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Dan Gohmanf17a25c2007-07-18 16:29:46 +00001//===-- CBackend.cpp - Library for converting LLVM code to C --------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner081ce942007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This library converts LLVM code to C code, compilable by GCC and other C
11// compilers.
12//
13//===----------------------------------------------------------------------===//
14
15#include "CTargetMachine.h"
16#include "llvm/CallingConv.h"
17#include "llvm/Constants.h"
18#include "llvm/DerivedTypes.h"
19#include "llvm/Module.h"
20#include "llvm/Instructions.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000021#include "llvm/Pass.h"
22#include "llvm/PassManager.h"
23#include "llvm/TypeSymbolTable.h"
24#include "llvm/Intrinsics.h"
25#include "llvm/IntrinsicInst.h"
26#include "llvm/InlineAsm.h"
Daniel Dunbar4baa5fe2009-08-03 04:03:51 +000027#include "llvm/ADT/StringExtras.h"
Chris Lattnera38b2872010-01-13 06:38:18 +000028#include "llvm/ADT/SmallString.h"
Daniel Dunbar4baa5fe2009-08-03 04:03:51 +000029#include "llvm/ADT/STLExtras.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000030#include "llvm/Analysis/ConstantsScanner.h"
31#include "llvm/Analysis/FindUsedTypes.h"
32#include "llvm/Analysis/LoopInfo.h"
Anton Korobeynikov865e6752009-08-05 09:29:56 +000033#include "llvm/Analysis/ValueTracking.h"
Gordon Henriksendf87fdc2008-01-07 01:30:38 +000034#include "llvm/CodeGen/Passes.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000035#include "llvm/CodeGen/IntrinsicLowering.h"
Chris Lattner31a54742010-01-16 21:57:06 +000036#include "llvm/Target/Mangler.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000037#include "llvm/Transforms/Scalar.h"
Chris Lattner621c44d2009-08-22 20:48:53 +000038#include "llvm/MC/MCAsmInfo.h"
Chris Lattner4aeebec2010-03-12 18:44:54 +000039#include "llvm/MC/MCContext.h"
Chris Lattner11d7dfa2010-01-13 21:12:34 +000040#include "llvm/MC/MCSymbol.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000041#include "llvm/Target/TargetData.h"
Daniel Dunbarfe5939f2009-07-15 20:24:03 +000042#include "llvm/Target/TargetRegistry.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000043#include "llvm/Support/CallSite.h"
44#include "llvm/Support/CFG.h"
Edwin Török4d9756a2009-07-08 20:53:28 +000045#include "llvm/Support/ErrorHandling.h"
David Greene302008d2009-07-14 20:18:05 +000046#include "llvm/Support/FormattedStream.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000047#include "llvm/Support/GetElementPtrTypeIterator.h"
48#include "llvm/Support/InstVisitor.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000049#include "llvm/Support/MathExtras.h"
Daniel Dunbar4baa5fe2009-08-03 04:03:51 +000050#include "llvm/System/Host.h"
Dan Gohmanf17a25c2007-07-18 16:29:46 +000051#include "llvm/Config/config.h"
52#include <algorithm>
Dan Gohmanf17a25c2007-07-18 16:29:46 +000053using namespace llvm;
54
Daniel Dunbarc680b012009-07-25 06:49:55 +000055extern "C" void LLVMInitializeCBackendTarget() {
56 // Register the target.
Daniel Dunbare6ad1102009-08-04 04:02:45 +000057 RegisterTargetMachine<CTargetMachine> X(TheCBackendTarget);
Daniel Dunbarc680b012009-07-25 06:49:55 +000058}
Douglas Gregor1dc5ff42009-06-16 20:12:29 +000059
Dan Gohman089efff2008-05-13 00:00:25 +000060namespace {
Chris Lattner63ab9bb2010-01-17 18:22:35 +000061 class CBEMCAsmInfo : public MCAsmInfo {
62 public:
Chris Lattner50f82ef2010-01-20 06:34:14 +000063 CBEMCAsmInfo() {
Chris Lattner63ab9bb2010-01-17 18:22:35 +000064 GlobalPrefix = "";
65 PrivateGlobalPrefix = "";
66 }
67 };
Dan Gohmanf17a25c2007-07-18 16:29:46 +000068 /// CBackendNameAllUsedStructsAndMergeFunctions - This pass inserts names for
69 /// any unnamed structure types that are used by the program, and merges
70 /// external functions with the same name.
71 ///
72 class CBackendNameAllUsedStructsAndMergeFunctions : public ModulePass {
73 public:
74 static char ID;
75 CBackendNameAllUsedStructsAndMergeFunctions()
Dan Gohman26f8c272008-09-04 17:05:41 +000076 : ModulePass(&ID) {}
Dan Gohmanf17a25c2007-07-18 16:29:46 +000077 void getAnalysisUsage(AnalysisUsage &AU) const {
78 AU.addRequired<FindUsedTypes>();
79 }
80
81 virtual const char *getPassName() const {
82 return "C backend type canonicalizer";
83 }
84
85 virtual bool runOnModule(Module &M);
86 };
87
88 char CBackendNameAllUsedStructsAndMergeFunctions::ID = 0;
89
90 /// CWriter - This class is the main chunk of code that converts an LLVM
91 /// module to a C translation unit.
92 class CWriter : public FunctionPass, public InstVisitor<CWriter> {
David Greene302008d2009-07-14 20:18:05 +000093 formatted_raw_ostream &Out;
Dan Gohmanf17a25c2007-07-18 16:29:46 +000094 IntrinsicLowering *IL;
95 Mangler *Mang;
96 LoopInfo *LI;
97 const Module *TheModule;
Chris Lattner621c44d2009-08-22 20:48:53 +000098 const MCAsmInfo* TAsm;
Chris Lattner4aeebec2010-03-12 18:44:54 +000099 MCContext *TCtx;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000100 const TargetData* TD;
101 std::map<const Type *, std::string> TypeNames;
102 std::map<const ConstantFP *, unsigned> FPConstantMap;
103 std::set<Function*> intrinsicPrototypesAlreadyGenerated;
Chris Lattner8bbc8592008-03-02 08:07:24 +0000104 std::set<const Argument*> ByValParams;
Chris Lattnerf6e12012008-10-22 04:53:16 +0000105 unsigned FPCounter;
Owen Andersonde8a9442009-06-26 19:48:37 +0000106 unsigned OpaqueCounter;
Chris Lattnerb66867f2009-07-13 23:46:46 +0000107 DenseMap<const Value*, unsigned> AnonValueNumbers;
108 unsigned NextAnonValueNumber;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000109
110 public:
111 static char ID;
David Greene302008d2009-07-14 20:18:05 +0000112 explicit CWriter(formatted_raw_ostream &o)
Dan Gohman26f8c272008-09-04 17:05:41 +0000113 : FunctionPass(&ID), Out(o), IL(0), Mang(0), LI(0),
Jeffrey Yasskinb1884692010-03-19 07:06:46 +0000114 TheModule(0), TAsm(0), TCtx(0), TD(0), OpaqueCounter(0),
115 NextAnonValueNumber(0) {
Chris Lattnerf6e12012008-10-22 04:53:16 +0000116 FPCounter = 0;
117 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000118
119 virtual const char *getPassName() const { return "C backend"; }
120
121 void getAnalysisUsage(AnalysisUsage &AU) const {
122 AU.addRequired<LoopInfo>();
123 AU.setPreservesAll();
124 }
125
126 virtual bool doInitialization(Module &M);
127
128 bool runOnFunction(Function &F) {
Chris Lattner3ed055f2009-04-17 00:26:12 +0000129 // Do not codegen any 'available_externally' functions at all, they have
130 // definitions outside the translation unit.
131 if (F.hasAvailableExternallyLinkage())
132 return false;
133
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000134 LI = &getAnalysis<LoopInfo>();
135
136 // Get rid of intrinsics we can't handle.
137 lowerIntrinsics(F);
138
139 // Output all floating point constants that cannot be printed accurately.
140 printFloatingPointConstants(F);
141
142 printFunction(F);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000143 return false;
144 }
145
146 virtual bool doFinalization(Module &M) {
147 // Free memory...
Nuno Lopes6c857162009-01-13 23:35:49 +0000148 delete IL;
149 delete TD;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000150 delete Mang;
Jeffrey Yasskinb1884692010-03-19 07:06:46 +0000151 delete TCtx;
152 delete TAsm;
Evan Cheng17254e62008-01-11 09:12:49 +0000153 FPConstantMap.clear();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000154 TypeNames.clear();
Evan Cheng17254e62008-01-11 09:12:49 +0000155 ByValParams.clear();
Chris Lattner8bbc8592008-03-02 08:07:24 +0000156 intrinsicPrototypesAlreadyGenerated.clear();
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000157 return false;
158 }
159
Duncan Sands711e63c2010-02-21 19:15:19 +0000160 raw_ostream &printType(raw_ostream &Out, const Type *Ty,
David Greene302008d2009-07-14 20:18:05 +0000161 bool isSigned = false,
162 const std::string &VariableName = "",
163 bool IgnoreName = false,
164 const AttrListPtr &PAL = AttrListPtr());
Duncan Sands711e63c2010-02-21 19:15:19 +0000165 raw_ostream &printSimpleType(raw_ostream &Out, const Type *Ty,
166 bool isSigned,
Owen Anderson847b99b2008-08-21 00:14:44 +0000167 const std::string &NameSoFar = "");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000168
Duncan Sands711e63c2010-02-21 19:15:19 +0000169 void printStructReturnPointerFunctionType(raw_ostream &Out,
Devang Pateld222f862008-09-25 21:00:45 +0000170 const AttrListPtr &PAL,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000171 const PointerType *Ty);
Chris Lattner8bbc8592008-03-02 08:07:24 +0000172
173 /// writeOperandDeref - Print the result of dereferencing the specified
174 /// operand with '*'. This is equivalent to printing '*' then using
175 /// writeOperand, but avoids excess syntax in some cases.
176 void writeOperandDeref(Value *Operand) {
177 if (isAddressExposed(Operand)) {
178 // Already something with an address exposed.
179 writeOperandInternal(Operand);
180 } else {
181 Out << "*(";
182 writeOperand(Operand);
183 Out << ")";
184 }
185 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000186
Dan Gohmanad831302008-07-24 17:57:48 +0000187 void writeOperand(Value *Operand, bool Static = false);
Chris Lattnerd70f5a82008-05-31 09:23:55 +0000188 void writeInstComputationInline(Instruction &I);
Dan Gohmanad831302008-07-24 17:57:48 +0000189 void writeOperandInternal(Value *Operand, bool Static = false);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000190 void writeOperandWithCast(Value* Operand, unsigned Opcode);
Chris Lattner389c9142007-09-15 06:51:03 +0000191 void writeOperandWithCast(Value* Operand, const ICmpInst &I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000192 bool writeInstructionCast(const Instruction &I);
193
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +0000194 void writeMemoryAccess(Value *Operand, const Type *OperandType,
195 bool IsVolatile, unsigned Alignment);
196
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000197 private :
198 std::string InterpretASMConstraint(InlineAsm::ConstraintInfo& c);
199
200 void lowerIntrinsics(Function &F);
201
202 void printModule(Module *M);
203 void printModuleTypes(const TypeSymbolTable &ST);
Dan Gohman5d995b02008-06-02 21:30:49 +0000204 void printContainedStructs(const Type *Ty, std::set<const Type *> &);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000205 void printFloatingPointConstants(Function &F);
Chris Lattnerf6e12012008-10-22 04:53:16 +0000206 void printFloatingPointConstants(const Constant *C);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000207 void printFunctionSignature(const Function *F, bool Prototype);
208
209 void printFunction(Function &);
210 void printBasicBlock(BasicBlock *BB);
211 void printLoop(Loop *L);
212
213 void printCast(unsigned opcode, const Type *SrcTy, const Type *DstTy);
Dan Gohmanad831302008-07-24 17:57:48 +0000214 void printConstant(Constant *CPV, bool Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000215 void printConstantWithCast(Constant *CPV, unsigned Opcode);
Dan Gohmanad831302008-07-24 17:57:48 +0000216 bool printConstExprCast(const ConstantExpr *CE, bool Static);
217 void printConstantArray(ConstantArray *CPA, bool Static);
218 void printConstantVector(ConstantVector *CV, bool Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000219
Chris Lattner8bbc8592008-03-02 08:07:24 +0000220 /// isAddressExposed - Return true if the specified value's name needs to
221 /// have its address taken in order to get a C value of the correct type.
222 /// This happens for global variables, byval parameters, and direct allocas.
223 bool isAddressExposed(const Value *V) const {
224 if (const Argument *A = dyn_cast<Argument>(V))
225 return ByValParams.count(A);
226 return isa<GlobalVariable>(V) || isDirectAlloca(V);
227 }
228
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000229 // isInlinableInst - Attempt to inline instructions into their uses to build
230 // trees as much as possible. To do this, we have to consistently decide
231 // what is acceptable to inline, so that variable declarations don't get
232 // printed and an extra copy of the expr is not emitted.
233 //
234 static bool isInlinableInst(const Instruction &I) {
235 // Always inline cmp instructions, even if they are shared by multiple
236 // expressions. GCC generates horrible code if we don't.
237 if (isa<CmpInst>(I))
238 return true;
239
240 // Must be an expression, must be used exactly once. If it is dead, we
241 // emit it inline where it would go.
Owen Anderson35b47072009-08-13 21:58:54 +0000242 if (I.getType() == Type::getVoidTy(I.getContext()) || !I.hasOneUse() ||
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000243 isa<TerminatorInst>(I) || isa<CallInst>(I) || isa<PHINode>(I) ||
Dan Gohman5d995b02008-06-02 21:30:49 +0000244 isa<LoadInst>(I) || isa<VAArgInst>(I) || isa<InsertElementInst>(I) ||
245 isa<InsertValueInst>(I))
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000246 // Don't inline a load across a store or other bad things!
247 return false;
248
Chris Lattnerf858a042008-03-02 05:41:07 +0000249 // Must not be used in inline asm, extractelement, or shufflevector.
250 if (I.hasOneUse()) {
251 const Instruction &User = cast<Instruction>(*I.use_back());
252 if (isInlineAsm(User) || isa<ExtractElementInst>(User) ||
253 isa<ShuffleVectorInst>(User))
254 return false;
255 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000256
257 // Only inline instruction it if it's use is in the same BB as the inst.
258 return I.getParent() == cast<Instruction>(I.use_back())->getParent();
259 }
260
261 // isDirectAlloca - Define fixed sized allocas in the entry block as direct
262 // variables which are accessed with the & operator. This causes GCC to
263 // generate significantly better code than to emit alloca calls directly.
264 //
265 static const AllocaInst *isDirectAlloca(const Value *V) {
266 const AllocaInst *AI = dyn_cast<AllocaInst>(V);
Chris Lattnerc1045a52010-06-14 18:28:57 +0000267 if (!AI) return 0;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000268 if (AI->isArrayAllocation())
269 return 0; // FIXME: we can also inline fixed size array allocas!
270 if (AI->getParent() != &AI->getParent()->getParent()->getEntryBlock())
271 return 0;
272 return AI;
273 }
274
275 // isInlineAsm - Check if the instruction is a call to an inline asm chunk
276 static bool isInlineAsm(const Instruction& I) {
Gabor Greif63c1c392010-04-08 13:08:11 +0000277 if (const CallInst *CI = dyn_cast<CallInst>(&I))
278 return isa<InlineAsm>(CI->getCalledValue());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000279 return false;
280 }
281
282 // Instruction visitation functions
283 friend class InstVisitor<CWriter>;
284
285 void visitReturnInst(ReturnInst &I);
286 void visitBranchInst(BranchInst &I);
287 void visitSwitchInst(SwitchInst &I);
Chris Lattner4c3800f2009-10-28 00:19:10 +0000288 void visitIndirectBrInst(IndirectBrInst &I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000289 void visitInvokeInst(InvokeInst &I) {
Edwin Törökbd448e32009-07-14 16:55:14 +0000290 llvm_unreachable("Lowerinvoke pass didn't work!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000291 }
292
293 void visitUnwindInst(UnwindInst &I) {
Edwin Törökbd448e32009-07-14 16:55:14 +0000294 llvm_unreachable("Lowerinvoke pass didn't work!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000295 }
296 void visitUnreachableInst(UnreachableInst &I);
297
298 void visitPHINode(PHINode &I);
299 void visitBinaryOperator(Instruction &I);
300 void visitICmpInst(ICmpInst &I);
301 void visitFCmpInst(FCmpInst &I);
302
303 void visitCastInst (CastInst &I);
304 void visitSelectInst(SelectInst &I);
305 void visitCallInst (CallInst &I);
306 void visitInlineAsm(CallInst &I);
Chris Lattnera74b9182008-03-02 08:29:41 +0000307 bool visitBuiltinCall(CallInst &I, Intrinsic::ID ID, bool &WroteCallee);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000308
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000309 void visitAllocaInst(AllocaInst &I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000310 void visitLoadInst (LoadInst &I);
311 void visitStoreInst (StoreInst &I);
312 void visitGetElementPtrInst(GetElementPtrInst &I);
313 void visitVAArgInst (VAArgInst &I);
Chris Lattnerf41a7942008-03-02 03:52:39 +0000314
315 void visitInsertElementInst(InsertElementInst &I);
Chris Lattnera5f0bc02008-03-02 03:57:08 +0000316 void visitExtractElementInst(ExtractElementInst &I);
Chris Lattnerf858a042008-03-02 05:41:07 +0000317 void visitShuffleVectorInst(ShuffleVectorInst &SVI);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000318
Dan Gohman5d995b02008-06-02 21:30:49 +0000319 void visitInsertValueInst(InsertValueInst &I);
320 void visitExtractValueInst(ExtractValueInst &I);
321
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000322 void visitInstruction(Instruction &I) {
Edwin Török4d9756a2009-07-08 20:53:28 +0000323#ifndef NDEBUG
Chris Lattner8a6411c2009-08-23 04:37:46 +0000324 errs() << "C Writer does not know about " << I;
Edwin Török4d9756a2009-07-08 20:53:28 +0000325#endif
Edwin Törökbd448e32009-07-14 16:55:14 +0000326 llvm_unreachable(0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000327 }
328
329 void outputLValue(Instruction *I) {
330 Out << " " << GetValueName(I) << " = ";
331 }
332
333 bool isGotoCodeNecessary(BasicBlock *From, BasicBlock *To);
334 void printPHICopiesForSuccessor(BasicBlock *CurBlock,
335 BasicBlock *Successor, unsigned Indent);
336 void printBranchToBlock(BasicBlock *CurBlock, BasicBlock *SuccBlock,
337 unsigned Indent);
Chris Lattner8bbc8592008-03-02 08:07:24 +0000338 void printGEPExpression(Value *Ptr, gep_type_iterator I,
Dan Gohmanad831302008-07-24 17:57:48 +0000339 gep_type_iterator E, bool Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000340
341 std::string GetValueName(const Value *Operand);
342 };
343}
344
345char CWriter::ID = 0;
346
Chris Lattnerd2f59b82010-01-13 19:54:07 +0000347
Chris Lattner55f4aca2010-01-22 18:33:00 +0000348static std::string CBEMangle(const std::string &S) {
Chris Lattner306ee862010-01-17 19:32:29 +0000349 std::string Result;
350
351 for (unsigned i = 0, e = S.size(); i != e; ++i)
352 if (isalnum(S[i]) || S[i] == '_') {
353 Result += S[i];
354 } else {
355 Result += '_';
356 Result += 'A'+(S[i]&15);
357 Result += 'A'+((S[i]>>4)&15);
358 Result += '_';
359 }
360 return Result;
Chris Lattnerd2f59b82010-01-13 19:54:07 +0000361}
362
363
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000364/// This method inserts names for any unnamed structure types that are used by
365/// the program, and removes names from structure types that are not used by the
366/// program.
367///
368bool CBackendNameAllUsedStructsAndMergeFunctions::runOnModule(Module &M) {
369 // Get a set of types that are used by the program...
370 std::set<const Type *> UT = getAnalysis<FindUsedTypes>().getTypes();
371
372 // Loop over the module symbol table, removing types from UT that are
373 // already named, and removing names for types that are not used.
374 //
375 TypeSymbolTable &TST = M.getTypeSymbolTable();
376 for (TypeSymbolTable::iterator TI = TST.begin(), TE = TST.end();
377 TI != TE; ) {
378 TypeSymbolTable::iterator I = TI++;
379
Dan Gohman5d995b02008-06-02 21:30:49 +0000380 // If this isn't a struct or array type, remove it from our set of types
381 // to name. This simplifies emission later.
Duncan Sands1e6932c2010-02-16 14:50:09 +0000382 if (!I->second->isStructTy() && !I->second->isOpaqueTy() &&
Duncan Sands10343d92010-02-16 11:11:14 +0000383 !I->second->isArrayTy()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000384 TST.remove(I);
385 } else {
386 // If this is not used, remove it from the symbol table.
387 std::set<const Type *>::iterator UTI = UT.find(I->second);
388 if (UTI == UT.end())
389 TST.remove(I);
390 else
391 UT.erase(UTI); // Only keep one name for this type.
392 }
393 }
394
395 // UT now contains types that are not named. Loop over it, naming
396 // structure types.
397 //
398 bool Changed = false;
399 unsigned RenameCounter = 0;
400 for (std::set<const Type *>::const_iterator I = UT.begin(), E = UT.end();
401 I != E; ++I)
Duncan Sands10343d92010-02-16 11:11:14 +0000402 if ((*I)->isStructTy() || (*I)->isArrayTy()) {
Dan Gohman5d995b02008-06-02 21:30:49 +0000403 while (M.addTypeName("unnamed"+utostr(RenameCounter), *I))
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000404 ++RenameCounter;
405 Changed = true;
406 }
407
408
409 // Loop over all external functions and globals. If we have two with
410 // identical names, merge them.
411 // FIXME: This code should disappear when we don't allow values with the same
412 // names when they have different types!
413 std::map<std::string, GlobalValue*> ExtSymbols;
414 for (Module::iterator I = M.begin(), E = M.end(); I != E;) {
415 Function *GV = I++;
416 if (GV->isDeclaration() && GV->hasName()) {
417 std::pair<std::map<std::string, GlobalValue*>::iterator, bool> X
418 = ExtSymbols.insert(std::make_pair(GV->getName(), GV));
419 if (!X.second) {
420 // Found a conflict, replace this global with the previous one.
421 GlobalValue *OldGV = X.first->second;
422 GV->replaceAllUsesWith(ConstantExpr::getBitCast(OldGV, GV->getType()));
423 GV->eraseFromParent();
424 Changed = true;
425 }
426 }
427 }
428 // Do the same for globals.
