75#include <initializer_list>
80#define DEBUG_TYPE "coro-split"
92 Builder.SetInsertPoint(CB);
98 AttributeList NewAttributes =
103 Builder.CreateInvoke(
Wrapper, Invoke->getNormalDest(),
104 Invoke->getUnwindDest(), {Awaiter, FramePtr});
106 WrapperInvoke->setCallingConv(Invoke->getCallingConv());
107 std::copy(Invoke->bundle_op_info_begin(), Invoke->bundle_op_info_end(),
108 WrapperInvoke->bundle_op_info_begin());
109 WrapperInvoke->setAttributes(NewAttributes);
110 WrapperInvoke->setDebugLoc(Invoke->getDebugLoc());
111 NewCall = WrapperInvoke;
115 WrapperCall->setAttributes(NewAttributes);
116 WrapperCall->setDebugLoc(
Call->getDebugLoc());
117 NewCall = WrapperCall;
123 Intrinsic::coro_await_suspend_handle) {
128 Builder.SetInsertPoint(Invoke->getNormalDest()->getFirstInsertionPt());
133 &*Builder.GetInsertPoint());
138 auto *ResumeCall = Builder.CreateCall(ResumeTy, ResumeAddr, {NewCall});
145 NewCall = ResumeCall;
176 Builder.CreateRetVoid();
180 auto *MustTailCallFunc = EndAsync->getMustTailCallFunction();
181 if (!MustTailCallFunc) {
182 Builder.CreateRetVoid();
188 auto *MustTailCallFuncBlock = CoroEndBlock->getSinglePredecessor();
189 assert(MustTailCallFuncBlock &&
"Must have a single predecessor block");
190 auto It = MustTailCallFuncBlock->getTerminator()->getIterator();
192 CoroEndBlock->splice(End->
getIterator(), MustTailCallFuncBlock,
193 MustTailCall->getIterator());
196 Builder.SetInsertPoint(End);
197 Builder.CreateRetVoid();
202 BB->splitBasicBlock(End);
203 BB->getTerminator()->eraseFromParent();
206 assert(InlineRes.isSuccess() &&
"Expected inlining to succeed");
225 "switch coroutine should not return any values");
230 Builder.CreateRetVoid();
236 if (!CoroEndBlockNeedsCleanup)
248 if (!CoroEnd->hasResults()) {
249 assert(RetTy->isVoidTy());
250 Builder.CreateRetVoid();
254 auto *CoroResults = CoroEnd->getResults();
255 unsigned NumReturns = CoroResults->numReturns();
258 assert(RetStructTy->getNumElements() == NumReturns &&
259 "numbers of returns should match resume function singature");
262 for (
Value *RetValEl : CoroResults->return_values())
263 ReturnValue = Builder.CreateInsertValue(ReturnValue, RetValEl, Idx++);
264 Builder.CreateRet(ReturnValue);
265 }
else if (NumReturns == 0) {
266 assert(RetTy->isVoidTy());
267 Builder.CreateRetVoid();
270 Builder.CreateRet(*CoroResults->retval_begin());
272 CoroResults->replaceAllUsesWith(
274 CoroResults->eraseFromParent();
282 "retcon coroutine should not return any values");
294 Builder.CreateRet(ReturnValue);
301 BB->splitBasicBlock(End);
302 BB->getTerminator()->eraseFromParent();
317 "markCoroutineAsDone is only supported for Switch-Resumed ABI for now.");
318 auto *GepIndex = Builder.CreateStructGEP(
323 Builder.CreateStore(NullPtr, GepIndex);
336 "The final suspend should only live in the last position of "
339 auto *FinalIndex = Builder.CreateStructGEP(
342 Builder.CreateStore(IndexVal, FinalIndex);
379 auto *CleanupRet = Builder.CreateCleanupRet(FromPad,
nullptr);
381 CleanupRet->getParent()->getTerminator()->eraseFromParent();
409 Shape.SwitchLowering.HasFinalSuspend);
415 auto FinalCaseIt = std::prev(
Switch->case_end());
416 BasicBlock *ResumeBB = FinalCaseIt->getCaseSuccessor();
417 Switch->removeCase(FinalCaseIt);
423 if (
NewF->isCoroOnlyDestroyWhenComplete()) {
428 auto *GepIndex =
Builder.CreateStructGEP(
432 Builder.CreateLoad(
Shape.getSwitchResumePointerType(), GepIndex);
444 auto &Context = Suspend->
getParent()->getParent()->getContext();
462 M->getFunctionList().insert(InsertBefore, NewF);
476 if (NewS->use_empty())
484 for (
auto I = IsAsyncABI ?
NewF->arg_begin() : std::next(
NewF->arg_begin()),
493 NewS->replaceAllUsesWith(Args.front());
500 if (!EVI || EVI->getNumIndices() != 1)
503 EVI->replaceAllUsesWith(Args[EVI->getIndices().front()]);
504 EVI->eraseFromParent();
508 if (NewS->use_empty())
514 Aggr =
Builder.CreateInsertValue(Aggr, Arg, Idx);
516 NewS->replaceAllUsesWith(Aggr);
520 Value *SuspendResult;
551 MappedCS->replaceAllUsesWith(SuspendResult);
552 MappedCS->eraseFromParent();
569 Value *CachedSlot =
nullptr;
570 auto getSwiftErrorSlot = [&](
Type *ValueTy) ->
Value * {
575 for (
auto &Arg :
F.args()) {
576 if (Arg.isSwiftError()) {
584 F.getEntryBlock().getFirstNonPHIOrDbg());
585 auto Alloca = Builder.CreateAlloca(ValueTy);
586 Alloca->setSwiftError(
true);
598 if (
Op->arg_empty()) {
599 auto ValueTy =
Op->getType();
600 auto Slot = getSwiftErrorSlot(ValueTy);
601 MappedResult = Builder.CreateLoad(ValueTy, Slot);
604 auto Value = MappedOp->getArgOperand(0);
606 auto Slot = getSwiftErrorSlot(ValueTy);
607 Builder.CreateStore(
Value, Slot);
612 MappedOp->eraseFromParent();
616 if (VMap ==
nullptr) {
629 return DbgVariableRecords;
641 bool UseEntryValue =
OrigF.getParent()->getTargetTriple().isArch64Bit();
648 auto IsUnreachableBlock = [&](
BasicBlock *BB) {
653 if (IsUnreachableBlock(DVI->getParent()))
654 DVI->eraseFromParent();
658 for (
auto *
User : DVI->getVariableLocationOp(0)->
users())
663 DVI->eraseFromParent();
666 for_each(DbgVariableRecords, RemoveOne);
676 auto *OldEntry = &
NewF->getEntryBlock();
677 Entry->setName(
"entry" +
Suffix);
678 Entry->moveBefore(OldEntry);
679 Entry->getTerminator()->eraseFromParent();
684 assert(Entry->hasOneUse());
686 assert(BranchToEntry->isUnconditional());
687 Builder.SetInsertPoint(BranchToEntry);
689 BranchToEntry->eraseFromParent();
700 SwitchBB->moveAfter(Entry);
716 assert(Branch->isUnconditional());
717 Builder.CreateBr(Branch->getSuccessor(0));
728 if (!Alloca ||
I.use_empty())
733 I.moveBefore(*Entry, Entry->getFirstInsertionPt());
744 return &*
NewF->arg_begin();
752 auto ContextIdx = ActiveAsyncSuspend->getStorageArgumentIndex() & 0xff;
753 auto *CalleeContext =
NewF->getArg(ContextIdx);
754 auto *ProjectionFunc =
755 ActiveAsyncSuspend->getAsyncContextProjectionFunction();
759 auto *CallerContext =
Builder.CreateCall(ProjectionFunc->getFunctionType(),
760 ProjectionFunc, CalleeContext);
761 CallerContext->setCallingConv(ProjectionFunc->getCallingConv());
762 CallerContext->setDebugLoc(DbgLoc);
764 auto &Context =
Builder.getContext();
765 auto *FramePtrAddr =
Builder.CreateConstInBoundsGEP1_32(
767 Shape.AsyncLowering.FrameOffset,
"async.ctx.frameptr");
771 assert(InlineRes.isSuccess());
782 if (
Shape.RetconLowering.IsFrameInlineInStorage)
786 return Builder.CreateLoad(FramePtrTy, NewStorage);
806 if (SPToUpdate.
