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Chris Lattner8383a7b2008-04-20 20:35:01 +00001//===- JumpThreading.cpp - Thread control through conditional blocks ------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Chris Lattner177480b2008-04-20 21:13:06 +000010// This file implements the Jump Threading pass.
Chris Lattner8383a7b2008-04-20 20:35:01 +000011//
12//===----------------------------------------------------------------------===//
13
14#define DEBUG_TYPE "jump-threading"
15#include "llvm/Transforms/Scalar.h"
Chris Lattner177480b2008-04-20 21:13:06 +000016#include "llvm/IntrinsicInst.h"
Owen Anderson1ff50b32009-07-03 00:54:20 +000017#include "llvm/LLVMContext.h"
Chris Lattner8383a7b2008-04-20 20:35:01 +000018#include "llvm/Pass.h"
Owen Andersonf6832bb2011-04-14 21:35:50 +000019#include "llvm/Analysis/ConstantFolding.h"
Chris Lattner9819ef72009-11-09 23:00:14 +000020#include "llvm/Analysis/InstructionSimplify.h"
Chris Lattnercc4d3b22009-11-11 02:08:33 +000021#include "llvm/Analysis/LazyValueInfo.h"
Dan Gohmandd9344f2010-05-28 16:19:17 +000022#include "llvm/Analysis/Loads.h"
Chris Lattner2cc67512008-04-21 02:57:57 +000023#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Chris Lattnerbd3401f2008-04-20 22:39:42 +000024#include "llvm/Transforms/Utils/Local.h"
Chris Lattner433a0db2009-10-10 09:05:58 +000025#include "llvm/Transforms/Utils/SSAUpdater.h"
Chris Lattneref0c6742008-12-01 04:48:07 +000026#include "llvm/Target/TargetData.h"
Chad Rosieraab8e282011-12-02 01:26:24 +000027#include "llvm/Target/TargetLibraryInfo.h"
Mike Stumpfe095f32009-05-04 18:40:41 +000028#include "llvm/ADT/DenseMap.h"
Owen Andersoncb211902010-08-31 07:36:34 +000029#include "llvm/ADT/DenseSet.h"
Mike Stumpfe095f32009-05-04 18:40:41 +000030#include "llvm/ADT/Statistic.h"
31#include "llvm/ADT/STLExtras.h"
32#include "llvm/ADT/SmallPtrSet.h"
33#include "llvm/ADT/SmallSet.h"
Chris Lattner8383a7b2008-04-20 20:35:01 +000034#include "llvm/Support/CommandLine.h"
Chris Lattner177480b2008-04-20 21:13:06 +000035#include "llvm/Support/Debug.h"
Chris Lattner56608462009-12-28 08:20:46 +000036#include "llvm/Support/ValueHandle.h"
Daniel Dunbar93b67e42009-07-26 07:49:05 +000037#include "llvm/Support/raw_ostream.h"
Chris Lattner8383a7b2008-04-20 20:35:01 +000038using namespace llvm;
39
Chris Lattnerbd3401f2008-04-20 22:39:42 +000040STATISTIC(NumThreads, "Number of jumps threaded");
41STATISTIC(NumFolds, "Number of terminators folded");
Chris Lattner78c552e2009-10-11 07:24:57 +000042STATISTIC(NumDupes, "Number of branch blocks duplicated to eliminate phi");
Chris Lattner8383a7b2008-04-20 20:35:01 +000043
Chris Lattner177480b2008-04-20 21:13:06 +000044static cl::opt<unsigned>
Frits van Bommel6f9a8302010-12-05 19:02:47 +000045Threshold("jump-threading-threshold",
Chris Lattner177480b2008-04-20 21:13:06 +000046 cl::desc("Max block size to duplicate for jump threading"),
47 cl::init(6), cl::Hidden);
48
Chris Lattner8383a7b2008-04-20 20:35:01 +000049namespace {
Frits van Bommelea388f22010-12-05 19:06:41 +000050 // These are at global scope so static functions can use them too.
51 typedef SmallVectorImpl<std::pair<Constant*, BasicBlock*> > PredValueInfo;
52 typedef SmallVector<std::pair<Constant*, BasicBlock*>, 8> PredValueInfoTy;
53
Frits van Bommel6033b342010-12-06 23:36:56 +000054 // This is used to keep track of what kind of constant we're currently hoping
55 // to find.
56 enum ConstantPreference {
57 WantInteger,
58 WantBlockAddress
59 };
60
Chris Lattner94019f82008-05-09 04:43:13 +000061 /// This pass performs 'jump threading', which looks at blocks that have
62 /// multiple predecessors and multiple successors. If one or more of the
63 /// predecessors of the block can be proven to always jump to one of the
64 /// successors, we forward the edge from the predecessor to the successor by
65 /// duplicating the contents of this block.
66 ///
67 /// An example of when this can occur is code like this:
68 ///
69 /// if () { ...
70 /// X = 4;
71 /// }
72 /// if (X < 3) {
73 ///
74 /// In this case, the unconditional branch at the end of the first if can be
75 /// revectored to the false side of the second if.
76 ///
Chris Lattner3e8b6632009-09-02 06:11:42 +000077 class JumpThreading : public FunctionPass {
Chris Lattneref0c6742008-12-01 04:48:07 +000078 TargetData *TD;
Chad Rosieraab8e282011-12-02 01:26:24 +000079 TargetLibraryInfo *TLI;
Chris Lattnercc4d3b22009-11-11 02:08:33 +000080 LazyValueInfo *LVI;
Mike Stumpfe095f32009-05-04 18:40:41 +000081#ifdef NDEBUG
82 SmallPtrSet<BasicBlock*, 16> LoopHeaders;
83#else
84 SmallSet<AssertingVH<BasicBlock>, 16> LoopHeaders;
85#endif
Owen Andersoncb211902010-08-31 07:36:34 +000086 DenseSet<std::pair<Value*, BasicBlock*> > RecursionSet;
Frits van Bommel6f9a8302010-12-05 19:02:47 +000087
Owen Anderson9ba35362010-08-31 19:24:27 +000088 // RAII helper for updating the recursion stack.
89 struct RecursionSetRemover {
90 DenseSet<std::pair<Value*, BasicBlock*> > &TheSet;
91 std::pair<Value*, BasicBlock*> ThePair;
Frits van Bommel6f9a8302010-12-05 19:02:47 +000092
Owen Anderson9ba35362010-08-31 19:24:27 +000093 RecursionSetRemover(DenseSet<std::pair<Value*, BasicBlock*> > &S,
94 std::pair<Value*, BasicBlock*> P)
95 : TheSet(S), ThePair(P) { }
Frits van Bommel6f9a8302010-12-05 19:02:47 +000096
Owen Anderson9ba35362010-08-31 19:24:27 +000097 ~RecursionSetRemover() {
98 TheSet.erase(ThePair);
99 }
100 };
Chris Lattner8383a7b2008-04-20 20:35:01 +0000101 public:
102 static char ID; // Pass identification
Owen Anderson081c34b2010-10-19 17:21:58 +0000103 JumpThreading() : FunctionPass(ID) {
104 initializeJumpThreadingPass(*PassRegistry::getPassRegistry());
105 }
Chris Lattner8383a7b2008-04-20 20:35:01 +0000106
107 bool runOnFunction(Function &F);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000108
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000109 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Owen Andersonc809d902010-09-14 20:57:41 +0000110 AU.addRequired<LazyValueInfo>();
111 AU.addPreserved<LazyValueInfo>();
Chad Rosieraab8e282011-12-02 01:26:24 +0000112 AU.addRequired<TargetLibraryInfo>();
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000113 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000114
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000115 void FindLoopHeaders(Function &F);
Chris Lattnerc7bcbf62008-11-27 07:20:04 +0000116 bool ProcessBlock(BasicBlock *BB);
Chris Lattner5729d382009-11-07 08:05:03 +0000117 bool ThreadEdge(BasicBlock *BB, const SmallVectorImpl<BasicBlock*> &PredBBs,
118 BasicBlock *SuccBB);
Chris Lattner78c552e2009-10-11 07:24:57 +0000119 bool DuplicateCondBranchOnPHIIntoPred(BasicBlock *BB,
Chris Lattner2249a0b2010-01-12 02:07:17 +0000120 const SmallVectorImpl<BasicBlock *> &PredBBs);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000121
Chris Lattner5729d382009-11-07 08:05:03 +0000122 bool ComputeValueKnownInPredecessors(Value *V, BasicBlock *BB,
Frits van Bommel6033b342010-12-06 23:36:56 +0000123 PredValueInfo &Result,
124 ConstantPreference Preference);
125 bool ProcessThreadableEdges(Value *Cond, BasicBlock *BB,
126 ConstantPreference Preference);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000127
Chris Lattner77beb472010-01-11 23:41:09 +0000128 bool ProcessBranchOnPHI(PHINode *PN);
Chris Lattner2249a0b2010-01-12 02:07:17 +0000129 bool ProcessBranchOnXOR(BinaryOperator *BO);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000130
Chris Lattner69e067f2008-11-27 05:07:53 +0000131 bool SimplifyPartiallyRedundantLoad(LoadInst *LI);
Chris Lattner8383a7b2008-04-20 20:35:01 +0000132 };
Chris Lattner8383a7b2008-04-20 20:35:01 +0000133}
134
Dan Gohman844731a2008-05-13 00:00:25 +0000135char JumpThreading::ID = 0;
Owen Anderson2ab36d32010-10-12 19:48:12 +0000136INITIALIZE_PASS_BEGIN(JumpThreading, "jump-threading",
137 "Jump Threading", false, false)
138INITIALIZE_PASS_DEPENDENCY(LazyValueInfo)
Chad Rosieraab8e282011-12-02 01:26:24 +0000139INITIALIZE_PASS_DEPENDENCY(TargetLibraryInfo)
Owen Anderson2ab36d32010-10-12 19:48:12 +0000140INITIALIZE_PASS_END(JumpThreading, "jump-threading",
Owen Andersonce665bd2010-10-07 22:25:06 +0000141 "Jump Threading", false, false)
Dan Gohman844731a2008-05-13 00:00:25 +0000142
Chris Lattner8383a7b2008-04-20 20:35:01 +0000143// Public interface to the Jump Threading pass
144FunctionPass *llvm::createJumpThreadingPass() { return new JumpThreading(); }
145
146/// runOnFunction - Top level algorithm.
147///
148bool JumpThreading::runOnFunction(Function &F) {
David Greenefe7fe662010-01-05 01:27:19 +0000149 DEBUG(dbgs() << "Jump threading on function '" << F.getName() << "'\n");
Dan Gohman02a436c2009-07-24 18:13:53 +0000150 TD = getAnalysisIfAvailable<TargetData>();
Chad Rosieraab8e282011-12-02 01:26:24 +0000151 TLI = &getAnalysis<TargetLibraryInfo>();
Owen Andersonc809d902010-09-14 20:57:41 +0000152 LVI = &getAnalysis<LazyValueInfo>();
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000153
Mike Stumpfe095f32009-05-04 18:40:41 +0000154 FindLoopHeaders(F);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000155
Benjamin Kramer66b581e2010-01-07 13:50:07 +0000156 bool Changed, EverChanged = false;
157 do {
158 Changed = false;
Chris Lattner421fa9e2008-12-03 07:48:08 +0000159 for (Function::iterator I = F.begin(), E = F.end(); I != E;) {
160 BasicBlock *BB = I;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000161 // Thread all of the branches we can over this block.
Chris Lattner421fa9e2008-12-03 07:48:08 +0000162 while (ProcessBlock(BB))
Chris Lattnerbd3401f2008-04-20 22:39:42 +0000163 Changed = true;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000164
Chris Lattner421fa9e2008-12-03 07:48:08 +0000165 ++I;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000166
Chris Lattner421fa9e2008-12-03 07:48:08 +0000167 // If the block is trivially dead, zap it. This eliminates the successor
168 // edges which simplifies the CFG.
169 if (pred_begin(BB) == pred_end(BB) &&
Chris Lattner20fa76e2008-12-08 22:44:07 +0000170 BB != &BB->getParent()->getEntryBlock()) {
David Greenefe7fe662010-01-05 01:27:19 +0000171 DEBUG(dbgs() << " JT: Deleting dead block '" << BB->getName()
Chris Lattner78c552e2009-10-11 07:24:57 +0000172 << "' with terminator: " << *BB->getTerminator() << '\n');
Mike Stumpfe095f32009-05-04 18:40:41 +0000173 LoopHeaders.erase(BB);
Owen Andersonc809d902010-09-14 20:57:41 +0000174 LVI->eraseBlock(BB);
Chris Lattner421fa9e2008-12-03 07:48:08 +0000175 DeleteDeadBlock(BB);
176 Changed = true;
Chris Lattnere991b5f2010-12-13 02:38:13 +0000177 continue;
178 }
Owen Andersonf6832bb2011-04-14 21:35:50 +0000179
Chris Lattnere991b5f2010-12-13 02:38:13 +0000180 BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator());
Owen Andersonf6832bb2011-04-14 21:35:50 +0000181
Chris Lattnere991b5f2010-12-13 02:38:13 +0000182 // Can't thread an unconditional jump, but if the block is "almost
183 // empty", we can replace uses of it with uses of the successor and make
184 // this dead.
185 if (BI && BI->isUnconditional() &&
186 BB != &BB->getParent()->getEntryBlock() &&
Chris Lattnerf3183f62009-11-10 21:40:01 +0000187 // If the terminator is the only non-phi instruction, try to nuke it.
