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Chris Lattner6c2e2e52002-11-19 22:04:49 +00001//===- CloneFunction.cpp - Clone a function into another function ---------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
John Criswellb576c942003-10-20 19:43:21 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanfd939082005-04-21 23:48:37 +00007//
John Criswellb576c942003-10-20 19:43:21 +00008//===----------------------------------------------------------------------===//
Chris Lattner6c2e2e52002-11-19 22:04:49 +00009//
10// This file implements the CloneFunctionInto interface, which is used as the
11// low-level function cloner. This is used by the CloneFunction and function
12// inliner to do the dirty work of copying the body of a function around.
13//
14//===----------------------------------------------------------------------===//
Chris Lattnerfa703a42002-03-29 19:03:54 +000015
Chris Lattner309f1932002-11-19 20:59:41 +000016#include "llvm/Transforms/Utils/Cloning.h"
Chris Lattnera4c29d22006-01-13 18:39:17 +000017#include "llvm/Constants.h"
Chris Lattner5a8932f2002-11-19 23:12:22 +000018#include "llvm/DerivedTypes.h"
Chris Lattnera4c29d22006-01-13 18:39:17 +000019#include "llvm/Instructions.h"
Nate Begeman4be30ac2008-04-25 06:37:06 +000020#include "llvm/GlobalVariable.h"
Chris Lattnerfa703a42002-03-29 19:03:54 +000021#include "llvm/Function.h"
Chris Lattner35033ef2006-06-01 19:19:23 +000022#include "llvm/Support/CFG.h"
Reid Spencer9133fe22007-02-05 23:32:05 +000023#include "llvm/Support/Compiler.h"
Anton Korobeynikov344ef192007-11-09 12:27:04 +000024#include "llvm/Transforms/Utils/ValueMapper.h"
Chris Lattner79066fa2007-01-30 23:46:24 +000025#include "llvm/Analysis/ConstantFolding.h"
Chris Lattner9fa038d2007-01-30 23:13:49 +000026#include "llvm/ADT/SmallVector.h"
Chris Lattner5e665f52007-02-03 00:08:31 +000027#include <map>
Chris Lattnerf7703df2004-01-09 06:12:26 +000028using namespace llvm;
Brian Gaeked0fde302003-11-11 22:41:34 +000029
Chris Lattner17d145d2003-04-18 03:50:09 +000030// CloneBasicBlock - See comments in Cloning.h
Chris Lattnerf7703df2004-01-09 06:12:26 +000031BasicBlock *llvm::CloneBasicBlock(const BasicBlock *BB,
Chris Lattner5e665f52007-02-03 00:08:31 +000032 DenseMap<const Value*, Value*> &ValueMap,
Chris Lattnera4c29d22006-01-13 18:39:17 +000033 const char *NameSuffix, Function *F,
34 ClonedCodeInfo *CodeInfo) {
Gabor Greif051a9502008-04-06 20:25:17 +000035 BasicBlock *NewBB = BasicBlock::Create("", F);
Chris Lattner17d145d2003-04-18 03:50:09 +000036 if (BB->hasName()) NewBB->setName(BB->getName()+NameSuffix);
37
Chris Lattnera4c29d22006-01-13 18:39:17 +000038 bool hasCalls = false, hasDynamicAllocas = false, hasStaticAllocas = false;
39
40 // Loop over all instructions, and copy them over.
Chris Lattner17d145d2003-04-18 03:50:09 +000041 for (BasicBlock::const_iterator II = BB->begin(), IE = BB->end();
42 II != IE; ++II) {
43 Instruction *NewInst = II->clone();
44 if (II->hasName())
