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Evan Chengc6fe3332010-03-02 02:38:24 +00001//===-- MachineCSE.cpp - Machine Common Subexpression Elimination Pass ----===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This pass performs global common subexpression elimination on machine
Evan Chengc5bbba12010-03-02 19:02:27 +000011// instructions using a scoped hash table based value numbering scheme. It
Evan Chengc6fe3332010-03-02 02:38:24 +000012// must be run while the machine function is still in SSA form.
13//
14//===----------------------------------------------------------------------===//
15
16#define DEBUG_TYPE "machine-cse"
17#include "llvm/CodeGen/Passes.h"
18#include "llvm/CodeGen/MachineDominators.h"
19#include "llvm/CodeGen/MachineInstr.h"
Evan Cheng6ba95542010-03-03 02:48:20 +000020#include "llvm/CodeGen/MachineRegisterInfo.h"
Evan Chenga5f32cb2010-03-04 21:18:08 +000021#include "llvm/Analysis/AliasAnalysis.h"
Evan Cheng6ba95542010-03-03 02:48:20 +000022#include "llvm/Target/TargetInstrInfo.h"
Evan Cheng31156982010-04-21 00:21:07 +000023#include "llvm/ADT/DenseMap.h"
Evan Chengc6fe3332010-03-02 02:38:24 +000024#include "llvm/ADT/ScopedHashTable.h"
Evan Cheng189c1ec2010-10-29 23:36:03 +000025#include "llvm/ADT/SmallSet.h"
Evan Chengc6fe3332010-03-02 02:38:24 +000026#include "llvm/ADT/Statistic.h"
27#include "llvm/Support/Debug.h"
Cameron Zwarich53eeba52011-01-03 04:07:46 +000028#include "llvm/Support/RecyclingAllocator.h"
Evan Chengc6fe3332010-03-02 02:38:24 +000029using namespace llvm;
30
Evan Cheng16b48b82010-03-03 21:20:05 +000031STATISTIC(NumCoalesces, "Number of copies coalesced");
32STATISTIC(NumCSEs, "Number of common subexpression eliminated");
Evan Cheng189c1ec2010-10-29 23:36:03 +000033STATISTIC(NumPhysCSEs,
34 "Number of physreg referencing common subexpr eliminated");
Evan Cheng97b5beb2012-01-10 02:02:58 +000035STATISTIC(NumCrossBBCSEs,
36 "Number of cross-MBB physreg referencing CS eliminated");
Evan Chenga63cde22010-12-15 22:16:21 +000037STATISTIC(NumCommutes, "Number of copies coalesced after commuting");
Bob Wilson38441732010-06-03 18:28:31 +000038
Evan Chengc6fe3332010-03-02 02:38:24 +000039namespace {
40 class MachineCSE : public MachineFunctionPass {
Evan Cheng6ba95542010-03-03 02:48:20 +000041 const TargetInstrInfo *TII;
Evan Chengb3958e82010-03-04 01:33:55 +000042 const TargetRegisterInfo *TRI;
Evan Chenga5f32cb2010-03-04 21:18:08 +000043 AliasAnalysis *AA;
Evan Cheng31f94c72010-03-09 03:21:12 +000044 MachineDominatorTree *DT;
45 MachineRegisterInfo *MRI;
Evan Chengc6fe3332010-03-02 02:38:24 +000046 public:
47 static char ID; // Pass identification
Owen Anderson081c34b2010-10-19 17:21:58 +000048 MachineCSE() : MachineFunctionPass(ID), LookAheadLimit(5), CurrVN(0) {
49 initializeMachineCSEPass(*PassRegistry::getPassRegistry());
50 }
Evan Chengc6fe3332010-03-02 02:38:24 +000051
52 virtual bool runOnMachineFunction(MachineFunction &MF);
Andrew Trick1df91b02012-02-08 21:22:43 +000053
Evan Chengc6fe3332010-03-02 02:38:24 +000054 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
55 AU.setPreservesCFG();
56 MachineFunctionPass::getAnalysisUsage(AU);
Evan Chenga5f32cb2010-03-04 21:18:08 +000057 AU.addRequired<AliasAnalysis>();
Evan Cheng65424162010-08-17 20:57:42 +000058 AU.addPreservedID(MachineLoopInfoID);
Evan Chengc6fe3332010-03-02 02:38:24 +000059 AU.addRequired<MachineDominatorTree>();
60 AU.addPreserved<MachineDominatorTree>();
61 }
62
Evan Chengc2b768f2010-09-17 21:59:42 +000063 virtual void releaseMemory() {
64 ScopeMap.clear();
65 Exps.clear();
Lang Hamesc2e08db2012-02-17 00:27:16 +000066 AllocatableRegs.clear();
67 ReservedRegs.clear();
Evan Chengc2b768f2010-09-17 21:59:42 +000068 }
69
Evan Chengc6fe3332010-03-02 02:38:24 +000070 private:
Evan Cheng835810b2010-05-21 21:22:19 +000071 const unsigned LookAheadLimit;
Cameron Zwarich53eeba52011-01-03 04:07:46 +000072 typedef RecyclingAllocator<BumpPtrAllocator,
73 ScopedHashTableVal<MachineInstr*, unsigned> > AllocatorTy;
74 typedef ScopedHashTable<MachineInstr*, unsigned,
75 MachineInstrExpressionTrait, AllocatorTy> ScopedHTType;
76 typedef ScopedHTType::ScopeTy ScopeType;
Evan Cheng31156982010-04-21 00:21:07 +000077 DenseMap<MachineBasicBlock*, ScopeType*> ScopeMap;
Cameron Zwarich53eeba52011-01-03 04:07:46 +000078 ScopedHTType VNT;
Evan Cheng16b48b82010-03-03 21:20:05 +000079 SmallVector<MachineInstr*, 64> Exps;
Evan Cheng31156982010-04-21 00:21:07 +000080 unsigned CurrVN;
Lang Hamesc2e08db2012-02-17 00:27:16 +000081 BitVector AllocatableRegs;
82 BitVector ReservedRegs;
Evan Cheng16b48b82010-03-03 21:20:05 +000083
Evan Chenga5f32cb2010-03-04 21:18:08 +000084 bool PerformTrivialCoalescing(MachineInstr *MI, MachineBasicBlock *MBB);
Evan Chengb3958e82010-03-04 01:33:55 +000085 bool isPhysDefTriviallyDead(unsigned Reg,
86 MachineBasicBlock::const_iterator I,
Evan Cheng835810b2010-05-21 21:22:19 +000087 MachineBasicBlock::const_iterator E) const ;
Evan Cheng189c1ec2010-10-29 23:36:03 +000088 bool hasLivePhysRegDefUses(const MachineInstr *MI,
89 const MachineBasicBlock *MBB,
Evan Cheng97b5beb2012-01-10 02:02:58 +000090 SmallSet<unsigned,8> &PhysRefs,
91 SmallVector<unsigned,2> &PhysDefs) const;
Evan Cheng189c1ec2010-10-29 23:36:03 +000092 bool PhysRegDefsReach(MachineInstr *CSMI, MachineInstr *MI,
Evan Cheng97b5beb2012-01-10 02:02:58 +000093 SmallSet<unsigned,8> &PhysRefs,
Evan Chengf96703e2012-01-11 00:38:11 +000094 SmallVector<unsigned,2> &PhysDefs,
Evan Cheng97b5beb2012-01-10 02:02:58 +000095 bool &NonLocal) const;
Evan Chenga5f32cb2010-03-04 21:18:08 +000096 bool isCSECandidate(MachineInstr *MI);
Evan Cheng2938a002010-03-10 02:12:03 +000097 bool isProfitableToCSE(unsigned CSReg, unsigned Reg,
98 MachineInstr *CSMI, MachineInstr *MI);
Evan Cheng31156982010-04-21 00:21:07 +000099 void EnterScope(MachineBasicBlock *MBB);
100 void ExitScope(MachineBasicBlock *MBB);
101 bool ProcessBlock(MachineBasicBlock *MBB);
102 void ExitScopeIfDone(MachineDomTreeNode *Node,
103 DenseMap<MachineDomTreeNode*, unsigned> &OpenChildren,
104 DenseMap<MachineDomTreeNode*, MachineDomTreeNode*> &ParentMap);
105 bool PerformCSE(MachineDomTreeNode *Node);
Evan Chengc6fe3332010-03-02 02:38:24 +0000106 };
107} // end anonymous namespace
108
109char MachineCSE::ID = 0;
Andrew Trick1dd8c852012-02-08 21:23:13 +0000110char &llvm::MachineCSEID = MachineCSE::ID;
Owen Anderson2ab36d32010-10-12 19:48:12 +0000111INITIALIZE_PASS_BEGIN(MachineCSE, "machine-cse",
112 "Machine Common Subexpression Elimination", false, false)
113INITIALIZE_PASS_DEPENDENCY(MachineDominatorTree)
114INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
115INITIALIZE_PASS_END(MachineCSE, "machine-cse",
Owen Andersonce665bd2010-10-07 22:25:06 +0000116 "Machine Common Subexpression Elimination", false, false)
Evan Chengc6fe3332010-03-02 02:38:24 +0000117
Evan Cheng6ba95542010-03-03 02:48:20 +0000118bool MachineCSE::PerformTrivialCoalescing(MachineInstr *MI,
119 MachineBasicBlock *MBB) {
120 bool Changed = false;
121 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
122 MachineOperand &MO = MI->getOperand(i);
Evan Cheng16b48b82010-03-03 21:20:05 +0000123 if (!MO.isReg() || !MO.isUse())
124 continue;
125 unsigned Reg = MO.getReg();
Jakob Stoklund Olesenc9df0252011-01-10 02:58:51 +0000126 if (!TargetRegisterInfo::isVirtualRegister(Reg))
Evan Cheng16b48b82010-03-03 21:20:05 +0000127 continue;
Evan Chengf437f732010-09-17 21:56:26 +0000128 if (!MRI->hasOneNonDBGUse(Reg))
Evan Cheng16b48b82010-03-03 21:20:05 +0000129 // Only coalesce single use copies. This ensure the copy will be
130 // deleted.
