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Chris Lattner10f2d132009-11-11 00:22:30 +00001//===- LazyValueInfo.cpp - Value constraint analysis ----------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file defines the interface for lazy computation of value constraint
11// information.
12//
13//===----------------------------------------------------------------------===//
14
Chris Lattnerb8c124c2009-11-12 01:22:16 +000015#define DEBUG_TYPE "lazy-value-info"
Chris Lattner10f2d132009-11-11 00:22:30 +000016#include "llvm/Analysis/LazyValueInfo.h"
Dan Gohman5034dd32010-12-15 20:02:24 +000017#include "llvm/Analysis/ValueTracking.h"
Chris Lattnercc4d3b22009-11-11 02:08:33 +000018#include "llvm/Constants.h"
19#include "llvm/Instructions.h"
20#include "llvm/Analysis/ConstantFolding.h"
21#include "llvm/Target/TargetData.h"
Chris Lattner16976522009-11-11 22:48:44 +000022#include "llvm/Support/CFG.h"
Owen Anderson5be2e782010-08-05 22:59:19 +000023#include "llvm/Support/ConstantRange.h"
Chris Lattnerb8c124c2009-11-12 01:22:16 +000024#include "llvm/Support/Debug.h"
Chris Lattner16976522009-11-11 22:48:44 +000025#include "llvm/Support/raw_ostream.h"
Owen Anderson7f9cb742010-07-30 23:59:40 +000026#include "llvm/Support/ValueHandle.h"
Chris Lattner16976522009-11-11 22:48:44 +000027#include "llvm/ADT/DenseMap.h"
Owen Anderson9a65dc92010-07-27 23:58:11 +000028#include "llvm/ADT/DenseSet.h"
Chris Lattnere5642812009-11-15 20:00:52 +000029#include "llvm/ADT/STLExtras.h"
Owen Anderson6bcd3a02010-09-07 19:16:25 +000030#include <map>
31#include <set>
Nick Lewycky90862ee2010-12-18 01:00:40 +000032#include <stack>
Chris Lattner10f2d132009-11-11 00:22:30 +000033using namespace llvm;
34
35char LazyValueInfo::ID = 0;
Owen Andersond13db2c2010-07-21 22:09:45 +000036INITIALIZE_PASS(LazyValueInfo, "lazy-value-info",
Owen Andersonce665bd2010-10-07 22:25:06 +000037 "Lazy Value Information Analysis", false, true)
Chris Lattner10f2d132009-11-11 00:22:30 +000038
39namespace llvm {
40 FunctionPass *createLazyValueInfoPass() { return new LazyValueInfo(); }
41}
42
Chris Lattnercc4d3b22009-11-11 02:08:33 +000043
44//===----------------------------------------------------------------------===//
45// LVILatticeVal
46//===----------------------------------------------------------------------===//
47
48/// LVILatticeVal - This is the information tracked by LazyValueInfo for each
49/// value.
50///
51/// FIXME: This is basically just for bringup, this can be made a lot more rich
52/// in the future.
53///
54namespace {
55class LVILatticeVal {
56 enum LatticeValueTy {
Nick Lewycky69bfdf52010-12-15 18:57:18 +000057 /// undefined - This Value has no known value yet.
Chris Lattnercc4d3b22009-11-11 02:08:33 +000058 undefined,
Owen Anderson5be2e782010-08-05 22:59:19 +000059
Nick Lewycky69bfdf52010-12-15 18:57:18 +000060 /// constant - This Value has a specific constant value.
Chris Lattnercc4d3b22009-11-11 02:08:33 +000061 constant,
Nick Lewycky69bfdf52010-12-15 18:57:18 +000062 /// notconstant - This Value is known to not have the specified value.
Chris Lattnerb52675b2009-11-12 04:36:58 +000063 notconstant,
64
Nick Lewycky69bfdf52010-12-15 18:57:18 +000065 /// constantrange - The Value falls within this range.
Owen Anderson5be2e782010-08-05 22:59:19 +000066 constantrange,
67
Nick Lewycky69bfdf52010-12-15 18:57:18 +000068 /// overdefined - This value is not known to be constant, and we know that
Chris Lattnercc4d3b22009-11-11 02:08:33 +000069 /// it has a value.
70 overdefined
71 };
72
73 /// Val: This stores the current lattice value along with the Constant* for
Chris Lattnerb52675b2009-11-12 04:36:58 +000074 /// the constant if this is a 'constant' or 'notconstant' value.
Owen Andersondb78d732010-08-05 22:10:46 +000075 LatticeValueTy Tag;
76 Constant *Val;
Owen Anderson5be2e782010-08-05 22:59:19 +000077 ConstantRange Range;
Chris Lattnercc4d3b22009-11-11 02:08:33 +000078
79public:
Owen Anderson5be2e782010-08-05 22:59:19 +000080 LVILatticeVal() : Tag(undefined), Val(0), Range(1, true) {}
Chris Lattnercc4d3b22009-11-11 02:08:33 +000081
Chris Lattner16976522009-11-11 22:48:44 +000082 static LVILatticeVal get(Constant *C) {
83 LVILatticeVal Res;
Nick Lewycky69bfdf52010-12-15 18:57:18 +000084 if (!isa<UndefValue>(C))
Owen Anderson9f014062010-08-10 20:03:09 +000085 Res.markConstant(C);
Chris Lattner16976522009-11-11 22:48:44 +000086 return Res;
87 }
Chris Lattnerb52675b2009-11-12 04:36:58 +000088 static LVILatticeVal getNot(Constant *C) {
89 LVILatticeVal Res;
Nick Lewycky69bfdf52010-12-15 18:57:18 +000090 if (!isa<UndefValue>(C))
Owen Anderson9f014062010-08-10 20:03:09 +000091 Res.markNotConstant(C);
Chris Lattnerb52675b2009-11-12 04:36:58 +000092 return Res;
93 }
Owen Anderson625051b2010-08-10 23:20:01 +000094 static LVILatticeVal getRange(ConstantRange CR) {
95 LVILatticeVal Res;
96 Res.markConstantRange(CR);
97 return Res;
98 }
Chris Lattner16976522009-11-11 22:48:44 +000099
Owen Anderson5be2e782010-08-05 22:59:19 +0000100 bool isUndefined() const { return Tag == undefined; }
101 bool isConstant() const { return Tag == constant; }
102 bool isNotConstant() const { return Tag == notconstant; }
103 bool isConstantRange() const { return Tag == constantrange; }
104 bool isOverdefined() const { return Tag == overdefined; }
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000105
106 Constant *getConstant() const {
107 assert(isConstant() && "Cannot get the constant of a non-constant!");
Owen Andersondb78d732010-08-05 22:10:46 +0000108 return Val;
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000109 }
110
Chris Lattnerb52675b2009-11-12 04:36:58 +0000111 Constant *getNotConstant() const {
112 assert(isNotConstant() && "Cannot get the constant of a non-notconstant!");
Owen Andersondb78d732010-08-05 22:10:46 +0000113 return Val;
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000114 }
115
Owen Anderson5be2e782010-08-05 22:59:19 +0000116 ConstantRange getConstantRange() const {
117 assert(isConstantRange() &&
118 "Cannot get the constant-range of a non-constant-range!");
119 return Range;
120 }
121
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000122 /// markOverdefined - Return true if this is a change in status.
123 bool markOverdefined() {
124 if (isOverdefined())
125 return false;
Owen Andersondb78d732010-08-05 22:10:46 +0000126 Tag = overdefined;
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000127 return true;
128 }
129
130 /// markConstant - Return true if this is a change in status.
