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https://github.com/capstone-engine/llvm-capstone.git
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- EmitStmt is no longer required to finish with a current insertion point defined (i.e. it does not need to make dummy blocks). Instead, it can clear the insertion point in the builder which indicates that the current insertion point is unreachable. - CodeGenFunction provides HaveInsertPoint and EnsureInsertPoint which respectively test if there is an insert point and ensure an insertion point exists (by making a dummy block). - Clearly mark functions in CodeGenFunction which can be called with no insertion point defined. Currently this is a limited set, and EmitStmt simply EnsureInsertPoint()s before emitting subsequent IR. Remove EmitDummyBlock, which is no longer needed. Clients who haven't already cleared the insertion point (typically via EmitBranch) can do so by hand. Remove isDummyBlock, which has effectively been renamed to HaveInsertPoint. The main thrust of this change is that we no longer have create dummy blocks just to destroy them a short time later in EmitBlock in the common case that there is no unreachable code following something like a goto. Additionally, this means that we are not using the hokey condition in isDummyBlock that a block without a name is a dummy block. Guess how well that works when we never emit block names! llvm-svn: 59089
293 lines
9.8 KiB
C++
293 lines
9.8 KiB
C++
//===--- CodeGenFunction.cpp - Emit LLVM Code from ASTs for a Function ----===//
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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 coordinates the per-function state used while generating code.
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//
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//===----------------------------------------------------------------------===//
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#include "CodeGenFunction.h"
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#include "CodeGenModule.h"
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#include "CGDebugInfo.h"
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#include "clang/Basic/TargetInfo.h"
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#include "clang/AST/ASTContext.h"
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#include "clang/AST/Decl.h"
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#include "llvm/Support/CFG.h"
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using namespace clang;
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using namespace CodeGen;
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CodeGenFunction::CodeGenFunction(CodeGenModule &cgm)
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: CGM(cgm), Target(CGM.getContext().Target), SwitchInsn(NULL),
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CaseRangeBlock(NULL) {
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LLVMIntTy = ConvertType(getContext().IntTy);
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LLVMPointerWidth = Target.getPointerWidth(0);
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}
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ASTContext &CodeGenFunction::getContext() const {
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return CGM.getContext();
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}
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llvm::BasicBlock *CodeGenFunction::getBasicBlockForLabel(const LabelStmt *S) {
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llvm::BasicBlock *&BB = LabelMap[S];
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if (BB) return BB;
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// Create, but don't insert, the new block.
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return BB = createBasicBlock(S->getName());
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}
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llvm::Constant *
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CodeGenFunction::GetAddrOfStaticLocalVar(const VarDecl *BVD) {
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return cast<llvm::Constant>(LocalDeclMap[BVD]);
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}
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llvm::Value *CodeGenFunction::GetAddrOfLocalVar(const VarDecl *VD)
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{
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return LocalDeclMap[VD];
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}
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const llvm::Type *CodeGenFunction::ConvertType(QualType T) {
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return CGM.getTypes().ConvertType(T);
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}
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bool CodeGenFunction::isObjCPointerType(QualType T) {
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// All Objective-C types are pointers.
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return T->isObjCInterfaceType() ||
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T->isObjCQualifiedInterfaceType() || T->isObjCQualifiedIdType();
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}
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bool CodeGenFunction::hasAggregateLLVMType(QualType T) {
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return !isObjCPointerType(T) &&!T->isRealType() && !T->isPointerLikeType() &&
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!T->isVoidType() && !T->isVectorType() && !T->isFunctionType();
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}
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void CodeGenFunction::FinishFunction(SourceLocation EndLoc) {
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// Finish emission of indirect switches.
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EmitIndirectSwitches();
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assert(BreakContinueStack.empty() &&
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"mismatched push/pop in break/continue stack!");
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// Emit function epilog (to return). This has the nice side effect
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// of also automatically handling code that falls off the end.
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EmitBlock(ReturnBlock);
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// Emit debug descriptor for function end.
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if (CGDebugInfo *DI = CGM.getDebugInfo()) {
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DI->setLocation(EndLoc);
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DI->EmitRegionEnd(CurFn, Builder);
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}
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EmitFunctionEpilog(FnRetTy, ReturnValue);
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// Remove the AllocaInsertPt instruction, which is just a convenience for us.
