Random, T[]) +Microsoft.FSharp.Collections.ArrayModule: T RandomChoice[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T ReduceBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Sum[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T differentLengthArrays[T](System.String, Int32, System.String, Int32) +Microsoft.FSharp.Collections.ArrayModule: T indexNotFound[T]() +Microsoft.FSharp.Collections.ArrayModule: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult Pick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Collect[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult[]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], T1[], T2[], T3[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] MapIndexed2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TState Fold2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TState]]], TState, T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: TState FoldBack2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], T1[], T2[], TState) +Microsoft.FSharp.Collections.ArrayModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], T[], TState) +Microsoft.FSharp.Collections.ArrayModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, T[]) +Microsoft.FSharp.Collections.ArrayModule: TState[] ScanBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], T[], TState) +Microsoft.FSharp.Collections.ArrayModule: TState[] Scan[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Append[T](T[], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Concat[T](System.Collections.Generic.IEnumerable`1[T[]]) +Microsoft.FSharp.Collections.ArrayModule: T[] Copy[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Create[T](Int32, T) +Microsoft.FSharp.Collections.ArrayModule: T[] DistinctBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Distinct[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Empty[T]() +Microsoft.FSharp.Collections.ArrayModule: T[] Except[T](System.Collections.Generic.IEnumerable`1[T], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] GetSubArray[T](T[], Int32, Int32) +Microsoft.FSharp.Collections.ArrayModule: T[] Initialize[T](Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.ArrayModule: T[] InsertAt[T](Int32, T, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] InsertManyAt[T](Int32, System.Collections.Generic.IEnumerable`1[T], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] OfList[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ArrayModule: T[] OfSeq[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.ArrayModule: T[] Permute[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.Int32], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomChoicesBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomChoicesWith[T](System.Random, Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomChoices[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomSampleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomSampleWith[T](System.Random, Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomSample[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomShuffleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomShuffleWith[T](System.Random, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomShuffle[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RemoveAt[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RemoveManyAt[T](Int32, Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Replicate[T](Int32, T) +Microsoft.FSharp.Collections.ArrayModule: T[] Reverse[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Singleton[T](T) +Microsoft.FSharp.Collections.ArrayModule: T[] SkipWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Skip[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortByDescending[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortDescending[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Sort[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Tail[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] TakeWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Take[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Truncate[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Unfold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[T,TState]]], TState) +Microsoft.FSharp.Collections.ArrayModule: T[] UpdateAt[T](Int32, T, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Where[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] ZeroCreate[T](Int32) +Microsoft.FSharp.Collections.ArrayModule: T[][] ChunkBySize[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[][] SplitInto[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[][] Transpose[T](System.Collections.Generic.IEnumerable`1[T[]]) +Microsoft.FSharp.Collections.ArrayModule: T[][] Windowed[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: Void CopyTo[T](T[], Int32, T[], Int32, Int32) +Microsoft.FSharp.Collections.ArrayModule: Void Fill[T](T[], Int32, Int32, T) +Microsoft.FSharp.Collections.ArrayModule: Void Iterate2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Void IterateIndexed2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void RandomShuffleInPlaceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void RandomShuffleInPlaceWith[T](System.Random, T[]) +Microsoft.FSharp.Collections.ArrayModule: Void RandomShuffleInPlace[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Void Set[T](T[], Int32, T) +Microsoft.FSharp.Collections.ArrayModule: Void SortInPlaceBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void SortInPlaceWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void SortInPlace[T](T[]) +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] FromFunction[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]]) +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] NonStructural$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]]) +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] NonStructural[T]() +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] Structural[T]() +Microsoft.FSharp.Collections.FSharpList: Microsoft.FSharp.Collections.FSharpList`1[T] Create[T](System.ReadOnlySpan`1[T]) +Microsoft.FSharp.Collections.FSharpList`1+Tags[T]: Int32 Cons +Microsoft.FSharp.Collections.FSharpList`1+Tags[T]: Int32 Empty +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(Microsoft.FSharp.Collections.FSharpList`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean IsCons +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean IsEmpty +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean get_IsCons() +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean get_IsEmpty() +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 CompareTo(Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 GetReverseIndex(Int32, Int32) +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 Length +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 Tag +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 get_Length() +Microsoft.FSharp.Collections.FSharpList`1[T]: Int32 get_Tag() +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1+Tags[T] +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Cons(T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Empty +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] GetSlice(Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Tail +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] TailOrNull +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] get_Empty() +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] get_Tail() +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] get_TailOrNull() +Microsoft.FSharp.Collections.FSharpList`1[T]: System.String ToString() +Microsoft.FSharp.Collections.FSharpList`1[T]: T Head +Microsoft.FSharp.Collections.FSharpList`1[T]: T HeadOrDefault +Microsoft.FSharp.Collections.FSharpList`1[T]: T Item [Int32] +Microsoft.FSharp.Collections.FSharpList`1[T]: T get_Head() +Microsoft.FSharp.Collections.FSharpList`1[T]: T get_HeadOrDefault() +Microsoft.FSharp.Collections.FSharpList`1[T]: T get_Item(Int32) +Microsoft.FSharp.Collections.FSharpList`1[T]: Void .ctor(T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean ContainsKey(TKey) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean Equals(System.Object) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean IsEmpty +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean TryGetValue(TKey, TValue ByRef) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean get_IsEmpty() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Int32 Count +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Int32 GetHashCode() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Int32 get_Count() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue] Add(TKey, TValue) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue] Change(TKey, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.FSharpOption`1[TValue],Microsoft.FSharp.Core.FSharpOption`1[TValue]]) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue] Remove(TKey) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Microsoft.FSharp.Core.FSharpOption`1[TValue] TryFind(TKey) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.Collections.Generic.ICollection`1[TKey] Keys +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.Collections.Generic.ICollection`1[TKey] get_Keys() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.Collections.Generic.ICollection`1[TValue] Values +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.Collections.Generic.ICollection`1[TValue] get_Values() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.String ToString() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: TValue Item [TKey] +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: TValue get_Item(TKey) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Void .ctor(System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,TValue]]) +Microsoft.FSharp.Collections.FSharpSet: Microsoft.FSharp.Collections.FSharpSet`1[T] Create[T](System.ReadOnlySpan`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean Contains(T) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean IsEmpty +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean IsProperSubsetOf(Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean IsProperSupersetOf(Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean IsSubsetOf(Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean IsSupersetOf(Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean get_IsEmpty() +Microsoft.FSharp.Collections.FSharpSet`1[T]: Int32 Count +Microsoft.FSharp.Collections.FSharpSet`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Collections.FSharpSet`1[T]: Int32 get_Count() +Microsoft.FSharp.Collections.FSharpSet`1[T]: Microsoft.FSharp.Collections.FSharpSet`1[T] Add(T) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Microsoft.FSharp.Collections.FSharpSet`1[T] Remove(T) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Microsoft.FSharp.Collections.FSharpSet`1[T] op_Addition(Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Microsoft.FSharp.Collections.FSharpSet`1[T] op_Subtraction(Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: System.String ToString() +Microsoft.FSharp.Collections.FSharpSet`1[T]: T MaximumElement +Microsoft.FSharp.Collections.FSharpSet`1[T]: T MinimumElement +Microsoft.FSharp.Collections.FSharpSet`1[T]: T get_MaximumElement() +Microsoft.FSharp.Collections.FSharpSet`1[T]: T get_MinimumElement() +Microsoft.FSharp.Collections.FSharpSet`1[T]: Void .ctor(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] FromFunctions[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]]) +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] LimitedStructural[T](Int32) +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] NonStructural$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]]) +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] NonStructural[T]() +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] Reference[T]() +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] Structural[T]() +Microsoft.FSharp.Collections.ListModule: Boolean Contains[T](T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Boolean Exists2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Boolean ForAll2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Boolean IsEmpty[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Int32 CompareWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], Microsoft.FSharp.Collections.FSharpList`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Int32 FindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Int32 FindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Int32 Length[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[T]] ChunkBySize[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[T]] SplitInto[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[T]] Transpose[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpList`1[T]]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[T]] Windowed[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[System.Int32,T]] Indexed[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T,T]] Pairwise[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T1,T2]] AllPairs[T1,T2](Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T1,T2]] Zip[T1,T2](Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,Microsoft.FSharp.Collections.FSharpList`1[T]]] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,System.Int32]] CountBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`3[T1,T2,T3]] Zip3[T1,T2,T3](Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2], Microsoft.FSharp.Collections.FSharpList`1[T3]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Collect[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Collections.FSharpList`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2], Microsoft.FSharp.Collections.FSharpList`1[T3]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] MapIndexed2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TState] ScanBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Collections.FSharpList`1[T], TState) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TState] Scan[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Append[T](Microsoft.FSharp.Collections.FSharpList`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Concat[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpList`1[T]]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] DistinctBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], Microsoft.FSharp.Collections.FSharpList`1[T]) 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Microsoft.FSharp.Collections.FSharpList`1[T] InsertManyAt[T](Int32, System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] OfArray[T](T[]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] OfSeq[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Permute[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.Int32], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomChoicesBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomChoicesWith[T](System.Random, Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomChoices[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomSampleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomSampleWith[T](System.Random, Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomSample[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomShuffleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Microsoft.FSharp.Collections.FSharpList`1[T]) 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SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Sort[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Tail[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] TakeWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Take[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Truncate[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Unfold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[T,TState]]], TState) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] UpdateAt[T](Int32, T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Where[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryExactlyOne[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryHead[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryItem[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryLast[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Collections.Generic.IEnumerable`1[T] ToSeq[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T1],Microsoft.FSharp.Collections.FSharpList`1[T2]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T1],Microsoft.FSharp.Collections.FSharpList`1[T2]] Unzip[T1,T2](Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T1,T2]]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[TResult],TState] MapFoldBack[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,System.Tuple`2[TResult,TState]]], Microsoft.FSharp.Collections.FSharpList`1[T], TState) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[TResult],TState] MapFold[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Tuple`2[TResult,TState]]], TState, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T],Microsoft.FSharp.Collections.FSharpList`1[T]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T],Microsoft.FSharp.Collections.FSharpList`1[T]] SplitAt[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) 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+Microsoft.FSharp.Collections.ListModule: T Find[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Get[T](Microsoft.FSharp.Collections.FSharpList`1[T], Int32) +Microsoft.FSharp.Collections.ListModule: T Head[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Item[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Last[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Max[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Min[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T RandomChoiceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T RandomChoiceWith[T](System.Random, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T RandomChoice[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T ReduceBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Sum[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T differentLengthLists[T](System.String, System.String, Int32) +Microsoft.FSharp.Collections.ListModule: T emptyListError[T]() +Microsoft.FSharp.Collections.ListModule: T indexNotFound[T]() +Microsoft.FSharp.Collections.ListModule: T listsDifferentLengths[T]() +Microsoft.FSharp.Collections.ListModule: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult Pick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TState Fold2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TState]]], TState, Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: TState FoldBack2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2], TState) +Microsoft.FSharp.Collections.ListModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Collections.FSharpList`1[T], TState) +Microsoft.FSharp.Collections.ListModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T[] ToArray[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Void Iterate2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Void IterateIndexed2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.MapModule: Boolean ContainsKey[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Boolean Exists[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Boolean ForAll[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Boolean IsEmpty[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Int32 Count[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,T]] ToList[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,TResult] Map[TKey,T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Add[TKey,T](TKey, T, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Change[TKey,T](TKey, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.FSharpOption`1[T],Microsoft.FSharp.Core.FSharpOption`1[T]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Empty[TKey,T]() +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Filter[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] OfArray[TKey,T](System.Tuple`2[TKey,T][]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] OfList[TKey,T](Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,T]]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] OfSeq[TKey,T](System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,T]]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Remove[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Core.FSharpOption`1[TKey] TryFindKey[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[TKey,T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Collections.Generic.ICollection`1[TKey] Keys[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Collections.Generic.ICollection`1[T] Values[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,T]] ToSeq[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpMap`2[TKey,T],Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]] Partition[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[TKey,T] MaxKeyValue[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[TKey,T] MinKeyValue[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[TKey,T][] ToArray[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: T Find[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: TKey FindKey[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: TResult Pick[TKey,T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: TState FoldBack[TKey,T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T], TState) +Microsoft.FSharp.Collections.MapModule: TState Fold[TKey,T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]]], TState, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Void Iterate[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.SeqModule: Boolean Contains[T](T, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Boolean Exists2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Boolean ForAll2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Boolean IsEmpty[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 CompareWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 FindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 FindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 Length[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryExactlyOne[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryHead[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryItem[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryLast[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Collections.Generic.IEnumerable`1[T]] Transpose[TCollection,T](System.Collections.Generic.IEnumerable`1[TCollection]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[System.Int32,T]] Indexed[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[T,T]] Pairwise[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[T1,T2]] AllPairs[T1,T2](System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[T1,T2]] Zip[T1,T2](System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,System.Collections.Generic.IEnumerable`1[T]]] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,System.Int32]] CountBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`3[T1,T2,T3]] Zip3[T1,T2,T3](System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2], System.Collections.Generic.IEnumerable`1[T3]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Collect[T,TCollection,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TCollection], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2], System.Collections.Generic.IEnumerable`1[T3]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] MapIndexed2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TState] ScanBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], System.Collections.Generic.IEnumerable`1[T], TState) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TState] Scan[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T[]] ChunkBySize[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T[]] SplitInto[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T[]] Windowed[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Append[T](System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Cache[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Cast[T](System.Collections.IEnumerable) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Concat[TCollection,T](System.Collections.Generic.IEnumerable`1[TCollection]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Delay[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Collections.Generic.IEnumerable`1[T]]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] DistinctBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Distinct[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Empty[T]() +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Except[T](System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] InitializeInfinite[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Initialize[T](Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] InsertAt[T](Int32, T, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] InsertManyAt[T](Int32, System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] OfArray[T](T[]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] OfList[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Permute[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.Int32], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomChoicesBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomChoicesWith[T](System.Random, Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomChoices[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomSampleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomSampleWith[T](System.Random, Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomSample[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomShuffleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomShuffleWith[T](System.Random, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomShuffle[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] ReadOnly[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RemoveAt[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RemoveManyAt[T](Int32, Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Replicate[T](Int32, T) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Reverse[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Singleton[T](T) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SkipWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Skip[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortByDescending[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortDescending[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Sort[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Tail[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] TakeWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Take[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Truncate[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Unfold[TState,T](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[T,TState]]], TState) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] UpdateAt[T](Int32, T, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Where[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Tuple`2[System.Collections.Generic.IEnumerable`1[TResult],TState] MapFoldBack[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,System.Tuple`2[TResult,TState]]], System.Collections.Generic.IEnumerable`1[T], TState) +Microsoft.FSharp.Collections.SeqModule: System.Tuple`2[System.Collections.Generic.IEnumerable`1[TResult],TState] MapFold[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Tuple`2[TResult,TState]]], TState, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Average[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T ExactlyOne[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T FindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Find[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Get[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Head[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Item[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Last[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Max[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Min[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T RandomChoiceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T RandomChoiceWith[T](System.Random, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T RandomChoice[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T ReduceBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Sum[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult Pick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TState Fold2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TState]]], TState, System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: TState FoldBack2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2], TState) +Microsoft.FSharp.Collections.SeqModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], System.Collections.Generic.IEnumerable`1[T], TState) +Microsoft.FSharp.Collections.SeqModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T[] ToArray[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Void Iterate2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Void IterateIndexed2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean Contains[T](T, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsEmpty[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsProperSubset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsProperSuperset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsSubset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsSuperset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Int32 Count[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Add[T](T, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Difference[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Empty[T]() +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] IntersectMany[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpSet`1[T]]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Intersect[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] OfArray[T](T[]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] OfList[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] OfSeq[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Remove[T](T, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Singleton[T](T) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] UnionMany[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpSet`1[T]]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Union[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: System.Collections.Generic.IEnumerable`1[T] ToSeq[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpSet`1[T1],Microsoft.FSharp.Collections.FSharpSet`1[T2]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpSet`1[T],Microsoft.FSharp.Collections.FSharpSet`1[T]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: T MaxElement[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: T MinElement[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Collections.FSharpSet`1[T], TState) +Microsoft.FSharp.Collections.SetModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: T[] ToArray[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Control.AsyncActivation`1[T]: Boolean IsCancellationRequested +Microsoft.FSharp.Control.AsyncActivation`1[T]: Boolean get_IsCancellationRequested() +Microsoft.FSharp.Control.AsyncActivation`1[T]: Microsoft.FSharp.Control.AsyncReturn OnCancellation() +Microsoft.FSharp.Control.AsyncActivation`1[T]: Microsoft.FSharp.Control.AsyncReturn OnSuccess(T) +Microsoft.FSharp.Control.AsyncActivation`1[T]: Microsoft.FSharp.Control.AsyncReturn Success(Microsoft.FSharp.Control.AsyncActivation`1[T], T) +Microsoft.FSharp.Control.AsyncActivation`1[T]: Void OnExceptionRaised() +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpResult`2[T,System.Exception]] Catch[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Empty +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Ignore[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] ParallelDoLimit(Int32, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SequentialDo(System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] get_Empty() +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[TResult]], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[T[]] ParallelLimit[T](Int32, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[T] CatchWith[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,T], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[T] Result[T](T) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn Bind[T,TResult](Microsoft.FSharp.Control.AsyncActivation`1[T], Microsoft.FSharp.Control.FSharpAsync`1[TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn CallThenInvoke[T,TResult](Microsoft.FSharp.Control.AsyncActivation`1[T], TResult, Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn Invoke[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Control.AsyncActivation`1[T]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn TryFinally[T](Microsoft.FSharp.Control.AsyncActivation`1[T], Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn TryWith[T](Microsoft.FSharp.Control.AsyncActivation`1[T], Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.FSharpAsync`1[T] MakeAsync[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.AsyncActivation`1[T],Microsoft.FSharp.Control.AsyncReturn]) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.Await.Static$W[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,T], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], TTaskLike) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.Await.Static[TTaskLike,TAwaiter,T](TTaskLike) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.StartTaskImmediate.Static$W[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,T], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,TTaskLike]) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.StartTaskImmediate.Static[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,TTaskLike]) +Microsoft.FSharp.Control.BackgroundTaskBuilder: System.Threading.Tasks.Task`1[T] RunDynamic[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.BackgroundTaskBuilder: System.Threading.Tasks.Task`1[T] Run[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.CommonExtensions: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] AsyncWrite(System.IO.Stream, Byte[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.CommonExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Byte[]] AsyncReadBytes(System.IO.Stream, Int32) +Microsoft.FSharp.Control.CommonExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Int32] AsyncRead(System.IO.Stream, Byte[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.CommonExtensions: System.IDisposable SubscribeToObservable[T](System.IObservable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.CommonExtensions: Void AddToObservable[T](System.IObservable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[System.Tuple`2[T,T]],System.Tuple`2[T,T]] Pairwise[TDel,T](Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult],TResult] Choose[T,TResult,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult],TResult] Map[T,TResult,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult],TResult] Scan[TResult,T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], TResult, Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] Filter[T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] Merge[TDel1,T,TDel2](Microsoft.FSharp.Control.IEvent`2[TDel1,T], Microsoft.FSharp.Control.IEvent`2[TDel2,T]) +Microsoft.FSharp.Control.EventModule: System.Tuple`2[Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult1],TResult1],Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult2],TResult2]] Split[T,TResult1,TResult2,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[TResult1,TResult2]], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: System.Tuple`2[Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T],Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T]] Partition[T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Void Add[T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Control.FSharpAsync`1[T]] StartChild[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpChoice`2[T,System.Exception]] Catch[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[T]] Choice[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[T]]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Await(System.Threading.Tasks.Task) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Await(System.Threading.Tasks.ValueTask) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] AwaitTask(System.Threading.Tasks.Task) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Ignore[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Sleep(Int32) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Sleep(System.TimeSpan) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] StartTaskImmediate(Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] StartTaskImmediate(Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.ValueTask]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SwitchToContext(System.Threading.SynchronizationContext) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SwitchToNewThread() +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SwitchToThreadPool() +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Boolean] AwaitIAsyncResult(System.IAsyncResult, Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Boolean] AwaitWaitHandle(System.Threading.WaitHandle, Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.IDisposable] OnCancel(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Threading.CancellationToken] CancellationToken +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Threading.CancellationToken] get_CancellationToken() +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Threading.Tasks.Task`1[T]] StartChildAsTask[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.Tasks.TaskCreationOptions]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T[]] Parallel[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T[]] Parallel[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T[]] Sequential[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] AwaitEvent[TDel,T](Microsoft.FSharp.Control.IEvent`2[TDel,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] AwaitTask[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] Await[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] Await[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[TArg1,TArg2,TArg3,T](TArg1, TArg2, TArg3, Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`5[TArg1,TArg2,TArg3,System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[TArg1,TArg2,T](TArg1, TArg2, Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`4[TArg1,TArg2,System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[TArg1,T](TArg1, Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[TArg1,System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`2[System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromContinuations[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit],Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.Unit],Microsoft.FSharp.Core.FSharpFunc`2[System.OperationCanceledException,Microsoft.FSharp.Core.Unit]],Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] StartTaskImmediate[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] StartTaskImmediate[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.ValueTask`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] TryCancelled[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.OperationCanceledException,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsync: System.Threading.CancellationToken DefaultCancellationToken +Microsoft.FSharp.Control.FSharpAsync: System.Threading.CancellationToken get_DefaultCancellationToken() +Microsoft.FSharp.Control.FSharpAsync: System.Threading.Tasks.Task`1[T] StartAsTask[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.Tasks.TaskCreationOptions], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: System.Threading.Tasks.Task`1[T] StartImmediateAsTask[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: System.Tuple`3[Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[TArg,System.AsyncCallback,System.Object],System.IAsyncResult],Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T],Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,Microsoft.FSharp.Core.Unit]] AsBeginEnd[TArg,T](Microsoft.FSharp.Core.FSharpFunc`2[TArg,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: T RunSynchronouslyImmediate[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: T RunSynchronously[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: Void CancelDefaultToken() +Microsoft.FSharp.Control.FSharpAsync: Void Start(Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: Void StartImmediate(Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: Void StartWithContinuations[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[System.OperationCanceledException,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] For[T](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] While(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Zero() +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Bind[T,TResult](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[TResult]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Using[T,TResult](T, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[TResult]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] Combine[T](Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] Delay[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] ReturnFrom[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] Return[T](T) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] TryFinally[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] TryWith[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply]: Void Reply(TReply) +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate] Publish +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate] get_Publish() +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Void .ctor() +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Void Trigger(System.Object[]) +Microsoft.FSharp.Control.FSharpEvent`1[T]: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] Publish +Microsoft.FSharp.Control.FSharpEvent`1[T]: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] get_Publish() +Microsoft.FSharp.Control.FSharpEvent`1[T]: Void .ctor() +Microsoft.FSharp.Control.FSharpEvent`1[T]: Void Trigger(T) +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Microsoft.FSharp.Control.IEvent`2[TDelegate,TArgs] Publish +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Microsoft.FSharp.Control.IEvent`2[TDelegate,TArgs] get_Publish() +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Void .ctor() +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Void Trigger(System.Object, TArgs) +Microsoft.FSharp.Control.FSharpHandler`1[T]: System.IAsyncResult BeginInvoke(System.Object, T, System.AsyncCallback, System.Object) +Microsoft.FSharp.Control.FSharpHandler`1[T]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Control.FSharpHandler`1[T]: Void EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Control.FSharpHandler`1[T]: Void Invoke(System.Object, T) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 CurrentQueueLength +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 DefaultTimeout +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 get_CurrentQueueLength() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 get_DefaultTimeout() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[TMsg]] TryReceive(Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[TReply]] PostAndTryAsyncReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[T]] TryScan[T](Microsoft.FSharp.Core.FSharpFunc`2[TMsg,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[TMsg] Receive(Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[TReply] PostAndAsyncReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[T] Scan[T](Microsoft.FSharp.Core.FSharpFunc`2[TMsg,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpHandler`1[System.Exception] Error +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] Start(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Boolean, Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] Start(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] StartImmediate(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Boolean, Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] StartImmediate(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Core.FSharpOption`1[TReply] TryPostAndReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: TReply PostAndReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Boolean, Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void Dispose() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void Post(TMsg) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void Start() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void StartImmediate() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void add_Error(Microsoft.FSharp.Control.FSharpHandler`1[System.Exception]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void remove_Error(Microsoft.FSharp.Control.FSharpHandler`1[System.Exception]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void set_DefaultTimeout(Int32) +Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate]: Void AddHandler(TDelegate) +Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate]: Void RemoveHandler(TDelegate) +Microsoft.FSharp.Control.LazyExtensions: System.Lazy`1[T] CreateFromValue[T](T) +Microsoft.FSharp.Control.LazyExtensions: System.Lazy`1[T] Create[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Control.LazyExtensions: T Force[T](System.Lazy`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IDisposable Subscribe[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[System.Tuple`2[T,T]] Pairwise[T](System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[TResult] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[TResult] Scan[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], TResult, System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[T] Merge[T](System.IObservable`1[T], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.Tuple`2[System.IObservable`1[TResult1],System.IObservable`1[TResult2]] Split[T,TResult1,TResult2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[TResult1,TResult2]], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.Tuple`2[System.IObservable`1[T],System.IObservable`1[T]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: Void Add[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], System.IObservable`1[T]) +Microsoft.FSharp.Control.TaskBuilder: System.Threading.Tasks.Task`1[T] RunDynamic[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.TaskBuilder: System.Threading.Tasks.Task`1[T] Run[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit] For[T,TOverall](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit] While[TOverall](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit] Zero[TOverall]() +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] Combine[TOverall,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] Delay[TOverall,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] TryFinally[TOverall,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] TryWith[TOverall,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] Using[TResource,TOverall,T](TResource, Microsoft.FSharp.Core.FSharpFunc`2[TResource,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] Return[T](T) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: Boolean TaskBuilderBase.BindDynamic.Static[TOverall,TResult1,TResult2](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall]] ByRef, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind[TResult1,TOverall,TResult2](Microsoft.FSharp.Control.TaskBuilderBase, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom[T](Microsoft.FSharp.Control.TaskBuilderBase, System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Boolean TaskBuilderBase.BindDynamic.Static$W[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall]] ByRef, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Boolean