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Owen Anderson78e02f72007-07-06 23:14:35 +00001//===- MemoryDependenceAnalysis.cpp - Mem Deps Implementation --*- C++ -*-===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Owen Anderson78e02f72007-07-06 23:14:35 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements an analysis that determines, for a given memory
11// operation, what preceding memory operations it depends on. It builds on
Owen Anderson80b1f092007-08-08 22:01:54 +000012// alias analysis information, and tries to provide a lazy, caching interface to
Owen Anderson78e02f72007-07-06 23:14:35 +000013// a common kind of alias information query.
14//
15//===----------------------------------------------------------------------===//
16
Chris Lattner0e575f42008-11-28 21:45:17 +000017#define DEBUG_TYPE "memdep"
Owen Anderson78e02f72007-07-06 23:14:35 +000018#include "llvm/Analysis/MemoryDependenceAnalysis.h"
19#include "llvm/Instructions.h"
Owen Andersonf6cec852009-03-09 05:12:38 +000020#include "llvm/IntrinsicInst.h"
Owen Anderson78e02f72007-07-06 23:14:35 +000021#include "llvm/Function.h"
Dan Gohmanc1ac0d72010-09-22 21:41:02 +000022#include "llvm/LLVMContext.h"
Owen Anderson78e02f72007-07-06 23:14:35 +000023#include "llvm/Analysis/AliasAnalysis.h"
Chris Lattner6f7b2102009-11-27 22:05:15 +000024#include "llvm/Analysis/Dominators.h"
Chris Lattnere19e4ba2009-11-27 00:34:38 +000025#include "llvm/Analysis/InstructionSimplify.h"
Victor Hernandezf006b182009-10-27 20:05:49 +000026#include "llvm/Analysis/MemoryBuiltins.h"
Chris Lattner05e15f82009-12-09 01:59:31 +000027#include "llvm/Analysis/PHITransAddr.h"
Dan Gohman5034dd32010-12-15 20:02:24 +000028#include "llvm/Analysis/ValueTracking.h"
Chris Lattnerbaad8882008-11-28 22:28:27 +000029#include "llvm/ADT/Statistic.h"
Duncan Sands7050f3d2008-12-10 09:38:36 +000030#include "llvm/ADT/STLExtras.h"
Chris Lattner4012fdd2008-12-09 06:28:49 +000031#include "llvm/Support/PredIteratorCache.h"
Chris Lattner0e575f42008-11-28 21:45:17 +000032#include "llvm/Support/Debug.h"
Benjamin Kramerdd061b22010-11-21 15:21:46 +000033#include "llvm/Target/TargetData.h"
Owen Anderson78e02f72007-07-06 23:14:35 +000034using namespace llvm;
35
Chris Lattnerbf145d62008-12-01 01:15:42 +000036STATISTIC(NumCacheNonLocal, "Number of fully cached non-local responses");
37STATISTIC(NumCacheDirtyNonLocal, "Number of dirty cached non-local responses");
Chris Lattner0ec48dd2008-11-29 22:02:15 +000038STATISTIC(NumUncacheNonLocal, "Number of uncached non-local responses");
Chris Lattner6290f5c2008-12-07 08:50:20 +000039
40STATISTIC(NumCacheNonLocalPtr,
41 "Number of fully cached non-local ptr responses");
42STATISTIC(NumCacheDirtyNonLocalPtr,
43 "Number of cached, but dirty, non-local ptr responses");
44STATISTIC(NumUncacheNonLocalPtr,
45 "Number of uncached non-local ptr responses");
Chris Lattner11dcd8d2008-12-08 07:31:50 +000046STATISTIC(NumCacheCompleteNonLocalPtr,
47 "Number of block queries that were completely cached");
Chris Lattner6290f5c2008-12-07 08:50:20 +000048
Eli Friedman992205a2011-06-15 23:59:25 +000049// Limit for the number of instructions to scan in a block.
50// FIXME: Figure out what a sane value is for this.
51// (500 is relatively insane.)
52static const int BlockScanLimit = 500;
53
Owen Anderson78e02f72007-07-06 23:14:35 +000054char MemoryDependenceAnalysis::ID = 0;
55
Owen Anderson78e02f72007-07-06 23:14:35 +000056// Register this pass...
Owen Anderson2ab36d32010-10-12 19:48:12 +000057INITIALIZE_PASS_BEGIN(MemoryDependenceAnalysis, "memdep",
Owen Andersonce665bd2010-10-07 22:25:06 +000058 "Memory Dependence Analysis", false, true)
Owen Anderson2ab36d32010-10-12 19:48:12 +000059INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
60INITIALIZE_PASS_END(MemoryDependenceAnalysis, "memdep",
61 "Memory Dependence Analysis", false, true)
Owen Anderson78e02f72007-07-06 23:14:35 +000062
Chris Lattner4012fdd2008-12-09 06:28:49 +000063MemoryDependenceAnalysis::MemoryDependenceAnalysis()
Owen Anderson90c579d2010-08-06 18:33:48 +000064: FunctionPass(ID), PredCache(0) {
Owen Anderson081c34b2010-10-19 17:21:58 +000065 initializeMemoryDependenceAnalysisPass(*PassRegistry::getPassRegistry());
Chris Lattner4012fdd2008-12-09 06:28:49 +000066}
67MemoryDependenceAnalysis::~MemoryDependenceAnalysis() {
68}
69
70/// Clean up memory in between runs
71void MemoryDependenceAnalysis::releaseMemory() {
72 LocalDeps.clear();
73 NonLocalDeps.clear();
74 NonLocalPointerDeps.clear();
75 ReverseLocalDeps.clear();
76 ReverseNonLocalDeps.clear();
77 ReverseNonLocalPtrDeps.clear();
78 PredCache->clear();
79}
80
81
82
Owen Anderson78e02f72007-07-06 23:14:35 +000083/// getAnalysisUsage - Does not modify anything. It uses Alias Analysis.
84///
85void MemoryDependenceAnalysis::getAnalysisUsage(AnalysisUsage &AU) const {
86 AU.setPreservesAll();
87 AU.addRequiredTransitive<AliasAnalysis>();
Owen Anderson78e02f72007-07-06 23:14:35 +000088}
89
Chris Lattnerd777d402008-11-30 19:24:31 +000090bool MemoryDependenceAnalysis::runOnFunction(Function &) {
91 AA = &getAnalysis<AliasAnalysis>();
Benjamin Kramerdd061b22010-11-21 15:21:46 +000092 TD = getAnalysisIfAvailable<TargetData>();
Nick Lewycky88990242011-11-14 22:49:42 +000093 DT = getAnalysisIfAvailable<DominatorTree>();
Chris Lattner4012fdd2008-12-09 06:28:49 +000094 if (PredCache == 0)
95 PredCache.reset(new PredIteratorCache());
Chris Lattnerd777d402008-11-30 19:24:31 +000096 return false;
97}
98
Chris Lattnerd44745d2008-12-07 18:39:13 +000099/// RemoveFromReverseMap - This is a helper function that removes Val from
100/// 'Inst's set in ReverseMap. If the set becomes empty, remove Inst's entry.
101template <typename KeyTy>
102static void RemoveFromReverseMap(DenseMap<Instruction*,
Chris Lattner6a0dcc12009-03-29 00:24:04 +0000103 SmallPtrSet<KeyTy, 4> > &ReverseMap,
104 Instruction *Inst, KeyTy Val) {
105 typename DenseMap<Instruction*, SmallPtrSet<KeyTy, 4> >::iterator
Chris Lattnerd44745d2008-12-07 18:39:13 +0000106 InstIt = ReverseMap.find(Inst);
107 assert(InstIt != ReverseMap.end() && "Reverse map out of sync?");
108 bool Found = InstIt->second.erase(Val);
Jeffrey Yasskin8e68c382010-12-23 00:58:24 +0000109 assert(Found && "Invalid reverse map!"); (void)Found;
Chris Lattnerd44745d2008-12-07 18:39:13 +0000110 if (InstIt->second.empty())
111 ReverseMap.erase(InstIt);
112}
113
Dan Gohman533c2ad2010-11-10 21:51:35 +0000114/// GetLocation - If the given instruction references a specific memory
115/// location, fill in Loc with the details, otherwise set Loc.Ptr to null.
116/// Return a ModRefInfo value describing the general behavior of the
117/// instruction.
118static
119AliasAnalysis::ModRefResult GetLocation(const Instruction *Inst,
120 AliasAnalysis::Location &Loc,
121 AliasAnalysis *AA) {
122 if (const LoadInst *LI = dyn_cast<LoadInst>(Inst)) {
Eli Friedman667ccf22011-08-15 20:54:19 +0000123 if (LI->isUnordered()) {
124 Loc = AA->getLocation(LI);
125 return AliasAnalysis::Ref;
126 } else if (LI->getOrdering() == Monotonic) {
127 Loc = AA->getLocation(LI);
Dan Gohman533c2ad2010-11-10 21:51:35 +0000128 return AliasAnalysis::ModRef;
129 }
Eli Friedman667ccf22011-08-15 20:54:19 +0000130 Loc = AliasAnalysis::Location();
131 return AliasAnalysis::ModRef;
Dan Gohman533c2ad2010-11-10 21:51:35 +0000132 }
133
134 if (const StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
Eli Friedman667ccf22011-08-15 20:54:19 +0000135 if (SI->isUnordered()) {
136 Loc = AA->getLocation(SI);
137 return AliasAnalysis::Mod;
138 } else if (SI->getOrdering() == Monotonic) {
139 Loc = AA->getLocation(SI);
Dan Gohman533c2ad2010-11-10 21:51:35 +0000140 return AliasAnalysis::ModRef;
141 }
Eli Friedman667ccf22011-08-15 20:54:19 +0000142 Loc = AliasAnalysis::Location();
143 return AliasAnalysis::ModRef;
Dan Gohman533c2ad2010-11-10 21:51:35 +0000144 }
145
146 if (const VAArgInst *V = dyn_cast<VAArgInst>(Inst)) {
Dan Gohman6d8eb152010-11-11 21:50:19 +0000147 Loc = AA->getLocation(V);
Dan Gohman533c2ad2010-11-10 21:51:35 +0000148 return AliasAnalysis::ModRef;
149 }
150
151 if (const CallInst *CI = isFreeCall(Inst)) {
152 // calls to free() deallocate the entire structure
153 Loc = AliasAnalysis::Location(CI->getArgOperand(0));
154 return AliasAnalysis::Mod;
155 }
156
157 if (const IntrinsicInst *II = dyn_cast<IntrinsicInst>(Inst))
158 switch (II->getIntrinsicID()) {
159 case Intrinsic::lifetime_start:
160 case Intrinsic::lifetime_end:
161 case Intrinsic::invariant_start:
162 Loc = AliasAnalysis::Location(II->getArgOperand(1),
163 cast<ConstantInt>(II->getArgOperand(0))
164 ->getZExtValue(),
165 II->getMetadata(LLVMContext::MD_tbaa));
166 // These intrinsics don't really modify the memory, but returning Mod
167 // will allow them to be handled conservatively.
168 return AliasAnalysis::Mod;
169 case Intrinsic::invariant_end:
170 Loc = AliasAnalysis::Location(II->getArgOperand(2),
171 cast<ConstantInt>(II->getArgOperand(1))
172 ->getZExtValue(),
173 II->getMetadata(LLVMContext::MD_tbaa));
174 // These intrinsics don't really modify the memory, but returning Mod
175 // will allow them to be handled conservatively.
176 return AliasAnalysis::Mod;
177 default:
178 break;
179 }
180
181 // Otherwise, just do the coarse-grained thing that always works.
182 if (Inst->mayWriteToMemory())
183 return AliasAnalysis::ModRef;
184 if (Inst->mayReadFromMemory())
185 return AliasAnalysis::Ref;
186 return AliasAnalysis::NoModRef;
187}
Chris Lattnerbf145d62008-12-01 01:15:42 +0000188
Chris Lattner8ef57c52008-12-07 00:35:51 +0000189/// getCallSiteDependencyFrom - Private helper for finding the local
190/// dependencies of a call site.
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000191MemDepResult MemoryDependenceAnalysis::
Chris Lattner20d6f092008-12-09 21:19:42 +0000192getCallSiteDependencyFrom(CallSite CS, bool isReadOnlyCall,
193 BasicBlock::iterator ScanIt, BasicBlock *BB) {
Eli Friedman992205a2011-06-15 23:59:25 +0000194 unsigned Limit = BlockScanLimit;
195
Owen Anderson642a9e32007-08-08 22:26:03 +0000196 // Walk backwards through the block, looking for dependencies
Chris Lattner5391a1d2008-11-29 03:47:00 +0000197 while (ScanIt != BB->begin()) {
Eli Friedman992205a2011-06-15 23:59:25 +0000198 // Limit the amount of scanning we do so we don't end up with quadratic
199 // running time on extreme testcases.
200 --Limit;
201 if (!Limit)
202 return MemDepResult::getUnknown();
203
Chris Lattner5391a1d2008-11-29 03:47:00 +0000204 Instruction *Inst = --ScanIt;
Owen Anderson5f323202007-07-10 17:59:22 +0000205
206 // If this inst is a memory op, get the pointer it accessed
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000207 AliasAnalysis::Location Loc;
Dan Gohman533c2ad2010-11-10 21:51:35 +0000208 AliasAnalysis::ModRefResult MR = GetLocation(Inst, Loc, AA);
209 if (Loc.Ptr) {
210 // A simple instruction.
