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Chris Lattner6ec05f52002-05-10 22:44:58 +00001//===-- LICM.cpp - Loop Invariant Code Motion Pass ------------------------===//
John Criswell482202a2003-10-20 19:43:21 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
Chris Lattner6ec05f52002-05-10 22:44:58 +00009//
Chris Lattnerc0517682003-12-09 17:18:00 +000010// This pass performs loop invariant code motion, attempting to remove as much
11// code from the body of a loop as possible. It does this by either hoisting
12// code into the preheader block, or by sinking code to the exit blocks if it is
13// safe. This pass also promotes must-aliased memory locations in the loop to
14// live in registers.
15//
16// This pass uses alias analysis for two purposes:
Chris Lattner45d67d62003-02-24 03:52:32 +000017//
18// 1. Moving loop invariant loads out of loops. If we can determine that a
19// load inside of a loop never aliases anything stored to, we can hoist it
Chris Lattnerc0517682003-12-09 17:18:00 +000020// or sink it like any other instruction.
Chris Lattner45d67d62003-02-24 03:52:32 +000021// 2. Scalar Promotion of Memory - If there is a store instruction inside of
22// the loop, we try to move the store to happen AFTER the loop instead of
23// inside of the loop. This can only happen if a few conditions are true:
24// A. The pointer stored through is loop invariant
25// B. There are no stores or loads in the loop which _may_ alias the
26// pointer. There are no calls in the loop which mod/ref the pointer.
27// If these conditions are true, we can promote the loads and stores in the
28// loop of the pointer to use a temporary alloca'd variable. We then use
29// the mem2reg functionality to construct the appropriate SSA form for the
30// variable.
Chris Lattner6ec05f52002-05-10 22:44:58 +000031//
Chris Lattner6ec05f52002-05-10 22:44:58 +000032//===----------------------------------------------------------------------===//
33
34#include "llvm/Transforms/Scalar.h"
Chris Lattner45d67d62003-02-24 03:52:32 +000035#include "llvm/Transforms/Utils/PromoteMemToReg.h"
Chris Lattner6ec05f52002-05-10 22:44:58 +000036#include "llvm/Transforms/Utils/Local.h"
37#include "llvm/Analysis/LoopInfo.h"
Chris Lattnera51fa882002-08-22 21:39:55 +000038#include "llvm/Analysis/AliasAnalysis.h"
Chris Lattner0592bb72003-03-03 23:32:45 +000039#include "llvm/Analysis/AliasSetTracker.h"
Chris Lattner64437692002-09-29 21:46:09 +000040#include "llvm/Analysis/Dominators.h"
Chris Lattner45d67d62003-02-24 03:52:32 +000041#include "llvm/Instructions.h"
42#include "llvm/DerivedTypes.h"
Chris Lattnere27406e2003-03-03 17:25:18 +000043#include "llvm/Target/TargetData.h"
Chris Lattner45d67d62003-02-24 03:52:32 +000044#include "llvm/Support/CFG.h"
Chris Lattner45d67d62003-02-24 03:52:32 +000045#include "Support/CommandLine.h"
Chris Lattner8abcd562003-08-01 22:15:03 +000046#include "Support/Debug.h"
47#include "Support/Statistic.h"
Chris Lattner05e86302002-09-29 22:26:07 +000048#include "llvm/Assembly/Writer.h"
Chris Lattner6ec05f52002-05-10 22:44:58 +000049#include <algorithm>
Chris Lattnerc0517682003-12-09 17:18:00 +000050using namespace llvm;
Brian Gaeke960707c2003-11-11 22:41:34 +000051
Chris Lattner6ec05f52002-05-10 22:44:58 +000052namespace {
Chris Lattner17895702003-10-13 05:04:27 +000053 cl::opt<bool>
54 DisablePromotion("disable-licm-promotion", cl::Hidden,
55 cl::desc("Disable memory promotion in LICM pass"));
Chris Lattner45d67d62003-02-24 03:52:32 +000056
Chris Lattneraaaea512003-12-10 06:41:05 +000057 Statistic<> NumSunk("licm", "Number of instructions sunk out of loop");
Chris Lattnerbf3a0992002-10-01 22:38:41 +000058 Statistic<> NumHoisted("licm", "Number of instructions hoisted out of loop");
Chris Lattneraaaea512003-12-10 06:41:05 +000059 Statistic<> NumMovedLoads("licm", "Number of load insts hoisted or sunk");
Chris Lattner17895702003-10-13 05:04:27 +000060 Statistic<> NumPromoted("licm",
61 "Number of memory locations promoted to registers");
Chris Lattner718b2212002-09-26 16:38:03 +000062
Chris Lattner65c11932003-12-09 19:32:44 +000063 struct LICM : public FunctionPass {
Chris Lattner113f4f42002-06-25 16:13:24 +000064 virtual bool runOnFunction(Function &F);
Chris Lattner6ec05f52002-05-10 22:44:58 +000065
Chris Lattnerf64f2d32002-09-26 16:52:07 +000066 /// This transformation requires natural loop information & requires that
67 /// loop preheaders be inserted into the CFG...
