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Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001//===- CodeGenPrepare.cpp - Prepare a function for code generation --------===//
2//
3// 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.
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This pass munges the code in the input function to better prepare it for
Gordon Henriksena8a118b2008-05-08 17:46:35 +000011// SelectionDAG-based code generation. This works around limitations in it's
12// basic-block-at-a-time approach. It should eventually be removed.
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000013//
14//===----------------------------------------------------------------------===//
15
16#define DEBUG_TYPE "codegenprepare"
17#include "llvm/Transforms/Scalar.h"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000018#include "llvm/ADT/DenseMap.h"
19#include "llvm/ADT/SmallSet.h"
20#include "llvm/ADT/Statistic.h"
Nick Lewyckyae9f07e2013-05-08 09:00:10 +000021#include "llvm/ADT/ValueMap.h"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000022#include "llvm/Analysis/DominatorInternals.h"
23#include "llvm/Analysis/Dominators.h"
24#include "llvm/Analysis/InstructionSimplify.h"
25#include "llvm/Analysis/ProfileInfo.h"
26#include "llvm/Assembly/Writer.h"
Chandler Carruth0b8c9a82013-01-02 11:36:10 +000027#include "llvm/IR/Constants.h"
28#include "llvm/IR/DataLayout.h"
29#include "llvm/IR/DerivedTypes.h"
30#include "llvm/IR/Function.h"
31#include "llvm/IR/IRBuilder.h"
32#include "llvm/IR/InlineAsm.h"
33#include "llvm/IR/Instructions.h"
34#include "llvm/IR/IntrinsicInst.h"
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000035#include "llvm/Pass.h"
Evan Cheng9bf12b52008-02-26 02:42:37 +000036#include "llvm/Support/CallSite.h"
Evan Chenge1bcb442010-08-17 01:34:49 +000037#include "llvm/Support/CommandLine.h"
Evan Chengbdcb7262007-12-05 23:58:20 +000038#include "llvm/Support/Debug.h"
Chris Lattnerdd77df32007-04-13 20:30:56 +000039#include "llvm/Support/GetElementPtrTypeIterator.h"
Chris Lattner088a1e82008-11-25 04:42:10 +000040#include "llvm/Support/PatternMatch.h"
Chris Lattner94e8e0c2011-01-15 07:25:29 +000041#include "llvm/Support/ValueHandle.h"
Chandler Carruth06cb8ed2012-06-29 12:38:19 +000042#include "llvm/Support/raw_ostream.h"
Chandler Carruth06cb8ed2012-06-29 12:38:19 +000043#include "llvm/Target/TargetLibraryInfo.h"
44#include "llvm/Target/TargetLowering.h"
Chandler Carruth06cb8ed2012-06-29 12:38:19 +000045#include "llvm/Transforms/Utils/BasicBlockUtils.h"
46#include "llvm/Transforms/Utils/BuildLibCalls.h"
Preston Gurd2e2efd92012-09-04 18:22:17 +000047#include "llvm/Transforms/Utils/BypassSlowDivision.h"
Chandler Carruth06cb8ed2012-06-29 12:38:19 +000048#include "llvm/Transforms/Utils/Local.h"
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000049using namespace llvm;
Chris Lattner088a1e82008-11-25 04:42:10 +000050using namespace llvm::PatternMatch;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000051
Cameron Zwarich31ff1332011-01-05 17:27:27 +000052STATISTIC(NumBlocksElim, "Number of blocks eliminated");
Evan Cheng485fafc2011-03-21 01:19:09 +000053STATISTIC(NumPHIsElim, "Number of trivial PHIs eliminated");
54STATISTIC(NumGEPsElim, "Number of GEPs converted to casts");
Cameron Zwarich31ff1332011-01-05 17:27:27 +000055STATISTIC(NumCmpUses, "Number of uses of Cmp expressions replaced with uses of "
56 "sunken Cmps");
57STATISTIC(NumCastUses, "Number of uses of Cast expressions replaced with uses "
58 "of sunken Casts");
59STATISTIC(NumMemoryInsts, "Number of memory instructions whose address "
60 "computations were sunk");
Evan Cheng485fafc2011-03-21 01:19:09 +000061STATISTIC(NumExtsMoved, "Number of [s|z]ext instructions combined with loads");
62STATISTIC(NumExtUses, "Number of uses of [s|z]ext instructions optimized");
63STATISTIC(NumRetsDup, "Number of return instructions duplicated");
Devang Patelf56ea612011-08-18 00:50:51 +000064STATISTIC(NumDbgValueMoved, "Number of debug value instructions moved");
Benjamin Kramer59957502012-05-05 12:49:22 +000065STATISTIC(NumSelectsExpanded, "Number of selects turned into branches");
Jakob Stoklund Olesen7eb589d2010-09-30 20:51:52 +000066
Cameron Zwarich899eaa32011-03-11 21:52:04 +000067static cl::opt<bool> DisableBranchOpts(
68 "disable-cgp-branch-opts", cl::Hidden, cl::init(false),
69 cl::desc("Disable branch optimizations in CodeGenPrepare"));
70
Benjamin Kramer77c4ef82012-05-06 14:25:16 +000071static cl::opt<bool> DisableSelectToBranch(
72 "disable-cgp-select2branch", cl::Hidden, cl::init(false),
73 cl::desc("Disable select to branch conversion."));
Benjamin Kramer59957502012-05-05 12:49:22 +000074
Eric Christopher692bf6b2008-09-24 05:32:41 +000075namespace {
Chris Lattner3e8b6632009-09-02 06:11:42 +000076 class CodeGenPrepare : public FunctionPass {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000077 /// TLI - Keep a pointer of a TargetLowering to consult for determining
78 /// transformation profitability.
Bill Wendlingf9fd58a2013-06-19 21:07:11 +000079 const TargetMachine *TM;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000080 const TargetLowering *TLI;
Chad Rosier618c1db2011-12-01 03:08:23 +000081 const TargetLibraryInfo *TLInfo;
Cameron Zwarich80f6a502011-01-08 17:01:52 +000082 DominatorTree *DT;
Evan Cheng04149f72009-12-17 09:39:49 +000083 ProfileInfo *PFI;
Nadav Rotema94d6e82012-07-24 10:51:42 +000084
Chris Lattner75796092011-01-15 07:14:54 +000085 /// CurInstIterator - As we scan instructions optimizing them, this is the
86 /// next instruction to optimize. Xforms that can invalidate this should
87 /// update it.
88 BasicBlock::iterator CurInstIterator;
Evan Chengab631522008-12-19 18:03:11 +000089
Evan Cheng485fafc2011-03-21 01:19:09 +000090 /// Keeps track of non-local addresses that have been sunk into a block.
91 /// This allows us to avoid inserting duplicate code for blocks with
92 /// multiple load/stores of the same address.
Nick Lewyckyae9f07e2013-05-08 09:00:10 +000093 ValueMap<Value*, Value*> SunkAddrs;
Cameron Zwarich8c3527e2011-01-06 00:42:50 +000094
Devang Patel52e37df2011-03-24 15:35:25 +000095 /// ModifiedDT - If CFG is modified in anyway, dominator tree may need to
Evan Cheng485fafc2011-03-21 01:19:09 +000096 /// be updated.
Devang Patel52e37df2011-03-24 15:35:25 +000097 bool ModifiedDT;
Evan Cheng485fafc2011-03-21 01:19:09 +000098
Benjamin Kramer59957502012-05-05 12:49:22 +000099 /// OptSize - True if optimizing for size.
100 bool OptSize;
101
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000102 public:
Nick Lewyckyecd94c82007-05-06 13:37:16 +0000103 static char ID; // Pass identification, replacement for typeid
Bill Wendlingf9fd58a2013-06-19 21:07:11 +0000104 explicit CodeGenPrepare(const TargetMachine *TM = 0)
105 : FunctionPass(ID), TM(TM), TLI(0) {
Owen Anderson081c34b2010-10-19 17:21:58 +0000106 initializeCodeGenPreparePass(*PassRegistry::getPassRegistry());
107 }
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000108 bool runOnFunction(Function &F);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000109
Evan Chenga16422f2012-12-21 01:48:14 +0000110 const char *getPassName() const { return "CodeGen Prepare"; }
111
Andreas Neustifterad809812009-09-16 09:26:52 +0000112 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Cameron Zwarich80f6a502011-01-08 17:01:52 +0000113 AU.addPreserved<DominatorTree>();
Andreas Neustifterad809812009-09-16 09:26:52 +0000114 AU.addPreserved<ProfileInfo>();
Chad Rosier618c1db2011-12-01 03:08:23 +0000115 AU.addRequired<TargetLibraryInfo>();
Andreas Neustifterad809812009-09-16 09:26:52 +0000116 }
117
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000118 private:
Nadav Rotem3e883732012-08-14 05:19:07 +0000119 bool EliminateFallThrough(Function &F);
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000120 bool EliminateMostlyEmptyBlocks(Function &F);
121 bool CanMergeBlocks(const BasicBlock *BB, const BasicBlock *DestBB) const;
122 void EliminateMostlyEmptyBlock(BasicBlock *BB);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000123 bool OptimizeBlock(BasicBlock &BB);
Cameron Zwarichc0611012011-01-06 02:37:26 +0000124 bool OptimizeInst(Instruction *I);
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000125 bool OptimizeMemoryInst(Instruction *I, Value *Addr, Type *AccessTy);
Chris Lattner75796092011-01-15 07:14:54 +0000126 bool OptimizeInlineAsmInst(CallInst *CS);
Eric Christopher040056f2010-03-11 02:41:03 +0000127 bool OptimizeCallInst(CallInst *CI);
Dan Gohmanb00f2362009-10-16 20:59:35 +0000128 bool MoveExtToFormExtLoad(Instruction *I);
Evan Chengbdcb7262007-12-05 23:58:20 +0000129 bool OptimizeExtUses(Instruction *I);
Benjamin Kramer59957502012-05-05 12:49:22 +0000130 bool OptimizeSelectInst(SelectInst *SI);
Benjamin Kramer4ccb49a2012-11-23 19:17:06 +0000131 bool DupRetToEnableTailCallOpts(BasicBlock *BB);
Devang Patelf56ea612011-08-18 00:50:51 +0000132 bool PlaceDbgValues(Function &F);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000133 };
134}
Devang Patel794fd752007-05-01 21:15:47 +0000135
Devang Patel19974732007-05-03 01:11:54 +0000136char CodeGenPrepare::ID = 0;
Chad Rosier618c1db2011-12-01 03:08:23 +0000137INITIALIZE_PASS_BEGIN(CodeGenPrepare, "codegenprepare",
138 "Optimize for code generation", false, false)
139INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfo)
140INITIALIZE_PASS_END(CodeGenPrepare, "codegenprepare",
Owen Andersonce665bd2010-10-07 22:25:06 +0000141 "Optimize for code generation", false, false)
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000142
Bill Wendlingf9fd58a2013-06-19 21:07:11 +0000143FunctionPass *llvm::createCodeGenPreparePass(const TargetMachine *TM) {
144 return new CodeGenPrepare(TM);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000145}
146
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000147bool CodeGenPrepare::runOnFunction(Function &F) {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000148 bool EverMadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000149
Devang Patel52e37df2011-03-24 15:35:25 +0000150 ModifiedDT = false;
Bill Wendlingf9fd58a2013-06-19 21:07:11 +0000151 if (TM) TLI = TM->getTargetLowering();
Chad Rosier618c1db2011-12-01 03:08:23 +0000152 TLInfo = &getAnalysis<TargetLibraryInfo>();
Cameron Zwarich80f6a502011-01-08 17:01:52 +0000153 DT = getAnalysisIfAvailable<DominatorTree>();
Evan Cheng04149f72009-12-17 09:39:49 +0000154 PFI = getAnalysisIfAvailable<ProfileInfo>();
Bill Wendling831737d2012-12-30 10:32:01 +0000155 OptSize = F.getAttributes().hasAttribute(AttributeSet::FunctionIndex,
156 Attribute::OptimizeForSize);
Evan Cheng485fafc2011-03-21 01:19:09 +0000157
Preston Gurd2e2efd92012-09-04 18:22:17 +0000158 /// This optimization identifies DIV instructions that can be
159 /// profitably bypassed and carried out with a shorter, faster divide.
Preston Gurd9a2cfff2013-03-04 18:13:57 +0000160 if (!OptSize && TLI && TLI->isSlowDivBypassed()) {
Preston Gurd8d662b52012-10-04 21:33:40 +0000161 const DenseMap<unsigned int, unsigned int> &BypassWidths =
162 TLI->getBypassSlowDivWidths();
Evan Cheng911908d2012-09-14 21:25:34 +0000163 for (Function::iterator I = F.begin(); I != F.end(); I++)
Preston Gurd8d662b52012-10-04 21:33:40 +0000164 EverMadeChange |= bypassSlowDivision(F, I, BypassWidths);
Preston Gurd2e2efd92012-09-04 18:22:17 +0000165 }
166
167 // Eliminate blocks that contain only PHI nodes and an
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000168 // unconditional branch.
169 EverMadeChange |= EliminateMostlyEmptyBlocks(F);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000170
Devang Patelf56ea612011-08-18 00:50:51 +0000171 // llvm.dbg.value is far away from the value then iSel may not be able
Nadav Rotema94d6e82012-07-24 10:51:42 +0000172 // handle it properly. iSel will drop llvm.dbg.value if it can not
Devang Patelf56ea612011-08-18 00:50:51 +0000173 // find a node corresponding to the value.
174 EverMadeChange |= PlaceDbgValues(F);
175
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000176 bool MadeChange = true;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000177 while (MadeChange) {
178 MadeChange = false;
Hans Wennborg93ba1332012-09-19 07:48:16 +0000179 for (Function::iterator I = F.begin(); I != F.end(); ) {
Evan Cheng485fafc2011-03-21 01:19:09 +0000180 BasicBlock *BB = I++;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000181 MadeChange |= OptimizeBlock(*BB);
Evan Cheng485fafc2011-03-21 01:19:09 +0000182 }
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000183 EverMadeChange |= MadeChange;
184 }
Cameron Zwarich8c3527e2011-01-06 00:42:50 +0000185
186 SunkAddrs.clear();
187
Cameron Zwarich899eaa32011-03-11 21:52:04 +0000188 if (!DisableBranchOpts) {
189 MadeChange = false;
Bill Wendlinge3e394d2012-03-04 10:46:01 +0000190 SmallPtrSet<BasicBlock*, 8> WorkList;
191 for (Function::iterator BB = F.begin(), E = F.end(); BB != E; ++BB) {
192 SmallVector<BasicBlock*, 2> Successors(succ_begin(BB), succ_end(BB));
Frits van Bommel5649ba72011-05-22 16:24:18 +0000193 MadeChange |= ConstantFoldTerminator(BB, true);
Bill Wendlinge3e394d2012-03-04 10:46:01 +0000194 if (!MadeChange) continue;
195
196 for (SmallVectorImpl<BasicBlock*>::iterator
197 II = Successors.begin(), IE = Successors.end(); II != IE; ++II)
198 if (pred_begin(*II) == pred_end(*II))
199 WorkList.insert(*II);
200 }
201
Bill Wendlingbf2ad732012-11-28 23:23:48 +0000202 // Delete the dead blocks and any of their dead successors.
