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Chris Lattner18f16092004-04-19 18:07:02 +00001//===-- LoopUnswitch.cpp - Hoist loop-invariant conditionals in loop ------===//
Misha Brukmanfd939082005-04-21 23:48:37 +00002//
Chris Lattner18f16092004-04-19 18:07:02 +00003// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Misha Brukmanfd939082005-04-21 23:48:37 +00007//
Chris Lattner18f16092004-04-19 18:07:02 +00008//===----------------------------------------------------------------------===//
9//
10// This pass transforms loops that contain branches on loop-invariant conditions
11// to have multiple loops. For example, it turns the left into the right code:
12//
13// for (...) if (lic)
14// A for (...)
15// if (lic) A; B; C
16// B else
17// C for (...)
18// A; C
19//
20// This can increase the size of the code exponentially (doubling it every time
21// a loop is unswitched) so we only unswitch if the resultant code will be
22// smaller than a threshold.
23//
24// This pass expects LICM to be run before it to hoist invariant conditions out
25// of the loop, to make the unswitching opportunity obvious.
26//
27//===----------------------------------------------------------------------===//
28
29#define DEBUG_TYPE "loop-unswitch"
30#include "llvm/Transforms/Scalar.h"
31#include "llvm/Constants.h"
Reid Spencerc1030572007-01-19 21:13:56 +000032#include "llvm/DerivedTypes.h"
Chris Lattner18f16092004-04-19 18:07:02 +000033#include "llvm/Function.h"
34#include "llvm/Instructions.h"
Dan Gohman597c5e22009-10-13 20:12:23 +000035#include "llvm/Analysis/InlineCost.h"
Chris Lattner4f1f6f62010-04-20 05:33:18 +000036#include "llvm/Analysis/InstructionSimplify.h"
Chris Lattner18f16092004-04-19 18:07:02 +000037#include "llvm/Analysis/LoopInfo.h"
Devang Patel1bc89362007-03-07 00:26:10 +000038#include "llvm/Analysis/LoopPass.h"
Devang Patelcce624a2007-06-28 00:49:00 +000039#include "llvm/Analysis/Dominators.h"
Cameron Zwarich71132af2011-02-11 06:08:28 +000040#include "llvm/Analysis/ScalarEvolution.h"
Chris Lattner18f16092004-04-19 18:07:02 +000041#include "llvm/Transforms/Utils/Cloning.h"
42#include "llvm/Transforms/Utils/Local.h"
Chris Lattner81be2e92006-02-10 19:08:15 +000043#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000044#include "llvm/ADT/Statistic.h"
Devang Patelfb688d42007-02-26 20:22:50 +000045#include "llvm/ADT/SmallPtrSet.h"
Chris Lattnera3522002008-12-01 06:52:57 +000046#include "llvm/ADT/STLExtras.h"
Chris Lattnere487abb2006-02-09 20:15:48 +000047#include "llvm/Support/CommandLine.h"
Reid Spencer9133fe22007-02-05 23:32:05 +000048#include "llvm/Support/Debug.h"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +000049#include "llvm/Support/raw_ostream.h"
Alkis Evlogimenos20aa4742004-09-03 18:19:51 +000050#include <algorithm>
Chris Lattner2f4b8982006-02-09 19:14:52 +000051#include <set>
Chris Lattner18f16092004-04-19 18:07:02 +000052using namespace llvm;
53
Chris Lattner0e5f4992006-12-19 21:40:18 +000054STATISTIC(NumBranches, "Number of branches unswitched");
55STATISTIC(NumSwitches, "Number of switches unswitched");
56STATISTIC(NumSelects , "Number of selects unswitched");
57STATISTIC(NumTrivial , "Number of unswitches that are trivial");
58STATISTIC(NumSimplify, "Number of simplifications of unswitched code");
Stepan Dyatkovskiy88c5c422012-01-11 08:40:51 +000059STATISTIC(TotalInsts, "Total number of instructions analyzed");
Chris Lattner0e5f4992006-12-19 21:40:18 +000060
Dan Gohmanb24f6c72009-10-13 17:50:43 +000061// The specific value of 50 here was chosen based only on intuition and a
62// few specific examples.
Dan Gohman844731a2008-05-13 00:00:25 +000063static cl::opt<unsigned>
64Threshold("loop-unswitch-threshold", cl::desc("Max loop size to unswitch"),
Stepan Dyatkovskiy88c5c422012-01-11 08:40:51 +000065 cl::init(100), cl::Hidden);
Chris Lattnere487abb2006-02-09 20:15:48 +000066
Dan Gohman844731a2008-05-13 00:00:25 +000067namespace {
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +000068
69 class LUAnalysisCache {
70
71 typedef DenseMap<const SwitchInst*, SmallPtrSet<const Value *,8> >
72 UnswitchedValsMap;
73
74 typedef UnswitchedValsMap::iterator UnswitchedValsIt;
75
76 struct LoopProperties {
77 unsigned CanBeUnswitchedCount;
78 unsigned SizeEstimation;
79 UnswitchedValsMap UnswitchedVals;
80 };
81
82 typedef DenseMap<const Loop*, LoopProperties> LoopPropsMap;
83 typedef LoopPropsMap::iterator LoopPropsMapIt;
84
85 LoopPropsMap LoopsProperties;
86 UnswitchedValsMap* CurLoopInstructions;
87 LoopProperties* CurrentLoopProperties;
88
Stepan Dyatkovskiy5dab2bf2012-01-13 19:27:22 +000089 // Max size of code we can produce on remained iterations.
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +000090 unsigned MaxSize;
91
92 public:
93
94 LUAnalysisCache() :
95 CurLoopInstructions(NULL), CurrentLoopProperties(NULL),
96 MaxSize(Threshold)
97 {}
98
99 // Analyze loop. Check its size, calculate is it possible to unswitch
100 // it. Returns true if we can unswitch this loop.
101 bool countLoop(const Loop* L);
102
103 // Clean all data related to given loop.
104 void forgetLoop(const Loop* L);
105
106 // Mark case value as unswitched.
107 // Since SI instruction can be partly unswitched, in order to avoid
108 // extra unswitching in cloned loops keep track all unswitched values.
109 void setUnswitched(const SwitchInst* SI, const Value* V);
110
111 // Check was this case value unswitched before or not.
112 bool isUnswitched(const SwitchInst* SI, const Value* V);
113
114 // Clone all loop-unswitch related loop properties.
115 // Redistribute unswitching quotas.
116 // Note, that new loop data is stored inside the VMap.
117 void cloneData(const Loop* NewLoop, const Loop* OldLoop,
118 const ValueToValueMapTy& VMap);
119 };
120
Chris Lattner3e8b6632009-09-02 06:11:42 +0000121 class LoopUnswitch : public LoopPass {
Chris Lattner18f16092004-04-19 18:07:02 +0000122 LoopInfo *LI; // Loop information
Devang Patel1bc89362007-03-07 00:26:10 +0000123 LPPassManager *LPM;
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000124
Devang Patel1bc89362007-03-07 00:26:10 +0000125 // LoopProcessWorklist - Used to check if second loop needs processing
126 // after RewriteLoopBodyWithConditionConstant rewrites first loop.
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000127 std::vector<Loop*> LoopProcessWorklist;
Chad Rosiera816bf72011-12-22 21:10:46 +0000128
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000129 LUAnalysisCache BranchesInfo;
Devang Patel743f7e82007-06-06 00:21:03 +0000130
131 bool OptimizeForSize;
Devang Patel6f62af62007-07-30 23:07:10 +0000132 bool redoLoop;
Devang Patel5c4cd0d2007-10-05 22:29:34 +0000133
Devang Patele6962df2008-07-02 01:18:13 +0000134 Loop *currentLoop;
Devang Patel5c4cd0d2007-10-05 22:29:34 +0000135 DominatorTree *DT;
Devang Patele6962df2008-07-02 01:18:13 +0000136 BasicBlock *loopHeader;
137 BasicBlock *loopPreheader;
Devang Patel5c4cd0d2007-10-05 22:29:34 +0000138
Devang Patel1e41f6d2008-07-02 01:44:29 +0000139 // LoopBlocks contains all of the basic blocks of the loop, including the
140 // preheader of the loop, the body of the loop, and the exit blocks of the
141 // loop, in that order.
142 std::vector<BasicBlock*> LoopBlocks;
143 // NewBlocks contained cloned copy of basic blocks from LoopBlocks.
144 std::vector<BasicBlock*> NewBlocks;
Devang Patel77a01132008-07-03 17:37:52 +0000145
Chris Lattner18f16092004-04-19 18:07:02 +0000146 public:
Devang Patel19974732007-05-03 01:11:54 +0000147 static char ID; // Pass ID, replacement for typeid
Dan Gohmanc2bbfc12007-08-01 15:32:29 +0000148 explicit LoopUnswitch(bool Os = false) :
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000149 LoopPass(ID), OptimizeForSize(Os), redoLoop(false),
Chris Lattnerea109232010-08-29 17:23:19 +0000150 currentLoop(NULL), DT(NULL), loopHeader(NULL),
Owen Anderson081c34b2010-10-19 17:21:58 +0000151 loopPreheader(NULL) {
152 initializeLoopUnswitchPass(*PassRegistry::getPassRegistry());
153 }
Devang Patel794fd752007-05-01 21:15:47 +0000154
Devang Patel1bc89362007-03-07 00:26:10 +0000155 bool runOnLoop(Loop *L, LPPassManager &LPM);
Devang Patele6962df2008-07-02 01:18:13 +0000156 bool processCurrentLoop();
Chris Lattner18f16092004-04-19 18:07:02 +0000157
158 /// This transformation requires natural loop information & requires that
Chris Lattnerea109232010-08-29 17:23:19 +0000159 /// loop preheaders be inserted into the CFG.
Chris Lattner18f16092004-04-19 18:07:02 +0000160 ///
161 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
162 AU.addRequiredID(LoopSimplifyID);
Chris Lattnerf4f5f4e2006-02-09 22:15:42 +0000163 AU.addPreservedID(LoopSimplifyID);
Chris Lattner18f16092004-04-19 18:07:02 +0000164 AU.addRequired<LoopInfo>();
165 AU.addPreserved<LoopInfo>();
Owen Anderson6edf3992006-06-12 21:49:21 +0000166 AU.addRequiredID(LCSSAID);
Devang Patel15c260a2007-07-31 08:03:26 +0000167 AU.addPreservedID(LCSSAID);
Devang Patel4be7d292008-07-03 06:48:21 +0000168 AU.addPreserved<DominatorTree>();
Cameron Zwarich71132af2011-02-11 06:08:28 +0000169 AU.addPreserved<ScalarEvolution>();
Chris Lattner18f16092004-04-19 18:07:02 +0000170 }
171
172 private:
Devang Patel15c260a2007-07-31 08:03:26 +0000173
Dan Gohman5c89b522009-09-08 15:45:00 +0000174 virtual void releaseMemory() {
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000175 BranchesInfo.forgetLoop(currentLoop);
Dan Gohman5c89b522009-09-08 15:45:00 +0000176 }
177
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000178 /// RemoveLoopFromWorklist - If the specified loop is on the loop worklist,
179 /// remove it.