211 if (AA->getModRefInfo(CS, Loc) != AliasAnalysis::NoModRef)
212 return MemDepResult::getClobber(Inst);
213 continue;
214 }
215
216 if (CallSite InstCS = cast<Value>(Inst)) {
Owen Andersonf6cec852009-03-09 05:12:38 +0000217 // Debug intrinsics don't cause dependences.
Dale Johannesen497cb6f2009-03-11 21:13:01 +0000218 if (isa<DbgInfoIntrinsic>(Inst)) continue;
Chris Lattnerb51deb92008-12-05 21:04:20 +0000219 // If these two calls do not interfere, look past it.
Chris Lattner20d6f092008-12-09 21:19:42 +0000220 switch (AA->getModRefInfo(CS, InstCS)) {
221 case AliasAnalysis::NoModRef:
Dan Gohman5fa417c2010-08-05 22:09:15 +0000222 // If the two calls are the same, return InstCS as a Def, so that
223 // CS can be found redundant and eliminated.
Dan Gohman533c2ad2010-11-10 21:51:35 +0000224 if (isReadOnlyCall && !(MR & AliasAnalysis::Mod) &&
Dan Gohman5fa417c2010-08-05 22:09:15 +0000225 CS.getInstruction()->isIdenticalToWhenDefined(Inst))
226 return MemDepResult::getDef(Inst);
227
228 // Otherwise if the two calls don't interact (e.g. InstCS is readnone)
229 // keep scanning.
Dan Gohman533c2ad2010-11-10 21:51:35 +0000230 break;
Chris Lattner20d6f092008-12-09 21:19:42 +0000231 default:
Chris Lattnerb51deb92008-12-05 21:04:20 +0000232 return MemDepResult::getClobber(Inst);
Chris Lattner20d6f092008-12-09 21:19:42 +0000233 }
Chris Lattnercfbb6342008-11-30 01:44:00 +0000234 }
Owen Anderson5f323202007-07-10 17:59:22 +0000235 }
236
Eli Friedmana990e072011-06-15 00:47:34 +0000237 // No dependence found. If this is the entry block of the function, it is
238 // unknown, otherwise it is non-local.
Chris Lattner7ebcf032008-12-07 02:15:47 +0000239 if (BB != &BB->getParent()->getEntryBlock())
240 return MemDepResult::getNonLocal();
Eli Friedmanb4141422011-10-13 22:14:57 +0000241 return MemDepResult::getNonFuncLocal();
Owen Anderson5f323202007-07-10 17:59:22 +0000242}
243
Chris Lattnercb5fd742011-04-26 22:42:01 +0000244/// isLoadLoadClobberIfExtendedToFullWidth - Return true if LI is a load that
245/// would fully overlap MemLoc if done as a wider legal integer load.
246///
247/// MemLocBase, MemLocOffset are lazily computed here the first time the
248/// base/offs of memloc is needed.
249static bool
250isLoadLoadClobberIfExtendedToFullWidth(const AliasAnalysis::Location &MemLoc,
251 const Value *&MemLocBase,
252 int64_t &MemLocOffs,
Chris Lattner4034e142011-04-28 07:29:08 +0000253 const LoadInst *LI,
254 const TargetData *TD) {
Chris Lattnercb5fd742011-04-26 22:42:01 +0000255 // If we have no target data, we can't do this.
256 if (TD == 0) return false;
257
258 // If we haven't already computed the base/offset of MemLoc, do so now.
259 if (MemLocBase == 0)
260 MemLocBase = GetPointerBaseWithConstantOffset(MemLoc.Ptr, MemLocOffs, *TD);
261
Chris Lattner4034e142011-04-28 07:29:08 +0000262 unsigned Size = MemoryDependenceAnalysis::
263 getLoadLoadClobberFullWidthSize(MemLocBase, MemLocOffs, MemLoc.Size,
264 LI, *TD);
265 return Size != 0;
266}
267
268/// getLoadLoadClobberFullWidthSize - This is a little bit of analysis that
269/// looks at a memory location for a load (specified by MemLocBase, Offs,
270/// and Size) and compares it against a load. If the specified load could
271/// be safely widened to a larger integer load that is 1) still efficient,
272/// 2) safe for the target, and 3) would provide the specified memory
273/// location value, then this function returns the size in bytes of the
274/// load width to use. If not, this returns zero.
275unsigned MemoryDependenceAnalysis::
276getLoadLoadClobberFullWidthSize(const Value *MemLocBase, int64_t MemLocOffs,
277 unsigned MemLocSize, const LoadInst *LI,
278 const TargetData &TD) {
Eli Friedman667ccf22011-08-15 20:54:19 +0000279 // We can only extend simple integer loads.
280 if (!isa<IntegerType>(LI->getType()) || !LI->isSimple()) return 0;
Chris Lattner4034e142011-04-28 07:29:08 +0000281
Chris Lattnercb5fd742011-04-26 22:42:01 +0000282 // Get the base of this load.
283 int64_t LIOffs = 0;
284 const Value *LIBase =
Chris Lattner4034e142011-04-28 07:29:08 +0000285 GetPointerBaseWithConstantOffset(LI->getPointerOperand(), LIOffs, TD);
Chris Lattnercb5fd742011-04-26 22:42:01 +0000286
287 // If the two pointers are not based on the same pointer, we can't tell that
288 // they are related.
Chris Lattner4034e142011-04-28 07:29:08 +0000289 if (LIBase != MemLocBase) return 0;
Chris Lattnercb5fd742011-04-26 22:42:01 +0000290
291 // Okay, the two values are based on the same pointer, but returned as
292 // no-alias. This happens when we have things like two byte loads at "P+1"
293 // and "P+3". Check to see if increasing the size of the "LI" load up to its
294 // alignment (or the largest native integer type) will allow us to load all
295 // the bits required by MemLoc.
296
297 // If MemLoc is before LI, then no widening of LI will help us out.
Chris Lattner4034e142011-04-28 07:29:08 +0000298 if (MemLocOffs < LIOffs) return 0;
Chris Lattnercb5fd742011-04-26 22:42:01 +0000299
300 // Get the alignment of the load in bytes. We assume that it is safe to load
301 // any legal integer up to this size without a problem. For example, if we're
302 // looking at an i8 load on x86-32 that is known 1024 byte aligned, we can
303 // widen it up to an i32 load. If it is known 2-byte aligned, we can widen it
304 // to i16.
305 unsigned LoadAlign = LI->getAlignment();
306
Chris Lattner4034e142011-04-28 07:29:08 +0000307 int64_t MemLocEnd = MemLocOffs+MemLocSize;
Chris Lattnercb5fd742011-04-26 22:42:01 +0000308
309 // If no amount of rounding up will let MemLoc fit into LI, then bail out.
Chris Lattner4034e142011-04-28 07:29:08 +0000310 if (LIOffs+LoadAlign < MemLocEnd) return 0;
Chris Lattnercb5fd742011-04-26 22:42:01 +0000311
312 // This is the size of the load to try. Start with the next larger power of
313 // two.
314 unsigned NewLoadByteSize = LI->getType()->getPrimitiveSizeInBits()/8U;
315 NewLoadByteSize = NextPowerOf2(NewLoadByteSize);
316
317 while (1) {
318 // If this load size is bigger than our known alignment or would not fit
319 // into a native integer register, then we fail.
320 if (NewLoadByteSize > LoadAlign ||
Chris Lattner4034e142011-04-28 07:29:08 +0000321 !TD.fitsInLegalInteger(NewLoadByteSize*8))
322 return 0;
Chris Lattnercb5fd742011-04-26 22:42:01 +0000323
Kostya Serebryany0ca032b2012-02-06 22:48:56 +0000324 if (LIOffs+NewLoadByteSize > MemLocEnd &&
325 LI->getParent()->getParent()->hasFnAttr(Attribute::AddressSafety)) {
326 // We will be reading past the location accessed by the original program.
327 // While this is safe in a regular build, Address Safety analysis tools
328 // may start reporting false warnings. So, don't do widening.
329 return 0;
330 }
331
Chris Lattnercb5fd742011-04-26 22:42:01 +0000332 // If a load of this width would include all of MemLoc, then we succeed.
333 if (LIOffs+NewLoadByteSize >= MemLocEnd)
Chris Lattner4034e142011-04-28 07:29:08 +0000334 return NewLoadByteSize;
Chris Lattnercb5fd742011-04-26 22:42:01 +0000335
336 NewLoadByteSize <<= 1;
337 }
Chris Lattnercb5fd742011-04-26 22:42:01 +0000338}
339
Chris Lattnere79be942008-12-07 01:50:16 +0000340/// getPointerDependencyFrom - Return the instruction on which a memory
Dan Gohmancd5c1232010-10-29 01:14:04 +0000341/// location depends. If isLoad is true, this routine ignores may-aliases with
342/// read-only operations. If isLoad is false, this routine ignores may-aliases
343/// with reads from read-only locations.
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000344MemDepResult MemoryDependenceAnalysis::
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000345getPointerDependencyFrom(const AliasAnalysis::Location &MemLoc, bool isLoad,
Chris Lattnere79be942008-12-07 01:50:16 +0000346 BasicBlock::iterator ScanIt, BasicBlock *BB) {
Chris Lattner7ebcf032008-12-07 02:15:47 +0000347
Chris Lattnercb5fd742011-04-26 22:42:01 +0000348 const Value *MemLocBase = 0;
349 int64_t MemLocOffset = 0;
Eli Friedman992205a2011-06-15 23:59:25 +0000350
351 unsigned Limit = BlockScanLimit;
352
Chris Lattner6290f5c2008-12-07 08:50:20 +0000353 // Walk backwards through the basic block, looking for dependencies.
Chris Lattner5391a1d2008-11-29 03:47:00 +0000354 while (ScanIt != BB->begin()) {
Eli Friedman992205a2011-06-15 23:59:25 +0000355 // Limit the amount of scanning we do so we don't end up with quadratic
356 // running time on extreme testcases.
357 --Limit;
358 if (!Limit)
359 return MemDepResult::getUnknown();
360
Chris Lattner5391a1d2008-11-29 03:47:00 +0000361 Instruction *Inst = --ScanIt;
Chris Lattnera161ab02008-11-29 09:09:48 +0000362
Chris Lattner1ffb70f2009-12-01 21:15:15 +0000363 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(Inst)) {
Chris Lattner09981982010-09-06 03:58:04 +0000364 // Debug intrinsics don't (and can't) cause dependences.
Chris Lattnerc5a5cf22010-09-06 01:26:29 +0000365 if (isa<DbgInfoIntrinsic>(II)) continue;
Owen Anderson9ff5a232009-12-02 07:35:19 +0000366
Owen Andersonb62f7922009-10-28 07:05:35 +0000367 // If we reach a lifetime begin or end marker, then the query ends here
368 // because the value is undefined.
Chris Lattner09981982010-09-06 03:58:04 +0000369 if (II->getIntrinsicID() == Intrinsic::lifetime_start) {
Owen Anderson9ff5a232009-12-02 07:35:19 +0000370 // FIXME: This only considers queries directly on the invariant-tagged
371 // pointer, not on query pointers that are indexed off of them. It'd
Chris Lattnercb5fd742011-04-26 22:42:01 +0000372 // be nice to handle that at some point (the right approach is to use
373 // GetPointerBaseWithConstantOffset).
Chris Lattnerd5c7f7c2011-04-26 21:53:34 +0000374 if (AA->isMustAlias(AliasAnalysis::Location(II->getArgOperand(1)),
375 MemLoc))
Owen Andersonb62f7922009-10-28 07:05:35 +0000376 return MemDepResult::getDef(II);
Chris Lattner09981982010-09-06 03:58:04 +0000377 continue;
Owen Anderson4bc737c2009-10-28 06:18:42 +0000378 }
379 }
380
Chris Lattnercfbb6342008-11-30 01:44:00 +0000381 // Values depend on loads if the pointers are must aliased. This means that
382 // a load depends on another must aliased load from the same value.
Chris Lattnerb51deb92008-12-05 21:04:20 +0000383 if (LoadInst *LI = dyn_cast<LoadInst>(Inst)) {
Eli Friedman667ccf22011-08-15 20:54:19 +0000384 // Atomic loads have complications involved.
385 // FIXME: This is overly conservative.
386 if (!LI->isUnordered())
387 return MemDepResult::getClobber(LI);
388
Dan Gohman6d8eb152010-11-11 21:50:19 +0000389 AliasAnalysis::Location LoadLoc = AA->getLocation(LI);
Chris Lattnerb51deb92008-12-05 21:04:20 +0000390
391 // If we found a pointer, check if it could be the same as our pointer.
Dan Gohmancd5c1232010-10-29 01:14:04 +0000392 AliasAnalysis::AliasResult R = AA->alias(LoadLoc, MemLoc);
Chris Lattnera161ab02008-11-29 09:09:48 +0000393
Chris Lattner1f821512011-04-26 01:21:15 +0000394 if (isLoad) {
Chris Lattnercb5fd742011-04-26 22:42:01 +0000395 if (R == AliasAnalysis::NoAlias) {
396 // If this is an over-aligned integer load (for example,
397 // "load i8* %P, align 4") see if it would obviously overlap with the
398 // queried location if widened to a larger load (e.g. if the queried
399 // location is 1 byte at P+1). If so, return it as a load/load
400 // clobber result, allowing the client to decide to widen the load if
401 // it wants to.
Chris Lattnerdb125cf2011-07-18 04:54:35 +0000402 if (IntegerType *ITy = dyn_cast<IntegerType>(LI->getType()))
Chris Lattnercb5fd742011-04-26 22:42:01 +0000403 if (LI->getAlignment()*8 > ITy->getPrimitiveSizeInBits() &&
404 isLoadLoadClobberIfExtendedToFullWidth(MemLoc, MemLocBase,
405 MemLocOffset, LI, TD))
406 return MemDepResult::getClobber(Inst);
407
408 continue;
409 }
410
Chris Lattner1f821512011-04-26 01:21:15 +0000411 // Must aliased loads are defs of each other.