68 ///
Chris Lattner6ec05f52002-05-10 22:44:58 +000069 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Chris Lattner820d9712002-10-21 20:00:28 +000070 AU.setPreservesCFG();
Chris Lattner72272a72003-10-12 21:52:28 +000071 AU.addRequiredID(LoopSimplifyID);
Chris Lattnerf0ed55d2002-08-08 19:01:30 +000072 AU.addRequired<LoopInfo>();
Chris Lattner64437692002-09-29 21:46:09 +000073 AU.addRequired<DominatorTree>();
Chris Lattner0592bb72003-03-03 23:32:45 +000074 AU.addRequired<DominanceFrontier>(); // For scalar promotion (mem2reg)
Chris Lattnera51fa882002-08-22 21:39:55 +000075 AU.addRequired<AliasAnalysis>();
Chris Lattner6ec05f52002-05-10 22:44:58 +000076 }
77
78 private:
Chris Lattnerc0517682003-12-09 17:18:00 +000079 // Various analyses that we use...
Chris Lattner45d67d62003-02-24 03:52:32 +000080 AliasAnalysis *AA; // Current AliasAnalysis information
Chris Lattnerc0517682003-12-09 17:18:00 +000081 LoopInfo *LI; // Current LoopInfo
82 DominatorTree *DT; // Dominator Tree for the current Loop...
Chris Lattnera906bac2003-10-05 21:20:13 +000083 DominanceFrontier *DF; // Current Dominance Frontier
Chris Lattnerc0517682003-12-09 17:18:00 +000084
85 // State that is updated as we process loops
Chris Lattner45d67d62003-02-24 03:52:32 +000086 bool Changed; // Set to true when we change anything.
87 BasicBlock *Preheader; // The preheader block of the current loop...
88 Loop *CurLoop; // The current loop we are working on...
Chris Lattner0592bb72003-03-03 23:32:45 +000089 AliasSetTracker *CurAST; // AliasSet information for the current loop...
Chris Lattner6ec05f52002-05-10 22:44:58 +000090
Chris Lattnerf64f2d32002-09-26 16:52:07 +000091 /// visitLoop - Hoist expressions out of the specified loop...
92 ///
Chris Lattner0592bb72003-03-03 23:32:45 +000093 void visitLoop(Loop *L, AliasSetTracker &AST);
Chris Lattner6ec05f52002-05-10 22:44:58 +000094
Chris Lattner64437692002-09-29 21:46:09 +000095 /// HoistRegion - Walk the specified region of the CFG (defined by all
96 /// blocks dominated by the specified block, and that are in the current
97 /// loop) in depth first order w.r.t the DominatorTree. This allows us to
Misha Brukman8b2bd4e2003-10-10 17:57:28 +000098 /// visit definitions before uses, allowing us to hoist a loop body in one
Chris Lattner64437692002-09-29 21:46:09 +000099 /// pass without iteration.
100 ///
101 void HoistRegion(DominatorTree::Node *N);
102
Chris Lattner05e86302002-09-29 22:26:07 +0000103 /// inSubLoop - Little predicate that returns true if the specified basic
104 /// block is in a subloop of the current one, not the current one itself.
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000105 ///
Chris Lattner05e86302002-09-29 22:26:07 +0000106 bool inSubLoop(BasicBlock *BB) {
107 assert(CurLoop->contains(BB) && "Only valid if BB is IN the loop");
Chris Lattner6ec05f52002-05-10 22:44:58 +0000108 for (unsigned i = 0, e = CurLoop->getSubLoops().size(); i != e; ++i)
109 if (CurLoop->getSubLoops()[i]->contains(BB))
Chris Lattner05e86302002-09-29 22:26:07 +0000110 return true; // A subloop actually contains this block!
111 return false;
Chris Lattner6ec05f52002-05-10 22:44:58 +0000112 }
113
Chris Lattneraaaea512003-12-10 06:41:05 +0000114 /// isExitBlockDominatedByBlockInLoop - This method checks to see if the
115 /// specified exit block of the loop is dominated by the specified block
116 /// that is in the body of the loop. We use these constraints to
117 /// dramatically limit the amount of the dominator tree that needs to be
118 /// searched.
119 bool isExitBlockDominatedByBlockInLoop(BasicBlock *ExitBlock,
120 BasicBlock *BlockInLoop) const {
121 // If the block in the loop is the loop header, it must be dominated!
122 BasicBlock *LoopHeader = CurLoop->getHeader();
123 if (BlockInLoop == LoopHeader)
124 return true;
125
126 DominatorTree::Node *BlockInLoopNode = DT->getNode(BlockInLoop);
127 DominatorTree::Node *IDom = DT->getNode(ExitBlock);
128
129 // Because the exit block is not in the loop, we know we have to get _at
130 // least_ it's immediate dominator.
131 do {
132 // Get next Immediate Dominator.
133 IDom = IDom->getIDom();
134
135 // If we have got to the header of the loop, then the instructions block
136 // did not dominate the exit node, so we can't hoist it.
137 if (IDom->getBlock() == LoopHeader)
138 return false;
139
140 } while (IDom != BlockInLoopNode);
141
142 return true;
143 }
144
145 /// sink - When an instruction is found to only be used outside of the loop,
146 /// this function moves it to the exit blocks and patches up SSA form as
147 /// needed.
148 ///
149 void sink(Instruction &I);
150
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000151 /// hoist - When an instruction is found to only use loop invariant operands
152 /// that is safe to hoist, this instruction is called to do the dirty work.