429 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
430 I != E;) {
431 GlobalVariable *GV = I++;
432 if (GV->isDeclaration() && GV->hasName()) {
433 std::pair<std::map<std::string, GlobalValue*>::iterator, bool> X
434 = ExtSymbols.insert(std::make_pair(GV->getName(), GV));
435 if (!X.second) {
436 // Found a conflict, replace this global with the previous one.
437 GlobalValue *OldGV = X.first->second;
438 GV->replaceAllUsesWith(ConstantExpr::getBitCast(OldGV, GV->getType()));
439 GV->eraseFromParent();
440 Changed = true;
441 }
442 }
443 }
444
445 return Changed;
446}
447
448/// printStructReturnPointerFunctionType - This is like printType for a struct
449/// return type, except, instead of printing the type as void (*)(Struct*, ...)
450/// print it as "Struct (*)(...)", for struct return functions.
Duncan Sands711e63c2010-02-21 19:15:19 +0000451void CWriter::printStructReturnPointerFunctionType(raw_ostream &Out,
Devang Pateld222f862008-09-25 21:00:45 +0000452 const AttrListPtr &PAL,
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000453 const PointerType *TheTy) {
454 const FunctionType *FTy = cast<FunctionType>(TheTy->getElementType());
Duncan Sands711e63c2010-02-21 19:15:19 +0000455 std::string tstr;
456 raw_string_ostream FunctionInnards(tstr);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000457 FunctionInnards << " (*) (";
458 bool PrintedType = false;
459
460 FunctionType::param_iterator I = FTy->param_begin(), E = FTy->param_end();
461 const Type *RetTy = cast<PointerType>(I->get())->getElementType();
462 unsigned Idx = 1;
Evan Cheng2054cb02008-01-11 03:07:46 +0000463 for (++I, ++Idx; I != E; ++I, ++Idx) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000464 if (PrintedType)
465 FunctionInnards << ", ";
Evan Cheng2054cb02008-01-11 03:07:46 +0000466 const Type *ArgTy = *I;
Devang Pateld222f862008-09-25 21:00:45 +0000467 if (PAL.paramHasAttr(Idx, Attribute::ByVal)) {
Duncan Sands10343d92010-02-16 11:11:14 +0000468 assert(ArgTy->isPointerTy());
Evan Cheng17254e62008-01-11 09:12:49 +0000469 ArgTy = cast<PointerType>(ArgTy)->getElementType();
470 }
Evan Cheng2054cb02008-01-11 03:07:46 +0000471 printType(FunctionInnards, ArgTy,
Devang Pateld222f862008-09-25 21:00:45 +0000472 /*isSigned=*/PAL.paramHasAttr(Idx, Attribute::SExt), "");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000473 PrintedType = true;
474 }
475 if (FTy->isVarArg()) {
Chris Lattner10c749c2010-04-10 19:12:44 +0000476 if (!PrintedType)
477 FunctionInnards << " int"; //dummy argument for empty vararg functs
478 FunctionInnards << ", ...";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000479 } else if (!PrintedType) {
480 FunctionInnards << "void";
481 }
482 FunctionInnards << ')';
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000483 printType(Out, RetTy,
Duncan Sands711e63c2010-02-21 19:15:19 +0000484 /*isSigned=*/PAL.paramHasAttr(0, Attribute::SExt), FunctionInnards.str());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000485}
486
Owen Anderson847b99b2008-08-21 00:14:44 +0000487raw_ostream &
Duncan Sands711e63c2010-02-21 19:15:19 +0000488CWriter::printSimpleType(raw_ostream &Out, const Type *Ty, bool isSigned,
Chris Lattnerd8090712008-03-02 03:41:23 +0000489 const std::string &NameSoFar) {
Duncan Sands10343d92010-02-16 11:11:14 +0000490 assert((Ty->isPrimitiveType() || Ty->isIntegerTy() || Ty->isVectorTy()) &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000491 "Invalid type for printSimpleType");
492 switch (Ty->getTypeID()) {
493 case Type::VoidTyID: return Out << "void " << NameSoFar;
494 case Type::IntegerTyID: {
495 unsigned NumBits = cast<IntegerType>(Ty)->getBitWidth();
496 if (NumBits == 1)
497 return Out << "bool " << NameSoFar;
498 else if (NumBits <= 8)
499 return Out << (isSigned?"signed":"unsigned") << " char " << NameSoFar;
500 else if (NumBits <= 16)
501 return Out << (isSigned?"signed":"unsigned") << " short " << NameSoFar;
502 else if (NumBits <= 32)
503 return Out << (isSigned?"signed":"unsigned") << " int " << NameSoFar;
Dan Gohmana2245af2008-04-02 19:40:14 +0000504 else if (NumBits <= 64)
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000505 return Out << (isSigned?"signed":"unsigned") << " long long "<< NameSoFar;
Dan Gohmana2245af2008-04-02 19:40:14 +0000506 else {
507 assert(NumBits <= 128 && "Bit widths > 128 not implemented yet");
508 return Out << (isSigned?"llvmInt128":"llvmUInt128") << " " << NameSoFar;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000509 }
510 }
511 case Type::FloatTyID: return Out << "float " << NameSoFar;
512 case Type::DoubleTyID: return Out << "double " << NameSoFar;
Dale Johannesen137cef62007-09-17 00:38:27 +0000513 // Lacking emulation of FP80 on PPC, etc., we assume whichever of these is
514 // present matches host 'long double'.
515 case Type::X86_FP80TyID:
516 case Type::PPC_FP128TyID:
517 case Type::FP128TyID: return Out << "long double " << NameSoFar;
Chris Lattnerdb6d5ce2008-03-02 03:33:31 +0000518
519 case Type::VectorTyID: {
520 const VectorType *VTy = cast<VectorType>(Ty);
Chris Lattnerd8090712008-03-02 03:41:23 +0000521 return printSimpleType(Out, VTy->getElementType(), isSigned,
Chris Lattnerfddca552008-03-02 03:39:43 +0000522 " __attribute__((vector_size(" +
Duncan Sandsec4f97d2009-05-09 07:06:46 +0000523 utostr(TD->getTypeAllocSize(VTy)) + " ))) " + NameSoFar);
Chris Lattnerdb6d5ce2008-03-02 03:33:31 +0000524 }
525
526 default:
Edwin Török4d9756a2009-07-08 20:53:28 +0000527#ifndef NDEBUG
Chris Lattner8a6411c2009-08-23 04:37:46 +0000528 errs() << "Unknown primitive type: " << *Ty << "\n";
Edwin Török4d9756a2009-07-08 20:53:28 +0000529#endif
Edwin Törökbd448e32009-07-14 16:55:14 +0000530 llvm_unreachable(0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000531 }
532}
533
534// Pass the Type* and the variable name and this prints out the variable
535// declaration.
536//
Duncan Sands711e63c2010-02-21 19:15:19 +0000537raw_ostream &CWriter::printType(raw_ostream &Out, const Type *Ty,
David Greene302008d2009-07-14 20:18:05 +0000538 bool isSigned, const std::string &NameSoFar,
539 bool IgnoreName, const AttrListPtr &PAL) {
Duncan Sands10343d92010-02-16 11:11:14 +0000540 if (Ty->isPrimitiveType() || Ty->isIntegerTy() || Ty->isVectorTy()) {
Owen Anderson847b99b2008-08-21 00:14:44 +0000541 printSimpleType(Out, Ty, isSigned, NameSoFar);
542 return Out;
543 }
544
545 // Check to see if the type is named.
Duncan Sands1e6932c2010-02-16 14:50:09 +0000546 if (!IgnoreName || Ty->isOpaqueTy()) {
Owen Anderson847b99b2008-08-21 00:14:44 +0000547 std::map<const Type *, std::string>::iterator I = TypeNames.find(Ty);
548 if (I != TypeNames.end()) return Out << I->second << ' ' << NameSoFar;
549 }
550
551 switch (Ty->getTypeID()) {
552 case Type::FunctionTyID: {
553 const FunctionType *FTy = cast<FunctionType>(Ty);
Duncan Sands711e63c2010-02-21 19:15:19 +0000554 std::string tstr;
555 raw_string_ostream FunctionInnards(tstr);
Owen Anderson847b99b2008-08-21 00:14:44 +0000556 FunctionInnards << " (" << NameSoFar << ") (";
557 unsigned Idx = 1;
558 for (FunctionType::param_iterator I = FTy->param_begin(),
559 E = FTy->param_end(); I != E; ++I) {
560 const Type *ArgTy = *I;
Devang Pateld222f862008-09-25 21:00:45 +0000561 if (PAL.paramHasAttr(Idx, Attribute::ByVal)) {
Duncan Sands10343d92010-02-16 11:11:14 +0000562 assert(ArgTy->isPointerTy());
Owen Anderson847b99b2008-08-21 00:14:44 +0000563 ArgTy = cast<PointerType>(ArgTy)->getElementType();
564 }
565 if (I != FTy->param_begin())
566 FunctionInnards << ", ";
567 printType(FunctionInnards, ArgTy,
Devang Pateld222f862008-09-25 21:00:45 +0000568 /*isSigned=*/PAL.paramHasAttr(Idx, Attribute::SExt), "");
Owen Anderson847b99b2008-08-21 00:14:44 +0000569 ++Idx;
570 }
571 if (FTy->isVarArg()) {
Chris Lattner10c749c2010-04-10 19:12:44 +0000572 if (!FTy->getNumParams())
573 FunctionInnards << " int"; //dummy argument for empty vaarg functs
574 FunctionInnards << ", ...";
Owen Anderson847b99b2008-08-21 00:14:44 +0000575 } else if (!FTy->getNumParams()) {
576 FunctionInnards << "void";
577 }
578 FunctionInnards << ')';
Owen Anderson847b99b2008-08-21 00:14:44 +0000579 printType(Out, FTy->getReturnType(),
Duncan Sands711e63c2010-02-21 19:15:19 +0000580 /*isSigned=*/PAL.paramHasAttr(0, Attribute::SExt), FunctionInnards.str());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000581 return Out;
582 }
583 case Type::StructTyID: {
584 const StructType *STy = cast<StructType>(Ty);
585 Out << NameSoFar + " {\n";
586 unsigned Idx = 0;
587 for (StructType::element_iterator I = STy->element_begin(),
588 E = STy->element_end(); I != E; ++I) {
589 Out << " ";
590 printType(Out, *I, false, "field" + utostr(Idx++));
591 Out << ";\n";
592 }
593 Out << '}';
594 if (STy->isPacked())
595 Out << " __attribute__ ((packed))";
596 return Out;
597 }
598
599 case Type::PointerTyID: {
600 const PointerType *PTy = cast<PointerType>(Ty);
601 std::string ptrName = "*" + NameSoFar;
602
Duncan Sands10343d92010-02-16 11:11:14 +0000603 if (PTy->getElementType()->isArrayTy() ||
604 PTy->getElementType()->isVectorTy())
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000605 ptrName = "(" + ptrName + ")";
606
Chris Lattner1c8733e2008-03-12 17:45:29 +0000607 if (!PAL.isEmpty())
Evan Chengb8a072c2008-01-12 18:53:07 +0000608 // Must be a function ptr cast!
609 return printType(Out, PTy->getElementType(), false, ptrName, true, PAL);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000610 return printType(Out, PTy->getElementType(), false, ptrName);
611 }
612
613 case Type::ArrayTyID: {
614 const ArrayType *ATy = cast<ArrayType>(Ty);
615 unsigned NumElements = ATy->getNumElements();
616 if (NumElements == 0) NumElements = 1;
Dan Gohman5d995b02008-06-02 21:30:49 +0000617 // Arrays are wrapped in structs to allow them to have normal
618 // value semantics (avoiding the array "decay").
619 Out << NameSoFar << " { ";
620 printType(Out, ATy->getElementType(), false,
621 "array[" + utostr(NumElements) + "]");
622 return Out << "; }";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000623 }
624
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000625 case Type::OpaqueTyID: {
Owen Andersonde8a9442009-06-26 19:48:37 +0000626 std::string TyName = "struct opaque_" + itostr(OpaqueCounter++);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000627 assert(TypeNames.find(Ty) == TypeNames.end());
628 TypeNames[Ty] = TyName;
629 return Out << TyName << ' ' << NameSoFar;
630 }
631 default:
Edwin Törökbd448e32009-07-14 16:55:14 +0000632 llvm_unreachable("Unhandled case in getTypeProps!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000633 }
634
635 return Out;
636}
637
Dan Gohmanad831302008-07-24 17:57:48 +0000638void CWriter::printConstantArray(ConstantArray *CPA, bool Static) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000639
640 // As a special case, print the array as a string if it is an array of
641 // ubytes or an array of sbytes with positive values.
642 //
643 const Type *ETy = CPA->getType()->getElementType();
Owen Anderson35b47072009-08-13 21:58:54 +0000644 bool isString = (ETy == Type::getInt8Ty(CPA->getContext()) ||
645 ETy == Type::getInt8Ty(CPA->getContext()));
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000646
647 // Make sure the last character is a null char, as automatically added by C
648 if (isString && (CPA->getNumOperands() == 0 ||
649 !cast<Constant>(*(CPA->op_end()-1))->isNullValue()))
650 isString = false;
651
652 if (isString) {
653 Out << '\"';
654 // Keep track of whether the last number was a hexadecimal escape
655 bool LastWasHex = false;
656
657 // Do not include the last character, which we know is null
658 for (unsigned i = 0, e = CPA->getNumOperands()-1; i != e; ++i) {
659 unsigned char C = cast<ConstantInt>(CPA->getOperand(i))->getZExtValue();
660
661 // Print it out literally if it is a printable character. The only thing
662 // to be careful about is when the last letter output was a hex escape
663 // code, in which case we have to be careful not to print out hex digits
664 // explicitly (the C compiler thinks it is a continuation of the previous
665 // character, sheesh...)
666 //
667 if (isprint(C) && (!LastWasHex || !isxdigit(C))) {
668 LastWasHex = false;
669 if (C == '"' || C == '\\')
Chris Lattner009f3962008-08-21 05:51:43 +0000670 Out << "\\" << (char)C;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000671 else
Chris Lattner009f3962008-08-21 05:51:43 +0000672 Out << (char)C;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000673 } else {
674 LastWasHex = false;
675 switch (C) {
676 case '\n': Out << "\\n"; break;
677 case '\t': Out << "\\t"; break;
678 case '\r': Out << "\\r"; break;
679 case '\v': Out << "\\v"; break;
680 case '\a': Out << "\\a"; break;
681 case '\"': Out << "\\\""; break;
682 case '\'': Out << "\\\'"; break;
683 default:
684 Out << "\\x";
685 Out << (char)(( C/16 < 10) ? ( C/16 +'0') : ( C/16 -10+'A'));
686 Out << (char)(((C&15) < 10) ? ((C&15)+'0') : ((C&15)-10+'A'));
687 LastWasHex = true;
688 break;
689 }
690 }
691 }
692 Out << '\"';
693 } else {
694 Out << '{';
695 if (CPA->getNumOperands()) {
696 Out << ' ';
Dan Gohmanad831302008-07-24 17:57:48 +0000697 printConstant(cast<Constant>(CPA->getOperand(0)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000698 for (unsigned i = 1, e = CPA->getNumOperands(); i != e; ++i) {
699 Out << ", ";
Dan Gohmanad831302008-07-24 17:57:48 +0000700 printConstant(cast<Constant>(CPA->getOperand(i)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000701 }
702 }
703 Out << " }";
704 }
705}
706
Dan Gohmanad831302008-07-24 17:57:48 +0000707void CWriter::printConstantVector(ConstantVector *CP, bool Static) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000708 Out << '{';
709 if (CP->getNumOperands()) {
710 Out << ' ';
Dan Gohmanad831302008-07-24 17:57:48 +0000711 printConstant(cast<Constant>(CP->getOperand(0)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000712 for (unsigned i = 1, e = CP->getNumOperands(); i != e; ++i) {
713 Out << ", ";
Dan Gohmanad831302008-07-24 17:57:48 +0000714 printConstant(cast<Constant>(CP->getOperand(i)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000715 }
716 }
717 Out << " }";
718}
719
720// isFPCSafeToPrint - Returns true if we may assume that CFP may be written out
721// textually as a double (rather than as a reference to a stack-allocated
722// variable). We decide this by converting CFP to a string and back into a
723// double, and then checking whether the conversion results in a bit-equal
724// double to the original value of CFP. This depends on us and the target C
725// compiler agreeing on the conversion process (which is pretty likely since we
726// only deal in IEEE FP).
727//
728static bool isFPCSafeToPrint(const ConstantFP *CFP) {
Dale Johannesen6e547b42008-10-09 23:00:39 +0000729 bool ignored;
Dale Johannesen137cef62007-09-17 00:38:27 +0000730 // Do long doubles in hex for now.
Owen Anderson35b47072009-08-13 21:58:54 +0000731 if (CFP->getType() != Type::getFloatTy(CFP->getContext()) &&
732 CFP->getType() != Type::getDoubleTy(CFP->getContext()))
Dale Johannesen2fc20782007-09-14 22:26:36 +0000733 return false;
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000734 APFloat APF = APFloat(CFP->getValueAPF()); // copy
Owen Anderson35b47072009-08-13 21:58:54 +0000735 if (CFP->getType() == Type::getFloatTy(CFP->getContext()))
Dale Johannesen6e547b42008-10-09 23:00:39 +0000736 APF.convert(APFloat::IEEEdouble, APFloat::rmNearestTiesToEven, &ignored);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000737#if HAVE_PRINTF_A && ENABLE_CBE_PRINTF_A
738 char Buffer[100];
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000739 sprintf(Buffer, "%a", APF.convertToDouble());
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000740 if (!strncmp(Buffer, "0x", 2) ||
741 !strncmp(Buffer, "-0x", 3) ||
742 !strncmp(Buffer, "+0x", 3))
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000743 return APF.bitwiseIsEqual(APFloat(atof(Buffer)));
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000744 return false;
745#else
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000746 std::string StrVal = ftostr(APF);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000747
748 while (StrVal[0] == ' ')
749 StrVal.erase(StrVal.begin());
750
751 // Check to make sure that the stringized number is not some string like "Inf"
752 // or NaN. Check that the string matches the "[-+]?[0-9]" regex.
753 if ((StrVal[0] >= '0' && StrVal[0] <= '9') ||
754 ((StrVal[0] == '-' || StrVal[0] == '+') &&
755 (StrVal[1] >= '0' && StrVal[1] <= '9')))
756 // Reparse stringized version!
Dale Johannesenb9de9f02007-09-06 18:13:44 +0000757 return APF.bitwiseIsEqual(APFloat(atof(StrVal.c_str())));
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000758 return false;
759#endif
760}
761
762/// Print out the casting for a cast operation. This does the double casting
763/// necessary for conversion to the destination type, if necessary.
764/// @brief Print a cast
765void CWriter::printCast(unsigned opc, const Type *SrcTy, const Type *DstTy) {
766 // Print the destination type cast
767 switch (opc) {
768 case Instruction::UIToFP:
769 case Instruction::SIToFP:
770 case Instruction::IntToPtr:
771 case Instruction::Trunc:
772 case Instruction::BitCast:
773 case Instruction::FPExt:
774 case Instruction::FPTrunc: // For these the DstTy sign doesn't matter
775 Out << '(';
776 printType(Out, DstTy);
777 Out << ')';
778 break;
779 case Instruction::ZExt:
780 case Instruction::PtrToInt:
781 case Instruction::FPToUI: // For these, make sure we get an unsigned dest
782 Out << '(';
783 printSimpleType(Out, DstTy, false);
784 Out << ')';
785 break;
786 case Instruction::SExt:
787 case Instruction::FPToSI: // For these, make sure we get a signed dest
788 Out << '(';
789 printSimpleType(Out, DstTy, true);
790 Out << ')';
791 break;
792 default:
Edwin Törökbd448e32009-07-14 16:55:14 +0000793 llvm_unreachable("Invalid cast opcode");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000794 }
795
796 // Print the source type cast
797 switch (opc) {
798 case Instruction::UIToFP:
799 case Instruction::ZExt:
800 Out << '(';
801 printSimpleType(Out, SrcTy, false);
802 Out << ')';
803 break;
804 case Instruction::SIToFP:
805 case Instruction::SExt:
806 Out << '(';
807 printSimpleType(Out, SrcTy, true);
808 Out << ')';
809 break;
810 case Instruction::IntToPtr:
811 case Instruction::PtrToInt:
812 // Avoid "cast to pointer from integer of different size" warnings
813 Out << "(unsigned long)";
814 break;
815 case Instruction::Trunc:
816 case Instruction::BitCast:
817 case Instruction::FPExt:
818 case Instruction::FPTrunc:
819 case Instruction::FPToSI:
820 case Instruction::FPToUI:
821 break; // These don't need a source cast.
822 default:
Edwin Törökbd448e32009-07-14 16:55:14 +0000823 llvm_unreachable("Invalid cast opcode");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000824 break;
825 }
826}
827
828// printConstant - The LLVM Constant to C Constant converter.