180 void RemoveLoopFromWorklist(Loop *L) {
181 std::vector<Loop*>::iterator I = std::find(LoopProcessWorklist.begin(),
182 LoopProcessWorklist.end(), L);
183 if (I != LoopProcessWorklist.end())
184 LoopProcessWorklist.erase(I);
185 }
Chad Rosiera816bf72011-12-22 21:10:46 +0000186
Devang Patele6962df2008-07-02 01:18:13 +0000187 void initLoopData() {
188 loopHeader = currentLoop->getHeader();
189 loopPreheader = currentLoop->getLoopPreheader();
190 }
191
Chris Lattner48a80b02008-04-21 00:25:49 +0000192 /// Split all of the edges from inside the loop to their exit blocks.
193 /// Update the appropriate Phi nodes as we do so.
Devang Patel77a01132008-07-03 17:37:52 +0000194 void SplitExitEdges(Loop *L, const SmallVector<BasicBlock *, 8> &ExitBlocks);
Devang Patel5c4cd0d2007-10-05 22:29:34 +0000195
Devang Patele6962df2008-07-02 01:18:13 +0000196 bool UnswitchIfProfitable(Value *LoopCond, Constant *Val);
Chris Lattnerf4412d82006-02-18 01:27:45 +0000197 void UnswitchTrivialCondition(Loop *L, Value *Cond, Constant *Val,
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000198 BasicBlock *ExitBlock);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000199 void UnswitchNontrivialCondition(Value *LIC, Constant *OnVal, Loop *L);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000200
201 void RewriteLoopBodyWithConditionConstant(Loop *L, Value *LIC,
202 Constant *Val, bool isEqual);
Devang Patelcce624a2007-06-28 00:49:00 +0000203
204 void EmitPreheaderBranchOnCondition(Value *LIC, Constant *Val,
205 BasicBlock *TrueDest,
206 BasicBlock *FalseDest,
207 Instruction *InsertPt);
208
Devang Patel15c260a2007-07-31 08:03:26 +0000209 void SimplifyCode(std::vector<Instruction*> &Worklist, Loop *L);
Chris Lattnerdb410242006-02-18 02:42:34 +0000210 void RemoveBlockIfDead(BasicBlock *BB,
Devang Patel15c260a2007-07-31 08:03:26 +0000211 std::vector<Instruction*> &Worklist, Loop *l);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000212 void RemoveLoopFromHierarchy(Loop *L);
Devang Patele6962df2008-07-02 01:18:13 +0000213 bool IsTrivialUnswitchCondition(Value *Cond, Constant **Val = 0,
214 BasicBlock **LoopExit = 0);
215
Chris Lattner18f16092004-04-19 18:07:02 +0000216 };
Chris Lattner18f16092004-04-19 18:07:02 +0000217}
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000218
219// Analyze loop. Check its size, calculate is it possible to unswitch
220// it. Returns true if we can unswitch this loop.
221bool LUAnalysisCache::countLoop(const Loop* L) {
222
223 std::pair<LoopPropsMapIt, bool> InsertRes =
224 LoopsProperties.insert(std::make_pair(L, LoopProperties()));
225
226 LoopProperties& Props = InsertRes.first->second;
227
228 if (InsertRes.second) {
229 // New loop.
230
231 // Limit the number of instructions to avoid causing significant code
232 // expansion, and the number of basic blocks, to avoid loops with
233 // large numbers of branches which cause loop unswitching to go crazy.
234 // This is a very ad-hoc heuristic.
235
236 // FIXME: This is overly conservative because it does not take into
237 // consideration code simplification opportunities and code that can
238 // be shared by the resultant unswitched loops.
239 CodeMetrics Metrics;
240 for (Loop::block_iterator I = L->block_begin(),
241 E = L->block_end();
242 I != E; ++I)
243 Metrics.analyzeBasicBlock(*I);
244
245 Props.SizeEstimation = std::min(Metrics.NumInsts, Metrics.NumBlocks * 5);
246 Props.CanBeUnswitchedCount = MaxSize / (Props.SizeEstimation);
247 MaxSize -= Props.SizeEstimation * Props.CanBeUnswitchedCount;
248 }
249
250 if (!Props.CanBeUnswitchedCount) {
251 DEBUG(dbgs() << "NOT unswitching loop %"
252 << L->getHeader()->getName() << ", cost too high: "
253 << L->getBlocks().size() << "\n");
254
255 return false;
256 }
257
258 // Be careful. This links are good only before new loop addition.
259 CurrentLoopProperties = &Props;
260 CurLoopInstructions = &Props.UnswitchedVals;
261
262 return true;
263}
264
265// Clean all data related to given loop.
266void LUAnalysisCache::forgetLoop(const Loop* L) {
267
268 LoopPropsMapIt LIt = LoopsProperties.find(L);
269
270 if (LIt != LoopsProperties.end()) {
271 LoopProperties& Props = LIt->second;
272 MaxSize += Props.CanBeUnswitchedCount * Props.SizeEstimation;
273 LoopsProperties.erase(LIt);
274 }
275
276 CurrentLoopProperties = NULL;
277 CurLoopInstructions = NULL;
278}
279
280// Mark case value as unswitched.
281// Since SI instruction can be partly unswitched, in order to avoid
282// extra unswitching in cloned loops keep track all unswitched values.
283void LUAnalysisCache::setUnswitched(const SwitchInst* SI, const Value* V) {
284
285 (*CurLoopInstructions)[SI].insert(V);
286}
287
288// Check was this case value unswitched before or not.
289bool LUAnalysisCache::isUnswitched(const SwitchInst* SI, const Value* V) {
290 return (*CurLoopInstructions)[SI].count(V);
291}
292
293// Clone all loop-unswitch related loop properties.
294// Redistribute unswitching quotas.
295// Note, that new loop data is stored inside the VMap.
296void LUAnalysisCache::cloneData(const Loop* NewLoop, const Loop* OldLoop,
297 const ValueToValueMapTy& VMap) {
298
299 LoopProperties& NewLoopProps = LoopsProperties[NewLoop];
300 LoopProperties& OldLoopProps = *CurrentLoopProperties;
301 UnswitchedValsMap& Insts = OldLoopProps.UnswitchedVals;
302
303 // Reallocate "can-be-unswitched quota"
304
305 --OldLoopProps.CanBeUnswitchedCount;
306 unsigned Quota = OldLoopProps.CanBeUnswitchedCount;
307 NewLoopProps.CanBeUnswitchedCount = Quota / 2;
308 OldLoopProps.CanBeUnswitchedCount = Quota - Quota / 2;
309
310 NewLoopProps.SizeEstimation = OldLoopProps.SizeEstimation;
311
312 // Clone unswitched values info:
313 // for new loop switches we clone info about values that was
314 // already unswitched and has redundant successors.
315 for (UnswitchedValsIt I = Insts.begin(); I != Insts.end(); ++I) {
316 const SwitchInst* OldInst = I->first;
317 Value* NewI = VMap.lookup(OldInst);
318 const SwitchInst* NewInst = cast_or_null<SwitchInst>(NewI);
319 assert(NewInst && "All instructions that are in SrcBB must be in VMap.");
320
321 NewLoopProps.UnswitchedVals[NewInst] = OldLoopProps.UnswitchedVals[OldInst];
322 }
323}
324
Dan Gohman844731a2008-05-13 00:00:25 +0000325char LoopUnswitch::ID = 0;
Owen Anderson2ab36d32010-10-12 19:48:12 +0000326INITIALIZE_PASS_BEGIN(LoopUnswitch, "loop-unswitch", "Unswitch loops",
327 false, false)
328INITIALIZE_PASS_DEPENDENCY(LoopSimplify)
329INITIALIZE_PASS_DEPENDENCY(LoopInfo)
330INITIALIZE_PASS_DEPENDENCY(LCSSA)
Owen Anderson2ab36d32010-10-12 19:48:12 +0000331INITIALIZE_PASS_END(LoopUnswitch, "loop-unswitch", "Unswitch loops",
332 false, false)
Chris Lattner18f16092004-04-19 18:07:02 +0000333
Daniel Dunbar394f0442008-10-22 23:32:42 +0000334Pass *llvm::createLoopUnswitchPass(bool Os) {
Devang Patel743f7e82007-06-06 00:21:03 +0000335 return new LoopUnswitch(Os);
336}
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000337
338/// FindLIVLoopCondition - Cond is a condition that occurs in L. If it is
339/// invariant in the loop, or has an invariant piece, return the invariant.
340/// Otherwise, return null.
341static Value *FindLIVLoopCondition(Value *Cond, Loop *L, bool &Changed) {
Stepan Dyatkovskiy88c5c422012-01-11 08:40:51 +0000342
343 // We started analyze new instruction, increment scanned instructions counter.
344 ++TotalInsts;
345
Chris Lattner3d606bb2010-02-02 02:26:54 +0000346 // We can never unswitch on vector conditions.
Duncan Sands1df98592010-02-16 11:11:14 +0000347 if (Cond->getType()->isVectorTy())
Chris Lattner3d606bb2010-02-02 02:26:54 +0000348 return 0;
349
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000350 // Constants should be folded, not unswitched on!
Dan Gohmana1fcd772008-10-17 00:56:52 +0000351 if (isa<Constant>(Cond)) return 0;
Devang Patel558f1b82007-06-28 00:44:10 +0000352
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000353 // TODO: Handle: br (VARIANT|INVARIANT).
Devang Patel265ca5d2008-11-03 19:38:07 +0000354
Dan Gohman0df6e092009-07-14 01:37:59 +0000355 // Hoist simple values out.
Dan Gohmanbdc017e2009-07-15 01:25:43 +0000356 if (L->makeLoopInvariant(Cond, Changed))
Dan Gohman0df6e092009-07-14 01:37:59 +0000357 return Cond;
Dan Gohman0df6e092009-07-14 01:37:59 +0000358
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000359 if (BinaryOperator *BO = dyn_cast<BinaryOperator>(Cond))
360 if (BO->getOpcode() == Instruction::And ||
361 BO->getOpcode() == Instruction::Or) {
362 // If either the left or right side is invariant, we can unswitch on this,
363 // which will cause the branch to go away in one loop and the condition to
364 // simplify in the other one.