412 if (R == AliasAnalysis::MustAlias)
413 return MemDepResult::getDef(Inst);
414
Dan Gohmana3351a02011-06-04 06:48:50 +0000415#if 0 // FIXME: Temporarily disabled. GVN is cleverly rewriting loads
416 // in terms of clobbering loads, but since it does this by looking
417 // at the clobbering load directly, it doesn't know about any
418 // phi translation that may have happened along the way.
419
Chris Lattner1f821512011-04-26 01:21:15 +0000420 // If we have a partial alias, then return this as a clobber for the
421 // client to handle.
422 if (R == AliasAnalysis::PartialAlias)
423 return MemDepResult::getClobber(Inst);
Dan Gohmana3351a02011-06-04 06:48:50 +0000424#endif
Chris Lattner1f821512011-04-26 01:21:15 +0000425
426 // Random may-alias loads don't depend on each other without a
427 // dependence.
Chris Lattnera161ab02008-11-29 09:09:48 +0000428 continue;
Chris Lattner1f821512011-04-26 01:21:15 +0000429 }
Dan Gohmancd5c1232010-10-29 01:14:04 +0000430
Chris Lattnercb5fd742011-04-26 22:42:01 +0000431 // Stores don't depend on other no-aliased accesses.
432 if (R == AliasAnalysis::NoAlias)
433 continue;
434
Dan Gohmancd5c1232010-10-29 01:14:04 +0000435 // Stores don't alias loads from read-only memory.
Chris Lattner1f821512011-04-26 01:21:15 +0000436 if (AA->pointsToConstantMemory(LoadLoc))
Dan Gohmancd5c1232010-10-29 01:14:04 +0000437 continue;
438
Chris Lattner1f821512011-04-26 01:21:15 +0000439 // Stores depend on may/must aliased loads.
Chris Lattnerb51deb92008-12-05 21:04:20 +0000440 return MemDepResult::getDef(Inst);
441 }
442
443 if (StoreInst *SI = dyn_cast<StoreInst>(Inst)) {
Eli Friedman667ccf22011-08-15 20:54:19 +0000444 // Atomic stores have complications involved.
445 // FIXME: This is overly conservative.
446 if (!SI->isUnordered())
447 return MemDepResult::getClobber(SI);
448
Chris Lattnerab9cf122009-05-25 21:28:56 +0000449 // If alias analysis can tell that this store is guaranteed to not modify
450 // the query pointer, ignore it. Use getModRefInfo to handle cases where
451 // the query pointer points to constant memory etc.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000452 if (AA->getModRefInfo(SI, MemLoc) == AliasAnalysis::NoModRef)
Chris Lattnerab9cf122009-05-25 21:28:56 +0000453 continue;
454
455 // Ok, this store might clobber the query pointer. Check to see if it is
456 // a must alias: in this case, we want to return this as a def.
Dan Gohman6d8eb152010-11-11 21:50:19 +0000457 AliasAnalysis::Location StoreLoc = AA->getLocation(SI);
Chris Lattnerab9cf122009-05-25 21:28:56 +0000458
Chris Lattnerb51deb92008-12-05 21:04:20 +0000459 // If we found a pointer, check if it could be the same as our pointer.
Dan Gohman6d8eb152010-11-11 21:50:19 +0000460 AliasAnalysis::AliasResult R = AA->alias(StoreLoc, MemLoc);
Chris Lattnerb51deb92008-12-05 21:04:20 +0000461
462 if (R == AliasAnalysis::NoAlias)
463 continue;
Dan Gohman2cd19522010-12-13 22:47:57 +0000464 if (R == AliasAnalysis::MustAlias)
465 return MemDepResult::getDef(Inst);
466 return MemDepResult::getClobber(Inst);
Owen Anderson78e02f72007-07-06 23:14:35 +0000467 }
Chris Lattner237a8282008-11-30 01:39:32 +0000468
469 // If this is an allocation, and if we know that the accessed pointer is to
Chris Lattnerb51deb92008-12-05 21:04:20 +0000470 // the allocation, return Def. This means that there is no dependence and
Chris Lattner237a8282008-11-30 01:39:32 +0000471 // the access can be optimized based on that. For example, a load could
472 // turn into undef.
Victor Hernandez5c787362009-10-13 01:42:53 +0000473 // Note: Only determine this to be a malloc if Inst is the malloc call, not
474 // a subsequent bitcast of the malloc call result. There can be stores to
475 // the malloced memory between the malloc call and its bitcast uses, and we
476 // need to continue scanning until the malloc call.
Chris Lattner9b96eca2009-12-22 01:00:32 +0000477 if (isa<AllocaInst>(Inst) ||
478 (isa<CallInst>(Inst) && extractMallocCall(Inst))) {
Dan Gohmanbd1801b2011-01-24 18:53:32 +0000479 const Value *AccessPtr = GetUnderlyingObject(MemLoc.Ptr, TD);
Victor Hernandez46e83122009-09-18 21:34:51 +0000480
Chris Lattnerd5c7f7c2011-04-26 21:53:34 +0000481 if (AccessPtr == Inst || AA->isMustAlias(Inst, AccessPtr))
Victor Hernandez46e83122009-09-18 21:34:51 +0000482 return MemDepResult::getDef(Inst);
483 continue;
484 }
485
Chris Lattnerb51deb92008-12-05 21:04:20 +0000486 // See if this instruction (e.g. a call or vaarg) mod/ref's the pointer.
Chad Rosier3a884f52012-05-14 20:35:04 +0000487 AliasAnalysis::ModRefResult MR = AA->getModRefInfo(Inst, MemLoc);
488 // If necessary, perform additional analysis.
489 if (MR == AliasAnalysis::ModRef)
490 MR = AA->callCapturesBefore(Inst, MemLoc, DT);
491 switch (MR) {
Chris Lattner3579e442008-12-09 19:47:40 +0000492 case AliasAnalysis::NoModRef:
493 // If the call has no effect on the queried pointer, just ignore it.
Chris Lattner25a08142008-11-29 08:51:16 +0000494 continue;
Owen Andersona85a6642009-10-28 06:30:52 +0000495 case AliasAnalysis::Mod:
Owen Andersona85a6642009-10-28 06:30:52 +0000496 return MemDepResult::getClobber(Inst);
Chris Lattner3579e442008-12-09 19:47:40 +0000497 case AliasAnalysis::Ref:
498 // If the call is known to never store to the pointer, and if this is a
499 // load query, we can safely ignore it (scan past it).
500 if (isLoad)
501 continue;
Chris Lattner3579e442008-12-09 19:47:40 +0000502 default:
503 // Otherwise, there is a potential dependence. Return a clobber.
504 return MemDepResult::getClobber(Inst);
505 }
Owen Anderson78e02f72007-07-06 23:14:35 +0000506 }
507
Eli Friedmana990e072011-06-15 00:47:34 +0000508 // No dependence found. If this is the entry block of the function, it is
509 // unknown, otherwise it is non-local.
Chris Lattner7ebcf032008-12-07 02:15:47 +0000510 if (BB != &BB->getParent()->getEntryBlock())
511 return MemDepResult::getNonLocal();
Eli Friedmanb4141422011-10-13 22:14:57 +0000512 return MemDepResult::getNonFuncLocal();
Owen Anderson78e02f72007-07-06 23:14:35 +0000513}
514
Chris Lattner5391a1d2008-11-29 03:47:00 +0000515/// getDependency - Return the instruction on which a memory operation
516/// depends.
517MemDepResult MemoryDependenceAnalysis::getDependency(Instruction *QueryInst) {
518 Instruction *ScanPos = QueryInst;
519
520 // Check for a cached result
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000521 MemDepResult &LocalCache = LocalDeps[QueryInst];
Chris Lattner5391a1d2008-11-29 03:47:00 +0000522
Chris Lattner0ec48dd2008-11-29 22:02:15 +0000523 // If the cached entry is non-dirty, just return it. Note that this depends
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000524 // on MemDepResult's default constructing to 'dirty'.
525 if (!LocalCache.isDirty())
526 return LocalCache;
Chris Lattner5391a1d2008-11-29 03:47:00 +0000527
528 // Otherwise, if we have a dirty entry, we know we can start the scan at that
529 // instruction, which may save us some work.
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000530 if (Instruction *Inst = LocalCache.getInst()) {
Chris Lattner5391a1d2008-11-29 03:47:00 +0000531 ScanPos = Inst;
Chris Lattner4a69bad2008-11-30 02:52:26 +0000532
Chris Lattnerd44745d2008-12-07 18:39:13 +0000533 RemoveFromReverseMap(ReverseLocalDeps, Inst, QueryInst);
Chris Lattner4a69bad2008-11-30 02:52:26 +0000534 }
Chris Lattner5391a1d2008-11-29 03:47:00 +0000535
Chris Lattnere79be942008-12-07 01:50:16 +0000536 BasicBlock *QueryParent = QueryInst->getParent();
537
Chris Lattner5391a1d2008-11-29 03:47:00 +0000538 // Do the scan.
Chris Lattnere79be942008-12-07 01:50:16 +0000539 if (BasicBlock::iterator(QueryInst) == QueryParent->begin()) {
Eli Friedmana990e072011-06-15 00:47:34 +0000540 // No dependence found. If this is the entry block of the function, it is
541 // unknown, otherwise it is non-local.
Chris Lattner7ebcf032008-12-07 02:15:47 +0000542 if (QueryParent != &QueryParent->getParent()->getEntryBlock())
543 LocalCache = MemDepResult::getNonLocal();
544 else
Eli Friedmanb4141422011-10-13 22:14:57 +0000545 LocalCache = MemDepResult::getNonFuncLocal();
Dan Gohman533c2ad2010-11-10 21:51:35 +0000546 } else {
547 AliasAnalysis::Location MemLoc;
548 AliasAnalysis::ModRefResult MR = GetLocation(QueryInst, MemLoc, AA);
549 if (MemLoc.Ptr) {
550 // If we can do a pointer scan, make it happen.
551 bool isLoad = !(MR & AliasAnalysis::Mod);
Chris Lattner12bf43b2010-11-30 01:56:13 +0000552 if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(QueryInst))
Owen Andersone1edb172011-05-17 00:05:49 +0000553 isLoad |= II->getIntrinsicID() == Intrinsic::lifetime_start;
Chris Lattnerf6f1f062010-11-21 07:34:32 +0000554
Dan Gohman533c2ad2010-11-10 21:51:35 +0000555 LocalCache = getPointerDependencyFrom(MemLoc, isLoad, ScanPos,
556 QueryParent);
557 } else if (isa<CallInst>(QueryInst) || isa<InvokeInst>(QueryInst)) {
Gabor Greif622b7cf2010-07-27 22:02:00 +0000558 CallSite QueryCS(QueryInst);
Nick Lewycky93d33112009-12-05 06:37:24 +0000559 bool isReadOnly = AA->onlyReadsMemory(QueryCS);
560 LocalCache = getCallSiteDependencyFrom(QueryCS, isReadOnly, ScanPos,
561 QueryParent);
Dan Gohman533c2ad2010-11-10 21:51:35 +0000562 } else
563 // Non-memory instruction.
Eli Friedmana990e072011-06-15 00:47:34 +0000564 LocalCache = MemDepResult::getUnknown();
Nick Lewyckyd801c102009-11-28 21:27:49 +0000565 }
Chris Lattner5391a1d2008-11-29 03:47:00 +0000566
567 // Remember the result!
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000568 if (Instruction *I = LocalCache.getInst())
Chris Lattner8c465272008-11-29 09:20:15 +0000569 ReverseLocalDeps[I].insert(QueryInst);
Chris Lattner5391a1d2008-11-29 03:47:00 +0000570
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +0000571 return LocalCache;
Chris Lattner5391a1d2008-11-29 03:47:00 +0000572}
573
Chris Lattner12a7db32009-01-22 07:04:01 +0000574#ifndef NDEBUG
575/// AssertSorted - This method is used when -debug is specified to verify that
576/// cache arrays are properly kept sorted.
577static void AssertSorted(MemoryDependenceAnalysis::NonLocalDepInfo &Cache,
578 int Count = -1) {
579 if (Count == -1) Count = Cache.size();
580 if (Count == 0) return;
581
582 for (unsigned i = 1; i != unsigned(Count); ++i)
Chris Lattnere18b9712009-12-09 07:08:01 +0000583 assert(!(Cache[i] < Cache[i-1]) && "Cache isn't sorted!");
Chris Lattner12a7db32009-01-22 07:04:01 +0000584}
585#endif
586
Chris Lattner1559b362008-12-09 19:38:05 +0000587/// getNonLocalCallDependency - Perform a full dependency query for the
588/// specified call, returning the set of blocks that the value is
Chris Lattner37d041c2008-11-30 01:18:27 +0000589/// potentially live across. The returned set of results will include a
590/// "NonLocal" result for all blocks where the value is live across.
591///
Chris Lattner1559b362008-12-09 19:38:05 +0000592/// This method assumes the instruction returns a "NonLocal" dependency
Chris Lattner37d041c2008-11-30 01:18:27 +0000593/// within its own block.
594///
Chris Lattner1559b362008-12-09 19:38:05 +0000595/// This returns a reference to an internal data structure that may be
596/// invalidated on the next non-local query or when an instruction is
597/// removed. Clients must copy this data if they want it around longer than
598/// that.