getFile() ==
DL->getFile())
807 SPToUpdate.setScopeLine(
DL->getLine());
815 Branch && Branch->isUnconditional())
816 Successor = Branch->getSuccessor(0)->getFirstNonPHIOrDbg();
824 if (!
DL ||
DL.getLine() == 0)
827 if (SPToUpdate.
getFile() ==
DL->getFile()) {
828 SPToUpdate.setScopeLine(
DL.getLine());
837 if (SPToUpdate.
getFile() ==
DL->getFile())
838 SPToUpdate.setScopeLine(
DL->getLine());
843 Align Alignment,
bool NoAlias) {
844 AttrBuilder ParamAttrs(Context);
845 ParamAttrs.addAttribute(Attribute::NonNull);
846 ParamAttrs.addAttribute(Attribute::NoUndef);
849 ParamAttrs.addAttribute(Attribute::NoAlias);
851 ParamAttrs.addAlignmentAttr(Alignment);
852 ParamAttrs.addDereferenceableAttr(
Size);
853 Attrs = Attrs.addParamAttributes(Context, ParamIndex, ParamAttrs);
857 unsigned ParamIndex) {
858 AttrBuilder ParamAttrs(Context);
859 ParamAttrs.addAttribute(Attribute::SwiftAsync);
860 Attrs = Attrs.addParamAttributes(Context, ParamIndex, ParamAttrs);
864 unsigned ParamIndex) {
865 AttrBuilder ParamAttrs(Context);
866 ParamAttrs.addAttribute(Attribute::SwiftSelf);
867 Attrs = Attrs.addParamAttributes(Context, ParamIndex, ParamAttrs);
890 auto savedVisibility =
NewF->getVisibility();
891 auto savedUnnamedAddr =
NewF->getUnnamedAddr();
892 auto savedDLLStorageClass =
NewF->getDLLStorageClass();
897 auto savedLinkage =
NewF->getLinkage();
903 auto &Context =
NewF->getContext();
906 assert(SP !=
OrigF.getSubprogram() && SP->isDistinct());
912 SP->replaceLinkageName(NewLinkageName);
914 TempDISubprogram NewDecl = Decl->clone();
915 NewDecl->replaceLinkageName(NewLinkageName);
920 NewF->setLinkage(savedLinkage);
921 NewF->setVisibility(savedVisibility);
922 NewF->setUnnamedAddr(savedUnnamedAddr);
923 NewF->setDLLStorageClass(savedDLLStorageClass);
928 NewF->hasMetadata(LLVMContext::MD_func_sanitize))
929 NewF->eraseMetadata(LLVMContext::MD_func_sanitize);
932 auto OrigAttrs =
NewF->getAttributes();
933 auto NewAttrs = AttributeList();
939 NewAttrs = NewAttrs.addFnAttributes(
940 Context, AttrBuilder(Context, OrigAttrs.getFnAttrs()));
943 Shape.FrameAlign,
false);
947 if (
OrigF.hasParamAttribute(
Shape.AsyncLowering.ContextArgNo,
948 Attribute::SwiftAsync)) {
950 ActiveAsyncSuspend->getStorageArgumentIndex();
951 auto ContextArgIndex = ArgAttributeIndices & 0xff;
956 auto SwiftSelfIndex = ArgAttributeIndices >> 8;
962 auto FnAttrs =
OrigF.getAttributes().getFnAttrs();
963 NewAttrs = NewAttrs.addFnAttributes(Context, AttrBuilder(Context, FnAttrs));
970 NewAttrs =
Shape.RetconLowering.ResumePrototype->getAttributes();
974 Shape.getRetconCoroId()->getStorageSize(),
975 Shape.getRetconCoroId()->getStorageAlignment(),
1006 NewF->setAttributes(NewAttrs);
1007 NewF->setCallingConv(
Shape.getResumeFunctionCC());
1015 if (
TTI.supportsTailCallFor(ResumeCall)) {
1030 Builder.SetInsertPoint(&
NewF->getEntryBlock().front());
1039 auto *NewVFrame =
Builder.CreateBitCast(
1042 if (OldVFrame != NewVFrame)
1049 DummyArg->deleteValue();
1052 switch (
Shape.ABI) {
1057 if (
Shape.SwitchLowering.HasFinalSuspend)
1066 "no active suspend when lowering a continuation-style coroutine");
1103 auto *OrigRelativeFunOffset = FuncPtrStruct->getOperand(0);
1104 auto *OrigContextSize = FuncPtrStruct->getOperand(1);
1105 auto *NewContextSize = ConstantInt::get(OrigContextSize->getType(),
1108 FuncPtrStruct->getType(), OrigRelativeFunOffset, NewContextSize);
1115 auto *SizeIntrin = Shape.
CoroSizes.back();
1116 Module *M = SizeIntrin->getModule();
1118 return DL.getTypeAllocSize(Shape.
FrameTy);
1135 auto *SizeIntrin = Shape.
CoroSizes.back();
1136 auto *SizeConstant =
1161 switch (Shape.
ABI) {
1168 auto *Frame = Builder.CreateAlloca(Shape.