131 continue;
132 MachineInstr *DefMI = MRI->getVRegDef(Reg);
133 if (DefMI->getParent() != MBB)
134 continue;
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +0000135 if (!DefMI->isCopy())
136 continue;
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000137 unsigned SrcReg = DefMI->getOperand(1).getReg();
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +0000138 if (!TargetRegisterInfo::isVirtualRegister(SrcReg))
139 continue;
140 if (DefMI->getOperand(0).getSubReg() || DefMI->getOperand(1).getSubReg())
141 continue;
Jakob Stoklund Olesenbf4699c2010-10-06 23:54:39 +0000142 if (!MRI->constrainRegClass(SrcReg, MRI->getRegClass(Reg)))
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +0000143 continue;
144 DEBUG(dbgs() << "Coalescing: " << *DefMI);
Jakob Stoklund Olesenbf4699c2010-10-06 23:54:39 +0000145 DEBUG(dbgs() << "*** to: " << *MI);
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +0000146 MO.setReg(SrcReg);
147 MRI->clearKillFlags(SrcReg);
Jakob Stoklund Olesen0bc25f42010-07-08 16:40:22 +0000148 DefMI->eraseFromParent();
149 ++NumCoalesces;
150 Changed = true;
Evan Cheng6ba95542010-03-03 02:48:20 +0000151 }
152
153 return Changed;
154}
155
Evan Cheng835810b2010-05-21 21:22:19 +0000156bool
157MachineCSE::isPhysDefTriviallyDead(unsigned Reg,
158 MachineBasicBlock::const_iterator I,
159 MachineBasicBlock::const_iterator E) const {
Eric Christophere81d0102010-05-21 23:40:03 +0000160 unsigned LookAheadLeft = LookAheadLimit;
Evan Cheng112e5e72010-03-23 20:33:48 +0000161 while (LookAheadLeft) {
Evan Cheng22504252010-03-24 01:50:28 +0000162 // Skip over dbg_value's.
163 while (I != E && I->isDebugValue())
164 ++I;
165
Evan Chengb3958e82010-03-04 01:33:55 +0000166 if (I == E)
167 // Reached end of block, register is obviously dead.
168 return true;
169
Evan Chengb3958e82010-03-04 01:33:55 +0000170 bool SeenDef = false;
171 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i) {
172 const MachineOperand &MO = I->getOperand(i);
Jakob Stoklund Olesen2129a0f2012-02-28 02:08:50 +0000173 if (MO.isRegMask() && MO.clobbersPhysReg(Reg))
174 SeenDef = true;
Evan Chengb3958e82010-03-04 01:33:55 +0000175 if (!MO.isReg() || !MO.getReg())
176 continue;
177 if (!TRI->regsOverlap(MO.getReg(), Reg))
178 continue;
179 if (MO.isUse())
Evan Cheng835810b2010-05-21 21:22:19 +0000180 // Found a use!
Evan Chengb3958e82010-03-04 01:33:55 +0000181 return false;
182 SeenDef = true;
183 }
184 if (SeenDef)
Andrew Trick1df91b02012-02-08 21:22:43 +0000185 // See a def of Reg (or an alias) before encountering any use, it's
Evan Chengb3958e82010-03-04 01:33:55 +0000186 // trivially dead.
187 return true;
Evan Cheng112e5e72010-03-23 20:33:48 +0000188
189 --LookAheadLeft;
Evan Chengb3958e82010-03-04 01:33:55 +0000190 ++I;
191 }
192 return false;
193}
194
Evan Cheng189c1ec2010-10-29 23:36:03 +0000195/// hasLivePhysRegDefUses - Return true if the specified instruction read/write
Evan Cheng835810b2010-05-21 21:22:19 +0000196/// physical registers (except for dead defs of physical registers). It also
Evan Cheng2b4e7272010-06-04 23:28:13 +0000197/// returns the physical register def by reference if it's the only one and the
198/// instruction does not uses a physical register.
Evan Cheng189c1ec2010-10-29 23:36:03 +0000199bool MachineCSE::hasLivePhysRegDefUses(const MachineInstr *MI,
200 const MachineBasicBlock *MBB,
Evan Cheng97b5beb2012-01-10 02:02:58 +0000201 SmallSet<unsigned,8> &PhysRefs,
202 SmallVector<unsigned,2> &PhysDefs) const{
Evan Cheng189c1ec2010-10-29 23:36:03 +0000203 MachineBasicBlock::const_iterator I = MI; I = llvm::next(I);
Evan Cheng6ba95542010-03-03 02:48:20 +0000204 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
Evan Cheng835810b2010-05-21 21:22:19 +0000205 const MachineOperand &MO = MI->getOperand(i);
Evan Cheng6ba95542010-03-03 02:48:20 +0000206 if (!MO.isReg())
207 continue;
208 unsigned Reg = MO.getReg();
209 if (!Reg)
210 continue;
Evan Cheng835810b2010-05-21 21:22:19 +0000211 if (TargetRegisterInfo::isVirtualRegister(Reg))
212 continue;
Evan Cheng189c1ec2010-10-29 23:36:03 +0000213 // If the def is dead, it's ok. But the def may not marked "dead". That's
Evan Cheng835810b2010-05-21 21:22:19 +0000214 // common since this pass is run before livevariables. We can scan
215 // forward a few instructions and check if it is obviously dead.