Chris Lattnere991b5f2010-12-13 02:38:13 +0000188 BB->getFirstNonPHIOrDbg()->isTerminator()) {
189 // Since TryToSimplifyUncondBranchFromEmptyBlock may delete the
190 // block, we have to make sure it isn't in the LoopHeaders set. We
191 // reinsert afterward if needed.
192 bool ErasedFromLoopHeaders = LoopHeaders.erase(BB);
193 BasicBlock *Succ = BI->getSuccessor(0);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000194
Chris Lattnere991b5f2010-12-13 02:38:13 +0000195 // FIXME: It is always conservatively correct to drop the info
196 // for a block even if it doesn't get erased. This isn't totally
197 // awesome, but it allows us to use AssertingVH to prevent nasty
198 // dangling pointer issues within LazyValueInfo.
199 LVI->eraseBlock(BB);
200 if (TryToSimplifyUncondBranchFromEmptyBlock(BB)) {
201 Changed = true;
202 // If we deleted BB and BB was the header of a loop, then the
203 // successor is now the header of the loop.
204 BB = Succ;
Chris Lattnerf3183f62009-11-10 21:40:01 +0000205 }
Chris Lattnere991b5f2010-12-13 02:38:13 +0000206
207 if (ErasedFromLoopHeaders)
208 LoopHeaders.insert(BB);
Chris Lattner421fa9e2008-12-03 07:48:08 +0000209 }
210 }
Chris Lattnerbd3401f2008-04-20 22:39:42 +0000211 EverChanged |= Changed;
Benjamin Kramer66b581e2010-01-07 13:50:07 +0000212 } while (Changed);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000213
Mike Stumpfe095f32009-05-04 18:40:41 +0000214 LoopHeaders.clear();
Chris Lattnerbd3401f2008-04-20 22:39:42 +0000215 return EverChanged;
Chris Lattner8383a7b2008-04-20 20:35:01 +0000216}
Chris Lattner177480b2008-04-20 21:13:06 +0000217
Chris Lattner78c552e2009-10-11 07:24:57 +0000218/// getJumpThreadDuplicationCost - Return the cost of duplicating this block to
219/// thread across it.
220static unsigned getJumpThreadDuplicationCost(const BasicBlock *BB) {
221 /// Ignore PHI nodes, these will be flattened when duplication happens.
222 BasicBlock::const_iterator I = BB->getFirstNonPHI();
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000223
Chris Lattnerb14b88a2009-11-11 00:21:58 +0000224 // FIXME: THREADING will delete values that are just used to compute the
225 // branch, so they shouldn't count against the duplication cost.
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000226
227
Chris Lattner78c552e2009-10-11 07:24:57 +0000228 // Sum up the cost of each instruction until we get to the terminator. Don't
229 // include the terminator because the copy won't include it.
230 unsigned Size = 0;
231 for (; !isa<TerminatorInst>(I); ++I) {
232 // Debugger intrinsics don't incur code size.
233 if (isa<DbgInfoIntrinsic>(I)) continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000234
Chris Lattner78c552e2009-10-11 07:24:57 +0000235 // If this is a pointer->pointer bitcast, it is free.
Duncan Sands1df98592010-02-16 11:11:14 +0000236 if (isa<BitCastInst>(I) && I->getType()->isPointerTy())
Chris Lattner78c552e2009-10-11 07:24:57 +0000237 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000238
Chris Lattner78c552e2009-10-11 07:24:57 +0000239 // All other instructions count for at least one unit.
240 ++Size;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000241
Chris Lattner78c552e2009-10-11 07:24:57 +0000242 // Calls are more expensive. If they are non-intrinsic calls, we model them
243 // as having cost of 4. If they are a non-vector intrinsic, we model them
244 // as having cost of 2 total, and if they are a vector intrinsic, we model
245 // them as having cost 1.
246 if (const CallInst *CI = dyn_cast<CallInst>(I)) {
247 if (!isa<IntrinsicInst>(CI))
248 Size += 3;
Duncan Sands1df98592010-02-16 11:11:14 +0000249 else if (!CI->getType()->isVectorTy())
Chris Lattner78c552e2009-10-11 07:24:57 +0000250 Size += 1;
251 }
252 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000253
Chris Lattner78c552e2009-10-11 07:24:57 +0000254 // Threading through a switch statement is particularly profitable. If this
255 // block ends in a switch, decrease its cost to make it more likely to happen.
256 if (isa<SwitchInst>(I))
257 Size = Size > 6 ? Size-6 : 0;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000258
Frits van Bommel6033b342010-12-06 23:36:56 +0000259 // The same holds for indirect branches, but slightly more so.
260 if (isa<IndirectBrInst>(I))
261 Size = Size > 8 ? Size-8 : 0;
262
Chris Lattner78c552e2009-10-11 07:24:57 +0000263 return Size;
264}
265
Mike Stumpfe095f32009-05-04 18:40:41 +0000266/// FindLoopHeaders - We do not want jump threading to turn proper loop
267/// structures into irreducible loops. Doing this breaks up the loop nesting
268/// hierarchy and pessimizes later transformations. To prevent this from
269/// happening, we first have to find the loop headers. Here we approximate this
270/// by finding targets of backedges in the CFG.
271///
272/// Note that there definitely are cases when we want to allow threading of
273/// edges across a loop header. For example, threading a jump from outside the
274/// loop (the preheader) to an exit block of the loop is definitely profitable.
275/// It is also almost always profitable to thread backedges from within the loop
276/// to exit blocks, and is often profitable to thread backedges to other blocks
277/// within the loop (forming a nested loop). This simple analysis is not rich
278/// enough to track all of these properties and keep it up-to-date as the CFG
279/// mutates, so we don't allow any of these transformations.
280///
281void JumpThreading::FindLoopHeaders(Function &F) {
282 SmallVector<std::pair<const BasicBlock*,const BasicBlock*>, 32> Edges;
283 FindFunctionBackedges(F, Edges);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000284
Mike Stumpfe095f32009-05-04 18:40:41 +0000285 for (unsigned i = 0, e = Edges.size(); i != e; ++i)
286 LoopHeaders.insert(const_cast<BasicBlock*>(Edges[i].second));
287}
288
Frits van Bommelea388f22010-12-05 19:06:41 +0000289/// getKnownConstant - Helper method to determine if we can thread over a
290/// terminator with the given value as its condition, and if so what value to
Frits van Bommel6033b342010-12-06 23:36:56 +0000291/// use for that. What kind of value this is depends on whether we want an
292/// integer or a block address, but an undef is always accepted.
Frits van Bommelea388f22010-12-05 19:06:41 +0000293/// Returns null if Val is null or not an appropriate constant.
Frits van Bommel6033b342010-12-06 23:36:56 +0000294static Constant *getKnownConstant(Value *Val, ConstantPreference Preference) {
Frits van Bommelea388f22010-12-05 19:06:41 +0000295 if (!Val)
296 return 0;
297
298 // Undef is "known" enough.
299 if (UndefValue *U = dyn_cast<UndefValue>(Val))
300 return U;
301
Frits van Bommel6033b342010-12-06 23:36:56 +0000302 if (Preference == WantBlockAddress)
303 return dyn_cast<BlockAddress>(Val->stripPointerCasts());
304
Frits van Bommelea388f22010-12-05 19:06:41 +0000305 return dyn_cast<ConstantInt>(Val);
306}
307
Chris Lattner5729d382009-11-07 08:05:03 +0000308/// ComputeValueKnownInPredecessors - Given a basic block BB and a value V, see
Frits van Bommel6033b342010-12-06 23:36:56 +0000309/// if we can infer that the value is a known ConstantInt/BlockAddress or undef
310/// in any of our predecessors. If so, return the known list of value and pred
311/// BB in the result vector.
Chris Lattner5729d382009-11-07 08:05:03 +0000312///
Chris Lattner5729d382009-11-07 08:05:03 +0000313/// This returns true if there were any known values.
314///
Chris Lattner5729d382009-11-07 08:05:03 +0000315bool JumpThreading::
Frits van Bommel6033b342010-12-06 23:36:56 +0000316ComputeValueKnownInPredecessors(Value *V, BasicBlock *BB, PredValueInfo &Result,
317 ConstantPreference Preference) {
Owen Anderson9ba35362010-08-31 19:24:27 +0000318 // This method walks up use-def chains recursively. Because of this, we could
319 // get into an infinite loop going around loops in the use-def chain. To
320 // prevent this, keep track of what (value, block) pairs we've already visited
321 // and terminate the search if we loop back to them
Owen Andersoncb211902010-08-31 07:36:34 +0000322 if (!RecursionSet.insert(std::make_pair(V, BB)).second)
323 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000324
Owen Anderson9ba35362010-08-31 19:24:27 +0000325 // An RAII help to remove this pair from the recursion set once the recursion
326 // stack pops back out again.
327 RecursionSetRemover remover(RecursionSet, std::make_pair(V, BB));
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000328
Frits van Bommelea388f22010-12-05 19:06:41 +0000329 // If V is a constant, then it is known in all predecessors.
Frits van Bommel6033b342010-12-06 23:36:56 +0000330 if (Constant *KC = getKnownConstant(V, Preference)) {
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000331 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
Frits van Bommelea388f22010-12-05 19:06:41 +0000332 Result.push_back(std::make_pair(KC, *PI));
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000333
Chris Lattner5729d382009-11-07 08:05:03 +0000334 return true;
335 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000336
Chris Lattner5729d382009-11-07 08:05:03 +0000337 // If V is a non-instruction value, or an instruction in a different block,
338 // then it can't be derived from a PHI.
339 Instruction *I = dyn_cast<Instruction>(V);
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000340 if (I == 0 || I->getParent() != BB) {
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000341
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000342 // Okay, if this is a live-in value, see if it has a known value at the end
343 // of any of our predecessors.
344 //
345 // FIXME: This should be an edge property, not a block end property.
346 /// TODO: Per PR2563, we could infer value range information about a
347 /// predecessor based on its terminator.
348 //
Owen Andersonc809d902010-09-14 20:57:41 +0000349 // FIXME: change this to use the more-rich 'getPredicateOnEdge' method if
350 // "I" is a non-local compare-with-a-constant instruction. This would be
351 // able to handle value inequalities better, for example if the compare is
352 // "X < 4" and "X < 3" is known true but "X < 4" itself is not available.
353 // Perhaps getConstantOnEdge should be smart enough to do this?
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000354
Owen Andersonc809d902010-09-14 20:57:41 +0000355 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
356 BasicBlock *P = *PI;
357 // If the value is known by LazyValueInfo to be a constant in a
358 // predecessor, use that information to try to thread this block.
359 Constant *PredCst = LVI->getConstantOnEdge(V, P, BB);
Frits van Bommel6033b342010-12-06 23:36:56 +0000360 if (Constant *KC = getKnownConstant(PredCst, Preference))
Frits van Bommelea388f22010-12-05 19:06:41 +0000361 Result.push_back(std::make_pair(KC, P));
Owen Andersonc809d902010-09-14 20:57:41 +0000362 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000363
Owen Andersonc809d902010-09-14 20:57:41 +0000364 return !Result.empty();
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000365 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000366
Chris Lattner5729d382009-11-07 08:05:03 +0000367 /// If I is a PHI node, then we know the incoming values for any constants.
368 if (PHINode *PN = dyn_cast<PHINode>(I)) {
369 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
370 Value *InVal = PN->getIncomingValue(i);
Frits van Bommel6033b342010-12-06 23:36:56 +0000371 if (Constant *KC = getKnownConstant(InVal, Preference)) {
Frits van Bommelea388f22010-12-05 19:06:41 +0000372 Result.push_back(std::make_pair(KC, PN->getIncomingBlock(i)));
Owen Andersonc809d902010-09-14 20:57:41 +0000373 } else {
Owen Anderson62efd3b2010-08-26 17:40:24 +0000374 Constant *CI = LVI->getConstantOnEdge(InVal,
375 PN->getIncomingBlock(i), BB);
Frits van Bommel6033b342010-12-06 23:36:56 +0000376 if (Constant *KC = getKnownConstant(CI, Preference))
377 Result.push_back(std::make_pair(KC, PN->getIncomingBlock(i)));
Chris Lattner5729d382009-11-07 08:05:03 +0000378 }
379 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000380
Chris Lattner5729d382009-11-07 08:05:03 +0000381 return !Result.empty();
382 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000383
Frits van Bommelea388f22010-12-05 19:06:41 +0000384 PredValueInfoTy LHSVals, RHSVals;
Chris Lattner5729d382009-11-07 08:05:03 +0000385
386 // Handle some boolean conditions.
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000387 if (I->getType()->getPrimitiveSizeInBits() == 1) {
Frits van Bommel6033b342010-12-06 23:36:56 +0000388 assert(Preference == WantInteger && "One-bit non-integer type?");
Chris Lattner5729d382009-11-07 08:05:03 +0000389 // X | true -> true
390 // X & false -> false
391 if (I->getOpcode() == Instruction::Or ||
392 I->getOpcode() == Instruction::And) {
Frits van Bommel6033b342010-12-06 23:36:56 +0000393 ComputeValueKnownInPredecessors(I->getOperand(0), BB, LHSVals,
394 WantInteger);
395 ComputeValueKnownInPredecessors(I->getOperand(1), BB, RHSVals,
396 WantInteger);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000397
Owen Anderson9ba35362010-08-31 19:24:27 +0000398 if (LHSVals.empty() && RHSVals.empty())
Chris Lattner5729d382009-11-07 08:05:03 +0000399 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000400
Chris Lattner5729d382009-11-07 08:05:03 +0000401 ConstantInt *InterestingVal;
402 if (I->getOpcode() == Instruction::Or)
403 InterestingVal = ConstantInt::getTrue(I->getContext());
404 else
405 InterestingVal = ConstantInt::getFalse(I->getContext());
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000406
Chris Lattner2fa7b48e2010-08-18 03:14:36 +0000407 SmallPtrSet<BasicBlock*, 4> LHSKnownBBs;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000408
Chris Lattner1e452652010-02-11 04:40:44 +0000409 // Scan for the sentinel. If we find an undef, force it to the
410 // interesting value: x|undef -> true and x&undef -> false.
