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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"
18#include "llvm/Constants.h"
19#include "llvm/DerivedTypes.h"
20#include "llvm/Function.h"
Evan Cheng9bf12b52008-02-26 02:42:37 +000021#include "llvm/InlineAsm.h"
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000022#include "llvm/Instructions.h"
23#include "llvm/Pass.h"
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000024#include "llvm/Target/TargetAsmInfo.h"
25#include "llvm/Target/TargetData.h"
26#include "llvm/Target/TargetLowering.h"
27#include "llvm/Target/TargetMachine.h"
28#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Chris Lattnerdd77df32007-04-13 20:30:56 +000029#include "llvm/Transforms/Utils/Local.h"
30#include "llvm/ADT/DenseMap.h"
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000031#include "llvm/ADT/SmallSet.h"
Evan Cheng9bf12b52008-02-26 02:42:37 +000032#include "llvm/Support/CallSite.h"
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +000033#include "llvm/Support/Compiler.h"
Evan Chengbdcb7262007-12-05 23:58:20 +000034#include "llvm/Support/Debug.h"
Chris Lattnerdd77df32007-04-13 20:30:56 +000035#include "llvm/Support/GetElementPtrTypeIterator.h"
Chris Lattner088a1e82008-11-25 04:42:10 +000036#include "llvm/Support/PatternMatch.h"
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000037using namespace llvm;
Chris Lattner088a1e82008-11-25 04:42:10 +000038using namespace llvm::PatternMatch;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000039
Eric Christopher692bf6b2008-09-24 05:32:41 +000040namespace {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000041 class VISIBILITY_HIDDEN CodeGenPrepare : public FunctionPass {
42 /// TLI - Keep a pointer of a TargetLowering to consult for determining
43 /// transformation profitability.
44 const TargetLowering *TLI;
45 public:
Nick Lewyckyecd94c82007-05-06 13:37:16 +000046 static char ID; // Pass identification, replacement for typeid
Dan Gohmanc2bbfc12007-08-01 15:32:29 +000047 explicit CodeGenPrepare(const TargetLowering *tli = 0)
Dan Gohmanae73dc12008-09-04 17:05:41 +000048 : FunctionPass(&ID), TLI(tli) {}
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000049 bool runOnFunction(Function &F);
Eric Christopher692bf6b2008-09-24 05:32:41 +000050
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000051 private:
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +000052 bool EliminateMostlyEmptyBlocks(Function &F);
53 bool CanMergeBlocks(const BasicBlock *BB, const BasicBlock *DestBB) const;
54 void EliminateMostlyEmptyBlock(BasicBlock *BB);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000055 bool OptimizeBlock(BasicBlock &BB);
Chris Lattner88a5c832008-11-25 07:09:13 +000056 bool OptimizeMemoryInst(Instruction *I, Value *Addr, const Type *AccessTy,
57 DenseMap<Value*,Value*> &SunkAddrs);
Evan Cheng9bf12b52008-02-26 02:42:37 +000058 bool OptimizeInlineAsmInst(Instruction *I, CallSite CS,
59 DenseMap<Value*,Value*> &SunkAddrs);
Evan Chengbdcb7262007-12-05 23:58:20 +000060 bool OptimizeExtUses(Instruction *I);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000061 };
62}
Devang Patel794fd752007-05-01 21:15:47 +000063
Devang Patel19974732007-05-03 01:11:54 +000064char CodeGenPrepare::ID = 0;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000065static RegisterPass<CodeGenPrepare> X("codegenprepare",
66 "Optimize for code generation");
67
68FunctionPass *llvm::createCodeGenPreparePass(const TargetLowering *TLI) {
69 return new CodeGenPrepare(TLI);
70}
71
72
73bool CodeGenPrepare::runOnFunction(Function &F) {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000074 bool EverMadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +000075
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +000076 // First pass, eliminate blocks that contain only PHI nodes and an
77 // unconditional branch.
78 EverMadeChange |= EliminateMostlyEmptyBlocks(F);
Eric Christopher692bf6b2008-09-24 05:32:41 +000079
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +000080 bool MadeChange = true;
Chris Lattnerdbe0dec2007-03-31 04:06:36 +000081 while (MadeChange) {
82 MadeChange = false;
83 for (Function::iterator BB = F.begin(), E = F.end(); BB != E; ++BB)
84 MadeChange |= OptimizeBlock(*BB);
85 EverMadeChange |= MadeChange;
86 }
87 return EverMadeChange;
88}
89
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +000090/// EliminateMostlyEmptyBlocks - eliminate blocks that contain only PHI nodes
Eric Christopher692bf6b2008-09-24 05:32:41 +000091/// and an unconditional branch. Passes before isel (e.g. LSR/loopsimplify)
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +000092/// often split edges in ways that are non-optimal for isel. Start by
93/// eliminating these blocks so we can split them the way we want them.
94bool CodeGenPrepare::EliminateMostlyEmptyBlocks(Function &F) {
95 bool MadeChange = false;
96 // Note that this intentionally skips the entry block.
97 for (Function::iterator I = ++F.begin(), E = F.end(); I != E; ) {
98 BasicBlock *BB = I++;
99
100 // If this block doesn't end with an uncond branch, ignore it.
101 BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
102 if (!BI || !BI->isUnconditional())
103 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000104
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000105 // If the instruction before the branch isn't a phi node, then other stuff
106 // is happening here.
107 BasicBlock::iterator BBI = BI;
108 if (BBI != BB->begin()) {
109 --BBI;
110 if (!isa<PHINode>(BBI)) continue;
111 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000112
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000113 // Do not break infinite loops.
114 BasicBlock *DestBB = BI->getSuccessor(0);
115 if (DestBB == BB)
116 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000117
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000118 if (!CanMergeBlocks(BB, DestBB))
119 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000120
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000121 EliminateMostlyEmptyBlock(BB);
122 MadeChange = true;
123 }
124 return MadeChange;
125}
126
127/// CanMergeBlocks - Return true if we can merge BB into DestBB if there is a
128/// single uncond branch between them, and BB contains no other non-phi
129/// instructions.
130bool CodeGenPrepare::CanMergeBlocks(const BasicBlock *BB,
131 const BasicBlock *DestBB) const {
132 // We only want to eliminate blocks whose phi nodes are used by phi nodes in
133 // the successor. If there are more complex condition (e.g. preheaders),
134 // don't mess around with them.
135 BasicBlock::const_iterator BBI = BB->begin();
136 while (const PHINode *PN = dyn_cast<PHINode>(BBI++)) {
137 for (Value::use_const_iterator UI = PN->use_begin(), E = PN->use_end();
138 UI != E; ++UI) {
139 const Instruction *User = cast<Instruction>(*UI);
140 if (User->getParent() != DestBB || !isa<PHINode>(User))
141 return false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000142 // If User is inside DestBB block and it is a PHINode then check
143 // incoming value. If incoming value is not from BB then this is
Devang Patel75abc1e2007-04-25 00:37:04 +0000144 // a complex condition (e.g. preheaders) we want to avoid here.
145 if (User->getParent() == DestBB) {
146 if (const PHINode *UPN = dyn_cast<PHINode>(User))
147 for (unsigned I = 0, E = UPN->getNumIncomingValues(); I != E; ++I) {
148 Instruction *Insn = dyn_cast<Instruction>(UPN->getIncomingValue(I));
149 if (Insn && Insn->getParent() == BB &&
150 Insn->getParent() != UPN->getIncomingBlock(I))
151 return false;
152 }
153 }
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000154 }
155 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000156
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000157 // If BB and DestBB contain any common predecessors, then the phi nodes in BB
158 // and DestBB may have conflicting incoming values for the block. If so, we
159 // can't merge the block.
160 const PHINode *DestBBPN = dyn_cast<PHINode>(DestBB->begin());
161 if (!DestBBPN) return true; // no conflict.
Eric Christopher692bf6b2008-09-24 05:32:41 +0000162
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000163 // Collect the preds of BB.
Chris Lattnerf67f73a2007-11-06 22:07:40 +0000164 SmallPtrSet<const BasicBlock*, 16> BBPreds;
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000165 if (const PHINode *BBPN = dyn_cast<PHINode>(BB->begin())) {
166 // It is faster to get preds from a PHI than with pred_iterator.
167 for (unsigned i = 0, e = BBPN->getNumIncomingValues(); i != e; ++i)
168 BBPreds.insert(BBPN->getIncomingBlock(i));
169 } else {
170 BBPreds.insert(pred_begin(BB), pred_end(BB));
171 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000172
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000173 // Walk the preds of DestBB.
174 for (unsigned i = 0, e = DestBBPN->getNumIncomingValues(); i != e; ++i) {
175 BasicBlock *Pred = DestBBPN->getIncomingBlock(i);
176 if (BBPreds.count(Pred)) { // Common predecessor?
177 BBI = DestBB->begin();
178 while (const PHINode *PN = dyn_cast<PHINode>(BBI++)) {
179 const Value *V1 = PN->getIncomingValueForBlock(Pred);
180 const Value *V2 = PN->getIncomingValueForBlock(BB);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000181
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000182 // If V2 is a phi node in BB, look up what the mapped value will be.
183 if (const PHINode *V2PN = dyn_cast<PHINode>(V2))
184 if (V2PN->getParent() == BB)
185 V2 = V2PN->getIncomingValueForBlock(Pred);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000186
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000187 // If there is a conflict, bail out.
188 if (V1 != V2) return false;
189 }
190 }
191 }
192
193 return true;
194}
195
196
197/// EliminateMostlyEmptyBlock - Eliminate a basic block that have only phi's and
198/// an unconditional branch in it.