45 NewInst->setName(II->getName()+NameSuffix);
46 NewBB->getInstList().push_back(NewInst);
47 ValueMap[II] = NewInst; // Add instruction map to value.
Chris Lattnera4c29d22006-01-13 18:39:17 +000048
49 hasCalls |= isa<CallInst>(II);
50 if (const AllocaInst *AI = dyn_cast<AllocaInst>(II)) {
51 if (isa<ConstantInt>(AI->getArraySize()))
52 hasStaticAllocas = true;
53 else
54 hasDynamicAllocas = true;
55 }
56 }
57
58 if (CodeInfo) {
59 CodeInfo->ContainsCalls |= hasCalls;
60 CodeInfo->ContainsUnwinds |= isa<UnwindInst>(BB->getTerminator());
61 CodeInfo->ContainsDynamicAllocas |= hasDynamicAllocas;
62 CodeInfo->ContainsDynamicAllocas |= hasStaticAllocas &&
Dan Gohmanecb7a772007-03-22 16:38:57 +000063 BB != &BB->getParent()->getEntryBlock();
Chris Lattner17d145d2003-04-18 03:50:09 +000064 }
65 return NewBB;
66}
67
Chris Lattnerfa703a42002-03-29 19:03:54 +000068// Clone OldFunc into NewFunc, transforming the old arguments into references to
69// ArgMap values.
70//
Chris Lattnerf7703df2004-01-09 06:12:26 +000071void llvm::CloneFunctionInto(Function *NewFunc, const Function *OldFunc,
Chris Lattner5e665f52007-02-03 00:08:31 +000072 DenseMap<const Value*, Value*> &ValueMap,
Chris Lattnerf7703df2004-01-09 06:12:26 +000073 std::vector<ReturnInst*> &Returns,
Chris Lattnera4c29d22006-01-13 18:39:17 +000074 const char *NameSuffix, ClonedCodeInfo *CodeInfo) {
Chris Lattnerdcd80402002-11-19 21:54:07 +000075 assert(NameSuffix && "NameSuffix cannot be null!");
Misha Brukmanfd939082005-04-21 23:48:37 +000076
Chris Lattnerd1801552002-11-19 22:54:01 +000077#ifndef NDEBUG
Chris Lattnera4c29d22006-01-13 18:39:17 +000078 for (Function::const_arg_iterator I = OldFunc->arg_begin(),
79 E = OldFunc->arg_end(); I != E; ++I)
Chris Lattnerd1801552002-11-19 22:54:01 +000080 assert(ValueMap.count(I) && "No mapping from source argument specified!");
81#endif
Chris Lattnerfa703a42002-03-29 19:03:54 +000082
Duncan Sands28c3cff2008-05-26 19:58:59 +000083 // Clone any attributes.
84 NewFunc->copyAttributesFrom(OldFunc);
Anton Korobeynikov9e49f1b2008-03-23 16:03:00 +000085
Chris Lattnerfa703a42002-03-29 19:03:54 +000086 // Loop over all of the basic blocks in the function, cloning them as
Chris Lattnerdcd80402002-11-19 21:54:07 +000087 // appropriate. Note that we save BE this way in order to handle cloning of
88 // recursive functions into themselves.
Chris Lattnerfa703a42002-03-29 19:03:54 +000089 //
90 for (Function::const_iterator BI = OldFunc->begin(), BE = OldFunc->end();
91 BI != BE; ++BI) {
Chris Lattner18961502002-06-25 16:12:52 +000092 const BasicBlock &BB = *BI;
Misha Brukmanfd939082005-04-21 23:48:37 +000093
Chris Lattner17d145d2003-04-18 03:50:09 +000094 // Create a new basic block and copy instructions into it!
Chris Lattnera4c29d22006-01-13 18:39:17 +000095 BasicBlock *CBB = CloneBasicBlock(&BB, ValueMap, NameSuffix, NewFunc,
96 CodeInfo);
Chris Lattner18961502002-06-25 16:12:52 +000097 ValueMap[&BB] = CBB; // Add basic block mapping.
Chris Lattnerfa703a42002-03-29 19:03:54 +000098
Chris Lattnerdcd80402002-11-19 21:54:07 +000099 if (ReturnInst *RI = dyn_cast<ReturnInst>(CBB->getTerminator()))
100 Returns.push_back(RI);
Chris Lattnerfa703a42002-03-29 19:03:54 +0000101 }
102
Misha Brukmanfd939082005-04-21 23:48:37 +0000103 // Loop over all of the instructions in the function, fixing up operand
Chris Lattnerfa703a42002-03-29 19:03:54 +0000104 // references as we go. This uses ValueMap to do all the hard work.