Bill Wendling1c211642012-12-06 00:30:20 +0000203 MadeChange |= !WorkList.empty();
Bill Wendlingbf2ad732012-11-28 23:23:48 +0000204 while (!WorkList.empty()) {
205 BasicBlock *BB = *WorkList.begin();
206 WorkList.erase(BB);
207 SmallVector<BasicBlock*, 2> Successors(succ_begin(BB), succ_end(BB));
208
209 DeleteDeadBlock(BB);
210
211 for (SmallVectorImpl<BasicBlock*>::iterator
212 II = Successors.begin(), IE = Successors.end(); II != IE; ++II)
213 if (pred_begin(*II) == pred_end(*II))
214 WorkList.insert(*II);
215 }
Cameron Zwarich899eaa32011-03-11 21:52:04 +0000216
Nadav Rotem3e883732012-08-14 05:19:07 +0000217 // Merge pairs of basic blocks with unconditional branches, connected by
218 // a single edge.
219 if (EverMadeChange || MadeChange)
220 MadeChange |= EliminateFallThrough(F);
221
Evan Cheng485fafc2011-03-21 01:19:09 +0000222 if (MadeChange)
Devang Patel52e37df2011-03-24 15:35:25 +0000223 ModifiedDT = true;
Cameron Zwarich899eaa32011-03-11 21:52:04 +0000224 EverMadeChange |= MadeChange;
225 }
226
Devang Patel52e37df2011-03-24 15:35:25 +0000227 if (ModifiedDT && DT)
Evan Cheng485fafc2011-03-21 01:19:09 +0000228 DT->DT->recalculate(F);
229
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000230 return EverMadeChange;
231}
232
Nadav Rotem3e883732012-08-14 05:19:07 +0000233/// EliminateFallThrough - Merge basic blocks which are connected
234/// by a single edge, where one of the basic blocks has a single successor
235/// pointing to the other basic block, which has a single predecessor.
236bool CodeGenPrepare::EliminateFallThrough(Function &F) {
237 bool Changed = false;
238 // Scan all of the blocks in the function, except for the entry block.
239 for (Function::iterator I = ++F.begin(), E = F.end(); I != E; ) {
240 BasicBlock *BB = I++;
241 // If the destination block has a single pred, then this is a trivial
242 // edge, just collapse it.
243 BasicBlock *SinglePred = BB->getSinglePredecessor();
244
Evan Cheng46597072012-09-28 23:58:57 +0000245 // Don't merge if BB's address is taken.
246 if (!SinglePred || SinglePred == BB || BB->hasAddressTaken()) continue;
Nadav Rotem3e883732012-08-14 05:19:07 +0000247
248 BranchInst *Term = dyn_cast<BranchInst>(SinglePred->getTerminator());
249 if (Term && !Term->isConditional()) {
250 Changed = true;
Michael Liao787ed032012-08-21 05:55:22 +0000251 DEBUG(dbgs() << "To merge:\n"<< *SinglePred << "\n\n\n");
Nadav Rotem3e883732012-08-14 05:19:07 +0000252 // Remember if SinglePred was the entry block of the function.
253 // If so, we will need to move BB back to the entry position.
254 bool isEntry = SinglePred == &SinglePred->getParent()->getEntryBlock();
255 MergeBasicBlockIntoOnlyPred(BB, this);
256
257 if (isEntry && BB != &BB->getParent()->getEntryBlock())
258 BB->moveBefore(&BB->getParent()->getEntryBlock());
259
260 // We have erased a block. Update the iterator.
261 I = BB;
Nadav Rotem3e883732012-08-14 05:19:07 +0000262 }
263 }
264 return Changed;
265}
266
Dale Johannesen2d697242009-03-27 01:13:37 +0000267/// EliminateMostlyEmptyBlocks - eliminate blocks that contain only PHI nodes,
268/// debug info directives, and an unconditional branch. Passes before isel
269/// (e.g. LSR/loopsimplify) often split edges in ways that are non-optimal for
270/// isel. Start by eliminating these blocks so we can split them the way we
271/// want them.
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000272bool CodeGenPrepare::EliminateMostlyEmptyBlocks(Function &F) {
273 bool MadeChange = false;
274 // Note that this intentionally skips the entry block.
275 for (Function::iterator I = ++F.begin(), E = F.end(); I != E; ) {
276 BasicBlock *BB = I++;
277
278 // If this block doesn't end with an uncond branch, ignore it.
279 BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
280 if (!BI || !BI->isUnconditional())
281 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000282
Dale Johannesen2d697242009-03-27 01:13:37 +0000283 // If the instruction before the branch (skipping debug info) isn't a phi
284 // node, then other stuff is happening here.
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000285 BasicBlock::iterator BBI = BI;
286 if (BBI != BB->begin()) {
287 --BBI;
Dale Johannesen2d697242009-03-27 01:13:37 +0000288 while (isa<DbgInfoIntrinsic>(BBI)) {
289 if (BBI == BB->begin())
290 break;
291 --BBI;
292 }
293 if (!isa<DbgInfoIntrinsic>(BBI) && !isa<PHINode>(BBI))
294 continue;
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000295 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000296
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000297 // Do not break infinite loops.
298 BasicBlock *DestBB = BI->getSuccessor(0);
299 if (DestBB == BB)
300 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000301
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000302 if (!CanMergeBlocks(BB, DestBB))
303 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000304
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000305 EliminateMostlyEmptyBlock(BB);
306 MadeChange = true;
307 }
308 return MadeChange;
309}
310
311/// CanMergeBlocks - Return true if we can merge BB into DestBB if there is a
312/// single uncond branch between them, and BB contains no other non-phi
313/// instructions.
314bool CodeGenPrepare::CanMergeBlocks(const BasicBlock *BB,
315 const BasicBlock *DestBB) const {
316 // We only want to eliminate blocks whose phi nodes are used by phi nodes in
317 // the successor. If there are more complex condition (e.g. preheaders),
318 // don't mess around with them.
319 BasicBlock::const_iterator BBI = BB->begin();
320 while (const PHINode *PN = dyn_cast<PHINode>(BBI++)) {
Gabor Greif60ad7812010-03-25 23:06:16 +0000321 for (Value::const_use_iterator UI = PN->use_begin(), E = PN->use_end();
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000322 UI != E; ++UI) {
323 const Instruction *User = cast<Instruction>(*UI);
324 if (User->getParent() != DestBB || !isa<PHINode>(User))
325 return false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000326 // If User is inside DestBB block and it is a PHINode then check
327 // incoming value. If incoming value is not from BB then this is
Devang Patel75abc1e2007-04-25 00:37:04 +0000328 // a complex condition (e.g. preheaders) we want to avoid here.
329 if (User->getParent() == DestBB) {
330 if (const PHINode *UPN = dyn_cast<PHINode>(User))
331 for (unsigned I = 0, E = UPN->getNumIncomingValues(); I != E; ++I) {
332 Instruction *Insn = dyn_cast<Instruction>(UPN->getIncomingValue(I));
333 if (Insn && Insn->getParent() == BB &&
334 Insn->getParent() != UPN->getIncomingBlock(I))
335 return false;
336 }
337 }
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000338 }
339 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000340
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000341 // If BB and DestBB contain any common predecessors, then the phi nodes in BB
342 // and DestBB may have conflicting incoming values for the block. If so, we
343 // can't merge the block.
344 const PHINode *DestBBPN = dyn_cast<PHINode>(DestBB->begin());
345 if (!DestBBPN) return true; // no conflict.
Eric Christopher692bf6b2008-09-24 05:32:41 +0000346
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000347 // Collect the preds of BB.
Chris Lattnerf67f73a2007-11-06 22:07:40 +0000348 SmallPtrSet<const BasicBlock*, 16> BBPreds;
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000349 if (const PHINode *BBPN = dyn_cast<PHINode>(BB->begin())) {
350 // It is faster to get preds from a PHI than with pred_iterator.
351 for (unsigned i = 0, e = BBPN->getNumIncomingValues(); i != e; ++i)
352 BBPreds.insert(BBPN->getIncomingBlock(i));
353 } else {
354 BBPreds.insert(pred_begin(BB), pred_end(BB));
355 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000356
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000357 // Walk the preds of DestBB.
358 for (unsigned i = 0, e = DestBBPN->getNumIncomingValues(); i != e; ++i) {
359 BasicBlock *Pred = DestBBPN->getIncomingBlock(i);
360 if (BBPreds.count(Pred)) { // Common predecessor?
361 BBI = DestBB->begin();
362 while (const PHINode *PN = dyn_cast<PHINode>(BBI++)) {
363 const Value *V1 = PN->getIncomingValueForBlock(Pred);
364 const Value *V2 = PN->getIncomingValueForBlock(BB);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000365
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000366 // If V2 is a phi node in BB, look up what the mapped value will be.
367 if (const PHINode *V2PN = dyn_cast<PHINode>(V2))
368 if (V2PN->getParent() == BB)
369 V2 = V2PN->getIncomingValueForBlock(Pred);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000370
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000371 // If there is a conflict, bail out.
372 if (V1 != V2) return false;
373 }
374 }
375 }
376
377 return true;
378}
379
380
381/// EliminateMostlyEmptyBlock - Eliminate a basic block that have only phi's and
382/// an unconditional branch in it.
383void CodeGenPrepare::EliminateMostlyEmptyBlock(BasicBlock *BB) {
384 BranchInst *BI = cast<BranchInst>(BB->getTerminator());
385 BasicBlock *DestBB = BI->getSuccessor(0);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000386
David Greene68d67fd2010-01-05 01:27:11 +0000387 DEBUG(dbgs() << "MERGING MOSTLY EMPTY BLOCKS - BEFORE:\n" << *BB << *DestBB);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000388
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000389 // If the destination block has a single pred, then this is a trivial edge,
390 // just collapse it.
Chris Lattner9918fb52008-11-27 19:29:14 +0000391 if (BasicBlock *SinglePred = DestBB->getSinglePredecessor()) {
Chris Lattnerf5102a02008-11-28 19:54:49 +0000392 if (SinglePred != DestBB) {
393 // Remember if SinglePred was the entry block of the function. If so, we
394 // will need to move BB back to the entry position.
395 bool isEntry = SinglePred == &SinglePred->getParent()->getEntryBlock();
Andreas Neustifterad809812009-09-16 09:26:52 +0000396 MergeBasicBlockIntoOnlyPred(DestBB, this);
Chris Lattner9918fb52008-11-27 19:29:14 +0000397
Chris Lattnerf5102a02008-11-28 19:54:49 +0000398 if (isEntry && BB != &BB->getParent()->getEntryBlock())
399 BB->moveBefore(&BB->getParent()->getEntryBlock());
Nadav Rotema94d6e82012-07-24 10:51:42 +0000400
David Greene68d67fd2010-01-05 01:27:11 +0000401 DEBUG(dbgs() << "AFTER:\n" << *DestBB << "\n\n\n");
Chris Lattnerf5102a02008-11-28 19:54:49 +0000402 return;
403 }
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000404 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000405
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000406 // Otherwise, we have multiple predecessors of BB. Update the PHIs in DestBB
407 // to handle the new incoming edges it is about to have.
408 PHINode *PN;
409 for (BasicBlock::iterator BBI = DestBB->begin();
410 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
411 // Remove the incoming value for BB, and remember it.
412 Value *InVal = PN->removeIncomingValue(BB, false);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000413
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000414 // Two options: either the InVal is a phi node defined in BB or it is some
415 // value that dominates BB.
416 PHINode *InValPhi = dyn_cast<PHINode>(InVal);
417 if (InValPhi && InValPhi->getParent() == BB) {
418 // Add all of the input values of the input PHI as inputs of this phi.
419 for (unsigned i = 0, e = InValPhi->getNumIncomingValues(); i != e; ++i)
420 PN->addIncoming(InValPhi->getIncomingValue(i),
421 InValPhi->getIncomingBlock(i));
422 } else {
423 // Otherwise, add one instance of the dominating value for each edge that
424 // we will be adding.
425 if (PHINode *BBPN = dyn_cast<PHINode>(BB->begin())) {
426 for (unsigned i = 0, e = BBPN->getNumIncomingValues(); i != e; ++i)
427 PN->addIncoming(InVal, BBPN->getIncomingBlock(i));
428 } else {
429 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
430 PN->addIncoming(InVal, *PI);
431 }
432 }
433 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000434
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000435 // The PHIs are now updated, change everything that refers to BB to use
436 // DestBB and remove BB.
437 BB->replaceAllUsesWith(DestBB);
Devang Patel52e37df2011-03-24 15:35:25 +0000438 if (DT && !ModifiedDT) {
Cameron Zwarich80f6a502011-01-08 17:01:52 +0000439 BasicBlock *BBIDom = DT->getNode(BB)->getIDom()->getBlock();
440 BasicBlock *DestBBIDom = DT->getNode(DestBB)->getIDom()->getBlock();
441 BasicBlock *NewIDom = DT->findNearestCommonDominator(BBIDom, DestBBIDom);
442 DT->changeImmediateDominator(DestBB, NewIDom);
443 DT->eraseNode(BB);
444 }
Evan Cheng04149f72009-12-17 09:39:49 +0000445 if (PFI) {
446 PFI->replaceAllUses(BB, DestBB);
447 PFI->removeEdge(ProfileInfo::getEdge(BB, DestBB));
Andreas Neustifterad809812009-09-16 09:26:52 +0000448 }
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000449 BB->eraseFromParent();
Cameron Zwarich31ff1332011-01-05 17:27:27 +0000450 ++NumBlocksElim;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000451
David Greene68d67fd2010-01-05 01:27:11 +0000452 DEBUG(dbgs() << "AFTER:\n" << *DestBB << "\n\n\n");
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000453}
454
Chris Lattnerdd77df32007-04-13 20:30:56 +0000455/// OptimizeNoopCopyExpression - If the specified cast instruction is a noop
Dan Gohmana119de82009-06-14 23:30:43 +0000456/// copy (e.g. it's casting from one pointer type to another, i32->i8 on PPC),
457/// sink it into user blocks to reduce the number of virtual
Dale Johannesence0b2372007-06-12 16:50:17 +0000458/// registers that must be created and coalesced.