199void CodeGenPrepare::EliminateMostlyEmptyBlock(BasicBlock *BB) {
200 BranchInst *BI = cast<BranchInst>(BB->getTerminator());
201 BasicBlock *DestBB = BI->getSuccessor(0);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000202
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000203 DOUT << "MERGING MOSTLY EMPTY BLOCKS - BEFORE:\n" << *BB << *DestBB;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000204
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000205 // If the destination block has a single pred, then this is a trivial edge,
206 // just collapse it.
207 if (DestBB->getSinglePredecessor()) {
208 // If DestBB has single-entry PHI nodes, fold them.
209 while (PHINode *PN = dyn_cast<PHINode>(DestBB->begin())) {
Chris Lattner47f57512008-11-24 19:25:36 +0000210 Value *NewVal = PN->getIncomingValue(0);
211 // Replace self referencing PHI with undef, it must be dead.
Chris Lattnerae297f82008-11-24 21:26:21 +0000212 if (NewVal == PN) NewVal = UndefValue::get(PN->getType());
Chris Lattner47f57512008-11-24 19:25:36 +0000213 PN->replaceAllUsesWith(NewVal);
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000214 PN->eraseFromParent();
215 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000216
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000217 // Splice all the PHI nodes from BB over to DestBB.
218 DestBB->getInstList().splice(DestBB->begin(), BB->getInstList(),
219 BB->begin(), BI);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000220
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000221 // Anything that branched to BB now branches to DestBB.
222 BB->replaceAllUsesWith(DestBB);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000223
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000224 // Nuke BB.
225 BB->eraseFromParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000226
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000227 DOUT << "AFTER:\n" << *DestBB << "\n\n\n";
228 return;
229 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000230
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000231 // Otherwise, we have multiple predecessors of BB. Update the PHIs in DestBB
232 // to handle the new incoming edges it is about to have.
233 PHINode *PN;
234 for (BasicBlock::iterator BBI = DestBB->begin();
235 (PN = dyn_cast<PHINode>(BBI)); ++BBI) {
236 // Remove the incoming value for BB, and remember it.
237 Value *InVal = PN->removeIncomingValue(BB, false);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000238
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000239 // Two options: either the InVal is a phi node defined in BB or it is some
240 // value that dominates BB.
241 PHINode *InValPhi = dyn_cast<PHINode>(InVal);
242 if (InValPhi && InValPhi->getParent() == BB) {
243 // Add all of the input values of the input PHI as inputs of this phi.
244 for (unsigned i = 0, e = InValPhi->getNumIncomingValues(); i != e; ++i)
245 PN->addIncoming(InValPhi->getIncomingValue(i),
246 InValPhi->getIncomingBlock(i));
247 } else {
248 // Otherwise, add one instance of the dominating value for each edge that
249 // we will be adding.
250 if (PHINode *BBPN = dyn_cast<PHINode>(BB->begin())) {
251 for (unsigned i = 0, e = BBPN->getNumIncomingValues(); i != e; ++i)
252 PN->addIncoming(InVal, BBPN->getIncomingBlock(i));
253 } else {
254 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
255 PN->addIncoming(InVal, *PI);
256 }
257 }
258 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000259
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000260 // The PHIs are now updated, change everything that refers to BB to use
261 // DestBB and remove BB.
262 BB->replaceAllUsesWith(DestBB);
263 BB->eraseFromParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000264
Chris Lattnerd9c3a0d2007-04-02 01:35:34 +0000265 DOUT << "AFTER:\n" << *DestBB << "\n\n\n";
266}
267
268
Chris Lattnerebe80752007-12-24 19:32:55 +0000269/// SplitEdgeNicely - Split the critical edge from TI to its specified
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000270/// successor if it will improve codegen. We only do this if the successor has
271/// phi nodes (otherwise critical edges are ok). If there is already another
272/// predecessor of the succ that is empty (and thus has no phi nodes), use it
273/// instead of introducing a new block.
274static void SplitEdgeNicely(TerminatorInst *TI, unsigned SuccNum, Pass *P) {
275 BasicBlock *TIBB = TI->getParent();
276 BasicBlock *Dest = TI->getSuccessor(SuccNum);
277 assert(isa<PHINode>(Dest->begin()) &&
278 "This should only be called if Dest has a PHI!");
Eric Christopher692bf6b2008-09-24 05:32:41 +0000279
Chris Lattnerebe80752007-12-24 19:32:55 +0000280 // As a hack, never split backedges of loops. Even though the copy for any
281 // PHIs inserted on the backedge would be dead for exits from the loop, we
282 // assume that the cost of *splitting* the backedge would be too high.
Chris Lattnerff26ab22007-12-25 19:06:45 +0000283 if (Dest == TIBB)
Chris Lattnerebe80752007-12-24 19:32:55 +0000284 return;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000285
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000286 /// TIPHIValues - This array is lazily computed to determine the values of
287 /// PHIs in Dest that TI would provide.
Chris Lattnerebe80752007-12-24 19:32:55 +0000288 SmallVector<Value*, 32> TIPHIValues;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000289
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000290 // Check to see if Dest has any blocks that can be used as a split edge for
291 // this terminator.
292 for (pred_iterator PI = pred_begin(Dest), E = pred_end(Dest); PI != E; ++PI) {
293 BasicBlock *Pred = *PI;
294 // To be usable, the pred has to end with an uncond branch to the dest.
295 BranchInst *PredBr = dyn_cast<BranchInst>(Pred->getTerminator());
296 if (!PredBr || !PredBr->isUnconditional() ||
297 // Must be empty other than the branch.
Dale Johannesen6603a1b2007-05-08 01:01:04 +0000298 &Pred->front() != PredBr ||
299 // Cannot be the entry block; its label does not get emitted.
300 Pred == &(Dest->getParent()->getEntryBlock()))
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000301 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000302
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000303 // Finally, since we know that Dest has phi nodes in it, we have to make
304 // sure that jumping to Pred will have the same affect as going to Dest in
305 // terms of PHI values.
306 PHINode *PN;
307 unsigned PHINo = 0;
308 bool FoundMatch = true;
309 for (BasicBlock::iterator I = Dest->begin();
310 (PN = dyn_cast<PHINode>(I)); ++I, ++PHINo) {
311 if (PHINo == TIPHIValues.size())
312 TIPHIValues.push_back(PN->getIncomingValueForBlock(TIBB));
Eric Christopher692bf6b2008-09-24 05:32:41 +0000313
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000314 // If the PHI entry doesn't work, we can't use this pred.
315 if (TIPHIValues[PHINo] != PN->getIncomingValueForBlock(Pred)) {
316 FoundMatch = false;
317 break;
318 }
319 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000320
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000321 // If we found a workable predecessor, change TI to branch to Succ.
322 if (FoundMatch) {
323 Dest->removePredecessor(TIBB);
324 TI->setSuccessor(SuccNum, Pred);
325 return;
326 }
327 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000328
329 SplitCriticalEdge(TI, SuccNum, P, true);
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000330}
331
Chris Lattnerdd77df32007-04-13 20:30:56 +0000332/// OptimizeNoopCopyExpression - If the specified cast instruction is a noop
333/// copy (e.g. it's casting from one pointer type to another, int->uint, or
334/// int->sbyte on PPC), sink it into user blocks to reduce the number of virtual
Dale Johannesence0b2372007-06-12 16:50:17 +0000335/// registers that must be created and coalesced.
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000336///
337/// Return true if any changes are made.
Chris Lattner85fa13c2008-11-24 22:44:16 +0000338///
Chris Lattnerdd77df32007-04-13 20:30:56 +0000339static bool OptimizeNoopCopyExpression(CastInst *CI, const TargetLowering &TLI){
Eric Christopher692bf6b2008-09-24 05:32:41 +0000340 // If this is a noop copy,
Duncan Sands83ec4b62008-06-06 12:08:01 +0000341 MVT SrcVT = TLI.getValueType(CI->getOperand(0)->getType());
342 MVT DstVT = TLI.getValueType(CI->getType());
Eric Christopher692bf6b2008-09-24 05:32:41 +0000343
Chris Lattnerdd77df32007-04-13 20:30:56 +0000344 // This is an fp<->int conversion?
Duncan Sands83ec4b62008-06-06 12:08:01 +0000345 if (SrcVT.isInteger() != DstVT.isInteger())
Chris Lattnerdd77df32007-04-13 20:30:56 +0000346 return false;
Duncan Sands8e4eb092008-06-08 20:54:56 +0000347
Chris Lattnerdd77df32007-04-13 20:30:56 +0000348 // If this is an extension, it will be a zero or sign extension, which
349 // isn't a noop.
Duncan Sands8e4eb092008-06-08 20:54:56 +0000350 if (SrcVT.bitsLT(DstVT)) return false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000351
Chris Lattnerdd77df32007-04-13 20:30:56 +0000352 // If these values will be promoted, find out what they will be promoted
353 // to. This helps us consider truncates on PPC as noop copies when they
354 // are.
355 if (TLI.getTypeAction(SrcVT) == TargetLowering::Promote)
356 SrcVT = TLI.getTypeToTransformTo(SrcVT);
357 if (TLI.getTypeAction(DstVT) == TargetLowering::Promote)
358 DstVT = TLI.getTypeToTransformTo(DstVT);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000359
Chris Lattnerdd77df32007-04-13 20:30:56 +0000360 // If, after promotion, these are the same types, this is a noop copy.
361 if (SrcVT != DstVT)
362 return false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000363
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000364 BasicBlock *DefBB = CI->getParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000365
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000366 /// InsertedCasts - Only insert a cast in each block once.