365 if (Value *LHS = FindLIVLoopCondition(BO->getOperand(0), L, Changed))
366 return LHS;
367 if (Value *RHS = FindLIVLoopCondition(BO->getOperand(1), L, Changed))
368 return RHS;
369 }
Devang Patel5c4cd0d2007-10-05 22:29:34 +0000370
371 return 0;
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000372}
373
Devang Patel1bc89362007-03-07 00:26:10 +0000374bool LoopUnswitch::runOnLoop(Loop *L, LPPassManager &LPM_Ref) {
Devang Patel1bc89362007-03-07 00:26:10 +0000375 LI = &getAnalysis<LoopInfo>();
376 LPM = &LPM_Ref;
Duncan Sands1465d612009-01-28 13:14:17 +0000377 DT = getAnalysisIfAvailable<DominatorTree>();
Devang Patele6962df2008-07-02 01:18:13 +0000378 currentLoop = L;
Devang Pateldeafefa2008-09-04 22:43:59 +0000379 Function *F = currentLoop->getHeader()->getParent();
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000380 bool Changed = false;
Devang Patel6f62af62007-07-30 23:07:10 +0000381 do {
Dan Gohmanbbf81d82010-03-10 19:38:49 +0000382 assert(currentLoop->isLCSSAForm(*DT));
Devang Patel6f62af62007-07-30 23:07:10 +0000383 redoLoop = false;
Devang Patele6962df2008-07-02 01:18:13 +0000384 Changed |= processCurrentLoop();
Devang Patel6f62af62007-07-30 23:07:10 +0000385 } while(redoLoop);
386
Devang Pateldeafefa2008-09-04 22:43:59 +0000387 if (Changed) {
388 // FIXME: Reconstruct dom info, because it is not preserved properly.
389 if (DT)
390 DT->runOnFunction(*F);
Devang Pateldeafefa2008-09-04 22:43:59 +0000391 }
Devang Patel6f62af62007-07-30 23:07:10 +0000392 return Changed;
393}
394
Devang Patele6962df2008-07-02 01:18:13 +0000395/// processCurrentLoop - Do actual work and unswitch loop if possible
396/// and profitable.
397bool LoopUnswitch::processCurrentLoop() {
Devang Patel6f62af62007-07-30 23:07:10 +0000398 bool Changed = false;
Stepan Dyatkovskiy88c5c422012-01-11 08:40:51 +0000399
400 initLoopData();
401
402 // If LoopSimplify was unable to form a preheader, don't do any unswitching.
403 if (!loopPreheader)
404 return false;
405
406 LLVMContext &Context = loopHeader->getContext();
407
408 // Probably we reach the quota of branches for this loop. If so
409 // stop unswitching.
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000410 if (!BranchesInfo.countLoop(currentLoop))
Stepan Dyatkovskiy88c5c422012-01-11 08:40:51 +0000411 return false;
Devang Patel6f62af62007-07-30 23:07:10 +0000412
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000413 // Loop over all of the basic blocks in the loop. If we find an interior
414 // block that is branching on a loop-invariant condition, we can unswitch this
415 // loop.
Devang Patele6962df2008-07-02 01:18:13 +0000416 for (Loop::block_iterator I = currentLoop->block_begin(),
Chris Lattner9e185802010-04-05 21:18:32 +0000417 E = currentLoop->block_end(); I != E; ++I) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000418 TerminatorInst *TI = (*I)->getTerminator();
419 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
420 // If this isn't branching on an invariant condition, we can't unswitch
421 // it.
422 if (BI->isConditional()) {
423 // See if this, or some part of it, is loop invariant. If so, we can
424 // unswitch on it if we desire.
Devang Patele6962df2008-07-02 01:18:13 +0000425 Value *LoopCond = FindLIVLoopCondition(BI->getCondition(),
426 currentLoop, Changed);
427 if (LoopCond && UnswitchIfProfitable(LoopCond,
Owen Anderson5defacc2009-07-31 17:39:07 +0000428 ConstantInt::getTrue(Context))) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000429 ++NumBranches;
430 return true;
431 }
432 }
433 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(TI)) {
Devang Patele6962df2008-07-02 01:18:13 +0000434 Value *LoopCond = FindLIVLoopCondition(SI->getCondition(),
435 currentLoop, Changed);
Chad Rosiera816bf72011-12-22 21:10:46 +0000436 unsigned NumCases = SI->getNumCases();
437 if (LoopCond && NumCases > 1) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000438 // Find a value to unswitch on:
439 // FIXME: this should chose the most expensive case!
Nick Lewycky444f2972011-06-03 06:27:15 +0000440 // FIXME: scan for a case with a non-critical edge?
Chad Rosiera816bf72011-12-22 21:10:46 +0000441 Constant *UnswitchVal = NULL;
442
Devang Patel52956922007-02-26 19:31:58 +0000443 // Do not process same value again and again.
Chad Rosiera816bf72011-12-22 21:10:46 +0000444 // At this point we have some cases already unswitched and
445 // some not yet unswitched. Let's find the first not yet unswitched one.
446 for (unsigned i = 1; i < NumCases; ++i) {
447 Constant* UnswitchValCandidate = SI->getCaseValue(i);
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000448 if (!BranchesInfo.isUnswitched(SI, UnswitchValCandidate)) {
Chad Rosiera816bf72011-12-22 21:10:46 +0000449 UnswitchVal = UnswitchValCandidate;
450 break;
451 }
452 }
453
454 if (!UnswitchVal)
Devang Patel52956922007-02-26 19:31:58 +0000455 continue;
Devang Patel52956922007-02-26 19:31:58 +0000456
Devang Patele6962df2008-07-02 01:18:13 +0000457 if (UnswitchIfProfitable(LoopCond, UnswitchVal)) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000458 ++NumSwitches;
459 return true;
460 }
461 }
462 }
463
464 // Scan the instructions to check for unswitchable values.
465 for (BasicBlock::iterator BBI = (*I)->begin(), E = (*I)->end();
466 BBI != E; ++BBI)
467 if (SelectInst *SI = dyn_cast<SelectInst>(BBI)) {
Devang Patele6962df2008-07-02 01:18:13 +0000468 Value *LoopCond = FindLIVLoopCondition(SI->getCondition(),
469 currentLoop, Changed);
470 if (LoopCond && UnswitchIfProfitable(LoopCond,
Owen Anderson5defacc2009-07-31 17:39:07 +0000471 ConstantInt::getTrue(Context))) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000472 ++NumSelects;
473 return true;
474 }
475 }
476 }
Chris Lattner18f16092004-04-19 18:07:02 +0000477 return Changed;
478}
479
Dan Gohmanb0a57212010-09-01 21:46:45 +0000480/// isTrivialLoopExitBlock - Check to see if all paths from BB exit the
481/// loop with no side effects (including infinite loops).
Chris Lattner4e132392006-02-15 22:03:36 +0000482///
Dan Gohmanb0a57212010-09-01 21:46:45 +0000483/// If true, we return true and set ExitBB to the block we
Chris Lattner4e132392006-02-15 22:03:36 +0000484/// exit through.
485///
486static bool isTrivialLoopExitBlockHelper(Loop *L, BasicBlock *BB,
487 BasicBlock *&ExitBB,
488 std::set<BasicBlock*> &Visited) {
Chris Lattner0017d482006-02-17 06:39:56 +0000489 if (!Visited.insert(BB).second) {
Nick Lewycky8a5641d2011-12-23 23:49:25 +0000490 // Already visited. Without more analysis, this could indicate an infinite
491 // loop.
Dan Gohmanb0a57212010-09-01 21:46:45 +0000492 return false;
Chris Lattner0017d482006-02-17 06:39:56 +0000493 } else if (!L->contains(BB)) {
494 // Otherwise, this is a loop exit, this is fine so long as this is the
495 // first exit.
496 if (ExitBB != 0) return false;
497 ExitBB = BB;
Edward O'Callaghan25798432009-11-25 05:38:41 +0000498 return true;
Chris Lattner0017d482006-02-17 06:39:56 +0000499 }
500
501 // Otherwise, this is an unvisited intra-loop node. Check all successors.
Chris Lattner4e132392006-02-15 22:03:36 +0000502 for (succ_iterator SI = succ_begin(BB), E = succ_end(BB); SI != E; ++SI) {
Chris Lattner0017d482006-02-17 06:39:56 +0000503 // Check to see if the successor is a trivial loop exit.
504 if (!isTrivialLoopExitBlockHelper(L, *SI, ExitBB, Visited))
505 return false;
Chris Lattner708e1a52006-02-10 02:30:37 +0000506 }
Chris Lattner4e132392006-02-15 22:03:36 +0000507
508 // Okay, everything after this looks good, check to make sure that this block
509 // doesn't include any side effects.
Chris Lattnera48654e2006-02-15 22:52:05 +0000510 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I)
Duncan Sands7af1c782009-05-06 06:49:50 +0000511 if (I->mayHaveSideEffects())
Chris Lattner4e132392006-02-15 22:03:36 +0000512 return false;
513
514 return true;
Chris Lattner708e1a52006-02-10 02:30:37 +0000515}
516
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000517/// isTrivialLoopExitBlock - Return true if the specified block unconditionally
518/// leads to an exit from the specified loop, and has no side-effects in the
519/// process. If so, return the block that is exited to, otherwise return null.
Chris Lattner4e132392006-02-15 22:03:36 +0000520static BasicBlock *isTrivialLoopExitBlock(Loop *L, BasicBlock *BB) {
521 std::set<BasicBlock*> Visited;
Dan Gohmanb0a57212010-09-01 21:46:45 +0000522 Visited.insert(L->getHeader()); // Branches to header make infinite loops.
Chris Lattner4e132392006-02-15 22:03:36 +0000523 BasicBlock *ExitBB = 0;
524 if (isTrivialLoopExitBlockHelper(L, BB, ExitBB, Visited))
525 return ExitBB;
526 return 0;
527}
Chris Lattner708e1a52006-02-10 02:30:37 +0000528
Chris Lattner4c41d492006-02-10 01:24:09 +0000529/// IsTrivialUnswitchCondition - Check to see if this unswitch condition is
530/// trivial: that is, that the condition controls whether or not the loop does
531/// anything at all. If this is a trivial condition, unswitching produces no
532/// code duplications (equivalently, it produces a simpler loop and a new empty
533/// loop, which gets deleted).
534///
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000535/// If this is a trivial condition, return true, otherwise return false. When
536/// returning true, this sets Cond and Val to the condition that controls the
537/// trivial condition: when Cond dynamically equals Val, the loop is known to
538/// exit. Finally, this sets LoopExit to the BB that the loop exits to when
539/// Cond == Val.