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AllocaInsertPt->eraseFromParent();
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AllocaInsertPt = 0;
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}
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void CodeGenFunction::StartFunction(const Decl *D, QualType RetTy,
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llvm::Function *Fn,
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const FunctionArgList &Args,
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SourceLocation StartLoc) {
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CurFuncDecl = D;
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FnRetTy = RetTy;
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CurFn = Fn;
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assert(CurFn->isDeclaration() && "Function already has body?");
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llvm::BasicBlock *EntryBB = createBasicBlock("entry", CurFn);
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// Create a marker to make it easy to insert allocas into the entryblock
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// later. Don't create this with the builder, because we don't want it
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// folded.
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llvm::Value *Undef = llvm::UndefValue::get(llvm::Type::Int32Ty);
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AllocaInsertPt = new llvm::BitCastInst(Undef, llvm::Type::Int32Ty, "allocapt",
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EntryBB);
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ReturnBlock = createBasicBlock("return");
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ReturnValue = 0;
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if (!RetTy->isVoidType())
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ReturnValue = CreateTempAlloca(ConvertType(RetTy), "retval");
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Builder.SetInsertPoint(EntryBB);
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// Emit subprogram debug descriptor.
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// FIXME: The cast here is a huge hack.
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if (CGDebugInfo *DI = CGM.getDebugInfo()) {
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DI->setLocation(StartLoc);
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if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
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DI->EmitFunctionStart(FD->getName(), RetTy, CurFn, Builder);
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} else {
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// Just use LLVM function name.
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DI->EmitFunctionStart(Fn->getName().c_str(),
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RetTy, CurFn, Builder);
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}
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}
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EmitFunctionProlog(CurFn, FnRetTy, Args);
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}
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void CodeGenFunction::GenerateCode(const FunctionDecl *FD,
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llvm::Function *Fn) {
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FunctionArgList Args;
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if (FD->getNumParams()) {
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const FunctionTypeProto* FProto = FD->getType()->getAsFunctionTypeProto();
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assert(FProto && "Function def must have prototype!");
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for (unsigned i = 0, e = FD->getNumParams(); i != e; ++i)
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Args.push_back(std::make_pair(FD->getParamDecl(i),
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FProto->getArgType(i)));
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}
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StartFunction(FD, FD->getResultType(), Fn, Args,
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cast<CompoundStmt>(FD->getBody())->getLBracLoc());
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EmitStmt(FD->getBody());
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const CompoundStmt *S = dyn_cast<CompoundStmt>(FD->getBody());
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if (S) {
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FinishFunction(S->getRBracLoc());
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} else {
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FinishFunction();
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}
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}
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/// ContainsLabel - Return true if the statement contains a label in it. If
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/// this statement is not executed normally, it not containing a label means
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/// that we can just remove the code.
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bool CodeGenFunction::ContainsLabel(const Stmt *S, bool IgnoreCaseStmts) {
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// Null statement, not a label!
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if (S == 0) return false;
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// If this is a label, we have to emit the code, consider something like:
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// if (0) { ... foo: bar(); } goto foo;
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if (isa<LabelStmt>(S))
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return true;
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// If this is a case/default statement, and we haven't seen a switch, we have
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// to emit the code.
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if (isa<SwitchCase>(S) && !IgnoreCaseStmts)
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return true;
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// If this is a switch statement, we want to ignore cases below it.
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if (isa<SwitchStmt>(S))
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IgnoreCaseStmts = true;
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// Scan subexpressions for verboten labels.
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for (Stmt::const_child_iterator I = S->child_begin(), E = S->child_end();
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I != E; ++I)
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if (ContainsLabel(*I, IgnoreCaseStmts))
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return true;
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return false;
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}
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/// getCGRecordLayout - Return record layout info.
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const CGRecordLayout *CodeGenFunction::getCGRecordLayout(CodeGenTypes &CGT,
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QualType Ty) {
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const RecordType *RTy = Ty->getAsRecordType();
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assert (RTy && "Unexpected type. RecordType expected here.");
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return CGT.getCGRecordLayout(RTy->getDecl());
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}
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/// ErrorUnsupported - Print out an error that codegen doesn't support the
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/// specified stmt yet.