Dan Gohmanad831302008-07-24 17:57:48 +0000829void CWriter::printConstant(Constant *CPV, bool Static) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000830 if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(CPV)) {
831 switch (CE->getOpcode()) {
832 case Instruction::Trunc:
833 case Instruction::ZExt:
834 case Instruction::SExt:
835 case Instruction::FPTrunc:
836 case Instruction::FPExt:
837 case Instruction::UIToFP:
838 case Instruction::SIToFP:
839 case Instruction::FPToUI:
840 case Instruction::FPToSI:
841 case Instruction::PtrToInt:
842 case Instruction::IntToPtr:
843 case Instruction::BitCast:
844 Out << "(";
845 printCast(CE->getOpcode(), CE->getOperand(0)->getType(), CE->getType());
846 if (CE->getOpcode() == Instruction::SExt &&
Owen Anderson35b47072009-08-13 21:58:54 +0000847 CE->getOperand(0)->getType() == Type::getInt1Ty(CPV->getContext())) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000848 // Make sure we really sext from bool here by subtracting from 0
849 Out << "0-";
850 }
Dan Gohmanad831302008-07-24 17:57:48 +0000851 printConstant(CE->getOperand(0), Static);
Owen Anderson35b47072009-08-13 21:58:54 +0000852 if (CE->getType() == Type::getInt1Ty(CPV->getContext()) &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000853 (CE->getOpcode() == Instruction::Trunc ||
854 CE->getOpcode() == Instruction::FPToUI ||
855 CE->getOpcode() == Instruction::FPToSI ||
856 CE->getOpcode() == Instruction::PtrToInt)) {
857 // Make sure we really truncate to bool here by anding with 1
858 Out << "&1u";
859 }
860 Out << ')';
861 return;
862
863 case Instruction::GetElementPtr:
Chris Lattner8bbc8592008-03-02 08:07:24 +0000864 Out << "(";
865 printGEPExpression(CE->getOperand(0), gep_type_begin(CPV),
Dan Gohmanad831302008-07-24 17:57:48 +0000866 gep_type_end(CPV), Static);
Chris Lattner8bbc8592008-03-02 08:07:24 +0000867 Out << ")";
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000868 return;
869 case Instruction::Select:
870 Out << '(';
Dan Gohmanad831302008-07-24 17:57:48 +0000871 printConstant(CE->getOperand(0), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000872 Out << '?';
Dan Gohmanad831302008-07-24 17:57:48 +0000873 printConstant(CE->getOperand(1), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000874 Out << ':';
Dan Gohmanad831302008-07-24 17:57:48 +0000875 printConstant(CE->getOperand(2), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000876 Out << ')';
877 return;
878 case Instruction::Add:
Dan Gohman7ce405e2009-06-04 22:49:04 +0000879 case Instruction::FAdd:
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000880 case Instruction::Sub:
Dan Gohman7ce405e2009-06-04 22:49:04 +0000881 case Instruction::FSub:
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000882 case Instruction::Mul:
Dan Gohman7ce405e2009-06-04 22:49:04 +0000883 case Instruction::FMul:
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000884 case Instruction::SDiv:
885 case Instruction::UDiv:
886 case Instruction::FDiv:
887 case Instruction::URem:
888 case Instruction::SRem:
889 case Instruction::FRem:
890 case Instruction::And:
891 case Instruction::Or:
892 case Instruction::Xor:
893 case Instruction::ICmp:
894 case Instruction::Shl:
895 case Instruction::LShr:
896 case Instruction::AShr:
897 {
898 Out << '(';
Dan Gohmanad831302008-07-24 17:57:48 +0000899 bool NeedsClosingParens = printConstExprCast(CE, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000900 printConstantWithCast(CE->getOperand(0), CE->getOpcode());
901 switch (CE->getOpcode()) {
Dan Gohman7ce405e2009-06-04 22:49:04 +0000902 case Instruction::Add:
903 case Instruction::FAdd: Out << " + "; break;
904 case Instruction::Sub:
905 case Instruction::FSub: Out << " - "; break;
906 case Instruction::Mul:
907 case Instruction::FMul: Out << " * "; break;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000908 case Instruction::URem:
909 case Instruction::SRem:
910 case Instruction::FRem: Out << " % "; break;
911 case Instruction::UDiv:
912 case Instruction::SDiv:
913 case Instruction::FDiv: Out << " / "; break;
914 case Instruction::And: Out << " & "; break;
915 case Instruction::Or: Out << " | "; break;
916 case Instruction::Xor: Out << " ^ "; break;
917 case Instruction::Shl: Out << " << "; break;
918 case Instruction::LShr:
919 case Instruction::AShr: Out << " >> "; break;
920 case Instruction::ICmp:
921 switch (CE->getPredicate()) {
922 case ICmpInst::ICMP_EQ: Out << " == "; break;
923 case ICmpInst::ICMP_NE: Out << " != "; break;
924 case ICmpInst::ICMP_SLT:
925 case ICmpInst::ICMP_ULT: Out << " < "; break;
926 case ICmpInst::ICMP_SLE:
927 case ICmpInst::ICMP_ULE: Out << " <= "; break;
928 case ICmpInst::ICMP_SGT:
929 case ICmpInst::ICMP_UGT: Out << " > "; break;
930 case ICmpInst::ICMP_SGE:
931 case ICmpInst::ICMP_UGE: Out << " >= "; break;
Edwin Törökbd448e32009-07-14 16:55:14 +0000932 default: llvm_unreachable("Illegal ICmp predicate");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000933 }
934 break;
Edwin Törökbd448e32009-07-14 16:55:14 +0000935 default: llvm_unreachable("Illegal opcode here!");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000936 }
937 printConstantWithCast(CE->getOperand(1), CE->getOpcode());
938 if (NeedsClosingParens)
939 Out << "))";
940 Out << ')';
941 return;
942 }
943 case Instruction::FCmp: {
944 Out << '(';
Dan Gohmanad831302008-07-24 17:57:48 +0000945 bool NeedsClosingParens = printConstExprCast(CE, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000946 if (CE->getPredicate() == FCmpInst::FCMP_FALSE)
947 Out << "0";
948 else if (CE->getPredicate() == FCmpInst::FCMP_TRUE)
949 Out << "1";
950 else {
951 const char* op = 0;
952 switch (CE->getPredicate()) {
Edwin Törökbd448e32009-07-14 16:55:14 +0000953 default: llvm_unreachable("Illegal FCmp predicate");
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000954 case FCmpInst::FCMP_ORD: op = "ord"; break;
955 case FCmpInst::FCMP_UNO: op = "uno"; break;
956 case FCmpInst::FCMP_UEQ: op = "ueq"; break;
957 case FCmpInst::FCMP_UNE: op = "une"; break;
958 case FCmpInst::FCMP_ULT: op = "ult"; break;
959 case FCmpInst::FCMP_ULE: op = "ule"; break;
960 case FCmpInst::FCMP_UGT: op = "ugt"; break;
961 case FCmpInst::FCMP_UGE: op = "uge"; break;
962 case FCmpInst::FCMP_OEQ: op = "oeq"; break;
963 case FCmpInst::FCMP_ONE: op = "one"; break;
964 case FCmpInst::FCMP_OLT: op = "olt"; break;
965 case FCmpInst::FCMP_OLE: op = "ole"; break;
966 case FCmpInst::FCMP_OGT: op = "ogt"; break;
967 case FCmpInst::FCMP_OGE: op = "oge"; break;
968 }
969 Out << "llvm_fcmp_" << op << "(";
970 printConstantWithCast(CE->getOperand(0), CE->getOpcode());
971 Out << ", ";
972 printConstantWithCast(CE->getOperand(1), CE->getOpcode());
973 Out << ")";
974 }
975 if (NeedsClosingParens)
976 Out << "))";
977 Out << ')';
Anton Korobeynikov44891ce2007-12-21 23:33:44 +0000978 return;
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000979 }
980 default:
Edwin Török4d9756a2009-07-08 20:53:28 +0000981#ifndef NDEBUG
Chris Lattner8a6411c2009-08-23 04:37:46 +0000982 errs() << "CWriter Error: Unhandled constant expression: "
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000983 << *CE << "\n";
Edwin Török4d9756a2009-07-08 20:53:28 +0000984#endif
Edwin Törökbd448e32009-07-14 16:55:14 +0000985 llvm_unreachable(0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000986 }
Dan Gohman76c2cb42008-05-23 16:57:00 +0000987 } else if (isa<UndefValue>(CPV) && CPV->getType()->isSingleValueType()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000988 Out << "((";
989 printType(Out, CPV->getType()); // sign doesn't matter
Chris Lattnerc72d9e32008-03-02 08:14:45 +0000990 Out << ")/*UNDEF*/";
Duncan Sands10343d92010-02-16 11:11:14 +0000991 if (!CPV->getType()->isVectorTy()) {
Chris Lattnerc72d9e32008-03-02 08:14:45 +0000992 Out << "0)";
993 } else {
994 Out << "{})";
995 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +0000996 return;
997 }
998
999 if (ConstantInt *CI = dyn_cast<ConstantInt>(CPV)) {
1000 const Type* Ty = CI->getType();
Owen Anderson35b47072009-08-13 21:58:54 +00001001 if (Ty == Type::getInt1Ty(CPV->getContext()))
Chris Lattner63fb1f02008-03-02 03:16:38 +00001002 Out << (CI->getZExtValue() ? '1' : '0');
Owen Anderson35b47072009-08-13 21:58:54 +00001003 else if (Ty == Type::getInt32Ty(CPV->getContext()))
Chris Lattner63fb1f02008-03-02 03:16:38 +00001004 Out << CI->getZExtValue() << 'u';
1005 else if (Ty->getPrimitiveSizeInBits() > 32)
1006 Out << CI->getZExtValue() << "ull";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001007 else {
1008 Out << "((";
1009 printSimpleType(Out, Ty, false) << ')';
1010 if (CI->isMinValue(true))
1011 Out << CI->getZExtValue() << 'u';
1012 else
1013 Out << CI->getSExtValue();
Dale Johannesen8830f922009-05-19 00:46:42 +00001014 Out << ')';
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001015 }
1016 return;
1017 }
1018
1019 switch (CPV->getType()->getTypeID()) {
1020 case Type::FloatTyID:
Dale Johannesen137cef62007-09-17 00:38:27 +00001021 case Type::DoubleTyID:
1022 case Type::X86_FP80TyID:
1023 case Type::PPC_FP128TyID:
1024 case Type::FP128TyID: {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001025 ConstantFP *FPC = cast<ConstantFP>(CPV);
1026 std::map<const ConstantFP*, unsigned>::iterator I = FPConstantMap.find(FPC);
1027 if (I != FPConstantMap.end()) {
1028 // Because of FP precision problems we must load from a stack allocated
1029 // value that holds the value in hex.
Owen Anderson35b47072009-08-13 21:58:54 +00001030 Out << "(*(" << (FPC->getType() == Type::getFloatTy(CPV->getContext()) ?
1031 "float" :
1032 FPC->getType() == Type::getDoubleTy(CPV->getContext()) ?
1033 "double" :
Dale Johannesen137cef62007-09-17 00:38:27 +00001034 "long double")
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001035 << "*)&FPConstant" << I->second << ')';
1036 } else {
Chris Lattnera68e3512008-10-17 06:11:48 +00001037 double V;
Owen Anderson35b47072009-08-13 21:58:54 +00001038 if (FPC->getType() == Type::getFloatTy(CPV->getContext()))
Chris Lattnera68e3512008-10-17 06:11:48 +00001039 V = FPC->getValueAPF().convertToFloat();
Owen Anderson35b47072009-08-13 21:58:54 +00001040 else if (FPC->getType() == Type::getDoubleTy(CPV->getContext()))
Chris Lattnera68e3512008-10-17 06:11:48 +00001041 V = FPC->getValueAPF().convertToDouble();
1042 else {
1043 // Long double. Convert the number to double, discarding precision.
1044 // This is not awesome, but it at least makes the CBE output somewhat
1045 // useful.
1046 APFloat Tmp = FPC->getValueAPF();
1047 bool LosesInfo;
1048 Tmp.convert(APFloat::IEEEdouble, APFloat::rmTowardZero, &LosesInfo);
1049 V = Tmp.convertToDouble();
1050 }
1051
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001052 if (IsNAN(V)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001053 // The value is NaN
1054
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001055 // FIXME the actual NaN bits should be emitted.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001056 // The prefix for a quiet NaN is 0x7FF8. For a signalling NaN,
1057 // it's 0x7ff4.
1058 const unsigned long QuietNaN = 0x7ff8UL;
1059 //const unsigned long SignalNaN = 0x7ff4UL;
1060
1061 // We need to grab the first part of the FP #
1062 char Buffer[100];
1063
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001064 uint64_t ll = DoubleToBits(V);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001065 sprintf(Buffer, "0x%llx", static_cast<long long>(ll));
1066
1067 std::string Num(&Buffer[0], &Buffer[6]);
1068 unsigned long Val = strtoul(Num.c_str(), 0, 16);
1069
Owen Anderson35b47072009-08-13 21:58:54 +00001070 if (FPC->getType() == Type::getFloatTy(FPC->getContext()))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001071 Out << "LLVM_NAN" << (Val == QuietNaN ? "" : "S") << "F(\""
1072 << Buffer << "\") /*nan*/ ";
1073 else
1074 Out << "LLVM_NAN" << (Val == QuietNaN ? "" : "S") << "(\""
1075 << Buffer << "\") /*nan*/ ";
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001076 } else if (IsInf(V)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001077 // The value is Inf
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001078 if (V < 0) Out << '-';
Owen Anderson35b47072009-08-13 21:58:54 +00001079 Out << "LLVM_INF" <<
1080 (FPC->getType() == Type::getFloatTy(FPC->getContext()) ? "F" : "")
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001081 << " /*inf*/ ";
1082 } else {
1083 std::string Num;
1084#if HAVE_PRINTF_A && ENABLE_CBE_PRINTF_A
1085 // Print out the constant as a floating point number.
1086 char Buffer[100];
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001087 sprintf(Buffer, "%a", V);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001088 Num = Buffer;
1089#else
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001090 Num = ftostr(FPC->getValueAPF());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001091#endif
Dale Johannesenb9de9f02007-09-06 18:13:44 +00001092 Out << Num;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001093 }
1094 }
1095 break;
1096 }
1097
1098 case Type::ArrayTyID:
Dan Gohman29b19472008-07-23 18:41:03 +00001099 // Use C99 compound expression literal initializer syntax.
Dan Gohmanad831302008-07-24 17:57:48 +00001100 if (!Static) {
1101 Out << "(";
1102 printType(Out, CPV->getType());
1103 Out << ")";
1104 }
Dan Gohman5d995b02008-06-02 21:30:49 +00001105 Out << "{ "; // Arrays are wrapped in struct types.
Chris Lattner8673e322008-03-02 05:46:57 +00001106 if (ConstantArray *CA = dyn_cast<ConstantArray>(CPV)) {
Dan Gohmanad831302008-07-24 17:57:48 +00001107 printConstantArray(CA, Static);
Chris Lattner63fb1f02008-03-02 03:16:38 +00001108 } else {
1109 assert(isa<ConstantAggregateZero>(CPV) || isa<UndefValue>(CPV));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001110 const ArrayType *AT = cast<ArrayType>(CPV->getType());
1111 Out << '{';
1112 if (AT->getNumElements()) {
1113 Out << ' ';
Owen Andersonaac28372009-07-31 20:28:14 +00001114 Constant *CZ = Constant::getNullValue(AT->getElementType());
Dan Gohmanad831302008-07-24 17:57:48 +00001115 printConstant(CZ, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001116 for (unsigned i = 1, e = AT->getNumElements(); i != e; ++i) {
1117 Out << ", ";
Dan Gohmanad831302008-07-24 17:57:48 +00001118 printConstant(CZ, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001119 }
1120 }
1121 Out << " }";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001122 }
Dan Gohman5d995b02008-06-02 21:30:49 +00001123 Out << " }"; // Arrays are wrapped in struct types.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001124 break;
1125
1126 case Type::VectorTyID:
Chris Lattner70f0f672008-03-02 03:29:50 +00001127 // Use C99 compound expression literal initializer syntax.
Dan Gohmanad831302008-07-24 17:57:48 +00001128 if (!Static) {
1129 Out << "(";
1130 printType(Out, CPV->getType());
1131 Out << ")";
1132 }
Chris Lattner8673e322008-03-02 05:46:57 +00001133 if (ConstantVector *CV = dyn_cast<ConstantVector>(CPV)) {
Dan Gohmanad831302008-07-24 17:57:48 +00001134 printConstantVector(CV, Static);
Chris Lattner63fb1f02008-03-02 03:16:38 +00001135 } else {
1136 assert(isa<ConstantAggregateZero>(CPV) || isa<UndefValue>(CPV));
1137 const VectorType *VT = cast<VectorType>(CPV->getType());
1138 Out << "{ ";
Owen Andersonaac28372009-07-31 20:28:14 +00001139 Constant *CZ = Constant::getNullValue(VT->getElementType());
Dan Gohmanad831302008-07-24 17:57:48 +00001140 printConstant(CZ, Static);
Chris Lattner6d4cd9b2008-03-02 03:18:46 +00001141 for (unsigned i = 1, e = VT->getNumElements(); i != e; ++i) {
Chris Lattner63fb1f02008-03-02 03:16:38 +00001142 Out << ", ";
Dan Gohmanad831302008-07-24 17:57:48 +00001143 printConstant(CZ, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001144 }
1145 Out << " }";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001146 }
1147 break;
1148
1149 case Type::StructTyID:
Dan Gohman29b19472008-07-23 18:41:03 +00001150 // Use C99 compound expression literal initializer syntax.
Dan Gohmanad831302008-07-24 17:57:48 +00001151 if (!Static) {
1152 Out << "(";
1153 printType(Out, CPV->getType());
1154 Out << ")";
1155 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001156 if (isa<ConstantAggregateZero>(CPV) || isa<UndefValue>(CPV)) {
1157 const StructType *ST = cast<StructType>(CPV->getType());
1158 Out << '{';
1159 if (ST->getNumElements()) {
1160 Out << ' ';
Owen Andersonaac28372009-07-31 20:28:14 +00001161 printConstant(Constant::getNullValue(ST->getElementType(0)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001162 for (unsigned i = 1, e = ST->getNumElements(); i != e; ++i) {
1163 Out << ", ";
Owen Andersonaac28372009-07-31 20:28:14 +00001164 printConstant(Constant::getNullValue(ST->getElementType(i)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001165 }
1166 }
1167 Out << " }";
1168 } else {
1169 Out << '{';
1170 if (CPV->getNumOperands()) {
1171 Out << ' ';
Dan Gohmanad831302008-07-24 17:57:48 +00001172 printConstant(cast<Constant>(CPV->getOperand(0)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001173 for (unsigned i = 1, e = CPV->getNumOperands(); i != e; ++i) {
1174 Out << ", ";
Dan Gohmanad831302008-07-24 17:57:48 +00001175 printConstant(cast<Constant>(CPV->getOperand(i)), Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001176 }
1177 }
1178 Out << " }";
1179 }
1180 break;
1181
1182 case Type::PointerTyID:
1183 if (isa<ConstantPointerNull>(CPV)) {
1184 Out << "((";
1185 printType(Out, CPV->getType()); // sign doesn't matter
1186 Out << ")/*NULL*/0)";
1187 break;
1188 } else if (GlobalValue *GV = dyn_cast<GlobalValue>(CPV)) {
Dan Gohmanad831302008-07-24 17:57:48 +00001189 writeOperand(GV, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001190 break;
1191 }
1192 // FALL THROUGH
1193 default:
Edwin Török4d9756a2009-07-08 20:53:28 +00001194#ifndef NDEBUG
Chris Lattner8a6411c2009-08-23 04:37:46 +00001195 errs() << "Unknown constant type: " << *CPV << "\n";
Edwin Török4d9756a2009-07-08 20:53:28 +00001196#endif
Edwin Törökbd448e32009-07-14 16:55:14 +00001197 llvm_unreachable(0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001198 }
1199}
1200
1201// Some constant expressions need to be casted back to the original types
1202// because their operands were casted to the expected type. This function takes
1203// care of detecting that case and printing the cast for the ConstantExpr.
Dan Gohmanad831302008-07-24 17:57:48 +00001204bool CWriter::printConstExprCast(const ConstantExpr* CE, bool Static) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001205 bool NeedsExplicitCast = false;
1206 const Type *Ty = CE->getOperand(0)->getType();
1207 bool TypeIsSigned = false;
1208 switch (CE->getOpcode()) {
Dan Gohmane1790de2008-07-18 18:43:12 +00001209 case Instruction::Add:
1210 case Instruction::Sub:
1211 case Instruction::Mul:
1212 // We need to cast integer arithmetic so that it is always performed
1213 // as unsigned, to avoid undefined behavior on overflow.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001214 case Instruction::LShr:
1215 case Instruction::URem:
1216 case Instruction::UDiv: NeedsExplicitCast = true; break;
1217 case Instruction::AShr:
1218 case Instruction::SRem:
1219 case Instruction::SDiv: NeedsExplicitCast = true; TypeIsSigned = true; break;
1220 case Instruction::SExt:
1221 Ty = CE->getType();
1222 NeedsExplicitCast = true;
1223 TypeIsSigned = true;
1224 break;
1225 case Instruction::ZExt:
1226 case Instruction::Trunc:
1227 case Instruction::FPTrunc:
1228 case Instruction::FPExt:
1229 case Instruction::UIToFP:
1230 case Instruction::SIToFP:
1231 case Instruction::FPToUI:
1232 case Instruction::FPToSI:
1233 case Instruction::PtrToInt:
1234 case Instruction::IntToPtr:
1235 case Instruction::BitCast:
1236 Ty = CE->getType();
1237 NeedsExplicitCast = true;
1238 break;
1239 default: break;
1240 }
1241 if (NeedsExplicitCast) {
1242 Out << "((";
Duncan Sandse92dee12010-02-15 16:12:20 +00001243 if (Ty->isIntegerTy() && Ty != Type::getInt1Ty(Ty->getContext()))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001244 printSimpleType(Out, Ty, TypeIsSigned);
1245 else
1246 printType(Out, Ty); // not integer, sign doesn't matter
1247 Out << ")(";
1248 }
1249 return NeedsExplicitCast;
1250}
1251
1252// Print a constant assuming that it is the operand for a given Opcode. The
1253// opcodes that care about sign need to cast their operands to the expected
1254// type before the operation proceeds. This function does the casting.
1255void CWriter::printConstantWithCast(Constant* CPV, unsigned Opcode) {
1256
1257 // Extract the operand's type, we'll need it.
1258 const Type* OpTy = CPV->getType();
1259
1260 // Indicate whether to do the cast or not.
1261 bool shouldCast = false;
1262 bool typeIsSigned = false;
1263
1264 // Based on the Opcode for which this Constant is being written, determine
1265 // the new type to which the operand should be casted by setting the value
1266 // of OpTy. If we change OpTy, also set shouldCast to true so it gets
1267 // casted below.
1268 switch (Opcode) {
1269 default:
1270 // for most instructions, it doesn't matter
1271 break;
Dan Gohmane1790de2008-07-18 18:43:12 +00001272 case Instruction::Add:
1273 case Instruction::Sub:
1274 case Instruction::Mul:
1275 // We need to cast integer arithmetic so that it is always performed
1276 // as unsigned, to avoid undefined behavior on overflow.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001277 case Instruction::LShr:
1278 case Instruction::UDiv:
1279 case Instruction::URem:
1280 shouldCast = true;
1281 break;
1282 case Instruction::AShr:
1283 case Instruction::SDiv:
1284 case Instruction::SRem:
1285 shouldCast = true;
1286 typeIsSigned = true;
1287 break;
1288 }
1289
1290 // Write out the casted constant if we should, otherwise just write the
1291 // operand.
1292 if (shouldCast) {
1293 Out << "((";
1294 printSimpleType(Out, OpTy, typeIsSigned);
1295 Out << ")";
Dan Gohmanad831302008-07-24 17:57:48 +00001296 printConstant(CPV, false);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001297 Out << ")";
1298 } else
Dan Gohmanad831302008-07-24 17:57:48 +00001299 printConstant(CPV, false);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001300}
1301
1302std::string CWriter::GetValueName(const Value *Operand) {
Gabor Greif34246d22010-08-04 10:00:52 +00001303
1304 // Resolve potential alias.
1305 if (const GlobalAlias *GA = dyn_cast<GlobalAlias>(Operand)) {
1306 if (const Value *V = GA->resolveAliasedGlobal(false))
1307 Operand = V;
1308 }
1309
Chris Lattnerb66867f2009-07-13 23:46:46 +00001310 // Mangle globals with the standard mangler interface for LLC compatibility.