540///
Devang Patele6962df2008-07-02 01:18:13 +0000541bool LoopUnswitch::IsTrivialUnswitchCondition(Value *Cond, Constant **Val,
542 BasicBlock **LoopExit) {
543 BasicBlock *Header = currentLoop->getHeader();
Chris Lattnera48654e2006-02-15 22:52:05 +0000544 TerminatorInst *HeaderTerm = Header->getTerminator();
Owen Andersone922c022009-07-22 00:24:57 +0000545 LLVMContext &Context = Header->getContext();
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000546
Chris Lattnera48654e2006-02-15 22:52:05 +0000547 BasicBlock *LoopExitBB = 0;
548 if (BranchInst *BI = dyn_cast<BranchInst>(HeaderTerm)) {
549 // If the header block doesn't end with a conditional branch on Cond, we
550 // can't handle it.
551 if (!BI->isConditional() || BI->getCondition() != Cond)
552 return false;
Chris Lattner4c41d492006-02-10 01:24:09 +0000553
Dan Gohmanb0a57212010-09-01 21:46:45 +0000554 // Check to see if a successor of the branch is guaranteed to
555 // exit through a unique exit block without having any
Chris Lattnera48654e2006-02-15 22:52:05 +0000556 // side-effects. If so, determine the value of Cond that causes it to do
557 // this.
Devang Patele6962df2008-07-02 01:18:13 +0000558 if ((LoopExitBB = isTrivialLoopExitBlock(currentLoop,
559 BI->getSuccessor(0)))) {
Owen Anderson5defacc2009-07-31 17:39:07 +0000560 if (Val) *Val = ConstantInt::getTrue(Context);
Devang Patele6962df2008-07-02 01:18:13 +0000561 } else if ((LoopExitBB = isTrivialLoopExitBlock(currentLoop,
562 BI->getSuccessor(1)))) {
Owen Anderson5defacc2009-07-31 17:39:07 +0000563 if (Val) *Val = ConstantInt::getFalse(Context);
Chris Lattnera48654e2006-02-15 22:52:05 +0000564 }
565 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(HeaderTerm)) {
566 // If this isn't a switch on Cond, we can't handle it.
567 if (SI->getCondition() != Cond) return false;
568
569 // Check to see if a successor of the switch is guaranteed to go to the
570 // latch block or exit through a one exit block without having any
571 // side-effects. If so, determine the value of Cond that causes it to do
Chad Rosiera816bf72011-12-22 21:10:46 +0000572 // this.
573 // Note that we can't trivially unswitch on the default case or
574 // on already unswitched cases.
575 for (unsigned i = 1, e = SI->getNumSuccessors(); i != e; ++i) {
576 BasicBlock* LoopExitCandidate;
577 if ((LoopExitCandidate = isTrivialLoopExitBlock(currentLoop,
Devang Patele6962df2008-07-02 01:18:13 +0000578 SI->getSuccessor(i)))) {
Chris Lattnera48654e2006-02-15 22:52:05 +0000579 // Okay, we found a trivial case, remember the value that is trivial.
Chad Rosiera816bf72011-12-22 21:10:46 +0000580 ConstantInt* CaseVal = SI->getCaseValue(i);
581
582 // Check that it was not unswitched before, since already unswitched
583 // trivial vals are looks trivial too.
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000584 if (BranchesInfo.isUnswitched(SI, CaseVal))
Chad Rosiera816bf72011-12-22 21:10:46 +0000585 continue;
586 LoopExitBB = LoopExitCandidate;
587 if (Val) *Val = CaseVal;
Chris Lattnera48654e2006-02-15 22:52:05 +0000588 break;
589 }
Chad Rosiera816bf72011-12-22 21:10:46 +0000590 }
Chris Lattner4e132392006-02-15 22:03:36 +0000591 }
592
Chris Lattnerf8bf1162006-02-22 23:55:00 +0000593 // If we didn't find a single unique LoopExit block, or if the loop exit block
594 // contains phi nodes, this isn't trivial.
595 if (!LoopExitBB || isa<PHINode>(LoopExitBB->begin()))
Chris Lattner4e132392006-02-15 22:03:36 +0000596 return false; // Can't handle this.
Chris Lattner4c41d492006-02-10 01:24:09 +0000597
Chris Lattnera48654e2006-02-15 22:52:05 +0000598 if (LoopExit) *LoopExit = LoopExitBB;
Chris Lattner4c41d492006-02-10 01:24:09 +0000599
600 // We already know that nothing uses any scalar values defined inside of this
601 // loop. As such, we just have to check to see if this loop will execute any
602 // side-effecting instructions (e.g. stores, calls, volatile loads) in the
Chris Lattner4e132392006-02-15 22:03:36 +0000603 // part of the loop that the code *would* execute. We already checked the
604 // tail, check the header now.
Chris Lattner4c41d492006-02-10 01:24:09 +0000605 for (BasicBlock::iterator I = Header->begin(), E = Header->end(); I != E; ++I)
Duncan Sands7af1c782009-05-06 06:49:50 +0000606 if (I->mayHaveSideEffects())
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000607 return false;
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000608 return true;
Chris Lattner4c41d492006-02-10 01:24:09 +0000609}
610
Devang Patele6962df2008-07-02 01:18:13 +0000611/// UnswitchIfProfitable - We have found that we can unswitch currentLoop when
Chris Lattnerc2358092006-02-11 00:43:37 +0000612/// LoopCond == Val to simplify the loop. If we decide that this is profitable,
613/// unswitch the loop, reprocess the pieces, then return true.
Chris Lattner3d606bb2010-02-02 02:26:54 +0000614bool LoopUnswitch::UnswitchIfProfitable(Value *LoopCond, Constant *Val) {
Devang Patel10b359c2008-09-04 18:55:13 +0000615
Dan Gohmanf68d0c12009-12-09 22:55:01 +0000616 Function *F = loopHeader->getParent();
617
Evan Cheng02720242010-04-03 02:23:43 +0000618 Constant *CondVal = 0;
619 BasicBlock *ExitBlock = 0;
Devang Patele6962df2008-07-02 01:18:13 +0000620 if (IsTrivialUnswitchCondition(LoopCond, &CondVal, &ExitBlock)) {
Evan Cheng02720242010-04-03 02:23:43 +0000621 // If the condition is trivial, always unswitch. There is no code growth
622 // for this case.
Devang Patele6962df2008-07-02 01:18:13 +0000623 UnswitchTrivialCondition(currentLoop, LoopCond, CondVal, ExitBlock);
Evan Cheng02720242010-04-03 02:23:43 +0000624 return true;
Chris Lattnerc2358092006-02-11 00:43:37 +0000625 }
Devang Patel4be7d292008-07-03 06:48:21 +0000626
Evan Cheng02720242010-04-03 02:23:43 +0000627 // Check to see if it would be profitable to unswitch current loop.
628
629 // Do not do non-trivial unswitch while optimizing for size.
630 if (OptimizeForSize || F->hasFnAttr(Attribute::OptimizeForSize))
631 return false;
632
Evan Cheng02720242010-04-03 02:23:43 +0000633 UnswitchNontrivialCondition(LoopCond, Val, currentLoop);
Chris Lattnerc2358092006-02-11 00:43:37 +0000634 return true;
635}
636
Chris Lattner18f16092004-04-19 18:07:02 +0000637/// CloneLoop - Recursively clone the specified loop and all of its children,
638/// mapping the blocks with the specified map.
Rafael Espindola1ed219a2010-10-13 01:36:30 +0000639static Loop *CloneLoop(Loop *L, Loop *PL, ValueToValueMapTy &VM,
Devang Patel1bc89362007-03-07 00:26:10 +0000640 LoopInfo *LI, LPPassManager *LPM) {
Chris Lattner18f16092004-04-19 18:07:02 +0000641 Loop *New = new Loop();
Devang Patel1bc89362007-03-07 00:26:10 +0000642 LPM->insertLoop(New, PL);
Chris Lattner18f16092004-04-19 18:07:02 +0000643
644 // Add all of the blocks in L to the new loop.
645 for (Loop::block_iterator I = L->block_begin(), E = L->block_end();
646 I != E; ++I)
647 if (LI->getLoopFor(*I) == L)
Owen Andersond735ee82007-11-27 03:43:35 +0000648 New->addBasicBlockToLoop(cast<BasicBlock>(VM[*I]), LI->getBase());
Chris Lattner18f16092004-04-19 18:07:02 +0000649
650 // Add all of the subloops to the new loop.
651 for (Loop::iterator I = L->begin(), E = L->end(); I != E; ++I)
Devang Patel1bc89362007-03-07 00:26:10 +0000652 CloneLoop(*I, New, VM, LI, LPM);
Misha Brukmanfd939082005-04-21 23:48:37 +0000653
Chris Lattner18f16092004-04-19 18:07:02 +0000654 return New;
655}
656
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000657/// EmitPreheaderBranchOnCondition - Emit a conditional branch on two values
658/// if LIC == Val, branch to TrueDst, otherwise branch to FalseDest. Insert the
659/// code immediately before InsertPt.
Devang Patelcce624a2007-06-28 00:49:00 +0000660void LoopUnswitch::EmitPreheaderBranchOnCondition(Value *LIC, Constant *Val,
661 BasicBlock *TrueDest,
662 BasicBlock *FalseDest,
663 Instruction *InsertPt) {
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000664 // Insert a conditional branch on LIC to the two preheaders. The original
665 // code is the true version and the new code is the false version.
666 Value *BranchVal = LIC;
Owen Anderson1d0be152009-08-13 21:58:54 +0000667 if (!isa<ConstantInt>(Val) ||
668 Val->getType() != Type::getInt1Ty(LIC->getContext()))
Benjamin Kramera9390a42011-09-27 20:39:19 +0000669 BranchVal = new ICmpInst(InsertPt, ICmpInst::ICMP_EQ, LIC, Val);
Owen Anderson5defacc2009-07-31 17:39:07 +0000670 else if (Val != ConstantInt::getTrue(Val->getContext()))
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000671 // We want to enter the new loop when the condition is true.
672 std::swap(TrueDest, FalseDest);
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000673
674 // Insert the new branch.
Dan Gohman5c89b522009-09-08 15:45:00 +0000675 BranchInst *BI = BranchInst::Create(TrueDest, FalseDest, BranchVal, InsertPt);
676
677 // If either edge is critical, split it. This helps preserve LoopSimplify
678 // form for enclosing loops.
679 SplitCriticalEdge(BI, 0, this);
680 SplitCriticalEdge(BI, 1, this);
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000681}
682
Chris Lattner4c41d492006-02-10 01:24:09 +0000683/// UnswitchTrivialCondition - Given a loop that has a trivial unswitchable
684/// condition in it (a cond branch from its header block to its latch block,
685/// where the path through the loop that doesn't execute its body has no
686/// side-effects), unswitch it. This doesn't involve any code duplication, just
687/// moving the conditional branch outside of the loop and updating loop info.