Dale Johannesence0b2372007-06-12 16:50:17 +0000367 DenseMap<BasicBlock*, CastInst*> InsertedCasts;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000368
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000369 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000370 for (Value::use_iterator UI = CI->use_begin(), E = CI->use_end();
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000371 UI != E; ) {
372 Use &TheUse = UI.getUse();
373 Instruction *User = cast<Instruction>(*UI);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000374
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000375 // Figure out which BB this cast is used in. For PHI's this is the
376 // appropriate predecessor block.
377 BasicBlock *UserBB = User->getParent();
378 if (PHINode *PN = dyn_cast<PHINode>(User)) {
379 unsigned OpVal = UI.getOperandNo()/2;
380 UserBB = PN->getIncomingBlock(OpVal);
381 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000382
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000383 // Preincrement use iterator so we don't invalidate it.
384 ++UI;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000385
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000386 // If this user is in the same block as the cast, don't change the cast.
387 if (UserBB == DefBB) continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000388
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000389 // If we have already inserted a cast into this block, use it.
390 CastInst *&InsertedCast = InsertedCasts[UserBB];
391
392 if (!InsertedCast) {
Dan Gohman02dea8b2008-05-23 21:05:58 +0000393 BasicBlock::iterator InsertPt = UserBB->getFirstNonPHI();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000394
395 InsertedCast =
396 CastInst::Create(CI->getOpcode(), CI->getOperand(0), CI->getType(), "",
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000397 InsertPt);
398 MadeChange = true;
399 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000400
Dale Johannesence0b2372007-06-12 16:50:17 +0000401 // Replace a use of the cast with a use of the new cast.
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000402 TheUse = InsertedCast;
403 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000404
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000405 // If we removed all uses, nuke the cast.
Duncan Sandse0038132008-01-20 16:51:46 +0000406 if (CI->use_empty()) {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000407 CI->eraseFromParent();
Duncan Sandse0038132008-01-20 16:51:46 +0000408 MadeChange = true;
409 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000410
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000411 return MadeChange;
412}
413
Eric Christopher692bf6b2008-09-24 05:32:41 +0000414/// OptimizeCmpExpression - sink the given CmpInst into user blocks to reduce
Dale Johannesence0b2372007-06-12 16:50:17 +0000415/// the number of virtual registers that must be created and coalesced. This is
Chris Lattner684b22d2007-08-02 16:53:43 +0000416/// a clear win except on targets with multiple condition code registers
417/// (PowerPC), where it might lose; some adjustment may be wanted there.
Dale Johannesence0b2372007-06-12 16:50:17 +0000418///
419/// Return true if any changes are made.
Chris Lattner85fa13c2008-11-24 22:44:16 +0000420static bool OptimizeCmpExpression(CmpInst *CI) {
Dale Johannesence0b2372007-06-12 16:50:17 +0000421 BasicBlock *DefBB = CI->getParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000422
Dale Johannesence0b2372007-06-12 16:50:17 +0000423 /// InsertedCmp - Only insert a cmp in each block once.
424 DenseMap<BasicBlock*, CmpInst*> InsertedCmps;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000425
Dale Johannesence0b2372007-06-12 16:50:17 +0000426 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000427 for (Value::use_iterator UI = CI->use_begin(), E = CI->use_end();
Dale Johannesence0b2372007-06-12 16:50:17 +0000428 UI != E; ) {
429 Use &TheUse = UI.getUse();
430 Instruction *User = cast<Instruction>(*UI);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000431
Dale Johannesence0b2372007-06-12 16:50:17 +0000432 // Preincrement use iterator so we don't invalidate it.
433 ++UI;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000434
Dale Johannesence0b2372007-06-12 16:50:17 +0000435 // Don't bother for PHI nodes.
436 if (isa<PHINode>(User))
437 continue;
438
439 // Figure out which BB this cmp is used in.
440 BasicBlock *UserBB = User->getParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000441
Dale Johannesence0b2372007-06-12 16:50:17 +0000442 // If this user is in the same block as the cmp, don't change the cmp.
443 if (UserBB == DefBB) continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000444
Dale Johannesence0b2372007-06-12 16:50:17 +0000445 // If we have already inserted a cmp into this block, use it.
446 CmpInst *&InsertedCmp = InsertedCmps[UserBB];
447
448 if (!InsertedCmp) {
Dan Gohman02dea8b2008-05-23 21:05:58 +0000449 BasicBlock::iterator InsertPt = UserBB->getFirstNonPHI();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000450
451 InsertedCmp =
452 CmpInst::Create(CI->getOpcode(), CI->getPredicate(), CI->getOperand(0),
Dale Johannesence0b2372007-06-12 16:50:17 +0000453 CI->getOperand(1), "", InsertPt);
454 MadeChange = true;
455 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000456
Dale Johannesence0b2372007-06-12 16:50:17 +0000457 // Replace a use of the cmp with a use of the new cmp.
458 TheUse = InsertedCmp;
459 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000460
Dale Johannesence0b2372007-06-12 16:50:17 +0000461 // If we removed all uses, nuke the cmp.
462 if (CI->use_empty())
463 CI->eraseFromParent();
Eric Christopher692bf6b2008-09-24 05:32:41 +0000464
Dale Johannesence0b2372007-06-12 16:50:17 +0000465 return MadeChange;
466}
467
Chris Lattner85fa13c2008-11-24 22:44:16 +0000468/// EraseDeadInstructions - Erase any dead instructions, recursively.
Chris Lattnerdd77df32007-04-13 20:30:56 +0000469static void EraseDeadInstructions(Value *V) {
470 Instruction *I = dyn_cast<Instruction>(V);
471 if (!I || !I->use_empty()) return;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000472
Chris Lattnerdd77df32007-04-13 20:30:56 +0000473 SmallPtrSet<Instruction*, 16> Insts;
474 Insts.insert(I);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000475
Chris Lattnerdd77df32007-04-13 20:30:56 +0000476 while (!Insts.empty()) {
477 I = *Insts.begin();
478 Insts.erase(I);
479 if (isInstructionTriviallyDead(I)) {
480 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
481 if (Instruction *U = dyn_cast<Instruction>(I->getOperand(i)))
482 Insts.insert(U);
483 I->eraseFromParent();
484 }
485 }
486}
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000487
Chris Lattner88a5c832008-11-25 07:09:13 +0000488//===----------------------------------------------------------------------===//
489// Addressing Mode Analysis and Optimization
490//===----------------------------------------------------------------------===//
491
Dan Gohman844731a2008-05-13 00:00:25 +0000492namespace {
Chris Lattner4744d852008-11-24 22:40:05 +0000493 /// ExtAddrMode - This is an extended version of TargetLowering::AddrMode
494 /// which holds actual Value*'s for register values.
495 struct ExtAddrMode : public TargetLowering::AddrMode {
496 Value *BaseReg;
497 Value *ScaledReg;
498 ExtAddrMode() : BaseReg(0), ScaledReg(0) {}
499 void print(OStream &OS) const;
500 void dump() const {
501 print(cerr);
502 cerr << '\n';
503 }
504 };
505} // end anonymous namespace
Chris Lattnerdbe0dec2007-03-31 04:06:36 +0000506
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000507static inline OStream &operator<<(OStream &OS, const ExtAddrMode &AM) {
Chris Lattner4744d852008-11-24 22:40:05 +0000508 AM.print(OS);
509 return OS;
510}
Chris Lattnerdd77df32007-04-13 20:30:56 +0000511
Chris Lattner4744d852008-11-24 22:40:05 +0000512void ExtAddrMode::print(OStream &OS) const {
Chris Lattnerdd77df32007-04-13 20:30:56 +0000513 bool NeedPlus = false;
514 OS << "[";
Chris Lattner4744d852008-11-24 22:40:05 +0000515 if (BaseGV)
Chris Lattnerdd77df32007-04-13 20:30:56 +0000516 OS << (NeedPlus ? " + " : "")
Chris Lattner4744d852008-11-24 22:40:05 +0000517 << "GV:%" << BaseGV->getName(), NeedPlus = true;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000518
Chris Lattner4744d852008-11-24 22:40:05 +0000519 if (BaseOffs)
520 OS << (NeedPlus ? " + " : "") << BaseOffs, NeedPlus = true;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000521
Chris Lattner4744d852008-11-24 22:40:05 +0000522 if (BaseReg)
Chris Lattnerdd77df32007-04-13 20:30:56 +0000523 OS << (NeedPlus ? " + " : "")
Chris Lattner4744d852008-11-24 22:40:05 +0000524 << "Base:%" << BaseReg->getName(), NeedPlus = true;
525 if (Scale)
Chris Lattnerdd77df32007-04-13 20:30:56 +0000526 OS << (NeedPlus ? " + " : "")
Chris Lattner4744d852008-11-24 22:40:05 +0000527 << Scale << "*%" << ScaledReg->getName(), NeedPlus = true;
Eric Christopher692bf6b2008-09-24 05:32:41 +0000528
Chris Lattner4744d852008-11-24 22:40:05 +0000529 OS << ']';
Dan Gohman844731a2008-05-13 00:00:25 +0000530}
531
Chris Lattner88a5c832008-11-25 07:09:13 +0000532namespace {
533/// AddressingModeMatcher - This class exposes a single public method, which is
534/// used to construct a "maximal munch" of the addressing mode for the target
535/// specified by TLI for an access to "V" with an access type of AccessTy. This
536/// returns the addressing mode that is actually matched by value, but also
537/// returns the list of instructions involved in that addressing computation in
538/// AddrModeInsts.
539class AddressingModeMatcher {
540 SmallVectorImpl<Instruction*> &AddrModeInsts;
541 const TargetLowering &TLI;
542 const Type *AccessTy;
543 ExtAddrMode &AddrMode;
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000544
545 /// IgnoreProfitability - This is set to true when we should not do
546 /// profitability checks. When true, IsProfitableToFoldIntoAddressingMode
547 /// always returns true.