153 ///
Chris Lattner113f4f42002-06-25 16:13:24 +0000154 void hoist(Instruction &I);
Chris Lattner6ec05f52002-05-10 22:44:58 +0000155
Chris Lattneraaaea512003-12-10 06:41:05 +0000156 /// isSafeToExecuteUnconditionally - Only sink or hoist an instruction if it
157 /// is not a trapping instruction or if it is a trapping instruction and is
158 /// guaranteed to execute.
Tanya Lattner57c03df2003-08-05 18:45:46 +0000159 ///
Chris Lattneraaaea512003-12-10 06:41:05 +0000160 bool isSafeToExecuteUnconditionally(Instruction &I);
Tanya Lattner57c03df2003-08-05 18:45:46 +0000161
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000162 /// pointerInvalidatedByLoop - Return true if the body of this loop may
163 /// store into the memory location pointed to by V.
164 ///
Chris Lattner45d67d62003-02-24 03:52:32 +0000165 bool pointerInvalidatedByLoop(Value *V) {
Chris Lattner0592bb72003-03-03 23:32:45 +0000166 // Check to see if any of the basic blocks in CurLoop invalidate *V.
167 return CurAST->getAliasSetForPointer(V, 0).isMod();
Chris Lattner45d67d62003-02-24 03:52:32 +0000168 }
Chris Lattnera51fa882002-08-22 21:39:55 +0000169
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000170 /// isLoopInvariant - Return true if the specified value is loop invariant
171 ///
Chris Lattner6ec05f52002-05-10 22:44:58 +0000172 inline bool isLoopInvariant(Value *V) {
173 if (Instruction *I = dyn_cast<Instruction>(V))
174 return !CurLoop->contains(I->getParent());
175 return true; // All non-instructions are loop invariant
176 }
Chris Lattneraaaea512003-12-10 06:41:05 +0000177
178 bool canSinkOrHoistInst(Instruction &I);
179 bool isLoopInvariantInst(Instruction &I);
180 bool isNotUsedInLoop(Instruction &I);
Chris Lattner6ec05f52002-05-10 22:44:58 +0000181
Chris Lattner45d67d62003-02-24 03:52:32 +0000182 /// PromoteValuesInLoop - Look at the stores in the loop and promote as many
183 /// to scalars as we can.
184 ///
185 void PromoteValuesInLoop();
186
187 /// findPromotableValuesInLoop - Check the current loop for stores to
Misha Brukman9b8d3392003-09-11 15:32:37 +0000188 /// definite pointers, which are not loaded and stored through may aliases.
Chris Lattner45d67d62003-02-24 03:52:32 +0000189 /// If these are found, create an alloca for the value, add it to the
190 /// PromotedValues list, and keep track of the mapping from value to
191 /// alloca...
192 ///
193 void findPromotableValuesInLoop(
194 std::vector<std::pair<AllocaInst*, Value*> > &PromotedValues,
195 std::map<Value*, AllocaInst*> &Val2AlMap);
Chris Lattner6ec05f52002-05-10 22:44:58 +0000196 };
Chris Lattnerb28b6802002-07-23 18:06:35 +0000197
Chris Lattnerc8b70922002-07-26 21:12:46 +0000198 RegisterOpt<LICM> X("licm", "Loop Invariant Code Motion");
Chris Lattner6ec05f52002-05-10 22:44:58 +0000199}
200
Chris Lattnerc0517682003-12-09 17:18:00 +0000201FunctionPass *llvm::createLICMPass() { return new LICM(); }
Chris Lattner6ec05f52002-05-10 22:44:58 +0000202
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000203/// runOnFunction - For LICM, this simply traverses the loop structure of the
204/// function, hoisting expressions out of loops if possible.
205///
Chris Lattner113f4f42002-06-25 16:13:24 +0000206bool LICM::runOnFunction(Function &) {
Chris Lattner45d67d62003-02-24 03:52:32 +0000207 Changed = false;
Chris Lattner6ec05f52002-05-10 22:44:58 +0000208
Chris Lattner45d67d62003-02-24 03:52:32 +0000209 // Get our Loop and Alias Analysis information...
210 LI = &getAnalysis<LoopInfo>();
Chris Lattnera51fa882002-08-22 21:39:55 +0000211 AA = &getAnalysis<AliasAnalysis>();
Chris Lattnera906bac2003-10-05 21:20:13 +0000212 DF = &getAnalysis<DominanceFrontier>();
Tanya Lattnerdc3c9a82003-08-05 20:39:02 +0000213 DT = &getAnalysis<DominatorTree>();
Chris Lattnera51fa882002-08-22 21:39:55 +0000214
Chris Lattner45d67d62003-02-24 03:52:32 +0000215 // Hoist expressions out of all of the top-level loops.
216 const std::vector<Loop*> &TopLevelLoops = LI->getTopLevelLoops();
217 for (std::vector<Loop*>::const_iterator I = TopLevelLoops.begin(),
218 E = TopLevelLoops.end(); I != E; ++I) {
Chris Lattner0592bb72003-03-03 23:32:45 +0000219 AliasSetTracker AST(*AA);
Chris Lattner65c11932003-12-09 19:32:44 +0000220 visitLoop(*I, AST);
Chris Lattner45d67d62003-02-24 03:52:32 +0000221 }
Chris Lattner6ec05f52002-05-10 22:44:58 +0000222 return Changed;
223}
224
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000225
226/// visitLoop - Hoist expressions out of the specified loop...
227///
Chris Lattner0592bb72003-03-03 23:32:45 +0000228void LICM::visitLoop(Loop *L, AliasSetTracker &AST) {
Chris Lattner6ec05f52002-05-10 22:44:58 +0000229 // Recurse through all subloops before we process this loop...