Evan Cheng189c1ec2010-10-29 23:36:03 +0000216 if (MO.isDef() &&
217 (MO.isDead() || isPhysDefTriviallyDead(Reg, I, MBB->end())))
218 continue;
Jakob Stoklund Olesenf152fe82012-06-01 20:36:54 +0000219 for (MCRegAliasIterator AI(Reg, TRI, true); AI.isValid(); ++AI)
220 PhysRefs.insert(*AI);
Evan Cheng97b5beb2012-01-10 02:02:58 +0000221 if (MO.isDef())
222 PhysDefs.push_back(Reg);
Evan Chengb3958e82010-03-04 01:33:55 +0000223 }
224
Evan Cheng189c1ec2010-10-29 23:36:03 +0000225 return !PhysRefs.empty();
Evan Chengc6fe3332010-03-02 02:38:24 +0000226}
227
Evan Cheng189c1ec2010-10-29 23:36:03 +0000228bool MachineCSE::PhysRegDefsReach(MachineInstr *CSMI, MachineInstr *MI,
Evan Cheng97b5beb2012-01-10 02:02:58 +0000229 SmallSet<unsigned,8> &PhysRefs,
Evan Chengf96703e2012-01-11 00:38:11 +0000230 SmallVector<unsigned,2> &PhysDefs,
Evan Cheng97b5beb2012-01-10 02:02:58 +0000231 bool &NonLocal) const {
Eli Friedman5e926ac2011-05-06 05:23:07 +0000232 // For now conservatively returns false if the common subexpression is
Evan Cheng97b5beb2012-01-10 02:02:58 +0000233 // not in the same basic block as the given instruction. The only exception
234 // is if the common subexpression is in the sole predecessor block.
235 const MachineBasicBlock *MBB = MI->getParent();
236 const MachineBasicBlock *CSMBB = CSMI->getParent();
237
238 bool CrossMBB = false;
239 if (CSMBB != MBB) {
Evan Chengf96703e2012-01-11 00:38:11 +0000240 if (MBB->pred_size() != 1 || *MBB->pred_begin() != CSMBB)
Evan Cheng97b5beb2012-01-10 02:02:58 +0000241 return false;
Evan Chengf96703e2012-01-11 00:38:11 +0000242
243 for (unsigned i = 0, e = PhysDefs.size(); i != e; ++i) {
Lang Hamesc2e08db2012-02-17 00:27:16 +0000244 if (AllocatableRegs.test(PhysDefs[i]) || ReservedRegs.test(PhysDefs[i]))
245 // Avoid extending live range of physical registers if they are
246 //allocatable or reserved.
Evan Chengf96703e2012-01-11 00:38:11 +0000247 return false;
248 }
249 CrossMBB = true;
Evan Cheng97b5beb2012-01-10 02:02:58 +0000250 }
Eli Friedman5e926ac2011-05-06 05:23:07 +0000251 MachineBasicBlock::const_iterator I = CSMI; I = llvm::next(I);
252 MachineBasicBlock::const_iterator E = MI;
Evan Cheng97b5beb2012-01-10 02:02:58 +0000253 MachineBasicBlock::const_iterator EE = CSMBB->end();
Evan Cheng835810b2010-05-21 21:22:19 +0000254 unsigned LookAheadLeft = LookAheadLimit;
255 while (LookAheadLeft) {
Eli Friedman5e926ac2011-05-06 05:23:07 +0000256 // Skip over dbg_value's.
Evan Cheng97b5beb2012-01-10 02:02:58 +0000257 while (I != E && I != EE && I->isDebugValue())
Evan Cheng835810b2010-05-21 21:22:19 +0000258 ++I;
Eli Friedman5e926ac2011-05-06 05:23:07 +0000259
Evan Cheng97b5beb2012-01-10 02:02:58 +0000260 if (I == EE) {
261 assert(CrossMBB && "Reaching end-of-MBB without finding MI?");
Duncan Sands5b8a1db2012-02-05 14:20:11 +0000262 (void)CrossMBB;
Evan Cheng97b5beb2012-01-10 02:02:58 +0000263 CrossMBB = false;
264 NonLocal = true;
265 I = MBB->begin();
266 EE = MBB->end();
267 continue;
268 }
269
Eli Friedman5e926ac2011-05-06 05:23:07 +0000270 if (I == E)
271 return true;
272
273 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i) {
274 const MachineOperand &MO = I->getOperand(i);
Jakob Stoklund Olesen2129a0f2012-02-28 02:08:50 +0000275 // RegMasks go on instructions like calls that clobber lots of physregs.