131 bool markConstant(Constant *V) {
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000132 assert(V && "Marking constant with NULL");
133 if (ConstantInt *CI = dyn_cast<ConstantInt>(V))
134 return markConstantRange(ConstantRange(CI->getValue()));
135 if (isa<UndefValue>(V))
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000136 return false;
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000137
138 assert((!isConstant() || getConstant() == V) &&
139 "Marking constant with different value");
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000140 assert(isUndefined());
Owen Andersondb78d732010-08-05 22:10:46 +0000141 Tag = constant;
Owen Andersondb78d732010-08-05 22:10:46 +0000142 Val = V;
Chris Lattner16976522009-11-11 22:48:44 +0000143 return true;
144 }
145
Chris Lattnerb52675b2009-11-12 04:36:58 +0000146 /// markNotConstant - Return true if this is a change in status.
147 bool markNotConstant(Constant *V) {
Chris Lattnerb52675b2009-11-12 04:36:58 +0000148 assert(V && "Marking constant with NULL");
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000149 if (ConstantInt *CI = dyn_cast<ConstantInt>(V))
150 return markConstantRange(ConstantRange(CI->getValue()+1, CI->getValue()));
151 if (isa<UndefValue>(V))
152 return false;
153
154 assert((!isConstant() || getConstant() != V) &&
155 "Marking constant !constant with same value");
156 assert((!isNotConstant() || getNotConstant() == V) &&
157 "Marking !constant with different value");
158 assert(isUndefined() || isConstant());
159 Tag = notconstant;
Owen Andersondb78d732010-08-05 22:10:46 +0000160 Val = V;
Chris Lattnerb52675b2009-11-12 04:36:58 +0000161 return true;
162 }
163
Owen Anderson5be2e782010-08-05 22:59:19 +0000164 /// markConstantRange - Return true if this is a change in status.
165 bool markConstantRange(const ConstantRange NewR) {
166 if (isConstantRange()) {
167 if (NewR.isEmptySet())
168 return markOverdefined();
169
Owen Anderson5be2e782010-08-05 22:59:19 +0000170 bool changed = Range == NewR;
171 Range = NewR;
172 return changed;
173 }
174
175 assert(isUndefined());
176 if (NewR.isEmptySet())
177 return markOverdefined();
Owen Anderson5be2e782010-08-05 22:59:19 +0000178
179 Tag = constantrange;
180 Range = NewR;
181 return true;
182 }
183
Chris Lattner16976522009-11-11 22:48:44 +0000184 /// mergeIn - Merge the specified lattice value into this one, updating this
185 /// one and returning true if anything changed.
186 bool mergeIn(const LVILatticeVal &RHS) {
187 if (RHS.isUndefined() || isOverdefined()) return false;
188 if (RHS.isOverdefined()) return markOverdefined();
189
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000190 if (isUndefined()) {
191 Tag = RHS.Tag;
192 Val = RHS.Val;
193 Range = RHS.Range;
194 return true;
Chris Lattnerf496e792009-11-12 04:57:13 +0000195 }
196
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000197 if (isConstant()) {
198 if (RHS.isConstant()) {
199 if (Val == RHS.Val)
200 return false;
201 return markOverdefined();
202 }
203
204 if (RHS.isNotConstant()) {
205 if (Val == RHS.Val)
206 return markOverdefined();
207
208 // Unless we can prove that the two Constants are different, we must
209 // move to overdefined.
210 // FIXME: use TargetData for smarter constant folding.
211 if (ConstantInt *Res = dyn_cast<ConstantInt>(
212 ConstantFoldCompareInstOperands(CmpInst::ICMP_NE,
213 getConstant(),
214 RHS.getNotConstant())))
215 if (Res->isOne())
216 return markNotConstant(RHS.getNotConstant());
217
218 return markOverdefined();
219 }
220
221 // RHS is a ConstantRange, LHS is a non-integer Constant.
222
223 // FIXME: consider the case where RHS is a range [1, 0) and LHS is
224 // a function. The correct result is to pick up RHS.
225
Chris Lattner16976522009-11-11 22:48:44 +0000226 return markOverdefined();
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000227 }
228
229 if (isNotConstant()) {
230 if (RHS.isConstant()) {
231 if (Val == RHS.Val)
232 return markOverdefined();
233
234 // Unless we can prove that the two Constants are different, we must
235 // move to overdefined.
236 // FIXME: use TargetData for smarter constant folding.
237 if (ConstantInt *Res = dyn_cast<ConstantInt>(
238 ConstantFoldCompareInstOperands(CmpInst::ICMP_NE,
239 getNotConstant(),
240 RHS.getConstant())))
241 if (Res->isOne())
242 return false;
243
244 return markOverdefined();
245 }
246
247 if (RHS.isNotConstant()) {
248 if (Val == RHS.Val)
249 return false;
250 return markOverdefined();
251 }
252
253 return markOverdefined();
254 }
255
256 assert(isConstantRange() && "New LVILattice type?");
257 if (!RHS.isConstantRange())
258 return markOverdefined();
259
260 ConstantRange NewR = Range.unionWith(RHS.getConstantRange());
261 if (NewR.isFullSet())
262 return markOverdefined();
263 return markConstantRange(NewR);
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000264 }
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000265};
266
267} // end anonymous namespace.
268
Chris Lattner16976522009-11-11 22:48:44 +0000269namespace llvm {
270raw_ostream &operator<<(raw_ostream &OS, const LVILatticeVal &Val) {
271 if (Val.isUndefined())
272 return OS << "undefined";
273 if (Val.isOverdefined())
274 return OS << "overdefined";
Chris Lattnerb52675b2009-11-12 04:36:58 +0000275
276 if (Val.isNotConstant())
277 return OS << "notconstant<" << *Val.getNotConstant() << '>';
Owen Anderson2f3ffb82010-08-09 20:50:46 +0000278 else if (Val.isConstantRange())
279 return OS << "constantrange<" << Val.getConstantRange().getLower() << ", "
280 << Val.getConstantRange().getUpper() << '>';
Chris Lattner16976522009-11-11 22:48:44 +0000281 return OS << "constant<" << *Val.getConstant() << '>';
282}
283}
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000284
285//===----------------------------------------------------------------------===//
Chris Lattner2c5adf82009-11-15 19:59:49 +0000286// LazyValueInfoCache Decl
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000287//===----------------------------------------------------------------------===//
288
Chris Lattner2c5adf82009-11-15 19:59:49 +0000289namespace {
Owen Andersonaa6f1052010-12-20 21:30:54 +0000290 /// LVIValueHandle - A callback value handle update the cache when
291 /// values are erased.
292 class LazyValueInfoCache;
293 struct LVIValueHandle : public CallbackVH {
294 LazyValueInfoCache *Parent;
295
296 LVIValueHandle(Value *V, LazyValueInfoCache *P)
297 : CallbackVH(V), Parent(P) { }
298
299 void deleted();
300 void allUsesReplacedWith(Value *V) {
301 deleted();
302 }
303 };
Owen Andersonbb39ac12010-12-20 23:23:18 +0000304}
305
306namespace llvm {
307 template<>
308 struct DenseMapInfo<LVIValueHandle> {
309 typedef DenseMapInfo<Value*> PointerInfo;
310 static inline LVIValueHandle getEmptyKey() {
311 return LVIValueHandle(PointerInfo::getEmptyKey(),
312 static_cast<LazyValueInfoCache*>(0));
313 }
314 static inline LVIValueHandle getTombstoneKey() {
315 return LVIValueHandle(PointerInfo::getTombstoneKey(),
316 static_cast<LazyValueInfoCache*>(0));
317 }
318 static unsigned getHashValue(const LVIValueHandle &Val) {
319 return PointerInfo::getHashValue(Val);
320 }
321 static bool isEqual(const LVIValueHandle &LHS, const LVIValueHandle &RHS) {
322 return LHS == RHS;
323 }
324 };
325}
326
327namespace {
Chris Lattner2c5adf82009-11-15 19:59:49 +0000328 /// LazyValueInfoCache - This is the cache kept by LazyValueInfo which
329 /// maintains information about queries across the clients' queries.