Chris Lattner45d67d62003-02-24 03:52:32 +0000230 for (std::vector<Loop*>::const_iterator I = L->getSubLoops().begin(),
231 E = L->getSubLoops().end(); I != E; ++I) {
Chris Lattner0592bb72003-03-03 23:32:45 +0000232 AliasSetTracker SubAST(*AA);
Chris Lattner65c11932003-12-09 19:32:44 +0000233 visitLoop(*I, SubAST);
Chris Lattner45d67d62003-02-24 03:52:32 +0000234
235 // Incorporate information about the subloops into this loop...
Chris Lattner0592bb72003-03-03 23:32:45 +0000236 AST.add(SubAST);
Chris Lattner45d67d62003-02-24 03:52:32 +0000237 }
Chris Lattner6ec05f52002-05-10 22:44:58 +0000238 CurLoop = L;
Chris Lattner0592bb72003-03-03 23:32:45 +0000239 CurAST = &AST;
Chris Lattner6ec05f52002-05-10 22:44:58 +0000240
Chris Lattnerd57f3f52002-09-26 19:40:25 +0000241 // Get the preheader block to move instructions into...
242 Preheader = L->getLoopPreheader();
243 assert(Preheader&&"Preheader insertion pass guarantees we have a preheader!");
244
Chris Lattner45d67d62003-02-24 03:52:32 +0000245 // Loop over the body of this loop, looking for calls, invokes, and stores.
Chris Lattner0592bb72003-03-03 23:32:45 +0000246 // Because subloops have already been incorporated into AST, we skip blocks in
Chris Lattner45d67d62003-02-24 03:52:32 +0000247 // subloops.
248 //
Chris Lattneraaaea512003-12-10 06:41:05 +0000249 for (std::vector<BasicBlock*>::const_iterator I = L->getBlocks().begin(),
250 E = L->getBlocks().end(); I != E; ++I)
Chris Lattner45d67d62003-02-24 03:52:32 +0000251 if (LI->getLoopFor(*I) == L) // Ignore blocks in subloops...
Chris Lattner0592bb72003-03-03 23:32:45 +0000252 AST.add(**I); // Incorporate the specified basic block
Chris Lattner45d67d62003-02-24 03:52:32 +0000253
Chris Lattner6ec05f52002-05-10 22:44:58 +0000254 // We want to visit all of the instructions in this loop... that are not parts
255 // of our subloops (they have already had their invariants hoisted out of
256 // their loop, into this loop, so there is no need to process the BODIES of
257 // the subloops).
258 //
Chris Lattner64437692002-09-29 21:46:09 +0000259 // Traverse the body of the loop in depth first order on the dominator tree so
260 // that we are guaranteed to see definitions before we see uses. This allows
261 // us to perform the LICM transformation in one pass, without iteration.
262 //
Tanya Lattnerdc3c9a82003-08-05 20:39:02 +0000263 HoistRegion(DT->getNode(L->getHeader()));
Chris Lattner6ec05f52002-05-10 22:44:58 +0000264
Chris Lattner45d67d62003-02-24 03:52:32 +0000265 // Now that all loop invariants have been removed from the loop, promote any
266 // memory references to scalars that we can...
267 if (!DisablePromotion)
268 PromoteValuesInLoop();
269
Chris Lattner6ec05f52002-05-10 22:44:58 +0000270 // Clear out loops state information for the next iteration
271 CurLoop = 0;
Chris Lattnerd57f3f52002-09-26 19:40:25 +0000272 Preheader = 0;
Chris Lattner6ec05f52002-05-10 22:44:58 +0000273}
274
Chris Lattner64437692002-09-29 21:46:09 +0000275/// HoistRegion - Walk the specified region of the CFG (defined by all blocks
276/// dominated by the specified block, and that are in the current loop) in depth
Misha Brukman8b2bd4e2003-10-10 17:57:28 +0000277/// first order w.r.t the DominatorTree. This allows us to visit definitions
Chris Lattner64437692002-09-29 21:46:09 +0000278/// before uses, allowing us to hoist a loop body in one pass without iteration.
279///
280void LICM::HoistRegion(DominatorTree::Node *N) {
281 assert(N != 0 && "Null dominator tree node?");
Chris Lattner65c11932003-12-09 19:32:44 +0000282 BasicBlock *BB = N->getBlock();
Chris Lattner64437692002-09-29 21:46:09 +0000283
Chris Lattner05e86302002-09-29 22:26:07 +0000284 // If this subregion is not in the top level loop at all, exit.
Chris Lattner65c11932003-12-09 19:32:44 +0000285 if (!CurLoop->contains(BB)) return;
Chris Lattner64437692002-09-29 21:46:09 +0000286
Chris Lattneraaaea512003-12-10 06:41:05 +0000287 // Only need to process the contents of this block if it is not part of a
288 // subloop (which would already have been processed).
Chris Lattner65c11932003-12-09 19:32:44 +0000289 if (!inSubLoop(BB))
Chris Lattneraaaea512003-12-10 06:41:05 +0000290 for (BasicBlock::iterator II = BB->begin(), E = BB->end(); II != E; ) {
291 Instruction &I = *II++;
292
293 // We can only handle simple expressions and loads with this code.