276 // Don't attempt to CSE across such an instruction.
277 if (MO.isRegMask())
278 return false;
Eli Friedman5e926ac2011-05-06 05:23:07 +0000279 if (!MO.isReg() || !MO.isDef())
280 continue;
281 unsigned MOReg = MO.getReg();
282 if (TargetRegisterInfo::isVirtualRegister(MOReg))
283 continue;
284 if (PhysRefs.count(MOReg))
285 return false;
Evan Cheng189c1ec2010-10-29 23:36:03 +0000286 }
Eli Friedman5e926ac2011-05-06 05:23:07 +0000287
288 --LookAheadLeft;
289 ++I;
Evan Cheng835810b2010-05-21 21:22:19 +0000290 }
291
292 return false;
293}
294
Evan Chenga5f32cb2010-03-04 21:18:08 +0000295bool MachineCSE::isCSECandidate(MachineInstr *MI) {
Evan Cheng51960182010-03-08 23:49:12 +0000296 if (MI->isLabel() || MI->isPHI() || MI->isImplicitDef() ||
Dale Johannesene68ea062010-03-11 02:10:24 +0000297 MI->isKill() || MI->isInlineAsm() || MI->isDebugValue())
Evan Cheng51960182010-03-08 23:49:12 +0000298 return false;
299
Evan Cheng2938a002010-03-10 02:12:03 +0000300 // Ignore copies.
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000301 if (MI->isCopyLike())
Evan Chenga5f32cb2010-03-04 21:18:08 +0000302 return false;
303
304 // Ignore stuff that we obviously can't move.
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000305 if (MI->mayStore() || MI->isCall() || MI->isTerminator() ||
Evan Chengc36b7062011-01-07 23:50:32 +0000306 MI->hasUnmodeledSideEffects())
Evan Chenga5f32cb2010-03-04 21:18:08 +0000307 return false;
308
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000309 if (MI->mayLoad()) {
Evan Chenga5f32cb2010-03-04 21:18:08 +0000310 // Okay, this instruction does a load. As a refinement, we allow the target
311 // to decide whether the loaded value is actually a constant. If so, we can
312 // actually use it as a load.
313 if (!MI->isInvariantLoad(AA))
314 // FIXME: we should be able to hoist loads with no other side effects if
315 // there are no other instructions which can change memory in this loop.
316 // This is a trivial form of alias analysis.
317 return false;
318 }
319 return true;
320}
321
Evan Cheng31f94c72010-03-09 03:21:12 +0000322/// isProfitableToCSE - Return true if it's profitable to eliminate MI with a
323/// common expression that defines Reg.
Evan Cheng2938a002010-03-10 02:12:03 +0000324bool MachineCSE::isProfitableToCSE(unsigned CSReg, unsigned Reg,
325 MachineInstr *CSMI, MachineInstr *MI) {
326 // FIXME: Heuristics that works around the lack the live range splitting.
327
Chris Lattner622a11b2011-01-10 07:51:31 +0000328 // Heuristics #1: Don't CSE "cheap" computation if the def is not local or in
329 // an immediate predecessor. We don't want to increase register pressure and
330 // end up causing other computation to be spilled.
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000331 if (MI->isAsCheapAsAMove()) {
Evan Cheng2938a002010-03-10 02:12:03 +0000332 MachineBasicBlock *CSBB = CSMI->getParent();
333 MachineBasicBlock *BB = MI->getParent();
Chris Lattner622a11b2011-01-10 07:51:31 +0000334 if (CSBB != BB && !CSBB->isSuccessor(BB))
Evan Cheng2938a002010-03-10 02:12:03 +0000335 return false;
336 }
337
338 // Heuristics #2: If the expression doesn't not use a vr and the only use
339 // of the redundant computation are copies, do not cse.
340 bool HasVRegUse = false;
341 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
342 const MachineOperand &MO = MI->getOperand(i);
Jakob Stoklund Olesenc9df0252011-01-10 02:58:51 +0000343 if (MO.isReg() && MO.isUse() &&
Evan Cheng2938a002010-03-10 02:12:03 +0000344 TargetRegisterInfo::isVirtualRegister(MO.getReg())) {
345 HasVRegUse = true;
346 break;
347 }
348 }
349 if (!HasVRegUse) {
350 bool HasNonCopyUse = false;
351 for (MachineRegisterInfo::use_nodbg_iterator I = MRI->use_nodbg_begin(Reg),
352 E = MRI->use_nodbg_end(); I != E; ++I) {
353 MachineInstr *Use = &*I;
354 // Ignore copies.
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000355 if (!Use->isCopyLike()) {
Evan Cheng2938a002010-03-10 02:12:03 +0000356 HasNonCopyUse = true;
357 break;
358 }
359 }
360 if (!HasNonCopyUse)
361 return false;
362 }
363
364 // Heuristics #3: If the common subexpression is used by PHIs, do not reuse
365 // it unless the defined value is already used in the BB of the new use.