330 class LazyValueInfoCache {
Owen Anderson81881bc2010-07-30 20:56:07 +0000331 public:
Chris Lattner2c5adf82009-11-15 19:59:49 +0000332 /// ValueCacheEntryTy - This is all of the cached block information for
333 /// exactly one Value*. The entries are sorted by the BasicBlock* of the
334 /// entries, allowing us to do a lookup with a binary search.
Owen Anderson00ac77e2010-08-18 18:39:01 +0000335 typedef std::map<AssertingVH<BasicBlock>, LVILatticeVal> ValueCacheEntryTy;
Chris Lattner2c5adf82009-11-15 19:59:49 +0000336
Owen Anderson81881bc2010-07-30 20:56:07 +0000337 private:
Owen Andersonaa6f1052010-12-20 21:30:54 +0000338 friend struct LVIValueHandle;
Owen Anderson87790ab2010-12-20 19:33:41 +0000339
340 /// OverDefinedCacheUpdater - A helper object that ensures that the
341 /// OverDefinedCache is updated whenever solveBlockValue returns.
342 struct OverDefinedCacheUpdater {
343 LazyValueInfoCache *Parent;
344 Value *Val;
345 BasicBlock *BB;
346 LVILatticeVal &BBLV;
347
348 OverDefinedCacheUpdater(Value *V, BasicBlock *B, LVILatticeVal &LV,
349 LazyValueInfoCache *P)
350 : Parent(P), Val(V), BB(B), BBLV(LV) { }
351
352 bool markResult(bool changed) {
353 if (changed && BBLV.isOverdefined())
354 Parent->OverDefinedCache.insert(std::make_pair(BB, Val));
355 return changed;
356 }
357 };
Owen Anderson7f9cb742010-07-30 23:59:40 +0000358
Chris Lattner2c5adf82009-11-15 19:59:49 +0000359 /// ValueCache - This is all of the cached information for all values,
360 /// mapped from Value* to key information.
Owen Andersonaa6f1052010-12-20 21:30:54 +0000361 DenseMap<LVIValueHandle, ValueCacheEntryTy> ValueCache;
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000362
363 /// OverDefinedCache - This tracks, on a per-block basis, the set of
364 /// values that are over-defined at the end of that block. This is required
365 /// for cache updating.
Owen Anderson00ac77e2010-08-18 18:39:01 +0000366 std::set<std::pair<AssertingVH<BasicBlock>, Value*> > OverDefinedCache;
Owen Anderson7f9cb742010-07-30 23:59:40 +0000367
Owen Andersonf33b3022010-12-09 06:14:58 +0000368 LVILatticeVal getBlockValue(Value *Val, BasicBlock *BB);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000369 bool getEdgeValue(Value *V, BasicBlock *F, BasicBlock *T,
370 LVILatticeVal &Result);
371 bool hasBlockValue(Value *Val, BasicBlock *BB);
372
373 // These methods process one work item and may add more. A false value
374 // returned means that the work item was not completely processed and must
375 // be revisited after going through the new items.
376 bool solveBlockValue(Value *Val, BasicBlock *BB);
Owen Anderson61863942010-12-20 18:18:16 +0000377 bool solveBlockValueNonLocal(LVILatticeVal &BBLV,
378 Value *Val, BasicBlock *BB);
379 bool solveBlockValuePHINode(LVILatticeVal &BBLV,
380 PHINode *PN, BasicBlock *BB);
381 bool solveBlockValueConstantRange(LVILatticeVal &BBLV,
382 Instruction *BBI, BasicBlock *BB);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000383
384 void solve();
Owen Andersonf33b3022010-12-09 06:14:58 +0000385
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000386 ValueCacheEntryTy &lookup(Value *V) {
Owen Andersonf33b3022010-12-09 06:14:58 +0000387 return ValueCache[LVIValueHandle(V, this)];
388 }
389
Owen Anderson87790ab2010-12-20 19:33:41 +0000390 std::stack<std::pair<BasicBlock*, Value*> > block_value_stack;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000391
Chris Lattner2c5adf82009-11-15 19:59:49 +0000392 public:
Chris Lattner2c5adf82009-11-15 19:59:49 +0000393 /// getValueInBlock - This is the query interface to determine the lattice
394 /// value for the specified Value* at the end of the specified block.
395 LVILatticeVal getValueInBlock(Value *V, BasicBlock *BB);
396
397 /// getValueOnEdge - This is the query interface to determine the lattice
398 /// value for the specified Value* that is true on the specified edge.
399 LVILatticeVal getValueOnEdge(Value *V, BasicBlock *FromBB,BasicBlock *ToBB);
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000400
401 /// threadEdge - This is the update interface to inform the cache that an
402 /// edge from PredBB to OldSucc has been threaded to be from PredBB to
403 /// NewSucc.
404 void threadEdge(BasicBlock *PredBB,BasicBlock *OldSucc,BasicBlock *NewSucc);
Owen Anderson00ac77e2010-08-18 18:39:01 +0000405
406 /// eraseBlock - This is part of the update interface to inform the cache
407 /// that a block has been deleted.
408 void eraseBlock(BasicBlock *BB);
409
410 /// clear - Empty the cache.
411 void clear() {
412 ValueCache.clear();
413 OverDefinedCache.clear();
414 }
Chris Lattner2c5adf82009-11-15 19:59:49 +0000415 };
416} // end anonymous namespace
417
Owen Andersonaa6f1052010-12-20 21:30:54 +0000418void LVIValueHandle::deleted() {
Owen Anderson00ac77e2010-08-18 18:39:01 +0000419 for (std::set<std::pair<AssertingVH<BasicBlock>, Value*> >::iterator
Owen Anderson7f9cb742010-07-30 23:59:40 +0000420 I = Parent->OverDefinedCache.begin(),
421 E = Parent->OverDefinedCache.end();
422 I != E; ) {
Owen Anderson00ac77e2010-08-18 18:39:01 +0000423 std::set<std::pair<AssertingVH<BasicBlock>, Value*> >::iterator tmp = I;
Owen Anderson7f9cb742010-07-30 23:59:40 +0000424 ++I;
425 if (tmp->second == getValPtr())
426 Parent->OverDefinedCache.erase(tmp);
427 }
Owen Andersoncf6abd22010-08-11 22:36:04 +0000428
429 // This erasure deallocates *this, so it MUST happen after we're done
430 // using any and all members of *this.