688void LoopUnswitch::UnswitchTrivialCondition(Loop *L, Value *Cond,
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000689 Constant *Val,
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000690 BasicBlock *ExitBlock) {
David Greened4c56fb2010-01-05 01:27:04 +0000691 DEBUG(dbgs() << "loop-unswitch: Trivial-Unswitch loop %"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +0000692 << loopHeader->getName() << " [" << L->getBlocks().size()
693 << " blocks] in Function " << L->getHeader()->getParent()->getName()
694 << " on cond: " << *Val << " == " << *Cond << "\n");
Chris Lattner4d1ca942006-02-10 01:36:35 +0000695
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000696 // First step, split the preheader, so that we know that there is a safe place
Devang Patele6962df2008-07-02 01:18:13 +0000697 // to insert the conditional branch. We will change loopPreheader to have a
Chris Lattner4c41d492006-02-10 01:24:09 +0000698 // conditional branch on Cond.
Devang Patele6962df2008-07-02 01:18:13 +0000699 BasicBlock *NewPH = SplitEdge(loopPreheader, loopHeader, this);
Chris Lattner4c41d492006-02-10 01:24:09 +0000700
701 // Now that we have a place to insert the conditional branch, create a place
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000702 // to branch to: this is the exit block out of the loop that we should
703 // short-circuit to.
Chris Lattner4c41d492006-02-10 01:24:09 +0000704
Chris Lattner4e132392006-02-15 22:03:36 +0000705 // Split this block now, so that the loop maintains its exit block, and so
706 // that the jump from the preheader can execute the contents of the exit block
707 // without actually branching to it (the exit block should be dominated by the
708 // loop header, not the preheader).
Chris Lattnerdd3ee6d2006-02-10 02:01:22 +0000709 assert(!L->contains(ExitBlock) && "Exit block is in the loop?");
Devang Patel05c1dc62007-07-06 22:03:47 +0000710 BasicBlock *NewExit = SplitBlock(ExitBlock, ExitBlock->begin(), this);
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000711
Chris Lattner4c41d492006-02-10 01:24:09 +0000712 // Okay, now we have a position to branch from and a position to branch to,
713 // insert the new conditional branch.
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000714 EmitPreheaderBranchOnCondition(Cond, Val, NewExit, NewPH,
Devang Patele6962df2008-07-02 01:18:13 +0000715 loopPreheader->getTerminator());
Devang Patele6962df2008-07-02 01:18:13 +0000716 LPM->deleteSimpleAnalysisValue(loopPreheader->getTerminator(), L);
717 loopPreheader->getTerminator()->eraseFromParent();
Chris Lattner4c41d492006-02-10 01:24:09 +0000718
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000719 // We need to reprocess this loop, it could be unswitched again.
Devang Patel6f62af62007-07-30 23:07:10 +0000720 redoLoop = true;
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000721
Chris Lattner4c41d492006-02-10 01:24:09 +0000722 // Now that we know that the loop is never entered when this condition is a
723 // particular value, rewrite the loop with this info. We know that this will
724 // at least eliminate the old branch.
Chris Lattnerbd28e3f2006-02-22 06:37:14 +0000725 RewriteLoopBodyWithConditionConstant(L, Cond, Val, false);
Chris Lattner3dd4c402006-02-14 01:01:41 +0000726 ++NumTrivial;
Chris Lattner4c41d492006-02-10 01:24:09 +0000727}
728
Chris Lattner48a80b02008-04-21 00:25:49 +0000729/// SplitExitEdges - Split all of the edges from inside the loop to their exit
730/// blocks. Update the appropriate Phi nodes as we do so.
731void LoopUnswitch::SplitExitEdges(Loop *L,
Chris Lattner9e185802010-04-05 21:18:32 +0000732 const SmallVector<BasicBlock *, 8> &ExitBlocks){
Devang Patel5c4cd0d2007-10-05 22:29:34 +0000733
Chris Lattner4c41d492006-02-10 01:24:09 +0000734 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i) {
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000735 BasicBlock *ExitBlock = ExitBlocks[i];
Dan Gohman5c89b522009-09-08 15:45:00 +0000736 SmallVector<BasicBlock *, 4> Preds(pred_begin(ExitBlock),
737 pred_end(ExitBlock));
Bill Wendlingd5520982011-09-27 00:59:31 +0000738
Nick Lewycky444f2972011-06-03 06:27:15 +0000739 // Although SplitBlockPredecessors doesn't preserve loop-simplify in
740 // general, if we call it on all predecessors of all exits then it does.
Bill Wendlingd5520982011-09-27 00:59:31 +0000741 if (!ExitBlock->isLandingPad()) {
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000742 SplitBlockPredecessors(ExitBlock, Preds, ".us-lcssa", this);
Bill Wendlingd5520982011-09-27 00:59:31 +0000743 } else {
744 SmallVector<BasicBlock*, 2> NewBBs;
745 SplitLandingPadPredecessors(ExitBlock, Preds, ".us-lcssa", ".us-lcssa",
746 this, NewBBs);
747 }
Chris Lattner4c41d492006-02-10 01:24:09 +0000748 }
Devang Patelf476e8e2007-10-03 21:16:08 +0000749}
750
Devang Patelc1e26602007-10-03 21:17:43 +0000751/// UnswitchNontrivialCondition - We determined that the loop is profitable
752/// to unswitch when LIC equal Val. Split it into loop versions and test the
753/// condition outside of either loop. Return the loops created as Out1/Out2.
Devang Patelf476e8e2007-10-03 21:16:08 +0000754void LoopUnswitch::UnswitchNontrivialCondition(Value *LIC, Constant *Val,
755 Loop *L) {
Devang Patele6962df2008-07-02 01:18:13 +0000756 Function *F = loopHeader->getParent();
David Greened4c56fb2010-01-05 01:27:04 +0000757 DEBUG(dbgs() << "loop-unswitch: Unswitching loop %"
Daniel Dunbarce63ffb2009-07-25 00:23:56 +0000758 << loopHeader->getName() << " [" << L->getBlocks().size()
759 << " blocks] in Function " << F->getName()
760 << " when '" << *Val << "' == " << *LIC << "\n");
Devang Patelf476e8e2007-10-03 21:16:08 +0000761
Cameron Zwarich71132af2011-02-11 06:08:28 +0000762 if (ScalarEvolution *SE = getAnalysisIfAvailable<ScalarEvolution>())
763 SE->forgetLoop(L);
764
Devang Patel1e41f6d2008-07-02 01:44:29 +0000765 LoopBlocks.clear();
766 NewBlocks.clear();
Devang Patelf476e8e2007-10-03 21:16:08 +0000767
768 // First step, split the preheader and exit blocks, and add these blocks to
769 // the LoopBlocks list.
Devang Patele6962df2008-07-02 01:18:13 +0000770 BasicBlock *NewPreheader = SplitEdge(loopPreheader, loopHeader, this);
Devang Patelf476e8e2007-10-03 21:16:08 +0000771 LoopBlocks.push_back(NewPreheader);
772
773 // We want the loop to come after the preheader, but before the exit blocks.
774 LoopBlocks.insert(LoopBlocks.end(), L->block_begin(), L->block_end());
775
776 SmallVector<BasicBlock*, 8> ExitBlocks;
777 L->getUniqueExitBlocks(ExitBlocks);
778
779 // Split all of the edges from inside the loop to their exit blocks. Update
780 // the appropriate Phi nodes as we do so.
Devang Patel77a01132008-07-03 17:37:52 +0000781 SplitExitEdges(L, ExitBlocks);
Devang Patelf476e8e2007-10-03 21:16:08 +0000782
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000783 // The exit blocks may have been changed due to edge splitting, recompute.
784 ExitBlocks.clear();
Devang Patel4b8f36f2006-08-29 22:29:16 +0000785 L->getUniqueExitBlocks(ExitBlocks);
786
Chris Lattnerb2bc3152006-02-10 23:16:39 +0000787 // Add exit blocks to the loop blocks.
788 LoopBlocks.insert(LoopBlocks.end(), ExitBlocks.begin(), ExitBlocks.end());
Chris Lattner18f16092004-04-19 18:07:02 +0000789
790 // Next step, clone all of the basic blocks that make up the loop (including
791 // the loop preheader and exit blocks), keeping track of the mapping between
792 // the instructions and blocks.
Chris Lattner18f16092004-04-19 18:07:02 +0000793 NewBlocks.reserve(LoopBlocks.size());
Rafael Espindola1ed219a2010-10-13 01:36:30 +0000794 ValueToValueMapTy VMap;
Chris Lattner18f16092004-04-19 18:07:02 +0000795 for (unsigned i = 0, e = LoopBlocks.size(); i != e; ++i) {
Devang Patele9916a32010-06-24 00:33:28 +0000796 BasicBlock *NewBB = CloneBasicBlock(LoopBlocks[i], VMap, ".us", F);
Chad Rosiera816bf72011-12-22 21:10:46 +0000797
Evan Cheng0f1666b2010-04-05 21:16:25 +0000798 NewBlocks.push_back(NewBB);
Devang Patele9916a32010-06-24 00:33:28 +0000799 VMap[LoopBlocks[i]] = NewBB; // Keep the BB mapping.
Evan Cheng0f1666b2010-04-05 21:16:25 +0000800 LPM->cloneBasicBlockSimpleAnalysis(LoopBlocks[i], NewBB, L);
Chris Lattner18f16092004-04-19 18:07:02 +0000801 }
802
803 // Splice the newly inserted blocks into the function right before the
804 // original preheader.
Evan Cheng0f1666b2010-04-05 21:16:25 +0000805 F->getBasicBlockList().splice(NewPreheader, F->getBasicBlockList(),
Chris Lattner18f16092004-04-19 18:07:02 +0000806 NewBlocks[0], F->end());
807
808 // Now we create the new Loop object for the versioned loop.
Devang Patele9916a32010-06-24 00:33:28 +0000809 Loop *NewLoop = CloneLoop(L, L->getParentLoop(), VMap, LI, LPM);
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +0000810
811 // Recalculate unswitching quota, inherit simplified switches info for NewBB,
812 // Probably clone more loop-unswitch related loop properties.
813 BranchesInfo.cloneData(NewLoop, L, VMap);
814
Chris Lattnere8255932006-02-10 23:26:14 +0000815 Loop *ParentLoop = L->getParentLoop();
816 if (ParentLoop) {
Chris Lattner18f16092004-04-19 18:07:02 +0000817 // Make sure to add the cloned preheader and exit blocks to the parent loop
818 // as well.