548 bool IgnoreProfitability;
549
Chris Lattner88a5c832008-11-25 07:09:13 +0000550 AddressingModeMatcher(SmallVectorImpl<Instruction*> &AMI,
551 const TargetLowering &T, const Type *AT,ExtAddrMode &AM)
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000552 : AddrModeInsts(AMI), TLI(T), AccessTy(AT), AddrMode(AM) {
553 IgnoreProfitability = false;
554 }
Chris Lattner88a5c832008-11-25 07:09:13 +0000555public:
556
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000557 /// Match - Find the maximal addressing mode that a load/store of V can fold,
558 /// give an access type of AccessTy. This returns a list of involved
559 /// instructions in AddrModeInsts.
Chris Lattner88a5c832008-11-25 07:09:13 +0000560 static ExtAddrMode Match(Value *V, const Type *AccessTy,
561 SmallVectorImpl<Instruction*> &AddrModeInsts,
562 const TargetLowering &TLI) {
563 ExtAddrMode Result;
564
565 bool Success =
566 AddressingModeMatcher(AddrModeInsts,TLI,AccessTy,Result).MatchAddr(V, 0);
567 Success = Success; assert(Success && "Couldn't select *anything*?");
568 return Result;
569 }
570private:
Chris Lattner3b485012008-11-25 07:25:26 +0000571 bool MatchScaledValue(Value *ScaleReg, int64_t Scale, unsigned Depth);
Chris Lattner88a5c832008-11-25 07:09:13 +0000572 bool MatchAddr(Value *V, unsigned Depth);
573 bool MatchOperationAddr(User *Operation, unsigned Opcode, unsigned Depth);
Chris Lattner84d1b402008-11-26 03:02:41 +0000574 bool IsProfitableToFoldIntoAddressingMode(Instruction *I,
575 ExtAddrMode &AMBefore,
576 ExtAddrMode &AMAfter);
577 bool ValueAlreadyLiveAtInst(Value *Val, Value *KnownLive1, Value *KnownLive2);
Chris Lattner88a5c832008-11-25 07:09:13 +0000578};
579} // end anonymous namespace
580
581/// MatchScaledValue - Try adding ScaleReg*Scale to the current addressing mode.
582/// Return true and update AddrMode if this addr mode is legal for the target,
Chris Lattner85fa13c2008-11-24 22:44:16 +0000583/// false if not.
Chris Lattner3b485012008-11-25 07:25:26 +0000584bool AddressingModeMatcher::MatchScaledValue(Value *ScaleReg, int64_t Scale,
585 unsigned Depth) {
586 // If Scale is 1, then this is the same as adding ScaleReg to the addressing
587 // mode. Just process that directly.
588 if (Scale == 1)
589 return MatchAddr(ScaleReg, Depth);
590
591 // If the scale is 0, it takes nothing to add this.
592 if (Scale == 0)
593 return true;
594
Chris Lattner85fa13c2008-11-24 22:44:16 +0000595 // If we already have a scale of this value, we can add to it, otherwise, we
596 // need an available scale field.
597 if (AddrMode.Scale != 0 && AddrMode.ScaledReg != ScaleReg)
598 return false;
599
Chris Lattner088a1e82008-11-25 04:42:10 +0000600 ExtAddrMode TestAddrMode = AddrMode;
Chris Lattner85fa13c2008-11-24 22:44:16 +0000601
602 // Add scale to turn X*4+X*3 -> X*7. This could also do things like
603 // [A+B + A*7] -> [B+A*8].
Chris Lattner088a1e82008-11-25 04:42:10 +0000604 TestAddrMode.Scale += Scale;
605 TestAddrMode.ScaledReg = ScaleReg;
Chris Lattner85fa13c2008-11-24 22:44:16 +0000606
Chris Lattner088a1e82008-11-25 04:42:10 +0000607 // If the new address isn't legal, bail out.
608 if (!TLI.isLegalAddressingMode(TestAddrMode, AccessTy))
609 return false;
Chris Lattner85fa13c2008-11-24 22:44:16 +0000610
Chris Lattner088a1e82008-11-25 04:42:10 +0000611 // It was legal, so commit it.
612 AddrMode = TestAddrMode;
613
614 // Okay, we decided that we can add ScaleReg+Scale to AddrMode. Check now
615 // to see if ScaleReg is actually X+C. If so, we can turn this into adding
616 // X*Scale + C*Scale to addr mode.
617 ConstantInt *CI; Value *AddLHS;
618 if (match(ScaleReg, m_Add(m_Value(AddLHS), m_ConstantInt(CI)))) {
619 TestAddrMode.ScaledReg = AddLHS;
620 TestAddrMode.BaseOffs += CI->getSExtValue()*TestAddrMode.Scale;
621
622 // If this addressing mode is legal, commit it and remember that we folded
623 // this instruction.
624 if (TLI.isLegalAddressingMode(TestAddrMode, AccessTy)) {
625 AddrModeInsts.push_back(cast<Instruction>(ScaleReg));
626 AddrMode = TestAddrMode;
Chris Lattner88a5c832008-11-25 07:09:13 +0000627 return true;
Chris Lattner85fa13c2008-11-24 22:44:16 +0000628 }
Chris Lattner85fa13c2008-11-24 22:44:16 +0000629 }
630
Chris Lattner088a1e82008-11-25 04:42:10 +0000631 // Otherwise, not (x+c)*scale, just return what we have.
632 return true;
Chris Lattner85fa13c2008-11-24 22:44:16 +0000633}
634
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000635/// MightBeFoldableInst - This is a little filter, which returns true if an
636/// addressing computation involving I might be folded into a load/store
637/// accessing it. This doesn't need to be perfect, but needs to accept at least
638/// the set of instructions that MatchOperationAddr can.
639static bool MightBeFoldableInst(Instruction *I) {
640 switch (I->getOpcode()) {
641 case Instruction::BitCast:
642 // Don't touch identity bitcasts.
643 if (I->getType() == I->getOperand(0)->getType())
644 return false;
645 return isa<PointerType>(I->getType()) || isa<IntegerType>(I->getType());
646 case Instruction::PtrToInt:
647 // PtrToInt is always a noop, as we know that the int type is pointer sized.
648 return true;
649 case Instruction::IntToPtr:
650 // We know the input is intptr_t, so this is foldable.
651 return true;
652 case Instruction::Add:
653 return true;
654 case Instruction::Mul:
655 case Instruction::Shl:
656 // Can only handle X*C and X << C.
657 return isa<ConstantInt>(I->getOperand(1));
658 case Instruction::GetElementPtr:
659 return true;
660 default:
661 return false;
662 }
663}
664
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000665
Chris Lattner88a5c832008-11-25 07:09:13 +0000666/// MatchOperationAddr - Given an instruction or constant expr, see if we can
667/// fold the operation into the addressing mode. If so, update the addressing
668/// mode and return true, otherwise return false without modifying AddrMode.
669bool AddressingModeMatcher::MatchOperationAddr(User *AddrInst, unsigned Opcode,
670 unsigned Depth) {
671 // Avoid exponential behavior on extremely deep expression trees.
672 if (Depth >= 5) return false;
673
Chris Lattnerdd77df32007-04-13 20:30:56 +0000674 switch (Opcode) {
675 case Instruction::PtrToInt:
676 // PtrToInt is always a noop, as we know that the int type is pointer sized.
Chris Lattner88a5c832008-11-25 07:09:13 +0000677 return MatchAddr(AddrInst->getOperand(0), Depth);
Chris Lattnerdd77df32007-04-13 20:30:56 +0000678 case Instruction::IntToPtr:
679 // This inttoptr is a no-op if the integer type is pointer sized.
680 if (TLI.getValueType(AddrInst->getOperand(0)->getType()) ==
Chris Lattner88a5c832008-11-25 07:09:13 +0000681 TLI.getPointerTy())
682 return MatchAddr(AddrInst->getOperand(0), Depth);
683 return false;
Chris Lattner2efbbb32008-11-26 00:26:16 +0000684 case Instruction::BitCast:
685 // BitCast is always a noop, and we can handle it as long as it is
686 // int->int or pointer->pointer (we don't want int<->fp or something).
687 if ((isa<PointerType>(AddrInst->getOperand(0)->getType()) ||
688 isa<IntegerType>(AddrInst->getOperand(0)->getType())) &&
689 // Don't touch identity bitcasts. These were probably put here by LSR,
690 // and we don't want to mess around with them. Assume it knows what it
691 // is doing.
692 AddrInst->getOperand(0)->getType() != AddrInst->getType())
693 return MatchAddr(AddrInst->getOperand(0), Depth);
694 return false;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000695 case Instruction::Add: {
696 // Check to see if we can merge in the RHS then the LHS. If so, we win.
697 ExtAddrMode BackupAddrMode = AddrMode;
698 unsigned OldSize = AddrModeInsts.size();
Chris Lattner88a5c832008-11-25 07:09:13 +0000699 if (MatchAddr(AddrInst->getOperand(1), Depth+1) &&
700 MatchAddr(AddrInst->getOperand(0), Depth+1))
Chris Lattnerdd77df32007-04-13 20:30:56 +0000701 return true;
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000702
Chris Lattnerdd77df32007-04-13 20:30:56 +0000703 // Restore the old addr mode info.
704 AddrMode = BackupAddrMode;
705 AddrModeInsts.resize(OldSize);
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000706
Chris Lattnerdd77df32007-04-13 20:30:56 +0000707 // Otherwise this was over-aggressive. Try merging in the LHS then the RHS.