Evan Cheng31f94c72010-03-09 03:21:12 +0000366 bool HasPHI = false;
367 SmallPtrSet<MachineBasicBlock*, 4> CSBBs;
Evan Cheng2938a002010-03-10 02:12:03 +0000368 for (MachineRegisterInfo::use_nodbg_iterator I = MRI->use_nodbg_begin(CSReg),
Evan Cheng31f94c72010-03-09 03:21:12 +0000369 E = MRI->use_nodbg_end(); I != E; ++I) {
370 MachineInstr *Use = &*I;
371 HasPHI |= Use->isPHI();
372 CSBBs.insert(Use->getParent());
373 }
374
375 if (!HasPHI)
376 return true;
377 return CSBBs.count(MI->getParent());
378}
379
Evan Cheng31156982010-04-21 00:21:07 +0000380void MachineCSE::EnterScope(MachineBasicBlock *MBB) {
381 DEBUG(dbgs() << "Entering: " << MBB->getName() << '\n');
382 ScopeType *Scope = new ScopeType(VNT);
383 ScopeMap[MBB] = Scope;
384}
385
386void MachineCSE::ExitScope(MachineBasicBlock *MBB) {
387 DEBUG(dbgs() << "Exiting: " << MBB->getName() << '\n');
388 DenseMap<MachineBasicBlock*, ScopeType*>::iterator SI = ScopeMap.find(MBB);
389 assert(SI != ScopeMap.end());
390 ScopeMap.erase(SI);
391 delete SI->second;
392}
393
394bool MachineCSE::ProcessBlock(MachineBasicBlock *MBB) {
Evan Cheng6ba95542010-03-03 02:48:20 +0000395 bool Changed = false;
396
Evan Cheng31f94c72010-03-09 03:21:12 +0000397 SmallVector<std::pair<unsigned, unsigned>, 8> CSEPairs;
Evan Cheng16b48b82010-03-03 21:20:05 +0000398 for (MachineBasicBlock::iterator I = MBB->begin(), E = MBB->end(); I != E; ) {
Evan Cheng6ba95542010-03-03 02:48:20 +0000399 MachineInstr *MI = &*I;
Evan Cheng16b48b82010-03-03 21:20:05 +0000400 ++I;
Evan Chenga5f32cb2010-03-04 21:18:08 +0000401
402 if (!isCSECandidate(MI))
Evan Cheng6ba95542010-03-03 02:48:20 +0000403 continue;
Evan Cheng6ba95542010-03-03 02:48:20 +0000404
405 bool FoundCSE = VNT.count(MI);
406 if (!FoundCSE) {
407 // Look for trivial copy coalescing opportunities.
Evan Chengdb8771a2010-04-02 02:21:24 +0000408 if (PerformTrivialCoalescing(MI, MBB)) {
Evan Chengcfea9852011-04-11 18:47:20 +0000409 Changed = true;
410
Evan Chengdb8771a2010-04-02 02:21:24 +0000411 // After coalescing MI itself may become a copy.
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000412 if (MI->isCopyLike())
Evan Chengdb8771a2010-04-02 02:21:24 +0000413 continue;
Evan Cheng6ba95542010-03-03 02:48:20 +0000414 FoundCSE = VNT.count(MI);
Evan Chengdb8771a2010-04-02 02:21:24 +0000415 }
Evan Cheng6ba95542010-03-03 02:48:20 +0000416 }
Evan Chenga63cde22010-12-15 22:16:21 +0000417
418 // Commute commutable instructions.
419 bool Commuted = false;
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000420 if (!FoundCSE && MI->isCommutable()) {
Evan Chenga63cde22010-12-15 22:16:21 +0000421 MachineInstr *NewMI = TII->commuteInstruction(MI);
422 if (NewMI) {
423 Commuted = true;
424 FoundCSE = VNT.count(NewMI);
Evan Chengcfea9852011-04-11 18:47:20 +0000425 if (NewMI != MI) {
Evan Chenga63cde22010-12-15 22:16:21 +0000426 // New instruction. It doesn't need to be kept.
427 NewMI->eraseFromParent();
Evan Chengcfea9852011-04-11 18:47:20 +0000428 Changed = true;
429 } else if (!FoundCSE)
Evan Chenga63cde22010-12-15 22:16:21 +0000430 // MI was changed but it didn't help, commute it back!
431 (void)TII->commuteInstruction(MI);
432 }
433 }
Evan Cheng6ba95542010-03-03 02:48:20 +0000434
Evan Cheng189c1ec2010-10-29 23:36:03 +0000435 // If the instruction defines physical registers and the values *may* be
Evan Cheng67bda722010-03-03 23:59:08 +0000436 // used, then it's not safe to replace it with a common subexpression.
Evan Cheng189c1ec2010-10-29 23:36:03 +0000437 // It's also not safe if the instruction uses physical registers.