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000459///
460/// Return true if any changes are made.
Chris Lattner85fa13c2008-11-24 22:44:16 +0000461///
Chris Lattnerdd77df32007-04-13 20:30:56 +0000462static bool OptimizeNoopCopyExpression(CastInst *CI, const TargetLowering &TLI){
Eric Christopher692bf6b2008-09-24 05:32:41 +0000463 // If this is a noop copy,
Owen Andersone50ed302009-08-10 22:56:29 +0000464 EVT SrcVT = TLI.getValueType(CI->getOperand(0)->getType());
465 EVT DstVT = TLI.getValueType(CI->getType());
Eric Christopher692bf6b2008-09-24 05:32:41 +0000466
Chris Lattnerdd77df32007-04-13 20:30:56 +0000467 // This is an fp<->int conversion?
Duncan Sands83ec4b62008-06-06 12:08:01 +0000468 if (SrcVT.isInteger() != DstVT.isInteger())
Chris Lattnerdd77df32007-04-13 20:30:56 +0000469 return false;
Duncan Sands8e4eb092008-06-08 20:54:56 +0000470
Chris Lattnerdd77df32007-04-13 20:30:56 +0000471 // If this is an extension, it will be a zero or sign extension, which
472 // isn't a noop.
Duncan Sands8e4eb092008-06-08 20:54:56 +0000473 if (SrcVT.bitsLT(DstVT)) return false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000474
Chris Lattnerdd77df32007-04-13 20:30:56 +0000475 // If these values will be promoted, find out what they will be promoted
476 // to. This helps us consider truncates on PPC as noop copies when they
477 // are.
Nadav Rotem0ccc12a2011-05-29 08:10:47 +0000478 if (TLI.getTypeAction(CI->getContext(), SrcVT) ==
479 TargetLowering::TypePromoteInteger)
Owen Anderson23b9b192009-08-12 00:36:31 +0000480 SrcVT = TLI.getTypeToTransformTo(CI->getContext(), SrcVT);
Nadav Rotem0ccc12a2011-05-29 08:10:47 +0000481 if (TLI.getTypeAction(CI->getContext(), DstVT) ==
482 TargetLowering::TypePromoteInteger)
Owen Anderson23b9b192009-08-12 00:36:31 +0000483 DstVT = TLI.getTypeToTransformTo(CI->getContext(), DstVT);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000484
Chris Lattnerdd77df32007-04-13 20:30:56 +0000485 // If, after promotion, these are the same types, this is a noop copy.
486 if (SrcVT != DstVT)
487 return false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000488
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000489 BasicBlock *DefBB = CI->getParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000490
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000491 /// InsertedCasts - Only insert a cast in each block once.
Dale Johannesence0b2372007-06-12 16:50:17 +0000492 DenseMap<BasicBlock*, CastInst*> InsertedCasts;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000493
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000494 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000495 for (Value::use_iterator UI = CI->use_begin(), E = CI->use_end();
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000496 UI != E; ) {
497 Use &TheUse = UI.getUse();
498 Instruction *User = cast<Instruction>(*UI);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000499
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000500 // Figure out which BB this cast is used in. For PHI's this is the
501 // appropriate predecessor block.
502 BasicBlock *UserBB = User->getParent();
503 if (PHINode *PN = dyn_cast<PHINode>(User)) {
Gabor Greifa36791d2009-01-23 19:40:15 +0000504 UserBB = PN->getIncomingBlock(UI);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000505 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000506
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000507 // Preincrement use iterator so we don't invalidate it.
508 ++UI;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000509
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000510 // If this user is in the same block as the cast, don't change the cast.
511 if (UserBB == DefBB) continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000512
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000513 // If we have already inserted a cast into this block, use it.
514 CastInst *&InsertedCast = InsertedCasts[UserBB];
515
516 if (!InsertedCast) {
Bill Wendling5b6f42f2011-08-16 20:45:24 +0000517 BasicBlock::iterator InsertPt = UserBB->getFirstInsertionPt();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000518 InsertedCast =
519 CastInst::Create(CI->getOpcode(), CI->getOperand(0), CI->getType(), "",
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000520 InsertPt);
521 MadeChange = true;
522 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000523
Dale Johannesence0b2372007-06-12 16:50:17 +0000524 // Replace a use of the cast with a use of the new cast.
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000525 TheUse = InsertedCast;
Cameron Zwarich31ff1332011-01-05 17:27:27 +0000526 ++NumCastUses;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000527 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000528
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000529 // If we removed all uses, nuke the cast.
Duncan Sandse0038132008-01-20 16:51:46 +0000530 if (CI->use_empty()) {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000531 CI->eraseFromParent();
Duncan Sandse0038132008-01-20 16:51:46 +0000532 MadeChange = true;
533 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000534
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000535 return MadeChange;
536}
537
Eric Christopher692bf6b2008-09-24 05:32:41 +0000538/// OptimizeCmpExpression - sink the given CmpInst into user blocks to reduce
Dale Johannesence0b2372007-06-12 16:50:17 +0000539/// the number of virtual registers that must be created and coalesced. This is
Chris Lattner684b22d2007-08-02 16:53:43 +0000540/// a clear win except on targets with multiple condition code registers
541/// (PowerPC), where it might lose; some adjustment may be wanted there.
Dale Johannesence0b2372007-06-12 16:50:17 +0000542///
543/// Return true if any changes are made.
Chris Lattner85fa13c2008-11-24 22:44:16 +0000544static bool OptimizeCmpExpression(CmpInst *CI) {
Dale Johannesence0b2372007-06-12 16:50:17 +0000545 BasicBlock *DefBB = CI->getParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000546
Dale Johannesence0b2372007-06-12 16:50:17 +0000547 /// InsertedCmp - Only insert a cmp in each block once.
548 DenseMap<BasicBlock*, CmpInst*> InsertedCmps;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000549
Dale Johannesence0b2372007-06-12 16:50:17 +0000550 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000551 for (Value::use_iterator UI = CI->use_begin(), E = CI->use_end();
Dale Johannesence0b2372007-06-12 16:50:17 +0000552 UI != E; ) {
553 Use &TheUse = UI.getUse();
554 Instruction *User = cast<Instruction>(*UI);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000555
Dale Johannesence0b2372007-06-12 16:50:17 +0000556 // Preincrement use iterator so we don't invalidate it.
557 ++UI;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000558
Dale Johannesence0b2372007-06-12 16:50:17 +0000559 // Don't bother for PHI nodes.
560 if (isa<PHINode>(User))
561 continue;
562
563 // Figure out which BB this cmp is used in.
564 BasicBlock *UserBB = User->getParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000565
Dale Johannesence0b2372007-06-12 16:50:17 +0000566 // If this user is in the same block as the cmp, don't change the cmp.
567 if (UserBB == DefBB) continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000568
Dale Johannesence0b2372007-06-12 16:50:17 +0000569 // If we have already inserted a cmp into this block, use it.
570 CmpInst *&InsertedCmp = InsertedCmps[UserBB];
571
572 if (!InsertedCmp) {
Bill Wendling5b6f42f2011-08-16 20:45:24 +0000573 BasicBlock::iterator InsertPt = UserBB->getFirstInsertionPt();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000574 InsertedCmp =
Dan Gohman1c8a23c2009-08-25 23:17:54 +0000575 CmpInst::Create(CI->getOpcode(),
Owen Anderson333c4002009-07-09 23:48:35 +0000576 CI->getPredicate(), CI->getOperand(0),
Dale Johannesence0b2372007-06-12 16:50:17 +0000577 CI->getOperand(1), "", InsertPt);
578 MadeChange = true;
579 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000580
Dale Johannesence0b2372007-06-12 16:50:17 +0000581 // Replace a use of the cmp with a use of the new cmp.
582 TheUse = InsertedCmp;
Cameron Zwarich31ff1332011-01-05 17:27:27 +0000583 ++NumCmpUses;
Dale Johannesence0b2372007-06-12 16:50:17 +0000584 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000585
Dale Johannesence0b2372007-06-12 16:50:17 +0000586 // If we removed all uses, nuke the cmp.
587 if (CI->use_empty())
588 CI->eraseFromParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000589
Dale Johannesence0b2372007-06-12 16:50:17 +0000590 return MadeChange;
591}
592
Benjamin Kramer0b6cb502010-03-12 09:27:41 +0000593namespace {
594class CodeGenPrepareFortifiedLibCalls : public SimplifyFortifiedLibCalls {
595protected:
596 void replaceCall(Value *With) {
597 CI->replaceAllUsesWith(With);
598 CI->eraseFromParent();
599 }
600 bool isFoldable(unsigned SizeCIOp, unsigned, bool) const {
Gabor Greifa6aac4c2010-07-16 09:38:02 +0000601 if (ConstantInt *SizeCI =
602 dyn_cast<ConstantInt>(CI->getArgOperand(SizeCIOp)))
603 return SizeCI->isAllOnesValue();
Benjamin Kramer0b6cb502010-03-12 09:27:41 +0000604 return false;
605 }
606};
607} // end anonymous namespace
608
Eric Christopher040056f2010-03-11 02:41:03 +0000609bool CodeGenPrepare::OptimizeCallInst(CallInst *CI) {
Chris Lattner75796092011-01-15 07:14:54 +0000610 BasicBlock *BB = CI->getParent();
Nadav Rotema94d6e82012-07-24 10:51:42 +0000611
Chris Lattner75796092011-01-15 07:14:54 +0000612 // Lower inline assembly if we can.
613 // If we found an inline asm expession, and if the target knows how to
614 // lower it to normal LLVM code, do so now.
615 if (TLI && isa<InlineAsm>(CI->getCalledValue())) {
616 if (TLI->ExpandInlineAsm(CI)) {
617 // Avoid invalidating the iterator.
618 CurInstIterator = BB->begin();
619 // Avoid processing instructions out of order, which could cause
620 // reuse before a value is defined.
621 SunkAddrs.clear();
622 return true;
623 }
624 // Sink address computing for memory operands into the block.
625 if (OptimizeInlineAsmInst(CI))
626 return true;
627 }
Nadav Rotema94d6e82012-07-24 10:51:42 +0000628
Eric Christopher040056f2010-03-11 02:41:03 +0000629 // Lower all uses of llvm.objectsize.*
630 IntrinsicInst *II = dyn_cast<IntrinsicInst>(CI);
631 if (II && II->getIntrinsicID() == Intrinsic::objectsize) {
Gabor Greifde9f5452010-06-24 00:44:01 +0000632 bool Min = (cast<ConstantInt>(II->getArgOperand(1))->getZExtValue() == 1);
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000633 Type *ReturnTy = CI->getType();
Nadav Rotema94d6e82012-07-24 10:51:42 +0000634 Constant *RetVal = ConstantInt::get(ReturnTy, Min ? 0 : -1ULL);
635
Chris Lattner94e8e0c2011-01-15 07:25:29 +0000636 // Substituting this can cause recursive simplifications, which can
637 // invalidate our iterator. Use a WeakVH to hold onto it in case this
638 // happens.
639 WeakVH IterHandle(CurInstIterator);
Nadav Rotema94d6e82012-07-24 10:51:42 +0000640
Micah Villmow3574eca2012-10-08 16:38:25 +0000641 replaceAndRecursivelySimplify(CI, RetVal, TLI ? TLI->getDataLayout() : 0,
Chandler Carruth6b980542012-03-24 21:11:24 +0000642 TLInfo, ModifiedDT ? 0 : DT);
Chris Lattner94e8e0c2011-01-15 07:25:29 +0000643
644 // If the iterator instruction was recursively deleted, start over at the
645 // start of the block.
Chris Lattner435b4d22011-01-18 20:53:04 +0000646 if (IterHandle != CurInstIterator) {
Chris Lattner94e8e0c2011-01-15 07:25:29 +0000647 CurInstIterator = BB->begin();
Chris Lattner435b4d22011-01-18 20:53:04 +0000648 SunkAddrs.clear();
649 }
Eric Christopher040056f2010-03-11 02:41:03 +0000650 return true;
651 }
652
Pete Cooperf210b682012-03-13 20:59:56 +0000653 if (II && TLI) {
654 SmallVector<Value*, 2> PtrOps;
655 Type *AccessTy;
656 if (TLI->GetAddrModeArguments(II, PtrOps, AccessTy))
657 while (!PtrOps.empty())
658 if (OptimizeMemoryInst(II, PtrOps.pop_back_val(), AccessTy))
659 return true;
660 }
661
Eric Christopher040056f2010-03-11 02:41:03 +0000662 // From here on out we're working with named functions.
663 if (CI->getCalledFunction() == 0) return false;
Devang Patel97de92c2011-05-26 21:51:06 +0000664
Micah Villmow3574eca2012-10-08 16:38:25 +0000665 // We'll need DataLayout from here on out.
666 const DataLayout *TD = TLI ? TLI->getDataLayout() : 0;
Eric Christopher040056f2010-03-11 02:41:03 +0000667 if (!TD) return false;
Nadav Rotema94d6e82012-07-24 10:51:42 +0000668
Benjamin Kramer0b6cb502010-03-12 09:27:41 +0000669 // Lower all default uses of _chk calls. This is very similar
670 // to what InstCombineCalls does, but here we are only lowering calls
Eric Christopher040056f2010-03-11 02:41:03 +0000671 // that have the default "don't know" as the objectsize. Anything else
672 // should be left alone.