Chris Lattner88a5c832008-11-25 07:09:13 +0000708 if (MatchAddr(AddrInst->getOperand(0), Depth+1) &&
709 MatchAddr(AddrInst->getOperand(1), Depth+1))
Chris Lattnerdd77df32007-04-13 20:30:56 +0000710 return true;
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000711
Chris Lattnerdd77df32007-04-13 20:30:56 +0000712 // Otherwise we definitely can't merge the ADD in.
713 AddrMode = BackupAddrMode;
714 AddrModeInsts.resize(OldSize);
Eric Christopher692bf6b2008-09-24 05:32:41 +0000715 break;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000716 }
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000717 //case Instruction::Or:
718 // TODO: We can handle "Or Val, Imm" iff this OR is equivalent to an ADD.
719 //break;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000720 case Instruction::Mul:
721 case Instruction::Shl: {
Chris Lattner7ad1c732008-11-25 04:47:41 +0000722 // Can only handle X*C and X << C.
Chris Lattnerdd77df32007-04-13 20:30:56 +0000723 ConstantInt *RHS = dyn_cast<ConstantInt>(AddrInst->getOperand(1));
Chris Lattner88a5c832008-11-25 07:09:13 +0000724 if (!RHS) return false;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000725 int64_t Scale = RHS->getSExtValue();
726 if (Opcode == Instruction::Shl)
727 Scale = 1 << Scale;
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000728
Chris Lattner3b485012008-11-25 07:25:26 +0000729 return MatchScaledValue(AddrInst->getOperand(0), Scale, Depth);
Chris Lattnerdd77df32007-04-13 20:30:56 +0000730 }
731 case Instruction::GetElementPtr: {
732 // Scan the GEP. We check it if it contains constant offsets and at most
733 // one variable offset.
734 int VariableOperand = -1;
735 unsigned VariableScale = 0;
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000736
Chris Lattnerdd77df32007-04-13 20:30:56 +0000737 int64_t ConstantOffset = 0;
738 const TargetData *TD = TLI.getTargetData();
739 gep_type_iterator GTI = gep_type_begin(AddrInst);
740 for (unsigned i = 1, e = AddrInst->getNumOperands(); i != e; ++i, ++GTI) {
741 if (const StructType *STy = dyn_cast<StructType>(*GTI)) {
742 const StructLayout *SL = TD->getStructLayout(STy);
743 unsigned Idx =
Chris Lattner88a5c832008-11-25 07:09:13 +0000744 cast<ConstantInt>(AddrInst->getOperand(i))->getZExtValue();
Chris Lattnerdd77df32007-04-13 20:30:56 +0000745 ConstantOffset += SL->getElementOffset(Idx);
746 } else {
Duncan Sands514ab342007-11-01 20:53:16 +0000747 uint64_t TypeSize = TD->getABITypeSize(GTI.getIndexedType());
Chris Lattnerdd77df32007-04-13 20:30:56 +0000748 if (ConstantInt *CI = dyn_cast<ConstantInt>(AddrInst->getOperand(i))) {
749 ConstantOffset += CI->getSExtValue()*TypeSize;
750 } else if (TypeSize) { // Scales of zero don't do anything.
751 // We only allow one variable index at the moment.
Chris Lattner88a5c832008-11-25 07:09:13 +0000752 if (VariableOperand != -1)
753 return false;
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000754
Chris Lattnerdd77df32007-04-13 20:30:56 +0000755 // Remember the variable index.
756 VariableOperand = i;
757 VariableScale = TypeSize;
758 }
759 }
760 }
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000761
Chris Lattnerdd77df32007-04-13 20:30:56 +0000762 // A common case is for the GEP to only do a constant offset. In this case,
763 // just add it to the disp field and check validity.
764 if (VariableOperand == -1) {
765 AddrMode.BaseOffs += ConstantOffset;
766 if (ConstantOffset == 0 || TLI.isLegalAddressingMode(AddrMode, AccessTy)){
767 // Check to see if we can fold the base pointer in too.
Chris Lattner88a5c832008-11-25 07:09:13 +0000768 if (MatchAddr(AddrInst->getOperand(0), Depth+1))
Chris Lattnerdd77df32007-04-13 20:30:56 +0000769 return true;
770 }
771 AddrMode.BaseOffs -= ConstantOffset;
Chris Lattner88a5c832008-11-25 07:09:13 +0000772 return false;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000773 }
Chris Lattner88a5c832008-11-25 07:09:13 +0000774
775 // Save the valid addressing mode in case we can't match.
776 ExtAddrMode BackupAddrMode = AddrMode;
777
778 // Check that this has no base reg yet. If so, we won't have a place to
779 // put the base of the GEP (assuming it is not a null ptr).
780 bool SetBaseReg = true;
781 if (isa<ConstantPointerNull>(AddrInst->getOperand(0)))
782 SetBaseReg = false; // null pointer base doesn't need representation.
783 else if (AddrMode.HasBaseReg)
784 return false; // Base register already specified, can't match GEP.
785 else {
786 // Otherwise, we'll use the GEP base as the BaseReg.
787 AddrMode.HasBaseReg = true;
788 AddrMode.BaseReg = AddrInst->getOperand(0);
789 }
790
791 // See if the scale and offset amount is valid for this target.
792 AddrMode.BaseOffs += ConstantOffset;
793
Chris Lattner3b485012008-11-25 07:25:26 +0000794 if (!MatchScaledValue(AddrInst->getOperand(VariableOperand), VariableScale,
795 Depth)) {
Chris Lattner88a5c832008-11-25 07:09:13 +0000796 AddrMode = BackupAddrMode;
797 return false;
798 }
799
800 // If we have a null as the base of the GEP, folding in the constant offset
801 // plus variable scale is all we can do.
802 if (!SetBaseReg) return true;
803
804 // If this match succeeded, we know that we can form an address with the
805 // GepBase as the basereg. Match the base pointer of the GEP more
806 // aggressively by zeroing out BaseReg and rematching. If the base is
807 // (for example) another GEP, this allows merging in that other GEP into
808 // the addressing mode we're forming.
809 AddrMode.HasBaseReg = false;
810 AddrMode.BaseReg = 0;
811 bool Success = MatchAddr(AddrInst->getOperand(0), Depth+1);
812 assert(Success && "MatchAddr should be able to fill in BaseReg!");
813 Success=Success;
814 return true;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000815 }
816 }
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000817 return false;
818}
Eric Christopher692bf6b2008-09-24 05:32:41 +0000819
Chris Lattner88a5c832008-11-25 07:09:13 +0000820/// MatchAddr - If we can, try to add the value of 'Addr' into the current
821/// addressing mode. If Addr can't be added to AddrMode this returns false and
822/// leaves AddrMode unmodified. This assumes that Addr is either a pointer type
823/// or intptr_t for the target.
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000824///
Chris Lattner88a5c832008-11-25 07:09:13 +0000825bool AddressingModeMatcher::MatchAddr(Value *Addr, unsigned Depth) {
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000826 if (ConstantInt *CI = dyn_cast<ConstantInt>(Addr)) {
827 // Fold in immediates if legal for the target.
828 AddrMode.BaseOffs += CI->getSExtValue();
829 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
830 return true;
831 AddrMode.BaseOffs -= CI->getSExtValue();
832 } else if (GlobalValue *GV = dyn_cast<GlobalValue>(Addr)) {
Chris Lattner88a5c832008-11-25 07:09:13 +0000833 // If this is a global variable, try to fold it into the addressing mode.
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000834 if (AddrMode.BaseGV == 0) {
835 AddrMode.BaseGV = GV;
836 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
837 return true;
838 AddrMode.BaseGV = 0;
839 }
840 } else if (Instruction *I = dyn_cast<Instruction>(Addr)) {
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000841 ExtAddrMode BackupAddrMode = AddrMode;
842 unsigned OldSize = AddrModeInsts.size();
843
844 // Check to see if it is possible to fold this operation.
Chris Lattner88a5c832008-11-25 07:09:13 +0000845 if (MatchOperationAddr(I, I->getOpcode(), Depth)) {
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000846 // Okay, it's possible to fold this. Check to see if it is actually
847 // *profitable* to do so. We use a simple cost model to avoid increasing
848 // register pressure too much.
Chris Lattner84d1b402008-11-26 03:02:41 +0000849 if (I->hasOneUse() ||
850 IsProfitableToFoldIntoAddressingMode(I, BackupAddrMode, AddrMode)) {
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000851 AddrModeInsts.push_back(I);
852 return true;
853 }
854
855 // It isn't profitable to do this, roll back.
856 //cerr << "NOT FOLDING: " << *I;
857 AddrMode = BackupAddrMode;
858 AddrModeInsts.resize(OldSize);
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000859 }
860 } else if (ConstantExpr *CE = dyn_cast<ConstantExpr>(Addr)) {
Chris Lattner88a5c832008-11-25 07:09:13 +0000861 if (MatchOperationAddr(CE, CE->getOpcode(), Depth))
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000862 return true;
863 } else if (isa<ConstantPointerNull>(Addr)) {
Chris Lattner88a5c832008-11-25 07:09:13 +0000864 // Null pointer gets folded without affecting the addressing mode.
Chris Lattnerbb3204a2008-11-25 05:15:49 +0000865 return true;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000866 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000867
Chris Lattnerdd77df32007-04-13 20:30:56 +0000868 // Worse case, the target should support [reg] addressing modes. :)
869 if (!AddrMode.HasBaseReg) {
870 AddrMode.HasBaseReg = true;
Chris Lattner653b2582008-11-26 02:11:11 +0000871 AddrMode.BaseReg = Addr;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000872 // Still check for legality in case the target supports [imm] but not [i+r].