TaskBuilderBase.BindDynamic.Static[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall]] ByRef, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind$W[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] TaskBuilderBase.Using[TResource,TOverall,T](Microsoft.FSharp.Control.TaskBuilderBase, TResource, Microsoft.FSharp.Core.FSharpFunc`2[TResource,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom$W[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,T], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom[TTaskLike,TAwaiter,T](Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind[TResult1,TOverall,TResult2](Microsoft.FSharp.Control.TaskBuilderBase, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom[T](Microsoft.FSharp.Control.TaskBuilderBase, Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.BackgroundTaskBuilder backgroundTask +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.BackgroundTaskBuilder get_backgroundTask() +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.TaskBuilder get_task() +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.TaskBuilder task +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.FSharpResult`2[T,System.Exception]] Catch[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] Empty +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] Ignore[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] ParallelDoLimit(Int32, System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] SequentialDo(System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] get_Empty() +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Threading.Tasks.Task`1[TResult]], System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T[]] ParallelLimit[T](Int32, System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[T]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T[]] Sequential[T](System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[T]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] CatchWith[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,T], System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] OfValueTask[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] Result[T](T) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] StartAsyncImmediate[T](System.Threading.CancellationToken, Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.TaskStateMachineData`1[T]: System.Runtime.CompilerServices.AsyncTaskMethodBuilder`1[T] MethodBuilder +Microsoft.FSharp.Control.TaskStateMachineData`1[T]: T Result +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.FSharpResult`2[T,System.Exception]] Catch[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.Unit] Empty +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.Unit] Ignore[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.Unit] get_Empty() +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Threading.Tasks.ValueTask`1[TResult]], System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[T] CatchWith[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,T], System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[T] OfTask[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[T] Result[T](T) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] AsyncDownloadFile(System.Net.WebClient, System.Uri, System.String) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Byte[]] AsyncDownloadData(System.Net.WebClient, System.Uri) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Net.WebResponse] AsyncGetResponse(System.Net.WebRequest) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.String] AsyncDownloadString(System.Net.WebClient, System.Uri) +Microsoft.FSharp.Core.AbstractClassAttribute: Void .ctor() +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Boolean Value +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Boolean get_Value() +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Void .ctor() +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.AllowOverloadOnReturnTypeAttribute: Void .ctor() +Microsoft.FSharp.Core.AutoOpenAttribute: System.String Path +Microsoft.FSharp.Core.AutoOpenAttribute: System.String get_Path() +Microsoft.FSharp.Core.AutoOpenAttribute: Void .ctor() +Microsoft.FSharp.Core.AutoOpenAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.AutoSerializableAttribute: Boolean Value +Microsoft.FSharp.Core.AutoSerializableAttribute: Boolean get_Value() +Microsoft.FSharp.Core.AutoSerializableAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.ByRefKinds: Microsoft.FSharp.Core.ByRefKinds+In +Microsoft.FSharp.Core.ByRefKinds: Microsoft.FSharp.Core.ByRefKinds+InOut +Microsoft.FSharp.Core.ByRefKinds: Microsoft.FSharp.Core.ByRefKinds+Out +Microsoft.FSharp.Core.CLIEventAttribute: Void .ctor() +Microsoft.FSharp.Core.CLIMutableAttribute: Void .ctor() +Microsoft.FSharp.Core.ClassAttribute: Void .ctor() +Microsoft.FSharp.Core.ComparisonConditionalOnAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilationArgumentCountsAttribute: System.Collections.Generic.IEnumerable`1[System.Int32] Counts +Microsoft.FSharp.Core.CompilationArgumentCountsAttribute: System.Collections.Generic.IEnumerable`1[System.Int32] get_Counts() +Microsoft.FSharp.Core.CompilationArgumentCountsAttribute: Void .ctor(Int32[]) +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 SequenceNumber +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 VariantNumber +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 get_SequenceNumber() +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 get_VariantNumber() +Microsoft.FSharp.Core.CompilationMappingAttribute: Microsoft.FSharp.Core.SourceConstructFlags SourceConstructFlags +Microsoft.FSharp.Core.CompilationMappingAttribute: Microsoft.FSharp.Core.SourceConstructFlags get_SourceConstructFlags() +Microsoft.FSharp.Core.CompilationMappingAttribute: System.String ResourceName +Microsoft.FSharp.Core.CompilationMappingAttribute: System.String get_ResourceName() +Microsoft.FSharp.Core.CompilationMappingAttribute: System.Type[] TypeDefinitions +Microsoft.FSharp.Core.CompilationMappingAttribute: System.Type[] get_TypeDefinitions() +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(Microsoft.FSharp.Core.SourceConstructFlags) +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(Microsoft.FSharp.Core.SourceConstructFlags, Int32) +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(Microsoft.FSharp.Core.SourceConstructFlags, Int32, Int32) +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(System.String, System.Type[]) +Microsoft.FSharp.Core.CompilationRepresentationAttribute: Microsoft.FSharp.Core.CompilationRepresentationFlags Flags +Microsoft.FSharp.Core.CompilationRepresentationAttribute: Microsoft.FSharp.Core.CompilationRepresentationFlags get_Flags() +Microsoft.FSharp.Core.CompilationRepresentationAttribute: Void .ctor(Microsoft.FSharp.Core.CompilationRepresentationFlags) +Microsoft.FSharp.Core.CompilationRepresentationFlags: Int32 value__ +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags Event +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags Instance +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags ModuleSuffix +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags None +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags Static +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags UseNullAsTrueValue +Microsoft.FSharp.Core.CompilationSourceNameAttribute: System.String SourceName +Microsoft.FSharp.Core.CompilationSourceNameAttribute: System.String get_SourceName() +Microsoft.FSharp.Core.CompilationSourceNameAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CompiledNameAttribute: System.String CompiledName +Microsoft.FSharp.Core.CompiledNameAttribute: System.String get_CompiledName() +Microsoft.FSharp.Core.CompiledNameAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean IsError +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean IsHidden +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean get_IsError() +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean get_IsHidden() +Microsoft.FSharp.Core.CompilerMessageAttribute: Int32 MessageNumber +Microsoft.FSharp.Core.CompilerMessageAttribute: Int32 get_MessageNumber() +Microsoft.FSharp.Core.CompilerMessageAttribute: System.String Message +Microsoft.FSharp.Core.CompilerMessageAttribute: System.String get_Message() +Microsoft.FSharp.Core.CompilerMessageAttribute: Void .ctor(System.String, Int32) +Microsoft.FSharp.Core.CompilerMessageAttribute: Void set_IsError(Boolean) +Microsoft.FSharp.Core.CompilerMessageAttribute: Void set_IsHidden(Boolean) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: TResult EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: TResult Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: T[] AddManyAndClose(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: T[] Close() +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: Void Add(T) +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: Void AddMany(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T] GetFreshEnumerator() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: Void SetCancellationToken(System.Threading.CancellationToken) +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: System.Threading.Tasks.ValueTask DisposeAsync() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: System.Threading.Tasks.ValueTask`1[System.Boolean] MoveNextAsync() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: T Current +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: T get_Current() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Boolean CheckClose +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Boolean get_CheckClose() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Int32 GenerateNext(System.Collections.Generic.IEnumerable`1[T] ByRef) +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: System.Collections.Generic.IEnumerator`1[T] GetFreshEnumerator() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: T LastGenerated +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: T get_LastGenerated() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Void Close() +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace[] GetNestedNamespaces() +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.String NamespaceName +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.String get_NamespaceName() +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.Type ResolveTypeName(System.String) +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.Type[] GetTypes() +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: Int32 ResumptionPoint +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: Int32 get_ResumptionPoint() +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: TData Data +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: TData get_Data() +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: Void set_Data(TData) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider2: System.Reflection.MethodBase ApplyStaticArgumentsForMethod(System.Reflection.MethodBase, System.String, System.Object[]) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider2: System.Reflection.ParameterInfo[] GetStaticParametersForMethod(System.Reflection.MethodBase) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Byte[] GetGeneratedAssemblyContents(System.Reflection.Assembly) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace[] GetNamespaces() +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Microsoft.FSharp.Quotations.FSharpExpr GetInvokerExpression(System.Reflection.MethodBase, Microsoft.FSharp.Quotations.FSharpExpr[]) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: System.EventHandler Invalidate +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: System.Reflection.ParameterInfo[] GetStaticParameters(System.Type) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: System.Type ApplyStaticArguments(System.Type, System.String[], System.Object[]) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Void add_Invalidate(System.EventHandler) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Void remove_Invalidate(System.EventHandler) +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] AddManyAndClose(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Close() +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Void Add(T) +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Void AddMany(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: Void EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: Void Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.NoEagerConstraintApplicationAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean CombineDynamic[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean TryFinallyAsyncDynamic[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean TryWithDynamic[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean WhileDynamic[TData](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean YieldDynamic[TData](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] For[T,TData](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] While[TData](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] Yield[TData]() +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] Zero[TData]() +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] Combine[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] Delay[TData,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] TryFinallyAsync[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] TryFinally[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] TryWith[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] Using[TResource,TData,T](TResource, Microsoft.FSharp.Core.FSharpFunc`2[TResource,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: Boolean EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: Boolean Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData]: Int32 ResumptionPoint +Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData]: Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData] ResumptionDynamicInfo +Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData]: TData Data +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData] ResumptionFunc +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData] get_ResumptionFunc() +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: System.Object ResumptionData +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: System.Object get_ResumptionData() +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void .ctor(Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void MoveNext(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void SetStateMachine(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.Runtime.CompilerServices.IAsyncStateMachine) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void set_ResumptionData(System.Object) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void set_ResumptionFunc(Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: Boolean EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: Boolean Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: Microsoft.FSharp.Control.IEvent`2[TDelegate,TArgs] CreateEvent[TDelegate,TArgs](Microsoft.FSharp.Core.FSharpFunc`2[TDelegate,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[TDelegate,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.FSharpFunc`2[System.Object,Microsoft.FSharp.Core.FSharpFunc`2[TArgs,Microsoft.FSharp.Core.Unit]],TDelegate]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[TResult] EnumerateFromFunctions[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[TResult] EnumerateUsing[T,TCollection,TResult](T, Microsoft.FSharp.Core.FSharpFunc`2[T,TCollection]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[T] EnumerateThenFinally[T](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[T] EnumerateTryWith[T](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,System.Int32], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,System.Collections.Generic.IEnumerable`1[T]]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[T] EnumerateWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.Runtime.CompilerServices.IAsyncStateMachine, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: Void EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: Void Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.Runtime.CompilerServices.IAsyncStateMachine) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: Boolean __useResumableCode[T]() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] __resumableEntry() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Collections.Generic.IAsyncEnumerable`1[T] __runtimeAsyncSequence[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Collections.Generic.IEnumerable`1[T]]) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.CancellationToken __runtimeAsyncSequenceCancellationToken() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.Task __runtimeAsyncReturnUnit() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.Task`1[T] __runtimeAsyncReturn[T](T) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.ValueTask __runtimeAsyncReturnValueTaskUnit() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.ValueTask`1[T] __runtimeAsyncReturnValueTask[T](T) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: T __resumeAt[T](Int32) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: TResult __stateMachine[TData,TResult](Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData], Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData], Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: Void __debugPoint(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: System.String AssemblyName +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: System.String get_AssemblyName() +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean IsHostedExecution +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean IsInvalidationSupported +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean SystemRuntimeContainsType(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean get_IsHostedExecution() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean get_IsInvalidationSupported() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String ResolutionFolder +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String RuntimeAssembly +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String TemporaryFolder +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String get_ResolutionFolder() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String get_RuntimeAssembly() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String get_TemporaryFolder() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String[] ReferencedAssemblies +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String[] get_ReferencedAssemblies() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.Version SystemRuntimeAssemblyVersion +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.Version get_SystemRuntimeAssemblyVersion() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[System.String,System.Boolean]) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[System.String,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.String[]]) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_IsHostedExecution(Boolean) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_IsInvalidationSupported(Boolean) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_ReferencedAssemblies(System.String[]) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_ResolutionFolder(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_RuntimeAssembly(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_SystemRuntimeAssemblyVersion(System.Version) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_TemporaryFolder(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 Column +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 Line +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 get_Column() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 get_Line() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: System.String FilePath +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: System.String get_FilePath() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void set_Column(Int32) +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void set_FilePath(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void set_Line(Int32) +Microsoft.FSharp.Core.CompilerServices.TypeProviderEditorHideMethodsAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes: Int32 value__ +Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes: Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes IsErased +Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes: Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes SuppressRelocate +Microsoft.FSharp.Core.CompilerServices.TypeProviderXmlDocAttribute: System.String CommentText +Microsoft.FSharp.Core.CompilerServices.TypeProviderXmlDocAttribute: System.String get_CommentText() +Microsoft.FSharp.Core.CompilerServices.TypeProviderXmlDocAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CustomComparisonAttribute: Void .ctor() +Microsoft.FSharp.Core.CustomEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean AllowIntoPattern +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean IsLikeGroupJoin +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean IsLikeJoin +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean IsLikeZip +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean MaintainsVariableSpace +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean MaintainsVariableSpaceUsingBind +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_AllowIntoPattern() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_IsLikeGroupJoin() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_IsLikeJoin() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_IsLikeZip() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_MaintainsVariableSpace() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_MaintainsVariableSpaceUsingBind() +Microsoft.FSharp.Core.CustomOperationAttribute: System.String JoinConditionWord +Microsoft.FSharp.Core.CustomOperationAttribute: System.String Name +Microsoft.FSharp.Core.CustomOperationAttribute: System.String get_JoinConditionWord() +Microsoft.FSharp.Core.CustomOperationAttribute: System.String get_Name() +Microsoft.FSharp.Core.CustomOperationAttribute: Void .ctor() +Microsoft.FSharp.Core.CustomOperationAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_AllowIntoPattern(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_IsLikeGroupJoin(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_IsLikeJoin(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_IsLikeZip(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_JoinConditionWord(System.String) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_MaintainsVariableSpace(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_MaintainsVariableSpaceUsingBind(Boolean) +Microsoft.FSharp.Core.DefaultAugmentationAttribute: Boolean Value +Microsoft.FSharp.Core.DefaultAugmentationAttribute: Boolean get_Value() +Microsoft.FSharp.Core.DefaultAugmentationAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.DefaultValueAttribute: Boolean Check +Microsoft.FSharp.Core.DefaultValueAttribute: Boolean get_Check() +Microsoft.FSharp.Core.DefaultValueAttribute: Void .ctor() +Microsoft.FSharp.Core.DefaultValueAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.EntryPointAttribute: Void .ctor() +Microsoft.FSharp.Core.EqualityConditionalOnAttribute: Void .ctor() +Microsoft.FSharp.Core.ExperimentalAttribute: System.String Message +Microsoft.FSharp.Core.ExperimentalAttribute: System.String get_Message() +Microsoft.FSharp.Core.ExperimentalAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: Byte ToByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: SByte ToSByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Byte ToByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Double ToDouble$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Double ToDouble[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Collections.FSharpSet`1[T] CreateSet[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Control.FSharpAsyncBuilder DefaultAsyncBuilder +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Control.FSharpAsyncBuilder get_DefaultAsyncBuilder() +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Linq.QueryBuilder get_query() +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Linq.QueryBuilder query +Microsoft.FSharp.Core.ExtraTopLevelOperators: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: SByte ToSByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Single ToSingle$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Single ToSingle[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: System.Collections.Generic.IDictionary`2[TKey,TValue] CreateDictionary[TKey,TValue](System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,TValue]]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: System.Collections.Generic.IReadOnlyDictionary`2[TKey,TValue] CreateReadOnlyDictionary[TKey,TValue](System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,TValue]]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T LazyPattern[T](System.Lazy`1[T]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatLineToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatLineToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatLine[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToStringThenFail[T,TResult](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToString[T](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,System.String]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormat[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T SpliceExpression[T](Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T SpliceUntypedExpression[T](Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T[,] CreateArray2D[a,T](System.Collections.Generic.IEnumerable`1[a]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Void PrintValueLine[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Void PrintValue[T](T) +Microsoft.FSharp.Core.FSharpChoice`2+Choice1Of2[T1,T2]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`2+Choice1Of2[T1,T2]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`2+Choice2Of2[T1,T2]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`2+Choice2Of2[T1,T2]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`2+Tags[T1,T2]: Int32 Choice1Of2 +Microsoft.FSharp.Core.FSharpChoice`2+Tags[T1,T2]: Int32 Choice2Of2 +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`2[T1,T2], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean IsChoice1Of2 +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean IsChoice2Of2 +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean get_IsChoice1Of2() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean get_IsChoice2Of2() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2+Choice1Of2[T1,T2] +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2+Choice2Of2[T1,T2] +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2+Tags[T1,T2] +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2[T1,T2] NewChoice1Of2(T1) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2[T1,T2] NewChoice2Of2(T2) +Microsoft.FSharp.Core.FSharpChoice`3+Choice1Of3[T1,T2,T3]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`3+Choice1Of3[T1,T2,T3]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`3+Choice2Of3[T1,T2,T3]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`3+Choice2Of3[T1,T2,T3]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`3+Choice3Of3[T1,T2,T3]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`3+Choice3Of3[T1,T2,T3]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3]: Int32 Choice1Of3 +Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3]: Int32 Choice2Of3 +Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3]: Int32 Choice3Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean IsChoice1Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean IsChoice2Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean IsChoice3Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean get_IsChoice1Of3() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean get_IsChoice2Of3() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean get_IsChoice3Of3() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Choice1Of3[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Choice2Of3[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Choice3Of3[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3] NewChoice1Of3(T1) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3] NewChoice2Of3(T2) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3] NewChoice3Of3(T3) +Microsoft.FSharp.Core.FSharpChoice`4+Choice1Of4[T1,T2,T3,T4]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice1Of4[T1,T2,T3,T4]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Choice2Of4[T1,T2,T3,T4]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice2Of4[T1,T2,T3,T4]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Choice3Of4[T1,T2,T3,T4]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice3Of4[T1,T2,T3,T4]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Choice4Of4[T1,T2,T3,T4]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice4Of4[T1,T2,T3,T4]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice1Of4 +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice2Of4 +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice3Of4 +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice4Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice1Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice2Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice3Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice4Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice1Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice2Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice3Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice4Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice1Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice2Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice3Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice4Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice1Of4(T1) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice2Of4(T2) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice3Of4(T3) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice4Of4(T4) +Microsoft.FSharp.Core.FSharpChoice`5+Choice1Of5[T1,T2,T3,T4,T5]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice1Of5[T1,T2,T3,T4,T5]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice2Of5[T1,T2,T3,T4,T5]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice2Of5[T1,T2,T3,T4,T5]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice3Of5[T1,T2,T3,T4,T5]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice3Of5[T1,T2,T3,T4,T5]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice4Of5[T1,T2,T3,T4,T5]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice4Of5[T1,T2,T3,T4,T5]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice5Of5[T1,T2,T3,T4,T5]: T5 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice5Of5[T1,T2,T3,T4,T5]: T5 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice1Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice2Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice3Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice4Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice5Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice1Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice2Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice3Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice4Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice5Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice1Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice2Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice3Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice4Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice5Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice1Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice2Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice3Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice4Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice5Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice1Of5(T1) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice2Of5(T2) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice3Of5(T3) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice4Of5(T4) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice5Of5(T5) +Microsoft.FSharp.Core.FSharpChoice`6+Choice1Of6[T1,T2,T3,T4,T5,T6]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice1Of6[T1,T2,T3,T4,T5,T6]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice2Of6[T1,T2,T3,T4,T5,T6]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice2Of6[T1,T2,T3,T4,T5,T6]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice3Of6[T1,T2,T3,T4,T5,T6]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice3Of6[T1,T2,T3,T4,T5,T6]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice4Of6[T1,T2,T3,T4,T5,T6]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice4Of6[T1,T2,T3,T4,T5,T6]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice5Of6[T1,T2,T3,T4,T5,T6]: T5 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice5Of6[T1,T2,T3,T4,T5,T6]: T5 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice6Of6[T1,T2,T3,T4,T5,T6]: T6 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice6Of6[T1,T2,T3,T4,T5,T6]: T6 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice1Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice2Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice3Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice4Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice5Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice6Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice1Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice2Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice3Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice4Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice5Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice6Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice1Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice2Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice3Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice4Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice5Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice6Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice1Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice2Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice3Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice4Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice5Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice6Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice1Of6(T1) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice2Of6(T2) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice3Of6(T3) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice4Of6(T4) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice5Of6(T5) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice6Of6(T6) +Microsoft.FSharp.Core.FSharpChoice`7+Choice1Of7[T1,T2,T3,T4,T5,T6,T7]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice1Of7[T1,T2,T3,T4,T5,T6,T7]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice2Of7[T1,T2,T3,T4,T5,T6,T7]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice2Of7[T1,T2,T3,T4,T5,T6,T7]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice3Of7[T1,T2,T3,T4,T5,T6,T7]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice3Of7[T1,T2,T3,T4,T5,T6,T7]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice4Of7[T1,T2,T3,T4,T5,T6,T7]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice4Of7[T1,T2,T3,T4,T5,T6,T7]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice5Of7[T1,T2,T3,T4,T5,T6,T7]: T5 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice5Of7[T1,T2,T3,T4,T5,T6,T7]: T5 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice6Of7[T1,T2,T3,T4,T5,T6,T7]: T6 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice6Of7[T1,T2,T3,T4,T5,T6,T7]: T6 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice7Of7[T1,T2,T3,T4,T5,T6,T7]: T7 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice7Of7[T1,T2,T3,T4,T5,T6,T7]: T7 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice1Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice2Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice3Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice4Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice5Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice6Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice7Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice1Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice2Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice3Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice4Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice5Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice6Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice7Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice1Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice2Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice3Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice4Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice5Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice6Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice7Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice1Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice2Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice3Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice4Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice5Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice6Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice7Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice1Of7(T1) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice2Of7(T2) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice3Of7(T3) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice4Of7(T4) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice5Of7(T5) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice6Of7(T6) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice7Of7(T7) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] FromConverter(System.Converter`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] op_Implicit(System.Converter`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: System.Converter`2[T,TResult] ToConverter(Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: System.Converter`2[T,TResult] op_Implicit(Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: TResult Invoke(T) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: V InvokeFast[V](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,V]], T, TResult) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Void .ctor() +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: W InvokeFast[V,W](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[V,W]]], T, TResult, V) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: X InvokeFast[V,W,X](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[V,Microsoft.FSharp.Core.FSharpFunc`2[W,X]]]], T, TResult, V, W) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Y InvokeFast[V,W,X,Y](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[V,Microsoft.FSharp.Core.FSharpFunc`2[W,Microsoft.FSharp.Core.FSharpFunc`2[X,Y]]]]], T, TResult, V, W, X) +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 Major +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 Minor +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 Release +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 get_Major() +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 get_Minor() +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 get_Release() +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Void .ctor(Int32, Int32, Int32) +Microsoft.FSharp.Core.FSharpOption`1+Tags[T]: Int32 None +Microsoft.FSharp.Core.FSharpOption`1+Tags[T]: Int32 Some +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpOption`1[T], Microsoft.FSharp.Core.FSharpOption`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean IsNone +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean IsSome +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean get_IsNone(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean get_IsSome(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 GetTag(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1+Tags[T] +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] None +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] Some(T) +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] get_None() +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] op_Implicit(T) +Microsoft.FSharp.Core.FSharpOption`1[T]: System.String ToString() +Microsoft.FSharp.Core.FSharpOption`1[T]: T Value +Microsoft.FSharp.Core.FSharpOption`1[T]: T get_Value() +Microsoft.FSharp.Core.FSharpOption`1[T]: Void .ctor(T) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpRef`1[T]) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpRef`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpRef`1[T]) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: T Value +Microsoft.FSharp.Core.FSharpRef`1[T]: T contents +Microsoft.FSharp.Core.FSharpRef`1[T]: T contents@ +Microsoft.FSharp.Core.FSharpRef`1[T]: T get_Value() +Microsoft.FSharp.Core.FSharpRef`1[T]: T get_contents() +Microsoft.FSharp.Core.FSharpRef`1[T]: Void .ctor(T) +Microsoft.FSharp.Core.FSharpRef`1[T]: Void set_Value(T) +Microsoft.FSharp.Core.FSharpRef`1[T]: Void set_contents(T) +Microsoft.FSharp.Core.FSharpResult`2+Tags[T,TError]: Int32 Error +Microsoft.FSharp.Core.FSharpResult`2+Tags[T,TError]: Int32 Ok +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(Microsoft.FSharp.Core.FSharpResult`2[T,TError], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean IsError +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean IsOk +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean get_IsError() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean get_IsOk() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 Tag +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Microsoft.FSharp.Core.FSharpResult`2+Tags[T,TError] +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Microsoft.FSharp.Core.FSharpResult`2[T,TError] NewError(TError) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Microsoft.FSharp.Core.FSharpResult`2[T,TError] NewOk(T) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: T ResultValue +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: T get_ResultValue() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: TError ErrorValue +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: TError get_ErrorValue() +Microsoft.FSharp.Core.FSharpTypeFunc: System.Object Specialize[T]() +Microsoft.FSharp.Core.FSharpTypeFunc: Void .ctor() +Microsoft.FSharp.Core.FSharpValueOption`1+Tags[T]: Int32 ValueNone +Microsoft.FSharp.Core.FSharpValueOption`1+Tags[T]: Int32 ValueSome +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpValueOption`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsNone +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsSome +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsValueNone +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsValueSome +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsNone() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsSome() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsValueNone() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsValueSome() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 Tag +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1+Tags[T] +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] NewValueSome(T) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] None +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] Some(T) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] ValueNone +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] get_None() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] get_ValueNone() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] op_Implicit(T) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: System.String ToString() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T Item +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T Value +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T get_Item() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T get_Value() +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit] FromAction(System.Action) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T] FromFunc[T](System.Func`1[T]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit] FromAction[T](System.Action`1[T]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit] ToFSharpFunc[T](System.Action`1[T]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] FromFunc[T,TResult](System.Func`2[T,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] ToFSharpFunc[T,TResult](System.Converter`2[T,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,Microsoft.FSharp.Core.Unit]]]]] FromAction[T1,T2,T3,T4,T5](System.Action`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]]] FromFunc[T1,T2,T3,T4,T5,TResult](System.Func`6[T1,T2,T3,T4,T5,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]]] FuncFromTupled[T1,T2,T3,T4,T5,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`5[T1,T2,T3,T4,T5],TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.Unit]]]] FromAction[T1,T2,T3,T4](System.Action`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]]] FromFunc[T1,T2,T3,T4,TResult](System.Func`5[T1,T2,T3,T4,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]]] FuncFromTupled[T1,T2,T3,T4,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`4[T1,T2,T3,T4],TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.Unit]]] FromAction[T1,T2,T3](System.Action`3[T1,T2,T3]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]] FromFunc[T1,T2,T3,TResult](System.Func`4[T1,T2,T3,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]] FuncFromTupled[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[T1,T2,T3],TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]] FromAction[T1,T2](System.Action`2[T1,T2]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]] FromFunc[T1,T2,TResult](System.Func`3[T1,T2,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]] FuncFromTupled[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`2[T1,T2],TResult]) +Microsoft.FSharp.Core.GeneralizableValueAttribute: Void .ctor() +Microsoft.FSharp.Core.InlineIfLambdaAttribute: Void .ctor() +Microsoft.FSharp.Core.InterfaceAttribute: Void .ctor() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String AddressOpNotFirstClassString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String InputArrayEmptyString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String InputMustBeNonNegativeString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String InputSequenceEmptyString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String NoNegateMinValueString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_AddressOpNotFirstClassString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_InputArrayEmptyString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_InputMustBeNonNegativeString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_InputSequenceEmptyString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_NoNegateMinValueString() +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple2[T1,T2](System.Collections.IEqualityComparer, System.Tuple`2[T1,T2], System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple3[T1,T2,T3](System.Collections.IEqualityComparer, System.Tuple`3[T1,T2,T3], System.Tuple`3[T1,T2,T3]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple4[T1,T2,T3,T4](System.Collections.IEqualityComparer, System.Tuple`4[T1,T2,T3,T4], System.Tuple`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple5[T1,T2,T3,T4,T5](System.Collections.IEqualityComparer, System.Tuple`5[T1,T2,T3,T4,T5], System.Tuple`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericEqualityERIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericEqualityIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericEqualityWithComparerIntrinsic[T](System.Collections.IEqualityComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericGreaterOrEqualIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericGreaterThanIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericLessOrEqualIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericLessThanIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean PhysicalEqualityIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple2[T1,T2](System.Collections.IComparer, System.Tuple`2[T1,T2], System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple3[T1,T2,T3](System.Collections.IComparer, System.Tuple`3[T1,T2,T3], System.Tuple`3[T1,T2,T3]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple4[T1,T2,T3,T4](System.Collections.IComparer, System.Tuple`4[T1,T2,T3,T4], System.Tuple`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple5[T1,T2,T3,T4,T5](System.Collections.IComparer, System.Tuple`5[T1,T2,T3,T4,T5], System.Tuple`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple2[T1,T2](System.Collections.IEqualityComparer, System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple3[T1,T2,T3](System.Collections.IEqualityComparer, System.Tuple`3[T1,T2,T3]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple4[T1,T2,T3,T4](System.Collections.IEqualityComparer, System.Tuple`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple5[T1,T2,T3,T4,T5](System.Collections.IEqualityComparer, System.Tuple`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericComparisonIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericComparisonWithComparerIntrinsic[T](System.Collections.IComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericHashIntrinsic[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericHashWithComparerIntrinsic[T](System.Collections.IEqualityComparer, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 LimitedGenericHashIntrinsic[T](Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 PhysicalHashIntrinsic[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Boolean TypeTestFast[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Boolean TypeTestGeneric[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Char GetString(System.String, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: System.Decimal MakeDecimal(Int32, Int32, Int32, Boolean, Byte) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T CheckThis[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T CreateInstance[T]() +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray2D[T](T[,], Int32, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray3D[T](T[,,], Int32, Int32, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray4D[T](T[,,,], Int32, Int32, Int32, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray[T](T[], Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T UnboxFast[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T UnboxGeneric[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void Dispose[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void FailInit() +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void FailStaticInit() +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray2D[T](T[,], Int32, Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray3D[T](T[,,], Int32, Int32, Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray4D[T](T[,,,], Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray[T](T[], Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean Or(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean op_Amp(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean op_BooleanAnd(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean op_BooleanOr(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: IntPtr op_IntegerAddressOf[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: T& op_AddressOf[T](T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericEqualityER[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericEqualityWithComparer[T](System.Collections.IEqualityComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericEquality[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericGreaterOrEqual[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericGreaterThan[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericLessOrEqual[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericLessThan[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean PhysicalEquality[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Byte ByteWithMeasure(Byte) +Microsoft.FSharp.Core.LanguagePrimitives: Double FloatWithMeasure(Double) +Microsoft.FSharp.Core.LanguagePrimitives: Int16 Int16WithMeasure(Int16) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericComparisonWithComparer[T](System.Collections.IComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericComparison[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericHashWithComparer[T](System.Collections.IEqualityComparer, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericHash[T](T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericLimitedHash[T](Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 Int32WithMeasure(Int32) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 ParseInt32(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 PhysicalHash[T](T) +Microsoft.FSharp.Core.LanguagePrimitives: Int64 Int64WithMeasure(Int64) +Microsoft.FSharp.Core.LanguagePrimitives: Int64 ParseInt64(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: IntPtr IntPtrWithMeasure(IntPtr) +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+HashCompare +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators +Microsoft.FSharp.Core.LanguagePrimitives: SByte SByteWithMeasure(SByte) +Microsoft.FSharp.Core.LanguagePrimitives: Single Float32WithMeasure(Single) +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IComparer`1[T] FastGenericComparerFromTable[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IComparer`1[T] FastGenericComparer[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IEqualityComparer`1[T] FastGenericEqualityComparerFromTable[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IEqualityComparer`1[T] FastGenericEqualityComparer[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IEqualityComparer`1[T] FastLimitedGenericEqualityComparer[T](Int32) +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IComparer GenericComparer +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IComparer get_GenericComparer() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer GenericEqualityComparer +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer GenericEqualityERComparer +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer get_GenericEqualityComparer() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer get_GenericEqualityERComparer() +Microsoft.FSharp.Core.LanguagePrimitives: System.Decimal DecimalWithMeasure(System.Decimal) +Microsoft.FSharp.Core.LanguagePrimitives: T DivideByInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], T, Int32) +Microsoft.FSharp.Core.LanguagePrimitives: T DivideByIntDynamic[T](T, Int32) +Microsoft.FSharp.Core.LanguagePrimitives: T DivideByInt[T](T, Int32) +Microsoft.FSharp.Core.LanguagePrimitives: T EnumToValue[TEnum,T](TEnum) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericMaximum[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericMinimum[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericOne$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericOneDynamic[T]() +Microsoft.FSharp.Core.LanguagePrimitives: T GenericOne[T]() +Microsoft.FSharp.Core.LanguagePrimitives: T GenericZero$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericZeroDynamic[T]() +Microsoft.FSharp.Core.LanguagePrimitives: T GenericZero[T]() +Microsoft.FSharp.Core.LanguagePrimitives: TEnum EnumOfValue[T,TEnum](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult AdditionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult BitwiseAndDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult BitwiseOrDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedAdditionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedExplicitDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedMultiplyDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedSubtractionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedUnaryNegationDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult DivisionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult EqualityDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult ExclusiveOrDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult ExplicitDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult GreaterThanDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult GreaterThanOrEqualDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult InequalityDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LeftShiftDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LessThanDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LessThanOrEqualDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LogicalNotDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult ModulusDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult MultiplyDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult RightShiftDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult SubtractionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult UnaryNegationDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: UInt16 UInt16WithMeasure(UInt16) +Microsoft.FSharp.Core.LanguagePrimitives: UInt32 ParseUInt32(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: UInt32 UInt32WithMeasure(UInt32) +Microsoft.FSharp.Core.LanguagePrimitives: UInt64 ParseUInt64(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: UInt64 UInt64WithMeasure(UInt64) +Microsoft.FSharp.Core.LanguagePrimitives: UIntPtr UIntPtrWithMeasure(UIntPtr) +Microsoft.FSharp.Core.LiteralAttribute: Void .ctor() +Microsoft.FSharp.Core.MatchFailureException: Boolean Equals(System.Exception, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.MatchFailureException: Boolean Equals(System.Object) +Microsoft.FSharp.Core.MatchFailureException: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.MatchFailureException: Int32 Data1 +Microsoft.FSharp.Core.MatchFailureException: Int32 Data2 +Microsoft.FSharp.Core.MatchFailureException: Int32 GetHashCode() +Microsoft.FSharp.Core.MatchFailureException: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.MatchFailureException: Int32 get_Data1() +Microsoft.FSharp.Core.MatchFailureException: Int32 get_Data2() +Microsoft.FSharp.Core.MatchFailureException: System.String Data0 +Microsoft.FSharp.Core.MatchFailureException: System.String Message +Microsoft.FSharp.Core.MatchFailureException: System.String get_Data0() +Microsoft.FSharp.Core.MatchFailureException: System.String get_Message() +Microsoft.FSharp.Core.MatchFailureException: Void .ctor() +Microsoft.FSharp.Core.MatchFailureException: Void .ctor(System.String, Int32, Int32) +Microsoft.FSharp.Core.MeasureAnnotatedAbbreviationAttribute: Void .ctor() +Microsoft.FSharp.Core.MeasureAttribute: Void .ctor() +Microsoft.FSharp.Core.NoComparisonAttribute: Void .ctor() +Microsoft.FSharp.Core.NoCompilerInliningAttribute: Void .ctor() +Microsoft.FSharp.Core.NoDynamicInvocationAttribute: Void .ctor() +Microsoft.FSharp.Core.NoEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: System.Object FromInt64Dynamic(Int64) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: System.Object FromStringDynamic(System.String) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromInt32[T](Int32) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromInt64[T](Int64) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromOne[T]() +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromString[T](System.String) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromZero[T]() +Microsoft.FSharp.Core.NumericLiterals: Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 String.GetReverseIndex(System.String, Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 [,,,]`1.GetReverseIndex[T](T[,,,], Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 [,,]`1.GetReverseIndex[T](T[,,], Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 [,]`1.GetReverseIndex[T](T[,], Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 []`1.GetReverseIndex[T](T[], Int32, Int32) +Microsoft.FSharp.Core.Operators+Checked: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.Operators+Checked: Byte ToByte[T](T) +Microsoft.FSharp.Core.Operators+Checked: Char ToChar$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Char], T) +Microsoft.FSharp.Core.Operators+Checked: Char ToChar[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int16 ToInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int16], T) +Microsoft.FSharp.Core.Operators+Checked: Int16 ToInt16[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt32[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int64 ToInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int64], T) +Microsoft.FSharp.Core.Operators+Checked: Int64 ToInt64[T](T) +Microsoft.FSharp.Core.Operators+Checked: IntPtr ToIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.IntPtr], T) +Microsoft.FSharp.Core.Operators+Checked: IntPtr ToIntPtr[T](T) +Microsoft.FSharp.Core.Operators+Checked: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.Operators+Checked: SByte ToSByte[T](T) +Microsoft.FSharp.Core.Operators+Checked: T op_UnaryNegation$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators+Checked: T op_UnaryNegation[T](T) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Addition$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Addition[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Multiply$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Multiply[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Subtraction$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Subtraction[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators+Checked: UInt16 ToUInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt16], T) +Microsoft.FSharp.Core.Operators+Checked: UInt16 ToUInt16[T](T) +Microsoft.FSharp.Core.Operators+Checked: UInt32 ToUInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], T) +Microsoft.FSharp.Core.Operators+Checked: UInt32 ToUInt32[T](T) +Microsoft.FSharp.Core.Operators+Checked: UInt64 ToUInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt64], T) +Microsoft.FSharp.Core.Operators+Checked: UInt64 ToUInt64[T](T) +Microsoft.FSharp.Core.Operators+Checked: UIntPtr ToUIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UIntPtr], T) +Microsoft.FSharp.Core.Operators+Checked: UIntPtr ToUIntPtr[T](T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Equality$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Equality[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThan$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThanOrEqual$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThanOrEqual[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThan[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Inequality$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Inequality[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThan$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThanOrEqual$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThanOrEqual[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThan[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Int32 Compare$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Int32 Compare[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Int32 Hash[T](T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Max$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Max[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Min$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Min[T](T, T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Byte PowByte(Byte, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Double PowDouble(Double, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int16 PowInt16(Int16, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int32 PowInt32(Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int32 SignDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int64 PowInt64(Int64, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: IntPtr PowIntPtr(IntPtr, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: SByte PowSByte(SByte, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Single PowSingle(Single, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Byte] RangeByte(Byte, Byte, Byte) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Char] RangeChar(Char, Char) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Double] RangeDouble(Double, Double, Double) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Int16] RangeInt16(Int16, Int16, Int16) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Int32] RangeInt32(Int32, Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Int64] RangeInt64(Int64, Int64, Int64) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.IntPtr] RangeIntPtr(IntPtr, IntPtr, IntPtr) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.SByte] RangeSByte(SByte, SByte, SByte) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Single] RangeSingle(Single, Single, Single) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UInt16] RangeUInt16(UInt16, UInt16, UInt16) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UInt32] RangeUInt32(UInt32, UInt32, UInt32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UInt64] RangeUInt64(UInt64, UInt64, UInt64) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UIntPtr] RangeUIntPtr(UIntPtr, UIntPtr, UIntPtr) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[T] RangeGeneric[T](T, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[T] RangeStepGeneric[TStep,T](TStep, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TStep,T]], T, TStep, T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Decimal PowDecimal(System.Decimal, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.String GetStringSlice(System.String, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AbsDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AcosDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AsinDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AtanDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T CeilingDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T CosDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T CoshDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T ExpDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T FloorDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T Log10Dynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T LogDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T PowDynamic[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T PowGeneric[T](T, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T RoundDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T SinDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T SinhDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T TanDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T TanhDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T TruncateDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T2 Atan2Dynamic[T1,T2](T1, T1) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T2 SqrtDynamic[T1,T2](T1) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,,] GetArraySlice4D[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice3D[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle1[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle2[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle3[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice2D[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice3DFixedSingle1[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice3DFixedSingle2[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice3DFixedSingle3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble1[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble3[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble5[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble6[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice2DFixed1[T](T[,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice2DFixed2[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice3DFixedDouble1[T](T[,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice3DFixedDouble2[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice3DFixedDouble3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple1[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple3[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple4[T](T[,,,], Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice[T](T[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UInt16 PowUInt16(UInt16, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UInt32 PowUInt32(UInt32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UInt64 PowUInt64(UInt64, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UIntPtr PowUIntPtr(UIntPtr, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice2DFixed1[T](T[,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice2DFixed2[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice2D[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedDouble1[T](T[,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedDouble2[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedDouble3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedSingle1[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedSingle2[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedSingle3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3D[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble1[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble3[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble5[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble6[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle1[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle2[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle3[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple1[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple3[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple4[T](T[,,,], Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4D[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice[T](T[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+Unchecked: Boolean Equals[T](T, T) +Microsoft.FSharp.Core.Operators+Unchecked: Int32 Compare[T](T, T) +Microsoft.FSharp.Core.Operators+Unchecked: Int32 Hash[T](T) +Microsoft.FSharp.Core.Operators+Unchecked: T DefaultOf[T]() +Microsoft.FSharp.Core.Operators+Unchecked: T NonNullQuickPattern[T](T) +Microsoft.FSharp.Core.Operators+Unchecked: T NonNull[T](T) +Microsoft.FSharp.Core.Operators+Unchecked: T Unbox[T](System.Object) +Microsoft.FSharp.Core.Operators+Unchecked: T WithNull[T](T) +Microsoft.FSharp.Core.Operators: Boolean IsNullV[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: Boolean IsNull[T](T) +Microsoft.FSharp.Core.Operators: Boolean Not(Boolean) +Microsoft.FSharp.Core.Operators: Boolean op_Equality[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_GreaterThanOrEqual[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_GreaterThan[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_Inequality[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_LessThanOrEqual[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_LessThan[T](T, T) +Microsoft.FSharp.Core.Operators: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.Operators: Byte ToByte[T](T) +Microsoft.FSharp.Core.Operators: Char ToChar$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Char], T) +Microsoft.FSharp.Core.Operators: Char ToChar[T](T) +Microsoft.FSharp.Core.Operators: Double Infinity +Microsoft.FSharp.Core.Operators: Double NaN +Microsoft.FSharp.Core.Operators: Double ToDouble$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], T) +Microsoft.FSharp.Core.Operators: Double ToDouble[T](T) +Microsoft.FSharp.Core.Operators: Double get_Infinity() +Microsoft.FSharp.Core.Operators: Double get_NaN() +Microsoft.FSharp.Core.Operators: Int16 ToInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int16], T) +Microsoft.FSharp.Core.Operators: Int16 ToInt16[T](T) +Microsoft.FSharp.Core.Operators: Int32 Compare[T](T, T) +Microsoft.FSharp.Core.Operators: Int32 Hash[T](T) +Microsoft.FSharp.Core.Operators: Int32 Sign$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators: Int32 Sign[T](T) +Microsoft.FSharp.Core.Operators: Int32 SizeOf[T]() +Microsoft.FSharp.Core.Operators: Int32 ToInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators: Int32 ToInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators: Int32 ToInt32[T](T) +Microsoft.FSharp.Core.Operators: Int32 ToInt[T](T) +Microsoft.FSharp.Core.Operators: Int32 limitedHash[T](Int32, T) +Microsoft.FSharp.Core.Operators: Int64 ToInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int64], T) +Microsoft.FSharp.Core.Operators: Int64 ToInt64[T](T) +Microsoft.FSharp.Core.Operators: IntPtr ToIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.IntPtr], T) +Microsoft.FSharp.Core.Operators: IntPtr ToIntPtr[T](T) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Collections.FSharpList`1[T] op_Append[T](Microsoft.FSharp.Collections.FSharpList`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpChoice`2[Microsoft.FSharp.Core.Unit,T] NullMatchPattern[T](T) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpChoice`2[Microsoft.FSharp.Core.Unit,T] NullValueMatchPattern[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpFunc`2[T1,T3] op_ComposeLeft[T2,T3,T1](Microsoft.FSharp.Core.FSharpFunc`2[T2,T3], Microsoft.FSharp.Core.FSharpFunc`2[T1,T2]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpFunc`2[T1,T3] op_ComposeRight[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,T2], Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpOption`1[System.String] FailurePattern(System.Exception) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpOption`1[T] TryUnbox[T](System.Object) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpRef`1[T] Ref[T](T) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+ArrayExtensions +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+Checked +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+NonStructuralComparison +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+OperatorIntrinsics +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+Unchecked +Microsoft.FSharp.Core.Operators: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.Operators: SByte ToSByte[T](T) +Microsoft.FSharp.Core.Operators: Single InfinitySingle +Microsoft.FSharp.Core.Operators: Single NaNSingle +Microsoft.FSharp.Core.Operators: Single ToSingle$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], T) +Microsoft.FSharp.Core.Operators: Single ToSingle[T](T) +Microsoft.FSharp.Core.Operators: Single get_InfinitySingle() +Microsoft.FSharp.Core.Operators: Single get_NaNSingle() +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] CreateSequence[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_Range$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_RangeStep$W[T,TStep](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TStep], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TStep,T]], T, TStep, T) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_RangeStep[T,TStep](T, TStep, T) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_Range[T](T, T) +Microsoft.FSharp.Core.Operators: System.Decimal ToDecimal$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Decimal], T) +Microsoft.FSharp.Core.Operators: System.Decimal ToDecimal[T](T) +Microsoft.FSharp.Core.Operators: System.Exception Failure(System.String) +Microsoft.FSharp.Core.Operators: System.IO.TextReader ConsoleIn[T]() +Microsoft.FSharp.Core.Operators: System.IO.TextWriter ConsoleError[T]() +Microsoft.FSharp.Core.Operators: System.IO.TextWriter ConsoleOut[T]() +Microsoft.FSharp.Core.Operators: System.Nullable`1[T] NullV[T]() +Microsoft.FSharp.Core.Operators: System.Nullable`1[T] WithNullV[T](T) +Microsoft.FSharp.Core.Operators: System.Object Box[T](T) +Microsoft.FSharp.Core.Operators: System.RuntimeMethodHandle MethodHandleOf[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.Operators: System.String NameOf[T](T) +Microsoft.FSharp.Core.Operators: System.String ToString[T](T) +Microsoft.FSharp.Core.Operators: System.String op_Concatenate(System.String, System.String) +Microsoft.FSharp.Core.Operators: System.Tuple`2[TKey,TValue] KeyValuePattern[TKey,TValue](System.Collections.Generic.KeyValuePair`2[TKey,TValue]) +Microsoft.FSharp.Core.Operators: System.Type TypeDefOf[T]() +Microsoft.FSharp.Core.Operators: System.Type TypeOf[T]() +Microsoft.FSharp.Core.Operators: T Abs$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Abs[T](T) +Microsoft.FSharp.Core.Operators: T Acos$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Acos[T](T) +Microsoft.FSharp.Core.Operators: T Asin$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Asin[T](T) +Microsoft.FSharp.Core.Operators: T Atan$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Atan[T](T) +Microsoft.FSharp.Core.Operators: T Ceiling$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Ceiling[T](T) +Microsoft.FSharp.Core.Operators: T Cos$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Cos[T](T) +Microsoft.FSharp.Core.Operators: T Cosh$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Cosh[T](T) +Microsoft.FSharp.Core.Operators: T DefaultArg[T](Microsoft.FSharp.Core.FSharpOption`1[T], T) +Microsoft.FSharp.Core.Operators: T DefaultIfNullV[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: T DefaultIfNull[T](T, T) +Microsoft.FSharp.Core.Operators: T DefaultValueArg[T](Microsoft.FSharp.Core.FSharpValueOption`1[T], T) +Microsoft.FSharp.Core.Operators: T Exit[T](Int32) +Microsoft.FSharp.Core.Operators: T Exp$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Exp[T](T) +Microsoft.FSharp.Core.Operators: T FailWith[T](System.String) +Microsoft.FSharp.Core.Operators: T Floor$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Floor[T](T) +Microsoft.FSharp.Core.Operators: T Identity[T](T) +Microsoft.FSharp.Core.Operators: T InvalidArg[T](System.String, System.String) +Microsoft.FSharp.Core.Operators: T InvalidOp[T](System.String) +Microsoft.FSharp.Core.Operators: T Lock[TLock,T](TLock, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Core.Operators: T Log$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Log10$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Log10[T](T) +Microsoft.FSharp.Core.Operators: T Log[T](T) +Microsoft.FSharp.Core.Operators: T Max[T](T, T) +Microsoft.FSharp.Core.Operators: T Min[T](T, T) +Microsoft.FSharp.Core.Operators: T NonNullQuickPattern[T](T) +Microsoft.FSharp.Core.Operators: T NonNullQuickValuePattern[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: T NonNullV[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: T NonNull[T](T) +Microsoft.FSharp.Core.Operators: T NullArgCheck[T](System.String, T) +Microsoft.FSharp.Core.Operators: T NullArg[T](System.String) +Microsoft.FSharp.Core.Operators: T PowInteger$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, Int32) +Microsoft.FSharp.Core.Operators: T PowInteger[T](T, Int32) +Microsoft.FSharp.Core.Operators: T Raise[T](System.Exception) +Microsoft.FSharp.Core.Operators: T Reraise[T]() +Microsoft.FSharp.Core.Operators: T Rethrow[T]() +Microsoft.FSharp.Core.Operators: T Round$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Round[T](T) +Microsoft.FSharp.Core.Operators: T Sin$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Sin[T](T) +Microsoft.FSharp.Core.Operators: T Sinh$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Sinh[T](T) +Microsoft.FSharp.Core.Operators: T Tan$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Tan[T](T) +Microsoft.FSharp.Core.Operators: T Tanh$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Tanh[T](T) +Microsoft.FSharp.Core.Operators: T Truncate$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Truncate[T](T) +Microsoft.FSharp.Core.Operators: T Unbox[T](System.Object) +Microsoft.FSharp.Core.Operators: T WithNull[T](T) +Microsoft.FSharp.Core.Operators: T op_BitwiseAnd$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: T op_BitwiseAnd[T](T, T) +Microsoft.FSharp.Core.Operators: T op_BitwiseOr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: T op_BitwiseOr[T](T, T) +Microsoft.FSharp.Core.Operators: T op_Dereference[T](Microsoft.FSharp.Core.FSharpRef`1[T]) +Microsoft.FSharp.Core.Operators: T op_ExclusiveOr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: T op_ExclusiveOr[T](T, T) +Microsoft.FSharp.Core.Operators: T op_Exponentiation$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,T]], T, TResult) +Microsoft.FSharp.Core.Operators: T op_Exponentiation[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators: T op_LeftShift$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], T, Int32) +Microsoft.FSharp.Core.Operators: T op_LeftShift[T](T, Int32) +Microsoft.FSharp.Core.Operators: T op_LogicalNot$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T op_LogicalNot[T](T) +Microsoft.FSharp.Core.Operators: T op_RightShift$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], T, Int32) +Microsoft.FSharp.Core.Operators: T op_RightShift[T](T, Int32) +Microsoft.FSharp.Core.Operators: T op_UnaryNegation$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T op_UnaryNegation[T](T) +Microsoft.FSharp.Core.Operators: T op_UnaryPlus$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T op_UnaryPlus[T](T) +Microsoft.FSharp.Core.Operators: T1 Fst[T1,T2](System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.Operators: T2 Atan2$W[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T1,T2]], T1, T1) +Microsoft.FSharp.Core.Operators: T2 Atan2[T1,T2](T1, T1) +Microsoft.FSharp.Core.Operators: T2 Snd[T1,T2](System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.Operators: T3 op_Addition$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Addition[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Division$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Division[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Modulus$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Modulus[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Multiply$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Multiply[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Subtraction$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Subtraction[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: TResult Sqrt$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T) +Microsoft.FSharp.Core.Operators: TResult Sqrt[T,TResult](T) +Microsoft.FSharp.Core.Operators: TResult ToEnum[TResult](Int32) +Microsoft.FSharp.Core.Operators: TResult Using[T,TResult](T, Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.Operators: TResult op_PipeLeft2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], T1, T2) +Microsoft.FSharp.Core.Operators: TResult op_PipeLeft3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], T1, T2, T3) +Microsoft.FSharp.Core.Operators: TResult op_PipeLeft[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T) +Microsoft.FSharp.Core.Operators: TResult op_PipeRight2[T1,T2,TResult](T1, T2, Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]) +Microsoft.FSharp.Core.Operators: TResult op_PipeRight3[T1,T2,T3,TResult](T1, T2, T3, Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]]) +Microsoft.FSharp.Core.Operators: TResult op_PipeRight[T1,TResult](T1, Microsoft.FSharp.Core.FSharpFunc`2[T1,TResult]) +Microsoft.FSharp.Core.Operators: UInt16 ToUInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt16], T) +Microsoft.FSharp.Core.Operators: UInt16 ToUInt16[T](T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt32[T](T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt[T](T) +Microsoft.FSharp.Core.Operators: UInt64 ToUInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt64], T) +Microsoft.FSharp.Core.Operators: UInt64 ToUInt64[T](T) +Microsoft.FSharp.Core.Operators: UIntPtr ToUIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UIntPtr], T) +Microsoft.FSharp.Core.Operators: UIntPtr ToUIntPtr[T](T) +Microsoft.FSharp.Core.Operators: Void Decrement(Microsoft.FSharp.Core.FSharpRef`1[System.Int32]) +Microsoft.FSharp.Core.Operators: Void Ignore[T](T) +Microsoft.FSharp.Core.Operators: Void Increment(Microsoft.FSharp.Core.FSharpRef`1[System.Int32]) +Microsoft.FSharp.Core.Operators: Void op_ColonEquals[T](Microsoft.FSharp.Core.FSharpRef`1[T], T) +Microsoft.FSharp.Core.OptimizeClosureIfNotInlinedAttribute: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: FSharpFunc`3 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: TResult Invoke(T1, T2) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: FSharpFunc`4 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: TResult Invoke(T1, T2, T3) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: FSharpFunc`5 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: TResult Invoke(T1, T2, T3, T4) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: FSharpFunc`6 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: TResult Invoke(T1, T2, T3, T4, T5) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult] +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult] +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult] +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult] +Microsoft.FSharp.Core.OptionModule: Boolean Contains[T](T, Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean IsNone[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean IsSome[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Int32 Count[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], Microsoft.FSharp.Core.FSharpOption`1[T1], Microsoft.FSharp.Core.FSharpOption`1[T2]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], Microsoft.FSharp.Core.FSharpOption`1[T1], Microsoft.FSharp.Core.FSharpOption`1[T2], Microsoft.FSharp.Core.FSharpOption`1[T3]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] Flatten[T](Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpOption`1[T]]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OfNullable[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OfObj[T](T) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OfValueOption[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OrElseWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.FSharpOption`1[T]], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OrElse[T](Microsoft.FSharp.Core.FSharpOption`1[T], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpValueOption`1[T] ToValueOption[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: System.Nullable`1[T] ToNullable[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T DefaultValue[T](T, Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T DefaultWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T GetValue[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T ToObj[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Core.FSharpOption`1[T], TState) +Microsoft.FSharp.Core.OptionModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T[] ToArray[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionalArgumentAttribute: Void .ctor() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Object[] Captures +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Object[] get_Captures() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.String ToString() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.String Value +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.String get_Value() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Type[] CaptureTypes +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Type[] get_CaptureTypes() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: Void .ctor(System.String) +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: Void .ctor(System.String, System.Object[], System.Type[]) +Microsoft.FSharp.Core.PrintfFormat`5[TPrinter,TState,TResidue,TResult,TTuple]: Void .ctor(System.String) +Microsoft.FSharp.Core.PrintfFormat`5[TPrinter,TState,TResidue,TResult,TTuple]: Void .ctor(System.String, System.Object[], System.Type[]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatLineToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatLineToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatLine[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[System.String,TResult], Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringBuilderThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], System.Text.StringBuilder, Microsoft.FSharp.Core.PrintfFormat`4[T,System.Text.StringBuilder,Microsoft.FSharp.Core.Unit,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringBuilder[T](System.Text.StringBuilder, Microsoft.FSharp.Core.PrintfFormat`4[T,System.Text.StringBuilder,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringThenFail[T,TResult](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[System.String,TResult], Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringThen[T](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,System.String]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToTextWriterThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormat[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ProjectionParameterAttribute: Void .ctor() +Microsoft.FSharp.Core.ReferenceEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Boolean IncludeValue +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Boolean get_IncludeValue() +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Void .ctor() +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.RequireQualifiedAccessAttribute: Void .ctor() +Microsoft.FSharp.Core.RequiresExplicitTypeArgumentsAttribute: Void .ctor() +Microsoft.FSharp.Core.ResultModule: Boolean Contains[T,TError](T, Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean Exists[T,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean ForAll[T,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean IsError[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean IsOk[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Int32 Count[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpOption`1[T] ToOption[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpResult`2[T,TResult] MapError[TError,TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[TError,TResult], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpResult`2[TResult,TError] Bind[T,TResult,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpResult`2[TResult,TError]], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpResult`2[TResult,TError] Map[T,TResult,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpValueOption`1[T] ToValueOption[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: T DefaultValue[T,TError](T, Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: T DefaultWith[TError,T](Microsoft.FSharp.Core.FSharpFunc`2[TError,T], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: TState FoldBack[T,TError,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Core.FSharpResult`2[T,TError], TState) +Microsoft.FSharp.Core.ResultModule: TState Fold[T,TError,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: T[] ToArray[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Void Iterate[T,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.SealedAttribute: Boolean Value +Microsoft.FSharp.Core.SealedAttribute: Boolean get_Value() +Microsoft.FSharp.Core.SealedAttribute: Void .ctor() +Microsoft.FSharp.Core.SealedAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.SourceConstructFlags: Int32 value__ +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Closure +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Exception +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Field +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags KindMask 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ForAll(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Boolean], System.String) +Microsoft.FSharp.Core.StringModule: Int32 Length(System.String) +Microsoft.FSharp.Core.StringModule: System.String Collect(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.String], System.String) +Microsoft.FSharp.Core.StringModule: System.String Concat(System.String, System.Collections.Generic.IEnumerable`1[System.String]) +Microsoft.FSharp.Core.StringModule: System.String Filter(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Boolean], System.String) +Microsoft.FSharp.Core.StringModule: System.String Initialize(Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.String]) +Microsoft.FSharp.Core.StringModule: System.String Map(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Char], System.String) +Microsoft.FSharp.Core.StringModule: System.String MapIndexed(Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Char]], System.String) +Microsoft.FSharp.Core.StringModule: System.String Replicate(Int32, System.String) +Microsoft.FSharp.Core.StringModule: Void Iterate(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,Microsoft.FSharp.Core.Unit], System.String) +Microsoft.FSharp.Core.StringModule: Void IterateIndexed(Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Char,Microsoft.FSharp.Core.Unit]], System.String) +Microsoft.FSharp.Core.StructAttribute: Void .ctor() +Microsoft.FSharp.Core.StructuralComparisonAttribute: Void .ctor() +Microsoft.FSharp.Core.StructuralEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.StructuredFormatDisplayAttribute: System.String Value +Microsoft.FSharp.Core.StructuredFormatDisplayAttribute: System.String get_Value() +Microsoft.FSharp.Core.StructuredFormatDisplayAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.TailCallAttribute: Void .ctor() +Microsoft.FSharp.Core.Unit: Boolean Equals(System.Object) +Microsoft.FSharp.Core.Unit: Int32 GetHashCode() +Microsoft.FSharp.Core.UnverifiableAttribute: Void .ctor() +Microsoft.FSharp.Core.ValueOption: Boolean Contains[T](T, Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean IsNone[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean IsSome[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Int32 Count[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpOption`1[T] ToOption[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpValueOption`1[TResult]], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], Microsoft.FSharp.Core.FSharpValueOption`1[T1], Microsoft.FSharp.Core.FSharpValueOption`1[T2]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], Microsoft.FSharp.Core.FSharpValueOption`1[T1], Microsoft.FSharp.Core.FSharpValueOption`1[T2], Microsoft.FSharp.Core.FSharpValueOption`1[T3]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] Flatten[T](Microsoft.FSharp.Core.FSharpValueOption`1[Microsoft.FSharp.Core.FSharpValueOption`1[T]]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OfNullable[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OfObj[T](T) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OfOption[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OrElseWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.FSharpValueOption`1[T]], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OrElse[T](Microsoft.FSharp.Core.FSharpValueOption`1[T], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: System.Nullable`1[T] ToNullable[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T DefaultValue[T](T, Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T DefaultWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T GetValue[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T ToObj[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Core.FSharpValueOption`1[T], TState) +Microsoft.FSharp.Core.ValueOption: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T[] ToArray[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.VolatileFieldAttribute: Void .ctor() +Microsoft.FSharp.Core.WarnOnWithoutNullArgumentAttribute: System.String WarningMessage +Microsoft.FSharp.Core.WarnOnWithoutNullArgumentAttribute: System.String get_WarningMessage() +Microsoft.FSharp.Core.WarnOnWithoutNullArgumentAttribute: Void .ctor(System.String) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToByte[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToUInt8$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToUInt8[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Char] ToChar$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Char], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Char] ToChar[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Decimal] ToDecimal$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Decimal], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Decimal] ToDecimal[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToDouble$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToDouble[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToFloat$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToFloat[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int16] ToInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int16], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int16] ToInt16[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt32[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int64] ToInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int64], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int64] ToInt64[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.IntPtr] ToIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.IntPtr], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.IntPtr] ToIntPtr[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToInt8$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToInt8[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToSByte[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToFloat32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToFloat32[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToSingle$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToSingle[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt16] ToUInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt16], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt16] ToUInt16[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt32[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt64] ToUInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt64], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt64] ToUInt64[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UIntPtr] ToUIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UIntPtr], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UIntPtr] ToUIntPtr[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[TResult] ToEnum[TResult](System.Nullable`1[System.Int32]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_EqualsQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_GreaterEqualsQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_GreaterQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_LessEqualsQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_LessGreaterQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_LessQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkEqualsQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkEquals[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreaterEqualsQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreaterEquals[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreaterQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreater[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessEqualsQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessEquals[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessGreaterQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessGreater[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLess[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_DivideQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_DivideQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MinusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MinusQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MultiplyQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MultiplyQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PercentQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PercentQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PlusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PlusQmark[T1,T2,T3](T1, System.Nullable`1[T2]) 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op_QmarkMinusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMinusQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMinus[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiply$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiplyQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiplyQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiply[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercent$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercentQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercentQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercent[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlus$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlusQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlus[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.QueryBuilder: Boolean All[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Boolean Contains[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], T) +Microsoft.FSharp.Linq.QueryBuilder: Boolean Exists[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Int32 Count[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[System.Linq.IGrouping`2[TKey,TValue],Q] GroupValBy[T,TKey,TValue,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[System.Linq.IGrouping`2[TKey,T],Q] GroupBy[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Distinct[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SkipWhile[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Skip[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Int32) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortByDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortByNullableDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortByNullable[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortBy[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Source[T,Q](System.Linq.IQueryable`1[T]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] TakeWhile[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Take[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Int32) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenByDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenByNullableDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenByNullable[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenBy[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Where[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] YieldFrom[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Yield[T,Q](T) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Zero[T,Q]() +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,System.Collections.IEnumerable] Source[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] For[T,Q,TResult,Q2](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Linq.QuerySource`2[TResult,Q2]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] GroupJoin[TOuter,Q,TInner,TKey,TResult](Microsoft.FSharp.Linq.QuerySource`2[TOuter,Q], Microsoft.FSharp.Linq.QuerySource`2[TInner,Q], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TInner,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,Microsoft.FSharp.Core.FSharpFunc`2[System.Collections.Generic.IEnumerable`1[TInner],TResult]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] Join[TOuter,Q,TInner,TKey,TResult](Microsoft.FSharp.Linq.QuerySource`2[TOuter,Q], Microsoft.FSharp.Linq.QuerySource`2[TInner,Q], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TInner,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,Microsoft.FSharp.Core.FSharpFunc`2[TInner,TResult]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] LeftOuterJoin[TOuter,Q,TInner,TKey,TResult](Microsoft.FSharp.Linq.QuerySource`2[TOuter,Q], Microsoft.FSharp.Linq.QuerySource`2[TInner,Q], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TInner,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,Microsoft.FSharp.Core.FSharpFunc`2[System.Collections.Generic.IEnumerable`1[TInner],TResult]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] Select[T,Q,TResult](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Quotations.FSharpExpr`1[T] Quote[T](Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Linq.QueryBuilder: System.Linq.IQueryable`1[T] Run[T](Microsoft.FSharp.Quotations.FSharpExpr`1[Microsoft.FSharp.Linq.QuerySource`2[T,System.Linq.IQueryable]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] AverageByNullable$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TValue]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] AverageByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] MaxByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] MinByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] SumByNullable$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] SumByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: T ExactlyOneOrDefault[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T ExactlyOne[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Find[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: T HeadOrDefault[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Head[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T LastOrDefault[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Last[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Nth[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Int32) +Microsoft.FSharp.Linq.QueryBuilder: TValue AverageBy$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TValue]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue AverageBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue MaxBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue MinBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue SumBy$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue SumBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: Void .ctor() +Microsoft.FSharp.Linq.QueryRunExtensions.HighPriority: System.Collections.Generic.IEnumerable`1[T] RunQueryAsEnumerable[T](Microsoft.FSharp.Linq.QueryBuilder, Microsoft.FSharp.Quotations.FSharpExpr`1[Microsoft.FSharp.Linq.QuerySource`2[T,System.Collections.IEnumerable]]) +Microsoft.FSharp.Linq.QueryRunExtensions.LowPriority: T RunQueryAsValue[T](Microsoft.FSharp.Linq.QueryBuilder, Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Linq.QuerySource`2[T,Q]: System.Collections.Generic.IEnumerable`1[T] Source +Microsoft.FSharp.Linq.QuerySource`2[T,Q]: System.Collections.Generic.IEnumerable`1[T] get_Source() +Microsoft.FSharp.Linq.QuerySource`2[T,Q]: Void .ctor(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: Void .ctor(T1) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: Void .ctor(T1, T2) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: Void .ctor(T1, T2, T3) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: Void .ctor(T1, T2, T3, T4) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: Void .ctor(T1, T2, T3, T4, T5) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T6 Item6 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T6 get_Item6() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: Void .ctor(T1, T2, T3, T4, T5, T6) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T6 Item6 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T6 get_Item6() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T7 Item7 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T7 get_Item7() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: Void .ctor(T1, T2, T3, T4, T5, T6, T7) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T6 Item6 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T6 get_Item6() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T7 Item7 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T7 get_Item7() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T8 Item8 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T8 get_Item8() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: Void .ctor(T1, T2, T3, T4, T5, T6, T7, T8) +Microsoft.FSharp.Linq.RuntimeHelpers.Grouping`2[K,T]: Void .ctor(K, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: Microsoft.FSharp.Quotations.FSharpExpr SubstHelperRaw(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar[], System.Object[]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: Microsoft.FSharp.Quotations.FSharpExpr`1[T] SubstHelper[T](Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar[], System.Object[]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Linq.Expressions.Expression QuotationToExpression(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Linq.Expressions.Expression`1[T] ImplicitExpressionConversionHelper[T](T) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Linq.Expressions.Expression`1[T] QuotationToLambdaExpression[T](Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Object EvaluateQuotation(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: T MemberInitializationHelper[T](T) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: T NewAnonymousObjectHelper[T](T) +Microsoft.FSharp.NativeInterop.NativePtrModule: Boolean IsNullPointer[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr AddPointerInlined[T](IntPtr, Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr NullPointer[T]() +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr OfILSigPtrInlined[T](T*) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr OfNativeIntInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr OfVoidPtrInlined[T](Void*) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr StackAllocate[T](Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr ToNativeIntInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: T GetPointerInlined[T](IntPtr, Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: T ReadPointerInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: T& ToByRefInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: T* ToILSigPtrInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void ClearPointerInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void CopyBlockInlined[T](IntPtr, IntPtr, Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void CopyPointerInlined[T](IntPtr, IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void InitializeBlockInlined[T](IntPtr, Byte, UInt32) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void SetPointerInlined[T](IntPtr, Int32, T) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void WritePointerInlined[T](IntPtr, T) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void* ToVoidPtrInlined[T](IntPtr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],Microsoft.FSharp.Collections.FSharpList`1[System.Type],Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]]] SpecificCallPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.Unit] UnitPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] MethodWithReflectedDefinitionPattern(System.Reflection.MethodBase) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] PropertyGetterWithReflectedDefinitionPattern(System.Reflection.PropertyInfo) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] PropertySetterWithReflectedDefinitionPattern(System.Reflection.PropertyInfo) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Boolean] BoolPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Byte] BytePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Char] CharPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Decimal] DecimalPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Double] DoublePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int16] Int16Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] Int32Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int64] Int64Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.SByte] SBytePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Single] SinglePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.String] StringPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpVar]],Microsoft.FSharp.Quotations.FSharpExpr]] LambdasPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]]] ApplicationsPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] AndAlsoPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] OrElsePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.UInt16] UInt16Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.UInt32] UInt32Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.UInt64] UInt64Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.ExprShapeModule: Microsoft.FSharp.Core.FSharpChoice`3[Microsoft.FSharp.Quotations.FSharpVar,System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr],System.Tuple`2[System.Object,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] ShapePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.ExprShapeModule: Microsoft.FSharp.Quotations.FSharpExpr RebuildShapeCombination(System.Object, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Boolean Equals(System.Object) +Microsoft.FSharp.Quotations.FSharpExpr: Int32 GetHashCode() +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr] CustomAttributes +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr] get_CustomAttributes() +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] TryGetReflectedDefinition(System.Reflection.MethodBase) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr AddressOf(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr AddressSet(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Application(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Applications(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Call(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Call(System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr CallWithWitnesses(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.MethodInfo, System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr], Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr CallWithWitnesses(System.Reflection.MethodInfo, System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr], Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Coerce(Microsoft.FSharp.Quotations.FSharpExpr, System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr DefaultValue(System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Deserialize(System.Type, Microsoft.FSharp.Collections.FSharpList`1[System.Type], Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr], Byte[]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Deserialize40(System.Type, System.Type[], System.Type[], Microsoft.FSharp.Quotations.FSharpExpr[], Byte[]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldGet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.FieldInfo) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldGet(System.Reflection.FieldInfo) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldSet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.FieldInfo, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldSet(System.Reflection.FieldInfo, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr ForIntegerRangeLoop(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr IfThenElse(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Lambda(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Let(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr LetRecursive(Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]], Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewArray(System.Type, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewDelegate(System.Type, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpVar], Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewObject(System.Reflection.ConstructorInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewRecord(System.Type, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewStructTuple(Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewStructTuple(System.Reflection.Assembly, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewTuple(Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewUnionCase(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertyGet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.PropertyInfo, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertyGet(System.Reflection.PropertyInfo, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertySet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.PropertyInfo, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertySet(System.Reflection.PropertyInfo, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Quote(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr QuoteRaw(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr QuoteTyped(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Sequential(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Substitute(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TryFinally(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TryWith(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TupleGet(Microsoft.FSharp.Quotations.FSharpExpr, Int32) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TypeTest(Microsoft.FSharp.Quotations.FSharpExpr, System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr UnionCaseTest(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Reflection.UnionCaseInfo) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Value(System.Object, System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr ValueWithName(System.Object, System.Type, System.String) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr ValueWithName[T](T, System.String) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Value[T](T) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Var(Microsoft.FSharp.Quotations.FSharpVar) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr VarSet(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr WhileLoop(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr WithValue(System.Object, System.Type, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr`1[T] Cast[T](Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr`1[T] GlobalVar[T](System.String) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr`1[T] WithValue[T](T, Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Quotations.FSharpExpr: System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Quotations.FSharpVar] GetFreeVars() +Microsoft.FSharp.Quotations.FSharpExpr: System.String ToString() +Microsoft.FSharp.Quotations.FSharpExpr: System.String ToString(Boolean) +Microsoft.FSharp.Quotations.FSharpExpr: System.Type Type +Microsoft.FSharp.Quotations.FSharpExpr: System.Type get_Type() +Microsoft.FSharp.Quotations.FSharpExpr: Void RegisterReflectedDefinitions(System.Reflection.Assembly, System.String, Byte[]) +Microsoft.FSharp.Quotations.FSharpExpr: Void RegisterReflectedDefinitions(System.Reflection.Assembly, System.String, Byte[], System.Type[]) +Microsoft.FSharp.Quotations.FSharpExpr`1[T]: Microsoft.FSharp.Quotations.FSharpExpr Raw +Microsoft.FSharp.Quotations.FSharpExpr`1[T]: Microsoft.FSharp.Quotations.FSharpExpr get_Raw() +Microsoft.FSharp.Quotations.FSharpVar: Boolean Equals(System.Object) +Microsoft.FSharp.Quotations.FSharpVar: Boolean IsMutable +Microsoft.FSharp.Quotations.FSharpVar: Boolean get_IsMutable() +Microsoft.FSharp.Quotations.FSharpVar: Int32 GetHashCode() +Microsoft.FSharp.Quotations.FSharpVar: Microsoft.FSharp.Quotations.FSharpVar Global(System.String, System.Type) +Microsoft.FSharp.Quotations.FSharpVar: System.String Name +Microsoft.FSharp.Quotations.FSharpVar: System.String ToString() +Microsoft.FSharp.Quotations.FSharpVar: System.String get_Name() +Microsoft.FSharp.Quotations.FSharpVar: System.Type Type +Microsoft.FSharp.Quotations.FSharpVar: System.Type get_Type() +Microsoft.FSharp.Quotations.FSharpVar: Void .ctor(System.String, System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]] NewStructTuplePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]] NewTuplePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] AddressOfPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] QuotePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] QuoteRawPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] QuoteTypedPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpVar] VarPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]],Microsoft.FSharp.Quotations.FSharpExpr]] LetRecursivePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.FieldInfo]] FieldGetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] AddressSetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] ApplicationPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] SequentialPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] TryFinallyPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] WhileLoopPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Reflection.UnionCaseInfo]] UnionCaseTestPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,System.Int32]] TupleGetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,System.Type]] CoercePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,System.Type]] TypeTestPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]] LambdaPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]] VarSetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Reflection.UnionCaseInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewUnionCasePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Object,System.Type]] ValuePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Reflection.ConstructorInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewObjectPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Type,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewArrayPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Type,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewRecordPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.FieldInfo,Microsoft.FSharp.Quotations.FSharpExpr]] FieldSetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.MethodInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] CallPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.PropertyInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] PropertyGetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] IfThenElsePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] LetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[System.Object,System.Type,Microsoft.FSharp.Quotations.FSharpExpr]] WithValuePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[System.Object,System.Type,System.String]] ValueWithNamePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[System.Type,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpVar],Microsoft.FSharp.Quotations.FSharpExpr]] NewDelegatePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`4[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.PropertyInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr],Microsoft.FSharp.Quotations.FSharpExpr]] PropertySetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`4[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] ForIntegerRangeLoopPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`5[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.MethodInfo,System.Reflection.MethodInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr],Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] CallWithWitnessesPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`5[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]] TryWithPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Type] DefaultValuePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Boolean FSharpType.IsExceptionRepresentation.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Boolean FSharpType.IsRecord.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Boolean FSharpType.IsUnion.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Int32] FSharpValue.PreComputeUnionTagReader.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] FSharpValue.PreComputeRecordReader.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] FSharpValue.PreComputeUnionReader.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] FSharpValue.PreComputeRecordConstructor.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] FSharpValue.PreComputeUnionConstructor.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Reflection.UnionCaseInfo[] FSharpType.GetUnionCases.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object FSharpValue.MakeRecord.Static(System.Type, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object FSharpValue.MakeUnion.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object[] FSharpValue.GetExceptionFields.Static(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object[] FSharpValue.GetRecordFields.Static(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.ConstructorInfo FSharpValue.PreComputeRecordConstructorInfo.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.MemberInfo FSharpValue.PreComputeUnionTagMemberInfo.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.MethodInfo FSharpValue.PreComputeUnionConstructorInfo.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.PropertyInfo[] FSharpType.GetExceptionFields.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.PropertyInfo[] FSharpType.GetRecordFields.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Tuple`2[Microsoft.FSharp.Reflection.UnionCaseInfo,System.Object[]] FSharpValue.GetUnionFields.Static(System.Object, System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsExceptionRepresentation(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsFunction(System.Type) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsModule(System.Type) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsRecord(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsTuple(System.Type) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsUnion(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: Microsoft.FSharp.Reflection.UnionCaseInfo[] GetUnionCases(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: System.Reflection.PropertyInfo[] GetExceptionFields(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: System.Reflection.PropertyInfo[] GetRecordFields(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: System.Tuple`2[System.Type,System.Type] GetFunctionElements(System.Type) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeFunctionType(System.Type, System.Type) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeStructTupleType(System.Reflection.Assembly, System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeStructTupleType(System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeTupleType(System.Reflection.Assembly, System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeTupleType(System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type[] GetTupleElements(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Int32] PreComputeUnionTagReader(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] PreComputeRecordReader(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] PreComputeTupleReader(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] PreComputeUnionReader(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object] PreComputeRecordFieldReader(System.Reflection.PropertyInfo) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] PreComputeRecordConstructor(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] PreComputeTupleConstructor(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] PreComputeUnionConstructor(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object GetRecordField(System.Object, System.Reflection.PropertyInfo) +Microsoft.FSharp.Reflection.FSharpValue: System.Object GetTupleField(System.Object, Int32) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeFunction(System.Type, Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeRecord(System.Type, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeTuple(System.Object[], System.Type) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeUnion(Microsoft.FSharp.Reflection.UnionCaseInfo, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object[] GetExceptionFields(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object[] GetRecordFields(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object[] GetTupleFields(System.Object) +Microsoft.FSharp.Reflection.FSharpValue: System.Reflection.ConstructorInfo PreComputeRecordConstructorInfo(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Reflection.MemberInfo PreComputeUnionTagMemberInfo(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Reflection.MethodInfo PreComputeUnionConstructorInfo(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Tuple`2[Microsoft.FSharp.Reflection.UnionCaseInfo,System.Object[]] GetUnionFields(System.Object, System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Tuple`2[System.Reflection.ConstructorInfo,Microsoft.FSharp.Core.FSharpOption`1[System.Type]] PreComputeTupleConstructorInfo(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: System.Tuple`2[System.Reflection.PropertyInfo,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Type,System.Int32]]] PreComputeTuplePropertyInfo(System.Type, Int32) +Microsoft.FSharp.Reflection.UnionCaseInfo: Boolean Equals(System.Object) +Microsoft.FSharp.Reflection.UnionCaseInfo: Int32 GetHashCode() +Microsoft.FSharp.Reflection.UnionCaseInfo: Int32 Tag +Microsoft.FSharp.Reflection.UnionCaseInfo: Int32 get_Tag() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Collections.Generic.IList`1[System.Reflection.CustomAttributeData] GetCustomAttributesData() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Object[] GetCustomAttributes() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Object[] GetCustomAttributes(System.Type) +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Reflection.PropertyInfo[] GetFields() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.String Name +Microsoft.FSharp.Reflection.UnionCaseInfo: System.String ToString() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.String get_Name() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Type DeclaringType +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Type get_DeclaringType() \ No newline at end of file diff --git a/tests/FSharp.Core.UnitTests/FSharp.Core.SurfaceArea.netcore.release.bsl b/tests/FSharp.Core.UnitTests/FSharp.Core.SurfaceArea.netcore.release.bsl new file mode 100644 index 00000000000..4b13d5aa212 --- /dev/null +++ b/tests/FSharp.Core.UnitTests/FSharp.Core.SurfaceArea.netcore.release.bsl @@ -0,0 +1,2741 @@ +Microsoft.FSharp.Collections.Array2DModule: Int32 Base1[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: Int32 Base2[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: Int32 Length1[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: Int32 Length2[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: T Get[T](T[,], Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: TResult[,] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]]], T[,]) +Microsoft.FSharp.Collections.Array2DModule: TResult[,] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[,]) +Microsoft.FSharp.Collections.Array2DModule: T[,] Copy[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: T[,] CreateBased[T](Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array2DModule: T[,] Create[T](Int32, Int32, T) +Microsoft.FSharp.Collections.Array2DModule: T[,] InitializeBased[T](Int32, Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]) +Microsoft.FSharp.Collections.Array2DModule: T[,] Initialize[T](Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]) +Microsoft.FSharp.Collections.Array2DModule: T[,] Rebase[T](T[,]) +Microsoft.FSharp.Collections.Array2DModule: T[,] ZeroCreateBased[T](Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: T[,] ZeroCreate[T](Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: Void CopyTo[T](T[,], Int32, Int32, T[,], Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array2DModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]]], T[,]) +Microsoft.FSharp.Collections.Array2DModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[,]) +Microsoft.FSharp.Collections.Array2DModule: Void Set[T](T[,], Int32, Int32, T) +Microsoft.FSharp.Collections.Array3DModule: Int32 Length1[T](T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Int32 Length2[T](T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Int32 Length3[T](T[,,]) +Microsoft.FSharp.Collections.Array3DModule: T Get[T](T[,,], Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array3DModule: TResult[,,] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]]]], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: TResult[,,] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: T[,,] Create[T](Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array3DModule: T[,,] Initialize[T](Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]]) +Microsoft.FSharp.Collections.Array3DModule: T[,,] ZeroCreate[T](Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array3DModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]]]], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[,,]) +Microsoft.FSharp.Collections.Array3DModule: Void Set[T](T[,,], Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length1[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length2[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length3[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: Int32 Length4[T](T[,,,]) +Microsoft.FSharp.Collections.Array4DModule: T Get[T](T[,,,], Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array4DModule: T[,,,] Create[T](Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.Array4DModule: T[,,,] Initialize[T](Int32, Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]]]]) +Microsoft.FSharp.Collections.Array4DModule: T[,,,] ZeroCreate[T](Int32, Int32, Int32, Int32) +Microsoft.FSharp.Collections.Array4DModule: Void Set[T](T[,,,], Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[T1,T2][] Zip[T1,T2](T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[T1[],T2[]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[TKey,T[]][] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: System.Tuple`2[T[],T[]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Average[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Max[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Min[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T Sum[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult ReduceBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] Collect[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult[]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: TResult[] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] Initialize[T](Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortByDescending[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortDescending[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: T[] Sort[T](T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void SortInPlaceBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void SortInPlaceWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule+Parallel: Void SortInPlace[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean Contains[T](T, T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean Exists2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean ForAll2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Boolean IsEmpty[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 CompareWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[], T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 FindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 FindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Int32 Length[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Collections.ArrayModule+Parallel +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryExactlyOne[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryHead[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryItem[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryLast[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Collections.Generic.IEnumerable`1[T] ToSeq[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[System.Int32,T][] Indexed[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T,T][] Pairwise[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1,T2][] AllPairs[T1,T2](T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1,T2][] Zip[T1,T2](T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1[],T2[]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T1[],T2[]] Unzip[T1,T2](System.Tuple`2[T1,T2][]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TKey,System.Int32][] CountBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TKey,T[]][] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TResult[],TState] MapFoldBack[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,System.Tuple`2[TResult,TState]]], T[], TState) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[TResult[],TState] MapFold[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Tuple`2[TResult,TState]]], TState, T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T[],T[]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`2[T[],T[]] SplitAt[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`3[T1,T2,T3][] Zip3[T1,T2,T3](T1[], T2[], T3[]) +Microsoft.FSharp.Collections.ArrayModule: System.Tuple`3[T1[],T2[],T3[]] Unzip3[T1,T2,T3](System.Tuple`3[T1,T2,T3][]) +Microsoft.FSharp.Collections.ArrayModule: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Average[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T ExactlyOne[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T FindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Find[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Get[T](T[], Int32) +Microsoft.FSharp.Collections.ArrayModule: T Head[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T Item[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T Last[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Max[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Min[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T RandomChoiceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], T[]) +Microsoft.FSharp.Collections.ArrayModule: T RandomChoiceWith[T](System.Random, T[]) +Microsoft.FSharp.Collections.ArrayModule: T RandomChoice[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T ReduceBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T Sum[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T differentLengthArrays[T](System.String, Int32, System.String, Int32) +Microsoft.FSharp.Collections.ArrayModule: T indexNotFound[T]() +Microsoft.FSharp.Collections.ArrayModule: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult Pick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Collect[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult[]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], T1[], T2[], T3[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] MapIndexed2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], T[]) +Microsoft.FSharp.Collections.ArrayModule: TResult[] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T[]) +Microsoft.FSharp.Collections.ArrayModule: TState Fold2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TState]]], TState, T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: TState FoldBack2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], T1[], T2[], TState) +Microsoft.FSharp.Collections.ArrayModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], T[], TState) +Microsoft.FSharp.Collections.ArrayModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, T[]) +Microsoft.FSharp.Collections.ArrayModule: TState[] ScanBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], T[], TState) +Microsoft.FSharp.Collections.ArrayModule: TState[] Scan[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Append[T](T[], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Concat[T](System.Collections.Generic.IEnumerable`1[T[]]) +Microsoft.FSharp.Collections.ArrayModule: T[] Copy[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Create[T](Int32, T) +Microsoft.FSharp.Collections.ArrayModule: T[] DistinctBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Distinct[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Empty[T]() +Microsoft.FSharp.Collections.ArrayModule: T[] Except[T](System.Collections.Generic.IEnumerable`1[T], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] GetSubArray[T](T[], Int32, Int32) +Microsoft.FSharp.Collections.ArrayModule: T[] Initialize[T](Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.ArrayModule: T[] InsertAt[T](Int32, T, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] InsertManyAt[T](Int32, System.Collections.Generic.IEnumerable`1[T], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] OfList[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ArrayModule: T[] OfSeq[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.ArrayModule: T[] Permute[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.Int32], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomChoicesBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomChoicesWith[T](System.Random, Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomChoices[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomSampleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomSampleWith[T](System.Random, Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomSample[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomShuffleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomShuffleWith[T](System.Random, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RandomShuffle[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RemoveAt[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] RemoveManyAt[T](Int32, Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Replicate[T](Int32, T) +Microsoft.FSharp.Collections.ArrayModule: T[] Reverse[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Singleton[T](T) +Microsoft.FSharp.Collections.ArrayModule: T[] SkipWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Skip[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortByDescending[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortDescending[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Sort[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Tail[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] TakeWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Take[T](Int32, T[]) +Microsoft.FSharp.Collections.ArrayModule: T[] Truncate[T](Int32, T[]) 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Iterate2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Void IterateIndexed2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]]], T1[], T2[]) +Microsoft.FSharp.Collections.ArrayModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void RandomShuffleInPlaceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void RandomShuffleInPlaceWith[T](System.Random, T[]) +Microsoft.FSharp.Collections.ArrayModule: Void RandomShuffleInPlace[T](T[]) +Microsoft.FSharp.Collections.ArrayModule: Void Set[T](T[], Int32, T) +Microsoft.FSharp.Collections.ArrayModule: Void SortInPlaceBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void SortInPlaceWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], T[]) +Microsoft.FSharp.Collections.ArrayModule: Void SortInPlace[T](T[]) +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] FromFunction[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]]) +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] NonStructural$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]]) +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] NonStructural[T]() +Microsoft.FSharp.Collections.ComparisonIdentity: System.Collections.Generic.IComparer`1[T] Structural[T]() +Microsoft.FSharp.Collections.FSharpList: Microsoft.FSharp.Collections.FSharpList`1[T] Create[T](System.ReadOnlySpan`1[T]) +Microsoft.FSharp.Collections.FSharpList`1+Tags[T]: Int32 Cons +Microsoft.FSharp.Collections.FSharpList`1+Tags[T]: Int32 Empty +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(Microsoft.FSharp.Collections.FSharpList`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean IsCons +Microsoft.FSharp.Collections.FSharpList`1[T]: Boolean IsEmpty 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Microsoft.FSharp.Collections.FSharpList`1+Tags[T] +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Cons(T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Empty +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] GetSlice(Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Tail +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] TailOrNull +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] get_Empty() +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] get_Tail() +Microsoft.FSharp.Collections.FSharpList`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] get_TailOrNull() +Microsoft.FSharp.Collections.FSharpList`1[T]: System.String ToString() +Microsoft.FSharp.Collections.FSharpList`1[T]: T Head +Microsoft.FSharp.Collections.FSharpList`1[T]: T HeadOrDefault +Microsoft.FSharp.Collections.FSharpList`1[T]: T Item [Int32] +Microsoft.FSharp.Collections.FSharpList`1[T]: T get_Head() +Microsoft.FSharp.Collections.FSharpList`1[T]: T get_HeadOrDefault() +Microsoft.FSharp.Collections.FSharpList`1[T]: T get_Item(Int32) +Microsoft.FSharp.Collections.FSharpList`1[T]: Void .ctor(T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean ContainsKey(TKey) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean Equals(System.Object) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean IsEmpty +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean TryGetValue(TKey, TValue ByRef) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Boolean get_IsEmpty() 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System.Collections.Generic.ICollection`1[TKey] get_Keys() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.Collections.Generic.ICollection`1[TValue] Values +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.Collections.Generic.ICollection`1[TValue] get_Values() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: System.String ToString() +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: TValue Item [TKey] +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: TValue get_Item(TKey) +Microsoft.FSharp.Collections.FSharpMap`2[TKey,TValue]: Void .ctor(System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,TValue]]) +Microsoft.FSharp.Collections.FSharpSet: Microsoft.FSharp.Collections.FSharpSet`1[T] Create[T](System.ReadOnlySpan`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean Contains(T) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Boolean IsEmpty 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op_Addition(Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: Microsoft.FSharp.Collections.FSharpSet`1[T] op_Subtraction(Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.FSharpSet`1[T]: System.String ToString() +Microsoft.FSharp.Collections.FSharpSet`1[T]: T MaximumElement +Microsoft.FSharp.Collections.FSharpSet`1[T]: T MinimumElement +Microsoft.FSharp.Collections.FSharpSet`1[T]: T get_MaximumElement() +Microsoft.FSharp.Collections.FSharpSet`1[T]: T get_MinimumElement() +Microsoft.FSharp.Collections.FSharpSet`1[T]: Void .ctor(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.HashIdentity: System.Collections.Generic.IEqualityComparer`1[T] FromFunctions[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]]) 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Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Boolean ForAll2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Boolean IsEmpty[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Int32 CompareWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], Microsoft.FSharp.Collections.FSharpList`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) 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Transpose[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpList`1[T]]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[T]] Windowed[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[System.Int32,T]] Indexed[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T,T]] Pairwise[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T1,T2]] AllPairs[T1,T2](Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T1,T2]] Zip[T1,T2](Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,Microsoft.FSharp.Collections.FSharpList`1[T]]] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,System.Int32]] CountBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`3[T1,T2,T3]] Zip3[T1,T2,T3](Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2], Microsoft.FSharp.Collections.FSharpList`1[T3]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Collect[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Collections.FSharpList`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2], Microsoft.FSharp.Collections.FSharpList`1[T3]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] MapIndexed2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TState] ScanBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Collections.FSharpList`1[T], TState) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[TState] Scan[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Append[T](Microsoft.FSharp.Collections.FSharpList`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Concat[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpList`1[T]]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] DistinctBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], Microsoft.FSharp.Collections.FSharpList`1[T]) 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Microsoft.FSharp.Collections.FSharpList`1[T] InsertManyAt[T](Int32, System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] OfArray[T](T[]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] OfSeq[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Permute[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.Int32], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomChoicesBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomChoicesWith[T](System.Random, Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomChoices[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomSampleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomSampleWith[T](System.Random, Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomSample[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] RandomShuffleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Microsoft.FSharp.Collections.FSharpList`1[T]) 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SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Sort[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Tail[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] TakeWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Take[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Truncate[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Unfold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[T,TState]]], TState) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] UpdateAt[T](Int32, T, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Collections.FSharpList`1[T] Where[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryExactlyOne[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryHead[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryItem[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryLast[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Collections.Generic.IEnumerable`1[T] ToSeq[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T1],Microsoft.FSharp.Collections.FSharpList`1[T2]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T1],Microsoft.FSharp.Collections.FSharpList`1[T2]] Unzip[T1,T2](Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[T1,T2]]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[TResult],TState] MapFoldBack[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,System.Tuple`2[TResult,TState]]], Microsoft.FSharp.Collections.FSharpList`1[T], TState) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[TResult],TState] MapFold[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Tuple`2[TResult,TState]]], TState, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T],Microsoft.FSharp.Collections.FSharpList`1[T]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[T],Microsoft.FSharp.Collections.FSharpList`1[T]] SplitAt[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: System.Tuple`3[Microsoft.FSharp.Collections.FSharpList`1[T1],Microsoft.FSharp.Collections.FSharpList`1[T2],Microsoft.FSharp.Collections.FSharpList`1[T3]] Unzip3[T1,T2,T3](Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`3[T1,T2,T3]]) +Microsoft.FSharp.Collections.ListModule: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Average[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T ExactlyOne[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T FindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Find[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Get[T](Microsoft.FSharp.Collections.FSharpList`1[T], Int32) +Microsoft.FSharp.Collections.ListModule: T Head[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Item[T](Int32, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Last[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Max[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) 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Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T Sum[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T differentLengthLists[T](System.String, System.String, Int32) +Microsoft.FSharp.Collections.ListModule: T emptyListError[T]() +Microsoft.FSharp.Collections.ListModule: T indexNotFound[T]() +Microsoft.FSharp.Collections.ListModule: T listsDifferentLengths[T]() +Microsoft.FSharp.Collections.ListModule: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult Pick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: TState Fold2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TState]]], TState, Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: TState FoldBack2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2], TState) +Microsoft.FSharp.Collections.ListModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Collections.FSharpList`1[T], TState) +Microsoft.FSharp.Collections.ListModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: T[] ToArray[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Void Iterate2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Void IterateIndexed2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]]], Microsoft.FSharp.Collections.FSharpList`1[T1], Microsoft.FSharp.Collections.FSharpList`1[T2]) +Microsoft.FSharp.Collections.ListModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.ListModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.MapModule: Boolean ContainsKey[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Boolean Exists[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Boolean ForAll[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Boolean IsEmpty[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Int32 Count[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,T]] ToList[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,TResult] Map[TKey,T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Add[TKey,T](TKey, T, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Change[TKey,T](TKey, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.FSharpOption`1[T],Microsoft.FSharp.Core.FSharpOption`1[T]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Empty[TKey,T]() +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Filter[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] OfArray[TKey,T](System.Tuple`2[TKey,T][]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] OfList[TKey,T](Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[TKey,T]]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] OfSeq[TKey,T](System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,T]]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Collections.FSharpMap`2[TKey,T] Remove[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Core.FSharpOption`1[TKey] TryFindKey[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[TKey,T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Collections.Generic.ICollection`1[TKey] Keys[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Collections.Generic.ICollection`1[T] Values[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,T]] ToSeq[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpMap`2[TKey,T],Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]] Partition[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[TKey,T] MaxKeyValue[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[TKey,T] MinKeyValue[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: System.Tuple`2[TKey,T][] ToArray[TKey,T](Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: T Find[TKey,T](TKey, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: TKey FindKey[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: TResult Pick[TKey,T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: TState FoldBack[TKey,T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T], TState) +Microsoft.FSharp.Collections.MapModule: TState Fold[TKey,T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]]], TState, Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.MapModule: Void Iterate[TKey,T](Microsoft.FSharp.Core.FSharpFunc`2[TKey,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Collections.FSharpMap`2[TKey,T]) +Microsoft.FSharp.Collections.SeqModule: Boolean Contains[T](T, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Boolean Exists2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Boolean ForAll2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,System.Boolean]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Boolean IsEmpty[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 CompareWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 FindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 FindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Int32 Length[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndexBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] TryFindIndex[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] TryPick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryExactlyOne[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryFind[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryHead[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryItem[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Microsoft.FSharp.Core.FSharpOption`1[T] TryLast[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Collections.Generic.IEnumerable`1[T]] Transpose[TCollection,T](System.Collections.Generic.IEnumerable`1[TCollection]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[System.Int32,T]] Indexed[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[T,T]] Pairwise[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[T1,T2]] AllPairs[T1,T2](System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[T1,T2]] Zip[T1,T2](System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,System.Collections.Generic.IEnumerable`1[T]]] GroupBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,System.Int32]] CountBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[System.Tuple`3[T1,T2,T3]] Zip3[T1,T2,T3](System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2], System.Collections.Generic.IEnumerable`1[T3]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Collect[T,TCollection,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TCollection], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2], System.Collections.Generic.IEnumerable`1[T3]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] MapIndexed2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] MapIndexed[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TState] ScanBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], System.Collections.Generic.IEnumerable`1[T], TState) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[TState] Scan[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T[]] ChunkBySize[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T[]] SplitInto[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T[]] Windowed[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Append[T](System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Cache[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Cast[T](System.Collections.IEnumerable) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Concat[TCollection,T](System.Collections.Generic.IEnumerable`1[TCollection]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Delay[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Collections.Generic.IEnumerable`1[T]]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] DistinctBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Distinct[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Empty[T]() +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Except[T](System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] InitializeInfinite[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Initialize[T](Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] InsertAt[T](Int32, T, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] InsertManyAt[T](Int32, System.Collections.Generic.IEnumerable`1[T], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] OfArray[T](T[]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] OfList[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Permute[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.Int32], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomChoicesBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomChoicesWith[T](System.Random, Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomChoices[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomSampleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomSampleWith[T](System.Random, Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomSample[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomShuffleBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomShuffleWith[T](System.Random, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RandomShuffle[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] ReadOnly[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RemoveAt[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] RemoveManyAt[T](Int32, Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Replicate[T](Int32, T) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Reverse[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Singleton[T](T) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SkipWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Skip[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortByDescending[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortBy[T,TKey](Microsoft.FSharp.Core.FSharpFunc`2[T,TKey], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortDescending[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] SortWith[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Sort[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Tail[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] TakeWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Take[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Truncate[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Unfold[TState,T](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[T,TState]]], TState) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] UpdateAt[T](Int32, T, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Collections.Generic.IEnumerable`1[T] Where[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: System.Tuple`2[System.Collections.Generic.IEnumerable`1[TResult],TState] MapFoldBack[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,System.Tuple`2[TResult,TState]]], System.Collections.Generic.IEnumerable`1[T], TState) +Microsoft.FSharp.Collections.SeqModule: System.Tuple`2[System.Collections.Generic.IEnumerable`1[TResult],TState] MapFold[T,TState,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Tuple`2[TResult,TState]]], TState, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Average$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Average[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T ExactlyOne[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T FindBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Find[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Get[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Head[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Item[T](Int32, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Last[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T MaxBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Max[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T MinBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Min[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T RandomChoiceBy[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Double], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T RandomChoiceWith[T](System.Random, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T RandomChoice[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T ReduceBack[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Reduce[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Sum$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T Sum[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult AverageBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult AverageBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult Pick[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult SumBy$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[TResult,TResult]], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TResult SumBy[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: TState Fold2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TState]]], TState, System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: TState FoldBack2[T1,T2,TState](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2], TState) +Microsoft.FSharp.Collections.SeqModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], System.Collections.Generic.IEnumerable`1[T], TState) +Microsoft.FSharp.Collections.SeqModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: T[] ToArray[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Void Iterate2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Void IterateIndexed2[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]]], System.Collections.Generic.IEnumerable`1[T1], System.Collections.Generic.IEnumerable`1[T2]) +Microsoft.FSharp.Collections.SeqModule: Void IterateIndexed[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SeqModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean Contains[T](T, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsEmpty[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsProperSubset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsProperSuperset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsSubset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Boolean IsSuperset[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Int32 Count[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Add[T](T, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Difference[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Empty[T]() +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] IntersectMany[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpSet`1[T]]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Intersect[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] OfArray[T](T[]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] OfList[T](Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] OfSeq[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Remove[T](T, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Singleton[T](T) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] UnionMany[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Collections.FSharpSet`1[T]]) +Microsoft.FSharp.Collections.SetModule: Microsoft.FSharp.Collections.FSharpSet`1[T] Union[T](Microsoft.FSharp.Collections.FSharpSet`1[T], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: System.Collections.Generic.IEnumerable`1[T] ToSeq[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpSet`1[T1],Microsoft.FSharp.Collections.FSharpSet`1[T2]] PartitionWith[T,T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: System.Tuple`2[Microsoft.FSharp.Collections.FSharpSet`1[T],Microsoft.FSharp.Collections.FSharpSet`1[T]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: T MaxElement[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: T MinElement[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Collections.FSharpSet`1[T], TState) +Microsoft.FSharp.Collections.SetModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: T[] ToArray[T](Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Collections.SetModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Collections.FSharpSet`1[T]) +Microsoft.FSharp.Control.AsyncActivation`1[T]: Boolean IsCancellationRequested +Microsoft.FSharp.Control.AsyncActivation`1[T]: Boolean get_IsCancellationRequested() +Microsoft.FSharp.Control.AsyncActivation`1[T]: Microsoft.FSharp.Control.AsyncReturn OnCancellation() +Microsoft.FSharp.Control.AsyncActivation`1[T]: Microsoft.FSharp.Control.AsyncReturn OnSuccess(T) +Microsoft.FSharp.Control.AsyncActivation`1[T]: Microsoft.FSharp.Control.AsyncReturn Success(Microsoft.FSharp.Control.AsyncActivation`1[T], T) +Microsoft.FSharp.Control.AsyncActivation`1[T]: Void OnExceptionRaised() +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpResult`2[T,System.Exception]] Catch[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Empty +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Ignore[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] ParallelDoLimit(Int32, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SequentialDo(System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] get_Empty() +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[TResult]], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[T[]] ParallelLimit[T](Int32, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[T] CatchWith[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,T], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.AsyncModule: Microsoft.FSharp.Control.FSharpAsync`1[T] Result[T](T) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn Bind[T,TResult](Microsoft.FSharp.Control.AsyncActivation`1[T], Microsoft.FSharp.Control.FSharpAsync`1[TResult], Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn CallThenInvoke[T,TResult](Microsoft.FSharp.Control.AsyncActivation`1[T], TResult, Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn Invoke[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Control.AsyncActivation`1[T]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn TryFinally[T](Microsoft.FSharp.Control.AsyncActivation`1[T], Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.AsyncReturn TryWith[T](Microsoft.FSharp.Control.AsyncActivation`1[T], Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]]) +Microsoft.FSharp.Control.AsyncPrimitives: Microsoft.FSharp.Control.FSharpAsync`1[T] MakeAsync[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.AsyncActivation`1[T],Microsoft.FSharp.Control.AsyncReturn]) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.Await.Static$W[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,T], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], TTaskLike) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.Await.Static[TTaskLike,TAwaiter,T](TTaskLike) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.StartTaskImmediate.Static$W[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,T], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,TTaskLike]) +Microsoft.FSharp.Control.AsyncTaskLikeExtensions: Microsoft.FSharp.Control.FSharpAsync`1[T] Async.StartTaskImmediate.Static[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,TTaskLike]) +Microsoft.FSharp.Control.BackgroundTaskBuilder: System.Threading.Tasks.Task`1[T] RunDynamic[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.BackgroundTaskBuilder: System.Threading.Tasks.Task`1[T] Run[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.CommonExtensions: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] AsyncWrite(System.IO.Stream, Byte[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.CommonExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Byte[]] AsyncReadBytes(System.IO.Stream, Int32) +Microsoft.FSharp.Control.CommonExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Int32] AsyncRead(System.IO.Stream, Byte[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.CommonExtensions: System.IDisposable SubscribeToObservable[T](System.IObservable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.CommonExtensions: Void AddToObservable[T](System.IObservable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[System.Tuple`2[T,T]],System.Tuple`2[T,T]] Pairwise[TDel,T](Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult],TResult] Choose[T,TResult,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult],TResult] Map[T,TResult,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult],TResult] Scan[TResult,T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], TResult, Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] Filter[T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] Merge[TDel1,T,TDel2](Microsoft.FSharp.Control.IEvent`2[TDel1,T], Microsoft.FSharp.Control.IEvent`2[TDel2,T]) +Microsoft.FSharp.Control.EventModule: System.Tuple`2[Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult1],TResult1],Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[TResult2],TResult2]] Split[T,TResult1,TResult2,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[TResult1,TResult2]], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: System.Tuple`2[Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T],Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T]] Partition[T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.EventModule: Void Add[T,TDel](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Control.IEvent`2[TDel,T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Control.FSharpAsync`1[T]] StartChild[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpChoice`2[T,System.Exception]] Catch[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[T]] Choice[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[T]]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Await(System.Threading.Tasks.Task) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Await(System.Threading.Tasks.ValueTask) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] AwaitTask(System.Threading.Tasks.Task) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Ignore[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Sleep(Int32) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Sleep(System.TimeSpan) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] StartTaskImmediate(Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] StartTaskImmediate(Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.ValueTask]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SwitchToContext(System.Threading.SynchronizationContext) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SwitchToNewThread() +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] SwitchToThreadPool() +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Boolean] AwaitIAsyncResult(System.IAsyncResult, Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Boolean] AwaitWaitHandle(System.Threading.WaitHandle, Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.IDisposable] OnCancel(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Threading.CancellationToken] CancellationToken +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Threading.CancellationToken] get_CancellationToken() +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[System.Threading.Tasks.Task`1[T]] StartChildAsTask[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.Tasks.TaskCreationOptions]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T[]] Parallel[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T[]] Parallel[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T[]] Sequential[T](System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] AwaitEvent[TDel,T](Microsoft.FSharp.Control.IEvent`2[TDel,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] AwaitTask[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] Await[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] Await[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[TArg1,TArg2,TArg3,T](TArg1, TArg2, TArg3, Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`5[TArg1,TArg2,TArg3,System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[TArg1,TArg2,T](TArg1, TArg2, Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`4[TArg1,TArg2,System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[TArg1,T](TArg1, Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[TArg1,System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromBeginEnd[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`2[System.AsyncCallback,System.Object],System.IAsyncResult], Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T], Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] FromContinuations[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit],Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.Unit],Microsoft.FSharp.Core.FSharpFunc`2[System.OperationCanceledException,Microsoft.FSharp.Core.Unit]],Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] StartTaskImmediate[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] StartTaskImmediate[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.ValueTask`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: Microsoft.FSharp.Control.FSharpAsync`1[T] TryCancelled[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.OperationCanceledException,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsync: System.Threading.CancellationToken DefaultCancellationToken +Microsoft.FSharp.Control.FSharpAsync: System.Threading.CancellationToken get_DefaultCancellationToken() +Microsoft.FSharp.Control.FSharpAsync: System.Threading.Tasks.Task`1[T] StartAsTask[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.Tasks.TaskCreationOptions], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: System.Threading.Tasks.Task`1[T] StartImmediateAsTask[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: System.Tuple`3[Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[TArg,System.AsyncCallback,System.Object],System.IAsyncResult],Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,T],Microsoft.FSharp.Core.FSharpFunc`2[System.IAsyncResult,Microsoft.FSharp.Core.Unit]] AsBeginEnd[TArg,T](Microsoft.FSharp.Core.FSharpFunc`2[TArg,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsync: T RunSynchronouslyImmediate[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: T RunSynchronously[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: Void CancelDefaultToken() +Microsoft.FSharp.Control.FSharpAsync: Void Start(Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: Void StartImmediate(Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsync: Void StartWithContinuations[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[System.OperationCanceledException,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] For[T](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] While(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] Zero() +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Bind[T,TResult](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[TResult]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[TResult] Using[T,TResult](T, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Control.FSharpAsync`1[TResult]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] Combine[T](Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] Delay[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] ReturnFrom[T](Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] Return[T](T) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] TryFinally[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.FSharpAsyncBuilder: Microsoft.FSharp.Control.FSharpAsync`1[T] TryWith[T](Microsoft.FSharp.Control.FSharpAsync`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Control.FSharpAsync`1[T]]) +Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply]: Void Reply(TReply) +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate] Publish +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate] get_Publish() +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Void .ctor() +Microsoft.FSharp.Control.FSharpDelegateEvent`1[TDelegate]: Void Trigger(System.Object[]) +Microsoft.FSharp.Control.FSharpEvent`1[T]: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] Publish +Microsoft.FSharp.Control.FSharpEvent`1[T]: Microsoft.FSharp.Control.IEvent`2[Microsoft.FSharp.Control.FSharpHandler`1[T],T] get_Publish() +Microsoft.FSharp.Control.FSharpEvent`1[T]: Void .ctor() +Microsoft.FSharp.Control.FSharpEvent`1[T]: Void Trigger(T) +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Microsoft.FSharp.Control.IEvent`2[TDelegate,TArgs] Publish +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Microsoft.FSharp.Control.IEvent`2[TDelegate,TArgs] get_Publish() +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Void .ctor() +Microsoft.FSharp.Control.FSharpEvent`2[TDelegate,TArgs]: Void Trigger(System.Object, TArgs) +Microsoft.FSharp.Control.FSharpHandler`1[T]: System.IAsyncResult BeginInvoke(System.Object, T, System.AsyncCallback, System.Object) +Microsoft.FSharp.Control.FSharpHandler`1[T]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Control.FSharpHandler`1[T]: Void EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Control.FSharpHandler`1[T]: Void Invoke(System.Object, T) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 CurrentQueueLength +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 DefaultTimeout +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 get_CurrentQueueLength() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Int32 get_DefaultTimeout() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[TMsg]] TryReceive(Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[TReply]] PostAndTryAsyncReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.FSharpOption`1[T]] TryScan[T](Microsoft.FSharp.Core.FSharpFunc`2[TMsg,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[TMsg] Receive(Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[TReply] PostAndAsyncReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpAsync`1[T] Scan[T](Microsoft.FSharp.Core.FSharpFunc`2[TMsg,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Control.FSharpAsync`1[T]]], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpHandler`1[System.Exception] Error +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] Start(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Boolean, Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] Start(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] StartImmediate(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Boolean, Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg] StartImmediate(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Microsoft.FSharp.Core.FSharpOption`1[TReply] TryPostAndReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: TReply PostAndReply[TReply](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpAsyncReplyChannel`1[TReply],TMsg], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Boolean, Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg],Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit]], Microsoft.FSharp.Core.FSharpOption`1[System.Threading.CancellationToken]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void Dispose() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void Post(TMsg) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void Start() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void StartImmediate() +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void add_Error(Microsoft.FSharp.Control.FSharpHandler`1[System.Exception]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void remove_Error(Microsoft.FSharp.Control.FSharpHandler`1[System.Exception]) +Microsoft.FSharp.Control.FSharpMailboxProcessor`1[TMsg]: Void set_DefaultTimeout(Int32) +Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate]: Void AddHandler(TDelegate) +Microsoft.FSharp.Control.IDelegateEvent`1[TDelegate]: Void RemoveHandler(TDelegate) +Microsoft.FSharp.Control.LazyExtensions: System.Lazy`1[T] CreateFromValue[T](T) +Microsoft.FSharp.Control.LazyExtensions: System.Lazy`1[T] Create[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Control.LazyExtensions: T Force[T](System.Lazy`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IDisposable Subscribe[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[System.Tuple`2[T,T]] Pairwise[T](System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[TResult] Choose[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[TResult] Scan[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]], TResult, System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.IObservable`1[T] Merge[T](System.IObservable`1[T], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.Tuple`2[System.IObservable`1[TResult1],System.IObservable`1[TResult2]] Split[T,TResult1,TResult2](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpChoice`2[TResult1,TResult2]], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: System.Tuple`2[System.IObservable`1[T],System.IObservable`1[T]] Partition[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], System.IObservable`1[T]) +Microsoft.FSharp.Control.ObservableModule: Void Add[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], System.IObservable`1[T]) +Microsoft.FSharp.Control.TaskBuilder: System.Threading.Tasks.Task`1[T] RunDynamic[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.TaskBuilder: System.Threading.Tasks.Task`1[T] Run[T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit] For[T,TOverall](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit] While[TOverall](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit] Zero[TOverall]() +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] Combine[TOverall,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] Delay[TOverall,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] TryFinally[TOverall,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] TryWith[TOverall,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] Using[TResource,TOverall,T](TResource, Microsoft.FSharp.Core.FSharpFunc`2[TResource,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderBase: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] Return[T](T) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: Boolean TaskBuilderBase.BindDynamic.Static[TOverall,TResult1,TResult2](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall]] ByRef, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind[TResult1,TOverall,TResult2](Microsoft.FSharp.Control.TaskBuilderBase, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom[T](Microsoft.FSharp.Control.TaskBuilderBase, System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.HighPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPlusPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Boolean TaskBuilderBase.BindDynamic.Static$W[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall]] ByRef, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Boolean TaskBuilderBase.BindDynamic.Static[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall]] ByRef, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind$W[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind[TTaskLike,TResult1,TResult2,TAwaiter,TOverall](Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike, Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T] TaskBuilderBase.Using[TResource,TOverall,T](Microsoft.FSharp.Control.TaskBuilderBase, TResource, Microsoft.FSharp.Core.FSharpFunc`2[TResource,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],T]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom$W[TTaskLike,TAwaiter,T](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike,TAwaiter], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,T], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter,System.Boolean], Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom[TTaskLike,TAwaiter,T](Microsoft.FSharp.Control.TaskBuilderBase, TTaskLike) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.LowPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike1,TTaskLike2,TResult1,TResult2,TAwaiter1,TAwaiter2](Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2] TaskBuilderBase.Bind[TResult1,TOverall,TResult2](Microsoft.FSharp.Control.TaskBuilderBase, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TResult1,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[TOverall],TResult2]]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[Microsoft.FSharp.Control.TaskStateMachineData`1[T],T] TaskBuilderBase.ReturnFrom[T](Microsoft.FSharp.Control.TaskBuilderBase, Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.BackgroundTaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] BackgroundTaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.BackgroundTaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike1,TAwaiter1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,TResult1], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter1,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources$W[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Core.FSharpFunc`2[TTaskLike2,TAwaiter2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,TResult2], Microsoft.FSharp.Core.FSharpFunc`2[TAwaiter2,System.Boolean], Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, Microsoft.FSharp.Control.FSharpAsync`1[TResult1], System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TResult1,TResult2](Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], Microsoft.FSharp.Control.FSharpAsync`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike1,TResult1,TResult2,TAwaiter1](Microsoft.FSharp.Control.TaskBuilder, TTaskLike1, System.Threading.Tasks.Task`1[TResult2]) +Microsoft.FSharp.Control.TaskBuilderExtensions.MediumPriority: System.Threading.Tasks.Task`1[System.ValueTuple`2[TResult1,TResult2]] TaskBuilder.MergeSources[TTaskLike2,TResult1,TResult2,TAwaiter2](Microsoft.FSharp.Control.TaskBuilder, System.Threading.Tasks.Task`1[TResult1], TTaskLike2) +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.BackgroundTaskBuilder backgroundTask +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.BackgroundTaskBuilder get_backgroundTask() +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.TaskBuilder get_task() +Microsoft.FSharp.Control.TaskBuilderModule: Microsoft.FSharp.Control.TaskBuilder task +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.FSharpResult`2[T,System.Exception]] Catch[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] Empty +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] Ignore[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] ParallelDoLimit(Int32, System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] SequentialDo(System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[Microsoft.FSharp.Core.Unit] get_Empty() +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Threading.Tasks.Task`1[TResult]], System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T[]] ParallelLimit[T](Int32, System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[T]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T[]] Sequential[T](System.Threading.CancellationToken, System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Core.FSharpFunc`2[System.Threading.CancellationToken,System.Threading.Tasks.Task`1[T]]]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] CatchWith[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,T], System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] OfValueTask[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] Result[T](T) +Microsoft.FSharp.Control.TaskModule: System.Threading.Tasks.Task`1[T] StartAsyncImmediate[T](System.Threading.CancellationToken, Microsoft.FSharp.Control.FSharpAsync`1[T]) +Microsoft.FSharp.Control.TaskStateMachineData`1[T]: System.Runtime.CompilerServices.AsyncTaskMethodBuilder`1[T] MethodBuilder +Microsoft.FSharp.Control.TaskStateMachineData`1[T]: T Result +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.FSharpResult`2[T,System.Exception]] Catch[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.Unit] Empty +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.Unit] Ignore[T](System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[Microsoft.FSharp.Core.Unit] get_Empty() +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Threading.Tasks.ValueTask`1[TResult]], System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[T] CatchWith[T](Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,T], System.Threading.Tasks.ValueTask`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[T] OfTask[T](System.Threading.Tasks.Task`1[T]) +Microsoft.FSharp.Control.ValueTaskModule: System.Threading.Tasks.ValueTask`1[T] Result[T](T) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[Microsoft.FSharp.Core.Unit] AsyncDownloadFile(System.Net.WebClient, System.Uri, System.String) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Byte[]] AsyncDownloadData(System.Net.WebClient, System.Uri) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.Net.WebResponse] AsyncGetResponse(System.Net.WebRequest) +Microsoft.FSharp.Control.WebExtensions: Microsoft.FSharp.Control.FSharpAsync`1[System.String] AsyncDownloadString(System.Net.WebClient, System.Uri) +Microsoft.FSharp.Core.AbstractClassAttribute: Void .ctor() +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Boolean Value +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Boolean get_Value() +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Void .ctor() +Microsoft.FSharp.Core.AllowNullLiteralAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.AllowOverloadOnReturnTypeAttribute: Void .ctor() +Microsoft.FSharp.Core.AutoOpenAttribute: System.String Path +Microsoft.FSharp.Core.AutoOpenAttribute: System.String get_Path() +Microsoft.FSharp.Core.AutoOpenAttribute: Void .ctor() +Microsoft.FSharp.Core.AutoOpenAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.AutoSerializableAttribute: Boolean Value +Microsoft.FSharp.Core.AutoSerializableAttribute: Boolean get_Value() +Microsoft.FSharp.Core.AutoSerializableAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.ByRefKinds: Microsoft.FSharp.Core.ByRefKinds+In +Microsoft.FSharp.Core.ByRefKinds: Microsoft.FSharp.Core.ByRefKinds+InOut +Microsoft.FSharp.Core.ByRefKinds: Microsoft.FSharp.Core.ByRefKinds+Out +Microsoft.FSharp.Core.CLIEventAttribute: Void .ctor() +Microsoft.FSharp.Core.CLIMutableAttribute: Void .ctor() +Microsoft.FSharp.Core.ClassAttribute: Void .ctor() +Microsoft.FSharp.Core.ComparisonConditionalOnAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilationArgumentCountsAttribute: System.Collections.Generic.IEnumerable`1[System.Int32] Counts +Microsoft.FSharp.Core.CompilationArgumentCountsAttribute: System.Collections.Generic.IEnumerable`1[System.Int32] get_Counts() +Microsoft.FSharp.Core.CompilationArgumentCountsAttribute: Void .ctor(Int32[]) +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 SequenceNumber +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 VariantNumber +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 get_SequenceNumber() +Microsoft.FSharp.Core.CompilationMappingAttribute: Int32 get_VariantNumber() +Microsoft.FSharp.Core.CompilationMappingAttribute: Microsoft.FSharp.Core.SourceConstructFlags SourceConstructFlags +Microsoft.FSharp.Core.CompilationMappingAttribute: Microsoft.FSharp.Core.SourceConstructFlags get_SourceConstructFlags() +Microsoft.FSharp.Core.CompilationMappingAttribute: System.String ResourceName +Microsoft.FSharp.Core.CompilationMappingAttribute: System.String get_ResourceName() +Microsoft.FSharp.Core.CompilationMappingAttribute: System.Type[] TypeDefinitions +Microsoft.FSharp.Core.CompilationMappingAttribute: System.Type[] get_TypeDefinitions() +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(Microsoft.FSharp.Core.SourceConstructFlags) +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(Microsoft.FSharp.Core.SourceConstructFlags, Int32) +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(Microsoft.FSharp.Core.SourceConstructFlags, Int32, Int32) +Microsoft.FSharp.Core.CompilationMappingAttribute: Void .ctor(System.String, System.Type[]) +Microsoft.FSharp.Core.CompilationRepresentationAttribute: Microsoft.FSharp.Core.CompilationRepresentationFlags Flags +Microsoft.FSharp.Core.CompilationRepresentationAttribute: Microsoft.FSharp.Core.CompilationRepresentationFlags get_Flags() +Microsoft.FSharp.Core.CompilationRepresentationAttribute: Void .ctor(Microsoft.FSharp.Core.CompilationRepresentationFlags) +Microsoft.FSharp.Core.CompilationRepresentationFlags: Int32 value__ +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags Event +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags Instance +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags ModuleSuffix +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags None +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags Static +Microsoft.FSharp.Core.CompilationRepresentationFlags: Microsoft.FSharp.Core.CompilationRepresentationFlags UseNullAsTrueValue +Microsoft.FSharp.Core.CompilationSourceNameAttribute: System.String SourceName +Microsoft.FSharp.Core.CompilationSourceNameAttribute: System.String get_SourceName() +Microsoft.FSharp.Core.CompilationSourceNameAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CompiledNameAttribute: System.String CompiledName +Microsoft.FSharp.Core.CompiledNameAttribute: System.String get_CompiledName() +Microsoft.FSharp.Core.CompiledNameAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean IsError +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean IsHidden +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean get_IsError() +Microsoft.FSharp.Core.CompilerMessageAttribute: Boolean get_IsHidden() +Microsoft.FSharp.Core.CompilerMessageAttribute: Int32 MessageNumber +Microsoft.FSharp.Core.CompilerMessageAttribute: Int32 get_MessageNumber() +Microsoft.FSharp.Core.CompilerMessageAttribute: System.String Message +Microsoft.FSharp.Core.CompilerMessageAttribute: System.String get_Message() +Microsoft.FSharp.Core.CompilerMessageAttribute: Void .ctor(System.String, Int32) +Microsoft.FSharp.Core.CompilerMessageAttribute: Void set_IsError(Boolean) +Microsoft.FSharp.Core.CompilerMessageAttribute: Void set_IsHidden(Boolean) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: TResult EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: TResult Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: T[] AddManyAndClose(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: T[] Close() +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: Void Add(T) +Microsoft.FSharp.Core.CompilerServices.ArrayCollector`1[T]: Void AddMany(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T] GetFreshEnumerator() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: Void SetCancellationToken(System.Threading.CancellationToken) +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: System.Threading.Tasks.ValueTask DisposeAsync() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: System.Threading.Tasks.ValueTask`1[System.Boolean] MoveNextAsync() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: T Current +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: T get_Current() +Microsoft.FSharp.Core.CompilerServices.GeneratedRuntimeAsyncSequenceBase`1[T]: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Boolean CheckClose +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Boolean get_CheckClose() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Int32 GenerateNext(System.Collections.Generic.IEnumerable`1[T] ByRef) +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: System.Collections.Generic.IEnumerator`1[T] GetFreshEnumerator() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: T LastGenerated +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: T get_LastGenerated() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.GeneratedSequenceBase`1[T]: Void Close() +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace[] GetNestedNamespaces() +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.String NamespaceName +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.String get_NamespaceName() +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.Type ResolveTypeName(System.String) +Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace: System.Type[] GetTypes() +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: Int32 ResumptionPoint +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: Int32 get_ResumptionPoint() +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: TData Data +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: TData get_Data() +Microsoft.FSharp.Core.CompilerServices.IResumableStateMachine`1[TData]: Void set_Data(TData) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider2: System.Reflection.MethodBase ApplyStaticArgumentsForMethod(System.Reflection.MethodBase, System.String, System.Object[]) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider2: System.Reflection.ParameterInfo[] GetStaticParametersForMethod(System.Reflection.MethodBase) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Byte[] GetGeneratedAssemblyContents(System.Reflection.Assembly) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Microsoft.FSharp.Core.CompilerServices.IProvidedNamespace[] GetNamespaces() +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Microsoft.FSharp.Quotations.FSharpExpr GetInvokerExpression(System.Reflection.MethodBase, Microsoft.FSharp.Quotations.FSharpExpr[]) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: System.EventHandler Invalidate +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: System.Reflection.ParameterInfo[] GetStaticParameters(System.Type) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: System.Type ApplyStaticArguments(System.Type, System.String[], System.Object[]) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Void add_Invalidate(System.EventHandler) +Microsoft.FSharp.Core.CompilerServices.ITypeProvider: Void remove_Invalidate(System.EventHandler) +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] AddManyAndClose(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Microsoft.FSharp.Collections.FSharpList`1[T] Close() +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Void Add(T) +Microsoft.FSharp.Core.CompilerServices.ListCollector`1[T]: Void AddMany(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: Void EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData]: Void Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.NoEagerConstraintApplicationAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean CombineDynamic[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean TryFinallyAsyncDynamic[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean TryWithDynamic[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean WhileDynamic[TData](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Boolean YieldDynamic[TData](Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] For[T,TData](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] While[TData](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] Yield[TData]() +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit] Zero[TData]() +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] Combine[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] Delay[TData,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] TryFinallyAsync[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] TryFinally[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] TryWith[TData,T](Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode: Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T] Using[TResource,TData,T](TResource, Microsoft.FSharp.Core.FSharpFunc`2[TResource,Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]]) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: Boolean EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: Boolean Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.ResumableCode`2[TData,T]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData]: Int32 ResumptionPoint +Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData]: Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData] ResumptionDynamicInfo +Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData]: TData Data +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData] ResumptionFunc +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData] get_ResumptionFunc() +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: System.Object ResumptionData +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: System.Object get_ResumptionData() +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void .ctor(Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void MoveNext(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void SetStateMachine(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.Runtime.CompilerServices.IAsyncStateMachine) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void set_ResumptionData(System.Object) +Microsoft.FSharp.Core.CompilerServices.ResumptionDynamicInfo`1[TData]: Void set_ResumptionFunc(Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: Boolean EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: Boolean Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.ResumptionFunc`1[TData]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: Microsoft.FSharp.Control.IEvent`2[TDelegate,TArgs] CreateEvent[TDelegate,TArgs](Microsoft.FSharp.Core.FSharpFunc`2[TDelegate,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[TDelegate,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.FSharpFunc`2[System.Object,Microsoft.FSharp.Core.FSharpFunc`2[TArgs,Microsoft.FSharp.Core.Unit]],TDelegate]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[TResult] EnumerateFromFunctions[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[TResult] EnumerateUsing[T,TCollection,TResult](T, Microsoft.FSharp.Core.FSharpFunc`2[T,TCollection]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[T] EnumerateThenFinally[T](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[T] EnumerateTryWith[T](System.Collections.Generic.IEnumerable`1[T], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,System.Int32], Microsoft.FSharp.Core.FSharpFunc`2[System.Exception,System.Collections.Generic.IEnumerable`1[T]]) +Microsoft.FSharp.Core.CompilerServices.RuntimeHelpers: System.Collections.Generic.IEnumerable`1[T] EnumerateWhile[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Boolean], System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: System.IAsyncResult BeginInvoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.Runtime.CompilerServices.IAsyncStateMachine, System.AsyncCallback, System.Object) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: Void .ctor(System.Object, IntPtr) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: Void EndInvoke(System.IAsyncResult) +Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData]: Void Invoke(Microsoft.FSharp.Core.CompilerServices.ResumableStateMachine`1[TData] ByRef, System.Runtime.CompilerServices.IAsyncStateMachine) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: Boolean __useResumableCode[T]() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] __resumableEntry() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Collections.Generic.IAsyncEnumerable`1[T] __runtimeAsyncSequence[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.Collections.Generic.IEnumerable`1[T]]) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.CancellationToken __runtimeAsyncSequenceCancellationToken() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.Task __runtimeAsyncReturnUnit() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.Task`1[T] __runtimeAsyncReturn[T](T) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.ValueTask __runtimeAsyncReturnValueTaskUnit() +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: System.Threading.Tasks.ValueTask`1[T] __runtimeAsyncReturnValueTask[T](T) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: T __resumeAt[T](Int32) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: TResult __stateMachine[TData,TResult](Microsoft.FSharp.Core.CompilerServices.MoveNextMethodImpl`1[TData], Microsoft.FSharp.Core.CompilerServices.SetStateMachineMethodImpl`1[TData], Microsoft.FSharp.Core.CompilerServices.AfterCode`2[TData,TResult]) +Microsoft.FSharp.Core.CompilerServices.StateMachineHelpers: Void __debugPoint(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: System.String AssemblyName +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: System.String get_AssemblyName() +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderAssemblyAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean IsHostedExecution +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean IsInvalidationSupported +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean SystemRuntimeContainsType(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean get_IsHostedExecution() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Boolean get_IsInvalidationSupported() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String ResolutionFolder +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String RuntimeAssembly +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String TemporaryFolder +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String get_ResolutionFolder() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String get_RuntimeAssembly() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String get_TemporaryFolder() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String[] ReferencedAssemblies +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.String[] get_ReferencedAssemblies() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.Version SystemRuntimeAssemblyVersion +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: System.Version get_SystemRuntimeAssemblyVersion() +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[System.String,System.Boolean]) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void .ctor(Microsoft.FSharp.Core.FSharpFunc`2[System.String,System.Boolean], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,System.String[]]) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_IsHostedExecution(Boolean) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_IsInvalidationSupported(Boolean) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_ReferencedAssemblies(System.String[]) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_ResolutionFolder(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_RuntimeAssembly(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_SystemRuntimeAssemblyVersion(System.Version) +Microsoft.FSharp.Core.CompilerServices.TypeProviderConfig: Void set_TemporaryFolder(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 Column +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 Line +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 get_Column() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Int32 get_Line() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: System.String FilePath +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: System.String get_FilePath() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void set_Column(Int32) +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void set_FilePath(System.String) +Microsoft.FSharp.Core.CompilerServices.TypeProviderDefinitionLocationAttribute: Void set_Line(Int32) +Microsoft.FSharp.Core.CompilerServices.TypeProviderEditorHideMethodsAttribute: Void .ctor() +Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes: Int32 value__ +Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes: Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes IsErased +Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes: Microsoft.FSharp.Core.CompilerServices.TypeProviderTypeAttributes SuppressRelocate +Microsoft.FSharp.Core.CompilerServices.TypeProviderXmlDocAttribute: System.String CommentText +Microsoft.FSharp.Core.CompilerServices.TypeProviderXmlDocAttribute: System.String get_CommentText() +Microsoft.FSharp.Core.CompilerServices.TypeProviderXmlDocAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CustomComparisonAttribute: Void .ctor() +Microsoft.FSharp.Core.CustomEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean AllowIntoPattern +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean IsLikeGroupJoin +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean IsLikeJoin +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean IsLikeZip +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean MaintainsVariableSpace +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean MaintainsVariableSpaceUsingBind +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_AllowIntoPattern() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_IsLikeGroupJoin() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_IsLikeJoin() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_IsLikeZip() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_MaintainsVariableSpace() +Microsoft.FSharp.Core.CustomOperationAttribute: Boolean get_MaintainsVariableSpaceUsingBind() +Microsoft.FSharp.Core.CustomOperationAttribute: System.String JoinConditionWord +Microsoft.FSharp.Core.CustomOperationAttribute: System.String Name +Microsoft.FSharp.Core.CustomOperationAttribute: System.String get_JoinConditionWord() +Microsoft.FSharp.Core.CustomOperationAttribute: System.String get_Name() +Microsoft.FSharp.Core.CustomOperationAttribute: Void .ctor() +Microsoft.FSharp.Core.CustomOperationAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_AllowIntoPattern(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_IsLikeGroupJoin(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_IsLikeJoin(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_IsLikeZip(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_JoinConditionWord(System.String) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_MaintainsVariableSpace(Boolean) +Microsoft.FSharp.Core.CustomOperationAttribute: Void set_MaintainsVariableSpaceUsingBind(Boolean) +Microsoft.FSharp.Core.DefaultAugmentationAttribute: Boolean Value +Microsoft.FSharp.Core.DefaultAugmentationAttribute: Boolean get_Value() +Microsoft.FSharp.Core.DefaultAugmentationAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.DefaultValueAttribute: Boolean Check +Microsoft.FSharp.Core.DefaultValueAttribute: Boolean get_Check() +Microsoft.FSharp.Core.DefaultValueAttribute: Void .ctor() +Microsoft.FSharp.Core.DefaultValueAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.EntryPointAttribute: Void .ctor() +Microsoft.FSharp.Core.EqualityConditionalOnAttribute: Void .ctor() +Microsoft.FSharp.Core.ExperimentalAttribute: System.String Message +Microsoft.FSharp.Core.ExperimentalAttribute: System.String get_Message() +Microsoft.FSharp.Core.ExperimentalAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: Byte ToByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked: SByte ToSByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Byte ToByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Double ToDouble$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Double ToDouble[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Collections.FSharpSet`1[T] CreateSet[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Control.FSharpAsyncBuilder DefaultAsyncBuilder +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Control.FSharpAsyncBuilder get_DefaultAsyncBuilder() +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Core.ExtraTopLevelOperators+Checked +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Linq.QueryBuilder get_query() +Microsoft.FSharp.Core.ExtraTopLevelOperators: Microsoft.FSharp.Linq.QueryBuilder query +Microsoft.FSharp.Core.ExtraTopLevelOperators: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: SByte ToSByte[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Single ToSingle$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Single ToSingle[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: System.Collections.Generic.IDictionary`2[TKey,TValue] CreateDictionary[TKey,TValue](System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,TValue]]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: System.Collections.Generic.IReadOnlyDictionary`2[TKey,TValue] CreateReadOnlyDictionary[TKey,TValue](System.Collections.Generic.IEnumerable`1[System.Tuple`2[TKey,TValue]]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T LazyPattern[T](System.Lazy`1[T]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatLineToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatLineToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatLine[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToStringThenFail[T,TResult](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToString[T](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,System.String]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormatToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T PrintFormat[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T SpliceExpression[T](Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T SpliceUntypedExpression[T](Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Core.ExtraTopLevelOperators: T[,] CreateArray2D[a,T](System.Collections.Generic.IEnumerable`1[a]) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Void PrintValueLine[T](T) +Microsoft.FSharp.Core.ExtraTopLevelOperators: Void PrintValue[T](T) +Microsoft.FSharp.Core.FSharpChoice`2+Choice1Of2[T1,T2]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`2+Choice1Of2[T1,T2]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`2+Choice2Of2[T1,T2]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`2+Choice2Of2[T1,T2]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`2+Tags[T1,T2]: Int32 Choice1Of2 +Microsoft.FSharp.Core.FSharpChoice`2+Tags[T1,T2]: Int32 Choice2Of2 +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`2[T1,T2], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean IsChoice1Of2 +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean IsChoice2Of2 +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean get_IsChoice1Of2() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Boolean get_IsChoice2Of2() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2+Choice1Of2[T1,T2] +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2+Choice2Of2[T1,T2] +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2+Tags[T1,T2] +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2[T1,T2] NewChoice1Of2(T1) +Microsoft.FSharp.Core.FSharpChoice`2[T1,T2]: Microsoft.FSharp.Core.FSharpChoice`2[T1,T2] NewChoice2Of2(T2) +Microsoft.FSharp.Core.FSharpChoice`3+Choice1Of3[T1,T2,T3]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`3+Choice1Of3[T1,T2,T3]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`3+Choice2Of3[T1,T2,T3]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`3+Choice2Of3[T1,T2,T3]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`3+Choice3Of3[T1,T2,T3]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`3+Choice3Of3[T1,T2,T3]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3]: Int32 Choice1Of3 +Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3]: Int32 Choice2Of3 +Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3]: Int32 Choice3Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean IsChoice1Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean IsChoice2Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean IsChoice3Of3 +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean get_IsChoice1Of3() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean get_IsChoice2Of3() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Boolean get_IsChoice3Of3() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Choice1Of3[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Choice2Of3[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Choice3Of3[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3+Tags[T1,T2,T3] +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3] NewChoice1Of3(T1) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3] NewChoice2Of3(T2) +Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3]: Microsoft.FSharp.Core.FSharpChoice`3[T1,T2,T3] NewChoice3Of3(T3) +Microsoft.FSharp.Core.FSharpChoice`4+Choice1Of4[T1,T2,T3,T4]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice1Of4[T1,T2,T3,T4]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Choice2Of4[T1,T2,T3,T4]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice2Of4[T1,T2,T3,T4]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Choice3Of4[T1,T2,T3,T4]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice3Of4[T1,T2,T3,T4]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Choice4Of4[T1,T2,T3,T4]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`4+Choice4Of4[T1,T2,T3,T4]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice1Of4 +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice2Of4 +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice3Of4 +Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4]: Int32 Choice4Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice1Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice2Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice3Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean IsChoice4Of4 +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice1Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice2Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice3Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Boolean get_IsChoice4Of4() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice1Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice2Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice3Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Choice4Of4[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4+Tags[T1,T2,T3,T4] +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice1Of4(T1) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice2Of4(T2) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice3Of4(T3) +Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4]: Microsoft.FSharp.Core.FSharpChoice`4[T1,T2,T3,T4] NewChoice4Of4(T4) +Microsoft.FSharp.Core.FSharpChoice`5+Choice1Of5[T1,T2,T3,T4,T5]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice1Of5[T1,T2,T3,T4,T5]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice2Of5[T1,T2,T3,T4,T5]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice2Of5[T1,T2,T3,T4,T5]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice3Of5[T1,T2,T3,T4,T5]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice3Of5[T1,T2,T3,T4,T5]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice4Of5[T1,T2,T3,T4,T5]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice4Of5[T1,T2,T3,T4,T5]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Choice5Of5[T1,T2,T3,T4,T5]: T5 Item +Microsoft.FSharp.Core.FSharpChoice`5+Choice5Of5[T1,T2,T3,T4,T5]: T5 get_Item() +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice1Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice2Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice3Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice4Of5 +Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5]: Int32 Choice5Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice1Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice2Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice3Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice4Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean IsChoice5Of5 +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice1Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice2Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice3Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice4Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Boolean get_IsChoice5Of5() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice1Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice2Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice3Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice4Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Choice5Of5[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5+Tags[T1,T2,T3,T4,T5] +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice1Of5(T1) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice2Of5(T2) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice3Of5(T3) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice4Of5(T4) +Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5]: Microsoft.FSharp.Core.FSharpChoice`5[T1,T2,T3,T4,T5] NewChoice5Of5(T5) +Microsoft.FSharp.Core.FSharpChoice`6+Choice1Of6[T1,T2,T3,T4,T5,T6]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice1Of6[T1,T2,T3,T4,T5,T6]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice2Of6[T1,T2,T3,T4,T5,T6]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice2Of6[T1,T2,T3,T4,T5,T6]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice3Of6[T1,T2,T3,T4,T5,T6]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice3Of6[T1,T2,T3,T4,T5,T6]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice4Of6[T1,T2,T3,T4,T5,T6]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice4Of6[T1,T2,T3,T4,T5,T6]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice5Of6[T1,T2,T3,T4,T5,T6]: T5 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice5Of6[T1,T2,T3,T4,T5,T6]: T5 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Choice6Of6[T1,T2,T3,T4,T5,T6]: T6 Item +Microsoft.FSharp.Core.FSharpChoice`6+Choice6Of6[T1,T2,T3,T4,T5,T6]: T6 get_Item() +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice1Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice2Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice3Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice4Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice5Of6 +Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6]: Int32 Choice6Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice1Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice2Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice3Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice4Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice5Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean IsChoice6Of6 +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice1Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice2Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice3Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice4Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice5Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Boolean get_IsChoice6Of6() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice1Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice2Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice3Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice4Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice5Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Choice6Of6[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6+Tags[T1,T2,T3,T4,T5,T6] +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice1Of6(T1) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice2Of6(T2) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice3Of6(T3) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice4Of6(T4) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice5Of6(T5) +Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6]: Microsoft.FSharp.Core.FSharpChoice`6[T1,T2,T3,T4,T5,T6] NewChoice6Of6(T6) +Microsoft.FSharp.Core.FSharpChoice`7+Choice1Of7[T1,T2,T3,T4,T5,T6,T7]: T1 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice1Of7[T1,T2,T3,T4,T5,T6,T7]: T1 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice2Of7[T1,T2,T3,T4,T5,T6,T7]: T2 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice2Of7[T1,T2,T3,T4,T5,T6,T7]: T2 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice3Of7[T1,T2,T3,T4,T5,T6,T7]: T3 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice3Of7[T1,T2,T3,T4,T5,T6,T7]: T3 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice4Of7[T1,T2,T3,T4,T5,T6,T7]: T4 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice4Of7[T1,T2,T3,T4,T5,T6,T7]: T4 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice5Of7[T1,T2,T3,T4,T5,T6,T7]: T5 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice5Of7[T1,T2,T3,T4,T5,T6,T7]: T5 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice6Of7[T1,T2,T3,T4,T5,T6,T7]: T6 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice6Of7[T1,T2,T3,T4,T5,T6,T7]: T6 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Choice7Of7[T1,T2,T3,T4,T5,T6,T7]: T7 Item +Microsoft.FSharp.Core.FSharpChoice`7+Choice7Of7[T1,T2,T3,T4,T5,T6,T7]: T7 get_Item() +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice1Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice2Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice3Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice4Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice5Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice6Of7 +Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7]: Int32 Choice7Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice1Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice2Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice3Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice4Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice5Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice6Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean IsChoice7Of7 +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice1Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice2Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice3Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice4Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice5Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice6Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Boolean get_IsChoice7Of7() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 Tag +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice1Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice2Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice3Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice4Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice5Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice6Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Choice7Of7[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7+Tags[T1,T2,T3,T4,T5,T6,T7] +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice1Of7(T1) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice2Of7(T2) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice3Of7(T3) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice4Of7(T4) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice5Of7(T5) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice6Of7(T6) +Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7]: Microsoft.FSharp.Core.FSharpChoice`7[T1,T2,T3,T4,T5,T6,T7] NewChoice7Of7(T7) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] FromConverter(System.Converter`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] op_Implicit(System.Converter`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: System.Converter`2[T,TResult] ToConverter(Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: System.Converter`2[T,TResult] op_Implicit(Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: TResult Invoke(T) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: V InvokeFast[V](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,V]], T, TResult) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Void .ctor() +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: W InvokeFast[V,W](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[V,W]]], T, TResult, V) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: X InvokeFast[V,W,X](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[V,Microsoft.FSharp.Core.FSharpFunc`2[W,X]]]], T, TResult, V, W) +Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]: Y InvokeFast[V,W,X,Y](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,Microsoft.FSharp.Core.FSharpFunc`2[V,Microsoft.FSharp.Core.FSharpFunc`2[W,Microsoft.FSharp.Core.FSharpFunc`2[X,Y]]]]], T, TResult, V, W, X) +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 Major +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 Minor +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 Release +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 get_Major() +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 get_Minor() +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Int32 get_Release() +Microsoft.FSharp.Core.FSharpInterfaceDataVersionAttribute: Void .ctor(Int32, Int32, Int32) +Microsoft.FSharp.Core.FSharpOption`1+Tags[T]: Int32 None +Microsoft.FSharp.Core.FSharpOption`1+Tags[T]: Int32 Some +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpOption`1[T], Microsoft.FSharp.Core.FSharpOption`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean IsNone +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean IsSome +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean get_IsNone(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Boolean get_IsSome(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpOption`1[T]: Int32 GetTag(Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1+Tags[T] +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] None +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] Some(T) +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] get_None() +Microsoft.FSharp.Core.FSharpOption`1[T]: Microsoft.FSharp.Core.FSharpOption`1[T] op_Implicit(T) +Microsoft.FSharp.Core.FSharpOption`1[T]: System.String ToString() +Microsoft.FSharp.Core.FSharpOption`1[T]: T Value +Microsoft.FSharp.Core.FSharpOption`1[T]: T get_Value() +Microsoft.FSharp.Core.FSharpOption`1[T]: Void .ctor(T) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpRef`1[T]) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpRef`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpRef`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpRef`1[T]) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpRef`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpRef`1[T]: T Value +Microsoft.FSharp.Core.FSharpRef`1[T]: T contents +Microsoft.FSharp.Core.FSharpRef`1[T]: T contents@ +Microsoft.FSharp.Core.FSharpRef`1[T]: T get_Value() +Microsoft.FSharp.Core.FSharpRef`1[T]: T get_contents() +Microsoft.FSharp.Core.FSharpRef`1[T]: Void .ctor(T) +Microsoft.FSharp.Core.FSharpRef`1[T]: Void set_Value(T) +Microsoft.FSharp.Core.FSharpRef`1[T]: Void set_contents(T) +Microsoft.FSharp.Core.FSharpResult`2+Tags[T,TError]: Int32 Error +Microsoft.FSharp.Core.FSharpResult`2+Tags[T,TError]: Int32 Ok +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(Microsoft.FSharp.Core.FSharpResult`2[T,TError], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean IsError +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean IsOk +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean get_IsError() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Boolean get_IsOk() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 Tag +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Microsoft.FSharp.Core.FSharpResult`2+Tags[T,TError] +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Microsoft.FSharp.Core.FSharpResult`2[T,TError] NewError(TError) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: Microsoft.FSharp.Core.FSharpResult`2[T,TError] NewOk(T) +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: T ResultValue +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: T get_ResultValue() +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: TError ErrorValue +Microsoft.FSharp.Core.FSharpResult`2[T,TError]: TError get_ErrorValue() +Microsoft.FSharp.Core.FSharpTypeFunc: System.Object Specialize[T]() +Microsoft.FSharp.Core.FSharpTypeFunc: Void .ctor() +Microsoft.FSharp.Core.FSharpValueOption`1+Tags[T]: Int32 ValueNone +Microsoft.FSharp.Core.FSharpValueOption`1+Tags[T]: Int32 ValueSome +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(Microsoft.FSharp.Core.FSharpValueOption`1[T], System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(System.Object) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsNone +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsSome +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsValueNone +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean IsValueSome +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsNone() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsSome() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsValueNone() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Boolean get_IsValueSome() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 CompareTo(Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 CompareTo(System.Object) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 CompareTo(System.Object, System.Collections.IComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 GetHashCode() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 Tag +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Int32 get_Tag() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1+Tags[T] +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] NewValueSome(T) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] None +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] Some(T) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] ValueNone +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] get_None() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] get_ValueNone() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: Microsoft.FSharp.Core.FSharpValueOption`1[T] op_Implicit(T) +Microsoft.FSharp.Core.FSharpValueOption`1[T]: System.String ToString() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T Item +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T Value +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T get_Item() +Microsoft.FSharp.Core.FSharpValueOption`1[T]: T get_Value() +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit] FromAction(System.Action) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T] FromFunc[T](System.Func`1[T]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit] FromAction[T](System.Action`1[T]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit] ToFSharpFunc[T](System.Action`1[T]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] FromFunc[T,TResult](System.Func`2[T,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T,TResult] ToFSharpFunc[T,TResult](System.Converter`2[T,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,Microsoft.FSharp.Core.Unit]]]]] FromAction[T1,T2,T3,T4,T5](System.Action`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]]] FromFunc[T1,T2,T3,T4,T5,TResult](System.Func`6[T1,T2,T3,T4,T5,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]]] FuncFromTupled[T1,T2,T3,T4,T5,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`5[T1,T2,T3,T4,T5],TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.Unit]]]] FromAction[T1,T2,T3,T4](System.Action`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]]] FromFunc[T1,T2,T3,T4,TResult](System.Func`5[T1,T2,T3,T4,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]]] FuncFromTupled[T1,T2,T3,T4,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`4[T1,T2,T3,T4],TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.Unit]]] FromAction[T1,T2,T3](System.Action`3[T1,T2,T3]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]] FromFunc[T1,T2,T3,TResult](System.Func`4[T1,T2,T3,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]] FuncFromTupled[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`3[T1,T2,T3],TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.Unit]] FromAction[T1,T2](System.Action`2[T1,T2]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]] FromFunc[T1,T2,TResult](System.Func`3[T1,T2,TResult]) +Microsoft.FSharp.Core.FuncConvert: Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]] FuncFromTupled[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[System.Tuple`2[T1,T2],TResult]) +Microsoft.FSharp.Core.GeneralizableValueAttribute: Void .ctor() +Microsoft.FSharp.Core.InlineIfLambdaAttribute: Void .ctor() +Microsoft.FSharp.Core.InterfaceAttribute: Void .ctor() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String AddressOpNotFirstClassString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String InputArrayEmptyString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String InputMustBeNonNegativeString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String InputSequenceEmptyString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String NoNegateMinValueString +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_AddressOpNotFirstClassString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_InputArrayEmptyString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_InputMustBeNonNegativeString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_InputSequenceEmptyString() +Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings: System.String get_NoNegateMinValueString() +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple2[T1,T2](System.Collections.IEqualityComparer, System.Tuple`2[T1,T2], System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple3[T1,T2,T3](System.Collections.IEqualityComparer, System.Tuple`3[T1,T2,T3], System.Tuple`3[T1,T2,T3]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple4[T1,T2,T3,T4](System.Collections.IEqualityComparer, System.Tuple`4[T1,T2,T3,T4], System.Tuple`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean FastEqualsTuple5[T1,T2,T3,T4,T5](System.Collections.IEqualityComparer, System.Tuple`5[T1,T2,T3,T4,T5], System.Tuple`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericEqualityERIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericEqualityIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericEqualityWithComparerIntrinsic[T](System.Collections.IEqualityComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericGreaterOrEqualIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericGreaterThanIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericLessOrEqualIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean GenericLessThanIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Boolean PhysicalEqualityIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple2[T1,T2](System.Collections.IComparer, System.Tuple`2[T1,T2], System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple3[T1,T2,T3](System.Collections.IComparer, System.Tuple`3[T1,T2,T3], System.Tuple`3[T1,T2,T3]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple4[T1,T2,T3,T4](System.Collections.IComparer, System.Tuple`4[T1,T2,T3,T4], System.Tuple`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastCompareTuple5[T1,T2,T3,T4,T5](System.Collections.IComparer, System.Tuple`5[T1,T2,T3,T4,T5], System.Tuple`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple2[T1,T2](System.Collections.IEqualityComparer, System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple3[T1,T2,T3](System.Collections.IEqualityComparer, System.Tuple`3[T1,T2,T3]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple4[T1,T2,T3,T4](System.Collections.IEqualityComparer, System.Tuple`4[T1,T2,T3,T4]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 FastHashTuple5[T1,T2,T3,T4,T5](System.Collections.IEqualityComparer, System.Tuple`5[T1,T2,T3,T4,T5]) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericComparisonIntrinsic[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericComparisonWithComparerIntrinsic[T](System.Collections.IComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericHashIntrinsic[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 GenericHashWithComparerIntrinsic[T](System.Collections.IEqualityComparer, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 LimitedGenericHashIntrinsic[T](Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+HashCompare: Int32 PhysicalHashIntrinsic[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Boolean TypeTestFast[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Boolean TypeTestGeneric[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Char GetString(System.String, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: System.Decimal MakeDecimal(Int32, Int32, Int32, Boolean, Byte) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T CheckThis[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T CreateInstance[T]() +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray2D[T](T[,], Int32, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray3D[T](T[,,], Int32, Int32, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray4D[T](T[,,,], Int32, Int32, Int32, Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T GetArray[T](T[], Int32) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T UnboxFast[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: T UnboxGeneric[T](System.Object) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void Dispose[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void FailInit() +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void FailStaticInit() +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray2D[T](T[,], Int32, Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray3D[T](T[,,], Int32, Int32, Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray4D[T](T[,,,], Int32, Int32, Int32, Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions: Void SetArray[T](T[], Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean Or(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean op_Amp(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean op_BooleanAnd(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: Boolean op_BooleanOr(Boolean, Boolean) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: IntPtr op_IntegerAddressOf[T](T) +Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators: T& op_AddressOf[T](T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericEqualityER[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericEqualityWithComparer[T](System.Collections.IEqualityComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericEquality[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericGreaterOrEqual[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericGreaterThan[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericLessOrEqual[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean GenericLessThan[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Boolean PhysicalEquality[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Byte ByteWithMeasure(Byte) +Microsoft.FSharp.Core.LanguagePrimitives: Double FloatWithMeasure(Double) +Microsoft.FSharp.Core.LanguagePrimitives: Int16 Int16WithMeasure(Int16) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericComparisonWithComparer[T](System.Collections.IComparer, T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericComparison[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericHashWithComparer[T](System.Collections.IEqualityComparer, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericHash[T](T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 GenericLimitedHash[T](Int32, T) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 Int32WithMeasure(Int32) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 ParseInt32(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: Int32 PhysicalHash[T](T) +Microsoft.FSharp.Core.LanguagePrimitives: Int64 Int64WithMeasure(Int64) +Microsoft.FSharp.Core.LanguagePrimitives: Int64 ParseInt64(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: IntPtr IntPtrWithMeasure(IntPtr) +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+ErrorStrings +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+HashCompare +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicFunctions +Microsoft.FSharp.Core.LanguagePrimitives: Microsoft.FSharp.Core.LanguagePrimitives+IntrinsicOperators +Microsoft.FSharp.Core.LanguagePrimitives: SByte SByteWithMeasure(SByte) +Microsoft.FSharp.Core.LanguagePrimitives: Single Float32WithMeasure(Single) +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IComparer`1[T] FastGenericComparerFromTable[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IComparer`1[T] FastGenericComparer[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IEqualityComparer`1[T] FastGenericEqualityComparerFromTable[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IEqualityComparer`1[T] FastGenericEqualityComparer[T]() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.Generic.IEqualityComparer`1[T] FastLimitedGenericEqualityComparer[T](Int32) +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IComparer GenericComparer +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IComparer get_GenericComparer() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer GenericEqualityComparer +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer GenericEqualityERComparer +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer get_GenericEqualityComparer() +Microsoft.FSharp.Core.LanguagePrimitives: System.Collections.IEqualityComparer get_GenericEqualityERComparer() +Microsoft.FSharp.Core.LanguagePrimitives: System.Decimal DecimalWithMeasure(System.Decimal) +Microsoft.FSharp.Core.LanguagePrimitives: T DivideByInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], T, Int32) +Microsoft.FSharp.Core.LanguagePrimitives: T DivideByIntDynamic[T](T, Int32) +Microsoft.FSharp.Core.LanguagePrimitives: T DivideByInt[T](T, Int32) +Microsoft.FSharp.Core.LanguagePrimitives: T EnumToValue[TEnum,T](TEnum) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericMaximum[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericMinimum[T](T, T) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericOne$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericOneDynamic[T]() +Microsoft.FSharp.Core.LanguagePrimitives: T GenericOne[T]() +Microsoft.FSharp.Core.LanguagePrimitives: T GenericZero$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Core.LanguagePrimitives: T GenericZeroDynamic[T]() +Microsoft.FSharp.Core.LanguagePrimitives: T GenericZero[T]() +Microsoft.FSharp.Core.LanguagePrimitives: TEnum EnumOfValue[T,TEnum](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult AdditionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult BitwiseAndDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult BitwiseOrDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedAdditionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedExplicitDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedMultiplyDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedSubtractionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult CheckedUnaryNegationDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult DivisionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult EqualityDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult ExclusiveOrDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult ExplicitDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult GreaterThanDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult GreaterThanOrEqualDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult InequalityDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LeftShiftDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LessThanDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LessThanOrEqualDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult LogicalNotDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: TResult ModulusDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult MultiplyDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult RightShiftDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult SubtractionDynamic[T1,T2,TResult](T1, T2) +Microsoft.FSharp.Core.LanguagePrimitives: TResult UnaryNegationDynamic[T,TResult](T) +Microsoft.FSharp.Core.LanguagePrimitives: UInt16 UInt16WithMeasure(UInt16) +Microsoft.FSharp.Core.LanguagePrimitives: UInt32 ParseUInt32(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: UInt32 UInt32WithMeasure(UInt32) +Microsoft.FSharp.Core.LanguagePrimitives: UInt64 ParseUInt64(System.String) +Microsoft.FSharp.Core.LanguagePrimitives: UInt64 UInt64WithMeasure(UInt64) +Microsoft.FSharp.Core.LanguagePrimitives: UIntPtr UIntPtrWithMeasure(UIntPtr) +Microsoft.FSharp.Core.LiteralAttribute: Void .ctor() +Microsoft.FSharp.Core.MatchFailureException: Boolean Equals(System.Exception, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.MatchFailureException: Boolean Equals(System.Object) +Microsoft.FSharp.Core.MatchFailureException: Boolean Equals(System.Object, System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.MatchFailureException: Int32 Data1 +Microsoft.FSharp.Core.MatchFailureException: Int32 Data2 +Microsoft.FSharp.Core.MatchFailureException: Int32 GetHashCode() +Microsoft.FSharp.Core.MatchFailureException: Int32 GetHashCode(System.Collections.IEqualityComparer) +Microsoft.FSharp.Core.MatchFailureException: Int32 get_Data1() +Microsoft.FSharp.Core.MatchFailureException: Int32 get_Data2() +Microsoft.FSharp.Core.MatchFailureException: System.String Data0 +Microsoft.FSharp.Core.MatchFailureException: System.String Message +Microsoft.FSharp.Core.MatchFailureException: System.String get_Data0() +Microsoft.FSharp.Core.MatchFailureException: System.String get_Message() +Microsoft.FSharp.Core.MatchFailureException: Void .ctor() +Microsoft.FSharp.Core.MatchFailureException: Void .ctor(System.String, Int32, Int32) +Microsoft.FSharp.Core.MeasureAnnotatedAbbreviationAttribute: Void .ctor() +Microsoft.FSharp.Core.MeasureAttribute: Void .ctor() +Microsoft.FSharp.Core.NoComparisonAttribute: Void .ctor() +Microsoft.FSharp.Core.NoCompilerInliningAttribute: Void .ctor() +Microsoft.FSharp.Core.NoDynamicInvocationAttribute: Void .ctor() +Microsoft.FSharp.Core.NoEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: System.Object FromInt64Dynamic(Int64) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: System.Object FromStringDynamic(System.String) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromInt32[T](Int32) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromInt64[T](Int64) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromOne[T]() +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromString[T](System.String) +Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI: T FromZero[T]() +Microsoft.FSharp.Core.NumericLiterals: Microsoft.FSharp.Core.NumericLiterals+NumericLiteralI +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 String.GetReverseIndex(System.String, Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 [,,,]`1.GetReverseIndex[T](T[,,,], Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 [,,]`1.GetReverseIndex[T](T[,,], Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 [,]`1.GetReverseIndex[T](T[,], Int32, Int32) +Microsoft.FSharp.Core.Operators+ArrayExtensions: Int32 []`1.GetReverseIndex[T](T[], Int32, Int32) +Microsoft.FSharp.Core.Operators+Checked: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.Operators+Checked: Byte ToByte[T](T) +Microsoft.FSharp.Core.Operators+Checked: Char ToChar$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Char], T) +Microsoft.FSharp.Core.Operators+Checked: Char ToChar[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int16 ToInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int16], T) +Microsoft.FSharp.Core.Operators+Checked: Int16 ToInt16[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt32[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int32 ToInt[T](T) +Microsoft.FSharp.Core.Operators+Checked: Int64 ToInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int64], T) +Microsoft.FSharp.Core.Operators+Checked: Int64 ToInt64[T](T) +Microsoft.FSharp.Core.Operators+Checked: IntPtr ToIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.IntPtr], T) +Microsoft.FSharp.Core.Operators+Checked: IntPtr ToIntPtr[T](T) +Microsoft.FSharp.Core.Operators+Checked: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.Operators+Checked: SByte ToSByte[T](T) +Microsoft.FSharp.Core.Operators+Checked: T op_UnaryNegation$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators+Checked: T op_UnaryNegation[T](T) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Addition$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Addition[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Multiply$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Multiply[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Subtraction$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators+Checked: T3 op_Subtraction[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators+Checked: UInt16 ToUInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt16], T) +Microsoft.FSharp.Core.Operators+Checked: UInt16 ToUInt16[T](T) +Microsoft.FSharp.Core.Operators+Checked: UInt32 ToUInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], T) +Microsoft.FSharp.Core.Operators+Checked: UInt32 ToUInt32[T](T) +Microsoft.FSharp.Core.Operators+Checked: UInt64 ToUInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt64], T) +Microsoft.FSharp.Core.Operators+Checked: UInt64 ToUInt64[T](T) +Microsoft.FSharp.Core.Operators+Checked: UIntPtr ToUIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UIntPtr], T) +Microsoft.FSharp.Core.Operators+Checked: UIntPtr ToUIntPtr[T](T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Equality$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Equality[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThan$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThanOrEqual$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThanOrEqual[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_GreaterThan[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Inequality$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_Inequality[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThan$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThanOrEqual$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,System.Boolean]], T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThanOrEqual[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Boolean op_LessThan[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Int32 Compare$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Int32 Compare[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: Int32 Hash[T](T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Max$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Max[T](T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Min$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]], T, T) +Microsoft.FSharp.Core.Operators+NonStructuralComparison: T Min[T](T, T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Byte PowByte(Byte, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Double PowDouble(Double, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int16 PowInt16(Int16, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int32 PowInt32(Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int32 SignDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Int64 PowInt64(Int64, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: IntPtr PowIntPtr(IntPtr, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: SByte PowSByte(SByte, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Single PowSingle(Single, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Byte] RangeByte(Byte, Byte, Byte) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Char] RangeChar(Char, Char) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Double] RangeDouble(Double, Double, Double) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Int16] RangeInt16(Int16, Int16, Int16) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Int32] RangeInt32(Int32, Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Int64] RangeInt64(Int64, Int64, Int64) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.IntPtr] RangeIntPtr(IntPtr, IntPtr, IntPtr) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.SByte] RangeSByte(SByte, SByte, SByte) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.Single] RangeSingle(Single, Single, Single) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UInt16] RangeUInt16(UInt16, UInt16, UInt16) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UInt32] RangeUInt32(UInt32, UInt32, UInt32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UInt64] RangeUInt64(UInt64, UInt64, UInt64) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[System.UIntPtr] RangeUIntPtr(UIntPtr, UIntPtr, UIntPtr) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[T] RangeGeneric[T](T, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Collections.Generic.IEnumerable`1[T] RangeStepGeneric[TStep,T](TStep, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TStep,T]], T, TStep, T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.Decimal PowDecimal(System.Decimal, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: System.String GetStringSlice(System.String, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AbsDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AcosDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AsinDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T AtanDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T CeilingDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T CosDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T CoshDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T ExpDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T FloorDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T Log10Dynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T LogDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T PowDynamic[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T PowGeneric[T](T, Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T RoundDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T SinDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T SinhDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T TanDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T TanhDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T TruncateDynamic[T](T) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T2 Atan2Dynamic[T1,T2](T1, T1) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T2 SqrtDynamic[T1,T2](T1) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,,] GetArraySlice4D[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice3D[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle1[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle2[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle3[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,,] GetArraySlice4DFixedSingle4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice2D[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice3DFixedSingle1[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice3DFixedSingle2[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice3DFixedSingle3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble1[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble3[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble5[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[,] GetArraySlice4DFixedDouble6[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice2DFixed1[T](T[,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice2DFixed2[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice3DFixedDouble1[T](T[,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice3DFixedDouble2[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice3DFixedDouble3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple1[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple3[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice4DFixedTriple4[T](T[,,,], Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: T[] GetArraySlice[T](T[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UInt16 PowUInt16(UInt16, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UInt32 PowUInt32(UInt32, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UInt64 PowUInt64(UInt64, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: UIntPtr PowUIntPtr(UIntPtr, Int32) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice2DFixed1[T](T[,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice2DFixed2[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice2D[T](T[,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedDouble1[T](T[,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedDouble2[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedDouble3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedSingle1[T](T[,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedSingle2[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3DFixedSingle3[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice3D[T](T[,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble1[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble3[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble5[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedDouble6[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, T[,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle1[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle2[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle3[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedSingle4[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple1[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple2[T](T[,,,], Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple3[T](T[,,,], Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Int32, T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4DFixedTriple4[T](T[,,,], Int32, Int32, Int32, Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice4D[T](T[,,,], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[,,,]) +Microsoft.FSharp.Core.Operators+OperatorIntrinsics: Void SetArraySlice[T](T[], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], Microsoft.FSharp.Core.FSharpOption`1[System.Int32], T[]) +Microsoft.FSharp.Core.Operators+Unchecked: Boolean Equals[T](T, T) +Microsoft.FSharp.Core.Operators+Unchecked: Int32 Compare[T](T, T) +Microsoft.FSharp.Core.Operators+Unchecked: Int32 Hash[T](T) +Microsoft.FSharp.Core.Operators+Unchecked: T DefaultOf[T]() +Microsoft.FSharp.Core.Operators+Unchecked: T NonNullQuickPattern[T](T) +Microsoft.FSharp.Core.Operators+Unchecked: T NonNull[T](T) +Microsoft.FSharp.Core.Operators+Unchecked: T Unbox[T](System.Object) +Microsoft.FSharp.Core.Operators+Unchecked: T WithNull[T](T) +Microsoft.FSharp.Core.Operators: Boolean IsNullV[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: Boolean IsNull[T](T) +Microsoft.FSharp.Core.Operators: Boolean Not(Boolean) +Microsoft.FSharp.Core.Operators: Boolean op_Equality[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_GreaterThanOrEqual[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_GreaterThan[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_Inequality[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_LessThanOrEqual[T](T, T) +Microsoft.FSharp.Core.Operators: Boolean op_LessThan[T](T, T) +Microsoft.FSharp.Core.Operators: Byte ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], T) +Microsoft.FSharp.Core.Operators: Byte ToByte[T](T) +Microsoft.FSharp.Core.Operators: Char ToChar$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Char], T) +Microsoft.FSharp.Core.Operators: Char ToChar[T](T) +Microsoft.FSharp.Core.Operators: Double Infinity +Microsoft.FSharp.Core.Operators: Double NaN +Microsoft.FSharp.Core.Operators: Double ToDouble$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], T) +Microsoft.FSharp.Core.Operators: Double ToDouble[T](T) +Microsoft.FSharp.Core.Operators: Double get_Infinity() +Microsoft.FSharp.Core.Operators: Double get_NaN() +Microsoft.FSharp.Core.Operators: Int16 ToInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int16], T) +Microsoft.FSharp.Core.Operators: Int16 ToInt16[T](T) +Microsoft.FSharp.Core.Operators: Int32 Compare[T](T, T) +Microsoft.FSharp.Core.Operators: Int32 Hash[T](T) +Microsoft.FSharp.Core.Operators: Int32 Sign$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators: Int32 Sign[T](T) +Microsoft.FSharp.Core.Operators: Int32 SizeOf[T]() +Microsoft.FSharp.Core.Operators: Int32 ToInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators: Int32 ToInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], T) +Microsoft.FSharp.Core.Operators: Int32 ToInt32[T](T) +Microsoft.FSharp.Core.Operators: Int32 ToInt[T](T) +Microsoft.FSharp.Core.Operators: Int32 limitedHash[T](Int32, T) +Microsoft.FSharp.Core.Operators: Int64 ToInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int64], T) +Microsoft.FSharp.Core.Operators: Int64 ToInt64[T](T) +Microsoft.FSharp.Core.Operators: IntPtr ToIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.IntPtr], T) +Microsoft.FSharp.Core.Operators: IntPtr ToIntPtr[T](T) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Collections.FSharpList`1[T] op_Append[T](Microsoft.FSharp.Collections.FSharpList`1[T], Microsoft.FSharp.Collections.FSharpList`1[T]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpChoice`2[Microsoft.FSharp.Core.Unit,T] NullMatchPattern[T](T) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpChoice`2[Microsoft.FSharp.Core.Unit,T] NullValueMatchPattern[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpFunc`2[T1,T3] op_ComposeLeft[T2,T3,T1](Microsoft.FSharp.Core.FSharpFunc`2[T2,T3], Microsoft.FSharp.Core.FSharpFunc`2[T1,T2]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpFunc`2[T1,T3] op_ComposeRight[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,T2], Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpOption`1[System.String] FailurePattern(System.Exception) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpOption`1[T] TryUnbox[T](System.Object) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.FSharpRef`1[T] Ref[T](T) +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+ArrayExtensions +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+Checked +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+NonStructuralComparison +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+OperatorIntrinsics +Microsoft.FSharp.Core.Operators: Microsoft.FSharp.Core.Operators+Unchecked +Microsoft.FSharp.Core.Operators: SByte ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], T) +Microsoft.FSharp.Core.Operators: SByte ToSByte[T](T) +Microsoft.FSharp.Core.Operators: Single InfinitySingle +Microsoft.FSharp.Core.Operators: Single NaNSingle +Microsoft.FSharp.Core.Operators: Single ToSingle$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], T) +Microsoft.FSharp.Core.Operators: Single ToSingle[T](T) +Microsoft.FSharp.Core.Operators: Single get_InfinitySingle() +Microsoft.FSharp.Core.Operators: Single get_NaNSingle() +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] CreateSequence[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_Range$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_RangeStep$W[T,TStep](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TStep], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TStep,T]], T, TStep, T) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_RangeStep[T,TStep](T, TStep, T) +Microsoft.FSharp.Core.Operators: System.Collections.Generic.IEnumerable`1[T] op_Range[T](T, T) +Microsoft.FSharp.Core.Operators: System.Decimal ToDecimal$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Decimal], T) +Microsoft.FSharp.Core.Operators: System.Decimal ToDecimal[T](T) +Microsoft.FSharp.Core.Operators: System.Exception Failure(System.String) +Microsoft.FSharp.Core.Operators: System.IO.TextReader ConsoleIn[T]() +Microsoft.FSharp.Core.Operators: System.IO.TextWriter ConsoleError[T]() +Microsoft.FSharp.Core.Operators: System.IO.TextWriter ConsoleOut[T]() +Microsoft.FSharp.Core.Operators: System.Nullable`1[T] NullV[T]() +Microsoft.FSharp.Core.Operators: System.Nullable`1[T] WithNullV[T](T) +Microsoft.FSharp.Core.Operators: System.Object Box[T](T) +Microsoft.FSharp.Core.Operators: System.String NameOf[T](T) +Microsoft.FSharp.Core.Operators: System.String ToString[T](T) +Microsoft.FSharp.Core.Operators: System.String op_Concatenate(System.String, System.String) +Microsoft.FSharp.Core.Operators: System.Tuple`2[TKey,TValue] KeyValuePattern[TKey,TValue](System.Collections.Generic.KeyValuePair`2[TKey,TValue]) +Microsoft.FSharp.Core.Operators: System.Type TypeDefOf[T]() +Microsoft.FSharp.Core.Operators: System.Type TypeOf[T]() +Microsoft.FSharp.Core.Operators: T Abs$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Abs[T](T) +Microsoft.FSharp.Core.Operators: T Acos$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Acos[T](T) +Microsoft.FSharp.Core.Operators: T Asin$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Asin[T](T) +Microsoft.FSharp.Core.Operators: T Atan$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Atan[T](T) +Microsoft.FSharp.Core.Operators: T Ceiling$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Ceiling[T](T) +Microsoft.FSharp.Core.Operators: T Cos$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Cos[T](T) +Microsoft.FSharp.Core.Operators: T Cosh$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Cosh[T](T) +Microsoft.FSharp.Core.Operators: T DefaultArg[T](Microsoft.FSharp.Core.FSharpOption`1[T], T) +Microsoft.FSharp.Core.Operators: T DefaultIfNullV[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: T DefaultIfNull[T](T, T) +Microsoft.FSharp.Core.Operators: T DefaultValueArg[T](Microsoft.FSharp.Core.FSharpValueOption`1[T], T) +Microsoft.FSharp.Core.Operators: T Exit[T](Int32) +Microsoft.FSharp.Core.Operators: T Exp$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Exp[T](T) +Microsoft.FSharp.Core.Operators: T FailWith[T](System.String) +Microsoft.FSharp.Core.Operators: T Floor$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Floor[T](T) +Microsoft.FSharp.Core.Operators: T Identity[T](T) +Microsoft.FSharp.Core.Operators: T InvalidArg[T](System.String, System.String) +Microsoft.FSharp.Core.Operators: T InvalidOp[T](System.String) +Microsoft.FSharp.Core.Operators: T Lock[TLock,T](TLock, Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T]) +Microsoft.FSharp.Core.Operators: T Log$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Log10$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Log10[T](T) +Microsoft.FSharp.Core.Operators: T Log[T](T) +Microsoft.FSharp.Core.Operators: T Max[T](T, T) +Microsoft.FSharp.Core.Operators: T Min[T](T, T) +Microsoft.FSharp.Core.Operators: T NonNullQuickPattern[T](T) +Microsoft.FSharp.Core.Operators: T NonNullQuickValuePattern[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: T NonNullV[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.Operators: T NonNull[T](T) +Microsoft.FSharp.Core.Operators: T NullArgCheck[T](System.String, T) +Microsoft.FSharp.Core.Operators: T NullArg[T](System.String) +Microsoft.FSharp.Core.Operators: T PowInteger$W[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, Int32) +Microsoft.FSharp.Core.Operators: T PowInteger[T](T, Int32) +Microsoft.FSharp.Core.Operators: T Raise[T](System.Exception) +Microsoft.FSharp.Core.Operators: T Reraise[T]() +Microsoft.FSharp.Core.Operators: T Rethrow[T]() +Microsoft.FSharp.Core.Operators: T Round$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Round[T](T) +Microsoft.FSharp.Core.Operators: T Sin$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Sin[T](T) +Microsoft.FSharp.Core.Operators: T Sinh$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Sinh[T](T) +Microsoft.FSharp.Core.Operators: T Tan$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Tan[T](T) +Microsoft.FSharp.Core.Operators: T Tanh$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Tanh[T](T) +Microsoft.FSharp.Core.Operators: T Truncate$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T Truncate[T](T) +Microsoft.FSharp.Core.Operators: T Unbox[T](System.Object) +Microsoft.FSharp.Core.Operators: T WithNull[T](T) +Microsoft.FSharp.Core.Operators: T op_BitwiseAnd$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: T op_BitwiseAnd[T](T, T) +Microsoft.FSharp.Core.Operators: T op_BitwiseOr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: T op_BitwiseOr[T](T, T) +Microsoft.FSharp.Core.Operators: T op_Dereference[T](Microsoft.FSharp.Core.FSharpRef`1[T]) +Microsoft.FSharp.Core.Operators: T op_ExclusiveOr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[T,T]], T, T) +Microsoft.FSharp.Core.Operators: T op_ExclusiveOr[T](T, T) +Microsoft.FSharp.Core.Operators: T op_Exponentiation$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TResult,T]], T, TResult) +Microsoft.FSharp.Core.Operators: T op_Exponentiation[T,TResult](T, TResult) +Microsoft.FSharp.Core.Operators: T op_LeftShift$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], T, Int32) +Microsoft.FSharp.Core.Operators: T op_LeftShift[T](T, Int32) +Microsoft.FSharp.Core.Operators: T op_LogicalNot$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T op_LogicalNot[T](T) +Microsoft.FSharp.Core.Operators: T op_RightShift$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,T]], T, Int32) +Microsoft.FSharp.Core.Operators: T op_RightShift[T](T, Int32) +Microsoft.FSharp.Core.Operators: T op_UnaryNegation$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T op_UnaryNegation[T](T) +Microsoft.FSharp.Core.Operators: T op_UnaryPlus$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,T], T) +Microsoft.FSharp.Core.Operators: T op_UnaryPlus[T](T) +Microsoft.FSharp.Core.Operators: T1 Fst[T1,T2](System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.Operators: T2 Atan2$W[T1,T2](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T1,T2]], T1, T1) +Microsoft.FSharp.Core.Operators: T2 Atan2[T1,T2](T1, T1) +Microsoft.FSharp.Core.Operators: T2 Snd[T1,T2](System.Tuple`2[T1,T2]) +Microsoft.FSharp.Core.Operators: T3 op_Addition$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Addition[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Division$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Division[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Modulus$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Modulus[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Multiply$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Multiply[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Subtraction$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, T2) +Microsoft.FSharp.Core.Operators: T3 op_Subtraction[T1,T2,T3](T1, T2) +Microsoft.FSharp.Core.Operators: TResult Sqrt$W[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T) +Microsoft.FSharp.Core.Operators: TResult Sqrt[T,TResult](T) +Microsoft.FSharp.Core.Operators: TResult ToEnum[TResult](Int32) +Microsoft.FSharp.Core.Operators: TResult Using[T,TResult](T, Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Core.Operators: TResult op_PipeLeft2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], T1, T2) +Microsoft.FSharp.Core.Operators: TResult op_PipeLeft3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], T1, T2, T3) +Microsoft.FSharp.Core.Operators: TResult op_PipeLeft[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], T) +Microsoft.FSharp.Core.Operators: TResult op_PipeRight2[T1,T2,TResult](T1, T2, Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]) +Microsoft.FSharp.Core.Operators: TResult op_PipeRight3[T1,T2,T3,TResult](T1, T2, T3, Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]]) +Microsoft.FSharp.Core.Operators: TResult op_PipeRight[T1,TResult](T1, Microsoft.FSharp.Core.FSharpFunc`2[T1,TResult]) +Microsoft.FSharp.Core.Operators: UInt16 ToUInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt16], T) +Microsoft.FSharp.Core.Operators: UInt16 ToUInt16[T](T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt32[T](T) +Microsoft.FSharp.Core.Operators: UInt32 ToUInt[T](T) +Microsoft.FSharp.Core.Operators: UInt64 ToUInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt64], T) +Microsoft.FSharp.Core.Operators: UInt64 ToUInt64[T](T) +Microsoft.FSharp.Core.Operators: UIntPtr ToUIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UIntPtr], T) +Microsoft.FSharp.Core.Operators: UIntPtr ToUIntPtr[T](T) +Microsoft.FSharp.Core.Operators: Void Decrement(Microsoft.FSharp.Core.FSharpRef`1[System.Int32]) +Microsoft.FSharp.Core.Operators: Void Ignore[T](T) +Microsoft.FSharp.Core.Operators: Void Increment(Microsoft.FSharp.Core.FSharpRef`1[System.Int32]) +Microsoft.FSharp.Core.Operators: Void op_ColonEquals[T](Microsoft.FSharp.Core.FSharpRef`1[T], T) +Microsoft.FSharp.Core.OptimizeClosureIfNotInlinedAttribute: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: FSharpFunc`3 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: TResult Invoke(T1, T2) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: FSharpFunc`4 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: TResult Invoke(T1, T2, T3) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: FSharpFunc`5 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,TResult]]] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: TResult Invoke(T1, T2, T3, T4) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: FSharpFunc`6 Adapt(Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]]]) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,Microsoft.FSharp.Core.FSharpFunc`2[T4,Microsoft.FSharp.Core.FSharpFunc`2[T5,TResult]]]] Invoke(T1) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: TResult Invoke(T1, T2, T3, T4, T5) +Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult]: Void .ctor() +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`3[T1,T2,TResult] +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`4[T1,T2,T3,TResult] +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`5[T1,T2,T3,T4,TResult] +Microsoft.FSharp.Core.OptimizedClosures: Microsoft.FSharp.Core.OptimizedClosures+FSharpFunc`6[T1,T2,T3,T4,T5,TResult] +Microsoft.FSharp.Core.OptionModule: Boolean Contains[T](T, Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean IsNone[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Boolean IsSome[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Int32 Count[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpOption`1[TResult]], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], Microsoft.FSharp.Core.FSharpOption`1[T1], Microsoft.FSharp.Core.FSharpOption`1[T2]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], Microsoft.FSharp.Core.FSharpOption`1[T1], Microsoft.FSharp.Core.FSharpOption`1[T2], Microsoft.FSharp.Core.FSharpOption`1[T3]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] Flatten[T](Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.FSharpOption`1[T]]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OfNullable[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OfObj[T](T) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OfValueOption[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OrElseWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.FSharpOption`1[T]], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpOption`1[T] OrElse[T](Microsoft.FSharp.Core.FSharpOption`1[T], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Microsoft.FSharp.Core.FSharpValueOption`1[T] ToValueOption[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: System.Nullable`1[T] ToNullable[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T DefaultValue[T](T, Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T DefaultWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T GetValue[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T ToObj[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Core.FSharpOption`1[T], TState) +Microsoft.FSharp.Core.OptionModule: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: T[] ToArray[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionModule: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.OptionalArgumentAttribute: Void .ctor() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Object[] Captures +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Object[] get_Captures() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.String ToString() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.String Value +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.String get_Value() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Type[] CaptureTypes +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: System.Type[] get_CaptureTypes() +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: Void .ctor(System.String) +Microsoft.FSharp.Core.PrintfFormat`4[TPrinter,TState,TResidue,TResult]: Void .ctor(System.String, System.Object[], System.Type[]) +Microsoft.FSharp.Core.PrintfFormat`5[TPrinter,TState,TResidue,TResult,TTuple]: Void .ctor(System.String) +Microsoft.FSharp.Core.PrintfFormat`5[TPrinter,TState,TResidue,TResult,TTuple]: Void .ctor(System.String, System.Object[], System.Type[]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatLineToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatLineToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatLine[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[System.String,TResult], Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToError[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringBuilderThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], System.Text.StringBuilder, Microsoft.FSharp.Core.PrintfFormat`4[T,System.Text.StringBuilder,Microsoft.FSharp.Core.Unit,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringBuilder[T](System.Text.StringBuilder, Microsoft.FSharp.Core.PrintfFormat`4[T,System.Text.StringBuilder,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringThenFail[T,TResult](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[System.String,TResult], Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToStringThen[T](Microsoft.FSharp.Core.PrintfFormat`4[T,Microsoft.FSharp.Core.Unit,System.String,System.String]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToTextWriterThen[TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TResult], System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,TResult]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormatToTextWriter[T](System.IO.TextWriter, Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.PrintfModule: T PrintFormat[T](Microsoft.FSharp.Core.PrintfFormat`4[T,System.IO.TextWriter,Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.Unit]) +Microsoft.FSharp.Core.ProjectionParameterAttribute: Void .ctor() +Microsoft.FSharp.Core.ReferenceEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Boolean IncludeValue +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Boolean get_IncludeValue() +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Void .ctor() +Microsoft.FSharp.Core.ReflectedDefinitionAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.RequireQualifiedAccessAttribute: Void .ctor() +Microsoft.FSharp.Core.RequiresExplicitTypeArgumentsAttribute: Void .ctor() +Microsoft.FSharp.Core.ResultModule: Boolean Contains[T,TError](T, Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean Exists[T,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean ForAll[T,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean IsError[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Boolean IsOk[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Int32 Count[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpOption`1[T] ToOption[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpResult`2[T,TResult] MapError[TError,TResult,T](Microsoft.FSharp.Core.FSharpFunc`2[TError,TResult], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpResult`2[TResult,TError] Bind[T,TResult,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpResult`2[TResult,TError]], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpResult`2[TResult,TError] Map[T,TResult,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Microsoft.FSharp.Core.FSharpValueOption`1[T] ToValueOption[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: T DefaultValue[T,TError](T, Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: T DefaultWith[TError,T](Microsoft.FSharp.Core.FSharpFunc`2[TError,T], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: TState FoldBack[T,TError,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Core.FSharpResult`2[T,TError], TState) +Microsoft.FSharp.Core.ResultModule: TState Fold[T,TError,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: T[] ToArray[T,TError](Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.ResultModule: Void Iterate[T,TError](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpResult`2[T,TError]) +Microsoft.FSharp.Core.SealedAttribute: Boolean Value +Microsoft.FSharp.Core.SealedAttribute: Boolean get_Value() +Microsoft.FSharp.Core.SealedAttribute: Void .ctor() +Microsoft.FSharp.Core.SealedAttribute: Void .ctor(Boolean) +Microsoft.FSharp.Core.SourceConstructFlags: Int32 value__ +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Closure +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Exception +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Field +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags KindMask +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Module +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags NonPublicRepresentation +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags None +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags ObjectType +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags RecordType +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags SumType +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags UnionCase +Microsoft.FSharp.Core.SourceConstructFlags: Microsoft.FSharp.Core.SourceConstructFlags Value +Microsoft.FSharp.Core.StringModule: Boolean Exists(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Boolean], System.String) +Microsoft.FSharp.Core.StringModule: Boolean ForAll(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Boolean], System.String) +Microsoft.FSharp.Core.StringModule: Int32 Length(System.String) +Microsoft.FSharp.Core.StringModule: System.String Collect(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.String], System.String) +Microsoft.FSharp.Core.StringModule: System.String Concat(System.String, System.Collections.Generic.IEnumerable`1[System.String]) +Microsoft.FSharp.Core.StringModule: System.String Filter(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Boolean], System.String) +Microsoft.FSharp.Core.StringModule: System.String Initialize(Int32, Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,System.String]) +Microsoft.FSharp.Core.StringModule: System.String Map(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Char], System.String) +Microsoft.FSharp.Core.StringModule: System.String MapIndexed(Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Char,System.Char]], System.String) +Microsoft.FSharp.Core.StringModule: System.String Replicate(Int32, System.String) +Microsoft.FSharp.Core.StringModule: Void Iterate(Microsoft.FSharp.Core.FSharpFunc`2[System.Char,Microsoft.FSharp.Core.Unit], System.String) +Microsoft.FSharp.Core.StringModule: Void IterateIndexed(Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,Microsoft.FSharp.Core.FSharpFunc`2[System.Char,Microsoft.FSharp.Core.Unit]], System.String) +Microsoft.FSharp.Core.StructAttribute: Void .ctor() +Microsoft.FSharp.Core.StructuralComparisonAttribute: Void .ctor() +Microsoft.FSharp.Core.StructuralEqualityAttribute: Void .ctor() +Microsoft.FSharp.Core.StructuredFormatDisplayAttribute: System.String Value +Microsoft.FSharp.Core.StructuredFormatDisplayAttribute: System.String get_Value() +Microsoft.FSharp.Core.StructuredFormatDisplayAttribute: Void .ctor(System.String) +Microsoft.FSharp.Core.TailCallAttribute: Void .ctor() +Microsoft.FSharp.Core.Unit: Boolean Equals(System.Object) +Microsoft.FSharp.Core.Unit: Int32 GetHashCode() +Microsoft.FSharp.Core.UnverifiableAttribute: Void .ctor() +Microsoft.FSharp.Core.ValueOption: Boolean Contains[T](T, Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean Exists[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean ForAll[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean IsNone[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Boolean IsSome[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Int32 Count[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Collections.FSharpList`1[T] ToList[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpOption`1[T] ToOption[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Bind[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpValueOption`1[TResult]], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Map2[T1,T2,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,TResult]], Microsoft.FSharp.Core.FSharpValueOption`1[T1], Microsoft.FSharp.Core.FSharpValueOption`1[T2]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Map3[T1,T2,T3,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,Microsoft.FSharp.Core.FSharpFunc`2[T3,TResult]]], Microsoft.FSharp.Core.FSharpValueOption`1[T1], Microsoft.FSharp.Core.FSharpValueOption`1[T2], Microsoft.FSharp.Core.FSharpValueOption`1[T3]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[TResult] Map[T,TResult](Microsoft.FSharp.Core.FSharpFunc`2[T,TResult], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] Filter[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] Flatten[T](Microsoft.FSharp.Core.FSharpValueOption`1[Microsoft.FSharp.Core.FSharpValueOption`1[T]]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OfNullable[T](System.Nullable`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OfObj[T](T) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OfOption[T](Microsoft.FSharp.Core.FSharpOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OrElseWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,Microsoft.FSharp.Core.FSharpValueOption`1[T]], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Microsoft.FSharp.Core.FSharpValueOption`1[T] OrElse[T](Microsoft.FSharp.Core.FSharpValueOption`1[T], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: System.Nullable`1[T] ToNullable[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T DefaultValue[T](T, Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T DefaultWith[T](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,T], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T GetValue[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T ToObj[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: TState FoldBack[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.FSharpFunc`2[TState,TState]], Microsoft.FSharp.Core.FSharpValueOption`1[T], TState) +Microsoft.FSharp.Core.ValueOption: TState Fold[T,TState](Microsoft.FSharp.Core.FSharpFunc`2[TState,Microsoft.FSharp.Core.FSharpFunc`2[T,TState]], TState, Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: T[] ToArray[T](Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.ValueOption: Void Iterate[T](Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Core.Unit], Microsoft.FSharp.Core.FSharpValueOption`1[T]) +Microsoft.FSharp.Core.VolatileFieldAttribute: Void .ctor() +Microsoft.FSharp.Core.WarnOnWithoutNullArgumentAttribute: System.String WarningMessage +Microsoft.FSharp.Core.WarnOnWithoutNullArgumentAttribute: System.String get_WarningMessage() +Microsoft.FSharp.Core.WarnOnWithoutNullArgumentAttribute: Void .ctor(System.String) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToByte[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToUInt8$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Byte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Byte] ToUInt8[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Char] ToChar$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Char], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Char] ToChar[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Decimal] ToDecimal$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Decimal], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Decimal] ToDecimal[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToDouble$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToDouble[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToFloat$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Double], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Double] ToFloat[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int16] ToInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int16], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int16] ToInt16[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt32[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int32] ToInt[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int64] ToInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Int64], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Int64] ToInt64[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.IntPtr] ToIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.IntPtr], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.IntPtr] ToIntPtr[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToInt8$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToInt8[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToSByte$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.SByte], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.SByte] ToSByte[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToFloat32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToFloat32[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToSingle$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.Single], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.Single] ToSingle[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt16] ToUInt16$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt16], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt16] ToUInt16[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt32$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt32], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt32[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt32] ToUInt[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt64] ToUInt64$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UInt64], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UInt64] ToUInt64[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UIntPtr] ToUIntPtr$W[T](Microsoft.FSharp.Core.FSharpFunc`2[T,System.UIntPtr], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[System.UIntPtr] ToUIntPtr[T](System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableModule: System.Nullable`1[TResult] ToEnum[TResult](System.Nullable`1[System.Int32]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_EqualsQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_GreaterEqualsQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_GreaterQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_LessEqualsQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_LessGreaterQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_LessQmark[T](T, System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkEqualsQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkEquals[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreaterEqualsQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreaterEquals[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreaterQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkGreater[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessEqualsQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessEquals[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessGreaterQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessGreater[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLessQmark[T](System.Nullable`1[T], System.Nullable`1[T]) +Microsoft.FSharp.Linq.NullableOperators: Boolean op_QmarkLess[T](System.Nullable`1[T], T) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_DivideQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_DivideQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MinusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MinusQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MultiplyQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_MultiplyQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PercentQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PercentQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PlusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_PlusQmark[T1,T2,T3](T1, System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkDivide$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkDivideQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkDivideQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkDivide[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMinus$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMinusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMinusQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMinus[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiply$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiplyQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiplyQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkMultiply[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercent$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercentQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercentQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPercent[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlus$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlusQmark$W[T1,T2,T3](Microsoft.FSharp.Core.FSharpFunc`2[T1,Microsoft.FSharp.Core.FSharpFunc`2[T2,T3]], System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlusQmark[T1,T2,T3](System.Nullable`1[T1], System.Nullable`1[T2]) +Microsoft.FSharp.Linq.NullableOperators: System.Nullable`1[T3] op_QmarkPlus[T1,T2,T3](System.Nullable`1[T1], T2) +Microsoft.FSharp.Linq.QueryBuilder: Boolean All[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Boolean Contains[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], T) +Microsoft.FSharp.Linq.QueryBuilder: Boolean Exists[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Int32 Count[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[System.Linq.IGrouping`2[TKey,TValue],Q] GroupValBy[T,TKey,TValue,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[System.Linq.IGrouping`2[TKey,T],Q] GroupBy[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Distinct[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SkipWhile[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Skip[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Int32) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortByDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortByNullableDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortByNullable[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] SortBy[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Source[T,Q](System.Linq.IQueryable`1[T]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] TakeWhile[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Take[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Int32) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenByDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenByNullableDescending[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenByNullable[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TKey]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] ThenBy[T,Q,TKey](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TKey]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Where[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] YieldFrom[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Yield[T,Q](T) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,Q] Zero[T,Q]() +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[T,System.Collections.IEnumerable] Source[T](System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] For[T,Q,TResult,Q2](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,Microsoft.FSharp.Linq.QuerySource`2[TResult,Q2]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] GroupJoin[TOuter,Q,TInner,TKey,TResult](Microsoft.FSharp.Linq.QuerySource`2[TOuter,Q], Microsoft.FSharp.Linq.QuerySource`2[TInner,Q], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TInner,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,Microsoft.FSharp.Core.FSharpFunc`2[System.Collections.Generic.IEnumerable`1[TInner],TResult]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] Join[TOuter,Q,TInner,TKey,TResult](Microsoft.FSharp.Linq.QuerySource`2[TOuter,Q], Microsoft.FSharp.Linq.QuerySource`2[TInner,Q], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TInner,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,Microsoft.FSharp.Core.FSharpFunc`2[TInner,TResult]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] LeftOuterJoin[TOuter,Q,TInner,TKey,TResult](Microsoft.FSharp.Linq.QuerySource`2[TOuter,Q], Microsoft.FSharp.Linq.QuerySource`2[TInner,Q], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TInner,TKey], Microsoft.FSharp.Core.FSharpFunc`2[TOuter,Microsoft.FSharp.Core.FSharpFunc`2[System.Collections.Generic.IEnumerable`1[TInner],TResult]]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Linq.QuerySource`2[TResult,Q] Select[T,Q,TResult](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TResult]) +Microsoft.FSharp.Linq.QueryBuilder: Microsoft.FSharp.Quotations.FSharpExpr`1[T] Quote[T](Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Linq.QueryBuilder: System.Linq.IQueryable`1[T] Run[T](Microsoft.FSharp.Quotations.FSharpExpr`1[Microsoft.FSharp.Linq.QuerySource`2[T,System.Linq.IQueryable]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] AverageByNullable$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TValue]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] AverageByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] MaxByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] MinByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] SumByNullable$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: System.Nullable`1[TValue] SumByNullable[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Nullable`1[TValue]]) +Microsoft.FSharp.Linq.QueryBuilder: T ExactlyOneOrDefault[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T ExactlyOne[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Find[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,System.Boolean]) +Microsoft.FSharp.Linq.QueryBuilder: T HeadOrDefault[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Head[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T LastOrDefault[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Last[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q]) +Microsoft.FSharp.Linq.QueryBuilder: T Nth[T,Q](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Int32) +Microsoft.FSharp.Linq.QueryBuilder: TValue AverageBy$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[System.Int32,TValue]], Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue AverageBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue MaxBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue MinBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue SumBy$W[T,Q,TValue](Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Core.Unit,TValue], Microsoft.FSharp.Core.FSharpFunc`2[TValue,Microsoft.FSharp.Core.FSharpFunc`2[TValue,TValue]], Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: TValue SumBy[T,Q,TValue](Microsoft.FSharp.Linq.QuerySource`2[T,Q], Microsoft.FSharp.Core.FSharpFunc`2[T,TValue]) +Microsoft.FSharp.Linq.QueryBuilder: Void .ctor() +Microsoft.FSharp.Linq.QueryRunExtensions.HighPriority: System.Collections.Generic.IEnumerable`1[T] RunQueryAsEnumerable[T](Microsoft.FSharp.Linq.QueryBuilder, Microsoft.FSharp.Quotations.FSharpExpr`1[Microsoft.FSharp.Linq.QuerySource`2[T,System.Collections.IEnumerable]]) +Microsoft.FSharp.Linq.QueryRunExtensions.LowPriority: T RunQueryAsValue[T](Microsoft.FSharp.Linq.QueryBuilder, Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Linq.QuerySource`2[T,Q]: System.Collections.Generic.IEnumerable`1[T] Source +Microsoft.FSharp.Linq.QuerySource`2[T,Q]: System.Collections.Generic.IEnumerable`1[T] get_Source() +Microsoft.FSharp.Linq.QuerySource`2[T,Q]: Void .ctor(System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`1[T1]: Void .ctor(T1) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`2[T1,T2]: Void .ctor(T1, T2) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`3[T1,T2,T3]: Void .ctor(T1, T2, T3) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`4[T1,T2,T3,T4]: Void .ctor(T1, T2, T3, T4) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`5[T1,T2,T3,T4,T5]: Void .ctor(T1, T2, T3, T4, T5) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T6 Item6 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: T6 get_Item6() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`6[T1,T2,T3,T4,T5,T6]: Void .ctor(T1, T2, T3, T4, T5, T6) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T6 Item6 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T6 get_Item6() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T7 Item7 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: T7 get_Item7() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`7[T1,T2,T3,T4,T5,T6,T7]: Void .ctor(T1, T2, T3, T4, T5, T6, T7) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: Boolean Equals(System.Object) +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: Int32 GetHashCode() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T1 Item1 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T1 get_Item1() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T2 Item2 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T2 get_Item2() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T3 Item3 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T3 get_Item3() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T4 Item4 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T4 get_Item4() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T5 Item5 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T5 get_Item5() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T6 Item6 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T6 get_Item6() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T7 Item7 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T7 get_Item7() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T8 Item8 +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: T8 get_Item8() +Microsoft.FSharp.Linq.RuntimeHelpers.AnonymousObject`8[T1,T2,T3,T4,T5,T6,T7,T8]: Void .ctor(T1, T2, T3, T4, T5, T6, T7, T8) +Microsoft.FSharp.Linq.RuntimeHelpers.Grouping`2[K,T]: Void .ctor(K, System.Collections.Generic.IEnumerable`1[T]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: Microsoft.FSharp.Quotations.FSharpExpr SubstHelperRaw(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar[], System.Object[]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: Microsoft.FSharp.Quotations.FSharpExpr`1[T] SubstHelper[T](Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar[], System.Object[]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Linq.Expressions.Expression QuotationToExpression(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Linq.Expressions.Expression`1[T] ImplicitExpressionConversionHelper[T](T) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Linq.Expressions.Expression`1[T] QuotationToLambdaExpression[T](Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: System.Object EvaluateQuotation(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: T MemberInitializationHelper[T](T) +Microsoft.FSharp.Linq.RuntimeHelpers.LeafExpressionConverter: T NewAnonymousObjectHelper[T](T) +Microsoft.FSharp.NativeInterop.NativePtrModule: Boolean IsNullPointer[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr AddPointerInlined[T](IntPtr, Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr NullPointer[T]() +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr OfILSigPtrInlined[T](T*) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr OfNativeIntInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr OfVoidPtrInlined[T](Void*) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr StackAllocate[T](Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: IntPtr ToNativeIntInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: T GetPointerInlined[T](IntPtr, Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: T ReadPointerInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: T& ToByRefInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: T* ToILSigPtrInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void ClearPointerInlined[T](IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void CopyBlockInlined[T](IntPtr, IntPtr, Int32) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void CopyPointerInlined[T](IntPtr, IntPtr) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void InitializeBlockInlined[T](IntPtr, Byte, UInt32) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void SetPointerInlined[T](IntPtr, Int32, T) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void WritePointerInlined[T](IntPtr, T) +Microsoft.FSharp.NativeInterop.NativePtrModule: Void* ToVoidPtrInlined[T](IntPtr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],Microsoft.FSharp.Collections.FSharpList`1[System.Type],Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]]] SpecificCallPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Core.Unit] UnitPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] MethodWithReflectedDefinitionPattern(System.Reflection.MethodBase) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] PropertyGetterWithReflectedDefinitionPattern(System.Reflection.PropertyInfo) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] PropertySetterWithReflectedDefinitionPattern(System.Reflection.PropertyInfo) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Boolean] BoolPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Byte] BytePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Char] CharPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Decimal] DecimalPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Double] DoublePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int16] Int16Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int32] Int32Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Int64] Int64Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.SByte] SBytePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Single] SinglePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.String] StringPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpVar]],Microsoft.FSharp.Quotations.FSharpExpr]] LambdasPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]]] ApplicationsPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] AndAlsoPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] OrElsePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.UInt16] UInt16Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.UInt32] UInt32Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.DerivedPatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.UInt64] UInt64Pattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.ExprShapeModule: Microsoft.FSharp.Core.FSharpChoice`3[Microsoft.FSharp.Quotations.FSharpVar,System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr],System.Tuple`2[System.Object,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] ShapePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.ExprShapeModule: Microsoft.FSharp.Quotations.FSharpExpr RebuildShapeCombination(System.Object, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Boolean Equals(System.Object) +Microsoft.FSharp.Quotations.FSharpExpr: Int32 GetHashCode() +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr] CustomAttributes +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr] get_CustomAttributes() +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] TryGetReflectedDefinition(System.Reflection.MethodBase) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr AddressOf(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr AddressSet(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Application(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Applications(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Call(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Call(System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr CallWithWitnesses(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.MethodInfo, System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr], Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr CallWithWitnesses(System.Reflection.MethodInfo, System.Reflection.MethodInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr], Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Coerce(Microsoft.FSharp.Quotations.FSharpExpr, System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr DefaultValue(System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Deserialize(System.Type, Microsoft.FSharp.Collections.FSharpList`1[System.Type], Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr], Byte[]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Deserialize40(System.Type, System.Type[], System.Type[], Microsoft.FSharp.Quotations.FSharpExpr[], Byte[]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldGet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.FieldInfo) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldGet(System.Reflection.FieldInfo) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldSet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.FieldInfo, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr FieldSet(System.Reflection.FieldInfo, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr ForIntegerRangeLoop(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr IfThenElse(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Lambda(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Let(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr LetRecursive(Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]], Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewArray(System.Type, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewDelegate(System.Type, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpVar], Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewObject(System.Reflection.ConstructorInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewRecord(System.Type, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewStructTuple(Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewStructTuple(System.Reflection.Assembly, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewTuple(Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr NewUnionCase(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertyGet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.PropertyInfo, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertyGet(System.Reflection.PropertyInfo, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertySet(Microsoft.FSharp.Quotations.FSharpExpr, System.Reflection.PropertyInfo, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr PropertySet(System.Reflection.PropertyInfo, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Quote(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr QuoteRaw(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr QuoteTyped(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Sequential(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Substitute(Microsoft.FSharp.Core.FSharpFunc`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr]]) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TryFinally(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TryWith(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TupleGet(Microsoft.FSharp.Quotations.FSharpExpr, Int32) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr TypeTest(Microsoft.FSharp.Quotations.FSharpExpr, System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr UnionCaseTest(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Reflection.UnionCaseInfo) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Value(System.Object, System.Type) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr ValueWithName(System.Object, System.Type, System.String) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr ValueWithName[T](T, System.String) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Value[T](T) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr Var(Microsoft.FSharp.Quotations.FSharpVar) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr VarSet(Microsoft.FSharp.Quotations.FSharpVar, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr WhileLoop(Microsoft.FSharp.Quotations.FSharpExpr, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr WithValue(System.Object, System.Type, Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr`1[T] Cast[T](Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr`1[T] GlobalVar[T](System.String) +Microsoft.FSharp.Quotations.FSharpExpr: Microsoft.FSharp.Quotations.FSharpExpr`1[T] WithValue[T](T, Microsoft.FSharp.Quotations.FSharpExpr`1[T]) +Microsoft.FSharp.Quotations.FSharpExpr: System.Collections.Generic.IEnumerable`1[Microsoft.FSharp.Quotations.FSharpVar] GetFreeVars() +Microsoft.FSharp.Quotations.FSharpExpr: System.String ToString() +Microsoft.FSharp.Quotations.FSharpExpr: System.String ToString(Boolean) +Microsoft.FSharp.Quotations.FSharpExpr: System.Type Type +Microsoft.FSharp.Quotations.FSharpExpr: System.Type get_Type() +Microsoft.FSharp.Quotations.FSharpExpr: Void RegisterReflectedDefinitions(System.Reflection.Assembly, System.String, Byte[]) +Microsoft.FSharp.Quotations.FSharpExpr: Void RegisterReflectedDefinitions(System.Reflection.Assembly, System.String, Byte[], System.Type[]) +Microsoft.FSharp.Quotations.FSharpExpr`1[T]: Microsoft.FSharp.Quotations.FSharpExpr Raw +Microsoft.FSharp.Quotations.FSharpExpr`1[T]: Microsoft.FSharp.Quotations.FSharpExpr get_Raw() +Microsoft.FSharp.Quotations.FSharpVar: Boolean Equals(System.Object) +Microsoft.FSharp.Quotations.FSharpVar: Boolean IsMutable +Microsoft.FSharp.Quotations.FSharpVar: Boolean get_IsMutable() +Microsoft.FSharp.Quotations.FSharpVar: Int32 GetHashCode() +Microsoft.FSharp.Quotations.FSharpVar: Microsoft.FSharp.Quotations.FSharpVar Global(System.String, System.Type) +Microsoft.FSharp.Quotations.FSharpVar: System.String Name +Microsoft.FSharp.Quotations.FSharpVar: System.String ToString() +Microsoft.FSharp.Quotations.FSharpVar: System.String get_Name() +Microsoft.FSharp.Quotations.FSharpVar: System.Type Type +Microsoft.FSharp.Quotations.FSharpVar: System.Type get_Type() +Microsoft.FSharp.Quotations.FSharpVar: Void .ctor(System.String, System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]] NewStructTuplePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]] NewTuplePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] AddressOfPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] QuotePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] QuoteRawPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr] QuoteTypedPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpVar] VarPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Collections.FSharpList`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]],Microsoft.FSharp.Quotations.FSharpExpr]] LetRecursivePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.FieldInfo]] FieldGetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] AddressSetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] ApplicationPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] SequentialPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] TryFinallyPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] WhileLoopPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Reflection.UnionCaseInfo]] UnionCaseTestPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,System.Int32]] TupleGetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,System.Type]] CoercePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpExpr,System.Type]] TypeTestPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]] LambdaPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]] VarSetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[Microsoft.FSharp.Reflection.UnionCaseInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewUnionCasePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Object,System.Type]] ValuePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Reflection.ConstructorInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewObjectPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Type,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewArrayPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Type,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] NewRecordPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.FieldInfo,Microsoft.FSharp.Quotations.FSharpExpr]] FieldSetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.MethodInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] CallPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.PropertyInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] PropertyGetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] IfThenElsePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] LetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[System.Object,System.Type,Microsoft.FSharp.Quotations.FSharpExpr]] WithValuePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[System.Object,System.Type,System.String]] ValueWithNamePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`3[System.Type,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpVar],Microsoft.FSharp.Quotations.FSharpExpr]] NewDelegatePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`4[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.PropertyInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr],Microsoft.FSharp.Quotations.FSharpExpr]] PropertySetPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`4[Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpExpr]] ForIntegerRangeLoopPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`5[Microsoft.FSharp.Core.FSharpOption`1[Microsoft.FSharp.Quotations.FSharpExpr],System.Reflection.MethodInfo,System.Reflection.MethodInfo,Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr],Microsoft.FSharp.Collections.FSharpList`1[Microsoft.FSharp.Quotations.FSharpExpr]]] CallWithWitnessesPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`5[Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr,Microsoft.FSharp.Quotations.FSharpVar,Microsoft.FSharp.Quotations.FSharpExpr]] TryWithPattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Quotations.PatternsModule: Microsoft.FSharp.Core.FSharpOption`1[System.Type] DefaultValuePattern(Microsoft.FSharp.Quotations.FSharpExpr) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Boolean FSharpType.IsExceptionRepresentation.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Boolean FSharpType.IsRecord.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Boolean FSharpType.IsUnion.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Int32] FSharpValue.PreComputeUnionTagReader.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] FSharpValue.PreComputeRecordReader.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] FSharpValue.PreComputeUnionReader.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] FSharpValue.PreComputeRecordConstructor.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] FSharpValue.PreComputeUnionConstructor.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: Microsoft.FSharp.Reflection.UnionCaseInfo[] FSharpType.GetUnionCases.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object FSharpValue.MakeRecord.Static(System.Type, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object FSharpValue.MakeUnion.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object[] FSharpValue.GetExceptionFields.Static(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Object[] FSharpValue.GetRecordFields.Static(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.ConstructorInfo FSharpValue.PreComputeRecordConstructorInfo.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.MemberInfo FSharpValue.PreComputeUnionTagMemberInfo.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.MethodInfo FSharpValue.PreComputeUnionConstructorInfo.Static(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.PropertyInfo[] FSharpType.GetExceptionFields.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Reflection.PropertyInfo[] FSharpType.GetRecordFields.Static(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpReflectionExtensions: System.Tuple`2[Microsoft.FSharp.Reflection.UnionCaseInfo,System.Object[]] FSharpValue.GetUnionFields.Static(System.Object, System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Boolean]) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsExceptionRepresentation(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsFunction(System.Type) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsModule(System.Type) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsRecord(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsTuple(System.Type) +Microsoft.FSharp.Reflection.FSharpType: Boolean IsUnion(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: Microsoft.FSharp.Reflection.UnionCaseInfo[] GetUnionCases(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: System.Reflection.PropertyInfo[] GetExceptionFields(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: System.Reflection.PropertyInfo[] GetRecordFields(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpType: System.Tuple`2[System.Type,System.Type] GetFunctionElements(System.Type) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeFunctionType(System.Type, System.Type) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeStructTupleType(System.Reflection.Assembly, System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeStructTupleType(System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeTupleType(System.Reflection.Assembly, System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type MakeTupleType(System.Type[]) +Microsoft.FSharp.Reflection.FSharpType: System.Type[] GetTupleElements(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Int32] PreComputeUnionTagReader(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] PreComputeRecordReader(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] PreComputeTupleReader(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object[]] PreComputeUnionReader(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object] PreComputeRecordFieldReader(System.Reflection.PropertyInfo) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] PreComputeRecordConstructor(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] PreComputeTupleConstructor(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: Microsoft.FSharp.Core.FSharpFunc`2[System.Object[],System.Object] PreComputeUnionConstructor(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object GetRecordField(System.Object, System.Reflection.PropertyInfo) +Microsoft.FSharp.Reflection.FSharpValue: System.Object GetTupleField(System.Object, Int32) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeFunction(System.Type, Microsoft.FSharp.Core.FSharpFunc`2[System.Object,System.Object]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeRecord(System.Type, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeTuple(System.Object[], System.Type) +Microsoft.FSharp.Reflection.FSharpValue: System.Object MakeUnion(Microsoft.FSharp.Reflection.UnionCaseInfo, System.Object[], Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object[] GetExceptionFields(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object[] GetRecordFields(System.Object, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Object[] GetTupleFields(System.Object) +Microsoft.FSharp.Reflection.FSharpValue: System.Reflection.ConstructorInfo PreComputeRecordConstructorInfo(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Reflection.MemberInfo PreComputeUnionTagMemberInfo(System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Reflection.MethodInfo PreComputeUnionConstructorInfo(Microsoft.FSharp.Reflection.UnionCaseInfo, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Tuple`2[Microsoft.FSharp.Reflection.UnionCaseInfo,System.Object[]] GetUnionFields(System.Object, System.Type, Microsoft.FSharp.Core.FSharpOption`1[System.Reflection.BindingFlags]) +Microsoft.FSharp.Reflection.FSharpValue: System.Tuple`2[System.Reflection.ConstructorInfo,Microsoft.FSharp.Core.FSharpOption`1[System.Type]] PreComputeTupleConstructorInfo(System.Type) +Microsoft.FSharp.Reflection.FSharpValue: System.Tuple`2[System.Reflection.PropertyInfo,Microsoft.FSharp.Core.FSharpOption`1[System.Tuple`2[System.Type,System.Int32]]] PreComputeTuplePropertyInfo(System.Type, Int32) +Microsoft.FSharp.Reflection.UnionCaseInfo: Boolean Equals(System.Object) +Microsoft.FSharp.Reflection.UnionCaseInfo: Int32 GetHashCode() +Microsoft.FSharp.Reflection.UnionCaseInfo: Int32 Tag +Microsoft.FSharp.Reflection.UnionCaseInfo: Int32 get_Tag() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Collections.Generic.IList`1[System.Reflection.CustomAttributeData] GetCustomAttributesData() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Object[] GetCustomAttributes() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Object[] GetCustomAttributes(System.Type) +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Reflection.PropertyInfo[] GetFields() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.String Name +Microsoft.FSharp.Reflection.UnionCaseInfo: System.String ToString() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.String get_Name() +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Type DeclaringType +Microsoft.FSharp.Reflection.UnionCaseInfo: System.Type get_DeclaringType() \ No newline at end of file diff --git a/tests/FSharp.Core.UnitTests/SurfaceArea.fs b/tests/FSharp.Core.UnitTests/SurfaceArea.fs index c52b1fba19f..5e5d0126fc6 100644 --- a/tests/FSharp.Core.UnitTests/SurfaceArea.fs +++ b/tests/FSharp.Core.UnitTests/SurfaceArea.fs @@ -24,7 +24,7 @@ type SurfaceAreaTest() = // We are testing the surface area of the FSharp.Core assembly. #if NETCOREAPP - "netstandard21" + "netcore" #else "netstandard20" #endif diff --git a/tests/FSharp.Test.Utilities/Compiler.fs b/tests/FSharp.Test.Utilities/Compiler.fs index 2d7b7e077cb..1adc7bf814e 100644 --- a/tests/FSharp.Test.Utilities/Compiler.fs +++ b/tests/FSharp.Test.Utilities/Compiler.fs @@ -1511,6 +1511,7 @@ $ code --diff {outFile} {expectedFile} | VerifyDocuments of string list | VerifySequencePointsInSameMethod of lines: Line list | VerifyNoDebuggerHiddenOnMethodWithLine of line: Line + | VerifyRuntimeAsyncMethodSequencePointsInSource of sourceFileName: string * startLine: int * endLine: int | Dummy of unit let private verifyPdbFormat (reader: MetadataReader) compilationType = @@ -1609,6 +1610,73 @@ $ code --diff {outFile} {expectedFile} if actualPoints.IsEmpty then failwith (sprintf "Method '%s' has no non-hidden sequence points" methodName) + let private verifyRuntimeAsyncMethodSequencePointsInSource + (assemblyPath: string) + (pdbReader: MetadataReader) + (sourceFileName: string) + (startLine: int) + (endLine: int) + = + use peStream = File.OpenRead(assemblyPath) + use peReader = new PEReader(peStream) + let assemblyReader = peReader.GetMetadataReader() + let asyncBit = 0x2000 + + let methods = + getMethodDebugInfos assemblyReader pdbReader + |> List.choose (fun (typeName, methodName, methodHandle, debugInfo) -> + let method = assemblyReader.GetMethodDefinition methodHandle + let isRuntimeAsync = (int method.ImplAttributes &&& asyncBit) <> 0 + + let points = + debugInfo.GetSequencePoints() + |> Seq.filter (fun point -> not point.IsHidden) + |> Seq.toList + + let hasSourcePoint = + points + |> List.exists (fun point -> + let document = pdbReader.GetDocument point.Document + let documentName = pdbReader.GetString document.Name + String.Equals(Path.GetFileName(documentName), sourceFileName, StringComparison.OrdinalIgnoreCase) + && point.StartLine >= startLine + && point.EndLine <= endLine) + + if isRuntimeAsync && hasSourcePoint then + Some(typeName, methodName, points) + else + None) + + if methods.Length <> 1 then + let names = methods |> List.map (fun (typeName, methodName, _) -> $"{typeName}.{methodName}") + failwith $"Expected exactly one runtime-async method with a point in {sourceFileName}:{startLine}-{endLine}, found {methods.Length}: {names}" + + let typeName, methodName, points = methods.Head + + let invalidPoints = + points + |> List.filter (fun point -> + let document = pdbReader.GetDocument point.Document + let documentName = pdbReader.GetString document.Name + + not ( + String.Equals(Path.GetFileName(documentName), sourceFileName, StringComparison.OrdinalIgnoreCase) + && point.StartLine >= startLine + && point.EndLine <= endLine + )) + + if not invalidPoints.IsEmpty then + let actual = + invalidPoints + |> List.map (fun point -> + let document = pdbReader.GetDocument point.Document + let documentName = pdbReader.GetString document.Name + $"{Path.GetFileName(documentName)}:{point.StartLine},{point.StartColumn}-{point.EndLine},{point.EndColumn}") + |> String.concat "; " + + failwith + $"Runtime-async method {typeName}.{methodName} has sequence points outside {sourceFileName}:{startLine}-{endLine}: {actual}" + let private verifySequencePoints (reader: MetadataReader) expectedSequencePoints = let sequencePoints = [ for sp in reader.MethodDebugInformation do @@ -1779,6 +1847,13 @@ $ code --diff {outFile} {expectedFile} verifySequencePointsInSameMethod (optOutputPath |> Option.defaultValue "") reader lines | VerifyNoDebuggerHiddenOnMethodWithLine line -> verifyNoDebuggerHiddenOnMethodWithLine (optOutputPath |> Option.defaultValue "") reader line + | VerifyRuntimeAsyncMethodSequencePointsInSource(sourceFileName, startLine, endLine) -> + verifyRuntimeAsyncMethodSequencePointsInSource + (optOutputPath |> Option.defaultValue "") + reader + sourceFileName + startLine + endLine | _ -> failwith $"Unknown verification option: {option.ToString()}" module private Il = diff --git a/tests/FSharp.Test.Utilities/SurfaceArea.fs b/tests/FSharp.Test.Utilities/SurfaceArea.fs index 8b6e6c90748..96c6ddfdc6b 100644 --- a/tests/FSharp.Test.Utilities/SurfaceArea.fs +++ b/tests/FSharp.Test.Utilities/SurfaceArea.fs @@ -81,4 +81,4 @@ module FSharp.Test.SurfaceArea verifyWith true (fun _ -> true) assembly baselinePath let verifyIgnoringAssemblyReferences assembly baselinePath : unit = - verifyWith false (fun line -> not (line.StartsWith("! AssemblyReference:", StringComparison.Ordinal))) assembly baselinePath + verifyWith true (fun line -> not (line.StartsWith("! AssemblyReference:", StringComparison.Ordinal))) assembly baselinePath