Chris Lattnerbf145d62008-12-01 01:15:42 +0000599const MemoryDependenceAnalysis::NonLocalDepInfo &
Chris Lattner1559b362008-12-09 19:38:05 +0000600MemoryDependenceAnalysis::getNonLocalCallDependency(CallSite QueryCS) {
601 assert(getDependency(QueryCS.getInstruction()).isNonLocal() &&
602 "getNonLocalCallDependency should only be used on calls with non-local deps!");
603 PerInstNLInfo &CacheP = NonLocalDeps[QueryCS.getInstruction()];
Chris Lattnerbf145d62008-12-01 01:15:42 +0000604 NonLocalDepInfo &Cache = CacheP.first;
Chris Lattner37d041c2008-11-30 01:18:27 +0000605
606 /// DirtyBlocks - This is the set of blocks that need to be recomputed. In
607 /// the cached case, this can happen due to instructions being deleted etc. In
608 /// the uncached case, this starts out as the set of predecessors we care
609 /// about.
610 SmallVector<BasicBlock*, 32> DirtyBlocks;
611
612 if (!Cache.empty()) {
Chris Lattnerbf145d62008-12-01 01:15:42 +0000613 // Okay, we have a cache entry. If we know it is not dirty, just return it
614 // with no computation.
615 if (!CacheP.second) {
Dan Gohmanfe601042010-06-22 15:08:57 +0000616 ++NumCacheNonLocal;
Chris Lattnerbf145d62008-12-01 01:15:42 +0000617 return Cache;
618 }
619
Chris Lattner37d041c2008-11-30 01:18:27 +0000620 // If we already have a partially computed set of results, scan them to
Chris Lattnerbf145d62008-12-01 01:15:42 +0000621 // determine what is dirty, seeding our initial DirtyBlocks worklist.
622 for (NonLocalDepInfo::iterator I = Cache.begin(), E = Cache.end();
623 I != E; ++I)
Chris Lattnere18b9712009-12-09 07:08:01 +0000624 if (I->getResult().isDirty())
625 DirtyBlocks.push_back(I->getBB());
Chris Lattner37d041c2008-11-30 01:18:27 +0000626
Chris Lattnerbf145d62008-12-01 01:15:42 +0000627 // Sort the cache so that we can do fast binary search lookups below.
628 std::sort(Cache.begin(), Cache.end());
Chris Lattner37d041c2008-11-30 01:18:27 +0000629
Chris Lattnerbf145d62008-12-01 01:15:42 +0000630 ++NumCacheDirtyNonLocal;
Chris Lattner37d041c2008-11-30 01:18:27 +0000631 //cerr << "CACHED CASE: " << DirtyBlocks.size() << " dirty: "
632 // << Cache.size() << " cached: " << *QueryInst;
633 } else {
634 // Seed DirtyBlocks with each of the preds of QueryInst's block.
Chris Lattner1559b362008-12-09 19:38:05 +0000635 BasicBlock *QueryBB = QueryCS.getInstruction()->getParent();
Chris Lattner511b36c2008-12-09 06:44:17 +0000636 for (BasicBlock **PI = PredCache->GetPreds(QueryBB); *PI; ++PI)
637 DirtyBlocks.push_back(*PI);
Dan Gohmanfe601042010-06-22 15:08:57 +0000638 ++NumUncacheNonLocal;
Chris Lattner37d041c2008-11-30 01:18:27 +0000639 }
640
Chris Lattner20d6f092008-12-09 21:19:42 +0000641 // isReadonlyCall - If this is a read-only call, we can be more aggressive.
642 bool isReadonlyCall = AA->onlyReadsMemory(QueryCS);
Chris Lattner9e59c642008-12-15 03:35:32 +0000643
Chris Lattnerbf145d62008-12-01 01:15:42 +0000644 SmallPtrSet<BasicBlock*, 64> Visited;
645
646 unsigned NumSortedEntries = Cache.size();
Chris Lattner12a7db32009-01-22 07:04:01 +0000647 DEBUG(AssertSorted(Cache));
Chris Lattnerbf145d62008-12-01 01:15:42 +0000648
Chris Lattner37d041c2008-11-30 01:18:27 +0000649 // Iterate while we still have blocks to update.
650 while (!DirtyBlocks.empty()) {
651 BasicBlock *DirtyBB = DirtyBlocks.back();
652 DirtyBlocks.pop_back();
653
Chris Lattnerbf145d62008-12-01 01:15:42 +0000654 // Already processed this block?
655 if (!Visited.insert(DirtyBB))
656 continue;
Chris Lattner37d041c2008-11-30 01:18:27 +0000657
Chris Lattnerbf145d62008-12-01 01:15:42 +0000658 // Do a binary search to see if we already have an entry for this block in
659 // the cache set. If so, find it.
Chris Lattner12a7db32009-01-22 07:04:01 +0000660 DEBUG(AssertSorted(Cache, NumSortedEntries));
Chris Lattnerbf145d62008-12-01 01:15:42 +0000661 NonLocalDepInfo::iterator Entry =
662 std::upper_bound(Cache.begin(), Cache.begin()+NumSortedEntries,
Chris Lattnerdad451c2009-12-09 07:31:04 +0000663 NonLocalDepEntry(DirtyBB));
Chris Lattnere18b9712009-12-09 07:08:01 +0000664 if (Entry != Cache.begin() && prior(Entry)->getBB() == DirtyBB)
Chris Lattnerbf145d62008-12-01 01:15:42 +0000665 --Entry;
666
Chris Lattnere18b9712009-12-09 07:08:01 +0000667 NonLocalDepEntry *ExistingResult = 0;
Chris Lattnerbf145d62008-12-01 01:15:42 +0000668 if (Entry != Cache.begin()+NumSortedEntries &&
Chris Lattnere18b9712009-12-09 07:08:01 +0000669 Entry->getBB() == DirtyBB) {
Chris Lattnerbf145d62008-12-01 01:15:42 +0000670 // If we already have an entry, and if it isn't already dirty, the block
671 // is done.
Chris Lattnere18b9712009-12-09 07:08:01 +0000672 if (!Entry->getResult().isDirty())
Chris Lattnerbf145d62008-12-01 01:15:42 +0000673 continue;
674
675 // Otherwise, remember this slot so we can update the value.
Chris Lattnere18b9712009-12-09 07:08:01 +0000676 ExistingResult = &*Entry;
Chris Lattnerbf145d62008-12-01 01:15:42 +0000677 }
678
Chris Lattner37d041c2008-11-30 01:18:27 +0000679 // If the dirty entry has a pointer, start scanning from it so we don't have
680 // to rescan the entire block.
681 BasicBlock::iterator ScanPos = DirtyBB->end();
Chris Lattnerbf145d62008-12-01 01:15:42 +0000682 if (ExistingResult) {
Chris Lattnere18b9712009-12-09 07:08:01 +0000683 if (Instruction *Inst = ExistingResult->getResult().getInst()) {
Chris Lattnerbf145d62008-12-01 01:15:42 +0000684 ScanPos = Inst;
Chris Lattnerbf145d62008-12-01 01:15:42 +0000685 // We're removing QueryInst's use of Inst.
Chris Lattner1559b362008-12-09 19:38:05 +0000686 RemoveFromReverseMap(ReverseNonLocalDeps, Inst,
687 QueryCS.getInstruction());
Chris Lattnerbf145d62008-12-01 01:15:42 +0000688 }
Chris Lattnerf68f3102008-11-30 02:28:25 +0000689 }
Chris Lattner37d041c2008-11-30 01:18:27 +0000690
Chris Lattner73ec3cd2008-11-30 01:26:32 +0000691 // Find out if this block has a local dependency for QueryInst.
Chris Lattnerd8dd9342008-12-07 01:21:14 +0000692 MemDepResult Dep;
Chris Lattnere79be942008-12-07 01:50:16 +0000693
Chris Lattner1559b362008-12-09 19:38:05 +0000694 if (ScanPos != DirtyBB->begin()) {
Chris Lattner20d6f092008-12-09 21:19:42 +0000695 Dep = getCallSiteDependencyFrom(QueryCS, isReadonlyCall,ScanPos, DirtyBB);
Chris Lattner1559b362008-12-09 19:38:05 +0000696 } else if (DirtyBB != &DirtyBB->getParent()->getEntryBlock()) {
697 // No dependence found. If this is the entry block of the function, it is
Eli Friedmana990e072011-06-15 00:47:34 +0000698 // a clobber, otherwise it is unknown.
Chris Lattner1559b362008-12-09 19:38:05 +0000699 Dep = MemDepResult::getNonLocal();
Chris Lattnere79be942008-12-07 01:50:16 +0000700 } else {
Eli Friedmanb4141422011-10-13 22:14:57 +0000701 Dep = MemDepResult::getNonFuncLocal();
Chris Lattnere79be942008-12-07 01:50:16 +0000702 }
703
Chris Lattnerbf145d62008-12-01 01:15:42 +0000704 // If we had a dirty entry for the block, update it. Otherwise, just add
705 // a new entry.
706 if (ExistingResult)
Chris Lattner0ee443d2009-12-22 04:25:02 +0000707 ExistingResult->setResult(Dep);
Chris Lattnerbf145d62008-12-01 01:15:42 +0000708 else
Chris Lattner0ee443d2009-12-22 04:25:02 +0000709 Cache.push_back(NonLocalDepEntry(DirtyBB, Dep));
Chris Lattnerbf145d62008-12-01 01:15:42 +0000710
Chris Lattner37d041c2008-11-30 01:18:27 +0000711 // If the block has a dependency (i.e. it isn't completely transparent to
Chris Lattnerbf145d62008-12-01 01:15:42 +0000712 // the value), remember the association!
713 if (!Dep.isNonLocal()) {
Chris Lattner37d041c2008-11-30 01:18:27 +0000714 // Keep the ReverseNonLocalDeps map up to date so we can efficiently
715 // update this when we remove instructions.
Chris Lattnerbf145d62008-12-01 01:15:42 +0000716 if (Instruction *Inst = Dep.getInst())
Chris Lattner1559b362008-12-09 19:38:05 +0000717 ReverseNonLocalDeps[Inst].insert(QueryCS.getInstruction());
Chris Lattnerbf145d62008-12-01 01:15:42 +0000718 } else {
Chris Lattner37d041c2008-11-30 01:18:27 +0000719
Chris Lattnerbf145d62008-12-01 01:15:42 +0000720 // If the block *is* completely transparent to the load, we need to check
721 // the predecessors of this block. Add them to our worklist.
Chris Lattner511b36c2008-12-09 06:44:17 +0000722 for (BasicBlock **PI = PredCache->GetPreds(DirtyBB); *PI; ++PI)
723 DirtyBlocks.push_back(*PI);
Chris Lattnerbf145d62008-12-01 01:15:42 +0000724 }
Chris Lattner37d041c2008-11-30 01:18:27 +0000725 }
726
Chris Lattnerbf145d62008-12-01 01:15:42 +0000727 return Cache;
Chris Lattner37d041c2008-11-30 01:18:27 +0000728}
729
Chris Lattner7ebcf032008-12-07 02:15:47 +0000730/// getNonLocalPointerDependency - Perform a full dependency query for an
731/// access to the specified (non-volatile) memory location, returning the
732/// set of instructions that either define or clobber the value.
733///
734/// This method assumes the pointer has a "NonLocal" dependency within its
735/// own block.
736///
737void MemoryDependenceAnalysis::
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000738getNonLocalPointerDependency(const AliasAnalysis::Location &Loc, bool isLoad,
739 BasicBlock *FromBB,
Chris Lattner0ee443d2009-12-22 04:25:02 +0000740 SmallVectorImpl<NonLocalDepResult> &Result) {
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000741 assert(Loc.Ptr->getType()->isPointerTy() &&
Chris Lattner3f7eb5b2008-12-07 18:45:15 +0000742 "Can't get pointer deps of a non-pointer!");
Chris Lattner9a193fd2008-12-07 02:56:57 +0000743 Result.clear();
744
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000745 PHITransAddr Address(const_cast<Value *>(Loc.Ptr), TD);
Chris Lattner05e15f82009-12-09 01:59:31 +0000746
Chris Lattner9e59c642008-12-15 03:35:32 +0000747 // This is the set of blocks we've inspected, and the pointer we consider in
748 // each block. Because of critical edges, we currently bail out if querying
749 // a block with multiple different pointers. This can happen during PHI
750 // translation.
751 DenseMap<BasicBlock*, Value*> Visited;
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000752 if (!getNonLocalPointerDepFromBB(Address, Loc, isLoad, FromBB,
Chris Lattner9e59c642008-12-15 03:35:32 +0000753 Result, Visited, true))
754 return;
Chris Lattner3af23f82008-12-15 04:58:29 +0000755 Result.clear();
Chris Lattner0ee443d2009-12-22 04:25:02 +0000756 Result.push_back(NonLocalDepResult(FromBB,
Eli Friedmana990e072011-06-15 00:47:34 +0000757 MemDepResult::getUnknown(),
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000758 const_cast<Value *>(Loc.Ptr)));
Chris Lattner9a193fd2008-12-07 02:56:57 +0000759}
760
Chris Lattner9863c3f2008-12-09 07:47:11 +0000761/// GetNonLocalInfoForBlock - Compute the memdep value for BB with
762/// Pointer/PointeeSize using either cached information in Cache or by doing a
763/// lookup (which may use dirty cache info if available). If we do a lookup,
764/// add the result to the cache.