Chris Lattner653b2582008-11-26 02:11:11 +0000873 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
Chris Lattnerdd77df32007-04-13 20:30:56 +0000874 return true;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000875 AddrMode.HasBaseReg = false;
Chris Lattner653b2582008-11-26 02:11:11 +0000876 AddrMode.BaseReg = 0;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000877 }
Eric Christopher692bf6b2008-09-24 05:32:41 +0000878
Chris Lattnerdd77df32007-04-13 20:30:56 +0000879 // If the base register is already taken, see if we can do [r+r].
880 if (AddrMode.Scale == 0) {
881 AddrMode.Scale = 1;
Chris Lattner653b2582008-11-26 02:11:11 +0000882 AddrMode.ScaledReg = Addr;
883 if (TLI.isLegalAddressingMode(AddrMode, AccessTy))
Chris Lattnerdd77df32007-04-13 20:30:56 +0000884 return true;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000885 AddrMode.Scale = 0;
Chris Lattner653b2582008-11-26 02:11:11 +0000886 AddrMode.ScaledReg = 0;
Chris Lattnerdd77df32007-04-13 20:30:56 +0000887 }
888 // Couldn't match.
889 return false;
890}
891
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000892/// FindAllMemoryUses - Recursively walk all the uses of I until we find a
893/// memory use. If we find an obviously non-foldable instruction, return true.
894/// Add the ultimately found memory instructions to MemoryUses.
895static bool FindAllMemoryUses(Instruction *I,
896 SmallVectorImpl<std::pair<Instruction*,unsigned> > &MemoryUses,
897 SmallPtrSet<Instruction*, 16> &ConsideredInsts) {
898 // If we already considered this instruction, we're done.
899 if (!ConsideredInsts.insert(I))
900 return false;
901
902 // If this is an obviously unfoldable instruction, bail out.
903 if (!MightBeFoldableInst(I))
904 return true;
905
906 // Loop over all the uses, recursively processing them.
907 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
908 UI != E; ++UI) {
909 if (LoadInst *LI = dyn_cast<LoadInst>(*UI)) {
910 MemoryUses.push_back(std::make_pair(LI, UI.getOperandNo()));
911 continue;
912 }
913
914 if (StoreInst *SI = dyn_cast<StoreInst>(*UI)) {
915 if (UI.getOperandNo() == 0) return true; // Storing addr, not into addr.
916 MemoryUses.push_back(std::make_pair(SI, UI.getOperandNo()));
917 continue;
918 }
919
920 if (CallInst *CI = dyn_cast<CallInst>(*UI)) {
921 InlineAsm *IA = dyn_cast<InlineAsm>(CI->getCalledValue());
922 if (IA == 0) return true;
923
924
925 // FIXME: HANDLE MEM OPS
926 //MemoryUses.push_back(std::make_pair(CI, UI.getOperandNo()));
927 return true;
928 }
929
930 if (FindAllMemoryUses(cast<Instruction>(*UI), MemoryUses, ConsideredInsts))
931 return true;
932 }
933
934 return false;
935}
Chris Lattner84d1b402008-11-26 03:02:41 +0000936
937
938/// ValueAlreadyLiveAtInst - Retrn true if Val is already known to be live at
939/// the use site that we're folding it into. If so, there is no cost to
940/// include it in the addressing mode. KnownLive1 and KnownLive2 are two values
941/// that we know are live at the instruction already.
942bool AddressingModeMatcher::ValueAlreadyLiveAtInst(Value *Val,Value *KnownLive1,
943 Value *KnownLive2) {
944 // If Val is either of the known-live values, we know it is live!
945 if (Val == 0 || Val == KnownLive1 || Val == KnownLive2)
946 return true;
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000947
Chris Lattner84d1b402008-11-26 03:02:41 +0000948 // All non-instruction values other than arguments (constants) are live.
949 if (!isa<Instruction>(Val) && !isa<Argument>(Val)) return true;
950
951 // If Val is a constant sized alloca in the entry block, it is live, this is
952 // true because it is just a reference to the stack/frame pointer, which is
953 // live for the whole function.
954 if (AllocaInst *AI = dyn_cast<AllocaInst>(Val))
955 if (AI->isStaticAlloca())
956 return true;
957
958 return false;
959}
960
961
962
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000963#include "llvm/Support/CommandLine.h"
964cl::opt<bool> ENABLECRAZYHACK("enable-smarter-addr-folding", cl::Hidden);
965
966
967/// IsProfitableToFoldIntoAddressingMode - It is possible for the addressing
968/// mode of the machine to fold the specified instruction into a load or store
969/// that ultimately uses it. However, the specified instruction has multiple
970/// uses. Given this, it may actually increase register pressure to fold it
971/// into the load. For example, consider this code:
972///
973/// X = ...
974/// Y = X+1
975/// use(Y) -> nonload/store
976/// Z = Y+1
977/// load Z
978///
979/// In this case, Y has multiple uses, and can be folded into the load of Z
980/// (yielding load [X+2]). However, doing this will cause both "X" and "X+1" to
981/// be live at the use(Y) line. If we don't fold Y into load Z, we use one
982/// fewer register. Since Y can't be folded into "use(Y)" we don't increase the
983/// number of computations either.
984///
985/// Note that this (like most of CodeGenPrepare) is just a rough heuristic. If
986/// X was live across 'load Z' for other reasons, we actually *would* want to
Chris Lattner653b2582008-11-26 02:11:11 +0000987/// fold the addressing mode in the Z case. This would make Y die earlier.
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000988bool AddressingModeMatcher::
Chris Lattner84d1b402008-11-26 03:02:41 +0000989IsProfitableToFoldIntoAddressingMode(Instruction *I, ExtAddrMode &AMBefore,
990 ExtAddrMode &AMAfter) {
Chris Lattner5eecb7f2008-11-26 02:00:14 +0000991 if (IgnoreProfitability || !ENABLECRAZYHACK) return true;
992
Chris Lattner84d1b402008-11-26 03:02:41 +0000993 // AMBefore is the addressing mode before this instruction was folded into it,
994 // and AMAfter is the addressing mode after the instruction was folded. Get
995 // the set of registers referenced by AMAfter and subtract out those
996 // referenced by AMBefore: this is the set of values which folding in this
997 // address extends the lifetime of.
998 //
999 // Note that there are only two potential values being referenced here,
1000 // BaseReg and ScaleReg (global addresses are always available, as are any
1001 // folded immediates).
1002 Value *BaseReg = AMAfter.BaseReg, *ScaledReg = AMAfter.ScaledReg;
1003
1004 // If the BaseReg or ScaledReg was referenced by the previous addrmode, their
1005 // lifetime wasn't extended by adding this instruction.
1006 if (ValueAlreadyLiveAtInst(BaseReg, AMBefore.BaseReg, AMBefore.ScaledReg))
1007 BaseReg = 0;
1008 if (ValueAlreadyLiveAtInst(ScaledReg, AMBefore.BaseReg, AMBefore.ScaledReg))
1009 ScaledReg = 0;
1010
1011 // If folding this instruction (and it's subexprs) didn't extend any live
1012 // ranges, we're ok with it.
1013 if (BaseReg == 0 && ScaledReg == 0)
1014 return true;
Chris Lattner5eecb7f2008-11-26 02:00:14 +00001015
1016 // If all uses of this instruction are ultimately load/store/inlineasm's,
1017 // check to see if their addressing modes will include this instruction. If
1018 // so, we can fold it into all uses, so it doesn't matter if it has multiple
1019 // uses.
1020 SmallVector<std::pair<Instruction*,unsigned>, 16> MemoryUses;
1021 SmallPtrSet<Instruction*, 16> ConsideredInsts;
1022 if (FindAllMemoryUses(I, MemoryUses, ConsideredInsts))
1023 return false; // Has a non-memory, non-foldable use!
1024
1025 // Now that we know that all uses of this instruction are part of a chain of
1026 // computation involving only operations that could theoretically be folded
1027 // into a memory use, loop over each of these uses and see if they could
1028 // *actually* fold the instruction.
1029 SmallVector<Instruction*, 32> MatchedAddrModeInsts;
1030 for (unsigned i = 0, e = MemoryUses.size(); i != e; ++i) {
1031 Instruction *User = MemoryUses[i].first;
1032 unsigned OpNo = MemoryUses[i].second;
1033
1034 // Get the access type of this use. If the use isn't a pointer, we don't
1035 // know what it accesses.
1036 Value *Address = User->getOperand(OpNo);
1037 if (!isa<PointerType>(Address->getType()))
1038 return false;
1039 const Type *AddressAccessTy =
1040 cast<PointerType>(Address->getType())->getElementType();
1041
1042 // Do a match against the root of this address, ignoring profitability. This
1043 // will tell us if the addressing mode for the memory operation will
1044 // *actually* cover the shared instruction.
1045 ExtAddrMode Result;
1046 AddressingModeMatcher Matcher(MatchedAddrModeInsts, TLI, AddressAccessTy,
1047 Result);
1048 Matcher.IgnoreProfitability = true;
1049 bool Success = Matcher.MatchAddr(Address, 0);
1050 Success = Success; assert(Success && "Couldn't select *anything*?");
1051
1052 // If the match didn't cover I, then it won't be shared by it.
1053 if (std::find(MatchedAddrModeInsts.begin(), MatchedAddrModeInsts.end(),
1054 I) == MatchedAddrModeInsts.end())
1055 return false;
1056
1057 MatchedAddrModeInsts.clear();
1058 }
1059
1060 return true;
1061}
1062
Chris Lattnerdd77df32007-04-13 20:30:56 +00001063
Chris Lattner88a5c832008-11-25 07:09:13 +00001064//===----------------------------------------------------------------------===//
1065// Memory Optimization
1066//===----------------------------------------------------------------------===//
1067
Chris Lattnerdd77df32007-04-13 20:30:56 +00001068/// IsNonLocalValue - Return true if the specified values are defined in a
1069/// different basic block than BB.