Evan Cheng97b5beb2012-01-10 02:02:58 +0000438 bool CrossMBBPhysDef = false;
Evan Cheng189c1ec2010-10-29 23:36:03 +0000439 SmallSet<unsigned,8> PhysRefs;
Evan Cheng97b5beb2012-01-10 02:02:58 +0000440 SmallVector<unsigned, 2> PhysDefs;
441 if (FoundCSE && hasLivePhysRegDefUses(MI, MBB, PhysRefs, PhysDefs)) {
Evan Cheng67bda722010-03-03 23:59:08 +0000442 FoundCSE = false;
443
Evan Cheng97b5beb2012-01-10 02:02:58 +0000444 // ... Unless the CS is local or is in the sole predecessor block
445 // and it also defines the physical register which is not clobbered
446 // in between and the physical register uses were not clobbered.
Evan Cheng189c1ec2010-10-29 23:36:03 +0000447 unsigned CSVN = VNT.lookup(MI);
448 MachineInstr *CSMI = Exps[CSVN];
Evan Chengf96703e2012-01-11 00:38:11 +0000449 if (PhysRegDefsReach(CSMI, MI, PhysRefs, PhysDefs, CrossMBBPhysDef))
Evan Cheng189c1ec2010-10-29 23:36:03 +0000450 FoundCSE = true;
Evan Cheng835810b2010-05-21 21:22:19 +0000451 }
452
Evan Cheng16b48b82010-03-03 21:20:05 +0000453 if (!FoundCSE) {
454 VNT.insert(MI, CurrVN++);
455 Exps.push_back(MI);
456 continue;
457 }
458
459 // Found a common subexpression, eliminate it.
460 unsigned CSVN = VNT.lookup(MI);
461 MachineInstr *CSMI = Exps[CSVN];
462 DEBUG(dbgs() << "Examining: " << *MI);
463 DEBUG(dbgs() << "*** Found a common subexpression: " << *CSMI);
Evan Cheng31f94c72010-03-09 03:21:12 +0000464
465 // Check if it's profitable to perform this CSE.
466 bool DoCSE = true;
Evan Cheng16b48b82010-03-03 21:20:05 +0000467 unsigned NumDefs = MI->getDesc().getNumDefs();
468 for (unsigned i = 0, e = MI->getNumOperands(); NumDefs && i != e; ++i) {
469 MachineOperand &MO = MI->getOperand(i);
470 if (!MO.isReg() || !MO.isDef())
471 continue;
472 unsigned OldReg = MO.getReg();
473 unsigned NewReg = CSMI->getOperand(i).getReg();
Evan Cheng6cc1aea2010-03-06 01:14:19 +0000474 if (OldReg == NewReg)
475 continue;
Bill Wendlingf6fb7ed2011-10-12 23:03:40 +0000476
Evan Cheng6cc1aea2010-03-06 01:14:19 +0000477 assert(TargetRegisterInfo::isVirtualRegister(OldReg) &&
Evan Cheng16b48b82010-03-03 21:20:05 +0000478 TargetRegisterInfo::isVirtualRegister(NewReg) &&
479 "Do not CSE physical register defs!");
Bill Wendlingf6fb7ed2011-10-12 23:03:40 +0000480
Evan Cheng2938a002010-03-10 02:12:03 +0000481 if (!isProfitableToCSE(NewReg, OldReg, CSMI, MI)) {
Evan Cheng31f94c72010-03-09 03:21:12 +0000482 DoCSE = false;
483 break;
484 }
Bill Wendlingf6fb7ed2011-10-12 23:03:40 +0000485
486 // Don't perform CSE if the result of the old instruction cannot exist
487 // within the register class of the new instruction.
488 const TargetRegisterClass *OldRC = MRI->getRegClass(OldReg);
489 if (!MRI->constrainRegClass(NewReg, OldRC)) {
490 DoCSE = false;
491 break;
492 }
493
Evan Cheng31f94c72010-03-09 03:21:12 +0000494 CSEPairs.push_back(std::make_pair(OldReg, NewReg));
Evan Cheng16b48b82010-03-03 21:20:05 +0000495 --NumDefs;
496 }
Evan Cheng31f94c72010-03-09 03:21:12 +0000497
498 // Actually perform the elimination.
499 if (DoCSE) {
Dan Gohman49b45892010-05-13 19:24:00 +0000500 for (unsigned i = 0, e = CSEPairs.size(); i != e; ++i) {
Evan Cheng31f94c72010-03-09 03:21:12 +0000501 MRI->replaceRegWith(CSEPairs[i].first, CSEPairs[i].second);
Dan Gohman49b45892010-05-13 19:24:00 +0000502 MRI->clearKillFlags(CSEPairs[i].second);
503 }
Evan Cheng97b5beb2012-01-10 02:02:58 +0000504
505 if (CrossMBBPhysDef) {
506 // Add physical register defs now coming in from a predecessor to MBB
507 // livein list.