294 if (canSinkOrHoistInst(I)) {
295 // First check to see if we can sink this instruction to the exit blocks
296 // of the loop. We can do this if the only users of the instruction are
297 // outside of the loop. In this case, it doesn't even matter if the
298 // operands of the instruction are loop invariant.
299 //
300 if (isNotUsedInLoop(I))
301 sink(I);
302
303 // If we can't sink the instruction, try hoisting it out to the
304 // preheader. We can only do this if all of the operands of the
305 // instruction are loop invariant and if it is safe to hoist the
306 // instruction.
307 //
308 else if (isLoopInvariantInst(I) && isSafeToExecuteUnconditionally(I))
309 hoist(I);
310 }
Chris Lattner65c11932003-12-09 19:32:44 +0000311 }
Chris Lattner64437692002-09-29 21:46:09 +0000312
313 const std::vector<DominatorTree::Node*> &Children = N->getChildren();
314 for (unsigned i = 0, e = Children.size(); i != e; ++i)
315 HoistRegion(Children[i]);
316}
317
Chris Lattneraaaea512003-12-10 06:41:05 +0000318/// canSinkOrHoistInst - Return true if the hoister and sinker can handle this
319/// instruction.
320///
321bool LICM::canSinkOrHoistInst(Instruction &I) {
Chris Lattner65c11932003-12-09 19:32:44 +0000322 // Loads have extra constraints we have to verify before we can hoist them.
323 if (LoadInst *LI = dyn_cast<LoadInst>(&I)) {
324 if (LI->isVolatile())
325 return false; // Don't hoist volatile loads!
326
327 // Don't hoist loads which have may-aliased stores in loop.
Chris Lattneraaaea512003-12-10 06:41:05 +0000328 return !pointerInvalidatedByLoop(LI->getOperand(0));
Chris Lattner65c11932003-12-09 19:32:44 +0000329 }
330
Chris Lattneraaaea512003-12-10 06:41:05 +0000331 return isa<BinaryOperator>(I) || isa<ShiftInst>(I) || isa<CastInst>(I) ||
332 isa<GetElementPtrInst>(I) || isa<VANextInst>(I) || isa<VAArgInst>(I);
333}
334
335/// isNotUsedInLoop - Return true if the only users of this instruction are
336/// outside of the loop. If this is true, we can sink the instruction to the
337/// exit blocks of the loop.
338///
339bool LICM::isNotUsedInLoop(Instruction &I) {
340 for (Value::use_iterator UI = I.use_begin(), E = I.use_end(); UI != E; ++UI)
341 if (CurLoop->contains(cast<Instruction>(*UI)->getParent()))
342 return false;
343 return true;
344}
345
346
347/// isLoopInvariantInst - Return true if all operands of this instruction are
348/// loop invariant. We also filter out non-hoistable instructions here just for
349/// efficiency.
350///
351bool LICM::isLoopInvariantInst(Instruction &I) {
352 // The instruction is loop invariant if all of its operands are loop-invariant
353 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i)
354 if (!isLoopInvariant(I.getOperand(i)))
355 return false;
356
Chris Lattner65c11932003-12-09 19:32:44 +0000357 // If we got this far, the instruction is loop invariant!
358 return true;
359}
360
Chris Lattneraaaea512003-12-10 06:41:05 +0000361/// sink - When an instruction is found to only be used outside of the loop,
362/// this function moves it to the exit blocks and patches up SSA form as
363/// needed.
364///
365void LICM::sink(Instruction &I) {
366 DEBUG(std::cerr << "LICM sinking instruction: " << I);
367
368 const std::vector<BasicBlock*> &ExitBlocks = CurLoop->getExitBlocks();
369
370 // The case where there is only a single exit node of this loop is common
371 // enough that we handle it as a special (more efficient) case. It is more
372 // efficient to handle because there are no PHI nodes that need to be placed.
373 if (ExitBlocks.size() == 1) {
374 if (!isExitBlockDominatedByBlockInLoop(ExitBlocks[0], I.getParent())) {
375 // Instruction is not used, just delete it.
376 I.getParent()->getInstList().erase(&I);
377 } else {
378 // Move the instruction to the start of the exit block, after any PHI
379 // nodes in it.
380 I.getParent()->getInstList().remove(&I);
381
382 BasicBlock::iterator InsertPt = ExitBlocks[0]->begin();
383 while (isa<PHINode>(InsertPt)) ++InsertPt;
384 ExitBlocks[0]->getInstList().insert(InsertPt, &I);
385 }
386 } else if (ExitBlocks.size() == 0) {
387 // The instruction is actually dead if there ARE NO exit blocks.
388 I.getParent()->getInstList().erase(&I);
389 return; // Don't count this as a sunk instruction, don't check operands.
390 } else {
391 // Otherwise, if we have multiple exits, use the PromoteMem2Reg function to
392 // do all of the hard work of inserting PHI nodes as necessary. We convert
393 // the value into a stack object to get it to do this.
394
395 // Firstly, we create a stack object to hold the value...
396 AllocaInst *AI = new AllocaInst(I.getType(), 0, I.getName(),
397 I.getParent()->getParent()->front().begin());
398
399 // Secondly, insert load instructions for each use of the instruction
400 // outside of the loop.
401 while (!I.use_empty()) {
402 Instruction *U = cast<Instruction>(I.use_back());
403
404 // If the user is a PHI Node, we actually have to insert load instructions
405 // in all predecessor blocks, not in the PHI block itself!