431 Parent->ValueCache.erase(*this);
Owen Anderson7f9cb742010-07-30 23:59:40 +0000432}
433
Owen Anderson00ac77e2010-08-18 18:39:01 +0000434void LazyValueInfoCache::eraseBlock(BasicBlock *BB) {
435 for (std::set<std::pair<AssertingVH<BasicBlock>, Value*> >::iterator
436 I = OverDefinedCache.begin(), E = OverDefinedCache.end(); I != E; ) {
437 std::set<std::pair<AssertingVH<BasicBlock>, Value*> >::iterator tmp = I;
438 ++I;
439 if (tmp->first == BB)
440 OverDefinedCache.erase(tmp);
441 }
442
Owen Andersonaa6f1052010-12-20 21:30:54 +0000443 for (DenseMap<LVIValueHandle, ValueCacheEntryTy>::iterator
Owen Anderson00ac77e2010-08-18 18:39:01 +0000444 I = ValueCache.begin(), E = ValueCache.end(); I != E; ++I)
445 I->second.erase(BB);
446}
Owen Anderson7f9cb742010-07-30 23:59:40 +0000447
Nick Lewycky90862ee2010-12-18 01:00:40 +0000448void LazyValueInfoCache::solve() {
449 while (!block_value_stack.empty()) {
Owen Anderson87790ab2010-12-20 19:33:41 +0000450 std::pair<BasicBlock*, Value*> &e = block_value_stack.top();
451 if (solveBlockValue(e.second, e.first))
Nick Lewycky90862ee2010-12-18 01:00:40 +0000452 block_value_stack.pop();
453 }
454}
455
456bool LazyValueInfoCache::hasBlockValue(Value *Val, BasicBlock *BB) {
457 // If already a constant, there is nothing to compute.
458 if (isa<Constant>(Val))
459 return true;
460
461 return lookup(Val).count(BB);
462}
463
Owen Andersonf33b3022010-12-09 06:14:58 +0000464LVILatticeVal LazyValueInfoCache::getBlockValue(Value *Val, BasicBlock *BB) {
Nick Lewycky90862ee2010-12-18 01:00:40 +0000465 // If already a constant, there is nothing to compute.
466 if (Constant *VC = dyn_cast<Constant>(Val))
467 return LVILatticeVal::get(VC);
468
469 return lookup(Val)[BB];
470}
471
472bool LazyValueInfoCache::solveBlockValue(Value *Val, BasicBlock *BB) {
473 if (isa<Constant>(Val))
474 return true;
475
Owen Andersonf33b3022010-12-09 06:14:58 +0000476 ValueCacheEntryTy &Cache = lookup(Val);
477 LVILatticeVal &BBLV = Cache[BB];
Owen Anderson87790ab2010-12-20 19:33:41 +0000478
479 // OverDefinedCacheUpdater is a helper object that will update
480 // the OverDefinedCache for us when this method exits. Make sure to
481 // call markResult on it as we exist, passing a bool to indicate if the
482 // cache needs updating, i.e. if we have solve a new value or not.
483 OverDefinedCacheUpdater ODCacheUpdater(Val, BB, BBLV, this);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000484
Chris Lattner2c5adf82009-11-15 19:59:49 +0000485 // If we've already computed this block's value, return it.
Chris Lattnere5642812009-11-15 20:00:52 +0000486 if (!BBLV.isUndefined()) {
David Greene5d93a1f2009-12-23 20:43:58 +0000487 DEBUG(dbgs() << " reuse BB '" << BB->getName() << "' val=" << BBLV <<'\n');
Owen Anderson87790ab2010-12-20 19:33:41 +0000488
489 // Since we're reusing a cached value here, we don't need to update the
490 // OverDefinedCahce. The cache will have been properly updated
491 // whenever the cached value was inserted.
492 ODCacheUpdater.markResult(false);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000493 return true;
Chris Lattnere5642812009-11-15 20:00:52 +0000494 }
495
Chris Lattner2c5adf82009-11-15 19:59:49 +0000496 // Otherwise, this is the first time we're seeing this block. Reset the
497 // lattice value to overdefined, so that cycles will terminate and be
498 // conservatively correct.
499 BBLV.markOverdefined();
500
Chris Lattner2c5adf82009-11-15 19:59:49 +0000501 Instruction *BBI = dyn_cast<Instruction>(Val);
502 if (BBI == 0 || BBI->getParent() != BB) {
Owen Anderson87790ab2010-12-20 19:33:41 +0000503 return ODCacheUpdater.markResult(solveBlockValueNonLocal(BBLV, Val, BB));
Chris Lattner2c5adf82009-11-15 19:59:49 +0000504 }
Chris Lattnere5642812009-11-15 20:00:52 +0000505
Nick Lewycky90862ee2010-12-18 01:00:40 +0000506 if (PHINode *PN = dyn_cast<PHINode>(BBI)) {
Owen Anderson87790ab2010-12-20 19:33:41 +0000507 return ODCacheUpdater.markResult(solveBlockValuePHINode(BBLV, PN, BB));
Nick Lewycky90862ee2010-12-18 01:00:40 +0000508 }
Owen Andersonb81fd622010-08-18 21:11:37 +0000509
510 // We can only analyze the definitions of certain classes of instructions
511 // (integral binops and casts at the moment), so bail if this isn't one.
Chris Lattner2c5adf82009-11-15 19:59:49 +0000512 LVILatticeVal Result;
Owen Andersonb81fd622010-08-18 21:11:37 +0000513 if ((!isa<BinaryOperator>(BBI) && !isa<CastInst>(BBI)) ||
514 !BBI->getType()->isIntegerTy()) {
515 DEBUG(dbgs() << " compute BB '" << BB->getName()
516 << "' - overdefined because inst def found.\n");
Owen Anderson61863942010-12-20 18:18:16 +0000517 BBLV.markOverdefined();
Owen Anderson87790ab2010-12-20 19:33:41 +0000518 return ODCacheUpdater.markResult(true);
Owen Andersonb81fd622010-08-18 21:11:37 +0000519 }
Nick Lewycky90862ee2010-12-18 01:00:40 +0000520
Owen Andersonb81fd622010-08-18 21:11:37 +0000521 // FIXME: We're currently limited to binops with a constant RHS. This should
522 // be improved.
523 BinaryOperator *BO = dyn_cast<BinaryOperator>(BBI);
524 if (BO && !isa<ConstantInt>(BO->getOperand(1))) {
525 DEBUG(dbgs() << " compute BB '" << BB->getName()
526 << "' - overdefined because inst def found.\n");
527
Owen Anderson61863942010-12-20 18:18:16 +0000528 BBLV.markOverdefined();
Owen Anderson87790ab2010-12-20 19:33:41 +0000529 return ODCacheUpdater.markResult(true);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000530 }
Owen Andersonb81fd622010-08-18 21:11:37 +0000531
Owen Anderson87790ab2010-12-20 19:33:41 +0000532 return ODCacheUpdater.markResult(solveBlockValueConstantRange(BBLV, BBI, BB));
Nick Lewycky90862ee2010-12-18 01:00:40 +0000533}
534
535static bool InstructionDereferencesPointer(Instruction *I, Value *Ptr) {
536 if (LoadInst *L = dyn_cast<LoadInst>(I)) {
537 return L->getPointerAddressSpace() == 0 &&
538 GetUnderlyingObject(L->getPointerOperand()) ==
539 GetUnderlyingObject(Ptr);
540 }
541 if (StoreInst *S = dyn_cast<StoreInst>(I)) {
542 return S->getPointerAddressSpace() == 0 &&
543 GetUnderlyingObject(S->getPointerOperand()) ==
544 GetUnderlyingObject(Ptr);
545 }
546 // FIXME: llvm.memset, etc.