Chris Lattner5729d382009-11-07 08:05:03 +0000411 for (unsigned i = 0, e = LHSVals.size(); i != e; ++i)
Frits van Bommelea388f22010-12-05 19:06:41 +0000412 if (LHSVals[i].first == InterestingVal ||
413 isa<UndefValue>(LHSVals[i].first)) {
Chris Lattner5729d382009-11-07 08:05:03 +0000414 Result.push_back(LHSVals[i]);
Chris Lattner1e452652010-02-11 04:40:44 +0000415 Result.back().first = InterestingVal;
Chris Lattner2fa7b48e2010-08-18 03:14:36 +0000416 LHSKnownBBs.insert(LHSVals[i].second);
Chris Lattner1e452652010-02-11 04:40:44 +0000417 }
Chris Lattner5729d382009-11-07 08:05:03 +0000418 for (unsigned i = 0, e = RHSVals.size(); i != e; ++i)
Frits van Bommelea388f22010-12-05 19:06:41 +0000419 if (RHSVals[i].first == InterestingVal ||
420 isa<UndefValue>(RHSVals[i].first)) {
Chris Lattner0a961442010-07-12 00:47:34 +0000421 // If we already inferred a value for this block on the LHS, don't
422 // re-add it.
Chris Lattner2fa7b48e2010-08-18 03:14:36 +0000423 if (!LHSKnownBBs.count(RHSVals[i].second)) {
Chris Lattner0a961442010-07-12 00:47:34 +0000424 Result.push_back(RHSVals[i]);
425 Result.back().first = InterestingVal;
426 }
Chris Lattner1e452652010-02-11 04:40:44 +0000427 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000428
Chris Lattner5729d382009-11-07 08:05:03 +0000429 return !Result.empty();
430 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000431
Chris Lattner055d0462009-11-10 22:39:16 +0000432 // Handle the NOT form of XOR.
433 if (I->getOpcode() == Instruction::Xor &&
434 isa<ConstantInt>(I->getOperand(1)) &&
435 cast<ConstantInt>(I->getOperand(1))->isOne()) {
Frits van Bommel6033b342010-12-06 23:36:56 +0000436 ComputeValueKnownInPredecessors(I->getOperand(0), BB, Result,
437 WantInteger);
Owen Anderson9ba35362010-08-31 19:24:27 +0000438 if (Result.empty())
Chris Lattner055d0462009-11-10 22:39:16 +0000439 return false;
440
441 // Invert the known values.
442 for (unsigned i = 0, e = Result.size(); i != e; ++i)
Frits van Bommelea388f22010-12-05 19:06:41 +0000443 Result[i].first = ConstantExpr::getNot(Result[i].first);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000444
Chris Lattner055d0462009-11-10 22:39:16 +0000445 return true;
446 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000447
Owen Anderson62efd3b2010-08-26 17:40:24 +0000448 // Try to simplify some other binary operator values.
449 } else if (BinaryOperator *BO = dyn_cast<BinaryOperator>(I)) {
Frits van Bommel6033b342010-12-06 23:36:56 +0000450 assert(Preference != WantBlockAddress
451 && "A binary operator creating a block address?");
Owen Anderson0eb355a2010-08-31 20:26:04 +0000452 if (ConstantInt *CI = dyn_cast<ConstantInt>(BO->getOperand(1))) {
Frits van Bommelea388f22010-12-05 19:06:41 +0000453 PredValueInfoTy LHSVals;
Frits van Bommel6033b342010-12-06 23:36:56 +0000454 ComputeValueKnownInPredecessors(BO->getOperand(0), BB, LHSVals,
455 WantInteger);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000456
Owen Andersoncb211902010-08-31 07:36:34 +0000457 // Try to use constant folding to simplify the binary operator.
458 for (unsigned i = 0, e = LHSVals.size(); i != e; ++i) {
Chris Lattner906a6752010-09-05 20:03:09 +0000459 Constant *V = LHSVals[i].first;
Owen Anderson0eb355a2010-08-31 20:26:04 +0000460 Constant *Folded = ConstantExpr::get(BO->getOpcode(), V, CI);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000461
Frits van Bommel6033b342010-12-06 23:36:56 +0000462 if (Constant *KC = getKnownConstant(Folded, WantInteger))
463 Result.push_back(std::make_pair(KC, LHSVals[i].second));
Owen Andersoncb211902010-08-31 07:36:34 +0000464 }
Owen Anderson62efd3b2010-08-26 17:40:24 +0000465 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000466
Owen Andersoncb211902010-08-31 07:36:34 +0000467 return !Result.empty();
Chris Lattner5729d382009-11-07 08:05:03 +0000468 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000469
Chris Lattner5729d382009-11-07 08:05:03 +0000470 // Handle compare with phi operand, where the PHI is defined in this block.
471 if (CmpInst *Cmp = dyn_cast<CmpInst>(I)) {
Frits van Bommel6033b342010-12-06 23:36:56 +0000472 assert(Preference == WantInteger && "Compares only produce integers");
Chris Lattner5729d382009-11-07 08:05:03 +0000473 PHINode *PN = dyn_cast<PHINode>(Cmp->getOperand(0));
474 if (PN && PN->getParent() == BB) {
475 // We can do this simplification if any comparisons fold to true or false.
476 // See if any do.
477 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
478 BasicBlock *PredBB = PN->getIncomingBlock(i);
479 Value *LHS = PN->getIncomingValue(i);
480 Value *RHS = Cmp->getOperand(1)->DoPHITranslation(BB, PredBB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000481
Chris Lattner2ad00bf2009-11-11 22:31:38 +0000482 Value *Res = SimplifyCmpInst(Cmp->getPredicate(), LHS, RHS, TD);
Chris Lattner66c04c42009-11-12 05:24:05 +0000483 if (Res == 0) {
Owen Andersonc809d902010-09-14 20:57:41 +0000484 if (!isa<Constant>(RHS))
Chris Lattner66c04c42009-11-12 05:24:05 +0000485 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000486
487 LazyValueInfo::Tristate
Chris Lattner66c04c42009-11-12 05:24:05 +0000488 ResT = LVI->getPredicateOnEdge(Cmp->getPredicate(), LHS,
489 cast<Constant>(RHS), PredBB, BB);
490 if (ResT == LazyValueInfo::Unknown)
491 continue;
492 Res = ConstantInt::get(Type::getInt1Ty(LHS->getContext()), ResT);
493 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000494
Frits van Bommel6033b342010-12-06 23:36:56 +0000495 if (Constant *KC = getKnownConstant(Res, WantInteger))
496 Result.push_back(std::make_pair(KC, PredBB));
Chris Lattner5729d382009-11-07 08:05:03 +0000497 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000498
Chris Lattner5729d382009-11-07 08:05:03 +0000499 return !Result.empty();
500 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000501
502
Chris Lattner2ad00bf2009-11-11 22:31:38 +0000503 // If comparing a live-in value against a constant, see if we know the
504 // live-in value on any predecessors.
Owen Andersonc809d902010-09-14 20:57:41 +0000505 if (isa<Constant>(Cmp->getOperand(1)) && Cmp->getType()->isIntegerTy()) {
Owen Anderson62efd3b2010-08-26 17:40:24 +0000506 if (!isa<Instruction>(Cmp->getOperand(0)) ||
Owen Anderson327ca7b2010-08-30 23:22:36 +0000507 cast<Instruction>(Cmp->getOperand(0))->getParent() != BB) {
Owen Anderson62efd3b2010-08-26 17:40:24 +0000508 Constant *RHSCst = cast<Constant>(Cmp->getOperand(1));
Gabor Greifee1f44f2010-07-12 14:10:24 +0000509
Owen Anderson62efd3b2010-08-26 17:40:24 +0000510 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB);PI != E; ++PI){
511 BasicBlock *P = *PI;
512 // If the value is known by LazyValueInfo to be a constant in a
513 // predecessor, use that information to try to thread this block.
514 LazyValueInfo::Tristate Res =
515 LVI->getPredicateOnEdge(Cmp->getPredicate(), Cmp->getOperand(0),
516 RHSCst, P, BB);
517 if (Res == LazyValueInfo::Unknown)
518 continue;
Chris Lattner0e0ff292009-11-12 04:37:50 +0000519
Owen Anderson62efd3b2010-08-26 17:40:24 +0000520 Constant *ResC = ConstantInt::get(Cmp->getType(), Res);
Frits van Bommelea388f22010-12-05 19:06:41 +0000521 Result.push_back(std::make_pair(ResC, P));
Owen Anderson62efd3b2010-08-26 17:40:24 +0000522 }
523
524 return !Result.empty();
Chris Lattner2ad00bf2009-11-11 22:31:38 +0000525 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000526
Owen Andersoncb211902010-08-31 07:36:34 +0000527 // Try to find a constant value for the LHS of a comparison,
Owen Anderson62efd3b2010-08-26 17:40:24 +0000528 // and evaluate it statically if we can.
Owen Anderson327ca7b2010-08-30 23:22:36 +0000529 if (Constant *CmpConst = dyn_cast<Constant>(Cmp->getOperand(1))) {
Frits van Bommelea388f22010-12-05 19:06:41 +0000530 PredValueInfoTy LHSVals;
Frits van Bommel6033b342010-12-06 23:36:56 +0000531 ComputeValueKnownInPredecessors(I->getOperand(0), BB, LHSVals,
532 WantInteger);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000533
Owen Anderson62efd3b2010-08-26 17:40:24 +0000534 for (unsigned i = 0, e = LHSVals.size(); i != e; ++i) {
Chris Lattner906a6752010-09-05 20:03:09 +0000535 Constant *V = LHSVals[i].first;
Owen Anderson0eb355a2010-08-31 20:26:04 +0000536 Constant *Folded = ConstantExpr::getCompare(Cmp->getPredicate(),
537 V, CmpConst);
Frits van Bommel6033b342010-12-06 23:36:56 +0000538 if (Constant *KC = getKnownConstant(Folded, WantInteger))
539 Result.push_back(std::make_pair(KC, LHSVals[i].second));
Owen Anderson62efd3b2010-08-26 17:40:24 +0000540 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000541
Owen Anderson62efd3b2010-08-26 17:40:24 +0000542 return !Result.empty();
543 }
Chris Lattner2ad00bf2009-11-11 22:31:38 +0000544 }
Chris Lattner5729d382009-11-07 08:05:03 +0000545 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000546
Frits van Bommel26e097c2010-12-15 09:51:20 +0000547 if (SelectInst *SI = dyn_cast<SelectInst>(I)) {
548 // Handle select instructions where at least one operand is a known constant
549 // and we can figure out the condition value for any predecessor block.
550 Constant *TrueVal = getKnownConstant(SI->getTrueValue(), Preference);
551 Constant *FalseVal = getKnownConstant(SI->getFalseValue(), Preference);
552 PredValueInfoTy Conds;
553 if ((TrueVal || FalseVal) &&
554 ComputeValueKnownInPredecessors(SI->getCondition(), BB, Conds,
555 WantInteger)) {
556 for (unsigned i = 0, e = Conds.size(); i != e; ++i) {
557 Constant *Cond = Conds[i].first;
558
559 // Figure out what value to use for the condition.
560 bool KnownCond;
561 if (ConstantInt *CI = dyn_cast<ConstantInt>(Cond)) {
562 // A known boolean.
563 KnownCond = CI->isOne();
564 } else {
565 assert(isa<UndefValue>(Cond) && "Unexpected condition value");
566 // Either operand will do, so be sure to pick the one that's a known
567 // constant.
568 // FIXME: Do this more cleverly if both values are known constants?
569 KnownCond = (TrueVal != 0);
570 }
571
572 // See if the select has a known constant value for this predecessor.
573 if (Constant *Val = KnownCond ? TrueVal : FalseVal)
574 Result.push_back(std::make_pair(Val, Conds[i].second));
575 }
576
577 return !Result.empty();
578 }
579 }
580
Owen Andersonc809d902010-09-14 20:57:41 +0000581 // If all else fails, see if LVI can figure out a constant value for us.
582 Constant *CI = LVI->getConstant(V, BB);
Frits van Bommel6033b342010-12-06 23:36:56 +0000583 if (Constant *KC = getKnownConstant(CI, Preference)) {
Owen Andersonc809d902010-09-14 20:57:41 +0000584 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI)
Frits van Bommelea388f22010-12-05 19:06:41 +0000585 Result.push_back(std::make_pair(KC, *PI));
Owen Anderson62efd3b2010-08-26 17:40:24 +0000586 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000587
Owen Andersonc809d902010-09-14 20:57:41 +0000588 return !Result.empty();
Chris Lattner5729d382009-11-07 08:05:03 +0000589}
590
591
Chris Lattner6bf77502008-04-22 07:05:46 +0000592
Chris Lattnere33583b2009-10-11 04:18:15 +0000593/// GetBestDestForBranchOnUndef - If we determine that the specified block ends
594/// in an undefined jump, decide which block is best to revector to.