508 while (!PhysDefs.empty()) {
509 unsigned LiveIn = PhysDefs.pop_back_val();
510 if (!MBB->isLiveIn(LiveIn))
511 MBB->addLiveIn(LiveIn);
512 }
513 ++NumCrossBBCSEs;
514 }
515
Evan Cheng31f94c72010-03-09 03:21:12 +0000516 MI->eraseFromParent();
517 ++NumCSEs;
Evan Cheng189c1ec2010-10-29 23:36:03 +0000518 if (!PhysRefs.empty())
Evan Cheng2b4e7272010-06-04 23:28:13 +0000519 ++NumPhysCSEs;
Evan Chenga63cde22010-12-15 22:16:21 +0000520 if (Commuted)
521 ++NumCommutes;
Evan Chengcfea9852011-04-11 18:47:20 +0000522 Changed = true;
Evan Cheng31f94c72010-03-09 03:21:12 +0000523 } else {
524 DEBUG(dbgs() << "*** Not profitable, avoid CSE!\n");
525 VNT.insert(MI, CurrVN++);
526 Exps.push_back(MI);
527 }
528 CSEPairs.clear();
Evan Cheng6ba95542010-03-03 02:48:20 +0000529 }
530
Evan Cheng31156982010-04-21 00:21:07 +0000531 return Changed;
532}
533
534/// ExitScopeIfDone - Destroy scope for the MBB that corresponds to the given
535/// dominator tree node if its a leaf or all of its children are done. Walk
536/// up the dominator tree to destroy ancestors which are now done.
537void
538MachineCSE::ExitScopeIfDone(MachineDomTreeNode *Node,
539 DenseMap<MachineDomTreeNode*, unsigned> &OpenChildren,
540 DenseMap<MachineDomTreeNode*, MachineDomTreeNode*> &ParentMap) {
541 if (OpenChildren[Node])
542 return;
543
544 // Pop scope.
545 ExitScope(Node->getBlock());
546
547 // Now traverse upwards to pop ancestors whose offsprings are all done.
548 while (MachineDomTreeNode *Parent = ParentMap[Node]) {
549 unsigned Left = --OpenChildren[Parent];
550 if (Left != 0)
551 break;
552 ExitScope(Parent->getBlock());
553 Node = Parent;
554 }
555}
556
557bool MachineCSE::PerformCSE(MachineDomTreeNode *Node) {
558 SmallVector<MachineDomTreeNode*, 32> Scopes;
559 SmallVector<MachineDomTreeNode*, 8> WorkList;
560 DenseMap<MachineDomTreeNode*, MachineDomTreeNode*> ParentMap;
561 DenseMap<MachineDomTreeNode*, unsigned> OpenChildren;
562
Evan Chengc2b768f2010-09-17 21:59:42 +0000563 CurrVN = 0;
564
Evan Cheng31156982010-04-21 00:21:07 +0000565 // Perform a DFS walk to determine the order of visit.
566 WorkList.push_back(Node);
567 do {
568 Node = WorkList.pop_back_val();
569 Scopes.push_back(Node);
570 const std::vector<MachineDomTreeNode*> &Children = Node->getChildren();
571 unsigned NumChildren = Children.size();
572 OpenChildren[Node] = NumChildren;
573 for (unsigned i = 0; i != NumChildren; ++i) {
574 MachineDomTreeNode *Child = Children[i];
575 ParentMap[Child] = Node;
576 WorkList.push_back(Child);
577 }
578 } while (!WorkList.empty());
579
580 // Now perform CSE.
581 bool Changed = false;
582 for (unsigned i = 0, e = Scopes.size(); i != e; ++i) {
583 MachineDomTreeNode *Node = Scopes[i];
584 MachineBasicBlock *MBB = Node->getBlock();
585 EnterScope(MBB);
586 Changed |= ProcessBlock(MBB);
587 // If it's a leaf node, it's done. Traverse upwards to pop ancestors.
588 ExitScopeIfDone(Node, OpenChildren, ParentMap);
589 }
Evan Cheng6ba95542010-03-03 02:48:20 +0000590
591 return Changed;
592}
593
Evan Chengc6fe3332010-03-02 02:38:24 +0000594bool MachineCSE::runOnMachineFunction(MachineFunction &MF) {
Evan Cheng6ba95542010-03-03 02:48:20 +0000595 TII = MF.getTarget().getInstrInfo();
Evan Chengb3958e82010-03-04 01:33:55 +0000596 TRI = MF.getTarget().getRegisterInfo();
Evan Cheng6ba95542010-03-03 02:48:20 +0000597 MRI = &MF.getRegInfo();
Evan Chenga5f32cb2010-03-04 21:18:08 +0000598 AA = &getAnalysis<AliasAnalysis>();
Evan Cheng31f94c72010-03-09 03:21:12 +0000599 DT = &getAnalysis<MachineDominatorTree>();
Lang Hamesc2e08db2012-02-17 00:27:16 +0000600 AllocatableRegs = TRI->getAllocatableSet(MF);
601 ReservedRegs = TRI->getReservedRegs(MF);
Evan Cheng31156982010-04-21 00:21:07 +0000602 return PerformCSE(DT->getRootNode());
Evan Chengc6fe3332010-03-02 02:38:24 +0000603}