547 return false;
548}
549
Owen Anderson61863942010-12-20 18:18:16 +0000550bool LazyValueInfoCache::solveBlockValueNonLocal(LVILatticeVal &BBLV,
551 Value *Val, BasicBlock *BB) {
Nick Lewycky90862ee2010-12-18 01:00:40 +0000552 LVILatticeVal Result; // Start Undefined.
553
554 // If this is a pointer, and there's a load from that pointer in this BB,
555 // then we know that the pointer can't be NULL.
556 bool NotNull = false;
557 if (Val->getType()->isPointerTy()) {
558 for (BasicBlock::iterator BI = BB->begin(), BE = BB->end();BI != BE;++BI){
559 if (InstructionDereferencesPointer(BI, Val)) {
560 NotNull = true;
561 break;
562 }
563 }
564 }
565
566 // If this is the entry block, we must be asking about an argument. The
567 // value is overdefined.
568 if (BB == &BB->getParent()->getEntryBlock()) {
569 assert(isa<Argument>(Val) && "Unknown live-in to the entry block");
570 if (NotNull) {
571 const PointerType *PTy = cast<PointerType>(Val->getType());
572 Result = LVILatticeVal::getNot(ConstantPointerNull::get(PTy));
573 } else {
574 Result.markOverdefined();
575 }
Owen Anderson61863942010-12-20 18:18:16 +0000576 BBLV = Result;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000577 return true;
578 }
579
580 // Loop over all of our predecessors, merging what we know from them into
581 // result.
582 bool EdgesMissing = false;
583 for (pred_iterator PI = pred_begin(BB), E = pred_end(BB); PI != E; ++PI) {
584 LVILatticeVal EdgeResult;
585 EdgesMissing |= !getEdgeValue(Val, *PI, BB, EdgeResult);
586 if (EdgesMissing)
587 continue;
588
589 Result.mergeIn(EdgeResult);
590
591 // If we hit overdefined, exit early. The BlockVals entry is already set
592 // to overdefined.
593 if (Result.isOverdefined()) {
594 DEBUG(dbgs() << " compute BB '" << BB->getName()
595 << "' - overdefined because of pred.\n");
596 // If we previously determined that this is a pointer that can't be null
597 // then return that rather than giving up entirely.
598 if (NotNull) {
599 const PointerType *PTy = cast<PointerType>(Val->getType());
600 Result = LVILatticeVal::getNot(ConstantPointerNull::get(PTy));
601 }
Owen Anderson61863942010-12-20 18:18:16 +0000602
603 BBLV = Result;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000604 return true;
605 }
606 }
607 if (EdgesMissing)
608 return false;
609
610 // Return the merged value, which is more precise than 'overdefined'.
611 assert(!Result.isOverdefined());
Owen Anderson61863942010-12-20 18:18:16 +0000612 BBLV = Result;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000613 return true;
614}
615
Owen Anderson61863942010-12-20 18:18:16 +0000616bool LazyValueInfoCache::solveBlockValuePHINode(LVILatticeVal &BBLV,
617 PHINode *PN, BasicBlock *BB) {
Nick Lewycky90862ee2010-12-18 01:00:40 +0000618 LVILatticeVal Result; // Start Undefined.
619
620 // Loop over all of our predecessors, merging what we know from them into
621 // result.
622 bool EdgesMissing = false;
623 for (unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
624 BasicBlock *PhiBB = PN->getIncomingBlock(i);
625 Value *PhiVal = PN->getIncomingValue(i);
626 LVILatticeVal EdgeResult;
627 EdgesMissing |= !getEdgeValue(PhiVal, PhiBB, BB, EdgeResult);
628 if (EdgesMissing)
629 continue;
630
631 Result.mergeIn(EdgeResult);
632
633 // If we hit overdefined, exit early. The BlockVals entry is already set
634 // to overdefined.
635 if (Result.isOverdefined()) {
636 DEBUG(dbgs() << " compute BB '" << BB->getName()
637 << "' - overdefined because of pred.\n");
Owen Anderson61863942010-12-20 18:18:16 +0000638
639 BBLV = Result;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000640 return true;
641 }
642 }
643 if (EdgesMissing)
644 return false;
645
646 // Return the merged value, which is more precise than 'overdefined'.
647 assert(!Result.isOverdefined() && "Possible PHI in entry block?");
Owen Anderson61863942010-12-20 18:18:16 +0000648 BBLV = Result;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000649 return true;
650}
651
Owen Anderson61863942010-12-20 18:18:16 +0000652bool LazyValueInfoCache::solveBlockValueConstantRange(LVILatticeVal &BBLV,
653 Instruction *BBI,
Nick Lewycky90862ee2010-12-18 01:00:40 +0000654 BasicBlock *BB) {
Owen Andersonb81fd622010-08-18 21:11:37 +0000655 // Figure out the range of the LHS. If that fails, bail.
Nick Lewycky90862ee2010-12-18 01:00:40 +0000656 if (!hasBlockValue(BBI->getOperand(0), BB)) {
Owen Anderson87790ab2010-12-20 19:33:41 +0000657 block_value_stack.push(std::make_pair(BB, BBI->getOperand(0)));
Nick Lewycky90862ee2010-12-18 01:00:40 +0000658 return false;
659 }
660
Nick Lewycky90862ee2010-12-18 01:00:40 +0000661 LVILatticeVal LHSVal = getBlockValue(BBI->getOperand(0), BB);
Owen Andersonb81fd622010-08-18 21:11:37 +0000662 if (!LHSVal.isConstantRange()) {
Owen Anderson61863942010-12-20 18:18:16 +0000663 BBLV.markOverdefined();
Nick Lewycky90862ee2010-12-18 01:00:40 +0000664 return true;
Owen Andersonb81fd622010-08-18 21:11:37 +0000665 }
666
Owen Andersonb81fd622010-08-18 21:11:37 +0000667 ConstantRange LHSRange = LHSVal.getConstantRange();
668 ConstantRange RHSRange(1);
669 const IntegerType *ResultTy = cast<IntegerType>(BBI->getType());
670 if (isa<BinaryOperator>(BBI)) {
Nick Lewycky90862ee2010-12-18 01:00:40 +0000671 if (ConstantInt *RHS = dyn_cast<ConstantInt>(BBI->getOperand(1))) {
672 RHSRange = ConstantRange(RHS->getValue());
673 } else {
Owen Anderson61863942010-12-20 18:18:16 +0000674 BBLV.markOverdefined();
Nick Lewycky90862ee2010-12-18 01:00:40 +0000675 return true;
Owen Anderson59b06dc2010-08-24 07:55:44 +0000676 }
Owen Andersonb81fd622010-08-18 21:11:37 +0000677 }
Nick Lewycky90862ee2010-12-18 01:00:40 +0000678
Owen Andersonb81fd622010-08-18 21:11:37 +0000679 // NOTE: We're currently limited by the set of operations that ConstantRange
680 // can evaluate symbolically. Enhancing that set will allows us to analyze
681 // more definitions.