Chris Lattnerd2f59b82010-01-13 19:54:07 +00001311 if (const GlobalValue *GV = dyn_cast<GlobalValue>(Operand)) {
1312 SmallString<128> Str;
1313 Mang->getNameWithPrefix(Str, GV, false);
Chris Lattner55f4aca2010-01-22 18:33:00 +00001314 return CBEMangle(Str.str().str());
Chris Lattnerd2f59b82010-01-13 19:54:07 +00001315 }
Chris Lattnerb66867f2009-07-13 23:46:46 +00001316
1317 std::string Name = Operand->getName();
1318
1319 if (Name.empty()) { // Assign unique names to local temporaries.
1320 unsigned &No = AnonValueNumbers[Operand];
1321 if (No == 0)
1322 No = ++NextAnonValueNumber;
1323 Name = "tmp__" + utostr(No);
1324 }
1325
1326 std::string VarName;
1327 VarName.reserve(Name.capacity());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001328
Chris Lattnerb66867f2009-07-13 23:46:46 +00001329 for (std::string::iterator I = Name.begin(), E = Name.end();
1330 I != E; ++I) {
1331 char ch = *I;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001332
Chris Lattnerb66867f2009-07-13 23:46:46 +00001333 if (!((ch >= 'a' && ch <= 'z') || (ch >= 'A' && ch <= 'Z') ||
1334 (ch >= '0' && ch <= '9') || ch == '_')) {
1335 char buffer[5];
1336 sprintf(buffer, "_%x_", ch);
1337 VarName += buffer;
1338 } else
1339 VarName += ch;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001340 }
1341
Chris Lattnerb66867f2009-07-13 23:46:46 +00001342 return "llvm_cbe_" + VarName;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001343}
1344
Chris Lattnerd70f5a82008-05-31 09:23:55 +00001345/// writeInstComputationInline - Emit the computation for the specified
1346/// instruction inline, with no destination provided.
1347void CWriter::writeInstComputationInline(Instruction &I) {
Dale Johannesen787881e2009-06-18 01:07:23 +00001348 // We can't currently support integer types other than 1, 8, 16, 32, 64.
1349 // Validate this.
1350 const Type *Ty = I.getType();
Duncan Sandse92dee12010-02-15 16:12:20 +00001351 if (Ty->isIntegerTy() && (Ty!=Type::getInt1Ty(I.getContext()) &&
Owen Anderson35b47072009-08-13 21:58:54 +00001352 Ty!=Type::getInt8Ty(I.getContext()) &&
1353 Ty!=Type::getInt16Ty(I.getContext()) &&
1354 Ty!=Type::getInt32Ty(I.getContext()) &&
1355 Ty!=Type::getInt64Ty(I.getContext()))) {
Chris Lattner8316f2d2010-04-07 22:58:41 +00001356 report_fatal_error("The C backend does not currently support integer "
Edwin Török4d9756a2009-07-08 20:53:28 +00001357 "types of widths other than 1, 8, 16, 32, 64.\n"
1358 "This is being tracked as PR 4158.");
Dale Johannesen787881e2009-06-18 01:07:23 +00001359 }
1360
Chris Lattnerd70f5a82008-05-31 09:23:55 +00001361 // If this is a non-trivial bool computation, make sure to truncate down to
1362 // a 1 bit value. This is important because we want "add i1 x, y" to return
1363 // "0" when x and y are true, not "2" for example.
1364 bool NeedBoolTrunc = false;
Owen Anderson35b47072009-08-13 21:58:54 +00001365 if (I.getType() == Type::getInt1Ty(I.getContext()) &&
1366 !isa<ICmpInst>(I) && !isa<FCmpInst>(I))
Chris Lattnerd70f5a82008-05-31 09:23:55 +00001367 NeedBoolTrunc = true;
1368
1369 if (NeedBoolTrunc)
1370 Out << "((";
1371
1372 visit(I);
1373
1374 if (NeedBoolTrunc)
1375 Out << ")&1)";
1376}
1377
1378
Dan Gohmanad831302008-07-24 17:57:48 +00001379void CWriter::writeOperandInternal(Value *Operand, bool Static) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001380 if (Instruction *I = dyn_cast<Instruction>(Operand))
Chris Lattnerd70f5a82008-05-31 09:23:55 +00001381 // Should we inline this instruction to build a tree?
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001382 if (isInlinableInst(*I) && !isDirectAlloca(I)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001383 Out << '(';
Chris Lattnerd70f5a82008-05-31 09:23:55 +00001384 writeInstComputationInline(*I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001385 Out << ')';
1386 return;
1387 }
1388
1389 Constant* CPV = dyn_cast<Constant>(Operand);
1390
1391 if (CPV && !isa<GlobalValue>(CPV))
Dan Gohmanad831302008-07-24 17:57:48 +00001392 printConstant(CPV, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001393 else
1394 Out << GetValueName(Operand);
1395}
1396
Dan Gohmanad831302008-07-24 17:57:48 +00001397void CWriter::writeOperand(Value *Operand, bool Static) {
Chris Lattner8bbc8592008-03-02 08:07:24 +00001398 bool isAddressImplicit = isAddressExposed(Operand);
1399 if (isAddressImplicit)
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001400 Out << "(&"; // Global variables are referenced as their addresses by llvm
1401
Dan Gohmanad831302008-07-24 17:57:48 +00001402 writeOperandInternal(Operand, Static);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001403
Chris Lattner8bbc8592008-03-02 08:07:24 +00001404 if (isAddressImplicit)
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001405 Out << ')';
1406}
1407
1408// Some instructions need to have their result value casted back to the
1409// original types because their operands were casted to the expected type.
1410// This function takes care of detecting that case and printing the cast
1411// for the Instruction.
1412bool CWriter::writeInstructionCast(const Instruction &I) {
1413 const Type *Ty = I.getOperand(0)->getType();
1414 switch (I.getOpcode()) {
Dan Gohmane1790de2008-07-18 18:43:12 +00001415 case Instruction::Add:
1416 case Instruction::Sub:
1417 case Instruction::Mul:
1418 // We need to cast integer arithmetic so that it is always performed
1419 // as unsigned, to avoid undefined behavior on overflow.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001420 case Instruction::LShr:
1421 case Instruction::URem:
1422 case Instruction::UDiv:
1423 Out << "((";
1424 printSimpleType(Out, Ty, false);
1425 Out << ")(";
1426 return true;
1427 case Instruction::AShr:
1428 case Instruction::SRem:
1429 case Instruction::SDiv:
1430 Out << "((";
1431 printSimpleType(Out, Ty, true);
1432 Out << ")(";
1433 return true;
1434 default: break;
1435 }
1436 return false;
1437}
1438
1439// Write the operand with a cast to another type based on the Opcode being used.
1440// This will be used in cases where an instruction has specific type
1441// requirements (usually signedness) for its operands.
1442void CWriter::writeOperandWithCast(Value* Operand, unsigned Opcode) {
1443
1444 // Extract the operand's type, we'll need it.
1445 const Type* OpTy = Operand->getType();
1446
1447 // Indicate whether to do the cast or not.
1448 bool shouldCast = false;
1449
1450 // Indicate whether the cast should be to a signed type or not.
1451 bool castIsSigned = false;
1452
1453 // Based on the Opcode for which this Operand is being written, determine
1454 // the new type to which the operand should be casted by setting the value
1455 // of OpTy. If we change OpTy, also set shouldCast to true.
1456 switch (Opcode) {
1457 default:
1458 // for most instructions, it doesn't matter
1459 break;
Dan Gohmane1790de2008-07-18 18:43:12 +00001460 case Instruction::Add:
1461 case Instruction::Sub:
1462 case Instruction::Mul:
1463 // We need to cast integer arithmetic so that it is always performed
1464 // as unsigned, to avoid undefined behavior on overflow.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001465 case Instruction::LShr:
1466 case Instruction::UDiv:
1467 case Instruction::URem: // Cast to unsigned first
1468 shouldCast = true;
1469 castIsSigned = false;
1470 break;
Chris Lattner7ce1ee42007-09-22 20:16:48 +00001471 case Instruction::GetElementPtr:
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001472 case Instruction::AShr:
1473 case Instruction::SDiv:
1474 case Instruction::SRem: // Cast to signed first
1475 shouldCast = true;
1476 castIsSigned = true;
1477 break;
1478 }
1479
1480 // Write out the casted operand if we should, otherwise just write the
1481 // operand.
1482 if (shouldCast) {
1483 Out << "((";
1484 printSimpleType(Out, OpTy, castIsSigned);
1485 Out << ")";
1486 writeOperand(Operand);
1487 Out << ")";
1488 } else
1489 writeOperand(Operand);
1490}
1491
1492// Write the operand with a cast to another type based on the icmp predicate
1493// being used.
Chris Lattner389c9142007-09-15 06:51:03 +00001494void CWriter::writeOperandWithCast(Value* Operand, const ICmpInst &Cmp) {
1495 // This has to do a cast to ensure the operand has the right signedness.
1496 // Also, if the operand is a pointer, we make sure to cast to an integer when
1497 // doing the comparison both for signedness and so that the C compiler doesn't
1498 // optimize things like "p < NULL" to false (p may contain an integer value
1499 // f.e.).
1500 bool shouldCast = Cmp.isRelational();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001501
1502 // Write out the casted operand if we should, otherwise just write the
1503 // operand.
Chris Lattner389c9142007-09-15 06:51:03 +00001504 if (!shouldCast) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001505 writeOperand(Operand);
Chris Lattner389c9142007-09-15 06:51:03 +00001506 return;
1507 }
1508
1509 // Should this be a signed comparison? If so, convert to signed.
Nick Lewyckyb0796c62009-10-25 05:20:17 +00001510 bool castIsSigned = Cmp.isSigned();
Chris Lattner389c9142007-09-15 06:51:03 +00001511
1512 // If the operand was a pointer, convert to a large integer type.
1513 const Type* OpTy = Operand->getType();
Duncan Sands10343d92010-02-16 11:11:14 +00001514 if (OpTy->isPointerTy())
Owen Anderson35b47072009-08-13 21:58:54 +00001515 OpTy = TD->getIntPtrType(Operand->getContext());
Chris Lattner389c9142007-09-15 06:51:03 +00001516
1517 Out << "((";
1518 printSimpleType(Out, OpTy, castIsSigned);
1519 Out << ")";
1520 writeOperand(Operand);
1521 Out << ")";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001522}
1523
1524// generateCompilerSpecificCode - This is where we add conditional compilation
1525// directives to cater to specific compilers as need be.
1526//
David Greene302008d2009-07-14 20:18:05 +00001527static void generateCompilerSpecificCode(formatted_raw_ostream& Out,
Dan Gohman3f795232008-04-02 23:52:49 +00001528 const TargetData *TD) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001529 // Alloca is hard to get, and we don't want to include stdlib.h here.
1530 Out << "/* get a declaration for alloca */\n"
1531 << "#if defined(__CYGWIN__) || defined(__MINGW32__)\n"
1532 << "#define alloca(x) __builtin_alloca((x))\n"
Anton Korobeynikov9664a752009-08-05 09:31:07 +00001533 << "#define _alloca(x) __builtin_alloca((x))\n"
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001534 << "#elif defined(__APPLE__)\n"
1535 << "extern void *__builtin_alloca(unsigned long);\n"
1536 << "#define alloca(x) __builtin_alloca(x)\n"
1537 << "#define longjmp _longjmp\n"
1538 << "#define setjmp _setjmp\n"
1539 << "#elif defined(__sun__)\n"
1540 << "#if defined(__sparcv9)\n"
1541 << "extern void *__builtin_alloca(unsigned long);\n"
1542 << "#else\n"
1543 << "extern void *__builtin_alloca(unsigned int);\n"
1544 << "#endif\n"
1545 << "#define alloca(x) __builtin_alloca(x)\n"
Anton Korobeynikov9664a752009-08-05 09:31:07 +00001546 << "#elif defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__) || defined(__DragonFly__) || defined(__arm__)\n"
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001547 << "#define alloca(x) __builtin_alloca(x)\n"
1548 << "#elif defined(_MSC_VER)\n"
1549 << "#define inline _inline\n"
1550 << "#define alloca(x) _alloca(x)\n"
1551 << "#else\n"
1552 << "#include <alloca.h>\n"
1553 << "#endif\n\n";
1554
1555 // We output GCC specific attributes to preserve 'linkonce'ness on globals.
1556 // If we aren't being compiled with GCC, just drop these attributes.
1557 Out << "#ifndef __GNUC__ /* Can only support \"linkonce\" vars with GCC */\n"
1558 << "#define __attribute__(X)\n"
1559 << "#endif\n\n";
1560
1561 // On Mac OS X, "external weak" is spelled "__attribute__((weak_import))".
1562 Out << "#if defined(__GNUC__) && defined(__APPLE_CC__)\n"
1563 << "#define __EXTERNAL_WEAK__ __attribute__((weak_import))\n"
1564 << "#elif defined(__GNUC__)\n"
1565 << "#define __EXTERNAL_WEAK__ __attribute__((weak))\n"
1566 << "#else\n"
1567 << "#define __EXTERNAL_WEAK__\n"
1568 << "#endif\n\n";
1569
1570 // For now, turn off the weak linkage attribute on Mac OS X. (See above.)
1571 Out << "#if defined(__GNUC__) && defined(__APPLE_CC__)\n"
1572 << "#define __ATTRIBUTE_WEAK__\n"
1573 << "#elif defined(__GNUC__)\n"
1574 << "#define __ATTRIBUTE_WEAK__ __attribute__((weak))\n"
1575 << "#else\n"
1576 << "#define __ATTRIBUTE_WEAK__\n"
1577 << "#endif\n\n";
1578
1579 // Add hidden visibility support. FIXME: APPLE_CC?
1580 Out << "#if defined(__GNUC__)\n"
1581 << "#define __HIDDEN__ __attribute__((visibility(\"hidden\")))\n"
1582 << "#endif\n\n";
1583
1584 // Define NaN and Inf as GCC builtins if using GCC, as 0 otherwise
1585 // From the GCC documentation:
1586 //
1587 // double __builtin_nan (const char *str)
1588 //
1589 // This is an implementation of the ISO C99 function nan.
1590 //
1591 // Since ISO C99 defines this function in terms of strtod, which we do
1592 // not implement, a description of the parsing is in order. The string is
1593 // parsed as by strtol; that is, the base is recognized by leading 0 or
1594 // 0x prefixes. The number parsed is placed in the significand such that
1595 // the least significant bit of the number is at the least significant
1596 // bit of the significand. The number is truncated to fit the significand
1597 // field provided. The significand is forced to be a quiet NaN.
1598 //
1599 // This function, if given a string literal, is evaluated early enough
1600 // that it is considered a compile-time constant.
1601 //
1602 // float __builtin_nanf (const char *str)
1603 //
1604 // Similar to __builtin_nan, except the return type is float.
1605 //
1606 // double __builtin_inf (void)
1607 //
1608 // Similar to __builtin_huge_val, except a warning is generated if the
1609 // target floating-point format does not support infinities. This
1610 // function is suitable for implementing the ISO C99 macro INFINITY.
1611 //
1612 // float __builtin_inff (void)
1613 //
1614 // Similar to __builtin_inf, except the return type is float.
1615 Out << "#ifdef __GNUC__\n"
1616 << "#define LLVM_NAN(NanStr) __builtin_nan(NanStr) /* Double */\n"
1617 << "#define LLVM_NANF(NanStr) __builtin_nanf(NanStr) /* Float */\n"
1618 << "#define LLVM_NANS(NanStr) __builtin_nans(NanStr) /* Double */\n"
1619 << "#define LLVM_NANSF(NanStr) __builtin_nansf(NanStr) /* Float */\n"
1620 << "#define LLVM_INF __builtin_inf() /* Double */\n"
1621 << "#define LLVM_INFF __builtin_inff() /* Float */\n"
1622 << "#define LLVM_PREFETCH(addr,rw,locality) "
1623 "__builtin_prefetch(addr,rw,locality)\n"
1624 << "#define __ATTRIBUTE_CTOR__ __attribute__((constructor))\n"
1625 << "#define __ATTRIBUTE_DTOR__ __attribute__((destructor))\n"
1626 << "#define LLVM_ASM __asm__\n"
1627 << "#else\n"
1628 << "#define LLVM_NAN(NanStr) ((double)0.0) /* Double */\n"
1629 << "#define LLVM_NANF(NanStr) 0.0F /* Float */\n"
1630 << "#define LLVM_NANS(NanStr) ((double)0.0) /* Double */\n"
1631 << "#define LLVM_NANSF(NanStr) 0.0F /* Float */\n"
1632 << "#define LLVM_INF ((double)0.0) /* Double */\n"
1633 << "#define LLVM_INFF 0.0F /* Float */\n"
1634 << "#define LLVM_PREFETCH(addr,rw,locality) /* PREFETCH */\n"
1635 << "#define __ATTRIBUTE_CTOR__\n"
1636 << "#define __ATTRIBUTE_DTOR__\n"
1637 << "#define LLVM_ASM(X)\n"
1638 << "#endif\n\n";
1639
1640 Out << "#if __GNUC__ < 4 /* Old GCC's, or compilers not GCC */ \n"
1641 << "#define __builtin_stack_save() 0 /* not implemented */\n"
1642 << "#define __builtin_stack_restore(X) /* noop */\n"
1643 << "#endif\n\n";
1644
Dan Gohman3f795232008-04-02 23:52:49 +00001645 // Output typedefs for 128-bit integers. If these are needed with a
1646 // 32-bit target or with a C compiler that doesn't support mode(TI),
1647 // more drastic measures will be needed.
Chris Lattnerab6d3382008-06-16 04:25:29 +00001648 Out << "#if __GNUC__ && __LP64__ /* 128-bit integer types */\n"
1649 << "typedef int __attribute__((mode(TI))) llvmInt128;\n"
1650 << "typedef unsigned __attribute__((mode(TI))) llvmUInt128;\n"
1651 << "#endif\n\n";
Dan Gohmana2245af2008-04-02 19:40:14 +00001652
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001653 // Output target-specific code that should be inserted into main.
1654 Out << "#define CODE_FOR_MAIN() /* Any target-specific code for main()*/\n";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001655}
1656
1657/// FindStaticTors - Given a static ctor/dtor list, unpack its contents into
1658/// the StaticTors set.
1659static void FindStaticTors(GlobalVariable *GV, std::set<Function*> &StaticTors){
1660 ConstantArray *InitList = dyn_cast<ConstantArray>(GV->getInitializer());
1661 if (!InitList) return;
1662
1663 for (unsigned i = 0, e = InitList->getNumOperands(); i != e; ++i)
1664 if (ConstantStruct *CS = dyn_cast<ConstantStruct>(InitList->getOperand(i))){
1665 if (CS->getNumOperands() != 2) return; // Not array of 2-element structs.
1666
1667 if (CS->getOperand(1)->isNullValue())
1668 return; // Found a null terminator, exit printing.
1669 Constant *FP = CS->getOperand(1);
1670 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(FP))
1671 if (CE->isCast())
1672 FP = CE->getOperand(0);
1673 if (Function *F = dyn_cast<Function>(FP))
1674 StaticTors.insert(F);
1675 }
1676}
1677
1678enum SpecialGlobalClass {
1679 NotSpecial = 0,
1680 GlobalCtors, GlobalDtors,
1681 NotPrinted
1682};
1683
1684/// getGlobalVariableClass - If this is a global that is specially recognized
1685/// by LLVM, return a code that indicates how we should handle it.
1686static SpecialGlobalClass getGlobalVariableClass(const GlobalVariable *GV) {
1687 // If this is a global ctors/dtors list, handle it now.
1688 if (GV->hasAppendingLinkage() && GV->use_empty()) {
1689 if (GV->getName() == "llvm.global_ctors")
1690 return GlobalCtors;
1691 else if (GV->getName() == "llvm.global_dtors")
1692 return GlobalDtors;
1693 }
1694
Dan Gohmandf1a7ff2010-02-10 16:03:48 +00001695 // Otherwise, if it is other metadata, don't print it. This catches things
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001696 // like debug information.
1697 if (GV->getSection() == "llvm.metadata")
1698 return NotPrinted;
1699
1700 return NotSpecial;
1701}
1702
Anton Korobeynikov865e6752009-08-05 09:29:56 +00001703// PrintEscapedString - Print each character of the specified string, escaping
1704// it if it is not printable or if it is an escape char.
1705static void PrintEscapedString(const char *Str, unsigned Length,
1706 raw_ostream &Out) {
1707 for (unsigned i = 0; i != Length; ++i) {
1708 unsigned char C = Str[i];
1709 if (isprint(C) && C != '\\' && C != '"')
1710 Out << C;
1711 else if (C == '\\')
1712 Out << "\\\\";
1713 else if (C == '\"')
1714 Out << "\\\"";
1715 else if (C == '\t')
1716 Out << "\\t";
1717 else
1718 Out << "\\x" << hexdigit(C >> 4) << hexdigit(C & 0x0F);
1719 }
1720}
1721
1722// PrintEscapedString - Print each character of the specified string, escaping
1723// it if it is not printable or if it is an escape char.
1724static void PrintEscapedString(const std::string &Str, raw_ostream &Out) {
1725 PrintEscapedString(Str.c_str(), Str.size(), Out);
1726}
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001727
1728bool CWriter::doInitialization(Module &M) {
Daniel Dunbar5392e062009-07-17 03:43:21 +00001729 FunctionPass::doInitialization(M);
1730
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001731 // Initialize
1732 TheModule = &M;
1733
1734 TD = new TargetData(&M);
1735 IL = new IntrinsicLowering(*TD);
1736 IL->AddPrototypes(M);
1737
Chris Lattner63ab9bb2010-01-17 18:22:35 +00001738#if 0
1739 std::string Triple = TheModule->getTargetTriple();
1740 if (Triple.empty())
1741 Triple = llvm::sys::getHostTriple();
1742
1743 std::string E;
1744 if (const Target *Match = TargetRegistry::lookupTarget(Triple, E))
1745 TAsm = Match->createAsmInfo(Triple);
1746#endif
Chris Lattner50f82ef2010-01-20 06:34:14 +00001747 TAsm = new CBEMCAsmInfo();
Chris Lattner4aeebec2010-03-12 18:44:54 +00001748 TCtx = new MCContext(*TAsm);
Chris Lattner2a2a6732010-03-12 20:47:28 +00001749 Mang = new Mangler(*TCtx, *TD);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001750
1751 // Keep track of which functions are static ctors/dtors so they can have
1752 // an attribute added to their prototypes.