105 //
Chris Lattnera33ceaa2004-02-04 21:44:26 +0000106 for (Function::iterator BB = cast<BasicBlock>(ValueMap[OldFunc->begin()]),
Nick Lewycky280a6e62008-04-25 16:53:59 +0000107 BE = NewFunc->end(); BB != BE; ++BB)
Chris Lattnerfa703a42002-03-29 19:03:54 +0000108 // Loop over all instructions, fixing each one as we find it...
Chris Lattnera33ceaa2004-02-04 21:44:26 +0000109 for (BasicBlock::iterator II = BB->begin(); II != BB->end(); ++II)
Chris Lattner18961502002-06-25 16:12:52 +0000110 RemapInstruction(II, ValueMap);
Chris Lattnerfa703a42002-03-29 19:03:54 +0000111}
Chris Lattner5a8932f2002-11-19 23:12:22 +0000112
113/// CloneFunction - Return a copy of the specified function, but without
114/// embedding the function into another module. Also, any references specified
115/// in the ValueMap are changed to refer to their mapped value instead of the
116/// original one. If any of the arguments to the function are in the ValueMap,
117/// the arguments are deleted from the resultant function. The ValueMap is
118/// updated to include mappings from all of the instructions and basicblocks in
119/// the function from their old to new values.
120///
Chris Lattnerf7703df2004-01-09 06:12:26 +0000121Function *llvm::CloneFunction(const Function *F,
Chris Lattner5e665f52007-02-03 00:08:31 +0000122 DenseMap<const Value*, Value*> &ValueMap,
Chris Lattnera4c29d22006-01-13 18:39:17 +0000123 ClonedCodeInfo *CodeInfo) {
Chris Lattner5a8932f2002-11-19 23:12:22 +0000124 std::vector<const Type*> ArgTypes;
125
126 // The user might be deleting arguments to the function by specifying them in
127 // the ValueMap. If so, we need to not add the arguments to the arg ty vector
128 //
Chris Lattnera4c29d22006-01-13 18:39:17 +0000129 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
130 I != E; ++I)
Chris Lattner5a8932f2002-11-19 23:12:22 +0000131 if (ValueMap.count(I) == 0) // Haven't mapped the argument to anything yet?
132 ArgTypes.push_back(I->getType());
133
134 // Create a new function type...
135 FunctionType *FTy = FunctionType::get(F->getFunctionType()->getReturnType(),
136 ArgTypes, F->getFunctionType()->isVarArg());
137
138 // Create the new function...
Gabor Greif051a9502008-04-06 20:25:17 +0000139 Function *NewF = Function::Create(FTy, F->getLinkage(), F->getName());
Misha Brukmanfd939082005-04-21 23:48:37 +0000140
Chris Lattner5a8932f2002-11-19 23:12:22 +0000141 // Loop over the arguments, copying the names of the mapped arguments over...
Chris Lattnere4d5c442005-03-15 04:54:21 +0000142 Function::arg_iterator DestI = NewF->arg_begin();
Chris Lattnera4c29d22006-01-13 18:39:17 +0000143 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
144 I != E; ++I)
Chris Lattnerc09aab02002-11-20 18:32:31 +0000145 if (ValueMap.count(I) == 0) { // Is this argument preserved?
Chris Lattner5a8932f2002-11-19 23:12:22 +0000146 DestI->setName(I->getName()); // Copy the name over...
Chris Lattnerc09aab02002-11-20 18:32:31 +0000147 ValueMap[I] = DestI++; // Add mapping to ValueMap
Chris Lattner5a8932f2002-11-19 23:12:22 +0000148 }
149
150 std::vector<ReturnInst*> Returns; // Ignore returns cloned...
Chris Lattnera4c29d22006-01-13 18:39:17 +0000151 CloneFunctionInto(NewF, F, ValueMap, Returns, "", CodeInfo);
Misha Brukmanfd939082005-04-21 23:48:37 +0000152 return NewF;
Chris Lattner5a8932f2002-11-19 23:12:22 +0000153}
Brian Gaeked0fde302003-11-11 22:41:34 +0000154
Chris Lattner83f03bf2006-05-27 01:22:24 +0000155
156
157namespace {
158 /// PruningFunctionCloner - This class is a private class used to implement
159 /// the CloneAndPruneFunctionInto method.