Owen Anderson61863942010-12-20 18:18:16 +0000682 LVILatticeVal Result;
Owen Andersonb81fd622010-08-18 21:11:37 +0000683 switch (BBI->getOpcode()) {
684 case Instruction::Add:
685 Result.markConstantRange(LHSRange.add(RHSRange));
686 break;
687 case Instruction::Sub:
688 Result.markConstantRange(LHSRange.sub(RHSRange));
689 break;
690 case Instruction::Mul:
691 Result.markConstantRange(LHSRange.multiply(RHSRange));
692 break;
693 case Instruction::UDiv:
694 Result.markConstantRange(LHSRange.udiv(RHSRange));
695 break;
696 case Instruction::Shl:
697 Result.markConstantRange(LHSRange.shl(RHSRange));
698 break;
699 case Instruction::LShr:
700 Result.markConstantRange(LHSRange.lshr(RHSRange));
701 break;
702 case Instruction::Trunc:
703 Result.markConstantRange(LHSRange.truncate(ResultTy->getBitWidth()));
704 break;
705 case Instruction::SExt:
706 Result.markConstantRange(LHSRange.signExtend(ResultTy->getBitWidth()));
707 break;
708 case Instruction::ZExt:
709 Result.markConstantRange(LHSRange.zeroExtend(ResultTy->getBitWidth()));
710 break;
711 case Instruction::BitCast:
712 Result.markConstantRange(LHSRange);
713 break;
Nick Lewycky198381e2010-09-07 05:39:02 +0000714 case Instruction::And:
715 Result.markConstantRange(LHSRange.binaryAnd(RHSRange));
716 break;
717 case Instruction::Or:
718 Result.markConstantRange(LHSRange.binaryOr(RHSRange));
719 break;
Owen Andersonb81fd622010-08-18 21:11:37 +0000720
721 // Unhandled instructions are overdefined.
722 default:
723 DEBUG(dbgs() << " compute BB '" << BB->getName()
724 << "' - overdefined because inst def found.\n");
725 Result.markOverdefined();
726 break;
727 }
728
Owen Anderson61863942010-12-20 18:18:16 +0000729 BBLV = Result;
Nick Lewycky90862ee2010-12-18 01:00:40 +0000730 return true;
Chris Lattner10f2d132009-11-11 00:22:30 +0000731}
732
Chris Lattner800c47e2009-11-15 20:02:12 +0000733/// getEdgeValue - This method attempts to infer more complex
Nick Lewycky90862ee2010-12-18 01:00:40 +0000734bool LazyValueInfoCache::getEdgeValue(Value *Val, BasicBlock *BBFrom,
735 BasicBlock *BBTo, LVILatticeVal &Result) {
736 // If already a constant, there is nothing to compute.
737 if (Constant *VC = dyn_cast<Constant>(Val)) {
738 Result = LVILatticeVal::get(VC);
739 return true;
740 }
741
Chris Lattner800c47e2009-11-15 20:02:12 +0000742 // TODO: Handle more complex conditionals. If (v == 0 || v2 < 1) is false, we
743 // know that v != 0.
Chris Lattner16976522009-11-11 22:48:44 +0000744 if (BranchInst *BI = dyn_cast<BranchInst>(BBFrom->getTerminator())) {
745 // If this is a conditional branch and only one successor goes to BBTo, then
746 // we maybe able to infer something from the condition.
747 if (BI->isConditional() &&
748 BI->getSuccessor(0) != BI->getSuccessor(1)) {
749 bool isTrueDest = BI->getSuccessor(0) == BBTo;
750 assert(BI->getSuccessor(!isTrueDest) == BBTo &&
751 "BBTo isn't a successor of BBFrom");
752
753 // If V is the condition of the branch itself, then we know exactly what
754 // it is.
Nick Lewycky90862ee2010-12-18 01:00:40 +0000755 if (BI->getCondition() == Val) {
756 Result = LVILatticeVal::get(ConstantInt::get(
Owen Anderson9f014062010-08-10 20:03:09 +0000757 Type::getInt1Ty(Val->getContext()), isTrueDest));
Nick Lewycky90862ee2010-12-18 01:00:40 +0000758 return true;
759 }
Chris Lattner16976522009-11-11 22:48:44 +0000760
761 // If the condition of the branch is an equality comparison, we may be
762 // able to infer the value.
Owen Anderson2d0f2472010-08-11 04:24:25 +0000763 ICmpInst *ICI = dyn_cast<ICmpInst>(BI->getCondition());
764 if (ICI && ICI->getOperand(0) == Val &&
765 isa<Constant>(ICI->getOperand(1))) {
766 if (ICI->isEquality()) {
767 // We know that V has the RHS constant if this is a true SETEQ or
768 // false SETNE.
769 if (isTrueDest == (ICI->getPredicate() == ICmpInst::ICMP_EQ))
Nick Lewycky90862ee2010-12-18 01:00:40 +0000770 Result = LVILatticeVal::get(cast<Constant>(ICI->getOperand(1)));
771 else
772 Result = LVILatticeVal::getNot(cast<Constant>(ICI->getOperand(1)));
773 return true;
Chris Lattner16976522009-11-11 22:48:44 +0000774 }
Nick Lewycky90862ee2010-12-18 01:00:40 +0000775
Owen Anderson2d0f2472010-08-11 04:24:25 +0000776 if (ConstantInt *CI = dyn_cast<ConstantInt>(ICI->getOperand(1))) {
777 // Calculate the range of values that would satisfy the comparison.
778 ConstantRange CmpRange(CI->getValue(), CI->getValue()+1);
779 ConstantRange TrueValues =
780 ConstantRange::makeICmpRegion(ICI->getPredicate(), CmpRange);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000781
Owen Anderson2d0f2472010-08-11 04:24:25 +0000782 // If we're interested in the false dest, invert the condition.
783 if (!isTrueDest) TrueValues = TrueValues.inverse();
784
785 // Figure out the possible values of the query BEFORE this branch.
Owen Andersonf33b3022010-12-09 06:14:58 +0000786 LVILatticeVal InBlock = getBlockValue(Val, BBFrom);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000787 if (!InBlock.isConstantRange()) {
788 Result = LVILatticeVal::getRange(TrueValues);
789 return true;
790 }
791
Owen Anderson2d0f2472010-08-11 04:24:25 +0000792 // Find all potential values that satisfy both the input and output
793 // conditions.
794 ConstantRange PossibleValues =
795 TrueValues.intersectWith(InBlock.getConstantRange());
Nick Lewycky90862ee2010-12-18 01:00:40 +0000796
797 Result = LVILatticeVal::getRange(PossibleValues);
798 return true;
Owen Anderson2d0f2472010-08-11 04:24:25 +0000799 }
800 }
Chris Lattner16976522009-11-11 22:48:44 +0000801 }
802 }
Chris Lattner800c47e2009-11-15 20:02:12 +0000803
804 // If the edge was formed by a switch on the value, then we may know exactly
805 // what it is.
806 if (SwitchInst *SI = dyn_cast<SwitchInst>(BBFrom->getTerminator())) {
Owen Andersondae90c62010-08-24 21:59:42 +0000807 if (SI->getCondition() == Val) {
Owen Anderson4caef602010-09-02 22:16:52 +0000808 // We don't know anything in the default case.
Owen Andersondae90c62010-08-24 21:59:42 +0000809 if (SI->getDefaultDest() == BBTo) {
Owen Anderson4caef602010-09-02 22:16:52 +0000810 Result.markOverdefined();
Nick Lewycky90862ee2010-12-18 01:00:40 +0000811 return true;
Owen Andersondae90c62010-08-24 21:59:42 +0000812 }
813
Chris Lattner800c47e2009-11-15 20:02:12 +0000814 // We only know something if there is exactly one value that goes from
815 // BBFrom to BBTo.