FrameTy);
1170 AllocInst->replaceAllUsesWith(Builder.getFalse());
1171 AllocInst->eraseFromParent();
1172 CoroBegin->replaceAllUsesWith(Frame);
1174 CoroBegin->replaceAllUsesWith(CoroBegin->getMem());
1215 while (!Worklist.
empty()) {
1219 if (!Set.contains(Pred))
1225 Set.erase(ResDesBB);
1227 for (
auto *BB : Set)
1236 auto *ResumeOrDestroyBB = ResumeOrDestroy->
getParent();
1240 if (SaveBB == ResumeOrDestroyBB)
1249 {ResumeOrDestroyBB->getFirstNonPHIIt(), ResumeOrDestroyIt}))
1265 auto *Pred = Suspend->
getParent()->getSinglePredecessor();
1268 Prev = Pred->getTerminator();
1283 if (SubFn->getFrame() != CoroBegin)
1297 Save->eraseFromParent();
1309 if (CalledValue != SubFn && CalledValue->user_empty())
1311 I->eraseFromParent();
1314 if (SubFn->user_empty())
1315 SubFn->eraseFromParent();
1327 size_t I = 0,
N = S.size();
1331 size_t ChangedFinalIndex = std::numeric_limits<size_t>::max();
1344 ChangedFinalIndex =
I;
1356 if (ChangedFinalIndex <
N) {
1358 std::swap(S[ChangedFinalIndex], S.back());
1364struct SwitchCoroutineSplitter {
1365 static void split(Function &
F, coro::Shape &Shape,
1366 SmallVectorImpl<Function *> &Clones,
1367 TargetTransformInfo &
TTI) {
1373 createResumeEntryBlock(
F, Shape);
1375 F,
".resume", Shape, coro::CloneKind::SwitchResume,
TTI);
1377 F,
".destroy", Shape, coro::CloneKind::SwitchUnwind,
TTI);
1379 F,
".cleanup", Shape, coro::CloneKind::SwitchCleanup,
TTI);
1386 updateCoroFrame(Shape, ResumeClone, DestroyClone, CleanupClone);
1396 setCoroInfo(
F, Shape, Clones);
1406 static Function *createNoAllocVariant(Function &
F, coro::Shape &Shape,
1407 SmallVectorImpl<Function *> &Clones) {
1409 auto *OrigFnTy =
F.getFunctionType();
1410 auto OldParams = OrigFnTy->params();
1413 NewParams.
reserve(OldParams.size() + 1);
1414 NewParams.
append(OldParams.begin(), OldParams.end());
1417 auto *NewFnTy = FunctionType::get(OrigFnTy->getReturnType(), NewParams,
1418 OrigFnTy->isVarArg());
1423 unsigned int Idx = 0;
1424 for (
const auto &
I :
F.args()) {
1425 VMap[&
I] = NoAllocF->
getArg(Idx++);
1429 auto FrameIdx = NoAllocF->
arg_size() - 1;
1432 CloneFunctionChangeType::LocalChangesOnly, Returns);
1435 auto *NewCoroBegin =
1440 NewCoroBegin->replaceAllUsesWith(NoAllocF->
getArg(FrameIdx));
1441 NewCoroBegin->eraseFromParent();
1445 M->getFunctionList().insert(
M->end(), NoAllocF);
1460 setCoroInfo(
F, Shape, Clones);
1471 static void createResumeEntryBlock(Function &
F, coro::Shape &Shape) {
1474 DIBuilder DBuilder(*
F.getParent(),
false);
1475 DISubprogram *DIS =
F.getSubprogram();
1479 bool AddDebugLabels = DIS && DIS->getUnit() &&
1480 (DIS->getUnit()->getEmissionKind() ==
1481 DICompileUnit::DebugEmissionKind::FullDebug);
1497 auto *FrameTy = Shape.
FrameTy;
1498 auto *GepIndex = Builder.CreateStructGEP(
1502 Builder.CreateSwitch(Index, UnreachBB, Shape.
CoroSuspends.size());
1506 size_t SuspendIndex = 0;
1509 ConstantInt *IndexVal = Shape.
getIndex(SuspendIndex);
1514 auto *Save = S->getCoroSave();
1515 Builder.SetInsertPoint(Save);
1521 auto *GepIndex = Builder.CreateStructGEP(
1523 Builder.CreateStore(IndexVal, GepIndex);
1527 Save->eraseFromParent();
1553 auto *SuspendBB = S->getParent();
1555 SuspendBB->splitBasicBlock(S,
"resume." + Twine(SuspendIndex));
1556 auto *LandingBB = ResumeBB->splitBasicBlock(
1557 S->getNextNode(), ResumeBB->getName() + Twine(
".landing"));
1558 Switch->addCase(IndexVal, ResumeBB);
1562 PN->insertBefore(LandingBB->begin());
1563 S->replaceAllUsesWith(PN);
1564 PN->addIncoming(Builder.getInt8(-1), SuspendBB);
1565 PN->addIncoming(S, ResumeBB);
1567 if (AddDebugLabels) {
1568 if (
DebugLoc SuspendLoc = S->getDebugLoc()) {
1569 std::string LabelName =
1570 (
"__coro_resume_" + Twine(SuspendIndex)).str();
1576 DILocation *DILoc = SuspendLoc;
1577 while (DILocation *InlinedAt = DILoc->getInlinedAt())
1580 DILabel *ResumeLabel =
1581 DBuilder.createLabel(DIS, LabelName, DILoc->getFile(),
1582 SuspendLoc.getLine(), SuspendLoc.getCol(),
1586 DBuilder.insertLabel(ResumeLabel, DILoc, ResumeBB->begin());
1593 Builder.SetInsertPoint(UnreachBB);
1594 Builder.CreateUnreachable();
1595 DBuilder.finalize();
1601 static void updateCoroFrame(coro::Shape &Shape, Function *ResumeFn,
1602 Function *DestroyFn, Function *CleanupFn) {
1605 auto *ResumeAddr = Builder.CreateStructGEP(
1608 Builder.CreateStore(ResumeFn, ResumeAddr);
1610 Value *DestroyOrCleanupFn = DestroyFn;
1616 DestroyOrCleanupFn = Builder.CreateSelect(CA, DestroyFn, CleanupFn);
1619 auto *DestroyAddr = Builder.CreateStructGEP(