Benjamin Kramer0b6cb502010-03-12 09:27:41 +0000673 CodeGenPrepareFortifiedLibCalls Simplifier;
Nuno Lopes51004df2012-07-25 16:46:31 +0000674 return Simplifier.fold(CI, TD, TLInfo);
Eric Christopher040056f2010-03-11 02:41:03 +0000675}
Chris Lattner94e8e0c2011-01-15 07:25:29 +0000676
Evan Cheng485fafc2011-03-21 01:19:09 +0000677/// DupRetToEnableTailCallOpts - Look for opportunities to duplicate return
678/// instructions to the predecessor to enable tail call optimizations. The
679/// case it is currently looking for is:
Dmitri Gribenko2d9eb722012-09-13 12:34:29 +0000680/// @code
Evan Cheng485fafc2011-03-21 01:19:09 +0000681/// bb0:
682/// %tmp0 = tail call i32 @f0()
683/// br label %return
684/// bb1:
685/// %tmp1 = tail call i32 @f1()
686/// br label %return
687/// bb2:
688/// %tmp2 = tail call i32 @f2()
689/// br label %return
690/// return:
691/// %retval = phi i32 [ %tmp0, %bb0 ], [ %tmp1, %bb1 ], [ %tmp2, %bb2 ]
692/// ret i32 %retval
Dmitri Gribenko2d9eb722012-09-13 12:34:29 +0000693/// @endcode
Evan Cheng485fafc2011-03-21 01:19:09 +0000694///
695/// =>
696///
Dmitri Gribenko2d9eb722012-09-13 12:34:29 +0000697/// @code
Evan Cheng485fafc2011-03-21 01:19:09 +0000698/// bb0:
699/// %tmp0 = tail call i32 @f0()
700/// ret i32 %tmp0
701/// bb1:
702/// %tmp1 = tail call i32 @f1()
703/// ret i32 %tmp1
704/// bb2:
705/// %tmp2 = tail call i32 @f2()
706/// ret i32 %tmp2
Dmitri Gribenko2d9eb722012-09-13 12:34:29 +0000707/// @endcode
Benjamin Kramer4ccb49a2012-11-23 19:17:06 +0000708bool CodeGenPrepare::DupRetToEnableTailCallOpts(BasicBlock *BB) {
Cameron Zwarich661a3902011-03-24 04:51:51 +0000709 if (!TLI)
710 return false;
711
Benjamin Kramer4ccb49a2012-11-23 19:17:06 +0000712 ReturnInst *RI = dyn_cast<ReturnInst>(BB->getTerminator());
713 if (!RI)
714 return false;
715
Evan Cheng9c777a42012-07-27 21:21:26 +0000716 PHINode *PN = 0;
717 BitCastInst *BCI = 0;
Evan Cheng485fafc2011-03-21 01:19:09 +0000718 Value *V = RI->getReturnValue();
Evan Cheng9c777a42012-07-27 21:21:26 +0000719 if (V) {
720 BCI = dyn_cast<BitCastInst>(V);
721 if (BCI)
722 V = BCI->getOperand(0);
723
724 PN = dyn_cast<PHINode>(V);
725 if (!PN)
726 return false;
727 }
Evan Cheng485fafc2011-03-21 01:19:09 +0000728
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000729 if (PN && PN->getParent() != BB)
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000730 return false;
Evan Cheng485fafc2011-03-21 01:19:09 +0000731
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000732 // It's not safe to eliminate the sign / zero extension of the return value.
733 // See llvm::isInTailCallPosition().
734 const Function *F = BB->getParent();
Bill Wendling1b0c54f2013-01-18 21:53:16 +0000735 AttributeSet CallerAttrs = F->getAttributes();
736 if (CallerAttrs.hasAttribute(AttributeSet::ReturnIndex, Attribute::ZExt) ||
737 CallerAttrs.hasAttribute(AttributeSet::ReturnIndex, Attribute::SExt))
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000738 return false;
Evan Cheng485fafc2011-03-21 01:19:09 +0000739
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000740 // Make sure there are no instructions between the PHI and return, or that the
741 // return is the first instruction in the block.
742 if (PN) {
743 BasicBlock::iterator BI = BB->begin();
744 do { ++BI; } while (isa<DbgInfoIntrinsic>(BI));
Evan Cheng9c777a42012-07-27 21:21:26 +0000745 if (&*BI == BCI)
746 // Also skip over the bitcast.
747 ++BI;
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000748 if (&*BI != RI)
749 return false;
750 } else {
Cameron Zwarich90354842011-03-24 16:34:59 +0000751 BasicBlock::iterator BI = BB->begin();
752 while (isa<DbgInfoIntrinsic>(BI)) ++BI;
753 if (&*BI != RI)
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000754 return false;
755 }
Evan Cheng485fafc2011-03-21 01:19:09 +0000756
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000757 /// Only dup the ReturnInst if the CallInst is likely to be emitted as a tail
758 /// call.
759 SmallVector<CallInst*, 4> TailCalls;
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000760 if (PN) {
761 for (unsigned I = 0, E = PN->getNumIncomingValues(); I != E; ++I) {
762 CallInst *CI = dyn_cast<CallInst>(PN->getIncomingValue(I));
763 // Make sure the phi value is indeed produced by the tail call.
764 if (CI && CI->hasOneUse() && CI->getParent() == PN->getIncomingBlock(I) &&
765 TLI->mayBeEmittedAsTailCall(CI))
766 TailCalls.push_back(CI);
767 }
768 } else {
769 SmallPtrSet<BasicBlock*, 4> VisitedBBs;
770 for (pred_iterator PI = pred_begin(BB), PE = pred_end(BB); PI != PE; ++PI) {
771 if (!VisitedBBs.insert(*PI))
772 continue;
773
774 BasicBlock::InstListType &InstList = (*PI)->getInstList();
775 BasicBlock::InstListType::reverse_iterator RI = InstList.rbegin();
776 BasicBlock::InstListType::reverse_iterator RE = InstList.rend();
Cameron Zwarich90354842011-03-24 16:34:59 +0000777 do { ++RI; } while (RI != RE && isa<DbgInfoIntrinsic>(&*RI));
778 if (RI == RE)
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000779 continue;
Cameron Zwarich90354842011-03-24 16:34:59 +0000780
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000781 CallInst *CI = dyn_cast<CallInst>(&*RI);
Cameron Zwarichdc31cfe2011-03-24 15:54:11 +0000782 if (CI && CI->use_empty() && TLI->mayBeEmittedAsTailCall(CI))
Cameron Zwarich6e8ffc12011-03-24 04:52:10 +0000783 TailCalls.push_back(CI);
784 }
Evan Cheng485fafc2011-03-21 01:19:09 +0000785 }
786
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000787 bool Changed = false;
788 for (unsigned i = 0, e = TailCalls.size(); i != e; ++i) {
789 CallInst *CI = TailCalls[i];
790 CallSite CS(CI);
791
792 // Conservatively require the attributes of the call to match those of the
793 // return. Ignore noalias because it doesn't affect the call sequence.
Bill Wendling1b0c54f2013-01-18 21:53:16 +0000794 AttributeSet CalleeAttrs = CS.getAttributes();
795 if (AttrBuilder(CalleeAttrs, AttributeSet::ReturnIndex).
Bill Wendling034b94b2012-12-19 07:18:57 +0000796 removeAttribute(Attribute::NoAlias) !=
Bill Wendling1b0c54f2013-01-18 21:53:16 +0000797 AttrBuilder(CalleeAttrs, AttributeSet::ReturnIndex).
Bill Wendling034b94b2012-12-19 07:18:57 +0000798 removeAttribute(Attribute::NoAlias))
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000799 continue;
800
801 // Make sure the call instruction is followed by an unconditional branch to
802 // the return block.
803 BasicBlock *CallBB = CI->getParent();
804 BranchInst *BI = dyn_cast<BranchInst>(CallBB->getTerminator());
805 if (!BI || !BI->isUnconditional() || BI->getSuccessor(0) != BB)
806 continue;
807
808 // Duplicate the return into CallBB.
809 (void)FoldReturnIntoUncondBranch(RI, BB, CallBB);
Devang Patel52e37df2011-03-24 15:35:25 +0000810 ModifiedDT = Changed = true;
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000811 ++NumRetsDup;
812 }
813
814 // If we eliminated all predecessors of the block, delete the block now.
Evan Cheng46597072012-09-28 23:58:57 +0000815 if (Changed && !BB->hasAddressTaken() && pred_begin(BB) == pred_end(BB))
Cameron Zwarich4bae5882011-03-24 04:52:07 +0000816 BB->eraseFromParent();
817
818 return Changed;
Evan Cheng485fafc2011-03-21 01:19:09 +0000819}
820
Chris Lattner88a5c832008-11-25 07:09:13 +0000821//===----------------------------------------------------------------------===//
Chris Lattner88a5c832008-11-25 07:09:13 +0000822// Memory Optimization
823//===----------------------------------------------------------------------===//
824
Chandler Carruthb1a429f2013-01-05 02:09:22 +0000825namespace {
826
827/// ExtAddrMode - This is an extended version of TargetLowering::AddrMode
828/// which holds actual Value*'s for register values.
Chandler Carruth56d433d2013-01-07 15:14:13 +0000829struct ExtAddrMode : public TargetLowering::AddrMode {
Chandler Carruthb1a429f2013-01-05 02:09:22 +0000830 Value *BaseReg;
831 Value *ScaledReg;
832 ExtAddrMode() : BaseReg(0), ScaledReg(0) {}
833 void print(raw_ostream &OS) const;
834 void dump() const;
835
836 bool operator==(const ExtAddrMode& O) const {
837 return (BaseReg == O.BaseReg) && (ScaledReg == O.ScaledReg) &&
838 (BaseGV == O.BaseGV) && (BaseOffs == O.BaseOffs) &&
839 (HasBaseReg == O.HasBaseReg) && (Scale == O.Scale);
840 }
841};
842
843static inline raw_ostream &operator<<(raw_ostream &OS, const ExtAddrMode &AM) {
844 AM.print(OS);
845 return OS;
846}
847
848void ExtAddrMode::print(raw_ostream &OS) const {
849 bool NeedPlus = false;
850 OS << "[";
851 if (BaseGV) {
852 OS << (NeedPlus ? " + " : "")
853 << "GV:";
854 WriteAsOperand(OS, BaseGV, /*PrintType=*/false);
855 NeedPlus = true;
856 }
857
858 if (BaseOffs)
859 OS << (NeedPlus ? " + " : "") << BaseOffs, NeedPlus = true;
860
861 if (BaseReg) {
862 OS << (NeedPlus ? " + " : "")
863 << "Base:";
864 WriteAsOperand(OS, BaseReg, /*PrintType=*/false);
865 NeedPlus = true;
866 }
867 if (Scale) {
868 OS << (NeedPlus ? " + " : "")
869 << Scale << "*";
870 WriteAsOperand(OS, ScaledReg, /*PrintType=*/false);
871 NeedPlus = true;
872 }
873
874 OS << ']';
875}
876
877#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
878void ExtAddrMode::dump() const {
879 print(dbgs());
880 dbgs() << '\n';
881}
882#endif
883
884
885/// \brief A helper class for matching addressing modes.
886///
887/// This encapsulates the logic for matching the target-legal addressing modes.
888class AddressingModeMatcher {
889 SmallVectorImpl<Instruction*> &AddrModeInsts;
890 const TargetLowering &TLI;
891
892 /// AccessTy/MemoryInst - This is the type for the access (e.g. double) and
893 /// the memory instruction that we're computing this address for.
894 Type *AccessTy;
895 Instruction *MemoryInst;
896
897 /// AddrMode - This is the addressing mode that we're building up. This is
898 /// part of the return value of this addressing mode matching stuff.
899 ExtAddrMode &AddrMode;
900
901 /// IgnoreProfitability - This is set to true when we should not do
902 /// profitability checks. When true, IsProfitableToFoldIntoAddressingMode
903 /// always returns true.
904 bool IgnoreProfitability;
905
906 AddressingModeMatcher(SmallVectorImpl<Instruction*> &AMI,
907 const TargetLowering &T, Type *AT,
908 Instruction *MI, ExtAddrMode &AM)
909 : AddrModeInsts(AMI), TLI(T), AccessTy(AT), MemoryInst(MI), AddrMode(AM) {
910 IgnoreProfitability = false;
911 }
912public:
913
914 /// Match - Find the maximal addressing mode that a load/store of V can fold,
915 /// give an access type of AccessTy. This returns a list of involved
916 /// instructions in AddrModeInsts.
917 static ExtAddrMode Match(Value *V, Type *AccessTy,
918 Instruction *MemoryInst,
919 SmallVectorImpl<Instruction*> &AddrModeInsts,
920 const TargetLowering &TLI) {
921 ExtAddrMode Result;
922
923 bool Success =
924 AddressingModeMatcher(AddrModeInsts, TLI, AccessTy,
925 MemoryInst, Result).MatchAddr(V, 0);
926 (void)Success; assert(Success && "Couldn't select *anything*?");
927 return Result;
928 }
929private:
930 bool MatchScaledValue(Value *ScaleReg, int64_t Scale, unsigned Depth);
931 bool MatchAddr(Value *V, unsigned Depth);
932 bool MatchOperationAddr(User *Operation, unsigned Opcode, unsigned Depth);
933 bool IsProfitableToFoldIntoAddressingMode(Instruction *I,
934 ExtAddrMode &AMBefore,
935 ExtAddrMode &AMAfter);
936 bool ValueAlreadyLiveAtInst(Value *Val, Value *KnownLive1, Value *KnownLive2);
937};
938
939/// MatchScaledValue - Try adding ScaleReg*Scale to the current addressing mode.
940/// Return true and update AddrMode if this addr mode is legal for the target,
941/// false if not.
942bool AddressingModeMatcher::MatchScaledValue(Value *ScaleReg, int64_t Scale,
943 unsigned Depth) {
944 // If Scale is 1, then this is the same as adding ScaleReg to the addressing
945 // mode. Just process that directly.
946 if (Scale == 1)
947 return MatchAddr(ScaleReg, Depth);
948
949 // If the scale is 0, it takes nothing to add this.
950 if (Scale == 0)
951 return true;
952
953 // If we already have a scale of this value, we can add to it, otherwise, we
954 // need an available scale field.
955 if (AddrMode.Scale != 0 && AddrMode.ScaledReg != ScaleReg)
956 return false;
957
958 ExtAddrMode TestAddrMode = AddrMode;
959
960 // Add scale to turn X*4+X*3 -> X*7. This could also do things like
961 // [A+B + A*7] -> [B+A*8].
962 TestAddrMode.Scale += Scale;
963 TestAddrMode.ScaledReg = ScaleReg;
964
965 // If the new address isn't legal, bail out.
966 if (!TLI.isLegalAddressingMode(TestAddrMode, AccessTy))
967 return false;
968
969 // It was legal, so commit it.
970 AddrMode = TestAddrMode;
971
972 // Okay, we decided that we can add ScaleReg+Scale to AddrMode. Check now
973 // to see if ScaleReg is actually X+C. If so, we can turn this into adding
974 // X*Scale + C*Scale to addr mode.