1753 std::set<Function*> StaticCtors, StaticDtors;
1754 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
1755 I != E; ++I) {
1756 switch (getGlobalVariableClass(I)) {
1757 default: break;
1758 case GlobalCtors:
1759 FindStaticTors(I, StaticCtors);
1760 break;
1761 case GlobalDtors:
1762 FindStaticTors(I, StaticDtors);
1763 break;
1764 }
1765 }
1766
1767 // get declaration for alloca
1768 Out << "/* Provide Declarations */\n";
1769 Out << "#include <stdarg.h>\n"; // Varargs support
1770 Out << "#include <setjmp.h>\n"; // Unwind support
Dan Gohman3f795232008-04-02 23:52:49 +00001771 generateCompilerSpecificCode(Out, TD);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001772
1773 // Provide a definition for `bool' if not compiling with a C++ compiler.
1774 Out << "\n"
1775 << "#ifndef __cplusplus\ntypedef unsigned char bool;\n#endif\n"
1776
1777 << "\n\n/* Support for floating point constants */\n"
1778 << "typedef unsigned long long ConstantDoubleTy;\n"
1779 << "typedef unsigned int ConstantFloatTy;\n"
Dale Johannesen137cef62007-09-17 00:38:27 +00001780 << "typedef struct { unsigned long long f1; unsigned short f2; "
1781 "unsigned short pad[3]; } ConstantFP80Ty;\n"
Dale Johannesen091dcfd2007-10-15 01:05:37 +00001782 // This is used for both kinds of 128-bit long double; meaning differs.
Dale Johannesen137cef62007-09-17 00:38:27 +00001783 << "typedef struct { unsigned long long f1; unsigned long long f2; }"
1784 " ConstantFP128Ty;\n"
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001785 << "\n\n/* Global Declarations */\n";
1786
1787 // First output all the declarations for the program, because C requires
1788 // Functions & globals to be declared before they are used.
1789 //
Anton Korobeynikov865e6752009-08-05 09:29:56 +00001790 if (!M.getModuleInlineAsm().empty()) {
1791 Out << "/* Module asm statements */\n"
1792 << "asm(";
1793
1794 // Split the string into lines, to make it easier to read the .ll file.
1795 std::string Asm = M.getModuleInlineAsm();
1796 size_t CurPos = 0;
1797 size_t NewLine = Asm.find_first_of('\n', CurPos);
1798 while (NewLine != std::string::npos) {
1799 // We found a newline, print the portion of the asm string from the
1800 // last newline up to this newline.
1801 Out << "\"";
1802 PrintEscapedString(std::string(Asm.begin()+CurPos, Asm.begin()+NewLine),
1803 Out);
1804 Out << "\\n\"\n";
1805 CurPos = NewLine+1;
1806 NewLine = Asm.find_first_of('\n', CurPos);
1807 }
1808 Out << "\"";
1809 PrintEscapedString(std::string(Asm.begin()+CurPos, Asm.end()), Out);
1810 Out << "\");\n"
1811 << "/* End Module asm statements */\n";
1812 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001813
1814 // Loop over the symbol table, emitting all named constants...
1815 printModuleTypes(M.getTypeSymbolTable());
1816
1817 // Global variable declarations...
1818 if (!M.global_empty()) {
1819 Out << "\n/* External Global Variable Declarations */\n";
1820 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
1821 I != E; ++I) {
1822
Dale Johannesen49c44122008-05-14 20:12:51 +00001823 if (I->hasExternalLinkage() || I->hasExternalWeakLinkage() ||
1824 I->hasCommonLinkage())
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001825 Out << "extern ";
1826 else if (I->hasDLLImportLinkage())
1827 Out << "__declspec(dllimport) ";
1828 else
1829 continue; // Internal Global
1830
1831 // Thread Local Storage
1832 if (I->isThreadLocal())
1833 Out << "__thread ";
1834
1835 printType(Out, I->getType()->getElementType(), false, GetValueName(I));
1836
1837 if (I->hasExternalWeakLinkage())
1838 Out << " __EXTERNAL_WEAK__";
1839 Out << ";\n";
1840 }
1841 }
1842
1843 // Function declarations
1844 Out << "\n/* Function Declarations */\n";
1845 Out << "double fmod(double, double);\n"; // Support for FP rem
1846 Out << "float fmodf(float, float);\n";
Dale Johannesen137cef62007-09-17 00:38:27 +00001847 Out << "long double fmodl(long double, long double);\n";
Evan Chengd2d22fe2008-06-07 07:50:29 +00001848
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001849 for (Module::iterator I = M.begin(), E = M.end(); I != E; ++I) {
1850 // Don't print declarations for intrinsic functions.
Duncan Sands79d28872007-12-03 20:06:50 +00001851 if (!I->isIntrinsic() && I->getName() != "setjmp" &&
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001852 I->getName() != "longjmp" && I->getName() != "_setjmp") {
1853 if (I->hasExternalWeakLinkage())
1854 Out << "extern ";
1855 printFunctionSignature(I, true);
Evan Chengd2d22fe2008-06-07 07:50:29 +00001856 if (I->hasWeakLinkage() || I->hasLinkOnceLinkage())
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001857 Out << " __ATTRIBUTE_WEAK__";
1858 if (I->hasExternalWeakLinkage())
1859 Out << " __EXTERNAL_WEAK__";
1860 if (StaticCtors.count(I))
1861 Out << " __ATTRIBUTE_CTOR__";
1862 if (StaticDtors.count(I))
1863 Out << " __ATTRIBUTE_DTOR__";
1864 if (I->hasHiddenVisibility())
1865 Out << " __HIDDEN__";
Evan Chengd2d22fe2008-06-07 07:50:29 +00001866
1867 if (I->hasName() && I->getName()[0] == 1)
Daniel Dunbar936763a2009-07-22 21:10:12 +00001868 Out << " LLVM_ASM(\"" << I->getName().substr(1) << "\")";
Evan Chengd2d22fe2008-06-07 07:50:29 +00001869
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001870 Out << ";\n";
1871 }
1872 }
1873
1874 // Output the global variable declarations
1875 if (!M.global_empty()) {
1876 Out << "\n\n/* Global Variable Declarations */\n";
1877 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
1878 I != E; ++I)
1879 if (!I->isDeclaration()) {
1880 // Ignore special globals, such as debug info.
1881 if (getGlobalVariableClass(I))
1882 continue;
1883
Rafael Espindolaa168fc92009-01-15 20:18:42 +00001884 if (I->hasLocalLinkage())
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001885 Out << "static ";
1886 else
1887 Out << "extern ";
1888
1889 // Thread Local Storage
1890 if (I->isThreadLocal())
1891 Out << "__thread ";
1892
1893 printType(Out, I->getType()->getElementType(), false,
1894 GetValueName(I));
1895
1896 if (I->hasLinkOnceLinkage())
1897 Out << " __attribute__((common))";
Dale Johannesen49c44122008-05-14 20:12:51 +00001898 else if (I->hasCommonLinkage()) // FIXME is this right?
1899 Out << " __ATTRIBUTE_WEAK__";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001900 else if (I->hasWeakLinkage())
1901 Out << " __ATTRIBUTE_WEAK__";
1902 else if (I->hasExternalWeakLinkage())
1903 Out << " __EXTERNAL_WEAK__";
1904 if (I->hasHiddenVisibility())
1905 Out << " __HIDDEN__";
1906 Out << ";\n";
1907 }
1908 }
1909
1910 // Output the global variable definitions and contents...
1911 if (!M.global_empty()) {
1912 Out << "\n\n/* Global Variable Definitions and Initialization */\n";
Evan Chengd2d22fe2008-06-07 07:50:29 +00001913 for (Module::global_iterator I = M.global_begin(), E = M.global_end();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001914 I != E; ++I)
1915 if (!I->isDeclaration()) {
1916 // Ignore special globals, such as debug info.
1917 if (getGlobalVariableClass(I))
1918 continue;
1919
Rafael Espindolaa168fc92009-01-15 20:18:42 +00001920 if (I->hasLocalLinkage())
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001921 Out << "static ";
1922 else if (I->hasDLLImportLinkage())
1923 Out << "__declspec(dllimport) ";
1924 else if (I->hasDLLExportLinkage())
1925 Out << "__declspec(dllexport) ";
1926
1927 // Thread Local Storage
1928 if (I->isThreadLocal())
1929 Out << "__thread ";
1930
1931 printType(Out, I->getType()->getElementType(), false,
1932 GetValueName(I));
1933 if (I->hasLinkOnceLinkage())
1934 Out << " __attribute__((common))";
1935 else if (I->hasWeakLinkage())
1936 Out << " __ATTRIBUTE_WEAK__";
Dale Johannesen49c44122008-05-14 20:12:51 +00001937 else if (I->hasCommonLinkage())
1938 Out << " __ATTRIBUTE_WEAK__";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001939
1940 if (I->hasHiddenVisibility())
1941 Out << " __HIDDEN__";
1942
1943 // If the initializer is not null, emit the initializer. If it is null,
1944 // we try to avoid emitting large amounts of zeros. The problem with
1945 // this, however, occurs when the variable has weak linkage. In this
1946 // case, the assembler will complain about the variable being both weak
1947 // and common, so we disable this optimization.
Dale Johannesen49c44122008-05-14 20:12:51 +00001948 // FIXME common linkage should avoid this problem.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001949 if (!I->getInitializer()->isNullValue()) {
1950 Out << " = " ;
Dan Gohmanad831302008-07-24 17:57:48 +00001951 writeOperand(I->getInitializer(), true);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001952 } else if (I->hasWeakLinkage()) {
1953 // We have to specify an initializer, but it doesn't have to be
1954 // complete. If the value is an aggregate, print out { 0 }, and let
1955 // the compiler figure out the rest of the zeros.
1956 Out << " = " ;
Duncan Sands10343d92010-02-16 11:11:14 +00001957 if (I->getInitializer()->getType()->isStructTy() ||
1958 I->getInitializer()->getType()->isVectorTy()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001959 Out << "{ 0 }";
Duncan Sands10343d92010-02-16 11:11:14 +00001960 } else if (I->getInitializer()->getType()->isArrayTy()) {
Dan Gohman5d995b02008-06-02 21:30:49 +00001961 // As with structs and vectors, but with an extra set of braces
1962 // because arrays are wrapped in structs.
1963 Out << "{ { 0 } }";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001964 } else {
1965 // Just print it out normally.
Dan Gohmanad831302008-07-24 17:57:48 +00001966 writeOperand(I->getInitializer(), true);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00001967 }
1968 }
1969 Out << ";\n";
1970 }
1971 }
1972
1973 if (!M.empty())
1974 Out << "\n\n/* Function Bodies */\n";
1975
1976 // Emit some helper functions for dealing with FCMP instruction's
1977 // predicates
1978 Out << "static inline int llvm_fcmp_ord(double X, double Y) { ";
1979 Out << "return X == X && Y == Y; }\n";
1980 Out << "static inline int llvm_fcmp_uno(double X, double Y) { ";
1981 Out << "return X != X || Y != Y; }\n";
1982 Out << "static inline int llvm_fcmp_ueq(double X, double Y) { ";
1983 Out << "return X == Y || llvm_fcmp_uno(X, Y); }\n";
1984 Out << "static inline int llvm_fcmp_une(double X, double Y) { ";
1985 Out << "return X != Y; }\n";
1986 Out << "static inline int llvm_fcmp_ult(double X, double Y) { ";
1987 Out << "return X < Y || llvm_fcmp_uno(X, Y); }\n";
1988 Out << "static inline int llvm_fcmp_ugt(double X, double Y) { ";
1989 Out << "return X > Y || llvm_fcmp_uno(X, Y); }\n";
1990 Out << "static inline int llvm_fcmp_ule(double X, double Y) { ";
1991 Out << "return X <= Y || llvm_fcmp_uno(X, Y); }\n";
1992 Out << "static inline int llvm_fcmp_uge(double X, double Y) { ";
1993 Out << "return X >= Y || llvm_fcmp_uno(X, Y); }\n";
1994 Out << "static inline int llvm_fcmp_oeq(double X, double Y) { ";
1995 Out << "return X == Y ; }\n";
1996 Out << "static inline int llvm_fcmp_one(double X, double Y) { ";
1997 Out << "return X != Y && llvm_fcmp_ord(X, Y); }\n";
1998 Out << "static inline int llvm_fcmp_olt(double X, double Y) { ";
1999 Out << "return X < Y ; }\n";
2000 Out << "static inline int llvm_fcmp_ogt(double X, double Y) { ";
2001 Out << "return X > Y ; }\n";
2002 Out << "static inline int llvm_fcmp_ole(double X, double Y) { ";
2003 Out << "return X <= Y ; }\n";
2004 Out << "static inline int llvm_fcmp_oge(double X, double Y) { ";
2005 Out << "return X >= Y ; }\n";
2006 return false;
2007}
2008
2009
2010/// Output all floating point constants that cannot be printed accurately...
2011void CWriter::printFloatingPointConstants(Function &F) {
2012 // Scan the module for floating point constants. If any FP constant is used
2013 // in the function, we want to redirect it here so that we do not depend on
2014 // the precision of the printed form, unless the printed form preserves
2015 // precision.
2016 //
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002017 for (constant_iterator I = constant_begin(&F), E = constant_end(&F);
2018 I != E; ++I)
Chris Lattnerf6e12012008-10-22 04:53:16 +00002019 printFloatingPointConstants(*I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002020
2021 Out << '\n';
2022}
2023
Chris Lattnerf6e12012008-10-22 04:53:16 +00002024void CWriter::printFloatingPointConstants(const Constant *C) {
2025 // If this is a constant expression, recursively check for constant fp values.
2026 if (const ConstantExpr *CE = dyn_cast<ConstantExpr>(C)) {
2027 for (unsigned i = 0, e = CE->getNumOperands(); i != e; ++i)
2028 printFloatingPointConstants(CE->getOperand(i));
2029 return;
2030 }
2031
2032 // Otherwise, check for a FP constant that we need to print.
2033 const ConstantFP *FPC = dyn_cast<ConstantFP>(C);
2034 if (FPC == 0 ||
2035 // Do not put in FPConstantMap if safe.
2036 isFPCSafeToPrint(FPC) ||
2037 // Already printed this constant?
2038 FPConstantMap.count(FPC))
2039 return;
2040
2041 FPConstantMap[FPC] = FPCounter; // Number the FP constants
2042
Owen Anderson35b47072009-08-13 21:58:54 +00002043 if (FPC->getType() == Type::getDoubleTy(FPC->getContext())) {
Chris Lattnerf6e12012008-10-22 04:53:16 +00002044 double Val = FPC->getValueAPF().convertToDouble();
2045 uint64_t i = FPC->getValueAPF().bitcastToAPInt().getZExtValue();
2046 Out << "static const ConstantDoubleTy FPConstant" << FPCounter++
2047 << " = 0x" << utohexstr(i)
2048 << "ULL; /* " << Val << " */\n";
Owen Anderson35b47072009-08-13 21:58:54 +00002049 } else if (FPC->getType() == Type::getFloatTy(FPC->getContext())) {
Chris Lattnerf6e12012008-10-22 04:53:16 +00002050 float Val = FPC->getValueAPF().convertToFloat();
2051 uint32_t i = (uint32_t)FPC->getValueAPF().bitcastToAPInt().
2052 getZExtValue();
2053 Out << "static const ConstantFloatTy FPConstant" << FPCounter++
2054 << " = 0x" << utohexstr(i)
2055 << "U; /* " << Val << " */\n";
Owen Anderson35b47072009-08-13 21:58:54 +00002056 } else if (FPC->getType() == Type::getX86_FP80Ty(FPC->getContext())) {
Chris Lattnerf6e12012008-10-22 04:53:16 +00002057 // api needed to prevent premature destruction
2058 APInt api = FPC->getValueAPF().bitcastToAPInt();
2059 const uint64_t *p = api.getRawData();
2060 Out << "static const ConstantFP80Ty FPConstant" << FPCounter++
Dale Johannesen0a92eac2009-03-23 21:16:53 +00002061 << " = { 0x" << utohexstr(p[0])
2062 << "ULL, 0x" << utohexstr((uint16_t)p[1]) << ",{0,0,0}"
Chris Lattnerf6e12012008-10-22 04:53:16 +00002063 << "}; /* Long double constant */\n";
Anton Korobeynikov3e721692009-08-26 17:39:23 +00002064 } else if (FPC->getType() == Type::getPPC_FP128Ty(FPC->getContext()) ||
2065 FPC->getType() == Type::getFP128Ty(FPC->getContext())) {
Chris Lattnerf6e12012008-10-22 04:53:16 +00002066 APInt api = FPC->getValueAPF().bitcastToAPInt();
2067 const uint64_t *p = api.getRawData();
2068 Out << "static const ConstantFP128Ty FPConstant" << FPCounter++
2069 << " = { 0x"
2070 << utohexstr(p[0]) << ", 0x" << utohexstr(p[1])
2071 << "}; /* Long double constant */\n";
2072
2073 } else {
Edwin Törökbd448e32009-07-14 16:55:14 +00002074 llvm_unreachable("Unknown float type!");
Chris Lattnerf6e12012008-10-22 04:53:16 +00002075 }
2076}
2077
2078
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002079
2080/// printSymbolTable - Run through symbol table looking for type names. If a
2081/// type name is found, emit its declaration...
2082///
2083void CWriter::printModuleTypes(const TypeSymbolTable &TST) {
2084 Out << "/* Helper union for bitcasts */\n";
2085 Out << "typedef union {\n";
2086 Out << " unsigned int Int32;\n";
2087 Out << " unsigned long long Int64;\n";
2088 Out << " float Float;\n";
2089 Out << " double Double;\n";
2090 Out << "} llvmBitCastUnion;\n";
2091
2092 // We are only interested in the type plane of the symbol table.
2093 TypeSymbolTable::const_iterator I = TST.begin();
2094 TypeSymbolTable::const_iterator End = TST.end();
2095
2096 // If there are no type names, exit early.
2097 if (I == End) return;
2098
2099 // Print out forward declarations for structure types before anything else!
2100 Out << "/* Structure forward decls */\n";
2101 for (; I != End; ++I) {
Chris Lattner55f4aca2010-01-22 18:33:00 +00002102 std::string Name = "struct " + CBEMangle("l_"+I->first);
Chris Lattnerd2f59b82010-01-13 19:54:07 +00002103 Out << Name << ";\n";
2104 TypeNames.insert(std::make_pair(I->second, Name));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002105 }
2106
2107 Out << '\n';
2108
2109 // Now we can print out typedefs. Above, we guaranteed that this can only be
2110 // for struct or opaque types.
2111 Out << "/* Typedefs */\n";
2112 for (I = TST.begin(); I != End; ++I) {
Chris Lattner55f4aca2010-01-22 18:33:00 +00002113 std::string Name = CBEMangle("l_"+I->first);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002114 Out << "typedef ";
Chris Lattnerd2f59b82010-01-13 19:54:07 +00002115 printType(Out, I->second, false, Name);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002116 Out << ";\n";
2117 }
2118
2119 Out << '\n';
2120
2121 // Keep track of which structures have been printed so far...
Dan Gohman5d995b02008-06-02 21:30:49 +00002122 std::set<const Type *> StructPrinted;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002123
2124 // Loop over all structures then push them into the stack so they are
2125 // printed in the correct order.
2126 //
2127 Out << "/* Structure contents */\n";
2128 for (I = TST.begin(); I != End; ++I)
Duncan Sands10343d92010-02-16 11:11:14 +00002129 if (I->second->isStructTy() || I->second->isArrayTy())
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002130 // Only print out used types!
Dan Gohman5d995b02008-06-02 21:30:49 +00002131 printContainedStructs(I->second, StructPrinted);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002132}
2133
2134// Push the struct onto the stack and recursively push all structs
2135// this one depends on.
2136//
2137// TODO: Make this work properly with vector types
2138//
2139void CWriter::printContainedStructs(const Type *Ty,
Dan Gohman5d995b02008-06-02 21:30:49 +00002140 std::set<const Type*> &StructPrinted) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002141 // Don't walk through pointers.
Duncan Sands10343d92010-02-16 11:11:14 +00002142 if (Ty->isPointerTy() || Ty->isPrimitiveType() || Ty->isIntegerTy())
Duncan Sandse92dee12010-02-15 16:12:20 +00002143 return;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002144
2145 // Print all contained types first.
2146 for (Type::subtype_iterator I = Ty->subtype_begin(),
2147 E = Ty->subtype_end(); I != E; ++I)
2148 printContainedStructs(*I, StructPrinted);
2149
Duncan Sands10343d92010-02-16 11:11:14 +00002150 if (Ty->isStructTy() || Ty->isArrayTy()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002151 // Check to see if we have already printed this struct.
Dan Gohman5d995b02008-06-02 21:30:49 +00002152 if (StructPrinted.insert(Ty).second) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002153 // Print structure type out.
Dan Gohman5d995b02008-06-02 21:30:49 +00002154 std::string Name = TypeNames[Ty];
2155 printType(Out, Ty, false, Name, true);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002156 Out << ";\n\n";
2157 }
2158 }
2159}
2160
2161void CWriter::printFunctionSignature(const Function *F, bool Prototype) {
2162 /// isStructReturn - Should this function actually return a struct by-value?
Devang Patel949a4b72008-03-03 21:46:28 +00002163 bool isStructReturn = F->hasStructRetAttr();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002164
Rafael Espindolaa168fc92009-01-15 20:18:42 +00002165 if (F->hasLocalLinkage()) Out << "static ";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002166 if (F->hasDLLImportLinkage()) Out << "__declspec(dllimport) ";
2167 if (F->hasDLLExportLinkage()) Out << "__declspec(dllexport) ";
2168 switch (F->getCallingConv()) {
2169 case CallingConv::X86_StdCall:
Nick Lewyckyc0b01ea2008-11-26 03:17:27 +00002170 Out << "__attribute__((stdcall)) ";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002171 break;
2172 case CallingConv::X86_FastCall:
Nick Lewyckyc0b01ea2008-11-26 03:17:27 +00002173 Out << "__attribute__((fastcall)) ";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002174 break;
Anton Korobeynikove454f182010-05-16 09:08:45 +00002175 case CallingConv::X86_ThisCall:
2176 Out << "__attribute__((thiscall)) ";
2177 break;
Sandeep Patel5838baa2009-09-02 08:44:58 +00002178 default:
2179 break;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002180 }
2181
2182 // Loop over the arguments, printing them...
2183 const FunctionType *FT = cast<FunctionType>(F->getFunctionType());
Devang Pateld222f862008-09-25 21:00:45 +00002184 const AttrListPtr &PAL = F->getAttributes();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002185
Duncan Sands711e63c2010-02-21 19:15:19 +00002186 std::string tstr;
2187 raw_string_ostream FunctionInnards(tstr);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002188
2189 // Print out the name...
2190 FunctionInnards << GetValueName(F) << '(';
2191
2192 bool PrintedArg = false;
2193 if (!F->isDeclaration()) {
2194 if (!F->arg_empty()) {
2195 Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
Evan Cheng2054cb02008-01-11 03:07:46 +00002196 unsigned Idx = 1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002197
2198 // If this is a struct-return function, don't print the hidden
2199 // struct-return argument.