Reid Spencer9133fe22007-02-05 23:32:05 +0000160 struct VISIBILITY_HIDDEN PruningFunctionCloner {
Chris Lattner83f03bf2006-05-27 01:22:24 +0000161 Function *NewFunc;
162 const Function *OldFunc;
Chris Lattner5e665f52007-02-03 00:08:31 +0000163 DenseMap<const Value*, Value*> &ValueMap;
Chris Lattner83f03bf2006-05-27 01:22:24 +0000164 std::vector<ReturnInst*> &Returns;
165 const char *NameSuffix;
166 ClonedCodeInfo *CodeInfo;
Chris Lattner1dfdf822007-01-30 23:22:39 +0000167 const TargetData *TD;
Chris Lattner83f03bf2006-05-27 01:22:24 +0000168
169 public:
170 PruningFunctionCloner(Function *newFunc, const Function *oldFunc,
Chris Lattner5e665f52007-02-03 00:08:31 +0000171 DenseMap<const Value*, Value*> &valueMap,
Chris Lattner83f03bf2006-05-27 01:22:24 +0000172 std::vector<ReturnInst*> &returns,
173 const char *nameSuffix,
Chris Lattner1dfdf822007-01-30 23:22:39 +0000174 ClonedCodeInfo *codeInfo,
175 const TargetData *td)
Chris Lattner83f03bf2006-05-27 01:22:24 +0000176 : NewFunc(newFunc), OldFunc(oldFunc), ValueMap(valueMap), Returns(returns),
Chris Lattner1dfdf822007-01-30 23:22:39 +0000177 NameSuffix(nameSuffix), CodeInfo(codeInfo), TD(td) {
Chris Lattner83f03bf2006-05-27 01:22:24 +0000178 }
179
180 /// CloneBlock - The specified block is found to be reachable, clone it and
181 /// anything that it can reach.
Chris Lattner67ef2412007-03-02 03:11:20 +0000182 void CloneBlock(const BasicBlock *BB,
183 std::vector<const BasicBlock*> &ToClone);
Chris Lattner83f03bf2006-05-27 01:22:24 +0000184
185 public:
186 /// ConstantFoldMappedInstruction - Constant fold the specified instruction,
187 /// mapping its operands through ValueMap if they are available.
188 Constant *ConstantFoldMappedInstruction(const Instruction *I);
189 };
190}
191
192/// CloneBlock - The specified block is found to be reachable, clone it and
193/// anything that it can reach.
Chris Lattner67ef2412007-03-02 03:11:20 +0000194void PruningFunctionCloner::CloneBlock(const BasicBlock *BB,
195 std::vector<const BasicBlock*> &ToClone){
Chris Lattner83f03bf2006-05-27 01:22:24 +0000196 Value *&BBEntry = ValueMap[BB];
197
198 // Have we already cloned this block?
199 if (BBEntry) return;
200
201 // Nope, clone it now.
202 BasicBlock *NewBB;
Gabor Greif051a9502008-04-06 20:25:17 +0000203 BBEntry = NewBB = BasicBlock::Create();
Chris Lattner83f03bf2006-05-27 01:22:24 +0000204 if (BB->hasName()) NewBB->setName(BB->getName()+NameSuffix);
205
206 bool hasCalls = false, hasDynamicAllocas = false, hasStaticAllocas = false;
207
208 // Loop over all instructions, and copy them over, DCE'ing as we go. This
209 // loop doesn't include the terminator.
Chris Lattner35033ef2006-06-01 19:19:23 +0000210 for (BasicBlock::const_iterator II = BB->begin(), IE = --BB->end();
Chris Lattner83f03bf2006-05-27 01:22:24 +0000211 II != IE; ++II) {
212 // If this instruction constant folds, don't bother cloning the instruction,
213 // instead, just add the constant to the value map.
214 if (Constant *C = ConstantFoldMappedInstruction(II)) {
215 ValueMap[II] = C;
216 continue;
217 }
218
219 Instruction *NewInst = II->clone();
220 if (II->hasName())
221 NewInst->setName(II->getName()+NameSuffix);
222 NewBB->getInstList().push_back(NewInst);
223 ValueMap[II] = NewInst; // Add instruction map to value.
224
225 hasCalls |= isa<CallInst>(II);
226 if (const AllocaInst *AI = dyn_cast<AllocaInst>(II)) {
227 if (isa<ConstantInt>(AI->getArraySize()))
228 hasStaticAllocas = true;
229 else
230 hasDynamicAllocas = true;
231 }
232 }
233
Chris Lattner35033ef2006-06-01 19:19:23 +0000234 // Finally, clone over the terminator.