975 ConstantInt *CI = 0; Value *AddLHS = 0;
976 if (isa<Instruction>(ScaleReg) && // not a constant expr.
977 match(ScaleReg, m_Add(m_Value(AddLHS), m_ConstantInt(CI)))) {
978 TestAddrMode.ScaledReg = AddLHS;
979 TestAddrMode.BaseOffs += CI->getSExtValue()*TestAddrMode.Scale;
980
981 // If this addressing mode is legal, commit it and remember that we folded
982 // this instruction.
983 if (TLI.isLegalAddressingMode(TestAddrMode, AccessTy)) {
984 AddrModeInsts.push_back(cast<Instruction>(ScaleReg));
985 AddrMode = TestAddrMode;
986 return true;
987 }
988 }
989
990 // Otherwise, not (x+c)*scale, just return what we have.
991 return true;
992}
993
994/// MightBeFoldableInst - This is a little filter, which returns true if an
995/// addressing computation involving I might be folded into a load/store
996/// accessing it. This doesn't need to be perfect, but needs to accept at least
997/// the set of instructions that MatchOperationAddr can.
998static bool MightBeFoldableInst(Instruction *I) {
999 switch (I->getOpcode()) {
1000 case Instruction::BitCast:
1001 // Don't touch identity bitcasts.
1002 if (I->getType() == I->getOperand(0)->getType())
1003 return false;
1004 return I->getType()->isPointerTy() || I->getType()->isIntegerTy();
1005 case Instruction::PtrToInt:
1006 // PtrToInt is always a noop, as we know that the int type is pointer sized.
1007 return true;
1008 case Instruction::IntToPtr:
1009 // We know the input is intptr_t, so this is foldable.
1010 return true;
1011 case Instruction::Add:
1012 return true;
1013 case Instruction::Mul:
1014 case Instruction::Shl:
1015 // Can only handle X*C and X << C.
1016 return isa<ConstantInt>(I->getOperand(1));
1017 case Instruction::GetElementPtr:
1018 return true;
1019 default:
1020 return false;
1021 }
1022}
1023
1024/// MatchOperationAddr - Given an instruction or constant expr, see if we can
1025/// fold the operation into the addressing mode. If so, update the addressing
1026/// mode and return true, otherwise return false without modifying AddrMode.
1027bool AddressingModeMatcher::MatchOperationAddr(User *AddrInst, unsigned Opcode,
1028 unsigned Depth) {
1029 // Avoid exponential behavior on extremely deep expression trees.
1030 if (Depth >= 5) return false;
1031
1032 switch (Opcode) {
1033 case Instruction::PtrToInt:
1034 // PtrToInt is always a noop, as we know that the int type is pointer sized.
1035 return MatchAddr(AddrInst->getOperand(0), Depth);
1036 case Instruction::IntToPtr:
1037 // This inttoptr is a no-op if the integer type is pointer sized.
1038 if (TLI.getValueType(AddrInst->getOperand(0)->getType()) ==
1039 TLI.getPointerTy())
1040 return MatchAddr(AddrInst->getOperand(0), Depth);
1041 return false;
1042 case Instruction::BitCast:
1043 // BitCast is always a noop, and we can handle it as long as it is
1044 // int->int or pointer->pointer (we don't want int<->fp or something).
1045 if ((AddrInst->getOperand(0)->getType()->isPointerTy() ||
1046 AddrInst->getOperand(0)->getType()->isIntegerTy()) &&
1047 // Don't touch identity bitcasts. These were probably put here by LSR,
1048 // and we don't want to mess around with them. Assume it knows what it
1049 // is doing.
1050 AddrInst->getOperand(0)->getType() != AddrInst->getType())
1051 return MatchAddr(AddrInst->getOperand(0), Depth);
1052 return false;
1053 case Instruction::Add: {
1054 // Check to see if we can merge in the RHS then the LHS. If so, we win.
1055 ExtAddrMode BackupAddrMode = AddrMode;
1056 unsigned OldSize = AddrModeInsts.size();
1057 if (MatchAddr(AddrInst->getOperand(1), Depth+1) &&
1058 MatchAddr(AddrInst->getOperand(0), Depth+1))
1059 return true;
1060
1061 // Restore the old addr mode info.
1062 AddrMode = BackupAddrMode;
1063 AddrModeInsts.resize(OldSize);
1064
1065 // Otherwise this was over-aggressive. Try merging in the LHS then the RHS.
1066 if (MatchAddr(AddrInst->getOperand(0), Depth+1) &&
1067 MatchAddr(AddrInst->getOperand(1), Depth+1))
1068 return true;
1069
1070 // Otherwise we definitely can't merge the ADD in.
1071 AddrMode = BackupAddrMode;
1072 AddrModeInsts.resize(OldSize);
1073 break;
1074 }
1075 //case Instruction::Or:
1076 // TODO: We can handle "Or Val, Imm" iff this OR is equivalent to an ADD.
1077 //break;
1078 case Instruction::Mul:
1079 case Instruction::Shl: {
1080 // Can only handle X*C and X << C.
1081 ConstantInt *RHS = dyn_cast<ConstantInt>(AddrInst->getOperand(1));
1082 if (!RHS) return false;
1083 int64_t Scale = RHS->getSExtValue();
1084 if (Opcode == Instruction::Shl)
1085 Scale = 1LL << Scale;
1086
1087 return MatchScaledValue(AddrInst->getOperand(0), Scale, Depth);
1088 }
1089 case Instruction::GetElementPtr: {
1090 // Scan the GEP. We check it if it contains constant offsets and at most
1091 // one variable offset.
1092 int VariableOperand = -1;
1093 unsigned VariableScale = 0;
1094
1095 int64_t ConstantOffset = 0;
1096 const DataLayout *TD = TLI.getDataLayout();
1097 gep_type_iterator GTI = gep_type_begin(AddrInst);
1098 for (unsigned i = 1, e = AddrInst->getNumOperands(); i != e; ++i, ++GTI) {
1099 if (StructType *STy = dyn_cast<StructType>(*GTI)) {
1100 const StructLayout *SL = TD->getStructLayout(STy);
1101 unsigned Idx =
1102 cast<ConstantInt>(AddrInst->getOperand(i))->getZExtValue();
1103 ConstantOffset += SL->getElementOffset(Idx);
1104 } else {
1105 uint64_t TypeSize = TD->getTypeAllocSize(GTI.getIndexedType());
1106 if (ConstantInt *CI = dyn_cast<ConstantInt>(AddrInst->getOperand(i))) {
1107 ConstantOffset += CI->getSExtValue()*TypeSize;
1108 } else if (TypeSize) { // Scales of zero don't do anything.
1109 // We only allow one variable index at the moment.
1110 if (VariableOperand != -1)
1111 return false;
1112
1113 // Remember the variable index.
1114 VariableOperand = i;
1115 VariableScale = TypeSize;
1116 }
1117 }
1118 }
1119
1120 // A common case is for the GEP to only do a constant offset. In this case,
1121 // just add it to the disp field and check validity.
1122 if (VariableOperand == -1) {
1123 AddrMode.BaseOffs += ConstantOffset;
1124 if (ConstantOffset == 0 || TLI.isLegalAddressingMode(AddrMode, AccessTy)){
1125 // Check to see if we can fold the base pointer in too.
1126 if (MatchAddr(AddrInst->getOperand(0), Depth+1))
1127 return true;
1128 }
1129 AddrMode.BaseOffs -= ConstantOffset;
1130 return false;
1131 }
1132
1133 // Save the valid addressing mode in case we can't match.
1134 ExtAddrMode BackupAddrMode = AddrMode;
1135 unsigned OldSize = AddrModeInsts.size();
1136
1137 // See if the scale and offset amount is valid for this target.
1138 AddrMode.BaseOffs += ConstantOffset;
1139
1140 // Match the base operand of the GEP.
1141 if (!MatchAddr(AddrInst->getOperand(0), Depth+1)) {
1142 // If it couldn't be matched, just stuff the value in a register.
1143 if (AddrMode.HasBaseReg) {
1144 AddrMode = BackupAddrMode;
1145 AddrModeInsts.resize(OldSize);
1146 return false;
1147 }
1148 AddrMode.HasBaseReg = true;
1149 AddrMode.BaseReg = AddrInst->getOperand(0);
1150 }
1151
1152 // Match the remaining variable portion of the GEP.
1153 if (!MatchScaledValue(AddrInst->getOperand(VariableOperand), VariableScale,
1154 Depth)) {
1155 // If it couldn't be matched, try stuffing the base into a register
1156 // instead of matching it, and retrying the match of the scale.
1157 AddrMode = BackupAddrMode;
1158 AddrModeInsts.resize(OldSize);
1159 if (AddrMode.HasBaseReg)
1160 return false;
1161 AddrMode.HasBaseReg = true;
1162 AddrMode.BaseReg = AddrInst->getOperand(0);
1163 AddrMode.BaseOffs += ConstantOffset;
1164 if (!MatchScaledValue(AddrInst->getOperand(VariableOperand),
1165 VariableScale, Depth)) {
1166 // If even that didn't work, bail.
1167 AddrMode = BackupAddrMode;
1168 AddrModeInsts.resize(OldSize);
1169 return false;
1170 }
1171 }
1172
1173 return true;
1174 }
1175 }
1176 return false;
1177}
1178
1179/// MatchAddr - If we can, try to add the value of 'Addr' into the current
1180/// addressing mode. If Addr can't be added to AddrMode this returns false and
1181/// leaves AddrMode unmodified. This assumes that Addr is either a pointer type
1182/// or intptr_t for the target.
1183///
1184bool AddressingModeMatcher::MatchAddr(Value *Addr, unsigned Depth) {
1185 if (ConstantInt *CI = dyn_cast<ConstantInt>(Addr)) {
1186 // Fold in immediates if legal for the target.
1187 AddrMode.BaseOffs += CI->getSExtValue();
1188 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
1189 return true;
1190 AddrMode.BaseOffs -= CI->getSExtValue();
1191 } else if (GlobalValue *GV = dyn_cast<GlobalValue>(Addr)) {
1192 // If this is a global variable, try to fold it into the addressing mode.
1193 if (AddrMode.BaseGV == 0) {
1194 AddrMode.BaseGV = GV;
1195 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
1196 return true;
1197 AddrMode.BaseGV = 0;
1198 }
1199 } else if (Instruction *I = dyn_cast<Instruction>(Addr)) {
1200 ExtAddrMode BackupAddrMode = AddrMode;
1201 unsigned OldSize = AddrModeInsts.size();
1202
1203 // Check to see if it is possible to fold this operation.
1204 if (MatchOperationAddr(I, I->getOpcode(), Depth)) {
1205 // Okay, it's possible to fold this. Check to see if it is actually
1206 // *profitable* to do so. We use a simple cost model to avoid increasing
1207 // register pressure too much.
1208 if (I->hasOneUse() ||
1209 IsProfitableToFoldIntoAddressingMode(I, BackupAddrMode, AddrMode)) {
1210 AddrModeInsts.push_back(I);
1211 return true;
1212 }
1213
1214 // It isn't profitable to do this, roll back.
1215 //cerr << "NOT FOLDING: " << *I;
1216 AddrMode = BackupAddrMode;
1217 AddrModeInsts.resize(OldSize);
1218 }
1219 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Addr)) {
1220 if (MatchOperationAddr(CE, CE->getOpcode(), Depth))
1221 return true;
1222 } else if (isa<ConstantPointerNull>(Addr)) {
1223 // Null pointer gets folded without affecting the addressing mode.
1224 return true;
1225 }
1226
1227 // Worse case, the target should support [reg] addressing modes. :)
1228 if (!AddrMode.HasBaseReg) {
1229 AddrMode.HasBaseReg = true;
1230 AddrMode.BaseReg = Addr;
1231 // Still check for legality in case the target supports [imm] but not [i+r].
1232 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
1233 return true;
1234 AddrMode.HasBaseReg = false;
1235 AddrMode.BaseReg = 0;
1236 }
1237
1238 // If the base register is already taken, see if we can do [r+r].
1239 if (AddrMode.Scale == 0) {
1240 AddrMode.Scale = 1;
1241 AddrMode.ScaledReg = Addr;
1242 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
1243 return true;
1244 AddrMode.Scale = 0;
1245 AddrMode.ScaledReg = 0;
1246 }
1247 // Couldn't match.
1248 return false;
1249}
1250
1251/// IsOperandAMemoryOperand - Check to see if all uses of OpVal by the specified
1252/// inline asm call are due to memory operands. If so, return true, otherwise
1253/// return false.
1254static bool IsOperandAMemoryOperand(CallInst *CI, InlineAsm *IA, Value *OpVal,
1255 const TargetLowering &TLI) {
1256 TargetLowering::AsmOperandInfoVector TargetConstraints = TLI.ParseConstraints(ImmutableCallSite(CI));
1257 for (unsigned i = 0, e = TargetConstraints.size(); i != e; ++i) {
1258 TargetLowering::AsmOperandInfo &OpInfo = TargetConstraints[i];
1259
1260 // Compute the constraint code and ConstraintType to use.
1261 TLI.ComputeConstraintToUse(OpInfo, SDValue());
1262
1263 // If this asm operand is our Value*, and if it isn't an indirect memory
1264 // operand, we can't fold it!
1265 if (OpInfo.CallOperandVal == OpVal &&
1266 (OpInfo.ConstraintType != TargetLowering::C_Memory ||
1267 !OpInfo.isIndirect))
1268 return false;
1269 }
1270
1271 return true;
1272}
1273
1274/// FindAllMemoryUses - Recursively walk all the uses of I until we find a
1275/// memory use. If we find an obviously non-foldable instruction, return true.
1276/// Add the ultimately found memory instructions to MemoryUses.
1277static bool FindAllMemoryUses(Instruction *I,
1278 SmallVectorImpl<std::pair<Instruction*,unsigned> > &MemoryUses,
1279 SmallPtrSet<Instruction*, 16> &ConsideredInsts,
1280 const TargetLowering &TLI) {
1281 // If we already considered this instruction, we're done.
1282 if (!ConsideredInsts.insert(I))
1283 return false;
1284
1285 // If this is an obviously unfoldable instruction, bail out.
1286 if (!MightBeFoldableInst(I))
1287 return true;
1288
1289 // Loop over all the uses, recursively processing them.
1290 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
1291 UI != E; ++UI) {
1292 User *U = *UI;
1293
1294 if (LoadInst *LI = dyn_cast<LoadInst>(U)) {
1295 MemoryUses.push_back(std::make_pair(LI, UI.getOperandNo()));
1296 continue;
1297 }
1298
1299 if (StoreInst *SI = dyn_cast<StoreInst>(U)) {
1300 unsigned opNo = UI.getOperandNo();
1301 if (opNo == 0) return true; // Storing addr, not into addr.