1622 Builder.CreateStore(DestroyOrCleanupFn, DestroyAddr);
1638 static void setCoroInfo(Function &
F, coro::Shape &Shape,
1646 auto *ArrTy = ArrayType::get(Part->
getType(),
Args.size());
1649 auto *GV =
new GlobalVariable(*M, ConstVal->getType(),
true,
1650 GlobalVariable::PrivateLinkage, ConstVal,
1651 F.getName() + Twine(
".resumers"));
1654 LLVMContext &
C =
F.getContext();
1665 auto &Context = Suspend->
getParent()->getParent()->getContext();
1669 auto *Val = Builder.CreateBitOrPointerCast(
Continuation, Int8PtrTy);
1670 ResumeIntrinsic->replaceAllUsesWith(Val);
1671 ResumeIntrinsic->eraseFromParent();
1681 for (
auto *paramTy : FnTy->params()) {
1683 if (paramTy != FnArgs[ArgIdx]->
getType())
1685 Builder.CreateBitOrPointerCast(FnArgs[ArgIdx], paramTy));
1702 auto *TailCall = Builder.CreateCall(FnTy, MustTailCallFn, CallArgs);
1704 if (
TTI.supportsTailCallFor(TailCall)) {
1707 TailCall->setDebugLoc(
Loc);
1719 F.removeFnAttr(Attribute::NoReturn);
1720 F.removeRetAttr(Attribute::NoAlias);
1721 F.removeRetAttr(Attribute::NonNull);
1723 auto &Context =
F.getContext();
1726 auto *Id =
Shape.getAsyncCoroId();
1731 FramePtr = Builder.CreateConstInBoundsGEP1_32(
1733 "async.ctx.frameptr");
1744 auto NextF = std::next(
F.getIterator());
1752 auto ResumeNameSuffix =
".resume.";
1753 auto ProjectionFunctionName =
1754 Suspend->getAsyncContextProjectionFunction()->getName();
1755 bool UseSwiftMangling =
false;
1756 if (ProjectionFunctionName ==
"__swift_async_resume_project_context") {
1757 ResumeNameSuffix =
"TQ";
1758 UseSwiftMangling =
true;
1759 }
else if (ProjectionFunctionName ==
"__swift_async_resume_get_context") {
1760 ResumeNameSuffix =
"TY";
1761 UseSwiftMangling =
true;
1765 UseSwiftMangling ? ResumeNameSuffix +
Twine(Idx) +
"_"
1766 : ResumeNameSuffix +
Twine(Idx),
1772 auto *SuspendBB = Suspend->getParent();
1773 auto *NewSuspendBB = SuspendBB->splitBasicBlock(Suspend);
1779 Branch->setSuccessor(0, ReturnBB);
1784 auto *Fn = Suspend->getMustTailCallFunction();
1790 Builder.CreateRetVoid();
1802 auto *Clone = Clones[Idx];
1817 F.removeFnAttr(Attribute::NoReturn);
1818 F.removeRetAttr(Attribute::NoAlias);
1819 F.removeRetAttr(Attribute::NonNull);
1822 auto *Id =
Shape.getRetconCoroId();
1824 if (
Shape.RetconLowering.IsFrameInlineInStorage) {
1825 RawFramePtr = Id->getStorage();
1836 RawFramePtr =
Shape.emitAlloc(Builder, Builder.getInt64(
Size),
nullptr);
1838 Builder.CreateBitCast(RawFramePtr,
Shape.CoroBegin->getType());
1841 Builder.CreateStore(RawFramePtr, Id->getStorage());
1848 Shape.CoroBegin->replaceAllUsesWith(RawFramePtr);
1854 PHINode *ContinuationPhi =
nullptr;
1858 auto NextF = std::next(
F.getIterator());
1867 F,
Shape,
".resume." +
Twine(Idx), NextF,
nullptr);
1872 auto SuspendBB = Suspend->getParent();
1873 auto NewSuspendBB = SuspendBB->splitBasicBlock(Suspend);
1881 Shape.RetconLowering.ReturnBlock = ReturnBB;
1893 for (
auto *ResultTy :
Shape.getRetconResultTypes())
1895 Builder.CreatePHI(ResultTy,
Shape.CoroSuspends.size()));
1898 auto RetTy =
F.getReturnType();
1903 auto CastedContinuationTy =
1904 (ReturnPHIs.
empty() ? RetTy : RetTy->getStructElementType(0));
1905 auto *CastedContinuation =
1906 Builder.CreateBitCast(ContinuationPhi, CastedContinuationTy);
1908 Value *RetV = CastedContinuation;
1909 if (!ReturnPHIs.
empty()) {
1912 RetV = Builder.CreateInsertValue(RetV, CastedContinuation, ValueIdx++);
1914 for (
auto Phi : ReturnPHIs)
1915 RetV = Builder.CreateInsertValue(RetV, Phi, ValueIdx++);
1918 Builder.CreateRet(RetV);
1922 Branch->setSuccessor(0, ReturnBB);
1925 for (
auto [Phi, VUse] :
1927 Phi->addIncoming(VUse, SuspendBB);
1934 auto Clone = Clones[Idx];
1948 OS <<
"While splitting coroutine ";
1949 F.printAsOperand(OS,
false,
F.getParent());
1971 for (
auto *U :
F.users()) {
1973 auto *Caller = CB->getFunction();
1974 if (Caller && Caller->isPresplitCoroutine() &&
1975 CB->hasFnAttr(llvm::Attribute::CoroElideSafe))
1985 SwitchCoroutineSplitter::split(
F,
Shape, Clones,
TTI);
1990 bool OptimizeFrame) {
1991 PrettyStackTraceFunction prettyStackTrace(
F);
1993 auto &Shape = ABI.
Shape;
2001 ABI.buildCoroutineFrame(OptimizeFrame);
2004 bool isNoSuspendCoroutine = Shape.
CoroSuspends.empty();
2006 bool shouldCreateNoAllocVariant =
2012 if (isNoSuspendCoroutine) {
2015 ABI.splitCoroutine(
F, Shape, Clones,
TTI);
2032 if (shouldCreateNoAllocVariant)
2033 SwitchCoroutineSplitter::createNoAllocVariant(
F, Shape, Clones);
2042 auto *CurrentSCC = &
C;
2043 if (!Clones.
empty()) {
2044 switch (Shape.