Owen Andersond735ee82007-11-27 03:43:35 +0000819 ParentLoop->addBasicBlockToLoop(NewBlocks[0], LI->getBase());
Chris Lattnere8255932006-02-10 23:26:14 +0000820 }
Bill Wendlingd5520982011-09-27 00:59:31 +0000821
Chris Lattnere8255932006-02-10 23:26:14 +0000822 for (unsigned i = 0, e = ExitBlocks.size(); i != e; ++i) {
Devang Patele9916a32010-06-24 00:33:28 +0000823 BasicBlock *NewExit = cast<BasicBlock>(VMap[ExitBlocks[i]]);
Chris Lattner25cae0f2006-02-18 00:55:32 +0000824 // The new exit block should be in the same loop as the old one.
825 if (Loop *ExitBBLoop = LI->getLoopFor(ExitBlocks[i]))
Owen Andersond735ee82007-11-27 03:43:35 +0000826 ExitBBLoop->addBasicBlockToLoop(NewExit, LI->getBase());
Chris Lattnere8255932006-02-10 23:26:14 +0000827
828 assert(NewExit->getTerminator()->getNumSuccessors() == 1 &&
829 "Exit block should have been split to have one successor!");
830 BasicBlock *ExitSucc = NewExit->getTerminator()->getSuccessor(0);
Devang Patel77a01132008-07-03 17:37:52 +0000831
Chris Lattnere8255932006-02-10 23:26:14 +0000832 // If the successor of the exit block had PHI nodes, add an entry for
833 // NewExit.
834 PHINode *PN;
Evan Cheng0f1666b2010-04-05 21:16:25 +0000835 for (BasicBlock::iterator I = ExitSucc->begin(); isa<PHINode>(I); ++I) {
836 PN = cast<PHINode>(I);
Chris Lattnere8255932006-02-10 23:26:14 +0000837 Value *V = PN->getIncomingValueForBlock(ExitBlocks[i]);
Rafael Espindola1ed219a2010-10-13 01:36:30 +0000838 ValueToValueMapTy::iterator It = VMap.find(V);
Devang Patele9916a32010-06-24 00:33:28 +0000839 if (It != VMap.end()) V = It->second;
Chris Lattnere8255932006-02-10 23:26:14 +0000840 PN->addIncoming(V, NewExit);
841 }
Bill Wendlingd5520982011-09-27 00:59:31 +0000842
843 if (LandingPadInst *LPad = NewExit->getLandingPadInst()) {
844 PN = PHINode::Create(LPad->getType(), 0, "",
845 ExitSucc->getFirstInsertionPt());
846
847 for (pred_iterator I = pred_begin(ExitSucc), E = pred_end(ExitSucc);
848 I != E; ++I) {
849 BasicBlock *BB = *I;
850 LandingPadInst *LPI = BB->getLandingPadInst();
851 LPI->replaceAllUsesWith(PN);
852 PN->addIncoming(LPI, BB);
853 }
854 }
Chris Lattner18f16092004-04-19 18:07:02 +0000855 }
856
857 // Rewrite the code to refer to itself.
Nick Lewycky280a6e62008-04-25 16:53:59 +0000858 for (unsigned i = 0, e = NewBlocks.size(); i != e; ++i)
859 for (BasicBlock::iterator I = NewBlocks[i]->begin(),
860 E = NewBlocks[i]->end(); I != E; ++I)
Chris Lattnerb5fa5fc2011-01-08 08:15:20 +0000861 RemapInstruction(I, VMap,RF_NoModuleLevelChanges|RF_IgnoreMissingEntries);
Chris Lattner2f4b8982006-02-09 19:14:52 +0000862
Chris Lattner18f16092004-04-19 18:07:02 +0000863 // Rewrite the original preheader to select between versions of the loop.
Devang Patele6962df2008-07-02 01:18:13 +0000864 BranchInst *OldBR = cast<BranchInst>(loopPreheader->getTerminator());
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000865 assert(OldBR->isUnconditional() && OldBR->getSuccessor(0) == LoopBlocks[0] &&
Chris Lattner18f16092004-04-19 18:07:02 +0000866 "Preheader splitting did not work correctly!");
Chris Lattner18f16092004-04-19 18:07:02 +0000867
Chris Lattnerfed5d9d2006-02-15 00:07:43 +0000868 // Emit the new branch that selects between the two versions of this loop.
869 EmitPreheaderBranchOnCondition(LIC, Val, NewBlocks[0], LoopBlocks[0], OldBR);
Devang Patel15c260a2007-07-31 08:03:26 +0000870 LPM->deleteSimpleAnalysisValue(OldBR, L);
Devang Patel9ee49c52007-09-20 23:45:50 +0000871 OldBR->eraseFromParent();
Devang Patel1ff61382007-08-02 15:25:57 +0000872
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000873 LoopProcessWorklist.push_back(NewLoop);
Devang Patel6f62af62007-07-30 23:07:10 +0000874 redoLoop = true;
Chris Lattner18f16092004-04-19 18:07:02 +0000875
Chris Lattnera78130c2010-04-20 05:09:16 +0000876 // Keep a WeakVH holding onto LIC. If the first call to RewriteLoopBody
877 // deletes the instruction (for example by simplifying a PHI that feeds into
878 // the condition that we're unswitching on), we don't rewrite the second
879 // iteration.
880 WeakVH LICHandle(LIC);
881
Chris Lattner18f16092004-04-19 18:07:02 +0000882 // Now we rewrite the original code to know that the condition is true and the
883 // new code to know that the condition is false.
Evan Cheng0f1666b2010-04-05 21:16:25 +0000884 RewriteLoopBodyWithConditionConstant(L, LIC, Val, false);
Devang Patel77a01132008-07-03 17:37:52 +0000885
Chris Lattnera78130c2010-04-20 05:09:16 +0000886 // It's possible that simplifying one loop could cause the other to be
887 // changed to another value or a constant. If its a constant, don't simplify
888 // it.
889 if (!LoopProcessWorklist.empty() && LoopProcessWorklist.back() == NewLoop &&
890 LICHandle && !isa<Constant>(LICHandle))
891 RewriteLoopBodyWithConditionConstant(NewLoop, LICHandle, Val, true);
Chris Lattner18f16092004-04-19 18:07:02 +0000892}
893
Chris Lattner52221f72006-02-17 00:31:07 +0000894/// RemoveFromWorklist - Remove all instances of I from the worklist vector
895/// specified.
896static void RemoveFromWorklist(Instruction *I,
897 std::vector<Instruction*> &Worklist) {
898 std::vector<Instruction*>::iterator WI = std::find(Worklist.begin(),
899 Worklist.end(), I);
900 while (WI != Worklist.end()) {
901 unsigned Offset = WI-Worklist.begin();
902 Worklist.erase(WI);
903 WI = std::find(Worklist.begin()+Offset, Worklist.end(), I);
904 }
905}
906
907/// ReplaceUsesOfWith - When we find that I really equals V, remove I from the
908/// program, replacing all uses with V and update the worklist.
909static void ReplaceUsesOfWith(Instruction *I, Value *V,
Devang Patel15c260a2007-07-31 08:03:26 +0000910 std::vector<Instruction*> &Worklist,
911 Loop *L, LPPassManager *LPM) {
David Greened4c56fb2010-01-05 01:27:04 +0000912 DEBUG(dbgs() << "Replace with '" << *V << "': " << *I);
Chris Lattner52221f72006-02-17 00:31:07 +0000913
914 // Add uses to the worklist, which may be dead now.
915 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
916 if (Instruction *Use = dyn_cast<Instruction>(I->getOperand(i)))
917 Worklist.push_back(Use);
918
919 // Add users to the worklist which may be simplified now.
920 for (Value::use_iterator UI = I->use_begin(), E = I->use_end();
921 UI != E; ++UI)
922 Worklist.push_back(cast<Instruction>(*UI));
Devang Patel15c260a2007-07-31 08:03:26 +0000923 LPM->deleteSimpleAnalysisValue(I, L);
Chris Lattner52221f72006-02-17 00:31:07 +0000924 RemoveFromWorklist(I, Worklist);
Devang Patel9ee49c52007-09-20 23:45:50 +0000925 I->replaceAllUsesWith(V);
926 I->eraseFromParent();
Chris Lattner52221f72006-02-17 00:31:07 +0000927 ++NumSimplify;
928}
929
Chris Lattnerdb410242006-02-18 02:42:34 +0000930/// RemoveBlockIfDead - If the specified block is dead, remove it, update loop
931/// information, and remove any dead successors it has.
932///
933void LoopUnswitch::RemoveBlockIfDead(BasicBlock *BB,
Devang Patel15c260a2007-07-31 08:03:26 +0000934 std::vector<Instruction*> &Worklist,
935 Loop *L) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000936 if (pred_begin(BB) != pred_end(BB)) {
937 // This block isn't dead, since an edge to BB was just removed, see if there
938 // are any easy simplifications we can do now.
939 if (BasicBlock *Pred = BB->getSinglePredecessor()) {
940 // If it has one pred, fold phi nodes in BB.
941 while (isa<PHINode>(BB->begin()))
942 ReplaceUsesOfWith(BB->begin(),
943 cast<PHINode>(BB->begin())->getIncomingValue(0),
Devang Patel15c260a2007-07-31 08:03:26 +0000944 Worklist, L, LPM);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000945
946 // If this is the header of a loop and the only pred is the latch, we now
947 // have an unreachable loop.
948 if (Loop *L = LI->getLoopFor(BB))
Devang Patele6962df2008-07-02 01:18:13 +0000949 if (loopHeader == BB && L->contains(Pred)) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000950 // Remove the branch from the latch to the header block, this makes
951 // the header dead, which will make the latch dead (because the header
952 // dominates the latch).
Devang Patel15c260a2007-07-31 08:03:26 +0000953 LPM->deleteSimpleAnalysisValue(Pred->getTerminator(), L);
Devang Patel9ee49c52007-09-20 23:45:50 +0000954 Pred->getTerminator()->eraseFromParent();
Owen Anderson1d0be152009-08-13 21:58:54 +0000955 new UnreachableInst(BB->getContext(), Pred);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000956
957 // The loop is now broken, remove it from LI.
958 RemoveLoopFromHierarchy(L);
959
960 // Reprocess the header, which now IS dead.
Devang Patel15c260a2007-07-31 08:03:26 +0000961 RemoveBlockIfDead(BB, Worklist, L);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000962 return;
963 }
964
965 // If pred ends in a uncond branch, add uncond branch to worklist so that
966 // the two blocks will get merged.