595///
596/// Since we can pick an arbitrary destination, we pick the successor with the
597/// fewest predecessors. This should reduce the in-degree of the others.
598///
599static unsigned GetBestDestForJumpOnUndef(BasicBlock *BB) {
600 TerminatorInst *BBTerm = BB->getTerminator();
601 unsigned MinSucc = 0;
602 BasicBlock *TestBB = BBTerm->getSuccessor(MinSucc);
603 // Compute the successor with the minimum number of predecessors.
604 unsigned MinNumPreds = std::distance(pred_begin(TestBB), pred_end(TestBB));
605 for (unsigned i = 1, e = BBTerm->getNumSuccessors(); i != e; ++i) {
606 TestBB = BBTerm->getSuccessor(i);
607 unsigned NumPreds = std::distance(pred_begin(TestBB), pred_end(TestBB));
Jakub Staszakf227b502011-06-27 21:51:12 +0000608 if (NumPreds < MinNumPreds) {
Chris Lattnere33583b2009-10-11 04:18:15 +0000609 MinSucc = i;
Jakub Staszakf227b502011-06-27 21:51:12 +0000610 MinNumPreds = NumPreds;
611 }
Chris Lattnere33583b2009-10-11 04:18:15 +0000612 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000613
Chris Lattnere33583b2009-10-11 04:18:15 +0000614 return MinSucc;
615}
616
Chris Lattner78f7a252011-02-18 04:43:06 +0000617static bool hasAddressTakenAndUsed(BasicBlock *BB) {
618 if (!BB->hasAddressTaken()) return false;
Owen Andersonf6832bb2011-04-14 21:35:50 +0000619
Chris Lattner78f7a252011-02-18 04:43:06 +0000620 // If the block has its address taken, it may be a tree of dead constants
621 // hanging off of it. These shouldn't keep the block alive.
622 BlockAddress *BA = BlockAddress::get(BB);
623 BA->removeDeadConstantUsers();
624 return !BA->use_empty();
625}
626
Chris Lattnerc7bcbf62008-11-27 07:20:04 +0000627/// ProcessBlock - If there are any predecessors whose control can be threaded
Chris Lattner177480b2008-04-20 21:13:06 +0000628/// through to a successor, transform them now.
Chris Lattnerc7bcbf62008-11-27 07:20:04 +0000629bool JumpThreading::ProcessBlock(BasicBlock *BB) {
Chris Lattner8231fd12010-01-23 18:56:07 +0000630 // If the block is trivially dead, just return and let the caller nuke it.
631 // This simplifies other transformations.
632 if (pred_begin(BB) == pred_end(BB) &&
633 BB != &BB->getParent()->getEntryBlock())
634 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000635
Chris Lattner69e067f2008-11-27 05:07:53 +0000636 // If this block has a single predecessor, and if that pred has a single
637 // successor, merge the blocks. This encourages recursive jump threading
638 // because now the condition in this block can be threaded through
639 // predecessors of our predecessor block.
Chris Lattner5729d382009-11-07 08:05:03 +0000640 if (BasicBlock *SinglePred = BB->getSinglePredecessor()) {
Chris Lattnerf5102a02008-11-28 19:54:49 +0000641 if (SinglePred->getTerminator()->getNumSuccessors() == 1 &&
Chris Lattner78f7a252011-02-18 04:43:06 +0000642 SinglePred != BB && !hasAddressTakenAndUsed(BB)) {
Mike Stumpfe095f32009-05-04 18:40:41 +0000643 // If SinglePred was a loop header, BB becomes one.
644 if (LoopHeaders.erase(SinglePred))
645 LoopHeaders.insert(BB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000646
Chris Lattner3d86d242008-11-27 19:25:19 +0000647 // Remember if SinglePred was the entry block of the function. If so, we
648 // will need to move BB back to the entry position.
649 bool isEntry = SinglePred == &SinglePred->getParent()->getEntryBlock();
Owen Andersonc809d902010-09-14 20:57:41 +0000650 LVI->eraseBlock(SinglePred);
Chris Lattner69e067f2008-11-27 05:07:53 +0000651 MergeBasicBlockIntoOnlyPred(BB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000652
Chris Lattner3d86d242008-11-27 19:25:19 +0000653 if (isEntry && BB != &BB->getParent()->getEntryBlock())
654 BB->moveBefore(&BB->getParent()->getEntryBlock());
Chris Lattner69e067f2008-11-27 05:07:53 +0000655 return true;
656 }
Chris Lattner5729d382009-11-07 08:05:03 +0000657 }
658
Frits van Bommel6033b342010-12-06 23:36:56 +0000659 // What kind of constant we're looking for.
660 ConstantPreference Preference = WantInteger;
661
662 // Look to see if the terminator is a conditional branch, switch or indirect
663 // branch, if not we can't thread it.
Chris Lattner177480b2008-04-20 21:13:06 +0000664 Value *Condition;
Frits van Bommel6033b342010-12-06 23:36:56 +0000665 Instruction *Terminator = BB->getTerminator();
666 if (BranchInst *BI = dyn_cast<BranchInst>(Terminator)) {
Chris Lattnerbd3401f2008-04-20 22:39:42 +0000667 // Can't thread an unconditional jump.
668 if (BI->isUnconditional()) return false;
Chris Lattner177480b2008-04-20 21:13:06 +0000669 Condition = BI->getCondition();
Frits van Bommel6033b342010-12-06 23:36:56 +0000670 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(Terminator)) {
Chris Lattner177480b2008-04-20 21:13:06 +0000671 Condition = SI->getCondition();
Frits van Bommel6033b342010-12-06 23:36:56 +0000672 } else if (IndirectBrInst *IB = dyn_cast<IndirectBrInst>(Terminator)) {
Richard Osbornedd2fb6c2012-07-20 10:36:17 +0000673 // Can't thread indirect branch with no successors.
674 if (IB->getNumSuccessors() == 0) return false;
Frits van Bommel6033b342010-12-06 23:36:56 +0000675 Condition = IB->getAddress()->stripPointerCasts();
676 Preference = WantBlockAddress;
677 } else {
Chris Lattner177480b2008-04-20 21:13:06 +0000678 return false; // Must be an invoke.
Frits van Bommel6033b342010-12-06 23:36:56 +0000679 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000680
Owen Andersonf6832bb2011-04-14 21:35:50 +0000681 // Run constant folding to see if we can reduce the condition to a simple
682 // constant.
683 if (Instruction *I = dyn_cast<Instruction>(Condition)) {
Chad Rosieraab8e282011-12-02 01:26:24 +0000684 Value *SimpleVal = ConstantFoldInstruction(I, TD, TLI);
Owen Andersonf6832bb2011-04-14 21:35:50 +0000685 if (SimpleVal) {
686 I->replaceAllUsesWith(SimpleVal);
687 I->eraseFromParent();
688 Condition = SimpleVal;
689 }
690 }
691
Chris Lattner421fa9e2008-12-03 07:48:08 +0000692 // If the terminator is branching on an undef, we can pick any of the
Chris Lattnere33583b2009-10-11 04:18:15 +0000693 // successors to branch to. Let GetBestDestForJumpOnUndef decide.
Chris Lattner421fa9e2008-12-03 07:48:08 +0000694 if (isa<UndefValue>(Condition)) {
Chris Lattnere33583b2009-10-11 04:18:15 +0000695 unsigned BestSucc = GetBestDestForJumpOnUndef(BB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000696
Chris Lattner421fa9e2008-12-03 07:48:08 +0000697 // Fold the branch/switch.
Chris Lattnere33583b2009-10-11 04:18:15 +0000698 TerminatorInst *BBTerm = BB->getTerminator();
Chris Lattner421fa9e2008-12-03 07:48:08 +0000699 for (unsigned i = 0, e = BBTerm->getNumSuccessors(); i != e; ++i) {
Chris Lattnere33583b2009-10-11 04:18:15 +0000700 if (i == BestSucc) continue;
Owen Anderson36c4deb2010-09-29 20:34:41 +0000701 BBTerm->getSuccessor(i)->removePredecessor(BB, true);
Chris Lattner421fa9e2008-12-03 07:48:08 +0000702 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000703
David Greenefe7fe662010-01-05 01:27:19 +0000704 DEBUG(dbgs() << " In block '" << BB->getName()
Chris Lattner78c552e2009-10-11 07:24:57 +0000705 << "' folding undef terminator: " << *BBTerm << '\n');
Chris Lattnere33583b2009-10-11 04:18:15 +0000706 BranchInst::Create(BBTerm->getSuccessor(BestSucc), BBTerm);
Chris Lattner421fa9e2008-12-03 07:48:08 +0000707 BBTerm->eraseFromParent();
708 return true;
709 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000710
Frits van Bommelea388f22010-12-05 19:06:41 +0000711 // If the terminator of this block is branching on a constant, simplify the
712 // terminator to an unconditional branch. This can occur due to threading in
713 // other blocks.
Frits van Bommel6033b342010-12-06 23:36:56 +0000714 if (getKnownConstant(Condition, Preference)) {
Frits van Bommelea388f22010-12-05 19:06:41 +0000715 DEBUG(dbgs() << " In block '" << BB->getName()
716 << "' folding terminator: " << *BB->getTerminator() << '\n');
717 ++NumFolds;
Frits van Bommel5649ba72011-05-22 16:24:18 +0000718 ConstantFoldTerminator(BB, true);
Frits van Bommelea388f22010-12-05 19:06:41 +0000719 return true;
720 }
721
Chris Lattner421fa9e2008-12-03 07:48:08 +0000722 Instruction *CondInst = dyn_cast<Instruction>(Condition);
723
Chris Lattner421fa9e2008-12-03 07:48:08 +0000724 // All the rest of our checks depend on the condition being an instruction.
Chris Lattner87e9f592009-11-12 01:41:34 +0000725 if (CondInst == 0) {
726 // FIXME: Unify this with code below.
Frits van Bommel6033b342010-12-06 23:36:56 +0000727 if (ProcessThreadableEdges(Condition, BB, Preference))
Chris Lattner87e9f592009-11-12 01:41:34 +0000728 return true;
Chris Lattner421fa9e2008-12-03 07:48:08 +0000729 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000730 }
731
732
Nick Lewycky9683f182009-06-19 04:56:29 +0000733 if (CmpInst *CondCmp = dyn_cast<CmpInst>(CondInst)) {
Owen Anderson660cab32010-08-27 17:12:29 +0000734 // For a comparison where the LHS is outside this block, it's possible
Owen Andersonfc2fb172010-08-27 20:32:56 +0000735 // that we've branched on it before. Used LVI to see if we can simplify
Owen Anderson660cab32010-08-27 17:12:29 +0000736 // the branch based on that.
737 BranchInst *CondBr = dyn_cast<BranchInst>(BB->getTerminator());
738 Constant *CondConst = dyn_cast<Constant>(CondCmp->getOperand(1));
Owen Andersonc1bdac62010-08-31 18:48:48 +0000739 pred_iterator PI = pred_begin(BB), PE = pred_end(BB);
Owen Andersonc809d902010-09-14 20:57:41 +0000740 if (CondBr && CondConst && CondBr->isConditional() && PI != PE &&
Owen Anderson660cab32010-08-27 17:12:29 +0000741 (!isa<Instruction>(CondCmp->getOperand(0)) ||
742 cast<Instruction>(CondCmp->getOperand(0))->getParent() != BB)) {
743 // For predecessor edge, determine if the comparison is true or false
744 // on that edge. If they're all true or all false, we can simplify the
745 // branch.
746 // FIXME: We could handle mixed true/false by duplicating code.
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000747 LazyValueInfo::Tristate Baseline =
Owen Andersonc1bdac62010-08-31 18:48:48 +0000748 LVI->getPredicateOnEdge(CondCmp->getPredicate(), CondCmp->getOperand(0),
749 CondConst, *PI, BB);
750 if (Baseline != LazyValueInfo::Unknown) {
751 // Check that all remaining incoming values match the first one.
752 while (++PI != PE) {
Chris Lattnerbdabacd2010-09-05 20:10:47 +0000753 LazyValueInfo::Tristate Ret =
754 LVI->getPredicateOnEdge(CondCmp->getPredicate(),
755 CondCmp->getOperand(0), CondConst, *PI, BB);
Owen Andersonc1bdac62010-08-31 18:48:48 +0000756 if (Ret != Baseline) break;
757 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000758
Owen Andersonc1bdac62010-08-31 18:48:48 +0000759 // If we terminated early, then one of the values didn't match.
760 if (PI == PE) {
761 unsigned ToRemove = Baseline == LazyValueInfo::True ? 1 : 0;
762 unsigned ToKeep = Baseline == LazyValueInfo::True ? 0 : 1;
Owen Anderson36c4deb2010-09-29 20:34:41 +0000763 CondBr->getSuccessor(ToRemove)->removePredecessor(BB, true);
Owen Andersonc1bdac62010-08-31 18:48:48 +0000764 BranchInst::Create(CondBr->getSuccessor(ToKeep), CondBr);
765 CondBr->eraseFromParent();
766 return true;
767 }
Owen Anderson660cab32010-08-27 17:12:29 +0000768 }
769 }
Nick Lewycky9683f182009-06-19 04:56:29 +0000770 }
Chris Lattner69e067f2008-11-27 05:07:53 +0000771
772 // Check for some cases that are worth simplifying. Right now we want to look
773 // for loads that are used by a switch or by the condition for the branch. If
774 // we see one, check to see if it's partially redundant. If so, insert a PHI
775 // which can then be used to thread the values.