765MemDepResult MemoryDependenceAnalysis::
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000766GetNonLocalInfoForBlock(const AliasAnalysis::Location &Loc,
Chris Lattner9863c3f2008-12-09 07:47:11 +0000767 bool isLoad, BasicBlock *BB,
768 NonLocalDepInfo *Cache, unsigned NumSortedEntries) {
769
770 // Do a binary search to see if we already have an entry for this block in
771 // the cache set. If so, find it.
772 NonLocalDepInfo::iterator Entry =
773 std::upper_bound(Cache->begin(), Cache->begin()+NumSortedEntries,
Chris Lattnerdad451c2009-12-09 07:31:04 +0000774 NonLocalDepEntry(BB));
Chris Lattnere18b9712009-12-09 07:08:01 +0000775 if (Entry != Cache->begin() && (Entry-1)->getBB() == BB)
Chris Lattner9863c3f2008-12-09 07:47:11 +0000776 --Entry;
777
Chris Lattnere18b9712009-12-09 07:08:01 +0000778 NonLocalDepEntry *ExistingResult = 0;
779 if (Entry != Cache->begin()+NumSortedEntries && Entry->getBB() == BB)
780 ExistingResult = &*Entry;
Chris Lattner9863c3f2008-12-09 07:47:11 +0000781
782 // If we have a cached entry, and it is non-dirty, use it as the value for
783 // this dependency.
Chris Lattnere18b9712009-12-09 07:08:01 +0000784 if (ExistingResult && !ExistingResult->getResult().isDirty()) {
Chris Lattner9863c3f2008-12-09 07:47:11 +0000785 ++NumCacheNonLocalPtr;
Chris Lattnere18b9712009-12-09 07:08:01 +0000786 return ExistingResult->getResult();
Chris Lattner9863c3f2008-12-09 07:47:11 +0000787 }
788
789 // Otherwise, we have to scan for the value. If we have a dirty cache
790 // entry, start scanning from its position, otherwise we scan from the end
791 // of the block.
792 BasicBlock::iterator ScanPos = BB->end();
Chris Lattnere18b9712009-12-09 07:08:01 +0000793 if (ExistingResult && ExistingResult->getResult().getInst()) {
794 assert(ExistingResult->getResult().getInst()->getParent() == BB &&
Chris Lattner9863c3f2008-12-09 07:47:11 +0000795 "Instruction invalidated?");
796 ++NumCacheDirtyNonLocalPtr;
Chris Lattnere18b9712009-12-09 07:08:01 +0000797 ScanPos = ExistingResult->getResult().getInst();
Chris Lattner9863c3f2008-12-09 07:47:11 +0000798
799 // Eliminating the dirty entry from 'Cache', so update the reverse info.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000800 ValueIsLoadPair CacheKey(Loc.Ptr, isLoad);
Chris Lattner6a0dcc12009-03-29 00:24:04 +0000801 RemoveFromReverseMap(ReverseNonLocalPtrDeps, ScanPos, CacheKey);
Chris Lattner9863c3f2008-12-09 07:47:11 +0000802 } else {
803 ++NumUncacheNonLocalPtr;
804 }
805
806 // Scan the block for the dependency.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000807 MemDepResult Dep = getPointerDependencyFrom(Loc, isLoad, ScanPos, BB);
Chris Lattner9863c3f2008-12-09 07:47:11 +0000808
809 // If we had a dirty entry for the block, update it. Otherwise, just add
810 // a new entry.
811 if (ExistingResult)
Chris Lattner0ee443d2009-12-22 04:25:02 +0000812 ExistingResult->setResult(Dep);
Chris Lattner9863c3f2008-12-09 07:47:11 +0000813 else
Chris Lattner0ee443d2009-12-22 04:25:02 +0000814 Cache->push_back(NonLocalDepEntry(BB, Dep));
Chris Lattner9863c3f2008-12-09 07:47:11 +0000815
816 // If the block has a dependency (i.e. it isn't completely transparent to
817 // the value), remember the reverse association because we just added it
818 // to Cache!
Eli Friedmanb4141422011-10-13 22:14:57 +0000819 if (!Dep.isDef() && !Dep.isClobber())
Chris Lattner9863c3f2008-12-09 07:47:11 +0000820 return Dep;
821
822 // Keep the ReverseNonLocalPtrDeps map up to date so we can efficiently
823 // update MemDep when we remove instructions.
824 Instruction *Inst = Dep.getInst();
825 assert(Inst && "Didn't depend on anything?");
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000826 ValueIsLoadPair CacheKey(Loc.Ptr, isLoad);
Chris Lattner6a0dcc12009-03-29 00:24:04 +0000827 ReverseNonLocalPtrDeps[Inst].insert(CacheKey);
Chris Lattner9863c3f2008-12-09 07:47:11 +0000828 return Dep;
829}
830
Chris Lattnera2f55dd2009-07-13 17:20:05 +0000831/// SortNonLocalDepInfoCache - Sort the a NonLocalDepInfo cache, given a certain
832/// number of elements in the array that are already properly ordered. This is
833/// optimized for the case when only a few entries are added.
834static void
835SortNonLocalDepInfoCache(MemoryDependenceAnalysis::NonLocalDepInfo &Cache,
836 unsigned NumSortedEntries) {
837 switch (Cache.size() - NumSortedEntries) {
838 case 0:
839 // done, no new entries.
840 break;
841 case 2: {
842 // Two new entries, insert the last one into place.
Chris Lattnere18b9712009-12-09 07:08:01 +0000843 NonLocalDepEntry Val = Cache.back();
Chris Lattnera2f55dd2009-07-13 17:20:05 +0000844 Cache.pop_back();
845 MemoryDependenceAnalysis::NonLocalDepInfo::iterator Entry =
846 std::upper_bound(Cache.begin(), Cache.end()-1, Val);
847 Cache.insert(Entry, Val);
848 // FALL THROUGH.
849 }
850 case 1:
851 // One new entry, Just insert the new value at the appropriate position.
852 if (Cache.size() != 1) {
Chris Lattnere18b9712009-12-09 07:08:01 +0000853 NonLocalDepEntry Val = Cache.back();
Chris Lattnera2f55dd2009-07-13 17:20:05 +0000854 Cache.pop_back();
855 MemoryDependenceAnalysis::NonLocalDepInfo::iterator Entry =
856 std::upper_bound(Cache.begin(), Cache.end(), Val);
857 Cache.insert(Entry, Val);
858 }
859 break;
860 default:
861 // Added many values, do a full scale sort.
862 std::sort(Cache.begin(), Cache.end());
863 break;
864 }
865}
866
Chris Lattner9e59c642008-12-15 03:35:32 +0000867/// getNonLocalPointerDepFromBB - Perform a dependency query based on
868/// pointer/pointeesize starting at the end of StartBB. Add any clobber/def
869/// results to the results vector and keep track of which blocks are visited in
870/// 'Visited'.
871///
872/// This has special behavior for the first block queries (when SkipFirstBlock
873/// is true). In this special case, it ignores the contents of the specified
874/// block and starts returning dependence info for its predecessors.
875///
876/// This function returns false on success, or true to indicate that it could
877/// not compute dependence information for some reason. This should be treated
878/// as a clobber dependence on the first instruction in the predecessor block.
879bool MemoryDependenceAnalysis::
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000880getNonLocalPointerDepFromBB(const PHITransAddr &Pointer,
881 const AliasAnalysis::Location &Loc,
Chris Lattner9863c3f2008-12-09 07:47:11 +0000882 bool isLoad, BasicBlock *StartBB,
Chris Lattner0ee443d2009-12-22 04:25:02 +0000883 SmallVectorImpl<NonLocalDepResult> &Result,
Chris Lattner9e59c642008-12-15 03:35:32 +0000884 DenseMap<BasicBlock*, Value*> &Visited,
885 bool SkipFirstBlock) {
Chris Lattner66364342009-09-20 22:44:26 +0000886
Chris Lattner6290f5c2008-12-07 08:50:20 +0000887 // Look up the cached info for Pointer.
Chris Lattner05e15f82009-12-09 01:59:31 +0000888 ValueIsLoadPair CacheKey(Pointer.getAddr(), isLoad);
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000889
Dan Gohman075fb5d2010-11-10 20:37:15 +0000890 // Set up a temporary NLPI value. If the map doesn't yet have an entry for
891 // CacheKey, this value will be inserted as the associated value. Otherwise,
892 // it'll be ignored, and we'll have to check to see if the cached size and
893 // tbaa tag are consistent with the current query.
894 NonLocalPointerInfo InitialNLPI;
895 InitialNLPI.Size = Loc.Size;
896 InitialNLPI.TBAATag = Loc.TBAATag;
897
898 // Get the NLPI for CacheKey, inserting one into the map if it doesn't
899 // already have one.
900 std::pair<CachedNonLocalPointerInfo::iterator, bool> Pair =
901 NonLocalPointerDeps.insert(std::make_pair(CacheKey, InitialNLPI));
902 NonLocalPointerInfo *CacheInfo = &Pair.first->second;
903
Dan Gohman733c54d2010-11-10 21:45:11 +0000904 // If we already have a cache entry for this CacheKey, we may need to do some
905 // work to reconcile the cache entry and the current query.
Dan Gohman075fb5d2010-11-10 20:37:15 +0000906 if (!Pair.second) {
Dan Gohman733c54d2010-11-10 21:45:11 +0000907 if (CacheInfo->Size < Loc.Size) {
908 // The query's Size is greater than the cached one. Throw out the
Benjamin Kramerd9b0b022012-06-02 10:20:22 +0000909 // cached data and proceed with the query at the greater size.
Dan Gohman733c54d2010-11-10 21:45:11 +0000910 CacheInfo->Pair = BBSkipFirstBlockPair();
911 CacheInfo->Size = Loc.Size;
Dan Gohman2365f082010-11-10 22:35:02 +0000912 for (NonLocalDepInfo::iterator DI = CacheInfo->NonLocalDeps.begin(),
913 DE = CacheInfo->NonLocalDeps.end(); DI != DE; ++DI)
914 if (Instruction *Inst = DI->getResult().getInst())
915 RemoveFromReverseMap(ReverseNonLocalPtrDeps, Inst, CacheKey);
Dan Gohman733c54d2010-11-10 21:45:11 +0000916 CacheInfo->NonLocalDeps.clear();
917 } else if (CacheInfo->Size > Loc.Size) {
918 // This query's Size is less than the cached one. Conservatively restart
919 // the query using the greater size.
Dan Gohman075fb5d2010-11-10 20:37:15 +0000920 return getNonLocalPointerDepFromBB(Pointer,
921 Loc.getWithNewSize(CacheInfo->Size),
922 isLoad, StartBB, Result, Visited,
923 SkipFirstBlock);
924 }
925
Dan Gohman733c54d2010-11-10 21:45:11 +0000926 // If the query's TBAATag is inconsistent with the cached one,
927 // conservatively throw out the cached data and restart the query with
928 // no tag if needed.
Dan Gohman075fb5d2010-11-10 20:37:15 +0000929 if (CacheInfo->TBAATag != Loc.TBAATag) {
Dan Gohman733c54d2010-11-10 21:45:11 +0000930 if (CacheInfo->TBAATag) {
931 CacheInfo->Pair = BBSkipFirstBlockPair();
932 CacheInfo->TBAATag = 0;
Dan Gohman2365f082010-11-10 22:35:02 +0000933 for (NonLocalDepInfo::iterator DI = CacheInfo->NonLocalDeps.begin(),
934 DE = CacheInfo->NonLocalDeps.end(); DI != DE; ++DI)
935 if (Instruction *Inst = DI->getResult().getInst())
936 RemoveFromReverseMap(ReverseNonLocalPtrDeps, Inst, CacheKey);
Dan Gohman733c54d2010-11-10 21:45:11 +0000937 CacheInfo->NonLocalDeps.clear();
938 }
939 if (Loc.TBAATag)
940 return getNonLocalPointerDepFromBB(Pointer, Loc.getWithoutTBAATag(),
941 isLoad, StartBB, Result, Visited,
942 SkipFirstBlock);
Dan Gohman075fb5d2010-11-10 20:37:15 +0000943 }
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000944 }
945
946 NonLocalDepInfo *Cache = &CacheInfo->NonLocalDeps;
Chris Lattner11dcd8d2008-12-08 07:31:50 +0000947
948 // If we have valid cached information for exactly the block we are
949 // investigating, just return it with no recomputation.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000950 if (CacheInfo->Pair == BBSkipFirstBlockPair(StartBB, SkipFirstBlock)) {
Chris Lattnerf4789512008-12-16 07:10:09 +0000951 // We have a fully cached result for this query then we can just return the
952 // cached results and populate the visited set. However, we have to verify
953 // that we don't already have conflicting results for these blocks. Check
954 // to ensure that if a block in the results set is in the visited set that
955 // it was for the same pointer query.
956 if (!Visited.empty()) {
957 for (NonLocalDepInfo::iterator I = Cache->begin(), E = Cache->end();
958 I != E; ++I) {
Chris Lattnere18b9712009-12-09 07:08:01 +0000959 DenseMap<BasicBlock*, Value*>::iterator VI = Visited.find(I->getBB());
Chris Lattner05e15f82009-12-09 01:59:31 +0000960 if (VI == Visited.end() || VI->second == Pointer.getAddr())
961 continue;
Chris Lattnerf4789512008-12-16 07:10:09 +0000962
963 // We have a pointer mismatch in a block. Just return clobber, saying
964 // that something was clobbered in this result. We could also do a
965 // non-fully cached query, but there is little point in doing this.