235 const TerminatorInst *OldTI = BB->getTerminator();
236 bool TerminatorDone = false;
237 if (const BranchInst *BI = dyn_cast<BranchInst>(OldTI)) {
238 if (BI->isConditional()) {
239 // If the condition was a known constant in the callee...
Zhou Sheng6b6b6ef2007-01-11 12:24:14 +0000240 ConstantInt *Cond = dyn_cast<ConstantInt>(BI->getCondition());
241 // Or is a known constant in the caller...
242 if (Cond == 0)
243 Cond = dyn_cast_or_null<ConstantInt>(ValueMap[BI->getCondition()]);
244
245 // Constant fold to uncond branch!
246 if (Cond) {
Reid Spencer579dca12007-01-12 04:24:46 +0000247 BasicBlock *Dest = BI->getSuccessor(!Cond->getZExtValue());
Gabor Greif051a9502008-04-06 20:25:17 +0000248 ValueMap[OldTI] = BranchInst::Create(Dest, NewBB);
Chris Lattner67ef2412007-03-02 03:11:20 +0000249 ToClone.push_back(Dest);
Chris Lattner35033ef2006-06-01 19:19:23 +0000250 TerminatorDone = true;
251 }
252 }
253 } else if (const SwitchInst *SI = dyn_cast<SwitchInst>(OldTI)) {
254 // If switching on a value known constant in the caller.
255 ConstantInt *Cond = dyn_cast<ConstantInt>(SI->getCondition());
256 if (Cond == 0) // Or known constant after constant prop in the callee...
257 Cond = dyn_cast_or_null<ConstantInt>(ValueMap[SI->getCondition()]);
258 if (Cond) { // Constant fold to uncond branch!
259 BasicBlock *Dest = SI->getSuccessor(SI->findCaseValue(Cond));
Gabor Greif051a9502008-04-06 20:25:17 +0000260 ValueMap[OldTI] = BranchInst::Create(Dest, NewBB);
Chris Lattner67ef2412007-03-02 03:11:20 +0000261 ToClone.push_back(Dest);
Chris Lattner35033ef2006-06-01 19:19:23 +0000262 TerminatorDone = true;
263 }
264 }
265
266 if (!TerminatorDone) {
267 Instruction *NewInst = OldTI->clone();
268 if (OldTI->hasName())
269 NewInst->setName(OldTI->getName()+NameSuffix);
270 NewBB->getInstList().push_back(NewInst);
271 ValueMap[OldTI] = NewInst; // Add instruction map to value.
272
273 // Recursively clone any reachable successor blocks.
274 const TerminatorInst *TI = BB->getTerminator();
275 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i)
Chris Lattner67ef2412007-03-02 03:11:20 +0000276 ToClone.push_back(TI->getSuccessor(i));
Chris Lattner35033ef2006-06-01 19:19:23 +0000277 }
278
Chris Lattner83f03bf2006-05-27 01:22:24 +0000279 if (CodeInfo) {
280 CodeInfo->ContainsCalls |= hasCalls;
Chris Lattner35033ef2006-06-01 19:19:23 +0000281 CodeInfo->ContainsUnwinds |= isa<UnwindInst>(OldTI);
Chris Lattner83f03bf2006-05-27 01:22:24 +0000282 CodeInfo->ContainsDynamicAllocas |= hasDynamicAllocas;
283 CodeInfo->ContainsDynamicAllocas |= hasStaticAllocas &&
284 BB != &BB->getParent()->front();
285 }
286
287 if (ReturnInst *RI = dyn_cast<ReturnInst>(NewBB->getTerminator()))
288 Returns.push_back(RI);
Chris Lattner83f03bf2006-05-27 01:22:24 +0000289}
290
291/// ConstantFoldMappedInstruction - Constant fold the specified instruction,
292/// mapping its operands through ValueMap if they are available.