ABI) {
2056 if (!Clones.empty())
2089 if (!Cast || Cast->getType() != Fn->getType())
2093 Cast->replaceAllUsesWith(Fn);
2094 Cast->eraseFromParent();
2104 if (!Cast->use_empty())
2106 CastFn = Cast->getOperand(0);
2107 Cast->eraseFromParent();
2127 auto *PrepareFn = M.getFunction(Name);
2128 if (PrepareFn && !PrepareFn->use_empty())
2132static std::unique_ptr<coro::BaseABI>
2138 if (CustomABI >= GenCustomABIs.
size())
2140 return GenCustomABIs[CustomABI](
F, S);
2145 return std::make_unique<coro::SwitchABI>(
F, S, IsMatCallback);
2147 return std::make_unique<coro::AsyncABI>(
F, S, IsMatCallback);
2149 return std::make_unique<coro::AnyRetconABI>(
F, S, IsMatCallback);
2151 return std::make_unique<coro::AnyRetconABI>(
F, S, IsMatCallback);
2158 std::unique_ptr<coro::BaseABI> ABI =
2163 OptimizeFrame(OptimizeFrame) {}
2168 std::unique_ptr<coro::BaseABI> ABI =
2173 OptimizeFrame(OptimizeFrame) {}
2180 std::unique_ptr<coro::BaseABI> ABI =
2185 OptimizeFrame(OptimizeFrame) {}
2193 std::unique_ptr<coro::BaseABI> ABI =
2198 OptimizeFrame(OptimizeFrame) {}
2206 Module &M = *
C.begin()->getFunction().getParent();
2218 if (
N.getFunction().isPresplitCoroutine())
2221 if (Coroutines.
empty() && PrepareFns.
empty())
2224 auto *CurrentSCC = &
C;
2228 LLVM_DEBUG(
dbgs() <<
"CoroSplit: Processing coroutine '" <<
F.getName()
2240 F.setSplittedCoroutine();
2248 *
N, Shape, Clones, *CurrentSCC, CG, AM, UR,
FAM);
2253 <<
"Split '" <<
ore::NV(
"function",
F.getName())
2270 for (
auto *PrepareFn : PrepareFns) {
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
amdgpu aa AMDGPU Address space based Alias Analysis Wrapper
AMDGPU Lower Kernel Arguments
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
static void print(raw_ostream &Out, object::Archive::Kind Kind, T Val)
Expand Atomic instructions
This file contains the simple types necessary to represent the attributes associated with functions a...
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
This file provides interfaces used to manipulate a call graph, regardless if it is a "old style" Call...
This file provides interfaces used to build and manipulate a call graph, which is a very useful tool ...
This file contains the declarations for the subclasses of Constant, which represent the different fla...
static void addSwiftSelfAttrs(AttributeList &Attrs, LLVMContext &Context, unsigned ParamIndex)
static bool hasCallsBetween(Instruction *Save, Instruction *ResumeOrDestroy)
static LazyCallGraph::SCC & updateCallGraphAfterCoroutineSplit(LazyCallGraph::Node &N, const coro::Shape &Shape, const SmallVectorImpl< Function * > &Clones, LazyCallGraph::SCC &C, LazyCallGraph &CG, CGSCCAnalysisManager &AM, CGSCCUpdateResult &UR, FunctionAnalysisManager &FAM)
static void replaceSwiftErrorOps(Function &F, coro::Shape &Shape, ValueToValueMapTy *VMap)
static void addAsyncContextAttrs(AttributeList &Attrs, LLVMContext &Context, unsigned ParamIndex)
static void maybeFreeRetconStorage(IRBuilder<> &Builder, const coro::Shape &Shape, Value *FramePtr, CallGraph *CG)
static bool hasCallsInBlocksBetween(BasicBlock *SaveBB, BasicBlock *ResDesBB)
static Function * createCloneDeclaration(Function &OrigF, coro::Shape &Shape, const Twine &Suffix, Module::iterator InsertBefore, AnyCoroSuspendInst *ActiveSuspend)
static FunctionType * getFunctionTypeFromAsyncSuspend(AnyCoroSuspendInst *Suspend)
static void updateScopeLine(Instruction *ActiveSuspend, DISubprogram &SPToUpdate)
Adjust the scope line of the funclet to the first line number after the suspend point.
static void addPrepareFunction(const Module &M, SmallVectorImpl< Function * > &Fns, StringRef Name)
static SmallVector< DbgVariableRecord * > collectDbgVariableRecords(Function &F)
Returns all debug records in F.
static void simplifySuspendPoints(coro::Shape &Shape)
static void addFramePointerAttrs(AttributeList &Attrs, LLVMContext &Context, unsigned ParamIndex, uint64_t Size, Align Alignment, bool NoAlias)
static bool hasSafeElideCaller(Function &F)
static bool replaceAllPrepares(Function *PrepareFn, LazyCallGraph &CG, LazyCallGraph::SCC &C)
static void replaceFallthroughCoroEnd(AnyCoroEndInst *End, const coro::Shape &Shape, Value *FramePtr, bool InResume, CallGraph *CG)
Replace a non-unwind call to llvm.coro.end.
static void replaceFrameSizeAndAlignment(coro::Shape &Shape)
static std::unique_ptr< coro::BaseABI > CreateNewABI(Function &F, coro::Shape &S, std::function< bool(Instruction &)> IsMatCallback, const SmallVector< CoroSplitPass::BaseABITy > GenCustomABIs)
static bool replaceCoroEndAsync(AnyCoroEndInst *End)
Replace an llvm.coro.end.async.
static void doSplitCoroutine(Function &F, SmallVectorImpl< Function * > &Clones, coro::BaseABI &ABI, TargetTransformInfo &TTI, bool OptimizeFrame)
static bool hasCallsInBlockBetween(iterator_range< BasicBlock::iterator > R)
static void replaceUnwindCoroEnd(AnyCoroEndInst *End, const coro::Shape &Shape, Value *FramePtr, bool InResume, CallGraph *CG)
Replace an unwind call to llvm.coro.end.
static bool simplifySuspendPoint(CoroSuspendInst *Suspend, CoroBeginInst *CoroBegin)
static void removeCoroEndsFromRampFunction(const coro::Shape &Shape)
Remove calls to llvm.coro.end in the original function.
static void markCoroutineAsDone(IRBuilder<> &Builder, const coro::Shape &Shape, Value *FramePtr)
static void updateAsyncFuncPointerContextSize(coro::Shape &Shape)
static void replaceCoroEnd(AnyCoroEndInst *End, const coro::Shape &Shape, Value *FramePtr, bool InResume, CallGraph *CG)
static void coerceArguments(IRBuilder<> &Builder, FunctionType *FnTy, ArrayRef< Value * > FnArgs, SmallVectorImpl< Value * > &CallArgs)
Coerce the arguments in FnArgs according to FnTy in CallArgs.
static void lowerAwaitSuspend(IRBuilder<> &Builder, CoroAwaitSuspendInst *CB, coro::Shape &Shape)
static void lowerAwaitSuspends(Function &F, coro::Shape &Shape)
static void handleNoSuspendCoroutine(coro::Shape &Shape)
static void postSplitCleanup(Function &F)
static void replacePrepare(CallInst *Prepare, LazyCallGraph &CG, LazyCallGraph::SCC &C)
Replace a call to llvm.coro.prepare.retcon.
static TypeSize getFrameSizeForShape(coro::Shape &Shape)
static void replaceAsyncResumeFunction(CoroSuspendAsyncInst *Suspend, Value *Continuation)
This file defines the DenseMap class.