816 unsigned NumEdges = 0;
817 ConstantInt *EdgeVal = 0;
818 for (unsigned i = 1, e = SI->getNumSuccessors(); i != e; ++i) {
819 if (SI->getSuccessor(i) != BBTo) continue;
820 if (NumEdges++) break;
821 EdgeVal = SI->getCaseValue(i);
822 }
823 assert(EdgeVal && "Missing successor?");
Nick Lewycky90862ee2010-12-18 01:00:40 +0000824 if (NumEdges == 1) {
825 Result = LVILatticeVal::get(EdgeVal);
826 return true;
827 }
Chris Lattner800c47e2009-11-15 20:02:12 +0000828 }
829 }
Chris Lattner16976522009-11-11 22:48:44 +0000830
831 // Otherwise see if the value is known in the block.
Nick Lewycky90862ee2010-12-18 01:00:40 +0000832 if (hasBlockValue(Val, BBFrom)) {
833 Result = getBlockValue(Val, BBFrom);
834 return true;
835 }
Owen Anderson87790ab2010-12-20 19:33:41 +0000836 block_value_stack.push(std::make_pair(BBFrom, Val));
Nick Lewycky90862ee2010-12-18 01:00:40 +0000837 return false;
Chris Lattner16976522009-11-11 22:48:44 +0000838}
839
Chris Lattner2c5adf82009-11-15 19:59:49 +0000840LVILatticeVal LazyValueInfoCache::getValueInBlock(Value *V, BasicBlock *BB) {
David Greene5d93a1f2009-12-23 20:43:58 +0000841 DEBUG(dbgs() << "LVI Getting block end value " << *V << " at '"
Chris Lattner2c5adf82009-11-15 19:59:49 +0000842 << BB->getName() << "'\n");
843
Owen Anderson87790ab2010-12-20 19:33:41 +0000844 block_value_stack.push(std::make_pair(BB, V));
Nick Lewycky90862ee2010-12-18 01:00:40 +0000845 solve();
Owen Andersonf33b3022010-12-09 06:14:58 +0000846 LVILatticeVal Result = getBlockValue(V, BB);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000847
David Greene5d93a1f2009-12-23 20:43:58 +0000848 DEBUG(dbgs() << " Result = " << Result << "\n");
Chris Lattner2c5adf82009-11-15 19:59:49 +0000849 return Result;
850}
Chris Lattner16976522009-11-11 22:48:44 +0000851
Chris Lattner2c5adf82009-11-15 19:59:49 +0000852LVILatticeVal LazyValueInfoCache::
853getValueOnEdge(Value *V, BasicBlock *FromBB, BasicBlock *ToBB) {
David Greene5d93a1f2009-12-23 20:43:58 +0000854 DEBUG(dbgs() << "LVI Getting edge value " << *V << " from '"
Chris Lattner2c5adf82009-11-15 19:59:49 +0000855 << FromBB->getName() << "' to '" << ToBB->getName() << "'\n");
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000856
Nick Lewycky90862ee2010-12-18 01:00:40 +0000857 LVILatticeVal Result;
858 if (!getEdgeValue(V, FromBB, ToBB, Result)) {
859 solve();
860 bool WasFastQuery = getEdgeValue(V, FromBB, ToBB, Result);
861 (void)WasFastQuery;
862 assert(WasFastQuery && "More work to do after problem solved?");
863 }
864
David Greene5d93a1f2009-12-23 20:43:58 +0000865 DEBUG(dbgs() << " Result = " << Result << "\n");
Chris Lattner2c5adf82009-11-15 19:59:49 +0000866 return Result;
867}
868
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000869void LazyValueInfoCache::threadEdge(BasicBlock *PredBB, BasicBlock *OldSucc,
870 BasicBlock *NewSucc) {
871 // When an edge in the graph has been threaded, values that we could not
872 // determine a value for before (i.e. were marked overdefined) may be possible
873 // to solve now. We do NOT try to proactively update these values. Instead,
874 // we clear their entries from the cache, and allow lazy updating to recompute
875 // them when needed.
876
877 // The updating process is fairly simple: we need to dropped cached info
878 // for all values that were marked overdefined in OldSucc, and for those same
879 // values in any successor of OldSucc (except NewSucc) in which they were
880 // also marked overdefined.
881 std::vector<BasicBlock*> worklist;
882 worklist.push_back(OldSucc);
883
Owen Anderson9a65dc92010-07-27 23:58:11 +0000884 DenseSet<Value*> ClearSet;
Owen Anderson00ac77e2010-08-18 18:39:01 +0000885 for (std::set<std::pair<AssertingVH<BasicBlock>, Value*> >::iterator
Owen Anderson9a65dc92010-07-27 23:58:11 +0000886 I = OverDefinedCache.begin(), E = OverDefinedCache.end(); I != E; ++I) {
887 if (I->first == OldSucc)
888 ClearSet.insert(I->second);
889 }
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000890
891 // Use a worklist to perform a depth-first search of OldSucc's successors.
892 // NOTE: We do not need a visited list since any blocks we have already
893 // visited will have had their overdefined markers cleared already, and we
894 // thus won't loop to their successors.
895 while (!worklist.empty()) {
896 BasicBlock *ToUpdate = worklist.back();
897 worklist.pop_back();
898
899 // Skip blocks only accessible through NewSucc.
900 if (ToUpdate == NewSucc) continue;
901
902 bool changed = false;
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000903 for (DenseSet<Value*>::iterator I = ClearSet.begin(), E = ClearSet.end();
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000904 I != E; ++I) {
905 // If a value was marked overdefined in OldSucc, and is here too...
Owen Anderson00ac77e2010-08-18 18:39:01 +0000906 std::set<std::pair<AssertingVH<BasicBlock>, Value*> >::iterator OI =
Owen Anderson9a65dc92010-07-27 23:58:11 +0000907 OverDefinedCache.find(std::make_pair(ToUpdate, *I));
908 if (OI == OverDefinedCache.end()) continue;
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000909
Owen Anderson9a65dc92010-07-27 23:58:11 +0000910 // Remove it from the caches.
Owen Anderson7f9cb742010-07-30 23:59:40 +0000911 ValueCacheEntryTy &Entry = ValueCache[LVIValueHandle(*I, this)];
Owen Anderson9a65dc92010-07-27 23:58:11 +0000912 ValueCacheEntryTy::iterator CI = Entry.find(ToUpdate);
Nick Lewycky90862ee2010-12-18 01:00:40 +0000913
Owen Anderson9a65dc92010-07-27 23:58:11 +0000914 assert(CI != Entry.end() && "Couldn't find entry to update?");
915 Entry.erase(CI);
916 OverDefinedCache.erase(OI);
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000917
Owen Anderson9a65dc92010-07-27 23:58:11 +0000918 // If we removed anything, then we potentially need to update
919 // blocks successors too.
920 changed = true;
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000921 }
Nick Lewycky90862ee2010-12-18 01:00:40 +0000922
Owen Andersoncfa7fb62010-07-26 18:48:03 +0000923 if (!changed) continue;
924
925 worklist.insert(worklist.end(), succ_begin(ToUpdate), succ_end(ToUpdate));
926 }
927}
928
Chris Lattner2c5adf82009-11-15 19:59:49 +0000929//===----------------------------------------------------------------------===//
930// LazyValueInfo Impl
931//===----------------------------------------------------------------------===//
932
Chris Lattner2c5adf82009-11-15 19:59:49 +0000933/// getCache - This lazily constructs the LazyValueInfoCache.