293Constant *PruningFunctionCloner::
294ConstantFoldMappedInstruction(const Instruction *I) {
Chris Lattner9fa038d2007-01-30 23:13:49 +0000295 SmallVector<Constant*, 8> Ops;
Chris Lattner83f03bf2006-05-27 01:22:24 +0000296 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
297 if (Constant *Op = dyn_cast_or_null<Constant>(MapValue(I->getOperand(i),
298 ValueMap)))
299 Ops.push_back(Op);
300 else
301 return 0; // All operands not constant!
302
Chris Lattnerf286f6f2007-12-10 22:53:04 +0000303 if (const CmpInst *CI = dyn_cast<CmpInst>(I))
304 return ConstantFoldCompareInstOperands(CI->getPredicate(),
305 &Ops[0], Ops.size(), TD);
Nate Begeman4be30ac2008-04-25 06:37:06 +0000306
Nate Begeman4182db42008-04-25 17:45:52 +0000307 if (const LoadInst *LI = dyn_cast<LoadInst>(I))
308 if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Ops[0]))
Nate Begeman4be30ac2008-04-25 06:37:06 +0000309 if (!LI->isVolatile() && CE->getOpcode() == Instruction::GetElementPtr)
310 if (GlobalVariable *GV = dyn_cast<GlobalVariable>(CE->getOperand(0)))
311 if (GV->isConstant() && !GV->isDeclaration())
312 return ConstantFoldLoadThroughGEPConstantExpr(GV->getInitializer(),
313 CE);
314
315 return ConstantFoldInstOperands(I->getOpcode(), I->getType(), &Ops[0],
316 Ops.size(), TD);
Chris Lattner83f03bf2006-05-27 01:22:24 +0000317}
318
Chris Lattner83f03bf2006-05-27 01:22:24 +0000319/// CloneAndPruneFunctionInto - This works exactly like CloneFunctionInto,
320/// except that it does some simple constant prop and DCE on the fly. The
321/// effect of this is to copy significantly less code in cases where (for
322/// example) a function call with constant arguments is inlined, and those
323/// constant arguments cause a significant amount of code in the callee to be
Duncan Sandsdc024672007-11-27 13:23:08 +0000324/// dead. Since this doesn't produce an exact copy of the input, it can't be
Chris Lattner83f03bf2006-05-27 01:22:24 +0000325/// used for things like CloneFunction or CloneModule.
326void llvm::CloneAndPruneFunctionInto(Function *NewFunc, const Function *OldFunc,
Chris Lattner5e665f52007-02-03 00:08:31 +0000327 DenseMap<const Value*, Value*> &ValueMap,
Chris Lattner83f03bf2006-05-27 01:22:24 +0000328 std::vector<ReturnInst*> &Returns,
329 const char *NameSuffix,
Chris Lattner1dfdf822007-01-30 23:22:39 +0000330 ClonedCodeInfo *CodeInfo,
331 const TargetData *TD) {
Chris Lattner83f03bf2006-05-27 01:22:24 +0000332 assert(NameSuffix && "NameSuffix cannot be null!");
333
334#ifndef NDEBUG
Jeff Cohend41b30d2006-11-05 19:31:28 +0000335 for (Function::const_arg_iterator II = OldFunc->arg_begin(),
336 E = OldFunc->arg_end(); II != E; ++II)
337 assert(ValueMap.count(II) && "No mapping from source argument specified!");
Chris Lattner83f03bf2006-05-27 01:22:24 +0000338#endif
Duncan Sands28c3cff2008-05-26 19:58:59 +0000339
340 PruningFunctionCloner PFC(NewFunc, OldFunc, ValueMap, Returns,
Chris Lattner1dfdf822007-01-30 23:22:39 +0000341 NameSuffix, CodeInfo, TD);
Chris Lattner83f03bf2006-05-27 01:22:24 +0000342
343 // Clone the entry block, and anything recursively reachable from it.
Chris Lattner67ef2412007-03-02 03:11:20 +0000344 std::vector<const BasicBlock*> CloneWorklist;
345 CloneWorklist.push_back(&OldFunc->getEntryBlock());
346 while (!CloneWorklist.empty()) {
347 const BasicBlock *BB = CloneWorklist.back();
348 CloneWorklist.pop_back();
349 PFC.CloneBlock(BB, CloneWorklist);
350 }
Chris Lattner83f03bf2006-05-27 01:22:24 +0000351
352 // Loop over all of the basic blocks in the old function. If the block was
353 // reachable, we have cloned it and the old block is now in the value map:
354 // insert it into the new function in the right order. If not, ignore it.