776 //
Chris Lattner421fa9e2008-12-03 07:48:08 +0000777 Value *SimplifyValue = CondInst;
Chris Lattner69e067f2008-11-27 05:07:53 +0000778 if (CmpInst *CondCmp = dyn_cast<CmpInst>(SimplifyValue))
779 if (isa<Constant>(CondCmp->getOperand(1)))
780 SimplifyValue = CondCmp->getOperand(0);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000781
Chris Lattner4e447eb2009-11-15 19:58:31 +0000782 // TODO: There are other places where load PRE would be profitable, such as
783 // more complex comparisons.
Chris Lattner69e067f2008-11-27 05:07:53 +0000784 if (LoadInst *LI = dyn_cast<LoadInst>(SimplifyValue))
785 if (SimplifyPartiallyRedundantLoad(LI))
786 return true;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000787
788
Chris Lattner5729d382009-11-07 08:05:03 +0000789 // Handle a variety of cases where we are branching on something derived from
790 // a PHI node in the current block. If we can prove that any predecessors
791 // compute a predictable value based on a PHI node, thread those predecessors.
792 //
Frits van Bommel6033b342010-12-06 23:36:56 +0000793 if (ProcessThreadableEdges(CondInst, BB, Preference))
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000794 return true;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000795
Chris Lattner77beb472010-01-11 23:41:09 +0000796 // If this is an otherwise-unfoldable branch on a phi node in the current
797 // block, see if we can simplify.
798 if (PHINode *PN = dyn_cast<PHINode>(CondInst))
799 if (PN->getParent() == BB && isa<BranchInst>(BB->getTerminator()))
800 return ProcessBranchOnPHI(PN);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000801
802
Chris Lattner2249a0b2010-01-12 02:07:17 +0000803 // If this is an otherwise-unfoldable branch on a XOR, see if we can simplify.
804 if (CondInst->getOpcode() == Instruction::Xor &&
805 CondInst->getParent() == BB && isa<BranchInst>(BB->getTerminator()))
806 return ProcessBranchOnXOR(cast<BinaryOperator>(CondInst));
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000807
808
Chris Lattner69e067f2008-11-27 05:07:53 +0000809 // TODO: If we have: "br (X > 0)" and we have a predecessor where we know
Chris Lattner77beb472010-01-11 23:41:09 +0000810 // "(X == 4)", thread through this block.
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000811
Chris Lattnerd38c14e2008-04-22 06:36:15 +0000812 return false;
813}
814
Chris Lattner3cda3cd2008-12-04 06:31:07 +0000815
Chris Lattner69e067f2008-11-27 05:07:53 +0000816/// SimplifyPartiallyRedundantLoad - If LI is an obviously partially redundant
817/// load instruction, eliminate it by replacing it with a PHI node. This is an
818/// important optimization that encourages jump threading, and needs to be run
819/// interlaced with other jump threading tasks.
820bool JumpThreading::SimplifyPartiallyRedundantLoad(LoadInst *LI) {
Eli Friedman2bc3d522011-09-12 20:23:13 +0000821 // Don't hack volatile/atomic loads.
822 if (!LI->isSimple()) return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000823
Chris Lattner69e067f2008-11-27 05:07:53 +0000824 // If the load is defined in a block with exactly one predecessor, it can't be
825 // partially redundant.
826 BasicBlock *LoadBB = LI->getParent();
827 if (LoadBB->getSinglePredecessor())
828 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000829
Chris Lattner69e067f2008-11-27 05:07:53 +0000830 Value *LoadedPtr = LI->getOperand(0);
831
832 // If the loaded operand is defined in the LoadBB, it can't be available.
Chris Lattner4e447eb2009-11-15 19:58:31 +0000833 // TODO: Could do simple PHI translation, that would be fun :)
Chris Lattner69e067f2008-11-27 05:07:53 +0000834 if (Instruction *PtrOp = dyn_cast<Instruction>(LoadedPtr))
835 if (PtrOp->getParent() == LoadBB)
836 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000837
Chris Lattner69e067f2008-11-27 05:07:53 +0000838 // Scan a few instructions up from the load, to see if it is obviously live at
839 // the entry to its block.
840 BasicBlock::iterator BBIt = LI;
841
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000842 if (Value *AvailableVal =
Chris Lattner4e447eb2009-11-15 19:58:31 +0000843 FindAvailableLoadedValue(LoadedPtr, LoadBB, BBIt, 6)) {
Chris Lattner69e067f2008-11-27 05:07:53 +0000844 // If the value if the load is locally available within the block, just use
845 // it. This frequently occurs for reg2mem'd allocas.
846 //cerr << "LOAD ELIMINATED:\n" << *BBIt << *LI << "\n";
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000847
Chris Lattner2a99b482009-01-09 06:08:12 +0000848 // If the returned value is the load itself, replace with an undef. This can
849 // only happen in dead loops.
Owen Anderson9e9a0d52009-07-30 23:03:37 +0000850 if (AvailableVal == LI) AvailableVal = UndefValue::get(LI->getType());
Chris Lattner69e067f2008-11-27 05:07:53 +0000851 LI->replaceAllUsesWith(AvailableVal);
852 LI->eraseFromParent();
853 return true;
854 }
855
856 // Otherwise, if we scanned the whole block and got to the top of the block,
857 // we know the block is locally transparent to the load. If not, something
858 // might clobber its value.
859 if (BBIt != LoadBB->begin())
860 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000861
Chris Lattner5161de62012-03-13 18:07:41 +0000862 // If all of the loads and stores that feed the value have the same TBAA tag,
863 // then we can propagate it onto any newly inserted loads.
Nadav Rotema94d6e82012-07-24 10:51:42 +0000864 MDNode *TBAATag = LI->getMetadata(LLVMContext::MD_tbaa);
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000865
Chris Lattner69e067f2008-11-27 05:07:53 +0000866 SmallPtrSet<BasicBlock*, 8> PredsScanned;
867 typedef SmallVector<std::pair<BasicBlock*, Value*>, 8> AvailablePredsTy;
868 AvailablePredsTy AvailablePreds;
869 BasicBlock *OneUnavailablePred = 0;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000870
Chris Lattner69e067f2008-11-27 05:07:53 +0000871 // If we got here, the loaded value is transparent through to the start of the
872 // block. Check to see if it is available in any of the predecessor blocks.
873 for (pred_iterator PI = pred_begin(LoadBB), PE = pred_end(LoadBB);
874 PI != PE; ++PI) {
875 BasicBlock *PredBB = *PI;
876
877 // If we already scanned this predecessor, skip it.
878 if (!PredsScanned.insert(PredBB))
879 continue;
880
881 // Scan the predecessor to see if the value is available in the pred.
882 BBIt = PredBB->end();
Chris Lattner5161de62012-03-13 18:07:41 +0000883 MDNode *ThisTBAATag = 0;
884 Value *PredAvailable = FindAvailableLoadedValue(LoadedPtr, PredBB, BBIt, 6,
885 0, &ThisTBAATag);
Chris Lattner69e067f2008-11-27 05:07:53 +0000886 if (!PredAvailable) {
887 OneUnavailablePred = PredBB;
888 continue;
889 }
Nadav Rotema94d6e82012-07-24 10:51:42 +0000890
Chris Lattner5161de62012-03-13 18:07:41 +0000891 // If tbaa tags disagree or are not present, forget about them.
892 if (TBAATag != ThisTBAATag) TBAATag = 0;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000893
Chris Lattner69e067f2008-11-27 05:07:53 +0000894 // If so, this load is partially redundant. Remember this info so that we
895 // can create a PHI node.
896 AvailablePreds.push_back(std::make_pair(PredBB, PredAvailable));
897 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000898
Chris Lattner69e067f2008-11-27 05:07:53 +0000899 // If the loaded value isn't available in any predecessor, it isn't partially
900 // redundant.
901 if (AvailablePreds.empty()) return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000902
Chris Lattner69e067f2008-11-27 05:07:53 +0000903 // Okay, the loaded value is available in at least one (and maybe all!)
904 // predecessors. If the value is unavailable in more than one unique
905 // predecessor, we want to insert a merge block for those common predecessors.
906 // This ensures that we only have to insert one reload, thus not increasing
907 // code size.
908 BasicBlock *UnavailablePred = 0;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000909
Chris Lattner69e067f2008-11-27 05:07:53 +0000910 // If there is exactly one predecessor where the value is unavailable, the
911 // already computed 'OneUnavailablePred' block is it. If it ends in an
912 // unconditional branch, we know that it isn't a critical edge.
913 if (PredsScanned.size() == AvailablePreds.size()+1 &&
914 OneUnavailablePred->getTerminator()->getNumSuccessors() == 1) {
915 UnavailablePred = OneUnavailablePred;
916 } else if (PredsScanned.size() != AvailablePreds.size()) {
917 // Otherwise, we had multiple unavailable predecessors or we had a critical
918 // edge from the one.
919 SmallVector<BasicBlock*, 8> PredsToSplit;
920 SmallPtrSet<BasicBlock*, 8> AvailablePredSet;
921
922 for (unsigned i = 0, e = AvailablePreds.size(); i != e; ++i)
923 AvailablePredSet.insert(AvailablePreds[i].first);
924
925 // Add all the unavailable predecessors to the PredsToSplit list.
926 for (pred_iterator PI = pred_begin(LoadBB), PE = pred_end(LoadBB);
Chris Lattnere58867e2010-06-14 19:45:43 +0000927 PI != PE; ++PI) {
Gabor Greifee1f44f2010-07-12 14:10:24 +0000928 BasicBlock *P = *PI;
Chris Lattnere58867e2010-06-14 19:45:43 +0000929 // If the predecessor is an indirect goto, we can't split the edge.
Gabor Greifee1f44f2010-07-12 14:10:24 +0000930 if (isa<IndirectBrInst>(P->getTerminator()))
Chris Lattnere58867e2010-06-14 19:45:43 +0000931 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000932
Gabor Greifee1f44f2010-07-12 14:10:24 +0000933 if (!AvailablePredSet.count(P))
934 PredsToSplit.push_back(P);
Chris Lattnere58867e2010-06-14 19:45:43 +0000935 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000936
Chris Lattner69e067f2008-11-27 05:07:53 +0000937 // Split them out to their own block.
938 UnavailablePred =
Jakub Staszak2fac1d52011-12-09 21:19:53 +0000939 SplitBlockPredecessors(LoadBB, PredsToSplit, "thread-pre-split", this);
Chris Lattner69e067f2008-11-27 05:07:53 +0000940 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000941
Chris Lattner69e067f2008-11-27 05:07:53 +0000942 // If the value isn't available in all predecessors, then there will be
943 // exactly one where it isn't available. Insert a load on that edge and add
944 // it to the AvailablePreds list.
945 if (UnavailablePred) {
946 assert(UnavailablePred->getTerminator()->getNumSuccessors() == 1 &&
947 "Can't handle critical edge here!");
Devang Patel95a7de62011-05-04 22:48:19 +0000948 LoadInst *NewVal = new LoadInst(LoadedPtr, LI->getName()+".pr", false,
Chris Lattner4e447eb2009-11-15 19:58:31 +0000949 LI->getAlignment(),
Chris Lattner69e067f2008-11-27 05:07:53 +0000950 UnavailablePred->getTerminator());
Devang Patel95a7de62011-05-04 22:48:19 +0000951 NewVal->setDebugLoc(LI->getDebugLoc());
Chris Lattner5161de62012-03-13 18:07:41 +0000952 if (TBAATag)
953 NewVal->setMetadata(LLVMContext::MD_tbaa, TBAATag);
Nadav Rotema94d6e82012-07-24 10:51:42 +0000954
Chris Lattner69e067f2008-11-27 05:07:53 +0000955 AvailablePreds.push_back(std::make_pair(UnavailablePred, NewVal));
956 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000957
Chris Lattner69e067f2008-11-27 05:07:53 +0000958 // Now we know that each predecessor of this block has a value in
959 // AvailablePreds, sort them for efficient access as we're walking the preds.
Chris Lattnera3522002008-12-01 06:52:57 +0000960 array_pod_sort(AvailablePreds.begin(), AvailablePreds.end());
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000961
Chris Lattner69e067f2008-11-27 05:07:53 +0000962 // Create a PHI node at the start of the block for the PRE'd load value.
Jay Foadd8b4fb42011-03-30 11:19:20 +0000963 pred_iterator PB = pred_begin(LoadBB), PE = pred_end(LoadBB);
Jay Foad3ecfc862011-03-30 11:28:46 +0000964 PHINode *PN = PHINode::Create(LI->getType(), std::distance(PB, PE), "",
965 LoadBB->begin());
Chris Lattner69e067f2008-11-27 05:07:53 +0000966 PN->takeName(LI);
Devang Patel95a7de62011-05-04 22:48:19 +0000967 PN->setDebugLoc(LI->getDebugLoc());
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000968
Chris Lattner69e067f2008-11-27 05:07:53 +0000969 // Insert new entries into the PHI for each predecessor. A single block may
970 // have multiple entries here.