406 if (PHINode *UPN = dyn_cast<PHINode>(U)) {
407 // Only insert into each predecessor once, so that we don't have
408 // different incoming values from the same block!
409 std::map<BasicBlock*, Value*> InsertedBlocks;
410 for (unsigned i = 0, e = UPN->getNumIncomingValues(); i != e; ++i)
411 if (UPN->getIncomingValue(i) == &I) {
412 BasicBlock *Pred = UPN->getIncomingBlock(i);
413 Value *&PredVal = InsertedBlocks[Pred];
414 if (!PredVal) {
415 // Insert a new load instruction right before the terminator in
416 // the predecessor block.
417 PredVal = new LoadInst(AI, "", Pred->getTerminator());
418 }
419
420 UPN->setIncomingValue(i, PredVal);
421 }
422
423 } else {
424 LoadInst *L = new LoadInst(AI, "", U);
425 U->replaceUsesOfWith(&I, L);
426 }
427 }
428
429 // Thirdly, insert a copy of the instruction in each exit block of the loop
430 // that is dominated by the instruction, storing the result into the memory
431 // location. Be careful not to insert the instruction into any particular
432 // basic block more than once.
433 std::set<BasicBlock*> InsertedBlocks;
434 BasicBlock *InstOrigBB = I.getParent();
435
436 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i) {
437 BasicBlock *ExitBlock = ExitBlocks[i];
438
439 if (isExitBlockDominatedByBlockInLoop(ExitBlock, InstOrigBB)) {
Chris Lattneraaaea512003-12-10 06:41:05 +0000440 // If we haven't already processed this exit block, do so now.
Chris Lattner63643142003-12-10 16:58:24 +0000441 if (InsertedBlocks.insert(ExitBlock).second) {
Chris Lattneraaaea512003-12-10 06:41:05 +0000442 // Insert the code after the last PHI node...
443 BasicBlock::iterator InsertPt = ExitBlock->begin();
444 while (isa<PHINode>(InsertPt)) ++InsertPt;
445
446 // If this is the first exit block processed, just move the original
447 // instruction, otherwise clone the original instruction and insert
448 // the copy.
449 Instruction *New;
450 if (InsertedBlocks.empty()) {
451 I.getParent()->getInstList().remove(&I);
452 ExitBlock->getInstList().insert(InsertPt, &I);
453 New = &I;
454 } else {
455 New = I.clone();
456 New->setName(I.getName()+".le");
457 ExitBlock->getInstList().insert(InsertPt, New);
458 }
459
460 // Now that we have inserted the instruction, store it into the alloca
461 new StoreInst(New, AI, InsertPt);
Chris Lattneraaaea512003-12-10 06:41:05 +0000462 }
463 }
464 }
465
466 // Finally, promote the fine value to SSA form.
467 std::vector<AllocaInst*> Allocas;
468 Allocas.push_back(AI);
469 PromoteMemToReg(Allocas, *DT, *DF, AA->getTargetData());
470 }
471
472 if (isa<LoadInst>(I)) ++NumMovedLoads;
473 ++NumSunk;
474 Changed = true;
475
476 // Since we just sunk an instruction, check to see if any other instructions
477 // used by this instruction are now sinkable. If so, sink them too.
478 for (unsigned i = 0, e = I.getNumOperands(); i != e; ++i)
479 if (Instruction *OpI = dyn_cast<Instruction>(I.getOperand(i)))
480 if (CurLoop->contains(OpI->getParent()) && canSinkOrHoistInst(*OpI) &&
481 isNotUsedInLoop(*OpI) &&
482 isSafeToExecuteUnconditionally(*OpI))
483 sink(*OpI);
484}
Chris Lattner64437692002-09-29 21:46:09 +0000485
Chris Lattnerf64f2d32002-09-26 16:52:07 +0000486/// hoist - When an instruction is found to only use loop invariant operands
487/// that is safe to hoist, this instruction is called to do the dirty work.
488///
Chris Lattneraaaea512003-12-10 06:41:05 +0000489void LICM::hoist(Instruction &I) {
Chris Lattner05e86302002-09-29 22:26:07 +0000490 DEBUG(std::cerr << "LICM hoisting to";
491 WriteAsOperand(std::cerr, Preheader, false);
Chris Lattneraaaea512003-12-10 06:41:05 +0000492 std::cerr << ": " << I);
Chris Lattner65c11932003-12-09 19:32:44 +0000493
Chris Lattnerd57f3f52002-09-26 19:40:25 +0000494 // Remove the instruction from its current basic block... but don't delete the
495 // instruction.
Chris Lattneraaaea512003-12-10 06:41:05 +0000496 I.getParent()->getInstList().remove(&I);
Chris Lattner6ec05f52002-05-10 22:44:58 +0000497
Chris Lattner718b2212002-09-26 16:38:03 +0000498 // Insert the new node in Preheader, before the terminator.
Chris Lattneraaaea512003-12-10 06:41:05 +0000499 Preheader->getInstList().insert(Preheader->getTerminator(), &I);
Chris Lattner718b2212002-09-26 16:38:03 +0000500
Chris Lattneraaaea512003-12-10 06:41:05 +0000501 if (isa<LoadInst>(I)) ++NumMovedLoads;
Chris Lattner718b2212002-09-26 16:38:03 +0000502 ++NumHoisted;
Chris Lattner6ec05f52002-05-10 22:44:58 +0000503 Changed = true;
504}
505
Chris Lattneraaaea512003-12-10 06:41:05 +0000506/// isSafeToExecuteUnconditionally - Only sink or hoist an instruction if it is
507/// not a trapping instruction or if it is a trapping instruction and is
508/// guaranteed to execute.