2200 if (isStructReturn) {
2201 assert(I != E && "Invalid struct return function!");
2202 ++I;
Evan Cheng2054cb02008-01-11 03:07:46 +00002203 ++Idx;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002204 }
2205
2206 std::string ArgName;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002207 for (; I != E; ++I) {
2208 if (PrintedArg) FunctionInnards << ", ";
2209 if (I->hasName() || !Prototype)
2210 ArgName = GetValueName(I);
2211 else
2212 ArgName = "";
Evan Cheng2054cb02008-01-11 03:07:46 +00002213 const Type *ArgTy = I->getType();
Devang Pateld222f862008-09-25 21:00:45 +00002214 if (PAL.paramHasAttr(Idx, Attribute::ByVal)) {
Evan Cheng17254e62008-01-11 09:12:49 +00002215 ArgTy = cast<PointerType>(ArgTy)->getElementType();
Chris Lattner8bbc8592008-03-02 08:07:24 +00002216 ByValParams.insert(I);
Evan Cheng17254e62008-01-11 09:12:49 +00002217 }
Evan Cheng2054cb02008-01-11 03:07:46 +00002218 printType(FunctionInnards, ArgTy,
Devang Pateld222f862008-09-25 21:00:45 +00002219 /*isSigned=*/PAL.paramHasAttr(Idx, Attribute::SExt),
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002220 ArgName);
2221 PrintedArg = true;
2222 ++Idx;
2223 }
2224 }
2225 } else {
2226 // Loop over the arguments, printing them.
2227 FunctionType::param_iterator I = FT->param_begin(), E = FT->param_end();
Evan Chengf8956382008-01-11 23:10:11 +00002228 unsigned Idx = 1;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002229
2230 // If this is a struct-return function, don't print the hidden
2231 // struct-return argument.
2232 if (isStructReturn) {
2233 assert(I != E && "Invalid struct return function!");
2234 ++I;
Evan Chengf8956382008-01-11 23:10:11 +00002235 ++Idx;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002236 }
2237
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002238 for (; I != E; ++I) {
2239 if (PrintedArg) FunctionInnards << ", ";
Evan Chengf8956382008-01-11 23:10:11 +00002240 const Type *ArgTy = *I;
Devang Pateld222f862008-09-25 21:00:45 +00002241 if (PAL.paramHasAttr(Idx, Attribute::ByVal)) {
Duncan Sands10343d92010-02-16 11:11:14 +00002242 assert(ArgTy->isPointerTy());
Evan Chengf8956382008-01-11 23:10:11 +00002243 ArgTy = cast<PointerType>(ArgTy)->getElementType();
2244 }
2245 printType(FunctionInnards, ArgTy,
Devang Pateld222f862008-09-25 21:00:45 +00002246 /*isSigned=*/PAL.paramHasAttr(Idx, Attribute::SExt));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002247 PrintedArg = true;
2248 ++Idx;
2249 }
2250 }
2251
Chris Lattner10c749c2010-04-10 19:12:44 +00002252 if (!PrintedArg && FT->isVarArg()) {
2253 FunctionInnards << "int vararg_dummy_arg";
2254 PrintedArg = true;
2255 }
2256
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002257 // Finish printing arguments... if this is a vararg function, print the ...,
2258 // unless there are no known types, in which case, we just emit ().
2259 //
2260 if (FT->isVarArg() && PrintedArg) {
Chris Lattner10c749c2010-04-10 19:12:44 +00002261 FunctionInnards << ",..."; // Output varargs portion of signature!
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002262 } else if (!FT->isVarArg() && !PrintedArg) {
2263 FunctionInnards << "void"; // ret() -> ret(void) in C.
2264 }
2265 FunctionInnards << ')';
2266
2267 // Get the return tpe for the function.
2268 const Type *RetTy;
2269 if (!isStructReturn)
2270 RetTy = F->getReturnType();
2271 else {
2272 // If this is a struct-return function, print the struct-return type.
2273 RetTy = cast<PointerType>(FT->getParamType(0))->getElementType();
2274 }
2275
2276 // Print out the return type and the signature built above.
2277 printType(Out, RetTy,
Devang Pateld222f862008-09-25 21:00:45 +00002278 /*isSigned=*/PAL.paramHasAttr(0, Attribute::SExt),
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002279 FunctionInnards.str());
2280}
2281
2282static inline bool isFPIntBitCast(const Instruction &I) {
2283 if (!isa<BitCastInst>(I))
2284 return false;
2285 const Type *SrcTy = I.getOperand(0)->getType();
2286 const Type *DstTy = I.getType();
Duncan Sandse92dee12010-02-15 16:12:20 +00002287 return (SrcTy->isFloatingPointTy() && DstTy->isIntegerTy()) ||
2288 (DstTy->isFloatingPointTy() && SrcTy->isIntegerTy());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002289}
2290
2291void CWriter::printFunction(Function &F) {
2292 /// isStructReturn - Should this function actually return a struct by-value?
Devang Patel949a4b72008-03-03 21:46:28 +00002293 bool isStructReturn = F.hasStructRetAttr();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002294
2295 printFunctionSignature(&F, false);
2296 Out << " {\n";
2297
2298 // If this is a struct return function, handle the result with magic.
2299 if (isStructReturn) {
2300 const Type *StructTy =
2301 cast<PointerType>(F.arg_begin()->getType())->getElementType();
2302 Out << " ";
2303 printType(Out, StructTy, false, "StructReturn");
2304 Out << "; /* Struct return temporary */\n";
2305
2306 Out << " ";
2307 printType(Out, F.arg_begin()->getType(), false,
2308 GetValueName(F.arg_begin()));
2309 Out << " = &StructReturn;\n";
2310 }
2311
2312 bool PrintedVar = false;
2313
2314 // print local variable information for the function
2315 for (inst_iterator I = inst_begin(&F), E = inst_end(&F); I != E; ++I) {
2316 if (const AllocaInst *AI = isDirectAlloca(&*I)) {
2317 Out << " ";
2318 printType(Out, AI->getAllocatedType(), false, GetValueName(AI));
2319 Out << "; /* Address-exposed local */\n";
2320 PrintedVar = true;
Owen Anderson35b47072009-08-13 21:58:54 +00002321 } else if (I->getType() != Type::getVoidTy(F.getContext()) &&
2322 !isInlinableInst(*I)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002323 Out << " ";
2324 printType(Out, I->getType(), false, GetValueName(&*I));
2325 Out << ";\n";
2326
2327 if (isa<PHINode>(*I)) { // Print out PHI node temporaries as well...
2328 Out << " ";
2329 printType(Out, I->getType(), false,
2330 GetValueName(&*I)+"__PHI_TEMPORARY");
2331 Out << ";\n";
2332 }
2333 PrintedVar = true;
2334 }
2335 // We need a temporary for the BitCast to use so it can pluck a value out
2336 // of a union to do the BitCast. This is separate from the need for a
2337 // variable to hold the result of the BitCast.
2338 if (isFPIntBitCast(*I)) {
2339 Out << " llvmBitCastUnion " << GetValueName(&*I)
2340 << "__BITCAST_TEMPORARY;\n";
2341 PrintedVar = true;
2342 }
2343 }
2344
2345 if (PrintedVar)
2346 Out << '\n';
2347
2348 if (F.hasExternalLinkage() && F.getName() == "main")
2349 Out << " CODE_FOR_MAIN();\n";
2350
2351 // print the basic blocks
2352 for (Function::iterator BB = F.begin(), E = F.end(); BB != E; ++BB) {
2353 if (Loop *L = LI->getLoopFor(BB)) {
2354 if (L->getHeader() == BB && L->getParentLoop() == 0)
2355 printLoop(L);
2356 } else {
2357 printBasicBlock(BB);
2358 }
2359 }
2360
2361 Out << "}\n\n";
2362}
2363
2364void CWriter::printLoop(Loop *L) {
2365 Out << " do { /* Syntactic loop '" << L->getHeader()->getName()
2366 << "' to make GCC happy */\n";
2367 for (unsigned i = 0, e = L->getBlocks().size(); i != e; ++i) {
2368 BasicBlock *BB = L->getBlocks()[i];
2369 Loop *BBLoop = LI->getLoopFor(BB);
2370 if (BBLoop == L)
2371 printBasicBlock(BB);
2372 else if (BB == BBLoop->getHeader() && BBLoop->getParentLoop() == L)
2373 printLoop(BBLoop);
2374 }
2375 Out << " } while (1); /* end of syntactic loop '"
2376 << L->getHeader()->getName() << "' */\n";
2377}
2378
2379void CWriter::printBasicBlock(BasicBlock *BB) {
2380
2381 // Don't print the label for the basic block if there are no uses, or if
2382 // the only terminator use is the predecessor basic block's terminator.
2383 // We have to scan the use list because PHI nodes use basic blocks too but
2384 // do not require a label to be generated.
2385 //
2386 bool NeedsLabel = false;
2387 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
2388 if (isGotoCodeNecessary(*PI, BB)) {
2389 NeedsLabel = true;
2390 break;
2391 }
2392
2393 if (NeedsLabel) Out << GetValueName(BB) << ":\n";
2394
2395 // Output all of the instructions in the basic block...
2396 for (BasicBlock::iterator II = BB->begin(), E = --BB->end(); II != E;
2397 ++II) {
2398 if (!isInlinableInst(*II) && !isDirectAlloca(II)) {
Owen Anderson35b47072009-08-13 21:58:54 +00002399 if (II->getType() != Type::getVoidTy(BB->getContext()) &&
2400 !isInlineAsm(*II))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002401 outputLValue(II);
2402 else
2403 Out << " ";
Chris Lattnerd70f5a82008-05-31 09:23:55 +00002404 writeInstComputationInline(*II);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002405 Out << ";\n";
2406 }
2407 }
2408
Chris Lattnerd70f5a82008-05-31 09:23:55 +00002409 // Don't emit prefix or suffix for the terminator.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002410 visit(*BB->getTerminator());
2411}
2412
2413
2414// Specific Instruction type classes... note that all of the casts are
2415// necessary because we use the instruction classes as opaque types...
2416//
2417void CWriter::visitReturnInst(ReturnInst &I) {
2418 // If this is a struct return function, return the temporary struct.
Devang Patel949a4b72008-03-03 21:46:28 +00002419 bool isStructReturn = I.getParent()->getParent()->hasStructRetAttr();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002420
2421 if (isStructReturn) {
2422 Out << " return StructReturn;\n";
2423 return;
2424 }
2425
2426 // Don't output a void return if this is the last basic block in the function
2427 if (I.getNumOperands() == 0 &&
2428 &*--I.getParent()->getParent()->end() == I.getParent() &&
2429 !I.getParent()->size() == 1) {
2430 return;
2431 }
2432
Dan Gohman93d04582008-04-23 21:49:29 +00002433 if (I.getNumOperands() > 1) {
2434 Out << " {\n";
2435 Out << " ";
2436 printType(Out, I.getParent()->getParent()->getReturnType());
2437 Out << " llvm_cbe_mrv_temp = {\n";
2438 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i) {
2439 Out << " ";
2440 writeOperand(I.getOperand(i));
2441 if (i != e - 1)
2442 Out << ",";
2443 Out << "\n";
2444 }
2445 Out << " };\n";
2446 Out << " return llvm_cbe_mrv_temp;\n";
2447 Out << " }\n";
2448 return;
2449 }
2450
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002451 Out << " return";
2452 if (I.getNumOperands()) {
2453 Out << ' ';
2454 writeOperand(I.getOperand(0));
2455 }
2456 Out << ";\n";
2457}
2458
2459void CWriter::visitSwitchInst(SwitchInst &SI) {
2460
2461 Out << " switch (";
2462 writeOperand(SI.getOperand(0));
2463 Out << ") {\n default:\n";
2464 printPHICopiesForSuccessor (SI.getParent(), SI.getDefaultDest(), 2);
2465 printBranchToBlock(SI.getParent(), SI.getDefaultDest(), 2);
2466 Out << ";\n";
2467 for (unsigned i = 2, e = SI.getNumOperands(); i != e; i += 2) {
2468 Out << " case ";
2469 writeOperand(SI.getOperand(i));
2470 Out << ":\n";
2471 BasicBlock *Succ = cast<BasicBlock>(SI.getOperand(i+1));
2472 printPHICopiesForSuccessor (SI.getParent(), Succ, 2);
2473 printBranchToBlock(SI.getParent(), Succ, 2);
Chris Lattnerb44b4292009-12-03 00:50:42 +00002474 if (Function::iterator(Succ) == llvm::next(Function::iterator(SI.getParent())))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002475 Out << " break;\n";
2476 }
2477 Out << " }\n";
2478}
2479
Chris Lattner4c3800f2009-10-28 00:19:10 +00002480void CWriter::visitIndirectBrInst(IndirectBrInst &IBI) {
Chris Lattner20e88f52009-10-27 21:21:06 +00002481 Out << " goto *(void*)(";
2482 writeOperand(IBI.getOperand(0));
2483 Out << ");\n";
2484}
2485
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002486void CWriter::visitUnreachableInst(UnreachableInst &I) {
2487 Out << " /*UNREACHABLE*/;\n";
2488}
2489
2490bool CWriter::isGotoCodeNecessary(BasicBlock *From, BasicBlock *To) {
2491 /// FIXME: This should be reenabled, but loop reordering safe!!
2492 return true;
2493
Chris Lattnerb44b4292009-12-03 00:50:42 +00002494 if (llvm::next(Function::iterator(From)) != Function::iterator(To))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002495 return true; // Not the direct successor, we need a goto.
2496
2497 //isa<SwitchInst>(From->getTerminator())
2498
2499 if (LI->getLoopFor(From) != LI->getLoopFor(To))
2500 return true;
2501 return false;
2502}
2503
2504void CWriter::printPHICopiesForSuccessor (BasicBlock *CurBlock,
2505 BasicBlock *Successor,
2506 unsigned Indent) {
2507 for (BasicBlock::iterator I = Successor->begin(); isa<PHINode>(I); ++I) {
2508 PHINode *PN = cast<PHINode>(I);
2509 // Now we have to do the printing.
2510 Value *IV = PN->getIncomingValueForBlock(CurBlock);
2511 if (!isa<UndefValue>(IV)) {
2512 Out << std::string(Indent, ' ');
2513 Out << " " << GetValueName(I) << "__PHI_TEMPORARY = ";
2514 writeOperand(IV);
2515 Out << "; /* for PHI node */\n";
2516 }
2517 }
2518}
2519
2520void CWriter::printBranchToBlock(BasicBlock *CurBB, BasicBlock *Succ,
2521 unsigned Indent) {
2522 if (isGotoCodeNecessary(CurBB, Succ)) {
2523 Out << std::string(Indent, ' ') << " goto ";
2524 writeOperand(Succ);
2525 Out << ";\n";
2526 }
2527}
2528
2529// Branch instruction printing - Avoid printing out a branch to a basic block
2530// that immediately succeeds the current one.
2531//
2532void CWriter::visitBranchInst(BranchInst &I) {
2533
2534 if (I.isConditional()) {
2535 if (isGotoCodeNecessary(I.getParent(), I.getSuccessor(0))) {
2536 Out << " if (";
2537 writeOperand(I.getCondition());
2538 Out << ") {\n";
2539
2540 printPHICopiesForSuccessor (I.getParent(), I.getSuccessor(0), 2);
2541 printBranchToBlock(I.getParent(), I.getSuccessor(0), 2);
2542
2543 if (isGotoCodeNecessary(I.getParent(), I.getSuccessor(1))) {
2544 Out << " } else {\n";
2545 printPHICopiesForSuccessor (I.getParent(), I.getSuccessor(1), 2);
2546 printBranchToBlock(I.getParent(), I.getSuccessor(1), 2);
2547 }
2548 } else {
2549 // First goto not necessary, assume second one is...
2550 Out << " if (!";
2551 writeOperand(I.getCondition());
2552 Out << ") {\n";
2553
2554 printPHICopiesForSuccessor (I.getParent(), I.getSuccessor(1), 2);
2555 printBranchToBlock(I.getParent(), I.getSuccessor(1), 2);
2556 }
2557
2558 Out << " }\n";
2559 } else {
2560 printPHICopiesForSuccessor (I.getParent(), I.getSuccessor(0), 0);
2561 printBranchToBlock(I.getParent(), I.getSuccessor(0), 0);
2562 }
2563 Out << "\n";
2564}
2565
2566// PHI nodes get copied into temporary values at the end of predecessor basic
2567// blocks. We now need to copy these temporary values into the REAL value for
2568// the PHI.
2569void CWriter::visitPHINode(PHINode &I) {
2570 writeOperand(&I);
2571 Out << "__PHI_TEMPORARY";
2572}
2573
2574
2575void CWriter::visitBinaryOperator(Instruction &I) {
2576 // binary instructions, shift instructions, setCond instructions.
Duncan Sands10343d92010-02-16 11:11:14 +00002577 assert(!I.getType()->isPointerTy());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002578
2579 // We must cast the results of binary operations which might be promoted.
2580 bool needsCast = false;
Owen Anderson35b47072009-08-13 21:58:54 +00002581 if ((I.getType() == Type::getInt8Ty(I.getContext())) ||
2582 (I.getType() == Type::getInt16Ty(I.getContext()))
2583 || (I.getType() == Type::getFloatTy(I.getContext()))) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002584 needsCast = true;
2585 Out << "((";
2586 printType(Out, I.getType(), false);
2587 Out << ")(";
2588 }
2589
2590 // If this is a negation operation, print it out as such. For FP, we don't
2591 // want to print "-0.0 - X".
Owen Anderson76f49252009-07-13 22:18:28 +00002592 if (BinaryOperator::isNeg(&I)) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002593 Out << "-(";
2594 writeOperand(BinaryOperator::getNegArgument(cast<BinaryOperator>(&I)));
2595 Out << ")";
Owen Anderson76f49252009-07-13 22:18:28 +00002596 } else if (BinaryOperator::isFNeg(&I)) {
Dan Gohman7ce405e2009-06-04 22:49:04 +00002597 Out << "-(";
2598 writeOperand(BinaryOperator::getFNegArgument(cast<BinaryOperator>(&I)));
2599 Out << ")";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002600 } else if (I.getOpcode() == Instruction::FRem) {
2601 // Output a call to fmod/fmodf instead of emitting a%b
Owen Anderson35b47072009-08-13 21:58:54 +00002602 if (I.getType() == Type::getFloatTy(I.getContext()))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002603 Out << "fmodf(";
Owen Anderson35b47072009-08-13 21:58:54 +00002604 else if (I.getType() == Type::getDoubleTy(I.getContext()))
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002605 Out << "fmod(";
Dale Johannesen137cef62007-09-17 00:38:27 +00002606 else // all 3 flavors of long double
2607 Out << "fmodl(";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002608 writeOperand(I.getOperand(0));
2609 Out << ", ";
2610 writeOperand(I.getOperand(1));
2611 Out << ")";
2612 } else {
2613
2614 // Write out the cast of the instruction's value back to the proper type
2615 // if necessary.
2616 bool NeedsClosingParens = writeInstructionCast(I);
2617
2618 // Certain instructions require the operand to be forced to a specific type
2619 // so we use writeOperandWithCast here instead of writeOperand. Similarly
2620 // below for operand 1
2621 writeOperandWithCast(I.getOperand(0), I.getOpcode());
2622
2623 switch (I.getOpcode()) {
Dan Gohman7ce405e2009-06-04 22:49:04 +00002624 case Instruction::Add:
2625 case Instruction::FAdd: Out << " + "; break;
2626 case Instruction::Sub:
2627 case Instruction::FSub: Out << " - "; break;
2628 case Instruction::Mul:
2629 case Instruction::FMul: Out << " * "; break;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002630 case Instruction::URem:
2631 case Instruction::SRem:
2632 case Instruction::FRem: Out << " % "; break;
2633 case Instruction::UDiv:
2634 case Instruction::SDiv:
2635 case Instruction::FDiv: Out << " / "; break;
2636 case Instruction::And: Out << " & "; break;
2637 case Instruction::Or: Out << " | "; break;
2638 case Instruction::Xor: Out << " ^ "; break;
2639 case Instruction::Shl : Out << " << "; break;
2640 case Instruction::LShr:
2641 case Instruction::AShr: Out << " >> "; break;
Edwin Török4d9756a2009-07-08 20:53:28 +00002642 default:
2643#ifndef NDEBUG
Chris Lattner8a6411c2009-08-23 04:37:46 +00002644 errs() << "Invalid operator type!" << I;
Edwin Török4d9756a2009-07-08 20:53:28 +00002645#endif
Edwin Törökbd448e32009-07-14 16:55:14 +00002646 llvm_unreachable(0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002647 }
2648
2649 writeOperandWithCast(I.getOperand(1), I.getOpcode());
2650 if (NeedsClosingParens)
2651 Out << "))";
2652 }
2653
2654 if (needsCast) {
2655 Out << "))";
2656 }
2657}
2658
2659void CWriter::visitICmpInst(ICmpInst &I) {
2660 // We must cast the results of icmp which might be promoted.
2661 bool needsCast = false;
2662
2663 // Write out the cast of the instruction's value back to the proper type
2664 // if necessary.