355 //
Chris Lattner35033ef2006-06-01 19:19:23 +0000356 // Defer PHI resolution until rest of function is resolved.
357 std::vector<const PHINode*> PHIToResolve;
Chris Lattner83f03bf2006-05-27 01:22:24 +0000358 for (Function::const_iterator BI = OldFunc->begin(), BE = OldFunc->end();
359 BI != BE; ++BI) {
360 BasicBlock *NewBB = cast_or_null<BasicBlock>(ValueMap[BI]);
361 if (NewBB == 0) continue; // Dead block.
Chris Lattner35033ef2006-06-01 19:19:23 +0000362
Chris Lattner83f03bf2006-05-27 01:22:24 +0000363 // Add the new block to the new function.
364 NewFunc->getBasicBlockList().push_back(NewBB);
365
366 // Loop over all of the instructions in the block, fixing up operand
367 // references as we go. This uses ValueMap to do all the hard work.
368 //
369 BasicBlock::iterator I = NewBB->begin();
370
371 // Handle PHI nodes specially, as we have to remove references to dead
372 // blocks.
373 if (PHINode *PN = dyn_cast<PHINode>(I)) {
Chris Lattner35033ef2006-06-01 19:19:23 +0000374 // Skip over all PHI nodes, remembering them for later.
375 BasicBlock::const_iterator OldI = BI->begin();
376 for (; (PN = dyn_cast<PHINode>(I)); ++I, ++OldI)
377 PHIToResolve.push_back(cast<PHINode>(OldI));
Chris Lattner83f03bf2006-05-27 01:22:24 +0000378 }
379
380 // Otherwise, remap the rest of the instructions normally.
381 for (; I != NewBB->end(); ++I)
382 RemapInstruction(I, ValueMap);
383 }
Chris Lattner35033ef2006-06-01 19:19:23 +0000384
385 // Defer PHI resolution until rest of function is resolved, PHI resolution
386 // requires the CFG to be up-to-date.
387 for (unsigned phino = 0, e = PHIToResolve.size(); phino != e; ) {
388 const PHINode *OPN = PHIToResolve[phino];
Chris Lattner35033ef2006-06-01 19:19:23 +0000389 unsigned NumPreds = OPN->getNumIncomingValues();
Chris Lattner35033ef2006-06-01 19:19:23 +0000390 const BasicBlock *OldBB = OPN->getParent();
391 BasicBlock *NewBB = cast<BasicBlock>(ValueMap[OldBB]);
392
393 // Map operands for blocks that are live and remove operands for blocks
394 // that are dead.
395 for (; phino != PHIToResolve.size() &&
396 PHIToResolve[phino]->getParent() == OldBB; ++phino) {
397 OPN = PHIToResolve[phino];
398 PHINode *PN = cast<PHINode>(ValueMap[OPN]);
399 for (unsigned pred = 0, e = NumPreds; pred != e; ++pred) {
400 if (BasicBlock *MappedBlock =
401 cast_or_null<BasicBlock>(ValueMap[PN->getIncomingBlock(pred)])) {
402 Value *InVal = MapValue(PN->getIncomingValue(pred), ValueMap);
403 assert(InVal && "Unknown input value?");
404 PN->setIncomingValue(pred, InVal);
405 PN->setIncomingBlock(pred, MappedBlock);
406 } else {
407 PN->removeIncomingValue(pred, false);
408 --pred, --e; // Revisit the next entry.
409 }
410 }
411 }
412
413 // The loop above has removed PHI entries for those blocks that are dead
414 // and has updated others. However, if a block is live (i.e. copied over)
415 // but its terminator has been changed to not go to this block, then our
416 // phi nodes will have invalid entries. Update the PHI nodes in this
417 // case.
418 PHINode *PN = cast<PHINode>(NewBB->begin());
419 NumPreds = std::distance(pred_begin(NewBB), pred_end(NewBB));
420 if (NumPreds != PN->getNumIncomingValues()) {
421 assert(NumPreds < PN->getNumIncomingValues());
422 // Count how many times each predecessor comes to this block.