This file contains constants used for implementing Dwarf debug support.
This file provides various utilities for inspecting and working with the control flow graph in LLVM I...
Module.h This file contains the declarations for the Module class.
Implements a lazy call graph analysis and related passes for the new pass manager.
Machine Check Debug Module
FunctionAnalysisManager FAM
This file provides a priority worklist.
const SmallVectorImpl< MachineOperand > & Cond
Remove Loads Into Fake Uses
This file defines the SmallPtrSet class.
This file defines the SmallVector class.
static SymbolRef::Type getType(const Symbol *Sym)
static const unsigned FramePtr
PassT::Result & getResult(IRUnitT &IR, ExtraArgTs... ExtraArgs)
Get the result of an analysis pass for a given IR unit.
CoroAllocInst * getCoroAlloc()
This class represents an incoming formal argument to a Function.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
size_t size() const
size - Get the array size.
LLVM Basic Block Representation.
const Function * getParent() const
Return the enclosing method, or null if none.
static BasicBlock * Create(LLVMContext &Context, const Twine &Name="", Function *Parent=nullptr, BasicBlock *InsertBefore=nullptr)
Creates a new BasicBlock.
LLVM_ABI BasicBlock * splitBasicBlock(iterator I, const Twine &BBName="", bool Before=false)
Split the basic block into two basic blocks at the specified instruction.
InstListType::iterator iterator
Instruction iterators...
const Instruction * getTerminator() const LLVM_READONLY
Returns the terminator instruction if the block is well formed or null if the block is not well forme...
static BranchInst * Create(BasicBlock *IfTrue, InsertPosition InsertBefore=nullptr)
Base class for all callable instructions (InvokeInst and CallInst) Holds everything related to callin...
std::optional< OperandBundleUse > getOperandBundle(StringRef Name) const
Return an operand bundle by name, if present.
Function * getCalledFunction() const
Returns the function called, or null if this is an indirect function invocation or the function signa...
Value * getCalledOperand() const
Value * getArgOperand(unsigned i) const
AttributeList getAttributes() const
Return the attributes for this call.
The basic data container for the call graph of a Module of IR.
This class represents a function call, abstracting a target machine's calling convention.
static LLVM_ABI Constant * get(ArrayType *T, ArrayRef< Constant * > V)
static LLVM_ABI Constant * getPointerCast(Constant *C, Type *Ty)
Create a BitCast, AddrSpaceCast, or a PtrToInt cast constant expression.
This is the shared class of boolean and integer constants.
static LLVM_ABI ConstantInt * getTrue(LLVMContext &Context)
static LLVM_ABI ConstantInt * getFalse(LLVMContext &Context)
static LLVM_ABI ConstantPointerNull * get(PointerType *T)
Static factory methods - Return objects of the specified value.
static LLVM_ABI Constant * get(StructType *T, ArrayRef< Constant * > V)
static LLVM_ABI ConstantTokenNone * get(LLVMContext &Context)
Return the ConstantTokenNone.
This represents the llvm.coro.align instruction.
This represents the llvm.coro.await.suspend.{void,bool,handle} instructions.
Value * getAwaiter() const
Function * getWrapperFunction() const
This class represents the llvm.coro.begin or llvm.coro.begin.custom.abi instructions.
bool hasCustomABI() const
void setInfo(Constant *C)
This represents the llvm.coro.size instruction.
This represents the llvm.coro.suspend.async instruction.
CoroAsyncResumeInst * getResumeFunction() const
This represents the llvm.coro.suspend instruction.
CoroSaveInst * getCoroSave() const
Subprogram description. Uses SubclassData1.
A parsed version of the target data layout string in and methods for querying it.
Record of a variable value-assignment, aka a non instruction representation of the dbg....
Concrete subclass of DominatorTreeBase that is used to compute a normal dominator tree.
LLVM_ABI bool isReachableFromEntry(const Use &U) const
Provide an overload for a Use.
This class represents a freeze function that returns random concrete value if an operand is either a ...
A proxy from a FunctionAnalysisManager to an SCC.
Class to represent function types.
Type * getReturnType() const
static LLVM_ABI FunctionType * get(Type *Result, ArrayRef< Type * > Params, bool isVarArg)
This static method is the primary way of constructing a FunctionType.
static Function * Create(FunctionType *Ty, LinkageTypes Linkage, unsigned AddrSpace, const Twine &N="", Module *M=nullptr)
FunctionType * getFunctionType() const
Returns the FunctionType for me.
Intrinsic::ID getIntrinsicID() const LLVM_READONLY
getIntrinsicID - This method returns the ID number of the specified function, or Intrinsic::not_intri...
CallingConv::ID getCallingConv() const
getCallingConv()/setCallingConv(CC) - These method get and set the calling convention of this functio...
AttributeList getAttributes() const
Return the attribute list for this Function.
void setAttributes(AttributeList Attrs)
Set the attribute list for this Function.
LLVMContext & getContext() const
getContext - Return a reference to the LLVMContext associated with this function.
Argument * getArg(unsigned i) const
void setLinkage(LinkageTypes LT)
Module * getParent()
Get the module that this global value is contained inside of...
PointerType * getType() const
Global values are always pointers.
@ InternalLinkage
Rename collisions when linking (static functions).
@ ExternalLinkage
Externally visible function.
const Constant * getInitializer() const
getInitializer - Return the initializer for this global variable.
LLVM_ABI void setInitializer(Constant *InitVal)
setInitializer - Sets the initializer for this global variable, removing any existing initializer if ...
This provides a uniform API for creating instructions and inserting them into a basic block: either a...
This class captures the data input to the InlineFunction call, and records the auxiliary results prod...
const DebugLoc & getDebugLoc() const
Return the debug location for this node as a DebugLoc.
LLVM_ABI InstListType::iterator eraseFromParent()
This method unlinks 'this' from the containing basic block and deletes it.
This is an important class for using LLVM in a threaded context.
A node in the call graph.
An SCC of the call graph.
A lazily constructed view of the call graph of a module.
LLVM_ABI void addSplitFunction(Function &OriginalFunction, Function &NewFunction)
Add a new function split/outlined from an existing function.
LLVM_ABI void addSplitRefRecursiveFunctions(Function &OriginalFunction, ArrayRef< Function * > NewFunctions)
Add new ref-recursive functions split/outlined from an existing function.
Node & get(Function &F)
Get a graph node for a given function, scanning it to populate the graph data as necessary.
SCC * lookupSCC(Node &N) const
Lookup a function's SCC in the graph.
static std::enable_if_t< std::is_base_of< MDNode, T >::value, T * > replaceWithUniqued(std::unique_ptr< T, TempMDNodeDeleter > N)
Replace a temporary node with a uniqued one.
static LLVM_ABI MDString * get(LLVMContext &Context, StringRef Str)
A Module instance is used to store all the information related to an LLVM module.