2665 bool NeedsClosingParens = writeInstructionCast(I);
2666
2667 // Certain icmp predicate require the operand to be forced to a specific type
2668 // so we use writeOperandWithCast here instead of writeOperand. Similarly
2669 // below for operand 1
Chris Lattner389c9142007-09-15 06:51:03 +00002670 writeOperandWithCast(I.getOperand(0), I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002671
2672 switch (I.getPredicate()) {
2673 case ICmpInst::ICMP_EQ: Out << " == "; break;
2674 case ICmpInst::ICMP_NE: Out << " != "; break;
2675 case ICmpInst::ICMP_ULE:
2676 case ICmpInst::ICMP_SLE: Out << " <= "; break;
2677 case ICmpInst::ICMP_UGE:
2678 case ICmpInst::ICMP_SGE: Out << " >= "; break;
2679 case ICmpInst::ICMP_ULT:
2680 case ICmpInst::ICMP_SLT: Out << " < "; break;
2681 case ICmpInst::ICMP_UGT:
2682 case ICmpInst::ICMP_SGT: Out << " > "; break;
Edwin Török4d9756a2009-07-08 20:53:28 +00002683 default:
2684#ifndef NDEBUG
Chris Lattner8a6411c2009-08-23 04:37:46 +00002685 errs() << "Invalid icmp predicate!" << I;
Edwin Török4d9756a2009-07-08 20:53:28 +00002686#endif
Edwin Törökbd448e32009-07-14 16:55:14 +00002687 llvm_unreachable(0);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002688 }
2689
Chris Lattner389c9142007-09-15 06:51:03 +00002690 writeOperandWithCast(I.getOperand(1), I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002691 if (NeedsClosingParens)
2692 Out << "))";
2693
2694 if (needsCast) {
2695 Out << "))";
2696 }
2697}
2698
2699void CWriter::visitFCmpInst(FCmpInst &I) {
2700 if (I.getPredicate() == FCmpInst::FCMP_FALSE) {
2701 Out << "0";
2702 return;
2703 }
2704 if (I.getPredicate() == FCmpInst::FCMP_TRUE) {
2705 Out << "1";
2706 return;
2707 }
2708
2709 const char* op = 0;
2710 switch (I.getPredicate()) {
Edwin Törökbd448e32009-07-14 16:55:14 +00002711 default: llvm_unreachable("Illegal FCmp predicate");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002712 case FCmpInst::FCMP_ORD: op = "ord"; break;
2713 case FCmpInst::FCMP_UNO: op = "uno"; break;
2714 case FCmpInst::FCMP_UEQ: op = "ueq"; break;
2715 case FCmpInst::FCMP_UNE: op = "une"; break;
2716 case FCmpInst::FCMP_ULT: op = "ult"; break;
2717 case FCmpInst::FCMP_ULE: op = "ule"; break;
2718 case FCmpInst::FCMP_UGT: op = "ugt"; break;
2719 case FCmpInst::FCMP_UGE: op = "uge"; break;
2720 case FCmpInst::FCMP_OEQ: op = "oeq"; break;
2721 case FCmpInst::FCMP_ONE: op = "one"; break;
2722 case FCmpInst::FCMP_OLT: op = "olt"; break;
2723 case FCmpInst::FCMP_OLE: op = "ole"; break;
2724 case FCmpInst::FCMP_OGT: op = "ogt"; break;
2725 case FCmpInst::FCMP_OGE: op = "oge"; break;
2726 }
2727
2728 Out << "llvm_fcmp_" << op << "(";
2729 // Write the first operand
2730 writeOperand(I.getOperand(0));
2731 Out << ", ";
2732 // Write the second operand
2733 writeOperand(I.getOperand(1));
2734 Out << ")";
2735}
2736
2737static const char * getFloatBitCastField(const Type *Ty) {
2738 switch (Ty->getTypeID()) {
Edwin Törökbd448e32009-07-14 16:55:14 +00002739 default: llvm_unreachable("Invalid Type");
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002740 case Type::FloatTyID: return "Float";
2741 case Type::DoubleTyID: return "Double";
2742 case Type::IntegerTyID: {
2743 unsigned NumBits = cast<IntegerType>(Ty)->getBitWidth();
2744 if (NumBits <= 32)
2745 return "Int32";
2746 else
2747 return "Int64";
2748 }
2749 }
2750}
2751
2752void CWriter::visitCastInst(CastInst &I) {
2753 const Type *DstTy = I.getType();
2754 const Type *SrcTy = I.getOperand(0)->getType();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002755 if (isFPIntBitCast(I)) {
Chris Lattnerd70f5a82008-05-31 09:23:55 +00002756 Out << '(';
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002757 // These int<->float and long<->double casts need to be handled specially
2758 Out << GetValueName(&I) << "__BITCAST_TEMPORARY."
2759 << getFloatBitCastField(I.getOperand(0)->getType()) << " = ";
2760 writeOperand(I.getOperand(0));
2761 Out << ", " << GetValueName(&I) << "__BITCAST_TEMPORARY."
2762 << getFloatBitCastField(I.getType());
Chris Lattnerd70f5a82008-05-31 09:23:55 +00002763 Out << ')';
2764 return;
2765 }
2766
2767 Out << '(';
2768 printCast(I.getOpcode(), SrcTy, DstTy);
2769
2770 // Make a sext from i1 work by subtracting the i1 from 0 (an int).
Owen Anderson35b47072009-08-13 21:58:54 +00002771 if (SrcTy == Type::getInt1Ty(I.getContext()) &&
2772 I.getOpcode() == Instruction::SExt)
Chris Lattnerd70f5a82008-05-31 09:23:55 +00002773 Out << "0-";
2774
2775 writeOperand(I.getOperand(0));
2776
Owen Anderson35b47072009-08-13 21:58:54 +00002777 if (DstTy == Type::getInt1Ty(I.getContext()) &&
Chris Lattnerd70f5a82008-05-31 09:23:55 +00002778 (I.getOpcode() == Instruction::Trunc ||
2779 I.getOpcode() == Instruction::FPToUI ||
2780 I.getOpcode() == Instruction::FPToSI ||
2781 I.getOpcode() == Instruction::PtrToInt)) {
2782 // Make sure we really get a trunc to bool by anding the operand with 1
2783 Out << "&1u";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002784 }
2785 Out << ')';
2786}
2787
2788void CWriter::visitSelectInst(SelectInst &I) {
2789 Out << "((";
2790 writeOperand(I.getCondition());
2791 Out << ") ? (";
2792 writeOperand(I.getTrueValue());
2793 Out << ") : (";
2794 writeOperand(I.getFalseValue());
2795 Out << "))";
2796}
2797
2798
2799void CWriter::lowerIntrinsics(Function &F) {
2800 // This is used to keep track of intrinsics that get generated to a lowered
2801 // function. We must generate the prototypes before the function body which
2802 // will only be expanded on first use (by the loop below).
2803 std::vector<Function*> prototypesToGen;
2804
2805 // Examine all the instructions in this function to find the intrinsics that
2806 // need to be lowered.
2807 for (Function::iterator BB = F.begin(), EE = F.end(); BB != EE; ++BB)
2808 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; )
2809 if (CallInst *CI = dyn_cast<CallInst>(I++))
2810 if (Function *F = CI->getCalledFunction())
2811 switch (F->getIntrinsicID()) {
2812 case Intrinsic::not_intrinsic:
Andrew Lenharth0531ec52008-02-16 14:46:26 +00002813 case Intrinsic::memory_barrier:
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002814 case Intrinsic::vastart:
2815 case Intrinsic::vacopy:
2816 case Intrinsic::vaend:
2817 case Intrinsic::returnaddress:
2818 case Intrinsic::frameaddress:
2819 case Intrinsic::setjmp:
2820 case Intrinsic::longjmp:
2821 case Intrinsic::prefetch:
Dale Johannesenc339d8e2007-10-02 17:43:59 +00002822 case Intrinsic::powi:
Chris Lattner6a947cb2008-03-02 08:47:13 +00002823 case Intrinsic::x86_sse_cmp_ss:
2824 case Intrinsic::x86_sse_cmp_ps:
2825 case Intrinsic::x86_sse2_cmp_sd:
2826 case Intrinsic::x86_sse2_cmp_pd:
Chris Lattner709df322008-03-02 08:54:27 +00002827 case Intrinsic::ppc_altivec_lvsl:
Chris Lattner6a947cb2008-03-02 08:47:13 +00002828 // We directly implement these intrinsics
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002829 break;
2830 default:
2831 // If this is an intrinsic that directly corresponds to a GCC
2832 // builtin, we handle it.
2833 const char *BuiltinName = "";
2834#define GET_GCC_BUILTIN_NAME
2835#include "llvm/Intrinsics.gen"
2836#undef GET_GCC_BUILTIN_NAME
2837 // If we handle it, don't lower it.
2838 if (BuiltinName[0]) break;
2839
2840 // All other intrinsic calls we must lower.
2841 Instruction *Before = 0;
2842 if (CI != &BB->front())
2843 Before = prior(BasicBlock::iterator(CI));
2844
2845 IL->LowerIntrinsicCall(CI);
2846 if (Before) { // Move iterator to instruction after call
2847 I = Before; ++I;
2848 } else {
2849 I = BB->begin();
2850 }
2851 // If the intrinsic got lowered to another call, and that call has
2852 // a definition then we need to make sure its prototype is emitted
2853 // before any calls to it.
2854 if (CallInst *Call = dyn_cast<CallInst>(I))
2855 if (Function *NewF = Call->getCalledFunction())
2856 if (!NewF->isDeclaration())
2857 prototypesToGen.push_back(NewF);
2858
2859 break;
2860 }
2861
2862 // We may have collected some prototypes to emit in the loop above.
2863 // Emit them now, before the function that uses them is emitted. But,
2864 // be careful not to emit them twice.
2865 std::vector<Function*>::iterator I = prototypesToGen.begin();
2866 std::vector<Function*>::iterator E = prototypesToGen.end();
2867 for ( ; I != E; ++I) {
2868 if (intrinsicPrototypesAlreadyGenerated.insert(*I).second) {
2869 Out << '\n';
2870 printFunctionSignature(*I, true);
2871 Out << ";\n";
2872 }
2873 }
2874}
2875
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002876void CWriter::visitCallInst(CallInst &I) {
Gabor Greif96af5272010-04-08 13:50:42 +00002877 if (isa<InlineAsm>(I.getCalledValue()))
Chris Lattner8a3b6e42008-05-22 06:19:37 +00002878 return visitInlineAsm(I);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002879
2880 bool WroteCallee = false;
2881
2882 // Handle intrinsic function calls first...
2883 if (Function *F = I.getCalledFunction())
Chris Lattnera74b9182008-03-02 08:29:41 +00002884 if (Intrinsic::ID ID = (Intrinsic::ID)F->getIntrinsicID())
2885 if (visitBuiltinCall(I, ID, WroteCallee))
Andrew Lenharth0531ec52008-02-16 14:46:26 +00002886 return;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002887
2888 Value *Callee = I.getCalledValue();
2889
2890 const PointerType *PTy = cast<PointerType>(Callee->getType());
2891 const FunctionType *FTy = cast<FunctionType>(PTy->getElementType());
2892
2893 // If this is a call to a struct-return function, assign to the first
2894 // parameter instead of passing it to the call.
Devang Pateld222f862008-09-25 21:00:45 +00002895 const AttrListPtr &PAL = I.getAttributes();
Evan Chengb8a072c2008-01-12 18:53:07 +00002896 bool hasByVal = I.hasByValArgument();
Devang Patel949a4b72008-03-03 21:46:28 +00002897 bool isStructRet = I.hasStructRetAttr();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002898 if (isStructRet) {
Gabor Greifcc001622010-06-26 12:09:10 +00002899 writeOperandDeref(I.getArgOperand(0));
Evan Chengf8956382008-01-11 23:10:11 +00002900 Out << " = ";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002901 }
2902
2903 if (I.isTailCall()) Out << " /*tail*/ ";
2904
2905 if (!WroteCallee) {
2906 // If this is an indirect call to a struct return function, we need to cast
Evan Chengb8a072c2008-01-12 18:53:07 +00002907 // the pointer. Ditto for indirect calls with byval arguments.
2908 bool NeedsCast = (hasByVal || isStructRet) && !isa<Function>(Callee);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002909
2910 // GCC is a real PITA. It does not permit codegening casts of functions to
2911 // function pointers if they are in a call (it generates a trap instruction
2912 // instead!). We work around this by inserting a cast to void* in between
2913 // the function and the function pointer cast. Unfortunately, we can't just
2914 // form the constant expression here, because the folder will immediately
2915 // nuke it.
2916 //
2917 // Note finally, that this is completely unsafe. ANSI C does not guarantee
2918 // that void* and function pointers have the same size. :( To deal with this
2919 // in the common case, we handle casts where the number of arguments passed
2920 // match exactly.
2921 //
2922 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Callee))
2923 if (CE->isCast())
2924 if (Function *RF = dyn_cast<Function>(CE->getOperand(0))) {
2925 NeedsCast = true;
2926 Callee = RF;
2927 }
2928
2929 if (NeedsCast) {
2930 // Ok, just cast the pointer type.
2931 Out << "((";
Evan Chengb8a072c2008-01-12 18:53:07 +00002932 if (isStructRet)
Duncan Sandsf5588dc2007-11-27 13:23:08 +00002933 printStructReturnPointerFunctionType(Out, PAL,
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002934 cast<PointerType>(I.getCalledValue()->getType()));
Evan Chengb8a072c2008-01-12 18:53:07 +00002935 else if (hasByVal)
2936 printType(Out, I.getCalledValue()->getType(), false, "", true, PAL);
2937 else
2938 printType(Out, I.getCalledValue()->getType());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002939 Out << ")(void*)";
2940 }
2941 writeOperand(Callee);
2942 if (NeedsCast) Out << ')';
2943 }
2944
2945 Out << '(';
2946
Chris Lattner10c749c2010-04-10 19:12:44 +00002947 bool PrintedArg = false;
2948 if(FTy->isVarArg() && !FTy->getNumParams()) {
2949 Out << "0 /*dummy arg*/";
2950 PrintedArg = true;
2951 }
2952
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002953 unsigned NumDeclaredParams = FTy->getNumParams();
Gabor Greifcc001622010-06-26 12:09:10 +00002954 CallSite CS(&I);
2955 CallSite::arg_iterator AI = CS.arg_begin(), AE = CS.arg_end();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002956 unsigned ArgNo = 0;
2957 if (isStructRet) { // Skip struct return argument.
2958 ++AI;
2959 ++ArgNo;
2960 }
2961
Chris Lattner10c749c2010-04-10 19:12:44 +00002962
Evan Chengf8956382008-01-11 23:10:11 +00002963 for (; AI != AE; ++AI, ++ArgNo) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002964 if (PrintedArg) Out << ", ";
2965 if (ArgNo < NumDeclaredParams &&
2966 (*AI)->getType() != FTy->getParamType(ArgNo)) {
2967 Out << '(';
2968 printType(Out, FTy->getParamType(ArgNo),
Devang Pateld222f862008-09-25 21:00:45 +00002969 /*isSigned=*/PAL.paramHasAttr(ArgNo+1, Attribute::SExt));
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002970 Out << ')';
2971 }
Evan Chengf8956382008-01-11 23:10:11 +00002972 // Check if the argument is expected to be passed by value.
Devang Pateld222f862008-09-25 21:00:45 +00002973 if (I.paramHasAttr(ArgNo+1, Attribute::ByVal))
Chris Lattner8bbc8592008-03-02 08:07:24 +00002974 writeOperandDeref(*AI);
2975 else
2976 writeOperand(*AI);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00002977 PrintedArg = true;
2978 }
2979 Out << ')';
2980}
2981
Chris Lattnera74b9182008-03-02 08:29:41 +00002982/// visitBuiltinCall - Handle the call to the specified builtin. Returns true
Dan Gohmandf1a7ff2010-02-10 16:03:48 +00002983/// if the entire call is handled, return false if it wasn't handled, and
Chris Lattnera74b9182008-03-02 08:29:41 +00002984/// optionally set 'WroteCallee' if the callee has already been printed out.
2985bool CWriter::visitBuiltinCall(CallInst &I, Intrinsic::ID ID,
2986 bool &WroteCallee) {
2987 switch (ID) {
2988 default: {
2989 // If this is an intrinsic that directly corresponds to a GCC
2990 // builtin, we emit it here.
2991 const char *BuiltinName = "";
2992 Function *F = I.getCalledFunction();
2993#define GET_GCC_BUILTIN_NAME
2994#include "llvm/Intrinsics.gen"
2995#undef GET_GCC_BUILTIN_NAME
2996 assert(BuiltinName[0] && "Unknown LLVM intrinsic!");
2997
2998 Out << BuiltinName;
2999 WroteCallee = true;
3000 return false;
3001 }
3002 case Intrinsic::memory_barrier:
Andrew Lenharth5c976182008-03-05 23:41:37 +00003003 Out << "__sync_synchronize()";
Chris Lattnera74b9182008-03-02 08:29:41 +00003004 return true;
3005 case Intrinsic::vastart:
3006 Out << "0; ";
3007
3008 Out << "va_start(*(va_list*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003009 writeOperand(I.getArgOperand(0));
Chris Lattnera74b9182008-03-02 08:29:41 +00003010 Out << ", ";
3011 // Output the last argument to the enclosing function.
Chris Lattner10c749c2010-04-10 19:12:44 +00003012 if (I.getParent()->getParent()->arg_empty())
3013 Out << "vararg_dummy_arg";
3014 else
3015 writeOperand(--I.getParent()->getParent()->arg_end());
Chris Lattnera74b9182008-03-02 08:29:41 +00003016 Out << ')';
3017 return true;
3018 case Intrinsic::vaend:
Gabor Greifcc001622010-06-26 12:09:10 +00003019 if (!isa<ConstantPointerNull>(I.getArgOperand(0))) {
Chris Lattnera74b9182008-03-02 08:29:41 +00003020 Out << "0; va_end(*(va_list*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003021 writeOperand(I.getArgOperand(0));
Chris Lattnera74b9182008-03-02 08:29:41 +00003022 Out << ')';
3023 } else {
3024 Out << "va_end(*(va_list*)0)";
3025 }
3026 return true;
3027 case Intrinsic::vacopy:
3028 Out << "0; ";
3029 Out << "va_copy(*(va_list*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003030 writeOperand(I.getArgOperand(0));
Eric Christopherfbf918b2010-04-16 23:37:20 +00003031 Out << ", *(va_list*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003032 writeOperand(I.getArgOperand(1));
Chris Lattnera74b9182008-03-02 08:29:41 +00003033 Out << ')';
3034 return true;
3035 case Intrinsic::returnaddress:
3036 Out << "__builtin_return_address(";
Gabor Greifcc001622010-06-26 12:09:10 +00003037 writeOperand(I.getArgOperand(0));
Chris Lattnera74b9182008-03-02 08:29:41 +00003038 Out << ')';
3039 return true;
3040 case Intrinsic::frameaddress:
3041 Out << "__builtin_frame_address(";
Gabor Greifcc001622010-06-26 12:09:10 +00003042 writeOperand(I.getArgOperand(0));
Chris Lattnera74b9182008-03-02 08:29:41 +00003043 Out << ')';
3044 return true;
3045 case Intrinsic::powi:
3046 Out << "__builtin_powi(";
Gabor Greifcc001622010-06-26 12:09:10 +00003047 writeOperand(I.getArgOperand(0));
Eric Christopherfbf918b2010-04-16 23:37:20 +00003048 Out << ", ";
Gabor Greifcc001622010-06-26 12:09:10 +00003049 writeOperand(I.getArgOperand(1));
Chris Lattnera74b9182008-03-02 08:29:41 +00003050 Out << ')';
3051 return true;
3052 case Intrinsic::setjmp:
3053 Out << "setjmp(*(jmp_buf*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003054 writeOperand(I.getArgOperand(0));
Chris Lattnera74b9182008-03-02 08:29:41 +00003055 Out << ')';
3056 return true;
3057 case Intrinsic::longjmp:
3058 Out << "longjmp(*(jmp_buf*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003059 writeOperand(I.getArgOperand(0));
Eric Christopherfbf918b2010-04-16 23:37:20 +00003060 Out << ", ";
Gabor Greifcc001622010-06-26 12:09:10 +00003061 writeOperand(I.getArgOperand(1));
Chris Lattnera74b9182008-03-02 08:29:41 +00003062 Out << ')';
3063 return true;
3064 case Intrinsic::prefetch:
3065 Out << "LLVM_PREFETCH((const void *)";
Gabor Greifcc001622010-06-26 12:09:10 +00003066 writeOperand(I.getArgOperand(0));
Chris Lattnera74b9182008-03-02 08:29:41 +00003067 Out << ", ";
Gabor Greifcc001622010-06-26 12:09:10 +00003068 writeOperand(I.getArgOperand(1));
Eric Christopherfbf918b2010-04-16 23:37:20 +00003069 Out << ", ";
Gabor Greifcc001622010-06-26 12:09:10 +00003070 writeOperand(I.getArgOperand(2));
Chris Lattnera74b9182008-03-02 08:29:41 +00003071 Out << ")";
3072 return true;
3073 case Intrinsic::stacksave:
3074 // Emit this as: Val = 0; *((void**)&Val) = __builtin_stack_save()
3075 // to work around GCC bugs (see PR1809).
3076 Out << "0; *((void**)&" << GetValueName(&I)
3077 << ") = __builtin_stack_save()";
3078 return true;
Chris Lattner6a947cb2008-03-02 08:47:13 +00003079 case Intrinsic::x86_sse_cmp_ss:
3080 case Intrinsic::x86_sse_cmp_ps:
3081 case Intrinsic::x86_sse2_cmp_sd:
3082 case Intrinsic::x86_sse2_cmp_pd:
3083 Out << '(';
3084 printType(Out, I.getType());
3085 Out << ')';
3086 // Multiple GCC builtins multiplex onto this intrinsic.
Gabor Greifcc001622010-06-26 12:09:10 +00003087 switch (cast<ConstantInt>(I.getArgOperand(2))->getZExtValue()) {
Edwin Törökbd448e32009-07-14 16:55:14 +00003088 default: llvm_unreachable("Invalid llvm.x86.sse.cmp!");
Chris Lattner6a947cb2008-03-02 08:47:13 +00003089 case 0: Out << "__builtin_ia32_cmpeq"; break;
3090 case 1: Out << "__builtin_ia32_cmplt"; break;
3091 case 2: Out << "__builtin_ia32_cmple"; break;
3092 case 3: Out << "__builtin_ia32_cmpunord"; break;
3093 case 4: Out << "__builtin_ia32_cmpneq"; break;
3094 case 5: Out << "__builtin_ia32_cmpnlt"; break;
3095 case 6: Out << "__builtin_ia32_cmpnle"; break;
3096 case 7: Out << "__builtin_ia32_cmpord"; break;
3097 }
3098 if (ID == Intrinsic::x86_sse_cmp_ps || ID == Intrinsic::x86_sse2_cmp_pd)
3099 Out << 'p';
3100 else
3101 Out << 's';
3102 if (ID == Intrinsic::x86_sse_cmp_ss || ID == Intrinsic::x86_sse_cmp_ps)
3103 Out << 's';
3104 else
3105 Out << 'd';
3106
3107 Out << "(";
Gabor Greifcc001622010-06-26 12:09:10 +00003108 writeOperand(I.getArgOperand(0));
Eric Christopherfbf918b2010-04-16 23:37:20 +00003109 Out << ", ";
Gabor Greifcc001622010-06-26 12:09:10 +00003110 writeOperand(I.getArgOperand(1));
Chris Lattner6a947cb2008-03-02 08:47:13 +00003111 Out << ")";
3112 return true;
Chris Lattner709df322008-03-02 08:54:27 +00003113 case Intrinsic::ppc_altivec_lvsl:
3114 Out << '(';
3115 printType(Out, I.getType());
3116 Out << ')';
3117 Out << "__builtin_altivec_lvsl(0, (void*)";
Gabor Greifcc001622010-06-26 12:09:10 +00003118 writeOperand(I.getArgOperand(0));
Chris Lattner709df322008-03-02 08:54:27 +00003119 Out << ")";
3120 return true;
Chris Lattnera74b9182008-03-02 08:29:41 +00003121 }
3122}
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003123
3124//This converts the llvm constraint string to something gcc is expecting.