967 if (BranchInst *BI = dyn_cast<BranchInst>(Pred->getTerminator()))
968 if (BI->isUnconditional())
969 Worklist.push_back(BI);
970 }
971 return;
972 }
Chris Lattner52221f72006-02-17 00:31:07 +0000973
David Greened4c56fb2010-01-05 01:27:04 +0000974 DEBUG(dbgs() << "Nuking dead block: " << *BB);
Chris Lattnerdb410242006-02-18 02:42:34 +0000975
976 // Remove the instructions in the basic block from the worklist.
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000977 for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; ++I) {
Chris Lattnerdb410242006-02-18 02:42:34 +0000978 RemoveFromWorklist(I, Worklist);
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000979
980 // Anything that uses the instructions in this basic block should have their
981 // uses replaced with undefs.
Devang Patel228ebd02009-10-13 22:56:32 +0000982 // If I is not void type then replaceAllUsesWith undef.
983 // This allows ValueHandlers and custom metadata to adjust itself.
Devang Patel9674d152009-10-14 17:29:00 +0000984 if (!I->getType()->isVoidTy())
Devang Patel228ebd02009-10-13 22:56:32 +0000985 I->replaceAllUsesWith(UndefValue::get(I->getType()));
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000986 }
Chris Lattnerdb410242006-02-18 02:42:34 +0000987
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000988 // If this is the edge to the header block for a loop, remove the loop and
989 // promote all subloops.
Chris Lattnerdb410242006-02-18 02:42:34 +0000990 if (Loop *BBLoop = LI->getLoopFor(BB)) {
Evan Cheng424641e2011-05-24 23:12:57 +0000991 if (BBLoop->getLoopLatch() == BB) {
Chris Lattnera6fc94b2006-02-18 07:57:38 +0000992 RemoveLoopFromHierarchy(BBLoop);
Evan Cheng424641e2011-05-24 23:12:57 +0000993 if (currentLoop == BBLoop) {
994 currentLoop = 0;
995 redoLoop = false;
996 }
997 }
Chris Lattnerdb410242006-02-18 02:42:34 +0000998 }
999
1000 // Remove the block from the loop info, which removes it from any loops it
1001 // was in.
1002 LI->removeBlock(BB);
1003
1004
1005 // Remove phi node entries in successors for this block.
1006 TerminatorInst *TI = BB->getTerminator();
Chris Lattnera3522002008-12-01 06:52:57 +00001007 SmallVector<BasicBlock*, 4> Succs;
Chris Lattnerdb410242006-02-18 02:42:34 +00001008 for (unsigned i = 0, e = TI->getNumSuccessors(); i != e; ++i) {
1009 Succs.push_back(TI->getSuccessor(i));
1010 TI->getSuccessor(i)->removePredecessor(BB);
Chris Lattnerf4412d82006-02-18 01:27:45 +00001011 }
1012
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001013 // Unique the successors, remove anything with multiple uses.
Chris Lattnera3522002008-12-01 06:52:57 +00001014 array_pod_sort(Succs.begin(), Succs.end());
Chris Lattnerdb410242006-02-18 02:42:34 +00001015 Succs.erase(std::unique(Succs.begin(), Succs.end()), Succs.end());
1016
1017 // Remove the basic block, including all of the instructions contained in it.
Devang Patel15c260a2007-07-31 08:03:26 +00001018 LPM->deleteSimpleAnalysisValue(BB, L);
Devang Patel9ee49c52007-09-20 23:45:50 +00001019 BB->eraseFromParent();
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001020 // Remove successor blocks here that are not dead, so that we know we only
1021 // have dead blocks in this list. Nondead blocks have a way of becoming dead,
1022 // then getting removed before we revisit them, which is badness.
1023 //
1024 for (unsigned i = 0; i != Succs.size(); ++i)
1025 if (pred_begin(Succs[i]) != pred_end(Succs[i])) {
1026 // One exception is loop headers. If this block was the preheader for a
1027 // loop, then we DO want to visit the loop so the loop gets deleted.
1028 // We know that if the successor is a loop header, that this loop had to
1029 // be the preheader: the case where this was the latch block was handled
1030 // above and headers can only have two predecessors.
1031 if (!LI->isLoopHeader(Succs[i])) {
1032 Succs.erase(Succs.begin()+i);
1033 --i;
1034 }
1035 }
1036
Chris Lattnerdb410242006-02-18 02:42:34 +00001037 for (unsigned i = 0, e = Succs.size(); i != e; ++i)
Devang Patel15c260a2007-07-31 08:03:26 +00001038 RemoveBlockIfDead(Succs[i], Worklist, L);
Chris Lattnerf4412d82006-02-18 01:27:45 +00001039}
Chris Lattner52221f72006-02-17 00:31:07 +00001040
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001041/// RemoveLoopFromHierarchy - We have discovered that the specified loop has
1042/// become unwrapped, either because the backedge was deleted, or because the
1043/// edge into the header was removed. If the edge into the header from the
1044/// latch block was removed, the loop is unwrapped but subloops are still alive,
1045/// so they just reparent loops. If the loops are actually dead, they will be
1046/// removed later.
1047void LoopUnswitch::RemoveLoopFromHierarchy(Loop *L) {
Devang Patel1bc89362007-03-07 00:26:10 +00001048 LPM->deleteLoopFromQueue(L);
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001049 RemoveLoopFromWorklist(L);
1050}
1051
Chris Lattnerc2358092006-02-11 00:43:37 +00001052// RewriteLoopBodyWithConditionConstant - We know either that the value LIC has
1053// the value specified by Val in the specified loop, or we know it does NOT have
1054// that value. Rewrite any uses of LIC or of properties correlated to it.
Chris Lattner18f16092004-04-19 18:07:02 +00001055void LoopUnswitch::RewriteLoopBodyWithConditionConstant(Loop *L, Value *LIC,
Chris Lattnerc2358092006-02-11 00:43:37 +00001056 Constant *Val,
1057 bool IsEqual) {
Chris Lattner4c41d492006-02-10 01:24:09 +00001058 assert(!isa<Constant>(LIC) && "Why are we unswitching on a constant?");
Chris Lattnerc2358092006-02-11 00:43:37 +00001059
Chris Lattner18f16092004-04-19 18:07:02 +00001060 // FIXME: Support correlated properties, like:
1061 // for (...)
1062 // if (li1 < li2)
1063 // ...
1064 // if (li1 > li2)
1065 // ...
Chris Lattnerc2358092006-02-11 00:43:37 +00001066
Chris Lattner708e1a52006-02-10 02:30:37 +00001067 // FOLD boolean conditions (X|LIC), (X&LIC). Fold conditional branches,
1068 // selects, switches.
Chris Lattner52221f72006-02-17 00:31:07 +00001069 std::vector<Instruction*> Worklist;
Owen Andersone922c022009-07-22 00:24:57 +00001070 LLVMContext &Context = Val->getContext();
1071
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001072
Chris Lattner52221f72006-02-17 00:31:07 +00001073 // If we know that LIC == Val, or that LIC == NotVal, just replace uses of LIC
1074 // in the loop with the appropriate one directly.
Owen Anderson1d0be152009-08-13 21:58:54 +00001075 if (IsEqual || (isa<ConstantInt>(Val) &&
Duncan Sandsb0bc6c32010-02-15 16:12:20 +00001076 Val->getType()->isIntegerTy(1))) {
Chris Lattnerbd28e3f2006-02-22 06:37:14 +00001077 Value *Replacement;
1078 if (IsEqual)
1079 Replacement = Val;
1080 else
Owen Anderson1d0be152009-08-13 21:58:54 +00001081 Replacement = ConstantInt::get(Type::getInt1Ty(Val->getContext()),
Reid Spencer579dca12007-01-12 04:24:46 +00001082 !cast<ConstantInt>(Val)->getZExtValue());
Chris Lattner52221f72006-02-17 00:31:07 +00001083
Evan Cheng424641e2011-05-24 23:12:57 +00001084 for (Value::use_iterator UI = LIC->use_begin(), E = LIC->use_end();
1085 UI != E; ++UI) {
Evan Cheng21d378d2011-05-24 23:47:50 +00001086 Instruction *U = dyn_cast<Instruction>(*UI);
1087 if (!U || !L->contains(U))
Evan Cheng424641e2011-05-24 23:12:57 +00001088 continue;
Evan Cheng424641e2011-05-24 23:12:57 +00001089 Worklist.push_back(U);
1090 }
Stepan Dyatkovskiybe4c8442011-11-29 20:34:39 +00001091
1092 for (std::vector<Instruction*>::iterator UI = Worklist.begin();
1093 UI != Worklist.end(); ++UI)
1094 (*UI)->replaceUsesOfWith(LIC, Replacement);
1095
Chris Lattner9e185802010-04-05 21:18:32 +00001096 SimplifyCode(Worklist, L);
1097 return;
1098 }
1099
1100 // Otherwise, we don't know the precise value of LIC, but we do know that it
1101 // is certainly NOT "Val". As such, simplify any uses in the loop that we
1102 // can. This case occurs when we unswitch switch statements.
Evan Cheng424641e2011-05-24 23:12:57 +00001103 for (Value::use_iterator UI = LIC->use_begin(), E = LIC->use_end();
1104 UI != E; ++UI) {
Evan Cheng21d378d2011-05-24 23:47:50 +00001105 Instruction *U = dyn_cast<Instruction>(*UI);
1106 if (!U || !L->contains(U))
Chris Lattner9e185802010-04-05 21:18:32 +00001107 continue;
Chris Lattner52221f72006-02-17 00:31:07 +00001108
Chris Lattner9e185802010-04-05 21:18:32 +00001109 Worklist.push_back(U);
Chris Lattner52221f72006-02-17 00:31:07 +00001110
Chris Lattner9e185802010-04-05 21:18:32 +00001111 // TODO: We could do other simplifications, for example, turning
1112 // 'icmp eq LIC, Val' -> false.
1113
1114 // If we know that LIC is not Val, use this info to simplify code.
1115 SwitchInst *SI = dyn_cast<SwitchInst>(U);
1116 if (SI == 0 || !isa<ConstantInt>(Val)) continue;
1117
1118 unsigned DeadCase = SI->findCaseValue(cast<ConstantInt>(Val));
1119 if (DeadCase == 0) continue; // Default case is live for multiple values.
1120
1121 // Found a dead case value. Don't remove PHI nodes in the
1122 // successor if they become single-entry, those PHI nodes may
1123 // be in the Users list.