1070static bool IsNonLocalValue(Value *V, BasicBlock *BB) {
1071 if (Instruction *I = dyn_cast<Instruction>(V))
1072 return I->getParent() != BB;
1073 return false;
1074}
1075
Chris Lattner88a5c832008-11-25 07:09:13 +00001076/// OptimizeMemoryInst - Load and Store Instructions have often have
Chris Lattnerdd77df32007-04-13 20:30:56 +00001077/// addressing modes that can do significant amounts of computation. As such,
1078/// instruction selection will try to get the load or store to do as much
1079/// computation as possible for the program. The problem is that isel can only
1080/// see within a single block. As such, we sink as much legal addressing mode
1081/// stuff into the block as possible.
Chris Lattner88a5c832008-11-25 07:09:13 +00001082///
1083/// This method is used to optimize both load/store and inline asms with memory
1084/// operands.
1085bool CodeGenPrepare::OptimizeMemoryInst(Instruction *LdStInst, Value *Addr,
1086 const Type *AccessTy,
1087 DenseMap<Value*,Value*> &SunkAddrs) {
Chris Lattnerdd77df32007-04-13 20:30:56 +00001088 // Figure out what addressing mode will be built up for this operation.
1089 SmallVector<Instruction*, 16> AddrModeInsts;
Chris Lattner88a5c832008-11-25 07:09:13 +00001090 ExtAddrMode AddrMode =
1091 AddressingModeMatcher::Match(Addr, AccessTy, AddrModeInsts, *TLI);
Eric Christopher692bf6b2008-09-24 05:32:41 +00001092
Chris Lattnerdd77df32007-04-13 20:30:56 +00001093 // Check to see if any of the instructions supersumed by this addr mode are
1094 // non-local to I's BB.
1095 bool AnyNonLocal = false;
1096 for (unsigned i = 0, e = AddrModeInsts.size(); i != e; ++i) {
1097 if (IsNonLocalValue(AddrModeInsts[i], LdStInst->getParent())) {
1098 AnyNonLocal = true;
1099 break;
1100 }
1101 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001102
Chris Lattnerdd77df32007-04-13 20:30:56 +00001103 // If all the instructions matched are already in this BB, don't do anything.
1104 if (!AnyNonLocal) {
1105 DEBUG(cerr << "CGP: Found local addrmode: " << AddrMode << "\n");
1106 return false;
1107 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001108
Chris Lattnerdd77df32007-04-13 20:30:56 +00001109 // Insert this computation right after this user. Since our caller is
1110 // scanning from the top of the BB to the bottom, reuse of the expr are
1111 // guaranteed to happen later.
1112 BasicBlock::iterator InsertPt = LdStInst;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001113
Chris Lattnerdd77df32007-04-13 20:30:56 +00001114 // Now that we determined the addressing expression we want to use and know
1115 // that we have to sink it into this block. Check to see if we have already
1116 // done this for some other load/store instr in this block. If so, reuse the
1117 // computation.
1118 Value *&SunkAddr = SunkAddrs[Addr];
1119 if (SunkAddr) {
1120 DEBUG(cerr << "CGP: Reusing nonlocal addrmode: " << AddrMode << "\n");
1121 if (SunkAddr->getType() != Addr->getType())
1122 SunkAddr = new BitCastInst(SunkAddr, Addr->getType(), "tmp", InsertPt);
1123 } else {
1124 DEBUG(cerr << "CGP: SINKING nonlocal addrmode: " << AddrMode << "\n");
1125 const Type *IntPtrTy = TLI->getTargetData()->getIntPtrType();
Eric Christopher692bf6b2008-09-24 05:32:41 +00001126
Chris Lattnerdd77df32007-04-13 20:30:56 +00001127 Value *Result = 0;
1128 // Start with the scale value.
1129 if (AddrMode.Scale) {
1130 Value *V = AddrMode.ScaledReg;
1131 if (V->getType() == IntPtrTy) {
1132 // done.
1133 } else if (isa<PointerType>(V->getType())) {
1134 V = new PtrToIntInst(V, IntPtrTy, "sunkaddr", InsertPt);
1135 } else if (cast<IntegerType>(IntPtrTy)->getBitWidth() <
1136 cast<IntegerType>(V->getType())->getBitWidth()) {
1137 V = new TruncInst(V, IntPtrTy, "sunkaddr", InsertPt);
1138 } else {
1139 V = new SExtInst(V, IntPtrTy, "sunkaddr", InsertPt);
1140 }
1141 if (AddrMode.Scale != 1)
Gabor Greif7cbd8a32008-05-16 19:29:10 +00001142 V = BinaryOperator::CreateMul(V, ConstantInt::get(IntPtrTy,
Chris Lattnerdd77df32007-04-13 20:30:56 +00001143 AddrMode.Scale),
1144 "sunkaddr", InsertPt);
1145 Result = V;
1146 }
1147
1148 // Add in the base register.
1149 if (AddrMode.BaseReg) {
1150 Value *V = AddrMode.BaseReg;
1151 if (V->getType() != IntPtrTy)
1152 V = new PtrToIntInst(V, IntPtrTy, "sunkaddr", InsertPt);
1153 if (Result)
Gabor Greif7cbd8a32008-05-16 19:29:10 +00001154 Result = BinaryOperator::CreateAdd(Result, V, "sunkaddr", InsertPt);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001155 else
1156 Result = V;
1157 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001158
Chris Lattnerdd77df32007-04-13 20:30:56 +00001159 // Add in the BaseGV if present.
1160 if (AddrMode.BaseGV) {
1161 Value *V = new PtrToIntInst(AddrMode.BaseGV, IntPtrTy, "sunkaddr",
1162 InsertPt);
1163 if (Result)
Gabor Greif7cbd8a32008-05-16 19:29:10 +00001164 Result = BinaryOperator::CreateAdd(Result, V, "sunkaddr", InsertPt);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001165 else
1166 Result = V;
1167 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001168
Chris Lattnerdd77df32007-04-13 20:30:56 +00001169 // Add in the Base Offset if present.
1170 if (AddrMode.BaseOffs) {
1171 Value *V = ConstantInt::get(IntPtrTy, AddrMode.BaseOffs);
1172 if (Result)
Gabor Greif7cbd8a32008-05-16 19:29:10 +00001173 Result = BinaryOperator::CreateAdd(Result, V, "sunkaddr", InsertPt);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001174 else
1175 Result = V;
1176 }
1177
1178 if (Result == 0)
1179 SunkAddr = Constant::getNullValue(Addr->getType());
1180 else
1181 SunkAddr = new IntToPtrInst(Result, Addr->getType(), "sunkaddr",InsertPt);
1182 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001183
Chris Lattnerdd77df32007-04-13 20:30:56 +00001184 LdStInst->replaceUsesOfWith(Addr, SunkAddr);
Eric Christopher692bf6b2008-09-24 05:32:41 +00001185
Chris Lattnerdd77df32007-04-13 20:30:56 +00001186 if (Addr->use_empty())
1187 EraseDeadInstructions(Addr);
1188 return true;
1189}
1190
Evan Cheng9bf12b52008-02-26 02:42:37 +00001191/// OptimizeInlineAsmInst - If there are any memory operands, use
Chris Lattner88a5c832008-11-25 07:09:13 +00001192/// OptimizeMemoryInst to sink their address computing into the block when
Evan Cheng9bf12b52008-02-26 02:42:37 +00001193/// possible / profitable.
1194bool CodeGenPrepare::OptimizeInlineAsmInst(Instruction *I, CallSite CS,
1195 DenseMap<Value*,Value*> &SunkAddrs) {
1196 bool MadeChange = false;
1197 InlineAsm *IA = cast<InlineAsm>(CS.getCalledValue());
1198
1199 // Do a prepass over the constraints, canonicalizing them, and building up the
1200 // ConstraintOperands list.
1201 std::vector<InlineAsm::ConstraintInfo>
1202 ConstraintInfos = IA->ParseConstraints();
1203
1204 /// ConstraintOperands - Information about all of the constraints.
1205 std::vector<TargetLowering::AsmOperandInfo> ConstraintOperands;
1206 unsigned ArgNo = 0; // ArgNo - The argument of the CallInst.
1207 for (unsigned i = 0, e = ConstraintInfos.size(); i != e; ++i) {
1208 ConstraintOperands.
1209 push_back(TargetLowering::AsmOperandInfo(ConstraintInfos[i]));
1210 TargetLowering::AsmOperandInfo &OpInfo = ConstraintOperands.back();
1211
1212 // Compute the value type for each operand.
1213 switch (OpInfo.Type) {
1214 case InlineAsm::isOutput:
1215 if (OpInfo.isIndirect)
1216 OpInfo.CallOperandVal = CS.getArgument(ArgNo++);
1217 break;
1218 case InlineAsm::isInput:
1219 OpInfo.CallOperandVal = CS.getArgument(ArgNo++);
1220 break;
1221 case InlineAsm::isClobber:
1222 // Nothing to do.
1223 break;
1224 }
1225
1226 // Compute the constraint code and ConstraintType to use.
Evan Chenga7e61462008-09-24 06:48:55 +00001227 TLI->ComputeConstraintToUse(OpInfo, SDValue(),
1228 OpInfo.ConstraintType == TargetLowering::C_Memory);
Evan Cheng9bf12b52008-02-26 02:42:37 +00001229
Eli Friedman9ec80952008-02-26 18:37:49 +00001230 if (OpInfo.ConstraintType == TargetLowering::C_Memory &&
1231 OpInfo.isIndirect) {
Evan Cheng9bf12b52008-02-26 02:42:37 +00001232 Value *OpVal = OpInfo.CallOperandVal;
Chris Lattner88a5c832008-11-25 07:09:13 +00001233 MadeChange |= OptimizeMemoryInst(I, OpVal, OpVal->getType(), SunkAddrs);
Evan Cheng9bf12b52008-02-26 02:42:37 +00001234 }
1235 }
1236
1237 return MadeChange;
1238}
1239
Evan Chengbdcb7262007-12-05 23:58:20 +00001240bool CodeGenPrepare::OptimizeExtUses(Instruction *I) {
1241 BasicBlock *DefBB = I->getParent();
1242
1243 // If both result of the {s|z}xt and its source are live out, rewrite all
1244 // other uses of the source with result of extension.