3125//TODO: work out platform independent constraints and factor those out
3126// of the per target tables
3127// handle multiple constraint codes
3128std::string CWriter::InterpretASMConstraint(InlineAsm::ConstraintInfo& c) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003129 assert(c.Codes.size() == 1 && "Too many asm constraint codes to handle");
3130
Chris Lattner621c44d2009-08-22 20:48:53 +00003131 // Grab the translation table from MCAsmInfo if it exists.
Chris Lattner63ab9bb2010-01-17 18:22:35 +00003132 const MCAsmInfo *TargetAsm;
3133 std::string Triple = TheModule->getTargetTriple();
3134 if (Triple.empty())
3135 Triple = llvm::sys::getHostTriple();
3136
3137 std::string E;
3138 if (const Target *Match = TargetRegistry::lookupTarget(Triple, E))
3139 TargetAsm = Match->createAsmInfo(Triple);
3140 else
3141 return c.Codes[0];
3142
3143 const char *const *table = TargetAsm->getAsmCBE();
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003144
Daniel Dunbarfe5939f2009-07-15 20:24:03 +00003145 // Search the translation table if it exists.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003146 for (int i = 0; table && table[i]; i += 2)
Chris Lattner63ab9bb2010-01-17 18:22:35 +00003147 if (c.Codes[0] == table[i]) {
3148 delete TargetAsm;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003149 return table[i+1];
Chris Lattner63ab9bb2010-01-17 18:22:35 +00003150 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003151
Daniel Dunbarfe5939f2009-07-15 20:24:03 +00003152 // Default is identity.
Chris Lattner63ab9bb2010-01-17 18:22:35 +00003153 delete TargetAsm;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003154 return c.Codes[0];
3155}
3156
3157//TODO: import logic from AsmPrinter.cpp
3158static std::string gccifyAsm(std::string asmstr) {
3159 for (std::string::size_type i = 0; i != asmstr.size(); ++i)
3160 if (asmstr[i] == '\n')
3161 asmstr.replace(i, 1, "\\n");
3162 else if (asmstr[i] == '\t')
3163 asmstr.replace(i, 1, "\\t");
3164 else if (asmstr[i] == '$') {
3165 if (asmstr[i + 1] == '{') {
3166 std::string::size_type a = asmstr.find_first_of(':', i + 1);
3167 std::string::size_type b = asmstr.find_first_of('}', i + 1);
3168 std::string n = "%" +
3169 asmstr.substr(a + 1, b - a - 1) +
3170 asmstr.substr(i + 2, a - i - 2);
3171 asmstr.replace(i, b - i + 1, n);
3172 i += n.size() - 1;
3173 } else
3174 asmstr.replace(i, 1, "%");
3175 }
3176 else if (asmstr[i] == '%')//grr
3177 { asmstr.replace(i, 1, "%%"); ++i;}
3178
3179 return asmstr;
3180}
3181
3182//TODO: assumptions about what consume arguments from the call are likely wrong
3183// handle communitivity
3184void CWriter::visitInlineAsm(CallInst &CI) {
Gabor Greif96af5272010-04-08 13:50:42 +00003185 InlineAsm* as = cast<InlineAsm>(CI.getCalledValue());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003186 std::vector<InlineAsm::ConstraintInfo> Constraints = as->ParseConstraints();
Chris Lattner8a3b6e42008-05-22 06:19:37 +00003187
3188 std::vector<std::pair<Value*, int> > ResultVals;
Owen Anderson35b47072009-08-13 21:58:54 +00003189 if (CI.getType() == Type::getVoidTy(CI.getContext()))
Chris Lattner8a3b6e42008-05-22 06:19:37 +00003190 ;
3191 else if (const StructType *ST = dyn_cast<StructType>(CI.getType())) {
3192 for (unsigned i = 0, e = ST->getNumElements(); i != e; ++i)
3193 ResultVals.push_back(std::make_pair(&CI, (int)i));
3194 } else {
3195 ResultVals.push_back(std::make_pair(&CI, -1));
3196 }
3197
Chris Lattnera605a9c2008-06-04 18:03:28 +00003198 // Fix up the asm string for gcc and emit it.
3199 Out << "__asm__ volatile (\"" << gccifyAsm(as->getAsmString()) << "\"\n";
3200 Out << " :";
3201
3202 unsigned ValueCount = 0;
3203 bool IsFirst = true;
3204
3205 // Convert over all the output constraints.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003206 for (std::vector<InlineAsm::ConstraintInfo>::iterator I = Constraints.begin(),
Chris Lattnera605a9c2008-06-04 18:03:28 +00003207 E = Constraints.end(); I != E; ++I) {
3208
3209 if (I->Type != InlineAsm::isOutput) {
3210 ++ValueCount;
3211 continue; // Ignore non-output constraints.
3212 }
3213
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003214 assert(I->Codes.size() == 1 && "Too many asm constraint codes to handle");
Chris Lattner8a3b6e42008-05-22 06:19:37 +00003215 std::string C = InterpretASMConstraint(*I);
3216 if (C.empty()) continue;
3217
Chris Lattnera605a9c2008-06-04 18:03:28 +00003218 if (!IsFirst) {
Chris Lattner8a3b6e42008-05-22 06:19:37 +00003219 Out << ", ";
Chris Lattnera605a9c2008-06-04 18:03:28 +00003220 IsFirst = false;
3221 }
3222
3223 // Unpack the dest.
3224 Value *DestVal;
3225 int DestValNo = -1;
3226
3227 if (ValueCount < ResultVals.size()) {
3228 DestVal = ResultVals[ValueCount].first;
3229 DestValNo = ResultVals[ValueCount].second;
3230 } else
Gabor Greifcc001622010-06-26 12:09:10 +00003231 DestVal = CI.getArgOperand(ValueCount-ResultVals.size());
Chris Lattnera605a9c2008-06-04 18:03:28 +00003232
3233 if (I->isEarlyClobber)
3234 C = "&"+C;
3235
3236 Out << "\"=" << C << "\"(" << GetValueName(DestVal);
3237 if (DestValNo != -1)
3238 Out << ".field" << DestValNo; // Multiple retvals.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003239 Out << ")";
Chris Lattnera605a9c2008-06-04 18:03:28 +00003240 ++ValueCount;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003241 }
Chris Lattnera605a9c2008-06-04 18:03:28 +00003242
3243
3244 // Convert over all the input constraints.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003245 Out << "\n :";
Chris Lattnera605a9c2008-06-04 18:03:28 +00003246 IsFirst = true;
3247 ValueCount = 0;
3248 for (std::vector<InlineAsm::ConstraintInfo>::iterator I = Constraints.begin(),
3249 E = Constraints.end(); I != E; ++I) {
3250 if (I->Type != InlineAsm::isInput) {
3251 ++ValueCount;
3252 continue; // Ignore non-input constraints.
3253 }
3254
3255 assert(I->Codes.size() == 1 && "Too many asm constraint codes to handle");
3256 std::string C = InterpretASMConstraint(*I);
3257 if (C.empty()) continue;
3258
3259 if (!IsFirst) {
Chris Lattner5fee1202008-05-22 06:29:38 +00003260 Out << ", ";
Chris Lattnera605a9c2008-06-04 18:03:28 +00003261 IsFirst = false;
3262 }
3263
3264 assert(ValueCount >= ResultVals.size() && "Input can't refer to result");
Gabor Greifcc001622010-06-26 12:09:10 +00003265 Value *SrcVal = CI.getArgOperand(ValueCount-ResultVals.size());
Chris Lattnera605a9c2008-06-04 18:03:28 +00003266
3267 Out << "\"" << C << "\"(";
3268 if (!I->isIndirect)
3269 writeOperand(SrcVal);
3270 else
3271 writeOperandDeref(SrcVal);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003272 Out << ")";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003273 }
Chris Lattnera605a9c2008-06-04 18:03:28 +00003274
3275 // Convert over the clobber constraints.
3276 IsFirst = true;
Chris Lattnera605a9c2008-06-04 18:03:28 +00003277 for (std::vector<InlineAsm::ConstraintInfo>::iterator I = Constraints.begin(),
3278 E = Constraints.end(); I != E; ++I) {
3279 if (I->Type != InlineAsm::isClobber)
3280 continue; // Ignore non-input constraints.
3281
3282 assert(I->Codes.size() == 1 && "Too many asm constraint codes to handle");
3283 std::string C = InterpretASMConstraint(*I);
3284 if (C.empty()) continue;
3285
3286 if (!IsFirst) {
3287 Out << ", ";
3288 IsFirst = false;
3289 }
3290
3291 Out << '\"' << C << '"';
3292 }
3293
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003294 Out << ")";
3295}
3296
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003297void CWriter::visitAllocaInst(AllocaInst &I) {
3298 Out << '(';
3299 printType(Out, I.getType());
3300 Out << ") alloca(sizeof(";
3301 printType(Out, I.getType()->getElementType());
3302 Out << ')';
3303 if (I.isArrayAllocation()) {
3304 Out << " * " ;
3305 writeOperand(I.getOperand(0));
3306 }
3307 Out << ')';
3308}
3309
Chris Lattner8bbc8592008-03-02 08:07:24 +00003310void CWriter::printGEPExpression(Value *Ptr, gep_type_iterator I,
Dan Gohmanad831302008-07-24 17:57:48 +00003311 gep_type_iterator E, bool Static) {
Chris Lattner8bbc8592008-03-02 08:07:24 +00003312
3313 // If there are no indices, just print out the pointer.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003314 if (I == E) {
Chris Lattner8bbc8592008-03-02 08:07:24 +00003315 writeOperand(Ptr);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003316 return;
3317 }
Chris Lattner8bbc8592008-03-02 08:07:24 +00003318
3319 // Find out if the last index is into a vector. If so, we have to print this
3320 // specially. Since vectors can't have elements of indexable type, only the
3321 // last index could possibly be of a vector element.
3322 const VectorType *LastIndexIsVector = 0;
3323 {
3324 for (gep_type_iterator TmpI = I; TmpI != E; ++TmpI)
3325 LastIndexIsVector = dyn_cast<VectorType>(*TmpI);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003326 }
Chris Lattner8bbc8592008-03-02 08:07:24 +00003327
3328 Out << "(";
3329
3330 // If the last index is into a vector, we can't print it as &a[i][j] because
3331 // we can't index into a vector with j in GCC. Instead, emit this as
3332 // (((float*)&a[i])+j)
3333 if (LastIndexIsVector) {
3334 Out << "((";
3335 printType(Out, PointerType::getUnqual(LastIndexIsVector->getElementType()));
3336 Out << ")(";
3337 }
3338
3339 Out << '&';
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003340
Chris Lattner8bbc8592008-03-02 08:07:24 +00003341 // If the first index is 0 (very typical) we can do a number of
3342 // simplifications to clean up the code.
3343 Value *FirstOp = I.getOperand();
3344 if (!isa<Constant>(FirstOp) || !cast<Constant>(FirstOp)->isNullValue()) {
3345 // First index isn't simple, print it the hard way.
3346 writeOperand(Ptr);
3347 } else {
3348 ++I; // Skip the zero index.
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003349
Chris Lattner8bbc8592008-03-02 08:07:24 +00003350 // Okay, emit the first operand. If Ptr is something that is already address
3351 // exposed, like a global, avoid emitting (&foo)[0], just emit foo instead.
3352 if (isAddressExposed(Ptr)) {
Dan Gohmanad831302008-07-24 17:57:48 +00003353 writeOperandInternal(Ptr, Static);
Duncan Sands10343d92010-02-16 11:11:14 +00003354 } else if (I != E && (*I)->isStructTy()) {
Chris Lattner8bbc8592008-03-02 08:07:24 +00003355 // If we didn't already emit the first operand, see if we can print it as
3356 // P->f instead of "P[0].f"
3357 writeOperand(Ptr);
3358 Out << "->field" << cast<ConstantInt>(I.getOperand())->getZExtValue();
3359 ++I; // eat the struct index as well.
3360 } else {
3361 // Instead of emitting P[0][1], emit (*P)[1], which is more idiomatic.
3362 Out << "(*";
3363 writeOperand(Ptr);
3364 Out << ")";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003365 }
3366 }
3367
Chris Lattner8bbc8592008-03-02 08:07:24 +00003368 for (; I != E; ++I) {
Duncan Sands10343d92010-02-16 11:11:14 +00003369 if ((*I)->isStructTy()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003370 Out << ".field" << cast<ConstantInt>(I.getOperand())->getZExtValue();
Duncan Sands10343d92010-02-16 11:11:14 +00003371 } else if ((*I)->isArrayTy()) {
Dan Gohman5d995b02008-06-02 21:30:49 +00003372 Out << ".array[";
3373 writeOperandWithCast(I.getOperand(), Instruction::GetElementPtr);
3374 Out << ']';
Duncan Sands10343d92010-02-16 11:11:14 +00003375 } else if (!(*I)->isVectorTy()) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003376 Out << '[';
Chris Lattner7ce1ee42007-09-22 20:16:48 +00003377 writeOperandWithCast(I.getOperand(), Instruction::GetElementPtr);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003378 Out << ']';
Chris Lattner8bbc8592008-03-02 08:07:24 +00003379 } else {
3380 // If the last index is into a vector, then print it out as "+j)". This
3381 // works with the 'LastIndexIsVector' code above.
3382 if (isa<Constant>(I.getOperand()) &&
3383 cast<Constant>(I.getOperand())->isNullValue()) {
3384 Out << "))"; // avoid "+0".
3385 } else {
3386 Out << ")+(";
3387 writeOperandWithCast(I.getOperand(), Instruction::GetElementPtr);
3388 Out << "))";
3389 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003390 }
Chris Lattner8bbc8592008-03-02 08:07:24 +00003391 }
3392 Out << ")";
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003393}
3394
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003395void CWriter::writeMemoryAccess(Value *Operand, const Type *OperandType,
3396 bool IsVolatile, unsigned Alignment) {
3397
3398 bool IsUnaligned = Alignment &&
3399 Alignment < TD->getABITypeAlignment(OperandType);
3400
3401 if (!IsUnaligned)
3402 Out << '*';
3403 if (IsVolatile || IsUnaligned) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003404 Out << "((";
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003405 if (IsUnaligned)
3406 Out << "struct __attribute__ ((packed, aligned(" << Alignment << "))) {";
3407 printType(Out, OperandType, false, IsUnaligned ? "data" : "volatile*");
3408 if (IsUnaligned) {
3409 Out << "; } ";
3410 if (IsVolatile) Out << "volatile ";
3411 Out << "*";
3412 }
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003413 Out << ")";
3414 }
3415
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003416 writeOperand(Operand);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003417
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003418 if (IsVolatile || IsUnaligned) {
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003419 Out << ')';
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003420 if (IsUnaligned)
3421 Out << "->data";
3422 }
3423}
3424
3425void CWriter::visitLoadInst(LoadInst &I) {
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003426 writeMemoryAccess(I.getOperand(0), I.getType(), I.isVolatile(),
3427 I.getAlignment());
3428
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003429}
3430
3431void CWriter::visitStoreInst(StoreInst &I) {
Lauro Ramos Venancio11048c12008-02-01 21:25:59 +00003432 writeMemoryAccess(I.getPointerOperand(), I.getOperand(0)->getType(),
3433 I.isVolatile(), I.getAlignment());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003434 Out << " = ";
3435 Value *Operand = I.getOperand(0);
3436 Constant *BitMask = 0;
3437 if (const IntegerType* ITy = dyn_cast<IntegerType>(Operand->getType()))
3438 if (!ITy->isPowerOf2ByteWidth())
3439 // We have a bit width that doesn't match an even power-of-2 byte
3440 // size. Consequently we must & the value with the type's bit mask
Owen Andersoneacb44d2009-07-24 23:12:02 +00003441 BitMask = ConstantInt::get(ITy, ITy->getBitMask());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003442 if (BitMask)
3443 Out << "((";
3444 writeOperand(Operand);
3445 if (BitMask) {
3446 Out << ") & ";
Dan Gohmanad831302008-07-24 17:57:48 +00003447 printConstant(BitMask, false);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003448 Out << ")";
3449 }
3450}
3451
3452void CWriter::visitGetElementPtrInst(GetElementPtrInst &I) {
Chris Lattner8bbc8592008-03-02 08:07:24 +00003453 printGEPExpression(I.getPointerOperand(), gep_type_begin(I),
Dan Gohmanad831302008-07-24 17:57:48 +00003454 gep_type_end(I), false);
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003455}
3456
3457void CWriter::visitVAArgInst(VAArgInst &I) {
3458 Out << "va_arg(*(va_list*)";
3459 writeOperand(I.getOperand(0));
3460 Out << ", ";
3461 printType(Out, I.getType());
3462 Out << ");\n ";
3463}
3464
Chris Lattnerf41a7942008-03-02 03:52:39 +00003465void CWriter::visitInsertElementInst(InsertElementInst &I) {
3466 const Type *EltTy = I.getType()->getElementType();
3467 writeOperand(I.getOperand(0));
3468 Out << ";\n ";
3469 Out << "((";
3470 printType(Out, PointerType::getUnqual(EltTy));
3471 Out << ")(&" << GetValueName(&I) << "))[";
Chris Lattnerf41a7942008-03-02 03:52:39 +00003472 writeOperand(I.getOperand(2));
Chris Lattner09418362008-03-02 08:10:16 +00003473 Out << "] = (";
3474 writeOperand(I.getOperand(1));
Chris Lattnerf41a7942008-03-02 03:52:39 +00003475 Out << ")";
3476}
3477
Chris Lattnera5f0bc02008-03-02 03:57:08 +00003478void CWriter::visitExtractElementInst(ExtractElementInst &I) {
3479 // We know that our operand is not inlined.
3480 Out << "((";
3481 const Type *EltTy =
3482 cast<VectorType>(I.getOperand(0)->getType())->getElementType();
3483 printType(Out, PointerType::getUnqual(EltTy));
3484 Out << ")(&" << GetValueName(I.getOperand(0)) << "))[";
3485 writeOperand(I.getOperand(1));
3486 Out << "]";
3487}
3488
Chris Lattnerf858a042008-03-02 05:41:07 +00003489void CWriter::visitShuffleVectorInst(ShuffleVectorInst &SVI) {
3490 Out << "(";
3491 printType(Out, SVI.getType());
3492 Out << "){ ";
3493 const VectorType *VT = SVI.getType();
3494 unsigned NumElts = VT->getNumElements();
3495 const Type *EltTy = VT->getElementType();
3496
3497 for (unsigned i = 0; i != NumElts; ++i) {
3498 if (i) Out << ", ";
3499 int SrcVal = SVI.getMaskValue(i);
3500 if ((unsigned)SrcVal >= NumElts*2) {
3501 Out << " 0/*undef*/ ";
3502 } else {
3503 Value *Op = SVI.getOperand((unsigned)SrcVal >= NumElts);
3504 if (isa<Instruction>(Op)) {
3505 // Do an extractelement of this value from the appropriate input.
3506 Out << "((";
3507 printType(Out, PointerType::getUnqual(EltTy));
3508 Out << ")(&" << GetValueName(Op)
Duncan Sandsf6890712008-05-27 11:50:51 +00003509 << "))[" << (SrcVal & (NumElts-1)) << "]";
Chris Lattnerf858a042008-03-02 05:41:07 +00003510 } else if (isa<ConstantAggregateZero>(Op) || isa<UndefValue>(Op)) {
3511 Out << "0";
3512 } else {
Duncan Sandsf6890712008-05-27 11:50:51 +00003513 printConstant(cast<ConstantVector>(Op)->getOperand(SrcVal &
Dan Gohmanad831302008-07-24 17:57:48 +00003514 (NumElts-1)),
3515 false);
Chris Lattnerf858a042008-03-02 05:41:07 +00003516 }
3517 }
3518 }
3519 Out << "}";
3520}
Chris Lattnera5f0bc02008-03-02 03:57:08 +00003521
Dan Gohman5d995b02008-06-02 21:30:49 +00003522void CWriter::visitInsertValueInst(InsertValueInst &IVI) {
3523 // Start by copying the entire aggregate value into the result variable.
3524 writeOperand(IVI.getOperand(0));
3525 Out << ";\n ";
3526
3527 // Then do the insert to update the field.
3528 Out << GetValueName(&IVI);
3529 for (const unsigned *b = IVI.idx_begin(), *i = b, *e = IVI.idx_end();
3530 i != e; ++i) {
3531 const Type *IndexedTy =
3532 ExtractValueInst::getIndexedType(IVI.getOperand(0)->getType(), b, i+1);
Duncan Sands10343d92010-02-16 11:11:14 +00003533 if (IndexedTy->isArrayTy())
Dan Gohman5d995b02008-06-02 21:30:49 +00003534 Out << ".array[" << *i << "]";
3535 else
3536 Out << ".field" << *i;
3537 }
3538 Out << " = ";
3539 writeOperand(IVI.getOperand(1));
3540}
3541
3542void CWriter::visitExtractValueInst(ExtractValueInst &EVI) {
3543 Out << "(";
3544 if (isa<UndefValue>(EVI.getOperand(0))) {
3545 Out << "(";
3546 printType(Out, EVI.getType());
3547 Out << ") 0/*UNDEF*/";
3548 } else {
3549 Out << GetValueName(EVI.getOperand(0));
3550 for (const unsigned *b = EVI.idx_begin(), *i = b, *e = EVI.idx_end();
3551 i != e; ++i) {
3552 const Type *IndexedTy =
3553 ExtractValueInst::getIndexedType(EVI.getOperand(0)->getType(), b, i+1);
Duncan Sands10343d92010-02-16 11:11:14 +00003554 if (IndexedTy->isArrayTy())
Dan Gohman5d995b02008-06-02 21:30:49 +00003555 Out << ".array[" << *i << "]";
3556 else
3557 Out << ".field" << *i;
3558 }
3559 }
3560 Out << ")";
3561}
3562
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003563//===----------------------------------------------------------------------===//
3564// External Interface declaration
3565//===----------------------------------------------------------------------===//
3566
Dan Gohman62c02922010-05-11 19:57:55 +00003567bool CTargetMachine::addPassesToEmitFile(PassManagerBase &PM,
3568 formatted_raw_ostream &o,
3569 CodeGenFileType FileType,
3570 CodeGenOpt::Level OptLevel,
3571 bool DisableVerify) {
Chris Lattner53f24982010-02-02 21:06:45 +00003572 if (FileType != TargetMachine::CGFT_AssemblyFile) return true;
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003573
Gordon Henriksendf87fdc2008-01-07 01:30:38 +00003574 PM.add(createGCLoweringPass());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003575 PM.add(createLowerInvokePass());
3576 PM.add(createCFGSimplificationPass()); // clean up after lower invoke.
3577 PM.add(new CBackendNameAllUsedStructsAndMergeFunctions());
3578 PM.add(new CWriter(o));
Gordon Henriksen1aed5992008-08-17 18:44:35 +00003579 PM.add(createGCInfoDeleter());
Dan Gohmanf17a25c2007-07-18 16:29:46 +00003580 return false;
3581}