Jay Foadd8b4fb42011-03-30 11:19:20 +0000971 for (pred_iterator PI = PB; PI != PE; ++PI) {
Gabor Greifee1f44f2010-07-12 14:10:24 +0000972 BasicBlock *P = *PI;
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000973 AvailablePredsTy::iterator I =
Chris Lattner69e067f2008-11-27 05:07:53 +0000974 std::lower_bound(AvailablePreds.begin(), AvailablePreds.end(),
Gabor Greifee1f44f2010-07-12 14:10:24 +0000975 std::make_pair(P, (Value*)0));
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000976
Gabor Greifee1f44f2010-07-12 14:10:24 +0000977 assert(I != AvailablePreds.end() && I->first == P &&
Chris Lattner69e067f2008-11-27 05:07:53 +0000978 "Didn't find entry for predecessor!");
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000979
Chris Lattner69e067f2008-11-27 05:07:53 +0000980 PN->addIncoming(I->second, I->first);
981 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000982
Chris Lattner69e067f2008-11-27 05:07:53 +0000983 //cerr << "PRE: " << *LI << *PN << "\n";
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000984
Chris Lattner69e067f2008-11-27 05:07:53 +0000985 LI->replaceAllUsesWith(PN);
986 LI->eraseFromParent();
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000987
Chris Lattner69e067f2008-11-27 05:07:53 +0000988 return true;
989}
990
Chris Lattner5729d382009-11-07 08:05:03 +0000991/// FindMostPopularDest - The specified list contains multiple possible
992/// threadable destinations. Pick the one that occurs the most frequently in
993/// the list.
994static BasicBlock *
995FindMostPopularDest(BasicBlock *BB,
996 const SmallVectorImpl<std::pair<BasicBlock*,
997 BasicBlock*> > &PredToDestList) {
998 assert(!PredToDestList.empty());
Frits van Bommel6f9a8302010-12-05 19:02:47 +0000999
Chris Lattner5729d382009-11-07 08:05:03 +00001000 // Determine popularity. If there are multiple possible destinations, we
1001 // explicitly choose to ignore 'undef' destinations. We prefer to thread
1002 // blocks with known and real destinations to threading undef. We'll handle
1003 // them later if interesting.
1004 DenseMap<BasicBlock*, unsigned> DestPopularity;
1005 for (unsigned i = 0, e = PredToDestList.size(); i != e; ++i)
1006 if (PredToDestList[i].second)
1007 DestPopularity[PredToDestList[i].second]++;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001008
Chris Lattner5729d382009-11-07 08:05:03 +00001009 // Find the most popular dest.
1010 DenseMap<BasicBlock*, unsigned>::iterator DPI = DestPopularity.begin();
1011 BasicBlock *MostPopularDest = DPI->first;
1012 unsigned Popularity = DPI->second;
1013 SmallVector<BasicBlock*, 4> SamePopularity;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001014
Chris Lattner5729d382009-11-07 08:05:03 +00001015 for (++DPI; DPI != DestPopularity.end(); ++DPI) {
1016 // If the popularity of this entry isn't higher than the popularity we've
1017 // seen so far, ignore it.
1018 if (DPI->second < Popularity)
1019 ; // ignore.
1020 else if (DPI->second == Popularity) {
1021 // If it is the same as what we've seen so far, keep track of it.
1022 SamePopularity.push_back(DPI->first);
1023 } else {
1024 // If it is more popular, remember it.
1025 SamePopularity.clear();
1026 MostPopularDest = DPI->first;
1027 Popularity = DPI->second;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001028 }
Chris Lattner5729d382009-11-07 08:05:03 +00001029 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001030
Frits van Bommel01abcf32010-12-16 12:16:00 +00001031 // Okay, now we know the most popular destination. If there is more than one
Chris Lattner5729d382009-11-07 08:05:03 +00001032 // destination, we need to determine one. This is arbitrary, but we need
1033 // to make a deterministic decision. Pick the first one that appears in the
1034 // successor list.
1035 if (!SamePopularity.empty()) {
1036 SamePopularity.push_back(MostPopularDest);
1037 TerminatorInst *TI = BB->getTerminator();
1038 for (unsigned i = 0; ; ++i) {
1039 assert(i != TI->getNumSuccessors() && "Didn't find any successor!");
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001040
Chris Lattner5729d382009-11-07 08:05:03 +00001041 if (std::find(SamePopularity.begin(), SamePopularity.end(),
1042 TI->getSuccessor(i)) == SamePopularity.end())
1043 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001044
Chris Lattner5729d382009-11-07 08:05:03 +00001045 MostPopularDest = TI->getSuccessor(i);
1046 break;
1047 }
1048 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001049
Chris Lattner5729d382009-11-07 08:05:03 +00001050 // Okay, we have finally picked the most popular destination.
1051 return MostPopularDest;
1052}
1053
Frits van Bommel6033b342010-12-06 23:36:56 +00001054bool JumpThreading::ProcessThreadableEdges(Value *Cond, BasicBlock *BB,
1055 ConstantPreference Preference) {
Chris Lattner5729d382009-11-07 08:05:03 +00001056 // If threading this would thread across a loop header, don't even try to
1057 // thread the edge.
1058 if (LoopHeaders.count(BB))
1059 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001060
Frits van Bommelea388f22010-12-05 19:06:41 +00001061 PredValueInfoTy PredValues;
Frits van Bommel6033b342010-12-06 23:36:56 +00001062 if (!ComputeValueKnownInPredecessors(Cond, BB, PredValues, Preference))
Chris Lattner5729d382009-11-07 08:05:03 +00001063 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001064
Chris Lattner5729d382009-11-07 08:05:03 +00001065 assert(!PredValues.empty() &&
1066 "ComputeValueKnownInPredecessors returned true with no values");
1067
David Greenefe7fe662010-01-05 01:27:19 +00001068 DEBUG(dbgs() << "IN BB: " << *BB;
Chris Lattner5729d382009-11-07 08:05:03 +00001069 for (unsigned i = 0, e = PredValues.size(); i != e; ++i) {
Frits van Bommelea388f22010-12-05 19:06:41 +00001070 dbgs() << " BB '" << BB->getName() << "': FOUND condition = "
1071 << *PredValues[i].first
1072 << " for pred '" << PredValues[i].second->getName() << "'.\n";
Chris Lattner5729d382009-11-07 08:05:03 +00001073 });
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001074
Chris Lattner5729d382009-11-07 08:05:03 +00001075 // Decide what we want to thread through. Convert our list of known values to
1076 // a list of known destinations for each pred. This also discards duplicate
1077 // predecessors and keeps track of the undefined inputs (which are represented
Chris Lattnere7e63fe2009-11-09 00:41:49 +00001078 // as a null dest in the PredToDestList).
Chris Lattner5729d382009-11-07 08:05:03 +00001079 SmallPtrSet<BasicBlock*, 16> SeenPreds;
1080 SmallVector<std::pair<BasicBlock*, BasicBlock*>, 16> PredToDestList;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001081
Chris Lattner5729d382009-11-07 08:05:03 +00001082 BasicBlock *OnlyDest = 0;
1083 BasicBlock *MultipleDestSentinel = (BasicBlock*)(intptr_t)~0ULL;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001084
Chris Lattner5729d382009-11-07 08:05:03 +00001085 for (unsigned i = 0, e = PredValues.size(); i != e; ++i) {
1086 BasicBlock *Pred = PredValues[i].second;
1087 if (!SeenPreds.insert(Pred))
1088 continue; // Duplicate predecessor entry.
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001089
Chris Lattner5729d382009-11-07 08:05:03 +00001090 // If the predecessor ends with an indirect goto, we can't change its
1091 // destination.
1092 if (isa<IndirectBrInst>(Pred->getTerminator()))
1093 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001094
Frits van Bommelea388f22010-12-05 19:06:41 +00001095 Constant *Val = PredValues[i].first;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001096
Chris Lattner5729d382009-11-07 08:05:03 +00001097 BasicBlock *DestBB;
Frits van Bommelea388f22010-12-05 19:06:41 +00001098 if (isa<UndefValue>(Val))
Chris Lattner5729d382009-11-07 08:05:03 +00001099 DestBB = 0;
1100 else if (BranchInst *BI = dyn_cast<BranchInst>(BB->getTerminator()))
Frits van Bommelea388f22010-12-05 19:06:41 +00001101 DestBB = BI->getSuccessor(cast<ConstantInt>(Val)->isZero());
Stepan Dyatkovskiy24473122012-02-01 07:49:51 +00001102 else if (SwitchInst *SI = dyn_cast<SwitchInst>(BB->getTerminator())) {
Stepan Dyatkovskiyc10fa6c2012-03-08 07:06:20 +00001103 DestBB = SI->findCaseValue(cast<ConstantInt>(Val)).getCaseSuccessor();
Stepan Dyatkovskiy24473122012-02-01 07:49:51 +00001104 } else {
Frits van Bommel6033b342010-12-06 23:36:56 +00001105 assert(isa<IndirectBrInst>(BB->getTerminator())
1106 && "Unexpected terminator");
1107 DestBB = cast<BlockAddress>(Val)->getBasicBlock();
Chris Lattner5729d382009-11-07 08:05:03 +00001108 }
1109
1110 // If we have exactly one destination, remember it for efficiency below.
Frits van Bommel01abcf32010-12-16 12:16:00 +00001111 if (PredToDestList.empty())
Chris Lattner5729d382009-11-07 08:05:03 +00001112 OnlyDest = DestBB;
1113 else if (OnlyDest != DestBB)
1114 OnlyDest = MultipleDestSentinel;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001115
Chris Lattner5729d382009-11-07 08:05:03 +00001116 PredToDestList.push_back(std::make_pair(Pred, DestBB));
1117 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001118
Chris Lattner5729d382009-11-07 08:05:03 +00001119 // If all edges were unthreadable, we fail.
1120 if (PredToDestList.empty())
1121 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001122
Chris Lattner5729d382009-11-07 08:05:03 +00001123 // Determine which is the most common successor. If we have many inputs and
1124 // this block is a switch, we want to start by threading the batch that goes
1125 // to the most popular destination first. If we only know about one
1126 // threadable destination (the common case) we can avoid this.
1127 BasicBlock *MostPopularDest = OnlyDest;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001128
Chris Lattner5729d382009-11-07 08:05:03 +00001129 if (MostPopularDest == MultipleDestSentinel)
1130 MostPopularDest = FindMostPopularDest(BB, PredToDestList);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001131
Chris Lattner5729d382009-11-07 08:05:03 +00001132 // Now that we know what the most popular destination is, factor all
1133 // predecessors that will jump to it into a single predecessor.
1134 SmallVector<BasicBlock*, 16> PredsToFactor;
1135 for (unsigned i = 0, e = PredToDestList.size(); i != e; ++i)
1136 if (PredToDestList[i].second == MostPopularDest) {
1137 BasicBlock *Pred = PredToDestList[i].first;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001138
Chris Lattner5729d382009-11-07 08:05:03 +00001139 // This predecessor may be a switch or something else that has multiple
1140 // edges to the block. Factor each of these edges by listing them
1141 // according to # occurrences in PredsToFactor.
1142 TerminatorInst *PredTI = Pred->getTerminator();
1143 for (unsigned i = 0, e = PredTI->getNumSuccessors(); i != e; ++i)
1144 if (PredTI->getSuccessor(i) == BB)
1145 PredsToFactor.push_back(Pred);
1146 }
1147
1148 // If the threadable edges are branching on an undefined value, we get to pick
1149 // the destination that these predecessors should get to.
1150 if (MostPopularDest == 0)
1151 MostPopularDest = BB->getTerminator()->
1152 getSuccessor(GetBestDestForJumpOnUndef(BB));
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001153
Chris Lattner5729d382009-11-07 08:05:03 +00001154 // Ok, try to thread it!
1155 return ThreadEdge(BB, PredsToFactor, MostPopularDest);
1156}
Chris Lattner69e067f2008-11-27 05:07:53 +00001157
Chris Lattner77beb472010-01-11 23:41:09 +00001158/// ProcessBranchOnPHI - We have an otherwise unthreadable conditional branch on
1159/// a PHI node in the current block. See if there are any simplifications we
1160/// can do based on inputs to the phi node.
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001161///
Chris Lattner77beb472010-01-11 23:41:09 +00001162bool JumpThreading::ProcessBranchOnPHI(PHINode *PN) {
Chris Lattner6b65f472009-10-11 04:40:21 +00001163 BasicBlock *BB = PN->getParent();
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001164
Chris Lattner2249a0b2010-01-12 02:07:17 +00001165 // TODO: We could make use of this to do it once for blocks with common PHI
1166 // values.
1167 SmallVector<BasicBlock*, 1> PredBBs;
1168 PredBBs.resize(1);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001169
Chris Lattner5729d382009-11-07 08:05:03 +00001170 // If any of the predecessor blocks end in an unconditional branch, we can
Chris Lattner77beb472010-01-11 23:41:09 +00001171 // *duplicate* the conditional branch into that block in order to further
1172 // encourage jump threading and to eliminate cases where we have branch on a
1173 // phi of an icmp (branch on icmp is much better).
Chris Lattner78c552e2009-10-11 07:24:57 +00001174 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
1175 BasicBlock *PredBB = PN->getIncomingBlock(i);
1176 if (BranchInst *PredBr = dyn_cast<BranchInst>(PredBB->getTerminator()))
Chris Lattner2249a0b2010-01-12 02:07:17 +00001177 if (PredBr->isUnconditional()) {
1178 PredBBs[0] = PredBB;
1179 // Try to duplicate BB into PredBB.
1180 if (DuplicateCondBranchOnPHIIntoPred(BB, PredBBs))
1181 return true;
1182 }
Chris Lattner78c552e2009-10-11 07:24:57 +00001183 }
1184
Chris Lattner6b65f472009-10-11 04:40:21 +00001185 return false;
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001186}
1187
Chris Lattner2249a0b2010-01-12 02:07:17 +00001188/// ProcessBranchOnXOR - We have an otherwise unthreadable conditional branch on
1189/// a xor instruction in the current block. See if there are any
1190/// simplifications we can do based on inputs to the xor.