1302 MemoryUses.push_back(std::make_pair(SI, opNo));
1303 continue;
1304 }
1305
1306 if (CallInst *CI = dyn_cast<CallInst>(U)) {
1307 InlineAsm *IA = dyn_cast<InlineAsm>(CI->getCalledValue());
1308 if (!IA) return true;
1309
1310 // If this is a memory operand, we're cool, otherwise bail out.
1311 if (!IsOperandAMemoryOperand(CI, IA, I, TLI))
1312 return true;
1313 continue;
1314 }
1315
1316 if (FindAllMemoryUses(cast<Instruction>(U), MemoryUses, ConsideredInsts,
1317 TLI))
1318 return true;
1319 }
1320
1321 return false;
1322}
1323
1324/// ValueAlreadyLiveAtInst - Retrn true if Val is already known to be live at
1325/// the use site that we're folding it into. If so, there is no cost to
1326/// include it in the addressing mode. KnownLive1 and KnownLive2 are two values
1327/// that we know are live at the instruction already.
1328bool AddressingModeMatcher::ValueAlreadyLiveAtInst(Value *Val,Value *KnownLive1,
1329 Value *KnownLive2) {
1330 // If Val is either of the known-live values, we know it is live!
1331 if (Val == 0 || Val == KnownLive1 || Val == KnownLive2)
1332 return true;
1333
1334 // All values other than instructions and arguments (e.g. constants) are live.
1335 if (!isa<Instruction>(Val) && !isa<Argument>(Val)) return true;
1336
1337 // If Val is a constant sized alloca in the entry block, it is live, this is
1338 // true because it is just a reference to the stack/frame pointer, which is
1339 // live for the whole function.
1340 if (AllocaInst *AI = dyn_cast<AllocaInst>(Val))
1341 if (AI->isStaticAlloca())
1342 return true;
1343
1344 // Check to see if this value is already used in the memory instruction's
1345 // block. If so, it's already live into the block at the very least, so we
1346 // can reasonably fold it.
1347 return Val->isUsedInBasicBlock(MemoryInst->getParent());
1348}
1349
1350/// IsProfitableToFoldIntoAddressingMode - It is possible for the addressing
1351/// mode of the machine to fold the specified instruction into a load or store
1352/// that ultimately uses it. However, the specified instruction has multiple
1353/// uses. Given this, it may actually increase register pressure to fold it
1354/// into the load. For example, consider this code:
1355///
1356/// X = ...
1357/// Y = X+1
1358/// use(Y) -> nonload/store
1359/// Z = Y+1
1360/// load Z
1361///
1362/// In this case, Y has multiple uses, and can be folded into the load of Z
1363/// (yielding load [X+2]). However, doing this will cause both "X" and "X+1" to
1364/// be live at the use(Y) line. If we don't fold Y into load Z, we use one
1365/// fewer register. Since Y can't be folded into "use(Y)" we don't increase the
1366/// number of computations either.
1367///
1368/// Note that this (like most of CodeGenPrepare) is just a rough heuristic. If
1369/// X was live across 'load Z' for other reasons, we actually *would* want to
1370/// fold the addressing mode in the Z case. This would make Y die earlier.
1371bool AddressingModeMatcher::
1372IsProfitableToFoldIntoAddressingMode(Instruction *I, ExtAddrMode &AMBefore,
1373 ExtAddrMode &AMAfter) {
1374 if (IgnoreProfitability) return true;
1375
1376 // AMBefore is the addressing mode before this instruction was folded into it,
1377 // and AMAfter is the addressing mode after the instruction was folded. Get
1378 // the set of registers referenced by AMAfter and subtract out those
1379 // referenced by AMBefore: this is the set of values which folding in this
1380 // address extends the lifetime of.
1381 //
1382 // Note that there are only two potential values being referenced here,
1383 // BaseReg and ScaleReg (global addresses are always available, as are any
1384 // folded immediates).
1385 Value *BaseReg = AMAfter.BaseReg, *ScaledReg = AMAfter.ScaledReg;
1386
1387 // If the BaseReg or ScaledReg was referenced by the previous addrmode, their
1388 // lifetime wasn't extended by adding this instruction.
1389 if (ValueAlreadyLiveAtInst(BaseReg, AMBefore.BaseReg, AMBefore.ScaledReg))
1390 BaseReg = 0;
1391 if (ValueAlreadyLiveAtInst(ScaledReg, AMBefore.BaseReg, AMBefore.ScaledReg))
1392 ScaledReg = 0;
1393
1394 // If folding this instruction (and it's subexprs) didn't extend any live
1395 // ranges, we're ok with it.
1396 if (BaseReg == 0 && ScaledReg == 0)
1397 return true;
1398
1399 // If all uses of this instruction are ultimately load/store/inlineasm's,
1400 // check to see if their addressing modes will include this instruction. If
1401 // so, we can fold it into all uses, so it doesn't matter if it has multiple
1402 // uses.
1403 SmallVector<std::pair<Instruction*,unsigned>, 16> MemoryUses;
1404 SmallPtrSet<Instruction*, 16> ConsideredInsts;
1405 if (FindAllMemoryUses(I, MemoryUses, ConsideredInsts, TLI))
1406 return false; // Has a non-memory, non-foldable use!
1407
1408 // Now that we know that all uses of this instruction are part of a chain of
1409 // computation involving only operations that could theoretically be folded
1410 // into a memory use, loop over each of these uses and see if they could
1411 // *actually* fold the instruction.
1412 SmallVector<Instruction*, 32> MatchedAddrModeInsts;
1413 for (unsigned i = 0, e = MemoryUses.size(); i != e; ++i) {
1414 Instruction *User = MemoryUses[i].first;
1415 unsigned OpNo = MemoryUses[i].second;
1416
1417 // Get the access type of this use. If the use isn't a pointer, we don't
1418 // know what it accesses.
1419 Value *Address = User->getOperand(OpNo);
1420 if (!Address->getType()->isPointerTy())
1421 return false;
1422 Type *AddressAccessTy =
1423 cast<PointerType>(Address->getType())->getElementType();
1424
1425 // Do a match against the root of this address, ignoring profitability. This
1426 // will tell us if the addressing mode for the memory operation will
1427 // *actually* cover the shared instruction.
1428 ExtAddrMode Result;
1429 AddressingModeMatcher Matcher(MatchedAddrModeInsts, TLI, AddressAccessTy,
1430 MemoryInst, Result);
1431 Matcher.IgnoreProfitability = true;
1432 bool Success = Matcher.MatchAddr(Address, 0);
1433 (void)Success; assert(Success && "Couldn't select *anything*?");
1434
1435 // If the match didn't cover I, then it won't be shared by it.
1436 if (std::find(MatchedAddrModeInsts.begin(), MatchedAddrModeInsts.end(),
1437 I) == MatchedAddrModeInsts.end())
1438 return false;
1439
1440 MatchedAddrModeInsts.clear();
1441 }
1442
1443 return true;
1444}
1445
1446} // end anonymous namespace
1447
Chris Lattnerdd77df32007-04-13 20:30:56 +00001448/// IsNonLocalValue - Return true if the specified values are defined in a
1449/// different basic block than BB.
1450static bool IsNonLocalValue(Value *V, BasicBlock *BB) {
1451 if (Instruction *I = dyn_cast<Instruction>(V))
1452 return I->getParent() != BB;
1453 return false;
1454}
1455
Bob Wilson4a8ee232009-12-03 21:47:07 +00001456/// OptimizeMemoryInst - Load and Store Instructions often have
Chris Lattnerdd77df32007-04-13 20:30:56 +00001457/// addressing modes that can do significant amounts of computation. As such,
1458/// instruction selection will try to get the load or store to do as much
1459/// computation as possible for the program. The problem is that isel can only
1460/// see within a single block. As such, we sink as much legal addressing mode
1461/// stuff into the block as possible.
Chris Lattner88a5c832008-11-25 07:09:13 +00001462///
1463/// This method is used to optimize both load/store and inline asms with memory
1464/// operands.
Chris Lattner896617b2008-11-26 03:20:37 +00001465bool CodeGenPrepare::OptimizeMemoryInst(Instruction *MemoryInst, Value *Addr,
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001466 Type *AccessTy) {
Owen Anderson35bf4d62010-11-27 08:15:55 +00001467 Value *Repl = Addr;
Nadav Rotema94d6e82012-07-24 10:51:42 +00001468
1469 // Try to collapse single-value PHI nodes. This is necessary to undo
Owen Andersond2f41742010-11-19 22:15:03 +00001470 // unprofitable PRE transformations.
Cameron Zwarich7cb4fa22011-01-03 06:33:01 +00001471 SmallVector<Value*, 8> worklist;
1472 SmallPtrSet<Value*, 16> Visited;
Owen Anderson35bf4d62010-11-27 08:15:55 +00001473 worklist.push_back(Addr);
Nadav Rotema94d6e82012-07-24 10:51:42 +00001474
Owen Anderson35bf4d62010-11-27 08:15:55 +00001475 // Use a worklist to iteratively look through PHI nodes, and ensure that
1476 // the addressing mode obtained from the non-PHI roots of the graph
1477 // are equivalent.
1478 Value *Consensus = 0;
Cameron Zwarich4c078f02011-03-01 21:13:53 +00001479 unsigned NumUsesConsensus = 0;
Cameron Zwarich7c8d3512011-03-05 08:12:26 +00001480 bool IsNumUsesConsensusValid = false;
Owen Anderson35bf4d62010-11-27 08:15:55 +00001481 SmallVector<Instruction*, 16> AddrModeInsts;
1482 ExtAddrMode AddrMode;
1483 while (!worklist.empty()) {
1484 Value *V = worklist.back();
1485 worklist.pop_back();
Nadav Rotema94d6e82012-07-24 10:51:42 +00001486
Owen Anderson35bf4d62010-11-27 08:15:55 +00001487 // Break use-def graph loops.
Nick Lewycky48105282011-09-29 23:40:12 +00001488 if (!Visited.insert(V)) {
Owen Anderson35bf4d62010-11-27 08:15:55 +00001489 Consensus = 0;
1490 break;
Owen Andersond2f41742010-11-19 22:15:03 +00001491 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001492
Owen Anderson35bf4d62010-11-27 08:15:55 +00001493 // For a PHI node, push all of its incoming values.
1494 if (PHINode *P = dyn_cast<PHINode>(V)) {
1495 for (unsigned i = 0, e = P->getNumIncomingValues(); i != e; ++i)
1496 worklist.push_back(P->getIncomingValue(i));
1497 continue;
1498 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001499
Owen Anderson35bf4d62010-11-27 08:15:55 +00001500 // For non-PHIs, determine the addressing mode being computed.
1501 SmallVector<Instruction*, 16> NewAddrModeInsts;
1502 ExtAddrMode NewAddrMode =
Nick Lewycky48105282011-09-29 23:40:12 +00001503 AddressingModeMatcher::Match(V, AccessTy, MemoryInst,
Owen Anderson35bf4d62010-11-27 08:15:55 +00001504 NewAddrModeInsts, *TLI);
Cameron Zwarich7c8d3512011-03-05 08:12:26 +00001505
1506 // This check is broken into two cases with very similar code to avoid using
1507 // getNumUses() as much as possible. Some values have a lot of uses, so
1508 // calling getNumUses() unconditionally caused a significant compile-time
1509 // regression.
1510 if (!Consensus) {
1511 Consensus = V;
1512 AddrMode = NewAddrMode;
1513 AddrModeInsts = NewAddrModeInsts;
1514 continue;
1515 } else if (NewAddrMode == AddrMode) {
1516 if (!IsNumUsesConsensusValid) {
1517 NumUsesConsensus = Consensus->getNumUses();
1518 IsNumUsesConsensusValid = true;
1519 }
1520
1521 // Ensure that the obtained addressing mode is equivalent to that obtained
1522 // for all other roots of the PHI traversal. Also, when choosing one
1523 // such root as representative, select the one with the most uses in order
1524 // to keep the cost modeling heuristics in AddressingModeMatcher
1525 // applicable.
Cameron Zwarich4c078f02011-03-01 21:13:53 +00001526 unsigned NumUses = V->getNumUses();
1527 if (NumUses > NumUsesConsensus) {
Owen Anderson35bf4d62010-11-27 08:15:55 +00001528 Consensus = V;
Cameron Zwarich4c078f02011-03-01 21:13:53 +00001529 NumUsesConsensus = NumUses;
Owen Anderson35bf4d62010-11-27 08:15:55 +00001530 AddrModeInsts = NewAddrModeInsts;
1531 }
1532 continue;
1533 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001534
Owen Anderson35bf4d62010-11-27 08:15:55 +00001535 Consensus = 0;
1536 break;
Owen Andersond2f41742010-11-19 22:15:03 +00001537 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001538
Owen Anderson35bf4d62010-11-27 08:15:55 +00001539 // If the addressing mode couldn't be determined, or if multiple different
1540 // ones were determined, bail out now.
1541 if (!Consensus) return false;
Nadav Rotema94d6e82012-07-24 10:51:42 +00001542
Chris Lattnerdd77df32007-04-13 20:30:56 +00001543 // Check to see if any of the instructions supersumed by this addr mode are
1544 // non-local to I's BB.
1545 bool AnyNonLocal = false;
1546 for (unsigned i = 0, e = AddrModeInsts.size(); i != e; ++i) {
Chris Lattner896617b2008-11-26 03:20:37 +00001547 if (IsNonLocalValue(AddrModeInsts[i], MemoryInst->getParent())) {
Chris Lattnerdd77df32007-04-13 20:30:56 +00001548 AnyNonLocal = true;
1549 break;
1550 }
1551 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001552
Chris Lattnerdd77df32007-04-13 20:30:56 +00001553 // If all the instructions matched are already in this BB, don't do anything.
1554 if (!AnyNonLocal) {
David Greene68d67fd2010-01-05 01:27:11 +00001555 DEBUG(dbgs() << "CGP: Found local addrmode: " << AddrMode << "\n");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001556 return false;
1557 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001558
Chris Lattnerdd77df32007-04-13 20:30:56 +00001559 // Insert this computation right after this user. Since our caller is
1560 // scanning from the top of the BB to the bottom, reuse of the expr are
1561 // guaranteed to happen later.