Tanya Lattner57c03df2003-08-05 18:45:46 +0000509///
Chris Lattneraaaea512003-12-10 06:41:05 +0000510bool LICM::isSafeToExecuteUnconditionally(Instruction &Inst) {
Chris Lattnerc0517682003-12-09 17:18:00 +0000511 // If it is not a trapping instruction, it is always safe to hoist.
512 if (!Inst.isTrapping()) return true;
513
514 // Otherwise we have to check to make sure that the instruction dominates all
515 // of the exit blocks. If it doesn't, then there is a path out of the loop
516 // which does not execute this instruction, so we can't hoist it.
Tanya Lattner57c03df2003-08-05 18:45:46 +0000517
Chris Lattnerc0517682003-12-09 17:18:00 +0000518 // If the instruction is in the header block for the loop (which is very
519 // common), it is always guaranteed to dominate the exit blocks. Since this
520 // is a common case, and can save some work, check it now.
Chris Lattneraaaea512003-12-10 06:41:05 +0000521 if (Inst.getParent() == CurLoop->getHeader())
Chris Lattnerc0517682003-12-09 17:18:00 +0000522 return true;
Tanya Lattner57c03df2003-08-05 18:45:46 +0000523
Chris Lattnerc0517682003-12-09 17:18:00 +0000524 // Get the exit blocks for the current loop.
Chris Lattneraaaea512003-12-10 06:41:05 +0000525 const std::vector<BasicBlock*> &ExitBlocks = CurLoop->getExitBlocks();
Chris Lattnerc0517682003-12-09 17:18:00 +0000526
527 // For each exit block, get the DT node and walk up the DT until the
528 // instruction's basic block is found or we exit the loop.
Chris Lattneraaaea512003-12-10 06:41:05 +0000529 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i)
530 if (!isExitBlockDominatedByBlockInLoop(ExitBlocks[i], Inst.getParent()))
531 return false;
Tanya Lattnerdc3c9a82003-08-05 20:39:02 +0000532
Tanya Lattner57c03df2003-08-05 18:45:46 +0000533 return true;
534}
535
Chris Lattnerd771fdf2002-09-26 16:19:31 +0000536
Chris Lattner45d67d62003-02-24 03:52:32 +0000537/// PromoteValuesInLoop - Try to promote memory values to scalars by sinking
538/// stores out of the loop and moving loads to before the loop. We do this by
539/// looping over the stores in the loop, looking for stores to Must pointers
540/// which are loop invariant. We promote these memory locations to use allocas
541/// instead. These allocas can easily be raised to register values by the
542/// PromoteMem2Reg functionality.
543///
544void LICM::PromoteValuesInLoop() {
545 // PromotedValues - List of values that are promoted out of the loop. Each
Chris Lattner216c7b82003-09-10 05:29:43 +0000546 // value has an alloca instruction for it, and a canonical version of the
Chris Lattner45d67d62003-02-24 03:52:32 +0000547 // pointer.
548 std::vector<std::pair<AllocaInst*, Value*> > PromotedValues;
549 std::map<Value*, AllocaInst*> ValueToAllocaMap; // Map of ptr to alloca
550
551 findPromotableValuesInLoop(PromotedValues, ValueToAllocaMap);
552 if (ValueToAllocaMap.empty()) return; // If there are values to promote...
553
554 Changed = true;
555 NumPromoted += PromotedValues.size();
556
557 // Emit a copy from the value into the alloca'd value in the loop preheader
558 TerminatorInst *LoopPredInst = Preheader->getTerminator();
559 for (unsigned i = 0, e = PromotedValues.size(); i != e; ++i) {
560 // Load from the memory we are promoting...
561 LoadInst *LI = new LoadInst(PromotedValues[i].second,
562 PromotedValues[i].second->getName()+".promoted",
563 LoopPredInst);
564 // Store into the temporary alloca...
565 new StoreInst(LI, PromotedValues[i].first, LoopPredInst);
566 }
567
568 // Scan the basic blocks in the loop, replacing uses of our pointers with
Chris Lattneredda1af2003-12-10 15:56:24 +0000569 // uses of the allocas in question.
Chris Lattner45d67d62003-02-24 03:52:32 +0000570 //
571 const std::vector<BasicBlock*> &LoopBBs = CurLoop->getBlocks();
572 for (std::vector<BasicBlock*>::const_iterator I = LoopBBs.begin(),
573 E = LoopBBs.end(); I != E; ++I) {
574 // Rewrite all loads and stores in the block of the pointer...