966 return true;
967 }
968 }
969
Chris Lattner0ee443d2009-12-22 04:25:02 +0000970 Value *Addr = Pointer.getAddr();
Chris Lattner11dcd8d2008-12-08 07:31:50 +0000971 for (NonLocalDepInfo::iterator I = Cache->begin(), E = Cache->end();
Chris Lattnerf4789512008-12-16 07:10:09 +0000972 I != E; ++I) {
Chris Lattner0ee443d2009-12-22 04:25:02 +0000973 Visited.insert(std::make_pair(I->getBB(), Addr));
Chris Lattnere18b9712009-12-09 07:08:01 +0000974 if (!I->getResult().isNonLocal())
Chris Lattner0ee443d2009-12-22 04:25:02 +0000975 Result.push_back(NonLocalDepResult(I->getBB(), I->getResult(), Addr));
Chris Lattnerf4789512008-12-16 07:10:09 +0000976 }
Chris Lattner11dcd8d2008-12-08 07:31:50 +0000977 ++NumCacheCompleteNonLocalPtr;
Chris Lattner9e59c642008-12-15 03:35:32 +0000978 return false;
Chris Lattner11dcd8d2008-12-08 07:31:50 +0000979 }
980
981 // Otherwise, either this is a new block, a block with an invalid cache
982 // pointer or one that we're about to invalidate by putting more info into it
983 // than its valid cache info. If empty, the result will be valid cache info,
984 // otherwise it isn't.
Chris Lattner9e59c642008-12-15 03:35:32 +0000985 if (Cache->empty())
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000986 CacheInfo->Pair = BBSkipFirstBlockPair(StartBB, SkipFirstBlock);
Dan Gohman8a66a202010-11-11 00:42:22 +0000987 else
Dan Gohmanc1ac0d72010-09-22 21:41:02 +0000988 CacheInfo->Pair = BBSkipFirstBlockPair();
Chris Lattner11dcd8d2008-12-08 07:31:50 +0000989
990 SmallVector<BasicBlock*, 32> Worklist;
991 Worklist.push_back(StartBB);
Chris Lattner6290f5c2008-12-07 08:50:20 +0000992
Eli Friedmanfc097972011-06-01 23:16:53 +0000993 // PredList used inside loop.
994 SmallVector<std::pair<BasicBlock*, PHITransAddr>, 16> PredList;
995
Chris Lattner6290f5c2008-12-07 08:50:20 +0000996 // Keep track of the entries that we know are sorted. Previously cached
997 // entries will all be sorted. The entries we add we only sort on demand (we
998 // don't insert every element into its sorted position). We know that we
999 // won't get any reuse from currently inserted values, because we don't
1000 // revisit blocks after we insert info for them.
1001 unsigned NumSortedEntries = Cache->size();
Chris Lattner12a7db32009-01-22 07:04:01 +00001002 DEBUG(AssertSorted(*Cache));
Chris Lattner6290f5c2008-12-07 08:50:20 +00001003
Chris Lattner7ebcf032008-12-07 02:15:47 +00001004 while (!Worklist.empty()) {
Chris Lattner9a193fd2008-12-07 02:56:57 +00001005 BasicBlock *BB = Worklist.pop_back_val();
Chris Lattner7ebcf032008-12-07 02:15:47 +00001006
Chris Lattner65633712008-12-09 07:52:59 +00001007 // Skip the first block if we have it.
Chris Lattner9e59c642008-12-15 03:35:32 +00001008 if (!SkipFirstBlock) {
Chris Lattner65633712008-12-09 07:52:59 +00001009 // Analyze the dependency of *Pointer in FromBB. See if we already have
1010 // been here.
Chris Lattner9e59c642008-12-15 03:35:32 +00001011 assert(Visited.count(BB) && "Should check 'visited' before adding to WL");
Chris Lattner6290f5c2008-12-07 08:50:20 +00001012
Chris Lattner65633712008-12-09 07:52:59 +00001013 // Get the dependency info for Pointer in BB. If we have cached
1014 // information, we will use it, otherwise we compute it.
Chris Lattner12a7db32009-01-22 07:04:01 +00001015 DEBUG(AssertSorted(*Cache, NumSortedEntries));
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001016 MemDepResult Dep = GetNonLocalInfoForBlock(Loc, isLoad, BB, Cache,
Chris Lattner05e15f82009-12-09 01:59:31 +00001017 NumSortedEntries);
Chris Lattner65633712008-12-09 07:52:59 +00001018
1019 // If we got a Def or Clobber, add this to the list of results.
1020 if (!Dep.isNonLocal()) {
Chris Lattner0ee443d2009-12-22 04:25:02 +00001021 Result.push_back(NonLocalDepResult(BB, Dep, Pointer.getAddr()));
Chris Lattner65633712008-12-09 07:52:59 +00001022 continue;
1023 }
Chris Lattner7ebcf032008-12-07 02:15:47 +00001024 }
1025
Chris Lattner9e59c642008-12-15 03:35:32 +00001026 // If 'Pointer' is an instruction defined in this block, then we need to do
1027 // phi translation to change it into a value live in the predecessor block.
Chris Lattner05e15f82009-12-09 01:59:31 +00001028 // If not, we just add the predecessors to the worklist and scan them with
1029 // the same Pointer.
1030 if (!Pointer.NeedsPHITranslationFromBlock(BB)) {
Chris Lattner9e59c642008-12-15 03:35:32 +00001031 SkipFirstBlock = false;
Eli Friedmanfc097972011-06-01 23:16:53 +00001032 SmallVector<BasicBlock*, 16> NewBlocks;
Chris Lattner9e59c642008-12-15 03:35:32 +00001033 for (BasicBlock **PI = PredCache->GetPreds(BB); *PI; ++PI) {
1034 // Verify that we haven't looked at this block yet.
1035 std::pair<DenseMap<BasicBlock*,Value*>::iterator, bool>
Chris Lattner05e15f82009-12-09 01:59:31 +00001036 InsertRes = Visited.insert(std::make_pair(*PI, Pointer.getAddr()));
Chris Lattner9e59c642008-12-15 03:35:32 +00001037 if (InsertRes.second) {
1038 // First time we've looked at *PI.
Eli Friedmanfc097972011-06-01 23:16:53 +00001039 NewBlocks.push_back(*PI);
Chris Lattner9e59c642008-12-15 03:35:32 +00001040 continue;
1041 }
1042
1043 // If we have seen this block before, but it was with a different
1044 // pointer then we have a phi translation failure and we have to treat
1045 // this as a clobber.
Eli Friedmanfc097972011-06-01 23:16:53 +00001046 if (InsertRes.first->second != Pointer.getAddr()) {
1047 // Make sure to clean up the Visited map before continuing on to
1048 // PredTranslationFailure.
1049 for (unsigned i = 0; i < NewBlocks.size(); i++)
1050 Visited.erase(NewBlocks[i]);
Chris Lattner9e59c642008-12-15 03:35:32 +00001051 goto PredTranslationFailure;
Eli Friedmanfc097972011-06-01 23:16:53 +00001052 }
Chris Lattner9e59c642008-12-15 03:35:32 +00001053 }
Eli Friedmanfc097972011-06-01 23:16:53 +00001054 Worklist.append(NewBlocks.begin(), NewBlocks.end());
Chris Lattner9e59c642008-12-15 03:35:32 +00001055 continue;
1056 }
1057
Chris Lattner05e15f82009-12-09 01:59:31 +00001058 // We do need to do phi translation, if we know ahead of time we can't phi
1059 // translate this value, don't even try.
1060 if (!Pointer.IsPotentiallyPHITranslatable())
1061 goto PredTranslationFailure;
1062
Chris Lattner6fbc1962009-07-13 17:14:23 +00001063 // We may have added values to the cache list before this PHI translation.
1064 // If so, we haven't done anything to ensure that the cache remains sorted.
1065 // Sort it now (if needed) so that recursive invocations of
1066 // getNonLocalPointerDepFromBB and other routines that could reuse the cache
1067 // value will only see properly sorted cache arrays.
1068 if (Cache && NumSortedEntries != Cache->size()) {
Chris Lattnera2f55dd2009-07-13 17:20:05 +00001069 SortNonLocalDepInfoCache(*Cache, NumSortedEntries);
Chris Lattner6fbc1962009-07-13 17:14:23 +00001070 NumSortedEntries = Cache->size();
1071 }
Chris Lattnere95035a2009-11-27 08:37:22 +00001072 Cache = 0;
Eli Friedmanfc097972011-06-01 23:16:53 +00001073
1074 PredList.clear();
Chris Lattnere95035a2009-11-27 08:37:22 +00001075 for (BasicBlock **PI = PredCache->GetPreds(BB); *PI; ++PI) {
1076 BasicBlock *Pred = *PI;
Eli Friedmanfc097972011-06-01 23:16:53 +00001077 PredList.push_back(std::make_pair(Pred, Pointer));
1078
Chris Lattner05e15f82009-12-09 01:59:31 +00001079 // Get the PHI translated pointer in this predecessor. This can fail if
1080 // not translatable, in which case the getAddr() returns null.
Eli Friedmanfc097972011-06-01 23:16:53 +00001081 PHITransAddr &PredPointer = PredList.back().second;
Daniel Dunbar6d8f2ca2010-02-24 08:48:04 +00001082 PredPointer.PHITranslateValue(BB, Pred, 0);
Chris Lattner05e15f82009-12-09 01:59:31 +00001083
1084 Value *PredPtrVal = PredPointer.getAddr();
Chris Lattnere95035a2009-11-27 08:37:22 +00001085
1086 // Check to see if we have already visited this pred block with another
1087 // pointer. If so, we can't do this lookup. This failure can occur
1088 // with PHI translation when a critical edge exists and the PHI node in
1089 // the successor translates to a pointer value different than the
1090 // pointer the block was first analyzed with.
1091 std::pair<DenseMap<BasicBlock*,Value*>::iterator, bool>
Chris Lattner05e15f82009-12-09 01:59:31 +00001092 InsertRes = Visited.insert(std::make_pair(Pred, PredPtrVal));
Chris Lattner9e59c642008-12-15 03:35:32 +00001093
Chris Lattnere95035a2009-11-27 08:37:22 +00001094 if (!InsertRes.second) {
Eli Friedmanfc097972011-06-01 23:16:53 +00001095 // We found the pred; take it off the list of preds to visit.
1096 PredList.pop_back();
1097
Chris Lattnere95035a2009-11-27 08:37:22 +00001098 // If the predecessor was visited with PredPtr, then we already did
1099 // the analysis and can ignore it.
Chris Lattner05e15f82009-12-09 01:59:31 +00001100 if (InsertRes.first->second == PredPtrVal)
Chris Lattnere95035a2009-11-27 08:37:22 +00001101 continue;
Chris Lattner9e59c642008-12-15 03:35:32 +00001102
Chris Lattnere95035a2009-11-27 08:37:22 +00001103 // Otherwise, the block was previously analyzed with a different
1104 // pointer. We can't represent the result of this case, so we just
1105 // treat this as a phi translation failure.
Eli Friedmanfc097972011-06-01 23:16:53 +00001106
1107 // Make sure to clean up the Visited map before continuing on to
1108 // PredTranslationFailure.
1109 for (unsigned i = 0; i < PredList.size(); i++)
1110 Visited.erase(PredList[i].first);
1111
Chris Lattnere95035a2009-11-27 08:37:22 +00001112 goto PredTranslationFailure;
Chris Lattner9e59c642008-12-15 03:35:32 +00001113 }
Eli Friedmanfc097972011-06-01 23:16:53 +00001114 }
1115
1116 // Actually process results here; this need to be a separate loop to avoid
1117 // calling getNonLocalPointerDepFromBB for blocks we don't want to return
1118 // any results for. (getNonLocalPointerDepFromBB will modify our
1119 // datastructures in ways the code after the PredTranslationFailure label
1120 // doesn't expect.)
1121 for (unsigned i = 0; i < PredList.size(); i++) {
1122 BasicBlock *Pred = PredList[i].first;
1123 PHITransAddr &PredPointer = PredList[i].second;
1124 Value *PredPtrVal = PredPointer.getAddr();
1125
1126 bool CanTranslate = true;
Chris Lattner6f7b2102009-11-27 22:05:15 +00001127 // If PHI translation was unable to find an available pointer in this
1128 // predecessor, then we have to assume that the pointer is clobbered in
1129 // that predecessor. We can still do PRE of the load, which would insert
1130 // a computation of the pointer in this predecessor.
Eli Friedmanfc097972011-06-01 23:16:53 +00001131 if (PredPtrVal == 0)
1132 CanTranslate = false;
1133
1134 // FIXME: it is entirely possible that PHI translating will end up with
1135 // the same value. Consider PHI translating something like:
1136 // X = phi [x, bb1], [y, bb2]. PHI translating for bb1 doesn't *need*
1137 // to recurse here, pedantically speaking.
1138
1139 // If getNonLocalPointerDepFromBB fails here, that means the cached
1140 // result conflicted with the Visited list; we have to conservatively
Eli Friedmana990e072011-06-15 00:47:34 +00001141 // assume it is unknown, but this also does not block PRE of the load.
Eli Friedmanfc097972011-06-01 23:16:53 +00001142 if (!CanTranslate ||
1143 getNonLocalPointerDepFromBB(PredPointer,
1144 Loc.getWithNewPtr(PredPtrVal),
1145 isLoad, Pred,
1146 Result, Visited)) {
Chris Lattner855d9da2009-12-01 07:33:32 +00001147 // Add the entry to the Result list.
