forked from OSchip/llvm-project
300 lines
11 KiB
C++
300 lines
11 KiB
C++
//===----- CGCoroutine.cpp - Emit LLVM Code for C++ coroutines ------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This contains code dealing with C++ code generation of coroutines.
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//
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//===----------------------------------------------------------------------===//
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#include "CodeGenFunction.h"
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#include "llvm/ADT/ScopeExit.h"
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#include "clang/AST/StmtCXX.h"
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using namespace clang;
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using namespace CodeGen;
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using llvm::Value;
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using llvm::BasicBlock;
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namespace {
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enum class AwaitKind { Init, Normal, Yield, Final };
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static constexpr llvm::StringLiteral AwaitKindStr[] = {"init", "await", "yield",
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"final"};
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}
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struct clang::CodeGen::CGCoroData {
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// What is the current await expression kind and how many
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// await/yield expressions were encountered so far.
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// These are used to generate pretty labels for await expressions in LLVM IR.
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AwaitKind CurrentAwaitKind = AwaitKind::Init;
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unsigned AwaitNum = 0;
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unsigned YieldNum = 0;
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// How many co_return statements are in the coroutine. Used to decide whether
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// we need to add co_return; equivalent at the end of the user authored body.
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unsigned CoreturnCount = 0;
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// A branch to this block is emitted when coroutine needs to suspend.
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llvm::BasicBlock *SuspendBB = nullptr;
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// Stores the jump destination just before the coroutine memory is freed.
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// This is the destination that every suspend point jumps to for the cleanup
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// branch.
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CodeGenFunction::JumpDest CleanupJD;
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// Stores the jump destination just before the final suspend. The co_return
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// statements jumps to this point after calling return_xxx promise member.
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CodeGenFunction::JumpDest FinalJD;
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// Stores the llvm.coro.id emitted in the function so that we can supply it
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// as the first argument to coro.begin, coro.alloc and coro.free intrinsics.
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// Note: llvm.coro.id returns a token that cannot be directly expressed in a
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// builtin.
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llvm::CallInst *CoroId = nullptr;
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// If coro.id came from the builtin, remember the expression to give better
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// diagnostic. If CoroIdExpr is nullptr, the coro.id was created by
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// EmitCoroutineBody.
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CallExpr const *CoroIdExpr = nullptr;
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};
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// Defining these here allows to keep CGCoroData private to this file.
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clang::CodeGen::CodeGenFunction::CGCoroInfo::CGCoroInfo() {}
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CodeGenFunction::CGCoroInfo::~CGCoroInfo() {}
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static void createCoroData(CodeGenFunction &CGF,
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CodeGenFunction::CGCoroInfo &CurCoro,
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llvm::CallInst *CoroId,
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CallExpr const *CoroIdExpr = nullptr) {
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if (CurCoro.Data) {
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if (CurCoro.Data->CoroIdExpr)
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CGF.CGM.Error(CoroIdExpr->getLocStart(),
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"only one __builtin_coro_id can be used in a function");
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else if (CoroIdExpr)
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CGF.CGM.Error(CoroIdExpr->getLocStart(),
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"__builtin_coro_id shall not be used in a C++ coroutine");
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else
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llvm_unreachable("EmitCoroutineBodyStatement called twice?");
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return;
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}
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CurCoro.Data = std::unique_ptr<CGCoroData>(new CGCoroData);
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CurCoro.Data->CoroId = CoroId;
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CurCoro.Data->CoroIdExpr = CoroIdExpr;
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}
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// Synthesize a pretty name for a suspend point.
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static SmallString<32> buildSuspendPrefixStr(CGCoroData &Coro, AwaitKind Kind) {
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unsigned No = 0;
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switch (Kind) {
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case AwaitKind::Init:
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case AwaitKind::Final:
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break;
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case AwaitKind::Normal:
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No = ++Coro.AwaitNum;
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break;
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case AwaitKind::Yield:
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No = ++Coro.YieldNum;
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break;
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}
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SmallString<32> Prefix(AwaitKindStr[static_cast<unsigned>(Kind)]);
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if (No > 1) {
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Twine(No).toVector(Prefix);
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}
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return Prefix;
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}
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// Emit suspend expression which roughly looks like:
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//
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// auto && x = CommonExpr();
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// if (!x.await_ready()) {
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// llvm_coro_save();
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// x.await_suspend(...); (*)
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// llvm_coro_suspend(); (**)
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// }
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// x.await_resume();
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//
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// where the result of the entire expression is the result of x.await_resume()
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//
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// (*) If x.await_suspend return type is bool, it allows to veto a suspend:
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// if (x.await_suspend(...))