575 for (BasicBlock::iterator II = (*I)->begin(), E = (*I)->end();
576 II != E; ++II) {
Chris Lattner889f6202003-04-23 16:37:45 +0000577 if (LoadInst *L = dyn_cast<LoadInst>(II)) {
Chris Lattner45d67d62003-02-24 03:52:32 +0000578 std::map<Value*, AllocaInst*>::iterator
579 I = ValueToAllocaMap.find(L->getOperand(0));
580 if (I != ValueToAllocaMap.end())
581 L->setOperand(0, I->second); // Rewrite load instruction...
Chris Lattner889f6202003-04-23 16:37:45 +0000582 } else if (StoreInst *S = dyn_cast<StoreInst>(II)) {
Chris Lattner45d67d62003-02-24 03:52:32 +0000583 std::map<Value*, AllocaInst*>::iterator
584 I = ValueToAllocaMap.find(S->getOperand(1));
585 if (I != ValueToAllocaMap.end())
586 S->setOperand(1, I->second); // Rewrite store instruction...
587 }
588 }
Chris Lattner45d67d62003-02-24 03:52:32 +0000589 }
590
Chris Lattneredda1af2003-12-10 15:56:24 +0000591 // Now that the body of the loop uses the allocas instead of the original
592 // memory locations, insert code to copy the alloca value back into the
593 // original memory location on all exits from the loop. Note that we only
594 // want to insert one copy of the code in each exit block, though the loop may
595 // exit to the same block more than once.
596 //
597 std::set<BasicBlock*> ProcessedBlocks;
598
599 const std::vector<BasicBlock*> &ExitBlocks = CurLoop->getExitBlocks();
600 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i)
Chris Lattner48b4b852003-12-10 16:57:24 +0000601 if (ProcessedBlocks.insert(ExitBlocks[i]).second) {
Chris Lattneredda1af2003-12-10 15:56:24 +0000602 // Copy all of the allocas into their memory locations...
603 BasicBlock::iterator BI = ExitBlocks[i]->begin();
604 while (isa<PHINode>(*BI))
605 ++BI; // Skip over all of the phi nodes in the block...
606 Instruction *InsertPos = BI;
607 for (unsigned i = 0, e = PromotedValues.size(); i != e; ++i) {
608 // Load from the alloca...
609 LoadInst *LI = new LoadInst(PromotedValues[i].first, "", InsertPos);
610 // Store into the memory we promoted...
611 new StoreInst(LI, PromotedValues[i].second, InsertPos);
612 }
613 }
614
Chris Lattner45d67d62003-02-24 03:52:32 +0000615 // Now that we have done the deed, use the mem2reg functionality to promote
616 // all of the new allocas we just created into real SSA registers...
617 //
618 std::vector<AllocaInst*> PromotedAllocas;
619 PromotedAllocas.reserve(PromotedValues.size());
620 for (unsigned i = 0, e = PromotedValues.size(); i != e; ++i)
621 PromotedAllocas.push_back(PromotedValues[i].first);
Chris Lattnera906bac2003-10-05 21:20:13 +0000622 PromoteMemToReg(PromotedAllocas, *DT, *DF, AA->getTargetData());
Chris Lattner45d67d62003-02-24 03:52:32 +0000623}
624
Misha Brukman9b8d3392003-09-11 15:32:37 +0000625/// findPromotableValuesInLoop - Check the current loop for stores to definite
Chris Lattner45d67d62003-02-24 03:52:32 +0000626/// pointers, which are not loaded and stored through may aliases. If these are
627/// found, create an alloca for the value, add it to the PromotedValues list,
628/// and keep track of the mapping from value to alloca...
629///
630void LICM::findPromotableValuesInLoop(
631 std::vector<std::pair<AllocaInst*, Value*> > &PromotedValues,
632 std::map<Value*, AllocaInst*> &ValueToAllocaMap) {
633 Instruction *FnStart = CurLoop->getHeader()->getParent()->begin()->begin();
634
Chris Lattner0592bb72003-03-03 23:32:45 +0000635 // Loop over all of the alias sets in the tracker object...
636 for (AliasSetTracker::iterator I = CurAST->begin(), E = CurAST->end();
637 I != E; ++I) {
638 AliasSet &AS = *I;
639 // We can promote this alias set if it has a store, if it is a "Must" alias
640 // set, and if the pointer is loop invariant.
641 if (!AS.isForwardingAliasSet() && AS.isMod() && AS.isMustAlias() &&
642 isLoopInvariant(AS.begin()->first)) {
643 assert(AS.begin() != AS.end() &&
644 "Must alias set should have at least one pointer element in it!");
645 Value *V = AS.begin()->first;
Chris Lattner45d67d62003-02-24 03:52:32 +0000646
Chris Lattner0592bb72003-03-03 23:32:45 +0000647 // Check that all of the pointers in the alias set have the same type. We
648 // cannot (yet) promote a memory location that is loaded and stored in
649 // different sizes.
650 bool PointerOk = true;
651 for (AliasSet::iterator I = AS.begin(), E = AS.end(); I != E; ++I)
652 if (V->getType() != I->first->getType()) {
653 PointerOk = false;
654 break;
Chris Lattner45d67d62003-02-24 03:52:32 +0000655 }
Chris Lattner0592bb72003-03-03 23:32:45 +0000656
657 if (PointerOk) {
658 const Type *Ty = cast<PointerType>(V->getType())->getElementType();
659 AllocaInst *AI = new AllocaInst(Ty, 0, V->getName()+".tmp", FnStart);
660 PromotedValues.push_back(std::make_pair(AI, V));
661
662 for (AliasSet::iterator I = AS.begin(), E = AS.end(); I != E; ++I)
663 ValueToAllocaMap.insert(std::make_pair(I->first, AI));
664
665 DEBUG(std::cerr << "LICM: Promoting value: " << *V << "\n");
Chris Lattner45d67d62003-02-24 03:52:32 +0000666 }
667 }
668 }
Chris Lattnera51fa882002-08-22 21:39:55 +0000669}