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void CodeGenFunction::ErrorUnsupported(const Stmt *S, const char *Type,
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bool OmitOnError) {
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CGM.ErrorUnsupported(S, Type, OmitOnError);
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}
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unsigned CodeGenFunction::GetIDForAddrOfLabel(const LabelStmt *L) {
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// Use LabelIDs.size() as the new ID if one hasn't been assigned.
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return LabelIDs.insert(std::make_pair(L, LabelIDs.size())).first->second;
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}
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void CodeGenFunction::EmitMemSetToZero(llvm::Value *DestPtr, QualType Ty)
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{
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const llvm::Type *BP = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
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if (DestPtr->getType() != BP)
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DestPtr = Builder.CreateBitCast(DestPtr, BP, "tmp");
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// Get size and alignment info for this aggregate.
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std::pair<uint64_t, unsigned> TypeInfo = getContext().getTypeInfo(Ty);
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// FIXME: Handle variable sized types.
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const llvm::Type *IntPtr = llvm::IntegerType::get(LLVMPointerWidth);
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Builder.CreateCall4(CGM.getMemSetFn(), DestPtr,
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llvm::ConstantInt::getNullValue(llvm::Type::Int8Ty),
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// TypeInfo.first describes size in bits.
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llvm::ConstantInt::get(IntPtr, TypeInfo.first/8),
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llvm::ConstantInt::get(llvm::Type::Int32Ty,
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TypeInfo.second/8));
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}
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void CodeGenFunction::EmitIndirectSwitches() {
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llvm::BasicBlock *Default;
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if (IndirectSwitches.empty())
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return;
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if (!LabelIDs.empty()) {
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Default = getBasicBlockForLabel(LabelIDs.begin()->first);
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} else {
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// No possible targets for indirect goto, just emit an infinite
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// loop.
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Default = createBasicBlock("indirectgoto.loop", CurFn);
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llvm::BranchInst::Create(Default, Default);
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}
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for (std::vector<llvm::SwitchInst*>::iterator i = IndirectSwitches.begin(),
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e = IndirectSwitches.end(); i != e; ++i) {
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llvm::SwitchInst *I = *i;
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I->setSuccessor(0, Default);
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for (std::map<const LabelStmt*,unsigned>::iterator LI = LabelIDs.begin(),
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LE = LabelIDs.end(); LI != LE; ++LI) {
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I->addCase(llvm::ConstantInt::get(llvm::Type::Int32Ty,
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LI->second),
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getBasicBlockForLabel(LI->first));
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}
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}
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}
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llvm::Value *CodeGenFunction::EmitVAArg(llvm::Value *VAListAddr, QualType Ty)
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{
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// FIXME: This entire method is hardcoded for 32-bit X86.
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const char *TargetPrefix = getContext().Target.getTargetPrefix();
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if (strcmp(TargetPrefix, "x86") != 0 ||
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getContext().Target.getPointerWidth(0) != 32)
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return 0;
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const llvm::Type *BP = llvm::PointerType::getUnqual(llvm::Type::Int8Ty);
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const llvm::Type *BPP = llvm::PointerType::getUnqual(BP);
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llvm::Value *VAListAddrAsBPP = Builder.CreateBitCast(VAListAddr, BPP,
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"ap");
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llvm::Value *Addr = Builder.CreateLoad(VAListAddrAsBPP, "ap.cur");
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llvm::Value *AddrTyped =
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Builder.CreateBitCast(Addr,
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llvm::PointerType::getUnqual(ConvertType(Ty)));
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uint64_t SizeInBytes = getContext().getTypeSize(Ty) / 8;
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const unsigned ArgumentSizeInBytes = 4;
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if (SizeInBytes < ArgumentSizeInBytes)
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SizeInBytes = ArgumentSizeInBytes;
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llvm::Value *NextAddr =
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Builder.CreateGEP(Addr,
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llvm::ConstantInt::get(llvm::Type::Int32Ty, SizeInBytes),
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"ap.next");
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Builder.CreateStore(NextAddr, VAListAddrAsBPP);
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return AddrTyped;
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}
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