FunctionListType::iterator iterator
The Function iterators.
void addIncoming(Value *V, BasicBlock *BB)
Add an incoming value to the end of the PHI list.
static PHINode * Create(Type *Ty, unsigned NumReservedValues, const Twine &NameStr="", InsertPosition InsertBefore=nullptr)
Constructors - NumReservedValues is a hint for the number of incoming edges that this phi node will h...
static PointerType * getUnqual(Type *ElementType)
This constructs a pointer to an object of the specified type in the default address space (address sp...
static LLVM_ABI PoisonValue * get(Type *T)
Static factory methods - Return an 'poison' object of the specified type.
A set of analyses that are preserved following a run of a transformation pass.
static PreservedAnalyses none()
Convenience factory function for the empty preserved set.
static PreservedAnalyses all()
Construct a special preserved set that preserves all passes.
PrettyStackTraceEntry - This class is used to represent a frame of the "pretty" stack trace that is d...
Return a value (possibly void), from a function.
SmallPtrSet - This class implements a set which is optimized for holding SmallSize or less elements.
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
void reserve(size_type N)
void append(ItTy in_start, ItTy in_end)
Add the specified range to the end of the SmallVector.
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
StringRef - Represent a constant reference to a string, i.e.
LLVM_ABI Type * getTypeAtIndex(const Value *V) const
Given an index value into the type, return the type of the element.
Analysis pass providing the TargetTransformInfo.
Value handle that tracks a Value across RAUW.
ValueTy * getValPtr() const
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
The instances of the Type class are immutable: once they are created, they are never changed.
static LLVM_ABI Type * getVoidTy(LLVMContext &C)
static LLVM_ABI IntegerType * getInt8Ty(LLVMContext &C)
LLVMContext & getContext() const
Return the LLVMContext in which this type was uniqued.
A Use represents the edge between a Value definition and its users.
void setOperand(unsigned i, Value *Val)
LLVM Value Representation.
Type * getType() const
All values are typed, get the type of this value.
LLVM_ABI void replaceAllUsesWith(Value *V)
Change all uses of this to point to a new Value.
iterator_range< user_iterator > users()
LLVM_ABI const Value * stripPointerCasts() const
Strip off pointer casts, all-zero GEPs and address space casts.
LLVM_ABI LLVMContext & getContext() const
All values hold a context through their type.
iterator_range< use_iterator > uses()
LLVM_ABI StringRef getName() const
Return a constant reference to the value's name.
void splitCoroutine(Function &F, coro::Shape &Shape, SmallVectorImpl< Function * > &Clones, TargetTransformInfo &TTI) override
void splitCoroutine(Function &F, coro::Shape &Shape, SmallVectorImpl< Function * > &Clones, TargetTransformInfo &TTI) override
void replaceSwiftErrorOps()
AnyCoroSuspendInst * ActiveSuspend
The active suspend instruction; meaningful only for continuation and async ABIs.
Value * deriveNewFramePointer()
Derive the value of the new frame pointer.
void replaceCoroSuspends()
void handleFinalSuspend()
TargetTransformInfo & TTI
static Function * createClone(Function &OrigF, const Twine &Suffix, coro::Shape &Shape, Function *NewF, AnyCoroSuspendInst *ActiveSuspend, TargetTransformInfo &TTI)
Create a clone for a continuation lowering.
bool isSwitchDestroyFunction()
void replaceRetconOrAsyncSuspendUses()
Replace uses of the active llvm.coro.suspend.retcon/async call with the arguments to the continuation...
virtual void create()
Clone the body of the original function into a resume function of some sort.
void splitCoroutine(Function &F, coro::Shape &Shape, SmallVectorImpl< Function * > &Clones, TargetTransformInfo &TTI) override
static Function * createClone(Function &OrigF, const Twine &Suffix, coro::Shape &Shape, CloneKind FKind, TargetTransformInfo &TTI)
Create a clone for a switch lowering.
void create() override
Clone the body of the original function into a resume function of some sort.
const ParentTy * getParent() const
self_iterator getIterator()
NodeTy * getNextNode()
Get the next node, or nullptr for the list tail.
A range adaptor for a pair of iterators.
This class implements an extremely fast bulk output stream that can only output to a stream.
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
constexpr char Args[]
Key for Kernel::Metadata::mArgs.
@ Fast
Attempts to make calls as fast as possible (e.g.
@ C
The default llvm calling convention, compatible with C.
@ Async
The "async continuation" lowering, where each suspend point creates a single continuation function.
@ RetconOnce
The "unique returned-continuation" lowering, where each suspend point creates a single continuation f...
@ Retcon
The "returned-continuation" lowering, where each suspend point creates a single continuation function...
@ Switch
The "resume-switch" lowering, where there are separate resume and destroy functions that are shared b...
void suppressCoroAllocs(CoroIdInst *CoroId)
Replaces all @llvm.coro.alloc intrinsics calls associated with a given call @llvm....
void normalizeCoroutine(Function &F, coro::Shape &Shape, TargetTransformInfo &TTI)
CallInst * createMustTailCall(DebugLoc Loc, Function *MustTailCallFn, TargetTransformInfo &TTI, ArrayRef< Value * > Arguments, IRBuilder<> &)
void replaceCoroFree(CoroIdInst *CoroId, bool Elide)
LLVM_ABI bool isTriviallyMaterializable(Instruction &I)
@ SwitchCleanup
The shared cleanup function for a switch lowering.
@ Continuation
An individual continuation function.
void salvageDebugInfo(SmallDenseMap< Argument *, AllocaInst *, 4 > &ArgToAllocaMap, DbgVariableRecord &DVR, bool UseEntryValue)
Attempts to rewrite the location operand of debug records in terms of the coroutine frame pointer,...
DiagnosticInfoOptimizationBase::Argument NV
This is an optimization pass for GlobalISel generic memory operations.
FunctionAddr VTableAddr Value
auto cast_if_present(const Y &Val)
cast_if_present<X> - Functionally identical to cast, except that a null value is accepted.
UnaryFunction for_each(R &&Range, UnaryFunction F)
Provide wrappers to std::for_each which take ranges instead of having to pass begin/end explicitly.
LLVM_ABI InlineResult InlineFunction(CallBase &CB, InlineFunctionInfo &IFI, bool MergeAttributes=false, AAResults *CalleeAAR=nullptr, bool InsertLifetime=true, Function *ForwardVarArgsTo=nullptr, OptimizationRemarkEmitter *ORE=nullptr)
This function inlines the called function into the basic block of the caller.
detail::zippy< detail::zip_first, T, U, Args... > zip_equal(T &&t, U &&u, Args &&...args)
zip iterator that assumes that all iteratees have the same length.
auto enumerate(FirstRange &&First, RestRanges &&...Rest)
Given two or more input ranges, returns a new range whose values are tuples (A, B,...
decltype(auto) dyn_cast(const From &Val)
dyn_cast<X> - Return the argument parameter cast to the specified type.