Devang Patel2048c372011-09-06 18:49:53 +00001562 IRBuilder<> Builder(MemoryInst);
Eric Christopher692bf6b2008-09-24 05:32:41 +00001563
Chris Lattnerdd77df32007-04-13 20:30:56 +00001564 // Now that we determined the addressing expression we want to use and know
1565 // that we have to sink it into this block. Check to see if we have already
1566 // done this for some other load/store instr in this block. If so, reuse the
1567 // computation.
1568 Value *&SunkAddr = SunkAddrs[Addr];
1569 if (SunkAddr) {
David Greene68d67fd2010-01-05 01:27:11 +00001570 DEBUG(dbgs() << "CGP: Reusing nonlocal addrmode: " << AddrMode << " for "
Dan Gohman6c1980b2009-07-25 01:13:51 +00001571 << *MemoryInst);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001572 if (SunkAddr->getType() != Addr->getType())
Benjamin Kramera9390a42011-09-27 20:39:19 +00001573 SunkAddr = Builder.CreateBitCast(SunkAddr, Addr->getType());
Chris Lattnerdd77df32007-04-13 20:30:56 +00001574 } else {
David Greene68d67fd2010-01-05 01:27:11 +00001575 DEBUG(dbgs() << "CGP: SINKING nonlocal addrmode: " << AddrMode << " for "
Dan Gohman6c1980b2009-07-25 01:13:51 +00001576 << *MemoryInst);
Chris Lattnerdb125cf2011-07-18 04:54:35 +00001577 Type *IntPtrTy =
Chandler Carruthece6c6b2012-11-01 08:07:29 +00001578 TLI->getDataLayout()->getIntPtrType(AccessTy->getContext());
Eric Christopher692bf6b2008-09-24 05:32:41 +00001579
Chris Lattnerdd77df32007-04-13 20:30:56 +00001580 Value *Result = 0;
Dan Gohmand8d0b6a2010-01-19 22:45:06 +00001581
1582 // Start with the base register. Do this first so that subsequent address
1583 // matching finds it last, which will prevent it from trying to match it
1584 // as the scaled value in case it happens to be a mul. That would be
1585 // problematic if we've sunk a different mul for the scale, because then
1586 // we'd end up sinking both muls.
1587 if (AddrMode.BaseReg) {
1588 Value *V = AddrMode.BaseReg;
Duncan Sands1df98592010-02-16 11:11:14 +00001589 if (V->getType()->isPointerTy())
Devang Patel2048c372011-09-06 18:49:53 +00001590 V = Builder.CreatePtrToInt(V, IntPtrTy, "sunkaddr");
Dan Gohmand8d0b6a2010-01-19 22:45:06 +00001591 if (V->getType() != IntPtrTy)
Devang Patel2048c372011-09-06 18:49:53 +00001592 V = Builder.CreateIntCast(V, IntPtrTy, /*isSigned=*/true, "sunkaddr");
Dan Gohmand8d0b6a2010-01-19 22:45:06 +00001593 Result = V;
1594 }
1595
1596 // Add the scale value.
Chris Lattnerdd77df32007-04-13 20:30:56 +00001597 if (AddrMode.Scale) {
1598 Value *V = AddrMode.ScaledReg;
1599 if (V->getType() == IntPtrTy) {
1600 // done.
Duncan Sands1df98592010-02-16 11:11:14 +00001601 } else if (V->getType()->isPointerTy()) {
Devang Patel2048c372011-09-06 18:49:53 +00001602 V = Builder.CreatePtrToInt(V, IntPtrTy, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001603 } else if (cast<IntegerType>(IntPtrTy)->getBitWidth() <
1604 cast<IntegerType>(V->getType())->getBitWidth()) {
Devang Patel2048c372011-09-06 18:49:53 +00001605 V = Builder.CreateTrunc(V, IntPtrTy, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001606 } else {
Devang Patel2048c372011-09-06 18:49:53 +00001607 V = Builder.CreateSExt(V, IntPtrTy, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001608 }
1609 if (AddrMode.Scale != 1)
Devang Patel2048c372011-09-06 18:49:53 +00001610 V = Builder.CreateMul(V, ConstantInt::get(IntPtrTy, AddrMode.Scale),
1611 "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001612 if (Result)
Devang Patel2048c372011-09-06 18:49:53 +00001613 Result = Builder.CreateAdd(Result, V, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001614 else
1615 Result = V;
1616 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001617
Chris Lattnerdd77df32007-04-13 20:30:56 +00001618 // Add in the BaseGV if present.
1619 if (AddrMode.BaseGV) {
Devang Patel2048c372011-09-06 18:49:53 +00001620 Value *V = Builder.CreatePtrToInt(AddrMode.BaseGV, IntPtrTy, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001621 if (Result)
Devang Patel2048c372011-09-06 18:49:53 +00001622 Result = Builder.CreateAdd(Result, V, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001623 else
1624 Result = V;
1625 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001626
Chris Lattnerdd77df32007-04-13 20:30:56 +00001627 // Add in the Base Offset if present.
1628 if (AddrMode.BaseOffs) {
Owen Andersoneed707b2009-07-24 23:12:02 +00001629 Value *V = ConstantInt::get(IntPtrTy, AddrMode.BaseOffs);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001630 if (Result)
Devang Patel2048c372011-09-06 18:49:53 +00001631 Result = Builder.CreateAdd(Result, V, "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001632 else
1633 Result = V;
1634 }
1635
1636 if (Result == 0)
Owen Andersona7235ea2009-07-31 20:28:14 +00001637 SunkAddr = Constant::getNullValue(Addr->getType());
Chris Lattnerdd77df32007-04-13 20:30:56 +00001638 else
Devang Patel2048c372011-09-06 18:49:53 +00001639 SunkAddr = Builder.CreateIntToPtr(Result, Addr->getType(), "sunkaddr");
Chris Lattnerdd77df32007-04-13 20:30:56 +00001640 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001641
Owen Andersond2f41742010-11-19 22:15:03 +00001642 MemoryInst->replaceUsesOfWith(Repl, SunkAddr);
Eric Christopher692bf6b2008-09-24 05:32:41 +00001643
Chris Lattner0403b472011-04-09 07:05:44 +00001644 // If we have no uses, recursively delete the value and all dead instructions
1645 // using it.
Owen Andersond2f41742010-11-19 22:15:03 +00001646 if (Repl->use_empty()) {
Chris Lattner0403b472011-04-09 07:05:44 +00001647 // This can cause recursive deletion, which can invalidate our iterator.
1648 // Use a WeakVH to hold onto it in case this happens.
1649 WeakVH IterHandle(CurInstIterator);
1650 BasicBlock *BB = CurInstIterator->getParent();
Nadav Rotema94d6e82012-07-24 10:51:42 +00001651
Benjamin Kramer8e0d1c02012-08-29 15:32:21 +00001652 RecursivelyDeleteTriviallyDeadInstructions(Repl, TLInfo);
Chris Lattner0403b472011-04-09 07:05:44 +00001653
1654 if (IterHandle != CurInstIterator) {
1655 // If the iterator instruction was recursively deleted, start over at the
1656 // start of the block.
1657 CurInstIterator = BB->begin();
1658 SunkAddrs.clear();
Nadav Rotema94d6e82012-07-24 10:51:42 +00001659 }
Dale Johannesen536d31b2010-03-31 20:37:15 +00001660 }
Cameron Zwarich31ff1332011-01-05 17:27:27 +00001661 ++NumMemoryInsts;
Chris Lattnerdd77df32007-04-13 20:30:56 +00001662 return true;
1663}
1664
Evan Cheng9bf12b52008-02-26 02:42:37 +00001665/// OptimizeInlineAsmInst - If there are any memory operands, use
Chris Lattner88a5c832008-11-25 07:09:13 +00001666/// OptimizeMemoryInst to sink their address computing into the block when
Evan Cheng9bf12b52008-02-26 02:42:37 +00001667/// possible / profitable.
Chris Lattner75796092011-01-15 07:14:54 +00001668bool CodeGenPrepare::OptimizeInlineAsmInst(CallInst *CS) {
Evan Cheng9bf12b52008-02-26 02:42:37 +00001669 bool MadeChange = false;
Evan Cheng9bf12b52008-02-26 02:42:37 +00001670
Nadav Rotema94d6e82012-07-24 10:51:42 +00001671 TargetLowering::AsmOperandInfoVector
Chris Lattner75796092011-01-15 07:14:54 +00001672 TargetConstraints = TLI->ParseConstraints(CS);
Dale Johannesen677c6ec2010-09-16 18:30:55 +00001673 unsigned ArgNo = 0;
John Thompsoneac6e1d2010-09-13 18:15:37 +00001674 for (unsigned i = 0, e = TargetConstraints.size(); i != e; ++i) {
1675 TargetLowering::AsmOperandInfo &OpInfo = TargetConstraints[i];
Nadav Rotema94d6e82012-07-24 10:51:42 +00001676
Evan Cheng9bf12b52008-02-26 02:42:37 +00001677 // Compute the constraint code and ConstraintType to use.
Dale Johannesen1784d162010-06-25 21:55:36 +00001678 TLI->ComputeConstraintToUse(OpInfo, SDValue());
Evan Cheng9bf12b52008-02-26 02:42:37 +00001679
Eli Friedman9ec80952008-02-26 18:37:49 +00001680 if (OpInfo.ConstraintType == TargetLowering::C_Memory &&
1681 OpInfo.isIndirect) {
Chris Lattner75796092011-01-15 07:14:54 +00001682 Value *OpVal = CS->getArgOperand(ArgNo++);
Chris Lattner1a8943a2011-01-15 07:29:01 +00001683 MadeChange |= OptimizeMemoryInst(CS, OpVal, OpVal->getType());
Dale Johannesen677c6ec2010-09-16 18:30:55 +00001684 } else if (OpInfo.Type == InlineAsm::isInput)
1685 ArgNo++;
Evan Cheng9bf12b52008-02-26 02:42:37 +00001686 }
1687
1688 return MadeChange;
1689}
1690
Dan Gohmanb00f2362009-10-16 20:59:35 +00001691/// MoveExtToFormExtLoad - Move a zext or sext fed by a load into the same
1692/// basic block as the load, unless conditions are unfavorable. This allows
1693/// SelectionDAG to fold the extend into the load.
1694///
1695bool CodeGenPrepare::MoveExtToFormExtLoad(Instruction *I) {
1696 // Look for a load being extended.
1697 LoadInst *LI = dyn_cast<LoadInst>(I->getOperand(0));
1698 if (!LI) return false;
1699
1700 // If they're already in the same block, there's nothing to do.
1701 if (LI->getParent() == I->getParent())
1702 return false;
1703
1704 // If the load has other users and the truncate is not free, this probably
1705 // isn't worthwhile.
1706 if (!LI->hasOneUse() &&
Bob Wilsonec57a1a2010-09-22 18:44:56 +00001707 TLI && (TLI->isTypeLegal(TLI->getValueType(LI->getType())) ||
1708 !TLI->isTypeLegal(TLI->getValueType(I->getType()))) &&
Bob Wilson71dc4d92010-09-21 21:54:27 +00001709 !TLI->isTruncateFree(I->getType(), LI->getType()))
Dan Gohmanb00f2362009-10-16 20:59:35 +00001710 return false;
1711
1712 // Check whether the target supports casts folded into loads.
1713 unsigned LType;
1714 if (isa<ZExtInst>(I))
1715 LType = ISD::ZEXTLOAD;
1716 else {
1717 assert(isa<SExtInst>(I) && "Unexpected ext type!");
1718 LType = ISD::SEXTLOAD;
1719 }
Patrik Hagglund34525f92012-12-11 11:14:33 +00001720 if (TLI && !TLI->isLoadExtLegal(LType, TLI->getValueType(LI->getType())))
Dan Gohmanb00f2362009-10-16 20:59:35 +00001721 return false;
1722
1723 // Move the extend into the same block as the load, so that SelectionDAG
1724 // can fold it.
1725 I->removeFromParent();
1726 I->insertAfter(LI);
Cameron Zwarich31ff1332011-01-05 17:27:27 +00001727 ++NumExtsMoved;
Dan Gohmanb00f2362009-10-16 20:59:35 +00001728 return true;
1729}
1730
Evan Chengbdcb7262007-12-05 23:58:20 +00001731bool CodeGenPrepare::OptimizeExtUses(Instruction *I) {
1732 BasicBlock *DefBB = I->getParent();
1733
Bob Wilson9120f5c2010-09-21 21:44:14 +00001734 // If the result of a {s|z}ext and its source are both live out, rewrite all
Evan Chengbdcb7262007-12-05 23:58:20 +00001735 // other uses of the source with result of extension.
1736 Value *Src = I->getOperand(0);
1737 if (Src->hasOneUse())
1738 return false;
1739
Evan Cheng696e5c02007-12-13 07:50:36 +00001740 // Only do this xform if truncating is free.
Gabor Greif53bdbd72008-02-26 19:13:21 +00001741 if (TLI && !TLI->isTruncateFree(I->getType(), Src->getType()))
Evan Chengf9785f92007-12-13 03:32:53 +00001742 return false;
1743
Evan Cheng772de512007-12-12 00:51:06 +00001744 // Only safe to perform the optimization if the source is also defined in
Evan Cheng765dff22007-12-12 02:53:41 +00001745 // this block.
1746 if (!isa<Instruction>(Src) || DefBB != cast<Instruction>(Src)->getParent())
Evan Cheng772de512007-12-12 00:51:06 +00001747 return false;
1748
Evan Chengbdcb7262007-12-05 23:58:20 +00001749 bool DefIsLiveOut = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001750 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
Evan Chengbdcb7262007-12-05 23:58:20 +00001751 UI != E; ++UI) {
1752 Instruction *User = cast<Instruction>(*UI);
1753
1754 // Figure out which BB this ext is used in.
1755 BasicBlock *UserBB = User->getParent();
1756 if (UserBB == DefBB) continue;
1757 DefIsLiveOut = true;
1758 break;
1759 }
1760 if (!DefIsLiveOut)
1761 return false;
1762
Jim Grosbach467116a2013-04-15 17:40:48 +00001763 // Make sure none of the uses are PHI nodes.
Eric Christopher692bf6b2008-09-24 05:32:41 +00001764 for (Value::use_iterator UI = Src->use_begin(), E = Src->use_end();
Evan Cheng765dff22007-12-12 02:53:41 +00001765 UI != E; ++UI) {
1766 Instruction *User = cast<Instruction>(*UI);
Evan Chengf9785f92007-12-13 03:32:53 +00001767 BasicBlock *UserBB = User->getParent();
1768 if (UserBB == DefBB) continue;
1769 // Be conservative. We don't want this xform to end up introducing
1770 // reloads just before load / store instructions.