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001191///
Chris Lattner2249a0b2010-01-12 02:07:17 +00001192bool JumpThreading::ProcessBranchOnXOR(BinaryOperator *BO) {
1193 BasicBlock *BB = BO->getParent();
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001194
Chris Lattner2249a0b2010-01-12 02:07:17 +00001195 // If either the LHS or RHS of the xor is a constant, don't do this
1196 // optimization.
1197 if (isa<ConstantInt>(BO->getOperand(0)) ||
1198 isa<ConstantInt>(BO->getOperand(1)))
1199 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001200
Chris Lattner2dd76572010-01-23 19:16:25 +00001201 // If the first instruction in BB isn't a phi, we won't be able to infer
1202 // anything special about any particular predecessor.
1203 if (!isa<PHINode>(BB->front()))
1204 return false;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001205
Chris Lattner2249a0b2010-01-12 02:07:17 +00001206 // If we have a xor as the branch input to this block, and we know that the
1207 // LHS or RHS of the xor in any predecessor is true/false, then we can clone
1208 // the condition into the predecessor and fix that value to true, saving some
1209 // logical ops on that path and encouraging other paths to simplify.
1210 //
1211 // This copies something like this:
1212 //
1213 // BB:
1214 // %X = phi i1 [1], [%X']
1215 // %Y = icmp eq i32 %A, %B
1216 // %Z = xor i1 %X, %Y
1217 // br i1 %Z, ...
1218 //
1219 // Into:
1220 // BB':
1221 // %Y = icmp ne i32 %A, %B
1222 // br i1 %Z, ...
1223
Frits van Bommelea388f22010-12-05 19:06:41 +00001224 PredValueInfoTy XorOpValues;
Chris Lattner2249a0b2010-01-12 02:07:17 +00001225 bool isLHS = true;
Frits van Bommel6033b342010-12-06 23:36:56 +00001226 if (!ComputeValueKnownInPredecessors(BO->getOperand(0), BB, XorOpValues,
1227 WantInteger)) {
Chris Lattner2249a0b2010-01-12 02:07:17 +00001228 assert(XorOpValues.empty());
Frits van Bommel6033b342010-12-06 23:36:56 +00001229 if (!ComputeValueKnownInPredecessors(BO->getOperand(1), BB, XorOpValues,
1230 WantInteger))
Chris Lattner2249a0b2010-01-12 02:07:17 +00001231 return false;
1232 isLHS = false;
1233 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001234
Chris Lattner2249a0b2010-01-12 02:07:17 +00001235 assert(!XorOpValues.empty() &&
1236 "ComputeValueKnownInPredecessors returned true with no values");
1237
1238 // Scan the information to see which is most popular: true or false. The
1239 // predecessors can be of the set true, false, or undef.
1240 unsigned NumTrue = 0, NumFalse = 0;
1241 for (unsigned i = 0, e = XorOpValues.size(); i != e; ++i) {
Frits van Bommelea388f22010-12-05 19:06:41 +00001242 if (isa<UndefValue>(XorOpValues[i].first))
1243 // Ignore undefs for the count.
1244 continue;
1245 if (cast<ConstantInt>(XorOpValues[i].first)->isZero())
Chris Lattner2249a0b2010-01-12 02:07:17 +00001246 ++NumFalse;
1247 else
1248 ++NumTrue;
1249 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001250
Chris Lattner2249a0b2010-01-12 02:07:17 +00001251 // Determine which value to split on, true, false, or undef if neither.
1252 ConstantInt *SplitVal = 0;
1253 if (NumTrue > NumFalse)
1254 SplitVal = ConstantInt::getTrue(BB->getContext());
1255 else if (NumTrue != 0 || NumFalse != 0)
1256 SplitVal = ConstantInt::getFalse(BB->getContext());
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001257
Chris Lattner2249a0b2010-01-12 02:07:17 +00001258 // Collect all of the blocks that this can be folded into so that we can
1259 // factor this once and clone it once.
1260 SmallVector<BasicBlock*, 8> BlocksToFoldInto;
1261 for (unsigned i = 0, e = XorOpValues.size(); i != e; ++i) {
Frits van Bommelea388f22010-12-05 19:06:41 +00001262 if (XorOpValues[i].first != SplitVal &&
1263 !isa<UndefValue>(XorOpValues[i].first))
1264 continue;
Chris Lattner2249a0b2010-01-12 02:07:17 +00001265
1266 BlocksToFoldInto.push_back(XorOpValues[i].second);
1267 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001268
Chris Lattner2dd76572010-01-23 19:16:25 +00001269 // If we inferred a value for all of the predecessors, then duplication won't
1270 // help us. However, we can just replace the LHS or RHS with the constant.
1271 if (BlocksToFoldInto.size() ==
1272 cast<PHINode>(BB->front()).getNumIncomingValues()) {
1273 if (SplitVal == 0) {
1274 // If all preds provide undef, just nuke the xor, because it is undef too.
1275 BO->replaceAllUsesWith(UndefValue::get(BO->getType()));
1276 BO->eraseFromParent();
1277 } else if (SplitVal->isZero()) {
1278 // If all preds provide 0, replace the xor with the other input.
1279 BO->replaceAllUsesWith(BO->getOperand(isLHS));
1280 BO->eraseFromParent();
1281 } else {
1282 // If all preds provide 1, set the computed value to 1.
1283 BO->setOperand(!isLHS, SplitVal);
1284 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001285
Chris Lattner2dd76572010-01-23 19:16:25 +00001286 return true;
1287 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001288
Chris Lattner2249a0b2010-01-12 02:07:17 +00001289 // Try to duplicate BB into PredBB.
Chris Lattner797c4402010-01-12 02:07:50 +00001290 return DuplicateCondBranchOnPHIIntoPred(BB, BlocksToFoldInto);
Chris Lattner2249a0b2010-01-12 02:07:17 +00001291}
1292
1293
Chris Lattner78c552e2009-10-11 07:24:57 +00001294/// AddPHINodeEntriesForMappedBlock - We're adding 'NewPred' as a new
1295/// predecessor to the PHIBB block. If it has PHI nodes, add entries for
1296/// NewPred using the entries from OldPred (suitably mapped).
1297static void AddPHINodeEntriesForMappedBlock(BasicBlock *PHIBB,
1298 BasicBlock *OldPred,
1299 BasicBlock *NewPred,
1300 DenseMap<Instruction*, Value*> &ValueMap) {
1301 for (BasicBlock::iterator PNI = PHIBB->begin();
1302 PHINode *PN = dyn_cast<PHINode>(PNI); ++PNI) {
1303 // Ok, we have a PHI node. Figure out what the incoming value was for the
1304 // DestBlock.
1305 Value *IV = PN->getIncomingValueForBlock(OldPred);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001306
Chris Lattner78c552e2009-10-11 07:24:57 +00001307 // Remap the value if necessary.
1308 if (Instruction *Inst = dyn_cast<Instruction>(IV)) {
1309 DenseMap<Instruction*, Value*>::iterator I = ValueMap.find(Inst);
1310 if (I != ValueMap.end())
1311 IV = I->second;
1312 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001313
Chris Lattner78c552e2009-10-11 07:24:57 +00001314 PN->addIncoming(IV, NewPred);
1315 }
1316}
Chris Lattner6bf77502008-04-22 07:05:46 +00001317
Chris Lattner5729d382009-11-07 08:05:03 +00001318/// ThreadEdge - We have decided that it is safe and profitable to factor the
1319/// blocks in PredBBs to one predecessor, then thread an edge from it to SuccBB
1320/// across BB. Transform the IR to reflect this change.
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001321bool JumpThreading::ThreadEdge(BasicBlock *BB,
1322 const SmallVectorImpl<BasicBlock*> &PredBBs,
Chris Lattnerbdbf1a12009-10-11 04:33:43 +00001323 BasicBlock *SuccBB) {
Mike Stumpfe095f32009-05-04 18:40:41 +00001324 // If threading to the same block as we come from, we would infinite loop.
1325 if (SuccBB == BB) {
David Greenefe7fe662010-01-05 01:27:19 +00001326 DEBUG(dbgs() << " Not threading across BB '" << BB->getName()
Daniel Dunbar93b67e42009-07-26 07:49:05 +00001327 << "' - would thread to self!\n");
Mike Stumpfe095f32009-05-04 18:40:41 +00001328 return false;
1329 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001330
Mike Stumpfe095f32009-05-04 18:40:41 +00001331 // If threading this would thread across a loop header, don't thread the edge.
1332 // See the comments above FindLoopHeaders for justifications and caveats.
1333 if (LoopHeaders.count(BB)) {
David Greenefe7fe662010-01-05 01:27:19 +00001334 DEBUG(dbgs() << " Not threading across loop header BB '" << BB->getName()
Daniel Dunbar93b67e42009-07-26 07:49:05 +00001335 << "' to dest BB '" << SuccBB->getName()
1336 << "' - it might create an irreducible loop!\n");
Mike Stumpfe095f32009-05-04 18:40:41 +00001337 return false;
1338 }
1339
Chris Lattner78c552e2009-10-11 07:24:57 +00001340 unsigned JumpThreadCost = getJumpThreadDuplicationCost(BB);
1341 if (JumpThreadCost > Threshold) {
David Greenefe7fe662010-01-05 01:27:19 +00001342 DEBUG(dbgs() << " Not threading BB '" << BB->getName()
Chris Lattner78c552e2009-10-11 07:24:57 +00001343 << "' - Cost is too high: " << JumpThreadCost << "\n");
1344 return false;
1345 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001346
Chris Lattner5729d382009-11-07 08:05:03 +00001347 // And finally, do it! Start by factoring the predecessors is needed.
1348 BasicBlock *PredBB;
1349 if (PredBBs.size() == 1)
1350 PredBB = PredBBs[0];
1351 else {
David Greenefe7fe662010-01-05 01:27:19 +00001352 DEBUG(dbgs() << " Factoring out " << PredBBs.size()
Chris Lattner5729d382009-11-07 08:05:03 +00001353 << " common predecessors.\n");
Jakub Staszak2fac1d52011-12-09 21:19:53 +00001354 PredBB = SplitBlockPredecessors(BB, PredBBs, ".thr_comm", this);
Chris Lattner5729d382009-11-07 08:05:03 +00001355 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001356
Mike Stumpfe095f32009-05-04 18:40:41 +00001357 // And finally, do it!
David Greenefe7fe662010-01-05 01:27:19 +00001358 DEBUG(dbgs() << " Threading edge from '" << PredBB->getName() << "' to '"
Daniel Dunbar460f6562009-07-26 09:48:23 +00001359 << SuccBB->getName() << "' with cost: " << JumpThreadCost
Daniel Dunbar93b67e42009-07-26 07:49:05 +00001360 << ", across block:\n "
1361 << *BB << "\n");
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001362
Owen Andersonc809d902010-09-14 20:57:41 +00001363 LVI->threadEdge(PredBB, BB, SuccBB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001364
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001365 // We are going to have to map operands from the original BB block to the new
1366 // copy of the block 'NewBB'. If there are PHI nodes in BB, evaluate them to
1367 // account for entry from PredBB.
1368 DenseMap<Instruction*, Value*> ValueMapping;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001369
1370 BasicBlock *NewBB = BasicBlock::Create(BB->getContext(),
1371 BB->getName()+".thread",
Owen Anderson1d0be152009-08-13 21:58:54 +00001372 BB->getParent(), BB);
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001373 NewBB->moveAfter(PredBB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001374
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001375 BasicBlock::iterator BI = BB->begin();
1376 for (; PHINode *PN = dyn_cast<PHINode>(BI); ++BI)
1377 ValueMapping[PN] = PN->getIncomingValueForBlock(PredBB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001378
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001379 // Clone the non-phi instructions of BB into NewBB, keeping track of the
1380 // mapping and using it to remap operands in the cloned instructions.
1381 for (; !isa<TerminatorInst>(BI); ++BI) {
Nick Lewycky67760642009-09-27 07:38:41 +00001382 Instruction *New = BI->clone();
Daniel Dunbar460f6562009-07-26 09:48:23 +00001383 New->setName(BI->getName());
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001384 NewBB->getInstList().push_back(New);
1385 ValueMapping[BI] = New;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001386
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001387 // Remap operands to patch up intra-block references.
1388 for (unsigned i = 0, e = New->getNumOperands(); i != e; ++i)
Dan Gohmanf530c922009-07-02 00:17:47 +00001389 if (Instruction *Inst = dyn_cast<Instruction>(New->getOperand(i))) {
1390 DenseMap<Instruction*, Value*>::iterator I = ValueMapping.find(Inst);
1391 if (I != ValueMapping.end())
1392 New->setOperand(i, I->second);
1393 }
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001394 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001395
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001396 // We didn't copy the terminator from BB over to NewBB, because there is now
1397 // an unconditional jump to SuccBB. Insert the unconditional jump.
Devang Patel95a7de62011-05-04 22:48:19 +00001398 BranchInst *NewBI =BranchInst::Create(SuccBB, NewBB);
1399 NewBI->setDebugLoc(BB->getTerminator()->getDebugLoc());
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001400
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001401 // Check to see if SuccBB has PHI nodes. If so, we need to add entries to the
1402 // PHI nodes for NewBB now.