Eli Friedmana990e072011-06-15 00:47:34 +00001148 NonLocalDepResult Entry(Pred, MemDepResult::getUnknown(), PredPtrVal);
Chris Lattner855d9da2009-12-01 07:33:32 +00001149 Result.push_back(Entry);
1150
Chris Lattnerf6481252009-12-19 21:29:22 +00001151 // Since we had a phi translation failure, the cache for CacheKey won't
1152 // include all of the entries that we need to immediately satisfy future
1153 // queries. Mark this in NonLocalPointerDeps by setting the
1154 // BBSkipFirstBlockPair pointer to null. This requires reuse of the
1155 // cached value to do more work but not miss the phi trans failure.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001156 NonLocalPointerInfo &NLPI = NonLocalPointerDeps[CacheKey];
1157 NLPI.Pair = BBSkipFirstBlockPair();
Chris Lattner6f7b2102009-11-27 22:05:15 +00001158 continue;
Chris Lattner6f7b2102009-11-27 22:05:15 +00001159 }
Chris Lattner9e59c642008-12-15 03:35:32 +00001160 }
Chris Lattnere95035a2009-11-27 08:37:22 +00001161
1162 // Refresh the CacheInfo/Cache pointer so that it isn't invalidated.
1163 CacheInfo = &NonLocalPointerDeps[CacheKey];
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001164 Cache = &CacheInfo->NonLocalDeps;
Chris Lattnere95035a2009-11-27 08:37:22 +00001165 NumSortedEntries = Cache->size();
1166
1167 // Since we did phi translation, the "Cache" set won't contain all of the
1168 // results for the query. This is ok (we can still use it to accelerate
1169 // specific block queries) but we can't do the fastpath "return all
1170 // results from the set" Clear out the indicator for this.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001171 CacheInfo->Pair = BBSkipFirstBlockPair();
Chris Lattnere95035a2009-11-27 08:37:22 +00001172 SkipFirstBlock = false;
1173 continue;
Chris Lattnerdc593112009-11-26 23:18:49 +00001174
Chris Lattner9e59c642008-12-15 03:35:32 +00001175 PredTranslationFailure:
Eli Friedmanfc097972011-06-01 23:16:53 +00001176 // The following code is "failure"; we can't produce a sane translation
1177 // for the given block. It assumes that we haven't modified any of
1178 // our datastructures while processing the current block.
Chris Lattner9e59c642008-12-15 03:35:32 +00001179
Chris Lattner95900f22009-01-23 07:12:16 +00001180 if (Cache == 0) {
1181 // Refresh the CacheInfo/Cache pointer if it got invalidated.
1182 CacheInfo = &NonLocalPointerDeps[CacheKey];
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001183 Cache = &CacheInfo->NonLocalDeps;
Chris Lattner95900f22009-01-23 07:12:16 +00001184 NumSortedEntries = Cache->size();
Chris Lattner95900f22009-01-23 07:12:16 +00001185 }
Chris Lattner6fbc1962009-07-13 17:14:23 +00001186
Chris Lattnerf6481252009-12-19 21:29:22 +00001187 // Since we failed phi translation, the "Cache" set won't contain all of the
Chris Lattner9e59c642008-12-15 03:35:32 +00001188 // results for the query. This is ok (we can still use it to accelerate
1189 // specific block queries) but we can't do the fastpath "return all
Chris Lattnerf6481252009-12-19 21:29:22 +00001190 // results from the set". Clear out the indicator for this.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001191 CacheInfo->Pair = BBSkipFirstBlockPair();
Chris Lattner9e59c642008-12-15 03:35:32 +00001192
Eli Friedmana990e072011-06-15 00:47:34 +00001193 // If *nothing* works, mark the pointer as unknown.
Chris Lattner9e59c642008-12-15 03:35:32 +00001194 //
1195 // If this is the magic first block, return this as a clobber of the whole
1196 // incoming value. Since we can't phi translate to one of the predecessors,
1197 // we have to bail out.
1198 if (SkipFirstBlock)
1199 return true;
1200
1201 for (NonLocalDepInfo::reverse_iterator I = Cache->rbegin(); ; ++I) {
1202 assert(I != Cache->rend() && "Didn't find current block??");
Chris Lattnere18b9712009-12-09 07:08:01 +00001203 if (I->getBB() != BB)
Chris Lattner9e59c642008-12-15 03:35:32 +00001204 continue;
1205
Chris Lattnere18b9712009-12-09 07:08:01 +00001206 assert(I->getResult().isNonLocal() &&
Chris Lattner9e59c642008-12-15 03:35:32 +00001207 "Should only be here with transparent block");
Eli Friedmana990e072011-06-15 00:47:34 +00001208 I->setResult(MemDepResult::getUnknown());
Chris Lattner0ee443d2009-12-22 04:25:02 +00001209 Result.push_back(NonLocalDepResult(I->getBB(), I->getResult(),
1210 Pointer.getAddr()));
Chris Lattner9e59c642008-12-15 03:35:32 +00001211 break;
Chris Lattner9a193fd2008-12-07 02:56:57 +00001212 }
Chris Lattner7ebcf032008-12-07 02:15:47 +00001213 }
Chris Lattner95900f22009-01-23 07:12:16 +00001214
Chris Lattner9863c3f2008-12-09 07:47:11 +00001215 // Okay, we're done now. If we added new values to the cache, re-sort it.
Chris Lattnera2f55dd2009-07-13 17:20:05 +00001216 SortNonLocalDepInfoCache(*Cache, NumSortedEntries);
Chris Lattner12a7db32009-01-22 07:04:01 +00001217 DEBUG(AssertSorted(*Cache));
Chris Lattner9e59c642008-12-15 03:35:32 +00001218 return false;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001219}
1220
1221/// RemoveCachedNonLocalPointerDependencies - If P exists in
1222/// CachedNonLocalPointerInfo, remove it.
1223void MemoryDependenceAnalysis::
1224RemoveCachedNonLocalPointerDependencies(ValueIsLoadPair P) {
1225 CachedNonLocalPointerInfo::iterator It =
1226 NonLocalPointerDeps.find(P);
1227 if (It == NonLocalPointerDeps.end()) return;
1228
1229 // Remove all of the entries in the BB->val map. This involves removing
1230 // instructions from the reverse map.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001231 NonLocalDepInfo &PInfo = It->second.NonLocalDeps;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001232
1233 for (unsigned i = 0, e = PInfo.size(); i != e; ++i) {
Chris Lattnere18b9712009-12-09 07:08:01 +00001234 Instruction *Target = PInfo[i].getResult().getInst();
Chris Lattner6290f5c2008-12-07 08:50:20 +00001235 if (Target == 0) continue; // Ignore non-local dep results.
Chris Lattnere18b9712009-12-09 07:08:01 +00001236 assert(Target->getParent() == PInfo[i].getBB());
Chris Lattner6290f5c2008-12-07 08:50:20 +00001237
1238 // Eliminating the dirty entry from 'Cache', so update the reverse info.
Chris Lattner6a0dcc12009-03-29 00:24:04 +00001239 RemoveFromReverseMap(ReverseNonLocalPtrDeps, Target, P);
Chris Lattner6290f5c2008-12-07 08:50:20 +00001240 }
1241
1242 // Remove P from NonLocalPointerDeps (which deletes NonLocalDepInfo).
1243 NonLocalPointerDeps.erase(It);
Chris Lattner7ebcf032008-12-07 02:15:47 +00001244}
1245
1246
Chris Lattnerbc99be12008-12-09 22:06:23 +00001247/// invalidateCachedPointerInfo - This method is used to invalidate cached
1248/// information about the specified pointer, because it may be too
1249/// conservative in memdep. This is an optional call that can be used when
1250/// the client detects an equivalence between the pointer and some other
1251/// value and replaces the other value with ptr. This can make Ptr available
1252/// in more places that cached info does not necessarily keep.
1253void MemoryDependenceAnalysis::invalidateCachedPointerInfo(Value *Ptr) {
1254 // If Ptr isn't really a pointer, just ignore it.
Duncan Sands1df98592010-02-16 11:11:14 +00001255 if (!Ptr->getType()->isPointerTy()) return;
Chris Lattnerbc99be12008-12-09 22:06:23 +00001256 // Flush store info for the pointer.
1257 RemoveCachedNonLocalPointerDependencies(ValueIsLoadPair(Ptr, false));
1258 // Flush load info for the pointer.
1259 RemoveCachedNonLocalPointerDependencies(ValueIsLoadPair(Ptr, true));
1260}
1261
Bob Wilson484d4a32010-02-16 19:51:59 +00001262/// invalidateCachedPredecessors - Clear the PredIteratorCache info.
1263/// This needs to be done when the CFG changes, e.g., due to splitting
1264/// critical edges.
1265void MemoryDependenceAnalysis::invalidateCachedPredecessors() {
1266 PredCache->clear();
1267}
1268
Owen Anderson78e02f72007-07-06 23:14:35 +00001269/// removeInstruction - Remove an instruction from the dependence analysis,
1270/// updating the dependence of instructions that previously depended on it.
Owen Anderson642a9e32007-08-08 22:26:03 +00001271/// This method attempts to keep the cache coherent using the reverse map.
Chris Lattner5f589dc2008-11-28 22:04:47 +00001272void MemoryDependenceAnalysis::removeInstruction(Instruction *RemInst) {
Chris Lattner5f589dc2008-11-28 22:04:47 +00001273 // Walk through the Non-local dependencies, removing this one as the value
1274 // for any cached queries.
Chris Lattnerf68f3102008-11-30 02:28:25 +00001275 NonLocalDepMapType::iterator NLDI = NonLocalDeps.find(RemInst);
1276 if (NLDI != NonLocalDeps.end()) {
Chris Lattnerbf145d62008-12-01 01:15:42 +00001277 NonLocalDepInfo &BlockMap = NLDI->second.first;
Chris Lattner25f4b2b2008-11-30 02:30:50 +00001278 for (NonLocalDepInfo::iterator DI = BlockMap.begin(), DE = BlockMap.end();
1279 DI != DE; ++DI)
Chris Lattnere18b9712009-12-09 07:08:01 +00001280 if (Instruction *Inst = DI->getResult().getInst())
Chris Lattnerd44745d2008-12-07 18:39:13 +00001281 RemoveFromReverseMap(ReverseNonLocalDeps, Inst, RemInst);
Chris Lattnerf68f3102008-11-30 02:28:25 +00001282 NonLocalDeps.erase(NLDI);
1283 }
Owen Anderson5fc4aba2007-12-08 01:37:09 +00001284
Chris Lattner5f589dc2008-11-28 22:04:47 +00001285 // If we have a cached local dependence query for this instruction, remove it.
Chris Lattnerbaad8882008-11-28 22:28:27 +00001286 //
Chris Lattner39f372e2008-11-29 01:43:36 +00001287 LocalDepMapType::iterator LocalDepEntry = LocalDeps.find(RemInst);
1288 if (LocalDepEntry != LocalDeps.end()) {
Chris Lattner125ce362008-11-30 01:09:30 +00001289 // Remove us from DepInst's reverse set now that the local dep info is gone.
Chris Lattnerd44745d2008-12-07 18:39:13 +00001290 if (Instruction *Inst = LocalDepEntry->second.getInst())
1291 RemoveFromReverseMap(ReverseLocalDeps, Inst, RemInst);
Chris Lattner125ce362008-11-30 01:09:30 +00001292
Chris Lattnerbaad8882008-11-28 22:28:27 +00001293 // Remove this local dependency info.
Chris Lattner39f372e2008-11-29 01:43:36 +00001294 LocalDeps.erase(LocalDepEntry);
Chris Lattner6290f5c2008-12-07 08:50:20 +00001295 }
1296
1297 // If we have any cached pointer dependencies on this instruction, remove
1298 // them. If the instruction has non-pointer type, then it can't be a pointer
1299 // base.
1300
1301 // Remove it from both the load info and the store info. The instruction
1302 // can't be in either of these maps if it is non-pointer.
Duncan Sands1df98592010-02-16 11:11:14 +00001303 if (RemInst->getType()->isPointerTy()) {
Chris Lattner6290f5c2008-12-07 08:50:20 +00001304 RemoveCachedNonLocalPointerDependencies(ValueIsLoadPair(RemInst, false));
1305 RemoveCachedNonLocalPointerDependencies(ValueIsLoadPair(RemInst, true));
1306 }
Chris Lattnerbaad8882008-11-28 22:28:27 +00001307
Chris Lattnerd3d12ec2008-11-28 22:51:08 +00001308 // Loop over all of the things that depend on the instruction we're removing.
1309 //
Chris Lattner4f8c18c2008-11-29 23:30:39 +00001310 SmallVector<std::pair<Instruction*, Instruction*>, 8> ReverseDepsToAdd;
Chris Lattner0655f732008-12-07 18:42:51 +00001311
1312 // If we find RemInst as a clobber or Def in any of the maps for other values,
1313 // we need to replace its entry with a dirty version of the instruction after
1314 // it. If RemInst is a terminator, we use a null dirty value.
1315 //
1316 // Using a dirty version of the instruction after RemInst saves having to scan
1317 // the entire block to get to this point.
1318 MemDepResult NewDirtyVal;
1319 if (!RemInst->isTerminator())
1320 NewDirtyVal = MemDepResult::getDirty(++BasicBlock::iterator(RemInst));
Chris Lattner4f8c18c2008-11-29 23:30:39 +00001321
Chris Lattner8c465272008-11-29 09:20:15 +00001322 ReverseDepMapType::iterator ReverseDepIt = ReverseLocalDeps.find(RemInst);
1323 if (ReverseDepIt != ReverseLocalDeps.end()) {
Chris Lattnerd3d12ec2008-11-28 22:51:08 +00001324 SmallPtrSet<Instruction*, 4> &ReverseDeps = ReverseDepIt->second;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001325 // RemInst can't be the terminator if it has local stuff depending on it.