1245 Value *Src = I->getOperand(0);
1246 if (Src->hasOneUse())
1247 return false;
1248
Evan Cheng696e5c02007-12-13 07:50:36 +00001249 // Only do this xform if truncating is free.
Gabor Greif53bdbd72008-02-26 19:13:21 +00001250 if (TLI && !TLI->isTruncateFree(I->getType(), Src->getType()))
Evan Chengf9785f92007-12-13 03:32:53 +00001251 return false;
1252
Evan Cheng772de512007-12-12 00:51:06 +00001253 // Only safe to perform the optimization if the source is also defined in
Evan Cheng765dff22007-12-12 02:53:41 +00001254 // this block.
1255 if (!isa<Instruction>(Src) || DefBB != cast<Instruction>(Src)->getParent())
Evan Cheng772de512007-12-12 00:51:06 +00001256 return false;
1257
Evan Chengbdcb7262007-12-05 23:58:20 +00001258 bool DefIsLiveOut = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001259 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
Evan Chengbdcb7262007-12-05 23:58:20 +00001260 UI != E; ++UI) {
1261 Instruction *User = cast<Instruction>(*UI);
1262
1263 // Figure out which BB this ext is used in.
1264 BasicBlock *UserBB = User->getParent();
1265 if (UserBB == DefBB) continue;
1266 DefIsLiveOut = true;
1267 break;
1268 }
1269 if (!DefIsLiveOut)
1270 return false;
1271
Evan Cheng765dff22007-12-12 02:53:41 +00001272 // Make sure non of the uses are PHI nodes.
Eric Christopher692bf6b2008-09-24 05:32:41 +00001273 for (Value::use_iterator UI = Src->use_begin(), E = Src->use_end();
Evan Cheng765dff22007-12-12 02:53:41 +00001274 UI != E; ++UI) {
1275 Instruction *User = cast<Instruction>(*UI);
Evan Chengf9785f92007-12-13 03:32:53 +00001276 BasicBlock *UserBB = User->getParent();
1277 if (UserBB == DefBB) continue;
1278 // Be conservative. We don't want this xform to end up introducing
1279 // reloads just before load / store instructions.
1280 if (isa<PHINode>(User) || isa<LoadInst>(User) || isa<StoreInst>(User))
Evan Cheng765dff22007-12-12 02:53:41 +00001281 return false;
1282 }
1283
Evan Chengbdcb7262007-12-05 23:58:20 +00001284 // InsertedTruncs - Only insert one trunc in each block once.
1285 DenseMap<BasicBlock*, Instruction*> InsertedTruncs;
1286
1287 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001288 for (Value::use_iterator UI = Src->use_begin(), E = Src->use_end();
Evan Chengbdcb7262007-12-05 23:58:20 +00001289 UI != E; ++UI) {
1290 Use &TheUse = UI.getUse();
1291 Instruction *User = cast<Instruction>(*UI);
1292
1293 // Figure out which BB this ext is used in.
1294 BasicBlock *UserBB = User->getParent();
1295 if (UserBB == DefBB) continue;
1296
1297 // Both src and def are live in this block. Rewrite the use.
1298 Instruction *&InsertedTrunc = InsertedTruncs[UserBB];
1299
1300 if (!InsertedTrunc) {
Dan Gohman02dea8b2008-05-23 21:05:58 +00001301 BasicBlock::iterator InsertPt = UserBB->getFirstNonPHI();
Eric Christopher692bf6b2008-09-24 05:32:41 +00001302
Evan Chengbdcb7262007-12-05 23:58:20 +00001303 InsertedTrunc = new TruncInst(I, Src->getType(), "", InsertPt);
1304 }
1305
1306 // Replace a use of the {s|z}ext source with a use of the result.
1307 TheUse = InsertedTrunc;
1308
1309 MadeChange = true;
1310 }
1311
1312 return MadeChange;
1313}
1314
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001315// In this pass we look for GEP and cast instructions that are used
1316// across basic blocks and rewrite them to improve basic-block-at-a-time
1317// selection.
1318bool CodeGenPrepare::OptimizeBlock(BasicBlock &BB) {
1319 bool MadeChange = false;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001320
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001321 // Split all critical edges where the dest block has a PHI and where the phi
1322 // has shared immediate operands.
1323 TerminatorInst *BBTI = BB.getTerminator();
1324 if (BBTI->getNumSuccessors() > 1) {
1325 for (unsigned i = 0, e = BBTI->getNumSuccessors(); i != e; ++i)
1326 if (isa<PHINode>(BBTI->getSuccessor(i)->begin()) &&
1327 isCriticalEdge(BBTI, i, true))
1328 SplitEdgeNicely(BBTI, i, this);
1329 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001330
1331
Chris Lattnerdd77df32007-04-13 20:30:56 +00001332 // Keep track of non-local addresses that have been sunk into this block.
1333 // This allows us to avoid inserting duplicate code for blocks with multiple
1334 // load/stores of the same address.
1335 DenseMap<Value*, Value*> SunkAddrs;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001336
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001337 for (BasicBlock::iterator BBI = BB.begin(), E = BB.end(); BBI != E; ) {
1338 Instruction *I = BBI++;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001339
Chris Lattnerdd77df32007-04-13 20:30:56 +00001340 if (CastInst *CI = dyn_cast<CastInst>(I)) {
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001341 // If the source of the cast is a constant, then this should have
1342 // already been constant folded. The only reason NOT to constant fold
1343 // it is if something (e.g. LSR) was careful to place the constant
1344 // evaluation in a block other than then one that uses it (e.g. to hoist
1345 // the address of globals out of a loop). If this is the case, we don't
1346 // want to forward-subst the cast.
1347 if (isa<Constant>(CI->getOperand(0)))
1348 continue;
Eric Christopher692bf6b2008-09-24 05:32:41 +00001349
Evan Chengbdcb7262007-12-05 23:58:20 +00001350 bool Change = false;
1351 if (TLI) {
1352 Change = OptimizeNoopCopyExpression(CI, *TLI);
1353 MadeChange |= Change;
1354 }
1355
Evan Cheng55e641b2008-03-19 22:02:26 +00001356 if (!Change && (isa<ZExtInst>(I) || isa<SExtInst>(I)))
Evan Chengbdcb7262007-12-05 23:58:20 +00001357 MadeChange |= OptimizeExtUses(I);
Dale Johannesence0b2372007-06-12 16:50:17 +00001358 } else if (CmpInst *CI = dyn_cast<CmpInst>(I)) {
1359 MadeChange |= OptimizeCmpExpression(CI);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001360 } else if (LoadInst *LI = dyn_cast<LoadInst>(I)) {
1361 if (TLI)
Chris Lattner88a5c832008-11-25 07:09:13 +00001362 MadeChange |= OptimizeMemoryInst(I, I->getOperand(0), LI->getType(),
1363 SunkAddrs);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001364 } else if (StoreInst *SI = dyn_cast<StoreInst>(I)) {
1365 if (TLI)
Chris Lattner88a5c832008-11-25 07:09:13 +00001366 MadeChange |= OptimizeMemoryInst(I, SI->getOperand(1),
1367 SI->getOperand(0)->getType(),
1368 SunkAddrs);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001369 } else if (GetElementPtrInst *GEPI = dyn_cast<GetElementPtrInst>(I)) {
Chris Lattnerf25646b2007-04-14 00:17:39 +00001370 if (GEPI->hasAllZeroIndices()) {
Chris Lattnerdd77df32007-04-13 20:30:56 +00001371 /// The GEP operand must be a pointer, so must its result -> BitCast
Eric Christopher692bf6b2008-09-24 05:32:41 +00001372 Instruction *NC = new BitCastInst(GEPI->getOperand(0), GEPI->getType(),
Chris Lattnerdd77df32007-04-13 20:30:56 +00001373 GEPI->getName(), GEPI);
1374 GEPI->replaceAllUsesWith(NC);
1375 GEPI->eraseFromParent();
1376 MadeChange = true;
1377 BBI = NC;
1378 }
1379 } else if (CallInst *CI = dyn_cast<CallInst>(I)) {
1380 // If we found an inline asm expession, and if the target knows how to
1381 // lower it to normal LLVM code, do so now.
1382 if (TLI && isa<InlineAsm>(CI->getCalledValue()))
Eric Christopher692bf6b2008-09-24 05:32:41 +00001383 if (const TargetAsmInfo *TAI =
Chris Lattnerdd77df32007-04-13 20:30:56 +00001384 TLI->getTargetMachine().getTargetAsmInfo()) {
1385 if (TAI->ExpandInlineAsm(CI))
1386 BBI = BB.begin();
Evan Cheng9bf12b52008-02-26 02:42:37 +00001387 else
1388 // Sink address computing for memory operands into the block.
1389 MadeChange |= OptimizeInlineAsmInst(I, &(*CI), SunkAddrs);
Chris Lattnerdd77df32007-04-13 20:30:56 +00001390 }
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001391 }
1392 }
Eric Christopher692bf6b2008-09-24 05:32:41 +00001393
Chris Lattnerdbe0dec2007-03-31 04:06:36 +00001394 return MadeChange;
1395}