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// llvm_coro_suspend();
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//
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// (**) llvm_coro_suspend() encodes three possible continuations as
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// a switch instruction:
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//
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// %where-to = call i8 @llvm.coro.suspend(...)
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// switch i8 %where-to, label %coro.ret [ ; jump to epilogue to suspend
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// i8 0, label %yield.ready ; go here when resumed
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// i8 1, label %yield.cleanup ; go here when destroyed
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// ]
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//
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// See llvm's docs/Coroutines.rst for more details.
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//
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static RValue emitSuspendExpression(CodeGenFunction &CGF, CGCoroData &Coro,
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CoroutineSuspendExpr const &S,
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AwaitKind Kind, AggValueSlot aggSlot,
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bool ignoreResult) {
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auto *E = S.getCommonExpr();
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auto Binder =
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CodeGenFunction::OpaqueValueMappingData::bind(CGF, S.getOpaqueValue(), E);
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auto UnbindOnExit = llvm::make_scope_exit([&] { Binder.unbind(CGF); });
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auto Prefix = buildSuspendPrefixStr(Coro, Kind);
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BasicBlock *ReadyBlock = CGF.createBasicBlock(Prefix + Twine(".ready"));
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BasicBlock *SuspendBlock = CGF.createBasicBlock(Prefix + Twine(".suspend"));
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BasicBlock *CleanupBlock = CGF.createBasicBlock(Prefix + Twine(".cleanup"));
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// If expression is ready, no need to suspend.
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CGF.EmitBranchOnBoolExpr(S.getReadyExpr(), ReadyBlock, SuspendBlock, 0);
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// Otherwise, emit suspend logic.
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CGF.EmitBlock(SuspendBlock);
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auto &Builder = CGF.Builder;
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llvm::Function *CoroSave = CGF.CGM.getIntrinsic(llvm::Intrinsic::coro_save);
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auto *NullPtr = llvm::ConstantPointerNull::get(CGF.CGM.Int8PtrTy);
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auto *SaveCall = Builder.CreateCall(CoroSave, {NullPtr});
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auto *SuspendRet = CGF.EmitScalarExpr(S.getSuspendExpr());
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if (SuspendRet != nullptr) {
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// Veto suspension if requested by bool returning await_suspend.
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assert(SuspendRet->getType()->isIntegerTy(1) &&
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"Sema should have already checked that it is void or bool");
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BasicBlock *RealSuspendBlock =
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CGF.createBasicBlock(Prefix + Twine(".suspend.bool"));
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CGF.Builder.CreateCondBr(SuspendRet, RealSuspendBlock, ReadyBlock);
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SuspendBlock = RealSuspendBlock;
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CGF.EmitBlock(RealSuspendBlock);
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}
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// Emit the suspend point.
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const bool IsFinalSuspend = (Kind == AwaitKind::Final);
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llvm::Function *CoroSuspend =
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CGF.CGM.getIntrinsic(llvm::Intrinsic::coro_suspend);
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auto *SuspendResult = Builder.CreateCall(
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CoroSuspend, {SaveCall, Builder.getInt1(IsFinalSuspend)});
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// Create a switch capturing three possible continuations.
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auto *Switch = Builder.CreateSwitch(SuspendResult, Coro.SuspendBB, 2);
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Switch->addCase(Builder.getInt8(0), ReadyBlock);
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Switch->addCase(Builder.getInt8(1), CleanupBlock);
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// Emit cleanup for this suspend point.
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CGF.EmitBlock(CleanupBlock);
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CGF.EmitBranchThroughCleanup(Coro.CleanupJD);
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// Emit await_resume expression.