Nick Lewycky444f2972011-06-03 06:27:15 +00001124
Evan Cheng424641e2011-05-24 23:12:57 +00001125 BasicBlock *Switch = SI->getParent();
1126 BasicBlock *SISucc = SI->getSuccessor(DeadCase);
1127 BasicBlock *Latch = L->getLoopLatch();
Chad Rosiera816bf72011-12-22 21:10:46 +00001128
Stepan Dyatkovskiya5a1e462012-01-13 19:13:54 +00001129 BranchesInfo.setUnswitched(SI, Val);
Chad Rosiera816bf72011-12-22 21:10:46 +00001130
Nick Lewycky444f2972011-06-03 06:27:15 +00001131 if (!SI->findCaseDest(SISucc)) continue; // Edge is critical.
Evan Cheng237d10d2011-05-25 18:17:13 +00001132 // If the DeadCase successor dominates the loop latch, then the
1133 // transformation isn't safe since it will delete the sole predecessor edge
1134 // to the latch.
1135 if (Latch && DT->dominates(SISucc, Latch))
1136 continue;
Evan Cheng424641e2011-05-24 23:12:57 +00001137
Chris Lattner9e185802010-04-05 21:18:32 +00001138 // FIXME: This is a hack. We need to keep the successor around
1139 // and hooked up so as to preserve the loop structure, because
1140 // trying to update it is complicated. So instead we preserve the
1141 // loop structure and put the block on a dead code path.
Evan Cheng424641e2011-05-24 23:12:57 +00001142 SplitEdge(Switch, SISucc, this);
Chris Lattner9e185802010-04-05 21:18:32 +00001143 // Compute the successors instead of relying on the return value
1144 // of SplitEdge, since it may have split the switch successor
1145 // after PHI nodes.
1146 BasicBlock *NewSISucc = SI->getSuccessor(DeadCase);
1147 BasicBlock *OldSISucc = *succ_begin(NewSISucc);
1148 // Create an "unreachable" destination.
1149 BasicBlock *Abort = BasicBlock::Create(Context, "us-unreachable",
1150 Switch->getParent(),
1151 OldSISucc);
1152 new UnreachableInst(Context, Abort);
1153 // Force the new case destination to branch to the "unreachable"
1154 // block while maintaining a (dead) CFG edge to the old block.
1155 NewSISucc->getTerminator()->eraseFromParent();
1156 BranchInst::Create(Abort, OldSISucc,
1157 ConstantInt::getTrue(Context), NewSISucc);
1158 // Release the PHI operands for this edge.
1159 for (BasicBlock::iterator II = NewSISucc->begin();
1160 PHINode *PN = dyn_cast<PHINode>(II); ++II)
1161 PN->setIncomingValue(PN->getBasicBlockIndex(Switch),
1162 UndefValue::get(PN->getType()));
1163 // Tell the domtree about the new block. We don't fully update the
1164 // domtree here -- instead we force it to do a full recomputation
1165 // after the pass is complete -- but we do need to inform it of
1166 // new blocks.
1167 if (DT)
1168 DT->addNewBlock(Abort, NewSISucc);
Chris Lattner52221f72006-02-17 00:31:07 +00001169 }
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001170
Devang Patel15c260a2007-07-31 08:03:26 +00001171 SimplifyCode(Worklist, L);
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001172}
1173
Mike Stumpc02f0d72009-09-09 17:57:16 +00001174/// SimplifyCode - Okay, now that we have simplified some instructions in the
Chris Lattnera6fc94b2006-02-18 07:57:38 +00001175/// loop, walk over it and constant prop, dce, and fold control flow where
1176/// possible. Note that this is effectively a very simple loop-structure-aware
1177/// optimizer. During processing of this loop, L could very well be deleted, so
1178/// it must not be used.
1179///
1180/// FIXME: When the loop optimizer is more mature, separate this out to a new
1181/// pass.
1182///
Devang Patel15c260a2007-07-31 08:03:26 +00001183void LoopUnswitch::SimplifyCode(std::vector<Instruction*> &Worklist, Loop *L) {
Chris Lattner52221f72006-02-17 00:31:07 +00001184 while (!Worklist.empty()) {
1185 Instruction *I = Worklist.back();
1186 Worklist.pop_back();
Duncan Sands0f827632010-11-23 20:24:21 +00001187
Chris Lattner52221f72006-02-17 00:31:07 +00001188 // Simple DCE.
1189 if (isInstructionTriviallyDead(I)) {
David Greened4c56fb2010-01-05 01:27:04 +00001190 DEBUG(dbgs() << "Remove dead instruction '" << *I);
Chris Lattner52221f72006-02-17 00:31:07 +00001191
1192 // Add uses to the worklist, which may be dead now.
1193 for (unsigned i = 0, e = I->getNumOperands(); i != e; ++i)
1194 if (Instruction *Use = dyn_cast<Instruction>(I->getOperand(i)))
1195 Worklist.push_back(Use);
Devang Patel15c260a2007-07-31 08:03:26 +00001196 LPM->deleteSimpleAnalysisValue(I, L);
Chris Lattner52221f72006-02-17 00:31:07 +00001197 RemoveFromWorklist(I, Worklist);
Devang Patel9ee49c52007-09-20 23:45:50 +00001198 I->eraseFromParent();
Chris Lattner52221f72006-02-17 00:31:07 +00001199 ++NumSimplify;
1200 continue;
1201 }
Duncan Sandsd0c6f3d2010-11-18 19:59:41 +00001202
Chris Lattner4f1f6f62010-04-20 05:33:18 +00001203 // See if instruction simplification can hack this up. This is common for
1204 // things like "select false, X, Y" after unswitching made the condition be
1205 // 'false'.
Chad Rosier618c1db2011-12-01 03:08:23 +00001206 if (Value *V = SimplifyInstruction(I, 0, 0, DT))
Duncan Sandsd0c6f3d2010-11-18 19:59:41 +00001207 if (LI->replacementPreservesLCSSAForm(I, V)) {
1208 ReplaceUsesOfWith(I, V, Worklist, L, LPM);
1209 continue;
1210 }
1211
Chris Lattner52221f72006-02-17 00:31:07 +00001212 // Special case hacks that appear commonly in unswitched code.
Chris Lattner4f1f6f62010-04-20 05:33:18 +00001213 if (BranchInst *BI = dyn_cast<BranchInst>(I)) {
Chris Lattner52221f72006-02-17 00:31:07 +00001214 if (BI->isUnconditional()) {
1215 // If BI's parent is the only pred of the successor, fold the two blocks
1216 // together.
1217 BasicBlock *Pred = BI->getParent();
1218 BasicBlock *Succ = BI->getSuccessor(0);
1219 BasicBlock *SinglePred = Succ->getSinglePredecessor();
1220 if (!SinglePred) continue; // Nothing to do.
1221 assert(SinglePred == Pred && "CFG broken");
1222
David Greened4c56fb2010-01-05 01:27:04 +00001223 DEBUG(dbgs() << "Merging blocks: " << Pred->getName() << " <- "
Daniel Dunbarce63ffb2009-07-25 00:23:56 +00001224 << Succ->getName() << "\n");
Chris Lattner52221f72006-02-17 00:31:07 +00001225
1226 // Resolve any single entry PHI nodes in Succ.
1227 while (PHINode *PN = dyn_cast<PHINode>(Succ->begin()))
Devang Patel15c260a2007-07-31 08:03:26 +00001228 ReplaceUsesOfWith(PN, PN->getIncomingValue(0), Worklist, L, LPM);
Chris Lattner52221f72006-02-17 00:31:07 +00001229
Jay Foad95c3e482011-06-23 09:09:15 +00001230 // If Succ has any successors with PHI nodes, update them to have
1231 // entries coming from Pred instead of Succ.
1232 Succ->replaceAllUsesWith(Pred);
1233
Chris Lattner52221f72006-02-17 00:31:07 +00001234 // Move all of the successor contents from Succ to Pred.
1235 Pred->getInstList().splice(BI, Succ->getInstList(), Succ->begin(),
1236 Succ->end());
Devang Patel15c260a2007-07-31 08:03:26 +00001237 LPM->deleteSimpleAnalysisValue(BI, L);
Devang Patel9ee49c52007-09-20 23:45:50 +00001238 BI->eraseFromParent();
Chris Lattner52221f72006-02-17 00:31:07 +00001239 RemoveFromWorklist(BI, Worklist);
1240
Chris Lattner52221f72006-02-17 00:31:07 +00001241 // Remove Succ from the loop tree.
1242 LI->removeBlock(Succ);
Devang Patel15c260a2007-07-31 08:03:26 +00001243 LPM->deleteSimpleAnalysisValue(Succ, L);
Devang Patel9ee49c52007-09-20 23:45:50 +00001244 Succ->eraseFromParent();
Chris Lattnerf4412d82006-02-18 01:27:45 +00001245 ++NumSimplify;
Chris Lattner4f1f6f62010-04-20 05:33:18 +00001246 continue;
Chris Lattner9e185802010-04-05 21:18:32 +00001247 }
1248
1249 if (ConstantInt *CB = dyn_cast<ConstantInt>(BI->getCondition())){
Chris Lattnerdb410242006-02-18 02:42:34 +00001250 // Conditional branch. Turn it into an unconditional branch, then
1251 // remove dead blocks.
Chris Lattner4f1f6f62010-04-20 05:33:18 +00001252 continue; // FIXME: Enable.
Chris Lattnerbd28e3f2006-02-22 06:37:14 +00001253
David Greened4c56fb2010-01-05 01:27:04 +00001254 DEBUG(dbgs() << "Folded branch: " << *BI);
Reid Spencer579dca12007-01-12 04:24:46 +00001255 BasicBlock *DeadSucc = BI->getSuccessor(CB->getZExtValue());
1256 BasicBlock *LiveSucc = BI->getSuccessor(!CB->getZExtValue());
Chris Lattnerdb410242006-02-18 02:42:34 +00001257 DeadSucc->removePredecessor(BI->getParent(), true);
Gabor Greif051a9502008-04-06 20:25:17 +00001258 Worklist.push_back(BranchInst::Create(LiveSucc, BI));
Devang Patel15c260a2007-07-31 08:03:26 +00001259 LPM->deleteSimpleAnalysisValue(BI, L);
Devang Patel9ee49c52007-09-20 23:45:50 +00001260 BI->eraseFromParent();
Chris Lattnerdb410242006-02-18 02:42:34 +00001261 RemoveFromWorklist(BI, Worklist);
1262 ++NumSimplify;
1263
Devang Patel15c260a2007-07-31 08:03:26 +00001264 RemoveBlockIfDead(DeadSucc, Worklist, L);
Chris Lattner52221f72006-02-17 00:31:07 +00001265 }
Chris Lattner4f1f6f62010-04-20 05:33:18 +00001266 continue;
Chris Lattner52221f72006-02-17 00:31:07 +00001267 }
1268 }
Chris Lattner18f16092004-04-19 18:07:02 +00001269}