Chris Lattner78c552e2009-10-11 07:24:57 +00001403 AddPHINodeEntriesForMappedBlock(SuccBB, BB, NewBB, ValueMapping);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001404
Chris Lattner433a0db2009-10-10 09:05:58 +00001405 // If there were values defined in BB that are used outside the block, then we
1406 // now have to update all uses of the value to use either the original value,
1407 // the cloned value, or some PHI derived value. This can require arbitrary
1408 // PHI insertion, of which we are prepared to do, clean these up now.
1409 SSAUpdater SSAUpdate;
1410 SmallVector<Use*, 16> UsesToRename;
1411 for (BasicBlock::iterator I = BB->begin(); I != BB->end(); ++I) {
1412 // Scan all uses of this instruction to see if it is used outside of its
1413 // block, and if so, record them in UsesToRename.
1414 for (Value::use_iterator UI = I->use_begin(), E = I->use_end(); UI != E;
1415 ++UI) {
1416 Instruction *User = cast<Instruction>(*UI);
1417 if (PHINode *UserPN = dyn_cast<PHINode>(User)) {
1418 if (UserPN->getIncomingBlock(UI) == BB)
1419 continue;
1420 } else if (User->getParent() == BB)
1421 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001422
Chris Lattner433a0db2009-10-10 09:05:58 +00001423 UsesToRename.push_back(&UI.getUse());
1424 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001425
Chris Lattner433a0db2009-10-10 09:05:58 +00001426 // If there are no uses outside the block, we're done with this instruction.
1427 if (UsesToRename.empty())
1428 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001429
David Greenefe7fe662010-01-05 01:27:19 +00001430 DEBUG(dbgs() << "JT: Renaming non-local uses of: " << *I << "\n");
Chris Lattner433a0db2009-10-10 09:05:58 +00001431
1432 // We found a use of I outside of BB. Rename all uses of I that are outside
1433 // its block to be uses of the appropriate PHI node etc. See ValuesInBlocks
1434 // with the two values we know.
Duncan Sandsfc6e29d2010-09-02 08:14:03 +00001435 SSAUpdate.Initialize(I->getType(), I->getName());
Chris Lattner433a0db2009-10-10 09:05:58 +00001436 SSAUpdate.AddAvailableValue(BB, I);
1437 SSAUpdate.AddAvailableValue(NewBB, ValueMapping[I]);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001438
Chris Lattner433a0db2009-10-10 09:05:58 +00001439 while (!UsesToRename.empty())
1440 SSAUpdate.RewriteUse(*UsesToRename.pop_back_val());
David Greenefe7fe662010-01-05 01:27:19 +00001441 DEBUG(dbgs() << "\n");
Chris Lattner433a0db2009-10-10 09:05:58 +00001442 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001443
1444
Chris Lattneref0c6742008-12-01 04:48:07 +00001445 // Ok, NewBB is good to go. Update the terminator of PredBB to jump to
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001446 // NewBB instead of BB. This eliminates predecessors from BB, which requires
1447 // us to simplify any PHI nodes in BB.
1448 TerminatorInst *PredTerm = PredBB->getTerminator();
1449 for (unsigned i = 0, e = PredTerm->getNumSuccessors(); i != e; ++i)
1450 if (PredTerm->getSuccessor(i) == BB) {
Owen Anderson36c4deb2010-09-29 20:34:41 +00001451 BB->removePredecessor(PredBB, true);
Chris Lattnerbd3401f2008-04-20 22:39:42 +00001452 PredTerm->setSuccessor(i, NewBB);
1453 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001454
Chris Lattneref0c6742008-12-01 04:48:07 +00001455 // At this point, the IR is fully up to date and consistent. Do a quick scan
1456 // over the new instructions and zap any that are constants or dead. This
1457 // frequently happens because of phi translation.
Chris Lattner972a46c2010-01-12 20:41:47 +00001458 SimplifyInstructionsInBlock(NewBB, TD);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001459
Mike Stumpfe095f32009-05-04 18:40:41 +00001460 // Threaded an edge!
1461 ++NumThreads;
1462 return true;
Chris Lattner177480b2008-04-20 21:13:06 +00001463}
Chris Lattner78c552e2009-10-11 07:24:57 +00001464
1465/// DuplicateCondBranchOnPHIIntoPred - PredBB contains an unconditional branch
1466/// to BB which contains an i1 PHI node and a conditional branch on that PHI.
1467/// If we can duplicate the contents of BB up into PredBB do so now, this
1468/// improves the odds that the branch will be on an analyzable instruction like
1469/// a compare.
1470bool JumpThreading::DuplicateCondBranchOnPHIIntoPred(BasicBlock *BB,
Chris Lattner2249a0b2010-01-12 02:07:17 +00001471 const SmallVectorImpl<BasicBlock *> &PredBBs) {
1472 assert(!PredBBs.empty() && "Can't handle an empty set");
1473
Chris Lattner78c552e2009-10-11 07:24:57 +00001474 // If BB is a loop header, then duplicating this block outside the loop would
1475 // cause us to transform this into an irreducible loop, don't do this.
1476 // See the comments above FindLoopHeaders for justifications and caveats.
1477 if (LoopHeaders.count(BB)) {
David Greenefe7fe662010-01-05 01:27:19 +00001478 DEBUG(dbgs() << " Not duplicating loop header '" << BB->getName()
Chris Lattner2249a0b2010-01-12 02:07:17 +00001479 << "' into predecessor block '" << PredBBs[0]->getName()
Chris Lattner78c552e2009-10-11 07:24:57 +00001480 << "' - it might create an irreducible loop!\n");
1481 return false;
1482 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001483
Chris Lattner78c552e2009-10-11 07:24:57 +00001484 unsigned DuplicationCost = getJumpThreadDuplicationCost(BB);
1485 if (DuplicationCost > Threshold) {
David Greenefe7fe662010-01-05 01:27:19 +00001486 DEBUG(dbgs() << " Not duplicating BB '" << BB->getName()
Chris Lattner78c552e2009-10-11 07:24:57 +00001487 << "' - Cost is too high: " << DuplicationCost << "\n");
1488 return false;
1489 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001490
Chris Lattner2249a0b2010-01-12 02:07:17 +00001491 // And finally, do it! Start by factoring the predecessors is needed.
1492 BasicBlock *PredBB;
1493 if (PredBBs.size() == 1)
1494 PredBB = PredBBs[0];
1495 else {
1496 DEBUG(dbgs() << " Factoring out " << PredBBs.size()
1497 << " common predecessors.\n");
Jakub Staszak2fac1d52011-12-09 21:19:53 +00001498 PredBB = SplitBlockPredecessors(BB, PredBBs, ".thr_comm", this);
Chris Lattner2249a0b2010-01-12 02:07:17 +00001499 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001500
Chris Lattner78c552e2009-10-11 07:24:57 +00001501 // Okay, we decided to do this! Clone all the instructions in BB onto the end
1502 // of PredBB.
David Greenefe7fe662010-01-05 01:27:19 +00001503 DEBUG(dbgs() << " Duplicating block '" << BB->getName() << "' into end of '"
Chris Lattner78c552e2009-10-11 07:24:57 +00001504 << PredBB->getName() << "' to eliminate branch on phi. Cost: "
1505 << DuplicationCost << " block is:" << *BB << "\n");
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001506
Chris Lattner2249a0b2010-01-12 02:07:17 +00001507 // Unless PredBB ends with an unconditional branch, split the edge so that we
1508 // can just clone the bits from BB into the end of the new PredBB.
Chris Lattnerd6688392010-01-23 19:21:31 +00001509 BranchInst *OldPredBranch = dyn_cast<BranchInst>(PredBB->getTerminator());
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001510
Chris Lattnerd6688392010-01-23 19:21:31 +00001511 if (OldPredBranch == 0 || !OldPredBranch->isUnconditional()) {
Chris Lattner2249a0b2010-01-12 02:07:17 +00001512 PredBB = SplitEdge(PredBB, BB, this);
1513 OldPredBranch = cast<BranchInst>(PredBB->getTerminator());
1514 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001515
Chris Lattner78c552e2009-10-11 07:24:57 +00001516 // We are going to have to map operands from the original BB block into the
1517 // PredBB block. Evaluate PHI nodes in BB.
1518 DenseMap<Instruction*, Value*> ValueMapping;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001519
Chris Lattner78c552e2009-10-11 07:24:57 +00001520 BasicBlock::iterator BI = BB->begin();
1521 for (; PHINode *PN = dyn_cast<PHINode>(BI); ++BI)
1522 ValueMapping[PN] = PN->getIncomingValueForBlock(PredBB);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001523
Chris Lattner78c552e2009-10-11 07:24:57 +00001524 // Clone the non-phi instructions of BB into PredBB, keeping track of the
1525 // mapping and using it to remap operands in the cloned instructions.
1526 for (; BI != BB->end(); ++BI) {
1527 Instruction *New = BI->clone();
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001528
Chris Lattner78c552e2009-10-11 07:24:57 +00001529 // Remap operands to patch up intra-block references.
1530 for (unsigned i = 0, e = New->getNumOperands(); i != e; ++i)
1531 if (Instruction *Inst = dyn_cast<Instruction>(New->getOperand(i))) {
1532 DenseMap<Instruction*, Value*>::iterator I = ValueMapping.find(Inst);
1533 if (I != ValueMapping.end())
1534 New->setOperand(i, I->second);
1535 }
Chris Lattner972a46c2010-01-12 20:41:47 +00001536
1537 // If this instruction can be simplified after the operands are updated,
1538 // just use the simplified value instead. This frequently happens due to
1539 // phi translation.
1540 if (Value *IV = SimplifyInstruction(New, TD)) {
1541 delete New;
1542 ValueMapping[BI] = IV;
1543 } else {
1544 // Otherwise, insert the new instruction into the block.
1545 New->setName(BI->getName());
1546 PredBB->getInstList().insert(OldPredBranch, New);
1547 ValueMapping[BI] = New;
1548 }
Chris Lattner78c552e2009-10-11 07:24:57 +00001549 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001550
Chris Lattner78c552e2009-10-11 07:24:57 +00001551 // Check to see if the targets of the branch had PHI nodes. If so, we need to
1552 // add entries to the PHI nodes for branch from PredBB now.
1553 BranchInst *BBBranch = cast<BranchInst>(BB->getTerminator());
1554 AddPHINodeEntriesForMappedBlock(BBBranch->getSuccessor(0), BB, PredBB,
1555 ValueMapping);
1556 AddPHINodeEntriesForMappedBlock(BBBranch->getSuccessor(1), BB, PredBB,
1557 ValueMapping);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001558
Chris Lattner78c552e2009-10-11 07:24:57 +00001559 // If there were values defined in BB that are used outside the block, then we
1560 // now have to update all uses of the value to use either the original value,
1561 // the cloned value, or some PHI derived value. This can require arbitrary
1562 // PHI insertion, of which we are prepared to do, clean these up now.
1563 SSAUpdater SSAUpdate;
1564 SmallVector<Use*, 16> UsesToRename;
1565 for (BasicBlock::iterator I = BB->begin(); I != BB->end(); ++I) {
1566 // Scan all uses of this instruction to see if it is used outside of its
1567 // block, and if so, record them in UsesToRename.
1568 for (Value::use_iterator UI = I->use_begin(), E = I->use_end(); UI != E;
1569 ++UI) {
1570 Instruction *User = cast<Instruction>(*UI);
1571 if (PHINode *UserPN = dyn_cast<PHINode>(User)) {
1572 if (UserPN->getIncomingBlock(UI) == BB)
1573 continue;
1574 } else if (User->getParent() == BB)
1575 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001576
Chris Lattner78c552e2009-10-11 07:24:57 +00001577 UsesToRename.push_back(&UI.getUse());
1578 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001579
Chris Lattner78c552e2009-10-11 07:24:57 +00001580 // If there are no uses outside the block, we're done with this instruction.
1581 if (UsesToRename.empty())
1582 continue;
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001583
David Greenefe7fe662010-01-05 01:27:19 +00001584 DEBUG(dbgs() << "JT: Renaming non-local uses of: " << *I << "\n");
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001585
Chris Lattner78c552e2009-10-11 07:24:57 +00001586 // We found a use of I outside of BB. Rename all uses of I that are outside
1587 // its block to be uses of the appropriate PHI node etc. See ValuesInBlocks
1588 // with the two values we know.
Duncan Sandsfc6e29d2010-09-02 08:14:03 +00001589 SSAUpdate.Initialize(I->getType(), I->getName());
Chris Lattner78c552e2009-10-11 07:24:57 +00001590 SSAUpdate.AddAvailableValue(BB, I);
1591 SSAUpdate.AddAvailableValue(PredBB, ValueMapping[I]);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001592
Chris Lattner78c552e2009-10-11 07:24:57 +00001593 while (!UsesToRename.empty())
1594 SSAUpdate.RewriteUse(*UsesToRename.pop_back_val());
David Greenefe7fe662010-01-05 01:27:19 +00001595 DEBUG(dbgs() << "\n");
Chris Lattner78c552e2009-10-11 07:24:57 +00001596 }
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001597
Chris Lattner78c552e2009-10-11 07:24:57 +00001598 // PredBB no longer jumps to BB, remove entries in the PHI node for the edge
1599 // that we nuked.
Owen Anderson36c4deb2010-09-29 20:34:41 +00001600 BB->removePredecessor(PredBB, true);
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001601
Chris Lattner78c552e2009-10-11 07:24:57 +00001602 // Remove the unconditional branch at the end of the PredBB block.
1603 OldPredBranch->eraseFromParent();
Frits van Bommel6f9a8302010-12-05 19:02:47 +00001604
Chris Lattner78c552e2009-10-11 07:24:57 +00001605 ++NumDupes;
1606 return true;
1607}
1608
1609