423 std::map<BasicBlock*, unsigned> PredCount;
424 for (pred_iterator PI = pred_begin(NewBB), E = pred_end(NewBB);
425 PI != E; ++PI)
426 --PredCount[*PI];
427
428 // Figure out how many entries to remove from each PHI.
429 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i)
430 ++PredCount[PN->getIncomingBlock(i)];
431
432 // At this point, the excess predecessor entries are positive in the
433 // map. Loop over all of the PHIs and remove excess predecessor
434 // entries.
435 BasicBlock::iterator I = NewBB->begin();
436 for (; (PN = dyn_cast<PHINode>(I)); ++I) {
437 for (std::map<BasicBlock*, unsigned>::iterator PCI =PredCount.begin(),
438 E = PredCount.end(); PCI != E; ++PCI) {
439 BasicBlock *Pred = PCI->first;
440 for (unsigned NumToRemove = PCI->second; NumToRemove; --NumToRemove)
441 PN->removeIncomingValue(Pred, false);
442 }
443 }
444 }
445
446 // If the loops above have made these phi nodes have 0 or 1 operand,
447 // replace them with undef or the input value. We must do this for
448 // correctness, because 0-operand phis are not valid.
449 PN = cast<PHINode>(NewBB->begin());
450 if (PN->getNumIncomingValues() == 0) {
451 BasicBlock::iterator I = NewBB->begin();
452 BasicBlock::const_iterator OldI = OldBB->begin();
453 while ((PN = dyn_cast<PHINode>(I++))) {
454 Value *NV = UndefValue::get(PN->getType());
455 PN->replaceAllUsesWith(NV);
456 assert(ValueMap[OldI] == PN && "ValueMap mismatch");
457 ValueMap[OldI] = NV;
458 PN->eraseFromParent();
459 ++OldI;
460 }
Chris Lattner35033ef2006-06-01 19:19:23 +0000461 }
Chris Lattner8e8eda72007-02-01 18:48:38 +0000462 // NOTE: We cannot eliminate single entry phi nodes here, because of
463 // ValueMap. Single entry phi nodes can have multiple ValueMap entries
464 // pointing at them. Thus, deleting one would require scanning the ValueMap
465 // to update any entries in it that would require that. This would be
466 // really slow.
Chris Lattner35033ef2006-06-01 19:19:23 +0000467 }
Chris Lattnera4646b62006-09-13 21:27:00 +0000468
469 // Now that the inlined function body has been fully constructed, go through
470 // and zap unconditional fall-through branches. This happen all the time when
471 // specializing code: code specialization turns conditional branches into
472 // uncond branches, and this code folds them.
473 Function::iterator I = cast<BasicBlock>(ValueMap[&OldFunc->getEntryBlock()]);
474 while (I != NewFunc->end()) {
475 BranchInst *BI = dyn_cast<BranchInst>(I->getTerminator());
476 if (!BI || BI->isConditional()) { ++I; continue; }
477
Chris Lattner8e8eda72007-02-01 18:48:38 +0000478 // Note that we can't eliminate uncond branches if the destination has
479 // single-entry PHI nodes. Eliminating the single-entry phi nodes would
480 // require scanning the ValueMap to update any entries that point to the phi
481 // node.
Chris Lattnera4646b62006-09-13 21:27:00 +0000482 BasicBlock *Dest = BI->getSuccessor(0);
Chris Lattner8e8eda72007-02-01 18:48:38 +0000483 if (!Dest->getSinglePredecessor() || isa<PHINode>(Dest->begin())) {
484 ++I; continue;
485 }
Chris Lattnera4646b62006-09-13 21:27:00 +0000486
487 // We know all single-entry PHI nodes in the inlined function have been
488 // removed, so we just need to splice the blocks.
489 BI->eraseFromParent();
490
491 // Move all the instructions in the succ to the pred.
492 I->getInstList().splice(I->end(), Dest->getInstList());
493
494 // Make all PHI nodes that referred to Dest now refer to I as their source.
495 Dest->replaceAllUsesWith(I);
496
497 // Remove the dest block.
498 Dest->eraseFromParent();
499
500 // Do not increment I, iteratively merge all things this block branches to.
501 }
Chris Lattner83f03bf2006-05-27 01:22:24 +0000502}