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CGF.EmitBlock(ReadyBlock);
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return CGF.EmitAnyExpr(S.getResumeExpr(), aggSlot, ignoreResult);
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}
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RValue CodeGenFunction::EmitCoawaitExpr(const CoawaitExpr &E,
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AggValueSlot aggSlot,
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bool ignoreResult) {
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return emitSuspendExpression(*this, *CurCoro.Data, E,
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CurCoro.Data->CurrentAwaitKind, aggSlot,
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ignoreResult);
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}
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RValue CodeGenFunction::EmitCoyieldExpr(const CoyieldExpr &E,
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AggValueSlot aggSlot,
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bool ignoreResult) {
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return emitSuspendExpression(*this, *CurCoro.Data, E, AwaitKind::Yield,
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aggSlot, ignoreResult);
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}
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void CodeGenFunction::EmitCoreturnStmt(CoreturnStmt const &S) {
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++CurCoro.Data->CoreturnCount;
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EmitStmt(S.getPromiseCall());
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EmitBranchThroughCleanup(CurCoro.Data->FinalJD);
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}
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void CodeGenFunction::EmitCoroutineBody(const CoroutineBodyStmt &S) {
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auto *NullPtr = llvm::ConstantPointerNull::get(Builder.getInt8PtrTy());
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auto &TI = CGM.getContext().getTargetInfo();
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unsigned NewAlign = TI.getNewAlign() / TI.getCharWidth();
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auto *FinalBB = createBasicBlock("coro.final");
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auto *RetBB = createBasicBlock("coro.ret");
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auto *CoroId = Builder.CreateCall(
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CGM.getIntrinsic(llvm::Intrinsic::coro_id),
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{Builder.getInt32(NewAlign), NullPtr, NullPtr, NullPtr});
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createCoroData(*this, CurCoro, CoroId);
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CurCoro.Data->SuspendBB = RetBB;
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EmitScalarExpr(S.getAllocate());
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// FIXME: Setup cleanup scopes.
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EmitStmt(S.getPromiseDeclStmt());
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CurCoro.Data->CleanupJD = getJumpDestInCurrentScope(RetBB);
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CurCoro.Data->FinalJD = getJumpDestInCurrentScope(FinalBB);
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// FIXME: Emit initial suspend and more before the body.
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CurCoro.Data->CurrentAwaitKind = AwaitKind::Normal;
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EmitStmt(S.getBody());
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// See if we need to generate final suspend.
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const bool CanFallthrough = Builder.GetInsertBlock();
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const bool HasCoreturns = CurCoro.Data->CoreturnCount > 0;
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if (CanFallthrough || HasCoreturns) {
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EmitBlock(FinalBB);
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// FIXME: Emit final suspend.
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}
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EmitStmt(S.getDeallocate());
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EmitBlock(RetBB);
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// FIXME: Emit return for the coroutine return object.
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}
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// Emit coroutine intrinsic and patch up arguments of the token type.
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RValue CodeGenFunction::EmitCoroutineIntrinsic(const CallExpr *E,
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unsigned int IID) {
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SmallVector<llvm::Value *, 8> Args;
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switch (IID) {
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default:
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break;
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// The following three intrinsics take a token parameter referring to a token
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// returned by earlier call to @llvm.coro.id. Since we cannot represent it in
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// builtins, we patch it up here.
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case llvm::Intrinsic::coro_alloc:
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case llvm::Intrinsic::coro_begin:
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case llvm::Intrinsic::coro_free: {
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if (CurCoro.Data && CurCoro.Data->CoroId) {
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Args.push_back(CurCoro.Data->CoroId);
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break;
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}
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CGM.Error(E->getLocStart(), "this builtin expect that __builtin_coro_id has"
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" been used earlier in this function");
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// Fallthrough to the next case to add TokenNone as the first argument.
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}
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// @llvm.coro.suspend takes a token parameter. Add token 'none' as the first
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// argument.
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case llvm::Intrinsic::coro_suspend:
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Args.push_back(llvm::ConstantTokenNone::get(getLLVMContext()));
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break;
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}
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for (auto &Arg : E->arguments())
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Args.push_back(EmitScalarExpr(Arg));
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llvm::Value *F = CGM.getIntrinsic(IID);
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llvm::CallInst *Call = Builder.CreateCall(F, Args);
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// If we see @llvm.coro.id remember it in the CoroData. We will update
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// coro.alloc, coro.begin and coro.free intrinsics to refer to it.
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if (IID == llvm::Intrinsic::coro_id) {
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createCoroData(*this, CurCoro, Call, E);
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}
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return RValue::get(Call);
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}
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