LLVM_ABI bool verifyFunction(const Function &F, raw_ostream *OS=nullptr)
Check a function for errors, useful for use when debugging a pass.
LLVM_ABI LazyCallGraph::SCC & updateCGAndAnalysisManagerForFunctionPass(LazyCallGraph &G, LazyCallGraph::SCC &C, LazyCallGraph::Node &N, CGSCCAnalysisManager &AM, CGSCCUpdateResult &UR, FunctionAnalysisManager &FAM)
Helper to update the call graph after running a function pass.
LLVM_ABI LazyCallGraph::SCC & updateCGAndAnalysisManagerForCGSCCPass(LazyCallGraph &G, LazyCallGraph::SCC &C, LazyCallGraph::Node &N, CGSCCAnalysisManager &AM, CGSCCUpdateResult &UR, FunctionAnalysisManager &FAM)
Helper to update the call graph after running a CGSCC pass.
iterator_range< early_inc_iterator_impl< detail::IterOfRange< RangeT > > > make_early_inc_range(RangeT &&Range)
Make a range that does early increment to allow mutation of the underlying range without disrupting i...
bool isa_and_nonnull(const Y &Val)
AnalysisManager< LazyCallGraph::SCC, LazyCallGraph & > CGSCCAnalysisManager
The CGSCC analysis manager.
auto dyn_cast_or_null(const Y &Val)
LLVM_ABI BasicBlock::iterator skipDebugIntrinsics(BasicBlock::iterator It)
Advance It while it points to a debug instruction and return the result.
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
LLVM_ABI void report_fatal_error(Error Err, bool gen_crash_diag=true)
iterator_range< SplittingIterator > split(StringRef Str, StringRef Separator)
Split the specified string over a separator and return a range-compatible iterable over its partition...
class LLVM_GSL_OWNER SmallVector
Forward declaration of SmallVector so that calculateSmallVectorDefaultInlinedElements can reference s...
bool isa(const From &Val)
isa<X> - Return true if the parameter to the template is an instance of one of the template type argu...
LLVM_ABI unsigned changeToUnreachable(Instruction *I, bool PreserveLCSSA=false, DomTreeUpdater *DTU=nullptr, MemorySSAUpdater *MSSAU=nullptr)
Insert an unreachable instruction before the specified instruction, making it and the rest of the cod...
LLVM_ABI raw_fd_ostream & errs()
This returns a reference to a raw_ostream for standard error.
IRBuilder(LLVMContext &, FolderTy, InserterTy, MDNode *, ArrayRef< OperandBundleDef >) -> IRBuilder< FolderTy, InserterTy >
DWARFExpression::Operation Op
ArrayRef(const T &OneElt) -> ArrayRef< T >
ValueMap< const Value *, WeakTrackingVH > ValueToValueMapTy
LLVM_ABI void CloneFunctionInto(Function *NewFunc, const Function *OldFunc, ValueToValueMapTy &VMap, CloneFunctionChangeType Changes, SmallVectorImpl< ReturnInst * > &Returns, const char *NameSuffix="", ClonedCodeInfo *CodeInfo=nullptr, ValueMapTypeRemapper *TypeMapper=nullptr, ValueMaterializer *Materializer=nullptr)
Clone OldFunc into NewFunc, transforming the old arguments into references to VMap values.
decltype(auto) cast(const From &Val)
cast<X> - Return the argument parameter cast to the specified type.
auto predecessors(const MachineBasicBlock *BB)
AnalysisManager< Function > FunctionAnalysisManager
Convenience typedef for the Function analysis manager.
static auto filterDbgVars(iterator_range< simple_ilist< DbgRecord >::iterator > R)
Filter the DbgRecord range to DbgVariableRecord types only and downcast.
LLVM_ABI bool removeUnreachableBlocks(Function &F, DomTreeUpdater *DTU=nullptr, MemorySSAUpdater *MSSAU=nullptr)
Remove all blocks that can not be reached from the function's entry.
LLVM_ABI bool isPotentiallyReachable(const Instruction *From, const Instruction *To, const SmallPtrSetImpl< BasicBlock * > *ExclusionSet=nullptr, const DominatorTree *DT=nullptr, const LoopInfo *LI=nullptr)
Determine whether instruction 'To' is reachable from 'From', without passing through any blocks in Ex...
void swap(llvm::BitVector &LHS, llvm::BitVector &RHS)
Implement std::swap in terms of BitVector swap.
This struct is a compact representation of a valid (non-zero power of two) alignment.
uint64_t value() const
This is a hole in the type system and should not be abused.
Support structure for SCC passes to communicate updates the call graph back to the CGSCC pass manager...
SmallPriorityWorklist< LazyCallGraph::SCC *, 1 > & CWorklist
Worklist of the SCCs queued for processing.
LLVM_ABI PreservedAnalyses run(LazyCallGraph::SCC &C, CGSCCAnalysisManager &AM, LazyCallGraph &CG, CGSCCUpdateResult &UR)
LLVM_ABI CoroSplitPass(bool OptimizeFrame=false)
BaseABITy CreateAndInitABI
CallInst * makeSubFnCall(Value *Arg, int Index, Instruction *InsertPt)
GlobalVariable * AsyncFuncPointer
bool IsFrameInlineInStorage
SwitchInst * ResumeSwitch
BasicBlock * ResumeEntryBlock
SmallVector< CallInst *, 2 > SymmetricTransfers
SmallVector< CoroAwaitSuspendInst *, 4 > CoroAwaitSuspends
AsyncLoweringStorage AsyncLowering
FunctionType * getResumeFunctionType() const
IntegerType * getIndexType() const
CoroIdInst * getSwitchCoroId() const
SmallVector< CoroSizeInst *, 2 > CoroSizes
SmallVector< AnyCoroSuspendInst *, 4 > CoroSuspends
ConstantInt * getIndex(uint64_t Value) const
SwitchLoweringStorage SwitchLowering
CoroBeginInst * CoroBegin
BasicBlock::iterator getInsertPtAfterFramePtr() const
LLVM_ABI void emitDealloc(IRBuilder<> &Builder, Value *Ptr, CallGraph *CG) const
Deallocate memory according to the rules of the active lowering.
RetconLoweringStorage RetconLowering
SmallVector< CoroAlignInst *, 2 > CoroAligns
SmallVector< AnyCoroEndInst *, 4 > CoroEnds
SmallVector< CallInst *, 2 > SwiftErrorOps
unsigned getSwitchIndexField() const