Chris Lattner125ce362008-11-30 01:09:30 +00001326 assert(!ReverseDeps.empty() && !isa<TerminatorInst>(RemInst) &&
1327 "Nothing can locally depend on a terminator");
1328
Chris Lattnerd3d12ec2008-11-28 22:51:08 +00001329 for (SmallPtrSet<Instruction*, 4>::iterator I = ReverseDeps.begin(),
1330 E = ReverseDeps.end(); I != E; ++I) {
1331 Instruction *InstDependingOnRemInst = *I;
Chris Lattnerf68f3102008-11-30 02:28:25 +00001332 assert(InstDependingOnRemInst != RemInst &&
1333 "Already removed our local dep info");
Chris Lattner125ce362008-11-30 01:09:30 +00001334
Chris Lattner0655f732008-12-07 18:42:51 +00001335 LocalDeps[InstDependingOnRemInst] = NewDirtyVal;
Chris Lattnerd3d12ec2008-11-28 22:51:08 +00001336
Chris Lattner125ce362008-11-30 01:09:30 +00001337 // Make sure to remember that new things depend on NewDepInst.
Chris Lattner0655f732008-12-07 18:42:51 +00001338 assert(NewDirtyVal.getInst() && "There is no way something else can have "
1339 "a local dep on this if it is a terminator!");
1340 ReverseDepsToAdd.push_back(std::make_pair(NewDirtyVal.getInst(),
Chris Lattner125ce362008-11-30 01:09:30 +00001341 InstDependingOnRemInst));
Chris Lattnerd3d12ec2008-11-28 22:51:08 +00001342 }
Chris Lattner4f8c18c2008-11-29 23:30:39 +00001343
1344 ReverseLocalDeps.erase(ReverseDepIt);
1345
1346 // Add new reverse deps after scanning the set, to avoid invalidating the
1347 // 'ReverseDeps' reference.
1348 while (!ReverseDepsToAdd.empty()) {
1349 ReverseLocalDeps[ReverseDepsToAdd.back().first]
1350 .insert(ReverseDepsToAdd.back().second);
1351 ReverseDepsToAdd.pop_back();
1352 }
Owen Anderson78e02f72007-07-06 23:14:35 +00001353 }
Owen Anderson4d13de42007-08-16 21:27:05 +00001354
Chris Lattner8c465272008-11-29 09:20:15 +00001355 ReverseDepIt = ReverseNonLocalDeps.find(RemInst);
1356 if (ReverseDepIt != ReverseNonLocalDeps.end()) {
Chris Lattner6290f5c2008-12-07 08:50:20 +00001357 SmallPtrSet<Instruction*, 4> &Set = ReverseDepIt->second;
1358 for (SmallPtrSet<Instruction*, 4>::iterator I = Set.begin(), E = Set.end();
Chris Lattnerf68f3102008-11-30 02:28:25 +00001359 I != E; ++I) {
1360 assert(*I != RemInst && "Already removed NonLocalDep info for RemInst");
1361
Chris Lattner4a69bad2008-11-30 02:52:26 +00001362 PerInstNLInfo &INLD = NonLocalDeps[*I];
Chris Lattner4a69bad2008-11-30 02:52:26 +00001363 // The information is now dirty!
Chris Lattnerbf145d62008-12-01 01:15:42 +00001364 INLD.second = true;
Chris Lattnerf68f3102008-11-30 02:28:25 +00001365
Chris Lattnerbf145d62008-12-01 01:15:42 +00001366 for (NonLocalDepInfo::iterator DI = INLD.first.begin(),
1367 DE = INLD.first.end(); DI != DE; ++DI) {
Chris Lattnere18b9712009-12-09 07:08:01 +00001368 if (DI->getResult().getInst() != RemInst) continue;
Chris Lattnerf68f3102008-11-30 02:28:25 +00001369
1370 // Convert to a dirty entry for the subsequent instruction.
Chris Lattner0ee443d2009-12-22 04:25:02 +00001371 DI->setResult(NewDirtyVal);
Chris Lattner0655f732008-12-07 18:42:51 +00001372
1373 if (Instruction *NextI = NewDirtyVal.getInst())
Chris Lattnerf68f3102008-11-30 02:28:25 +00001374 ReverseDepsToAdd.push_back(std::make_pair(NextI, *I));
Chris Lattnerf68f3102008-11-30 02:28:25 +00001375 }
1376 }
Chris Lattner4f8c18c2008-11-29 23:30:39 +00001377
1378 ReverseNonLocalDeps.erase(ReverseDepIt);
1379
Chris Lattner0ec48dd2008-11-29 22:02:15 +00001380 // Add new reverse deps after scanning the set, to avoid invalidating 'Set'
1381 while (!ReverseDepsToAdd.empty()) {
1382 ReverseNonLocalDeps[ReverseDepsToAdd.back().first]
1383 .insert(ReverseDepsToAdd.back().second);
1384 ReverseDepsToAdd.pop_back();
1385 }
Owen Anderson4d13de42007-08-16 21:27:05 +00001386 }
Owen Anderson5fc4aba2007-12-08 01:37:09 +00001387
Chris Lattner6290f5c2008-12-07 08:50:20 +00001388 // If the instruction is in ReverseNonLocalPtrDeps then it appears as a
1389 // value in the NonLocalPointerDeps info.
1390 ReverseNonLocalPtrDepTy::iterator ReversePtrDepIt =
1391 ReverseNonLocalPtrDeps.find(RemInst);
1392 if (ReversePtrDepIt != ReverseNonLocalPtrDeps.end()) {
Chris Lattner6a0dcc12009-03-29 00:24:04 +00001393 SmallPtrSet<ValueIsLoadPair, 4> &Set = ReversePtrDepIt->second;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001394 SmallVector<std::pair<Instruction*, ValueIsLoadPair>,8> ReversePtrDepsToAdd;
1395
Chris Lattner6a0dcc12009-03-29 00:24:04 +00001396 for (SmallPtrSet<ValueIsLoadPair, 4>::iterator I = Set.begin(),
1397 E = Set.end(); I != E; ++I) {
1398 ValueIsLoadPair P = *I;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001399 assert(P.getPointer() != RemInst &&
1400 "Already removed NonLocalPointerDeps info for RemInst");
1401
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001402 NonLocalDepInfo &NLPDI = NonLocalPointerDeps[P].NonLocalDeps;
Chris Lattner11dcd8d2008-12-08 07:31:50 +00001403
1404 // The cache is not valid for any specific block anymore.
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001405 NonLocalPointerDeps[P].Pair = BBSkipFirstBlockPair();
Chris Lattner6290f5c2008-12-07 08:50:20 +00001406
Chris Lattner6290f5c2008-12-07 08:50:20 +00001407 // Update any entries for RemInst to use the instruction after it.
1408 for (NonLocalDepInfo::iterator DI = NLPDI.begin(), DE = NLPDI.end();
1409 DI != DE; ++DI) {
Chris Lattnere18b9712009-12-09 07:08:01 +00001410 if (DI->getResult().getInst() != RemInst) continue;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001411
1412 // Convert to a dirty entry for the subsequent instruction.
Chris Lattner0ee443d2009-12-22 04:25:02 +00001413 DI->setResult(NewDirtyVal);
Chris Lattner6290f5c2008-12-07 08:50:20 +00001414
1415 if (Instruction *NewDirtyInst = NewDirtyVal.getInst())
1416 ReversePtrDepsToAdd.push_back(std::make_pair(NewDirtyInst, P));
1417 }
Chris Lattner95900f22009-01-23 07:12:16 +00001418
1419 // Re-sort the NonLocalDepInfo. Changing the dirty entry to its
1420 // subsequent value may invalidate the sortedness.
1421 std::sort(NLPDI.begin(), NLPDI.end());
Chris Lattner6290f5c2008-12-07 08:50:20 +00001422 }
1423
1424 ReverseNonLocalPtrDeps.erase(ReversePtrDepIt);
1425
1426 while (!ReversePtrDepsToAdd.empty()) {
1427 ReverseNonLocalPtrDeps[ReversePtrDepsToAdd.back().first]
Chris Lattner6a0dcc12009-03-29 00:24:04 +00001428 .insert(ReversePtrDepsToAdd.back().second);
Chris Lattner6290f5c2008-12-07 08:50:20 +00001429 ReversePtrDepsToAdd.pop_back();
1430 }
1431 }
1432
1433
Chris Lattnerf68f3102008-11-30 02:28:25 +00001434 assert(!NonLocalDeps.count(RemInst) && "RemInst got reinserted?");
Chris Lattnerd777d402008-11-30 19:24:31 +00001435 AA->deleteValue(RemInst);
Jakob Stoklund Olesenf7624bc2011-01-11 04:05:39 +00001436 DEBUG(verifyRemoved(RemInst));
Owen Anderson78e02f72007-07-06 23:14:35 +00001437}
Chris Lattner729b2372008-11-29 21:25:10 +00001438/// verifyRemoved - Verify that the specified instruction does not occur
1439/// in our internal data structures.
1440void MemoryDependenceAnalysis::verifyRemoved(Instruction *D) const {
1441 for (LocalDepMapType::const_iterator I = LocalDeps.begin(),
1442 E = LocalDeps.end(); I != E; ++I) {
1443 assert(I->first != D && "Inst occurs in data structures");
Chris Lattnerfd3dcbe2008-11-30 23:17:19 +00001444 assert(I->second.getInst() != D &&
Chris Lattner729b2372008-11-29 21:25:10 +00001445 "Inst occurs in data structures");
1446 }
1447
Chris Lattner6290f5c2008-12-07 08:50:20 +00001448 for (CachedNonLocalPointerInfo::const_iterator I =NonLocalPointerDeps.begin(),
1449 E = NonLocalPointerDeps.end(); I != E; ++I) {
1450 assert(I->first.getPointer() != D && "Inst occurs in NLPD map key");
Dan Gohmanc1ac0d72010-09-22 21:41:02 +00001451 const NonLocalDepInfo &Val = I->second.NonLocalDeps;
Chris Lattner6290f5c2008-12-07 08:50:20 +00001452 for (NonLocalDepInfo::const_iterator II = Val.begin(), E = Val.end();
1453 II != E; ++II)
Chris Lattnere18b9712009-12-09 07:08:01 +00001454 assert(II->getResult().getInst() != D && "Inst occurs as NLPD value");
Chris Lattner6290f5c2008-12-07 08:50:20 +00001455 }
1456
Chris Lattner729b2372008-11-29 21:25:10 +00001457 for (NonLocalDepMapType::const_iterator I = NonLocalDeps.begin(),
1458 E = NonLocalDeps.end(); I != E; ++I) {
1459 assert(I->first != D && "Inst occurs in data structures");
Chris Lattner4a69bad2008-11-30 02:52:26 +00001460 const PerInstNLInfo &INLD = I->second;
Chris Lattnerbf145d62008-12-01 01:15:42 +00001461 for (NonLocalDepInfo::const_iterator II = INLD.first.begin(),
1462 EE = INLD.first.end(); II != EE; ++II)
Chris Lattnere18b9712009-12-09 07:08:01 +00001463 assert(II->getResult().getInst() != D && "Inst occurs in data structures");
Chris Lattner729b2372008-11-29 21:25:10 +00001464 }
1465
1466 for (ReverseDepMapType::const_iterator I = ReverseLocalDeps.begin(),
Chris Lattnerf68f3102008-11-30 02:28:25 +00001467 E = ReverseLocalDeps.end(); I != E; ++I) {
1468 assert(I->first != D && "Inst occurs in data structures");
Chris Lattner729b2372008-11-29 21:25:10 +00001469 for (SmallPtrSet<Instruction*, 4>::const_iterator II = I->second.begin(),
1470 EE = I->second.end(); II != EE; ++II)
1471 assert(*II != D && "Inst occurs in data structures");
Chris Lattnerf68f3102008-11-30 02:28:25 +00001472 }
Chris Lattner729b2372008-11-29 21:25:10 +00001473
1474 for (ReverseDepMapType::const_iterator I = ReverseNonLocalDeps.begin(),
1475 E = ReverseNonLocalDeps.end();
Chris Lattnerf68f3102008-11-30 02:28:25 +00001476 I != E; ++I) {
1477 assert(I->first != D && "Inst occurs in data structures");
Chris Lattner729b2372008-11-29 21:25:10 +00001478 for (SmallPtrSet<Instruction*, 4>::const_iterator II = I->second.begin(),
1479 EE = I->second.end(); II != EE; ++II)
1480 assert(*II != D && "Inst occurs in data structures");
Chris Lattnerf68f3102008-11-30 02:28:25 +00001481 }
Chris Lattner6290f5c2008-12-07 08:50:20 +00001482
1483 for (ReverseNonLocalPtrDepTy::const_iterator
1484 I = ReverseNonLocalPtrDeps.begin(),
1485 E = ReverseNonLocalPtrDeps.end(); I != E; ++I) {
1486 assert(I->first != D && "Inst occurs in rev NLPD map");
1487
Chris Lattner6a0dcc12009-03-29 00:24:04 +00001488 for (SmallPtrSet<ValueIsLoadPair, 4>::const_iterator II = I->second.begin(),
Chris Lattner6290f5c2008-12-07 08:50:20 +00001489 E = I->second.end(); II != E; ++II)
Chris Lattner6a0dcc12009-03-29 00:24:04 +00001490 assert(*II != ValueIsLoadPair(D, false) &&
1491 *II != ValueIsLoadPair(D, true) &&
Chris Lattner6290f5c2008-12-07 08:50:20 +00001492 "Inst occurs in ReverseNonLocalPtrDeps map");
1493 }
1494
Chris Lattner729b2372008-11-29 21:25:10 +00001495}