934static LazyValueInfoCache &getCache(void *&PImpl) {
935 if (!PImpl)
936 PImpl = new LazyValueInfoCache();
937 return *static_cast<LazyValueInfoCache*>(PImpl);
938}
939
Owen Anderson00ac77e2010-08-18 18:39:01 +0000940bool LazyValueInfo::runOnFunction(Function &F) {
941 if (PImpl)
942 getCache(PImpl).clear();
943
944 TD = getAnalysisIfAvailable<TargetData>();
945 // Fully lazy.
946 return false;
947}
948
Chris Lattner2c5adf82009-11-15 19:59:49 +0000949void LazyValueInfo::releaseMemory() {
950 // If the cache was allocated, free it.
951 if (PImpl) {
952 delete &getCache(PImpl);
953 PImpl = 0;
954 }
955}
956
957Constant *LazyValueInfo::getConstant(Value *V, BasicBlock *BB) {
958 LVILatticeVal Result = getCache(PImpl).getValueInBlock(V, BB);
959
Chris Lattner16976522009-11-11 22:48:44 +0000960 if (Result.isConstant())
961 return Result.getConstant();
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000962 if (Result.isConstantRange()) {
Owen Andersonee61fcf2010-08-27 23:29:38 +0000963 ConstantRange CR = Result.getConstantRange();
964 if (const APInt *SingleVal = CR.getSingleElement())
965 return ConstantInt::get(V->getContext(), *SingleVal);
966 }
Chris Lattner16976522009-11-11 22:48:44 +0000967 return 0;
968}
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000969
Chris Lattner38392bb2009-11-12 01:29:10 +0000970/// getConstantOnEdge - Determine whether the specified value is known to be a
971/// constant on the specified edge. Return null if not.
972Constant *LazyValueInfo::getConstantOnEdge(Value *V, BasicBlock *FromBB,
973 BasicBlock *ToBB) {
Chris Lattner2c5adf82009-11-15 19:59:49 +0000974 LVILatticeVal Result = getCache(PImpl).getValueOnEdge(V, FromBB, ToBB);
Chris Lattner38392bb2009-11-12 01:29:10 +0000975
976 if (Result.isConstant())
977 return Result.getConstant();
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000978 if (Result.isConstantRange()) {
Owen Anderson9f014062010-08-10 20:03:09 +0000979 ConstantRange CR = Result.getConstantRange();
980 if (const APInt *SingleVal = CR.getSingleElement())
981 return ConstantInt::get(V->getContext(), *SingleVal);
982 }
Chris Lattner38392bb2009-11-12 01:29:10 +0000983 return 0;
984}
985
Chris Lattnerb52675b2009-11-12 04:36:58 +0000986/// getPredicateOnEdge - Determine whether the specified value comparison
987/// with a constant is known to be true or false on the specified CFG edge.
988/// Pred is a CmpInst predicate.
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000989LazyValueInfo::Tristate
Chris Lattnerb52675b2009-11-12 04:36:58 +0000990LazyValueInfo::getPredicateOnEdge(unsigned Pred, Value *V, Constant *C,
991 BasicBlock *FromBB, BasicBlock *ToBB) {
Chris Lattner2c5adf82009-11-15 19:59:49 +0000992 LVILatticeVal Result = getCache(PImpl).getValueOnEdge(V, FromBB, ToBB);
Chris Lattnercc4d3b22009-11-11 02:08:33 +0000993
Chris Lattnerb52675b2009-11-12 04:36:58 +0000994 // If we know the value is a constant, evaluate the conditional.
995 Constant *Res = 0;
996 if (Result.isConstant()) {
997 Res = ConstantFoldCompareInstOperands(Pred, Result.getConstant(), C, TD);
Nick Lewycky69bfdf52010-12-15 18:57:18 +0000998 if (ConstantInt *ResCI = dyn_cast<ConstantInt>(Res))
Chris Lattnerb52675b2009-11-12 04:36:58 +0000999 return ResCI->isZero() ? False : True;
Chris Lattner2c5adf82009-11-15 19:59:49 +00001000 return Unknown;
1001 }
1002
Owen Anderson9f014062010-08-10 20:03:09 +00001003 if (Result.isConstantRange()) {
Owen Anderson59b06dc2010-08-24 07:55:44 +00001004 ConstantInt *CI = dyn_cast<ConstantInt>(C);
1005 if (!CI) return Unknown;
1006
Owen Anderson9f014062010-08-10 20:03:09 +00001007 ConstantRange CR = Result.getConstantRange();
1008 if (Pred == ICmpInst::ICMP_EQ) {
1009 if (!CR.contains(CI->getValue()))
1010 return False;
1011
1012 if (CR.isSingleElement() && CR.contains(CI->getValue()))
1013 return True;
1014 } else if (Pred == ICmpInst::ICMP_NE) {
1015 if (!CR.contains(CI->getValue()))
1016 return True;
1017
1018 if (CR.isSingleElement() && CR.contains(CI->getValue()))
1019 return False;
1020 }
1021
1022 // Handle more complex predicates.
Nick Lewycky69bfdf52010-12-15 18:57:18 +00001023 ConstantRange TrueValues =
1024 ICmpInst::makeConstantRange((ICmpInst::Predicate)Pred, CI->getValue());
1025 if (TrueValues.contains(CR))
Owen Anderson9f014062010-08-10 20:03:09 +00001026 return True;
Nick Lewycky69bfdf52010-12-15 18:57:18 +00001027 if (TrueValues.inverse().contains(CR))
1028 return False;
Owen Anderson9f014062010-08-10 20:03:09 +00001029 return Unknown;
1030 }
1031
Chris Lattner2c5adf82009-11-15 19:59:49 +00001032 if (Result.isNotConstant()) {
Chris Lattnerb52675b2009-11-12 04:36:58 +00001033 // If this is an equality comparison, we can try to fold it knowing that
1034 // "V != C1".
1035 if (Pred == ICmpInst::ICMP_EQ) {
1036 // !C1 == C -> false iff C1 == C.
1037 Res = ConstantFoldCompareInstOperands(ICmpInst::ICMP_NE,
1038 Result.getNotConstant(), C, TD);
1039 if (Res->isNullValue())
1040 return False;
1041 } else if (Pred == ICmpInst::ICMP_NE) {
1042 // !C1 != C -> true iff C1 == C.
Chris Lattner5553a3a2009-11-15 20:01:24 +00001043 Res = ConstantFoldCompareInstOperands(ICmpInst::ICMP_NE,
Chris Lattnerb52675b2009-11-12 04:36:58 +00001044 Result.getNotConstant(), C, TD);
1045 if (Res->isNullValue())
1046 return True;
1047 }
Chris Lattner2c5adf82009-11-15 19:59:49 +00001048 return Unknown;
Chris Lattnerb52675b2009-11-12 04:36:58 +00001049 }
1050
Chris Lattnercc4d3b22009-11-11 02:08:33 +00001051 return Unknown;
1052}
1053
Owen Andersoncfa7fb62010-07-26 18:48:03 +00001054void LazyValueInfo::threadEdge(BasicBlock *PredBB, BasicBlock *OldSucc,
Nick Lewycky69bfdf52010-12-15 18:57:18 +00001055 BasicBlock *NewSucc) {
Owen Anderson00ac77e2010-08-18 18:39:01 +00001056 if (PImpl) getCache(PImpl).threadEdge(PredBB, OldSucc, NewSucc);
1057}
1058
1059void LazyValueInfo::eraseBlock(BasicBlock *BB) {
1060 if (PImpl) getCache(PImpl).eraseBlock(BB);
Owen Andersoncfa7fb62010-07-26 18:48:03 +00001061}