1771 if (isa<PHINode>(User) || isa<LoadInst>(User) || isa<StoreInst>(User))
Evan Cheng765dff22007-12-12 02:53:41 +00001772 return false;
1773 }
1774
Evan Chengbdcb7262007-12-05 23:58:20 +00001775 // InsertedTruncs - Only insert one trunc in each block once.
1776 DenseMap<BasicBlock*, Instruction*> InsertedTruncs;
1777
1778 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001779 for (Value::use_iterator UI = Src->use_begin(), E = Src->use_end();
Evan Chengbdcb7262007-12-05 23:58:20 +00001780 UI != E; ++UI) {
1781 Use &TheUse = UI.getUse();
1782 Instruction *User = cast<Instruction>(*UI);
1783
1784 // Figure out which BB this ext is used in.
1785 BasicBlock *UserBB = User->getParent();
1786 if (UserBB == DefBB) continue;
1787
1788 // Both src and def are live in this block. Rewrite the use.
1789 Instruction *&InsertedTrunc = InsertedTruncs[UserBB];
1790
1791 if (!InsertedTrunc) {
Bill Wendling5b6f42f2011-08-16 20:45:24 +00001792 BasicBlock::iterator InsertPt = UserBB->getFirstInsertionPt();
Evan Chengbdcb7262007-12-05 23:58:20 +00001793 InsertedTrunc = new TruncInst(I, Src->getType(), "", InsertPt);
1794 }
1795
1796 // Replace a use of the {s|z}ext source with a use of the result.
1797 TheUse = InsertedTrunc;
Cameron Zwarich31ff1332011-01-05 17:27:27 +00001798 ++NumExtUses;
Evan Chengbdcb7262007-12-05 23:58:20 +00001799 MadeChange = true;
1800 }
1801
1802 return MadeChange;
1803}
1804
Benjamin Kramer59957502012-05-05 12:49:22 +00001805/// isFormingBranchFromSelectProfitable - Returns true if a SelectInst should be
1806/// turned into an explicit branch.
1807static bool isFormingBranchFromSelectProfitable(SelectInst *SI) {
1808 // FIXME: This should use the same heuristics as IfConversion to determine
1809 // whether a select is better represented as a branch. This requires that
1810 // branch probability metadata is preserved for the select, which is not the
1811 // case currently.
1812
1813 CmpInst *Cmp = dyn_cast<CmpInst>(SI->getCondition());
1814
1815 // If the branch is predicted right, an out of order CPU can avoid blocking on
1816 // the compare. Emit cmovs on compares with a memory operand as branches to
1817 // avoid stalls on the load from memory. If the compare has more than one use
1818 // there's probably another cmov or setcc around so it's not worth emitting a
1819 // branch.
1820 if (!Cmp)
1821 return false;
1822
1823 Value *CmpOp0 = Cmp->getOperand(0);
1824 Value *CmpOp1 = Cmp->getOperand(1);
1825
1826 // We check that the memory operand has one use to avoid uses of the loaded
1827 // value directly after the compare, making branches unprofitable.
1828 return Cmp->hasOneUse() &&
1829 ((isa<LoadInst>(CmpOp0) && CmpOp0->hasOneUse()) ||
1830 (isa<LoadInst>(CmpOp1) && CmpOp1->hasOneUse()));
1831}
1832
1833
Nadav Rotem9f40cb32012-09-02 12:10:19 +00001834/// If we have a SelectInst that will likely profit from branch prediction,
1835/// turn it into a branch.
Benjamin Kramer59957502012-05-05 12:49:22 +00001836bool CodeGenPrepare::OptimizeSelectInst(SelectInst *SI) {
Nadav Rotem9f40cb32012-09-02 12:10:19 +00001837 bool VectorCond = !SI->getCondition()->getType()->isIntegerTy(1);
1838
1839 // Can we convert the 'select' to CF ?
1840 if (DisableSelectToBranch || OptSize || !TLI || VectorCond)
Benjamin Kramer59957502012-05-05 12:49:22 +00001841 return false;
1842
Nadav Rotem9f40cb32012-09-02 12:10:19 +00001843 TargetLowering::SelectSupportKind SelectKind;
1844 if (VectorCond)
1845 SelectKind = TargetLowering::VectorMaskSelect;
1846 else if (SI->getType()->isVectorTy())
1847 SelectKind = TargetLowering::ScalarCondVectorVal;
1848 else
1849 SelectKind = TargetLowering::ScalarValSelect;
1850
1851 // Do we have efficient codegen support for this kind of 'selects' ?
1852 if (TLI->isSelectSupported(SelectKind)) {
1853 // We have efficient codegen support for the select instruction.
1854 // Check if it is profitable to keep this 'select'.
1855 if (!TLI->isPredictableSelectExpensive() ||
1856 !isFormingBranchFromSelectProfitable(SI))
1857 return false;
1858 }
Benjamin Kramer59957502012-05-05 12:49:22 +00001859
1860 ModifiedDT = true;
1861
1862 // First, we split the block containing the select into 2 blocks.
1863 BasicBlock *StartBlock = SI->getParent();
1864 BasicBlock::iterator SplitPt = ++(BasicBlock::iterator(SI));
1865 BasicBlock *NextBlock = StartBlock->splitBasicBlock(SplitPt, "select.end");
1866
1867 // Create a new block serving as the landing pad for the branch.
1868 BasicBlock *SmallBlock = BasicBlock::Create(SI->getContext(), "select.mid",
1869 NextBlock->getParent(), NextBlock);
1870
1871 // Move the unconditional branch from the block with the select in it into our
1872 // landing pad block.
1873 StartBlock->getTerminator()->eraseFromParent();
1874 BranchInst::Create(NextBlock, SmallBlock);
1875
1876 // Insert the real conditional branch based on the original condition.
1877 BranchInst::Create(NextBlock, SmallBlock, SI->getCondition(), SI);
1878
1879 // The select itself is replaced with a PHI Node.
1880 PHINode *PN = PHINode::Create(SI->getType(), 2, "", NextBlock->begin());
1881 PN->takeName(SI);
1882 PN->addIncoming(SI->getTrueValue(), StartBlock);
1883 PN->addIncoming(SI->getFalseValue(), SmallBlock);
1884 SI->replaceAllUsesWith(PN);
1885 SI->eraseFromParent();
1886
1887 // Instruct OptimizeBlock to skip to the next block.
1888 CurInstIterator = StartBlock->end();
1889 ++NumSelectsExpanded;
1890 return true;
1891}
1892
Cameron Zwarichc0611012011-01-06 02:37:26 +00001893bool CodeGenPrepare::OptimizeInst(Instruction *I) {
Cameron Zwarichc0611012011-01-06 02:37:26 +00001894 if (PHINode *P = dyn_cast<PHINode>(I)) {
1895 // It is possible for very late stage optimizations (such as SimplifyCFG)
1896 // to introduce PHI nodes too late to be cleaned up. If we detect such a
1897 // trivial PHI, go ahead and zap it here.
1898 if (Value *V = SimplifyInstruction(P)) {
1899 P->replaceAllUsesWith(V);
1900 P->eraseFromParent();
1901 ++NumPHIsElim;
Chris Lattner1a8943a2011-01-15 07:29:01 +00001902 return true;
Cameron Zwarichc0611012011-01-06 02:37:26 +00001903 }
Chris Lattner1a8943a2011-01-15 07:29:01 +00001904 return false;
1905 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001906
Chris Lattner1a8943a2011-01-15 07:29:01 +00001907 if (CastInst *CI = dyn_cast<CastInst>(I)) {
Cameron Zwarichc0611012011-01-06 02:37:26 +00001908 // If the source of the cast is a constant, then this should have
1909 // already been constant folded. The only reason NOT to constant fold
1910 // it is if something (e.g. LSR) was careful to place the constant
1911 // evaluation in a block other than then one that uses it (e.g. to hoist
1912 // the address of globals out of a loop). If this is the case, we don't
1913 // want to forward-subst the cast.
1914 if (isa<Constant>(CI->getOperand(0)))
1915 return false;
1916
Chris Lattner1a8943a2011-01-15 07:29:01 +00001917 if (TLI && OptimizeNoopCopyExpression(CI, *TLI))
1918 return true;
Cameron Zwarichc0611012011-01-06 02:37:26 +00001919
Chris Lattner1a8943a2011-01-15 07:29:01 +00001920 if (isa<ZExtInst>(I) || isa<SExtInst>(I)) {
1921 bool MadeChange = MoveExtToFormExtLoad(I);
1922 return MadeChange | OptimizeExtUses(I);
Cameron Zwarichc0611012011-01-06 02:37:26 +00001923 }
Chris Lattner1a8943a2011-01-15 07:29:01 +00001924 return false;
1925 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001926
Chris Lattner1a8943a2011-01-15 07:29:01 +00001927 if (CmpInst *CI = dyn_cast<CmpInst>(I))
1928 return OptimizeCmpExpression(CI);
Nadav Rotema94d6e82012-07-24 10:51:42 +00001929
Chris Lattner1a8943a2011-01-15 07:29:01 +00001930 if (LoadInst *LI = dyn_cast<LoadInst>(I)) {
Cameron Zwarichc0611012011-01-06 02:37:26 +00001931 if (TLI)
Hans Wennborg04d7d132012-10-30 11:23:25 +00001932 return OptimizeMemoryInst(I, I->getOperand(0), LI->getType());
1933 return false;
Chris Lattner1a8943a2011-01-15 07:29:01 +00001934 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001935
Chris Lattner1a8943a2011-01-15 07:29:01 +00001936 if (StoreInst *SI = dyn_cast<StoreInst>(I)) {
Cameron Zwarichc0611012011-01-06 02:37:26 +00001937 if (TLI)
Chris Lattner1a8943a2011-01-15 07:29:01 +00001938 return OptimizeMemoryInst(I, SI->getOperand(1),
1939 SI->getOperand(0)->getType());
1940 return false;
1941 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001942
Chris Lattner1a8943a2011-01-15 07:29:01 +00001943 if (GetElementPtrInst *GEPI = dyn_cast<GetElementPtrInst>(I)) {
Cameron Zwarich865ae1a2011-01-06 02:44:52 +00001944 if (GEPI->hasAllZeroIndices()) {
1945 /// The GEP operand must be a pointer, so must its result -> BitCast
1946 Instruction *NC = new BitCastInst(GEPI->getOperand(0), GEPI->getType(),
1947 GEPI->getName(), GEPI);
1948 GEPI->replaceAllUsesWith(NC);
1949 GEPI->eraseFromParent();
1950 ++NumGEPsElim;
Cameron Zwarich865ae1a2011-01-06 02:44:52 +00001951 OptimizeInst(NC);
Chris Lattner1a8943a2011-01-15 07:29:01 +00001952 return true;
Cameron Zwarich865ae1a2011-01-06 02:44:52 +00001953 }
Chris Lattner1a8943a2011-01-15 07:29:01 +00001954 return false;
Cameron Zwarichc0611012011-01-06 02:37:26 +00001955 }
Nadav Rotema94d6e82012-07-24 10:51:42 +00001956
Chris Lattner1a8943a2011-01-15 07:29:01 +00001957 if (CallInst *CI = dyn_cast<CallInst>(I))
1958 return OptimizeCallInst(CI);
Cameron Zwarichc0611012011-01-06 02:37:26 +00001959
Benjamin Kramer59957502012-05-05 12:49:22 +00001960 if (SelectInst *SI = dyn_cast<SelectInst>(I))
1961 return OptimizeSelectInst(SI);
1962
Chris Lattner1a8943a2011-01-15 07:29:01 +00001963 return false;
Cameron Zwarichc0611012011-01-06 02:37:26 +00001964}
1965
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001966// In this pass we look for GEP and cast instructions that are used
1967// across basic blocks and rewrite them to improve basic-block-at-a-time
1968// selection.
1969bool CodeGenPrepare::OptimizeBlock(BasicBlock &BB) {
Cameron Zwarich8c3527e2011-01-06 00:42:50 +00001970 SunkAddrs.clear();
Cameron Zwarich56e37932011-03-02 03:31:46 +00001971 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001972
Chris Lattner75796092011-01-15 07:14:54 +00001973 CurInstIterator = BB.begin();
Hans Wennborg93ba1332012-09-19 07:48:16 +00001974 while (CurInstIterator != BB.end())
Chris Lattner94e8e0c2011-01-15 07:25:29 +00001975 MadeChange |= OptimizeInst(CurInstIterator++);
Eric Christopher692bf6b2008-09-24 05:32:41 +00001976
Benjamin Kramer4ccb49a2012-11-23 19:17:06 +00001977 MadeChange |= DupRetToEnableTailCallOpts(&BB);
1978
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001979 return MadeChange;
1980}
Devang Patelf56ea612011-08-18 00:50:51 +00001981
1982// llvm.dbg.value is far away from the value then iSel may not be able
Nadav Rotema94d6e82012-07-24 10:51:42 +00001983// handle it properly. iSel will drop llvm.dbg.value if it can not
Devang Patelf56ea612011-08-18 00:50:51 +00001984// find a node corresponding to the value.
1985bool CodeGenPrepare::PlaceDbgValues(Function &F) {
1986 bool MadeChange = false;
1987 for (Function::iterator I = F.begin(), E = F.end(); I != E; ++I) {
1988 Instruction *PrevNonDbgInst = NULL;
1989 for (BasicBlock::iterator BI = I->begin(), BE = I->end(); BI != BE;) {
1990 Instruction *Insn = BI; ++BI;
1991 DbgValueInst *DVI = dyn_cast<DbgValueInst>(Insn);
1992 if (!DVI) {
1993 PrevNonDbgInst = Insn;
1994 continue;
1995 }
1996
1997 Instruction *VI = dyn_cast_or_null<Instruction>(DVI->getValue());
1998 if (VI && VI != PrevNonDbgInst && !VI->isTerminator()) {
1999 DEBUG(dbgs() << "Moving Debug Value before :\n" << *DVI << ' ' << *VI);
2000 DVI->removeFromParent();
2001 if (isa<PHINode>(VI))
2002 DVI->insertBefore(VI->getParent()->getFirstInsertionPt());
2003 else
2004 DVI->insertAfter(VI);
2005 MadeChange = true;
2006 ++NumDbgValueMoved;
2007 }
2008 }
2009 }
2010 return MadeChange;
2011}