1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310 311 312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330 331 332 333 334 335 336 337 338 339 340 341 342 343 344 345 346 347 348 349 350 351 352 353 354 355 356 357 358 359 360 361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389 390 391 392
|
//===--- RCStateTransitionVisitors.cpp ------------------------------------===//
//
// This source file is part of the Swift.org open source project
//
// Copyright (c) 2014 - 2017 Apple Inc. and the Swift project authors
// Licensed under Apache License v2.0 with Runtime Library Exception
//
// See https://swift.org/LICENSE.txt for license information
// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
//
//===----------------------------------------------------------------------===//
#define DEBUG_TYPE "arc-sequence-opts"
#include "RCStateTransitionVisitors.h"
#include "ARCBBState.h"
#include "swift/Basic/Assertions.h"
#include "swift/SILOptimizer/Analysis/ARCAnalysis.h"
#include "swift/SILOptimizer/Analysis/RCIdentityAnalysis.h"
#include "llvm/Support/Debug.h"
using namespace swift;
namespace {
using ARCBBState = ARCSequenceDataflowEvaluator::ARCBBState;
} // end anonymous namespace
//===----------------------------------------------------------------------===//
// Utilities
//===----------------------------------------------------------------------===//
/// Return true if this instruction is the epilogue release for the \p Arg.
/// false otherwise.
static bool isOwnedArgumentEpilogueRelease(SILInstruction *I, SILValue Arg,
EpilogueARCFunctionInfo *EAFI) {
auto Releases =
EAFI->computeEpilogueARCInstructions(
EpilogueARCContext::EpilogueARCKind::Release, Arg);
return Releases.size() && Releases.count(I);
}
static bool isGuaranteedSafetyByEpilogueRelease(SILInstruction *I, SILValue Arg,
EpilogueARCFunctionInfo *EAFI) {
auto Releases =
EAFI->computeEpilogueARCInstructions(
EpilogueARCContext::EpilogueARCKind::Release, Arg);
return Releases.size() && !Releases.count(I);
}
//===----------------------------------------------------------------------===//
// BottomUpRCStateTransitionVisitor
//===----------------------------------------------------------------------===//
template <class ARCState>
BottomUpDataflowRCStateVisitor<ARCState>::BottomUpDataflowRCStateVisitor(
RCIdentityFunctionInfo *RCFI, EpilogueARCFunctionInfo *EAFI,
ARCState &State, bool FreezeOwnedArgEpilogueReleases,
IncToDecStateMapTy &IncToDecStateMap,
ImmutablePointerSetFactory<SILInstruction *> &SetFactory)
: RCFI(RCFI), EAFI(EAFI), DataflowState(State),
FreezeOwnedArgEpilogueReleases(FreezeOwnedArgEpilogueReleases),
IncToDecStateMap(IncToDecStateMap), SetFactory(SetFactory) {}
template <class ARCState>
typename BottomUpDataflowRCStateVisitor<ARCState>::DataflowResult
BottomUpDataflowRCStateVisitor<ARCState>::
visitAutoreleasePoolCall(SILNode *N) {
DataflowState.clear();
// We just cleared our BB State so we have no more possible effects.
return DataflowResult(RCStateTransitionDataflowResultKind::NoEffects);
}
// private helper method since C++ does not have extensions... *sigh*.
//
// TODO: This needs a better name.
template <class ARCState>
static bool isKnownSafe(BottomUpDataflowRCStateVisitor<ARCState> *State,
SILInstruction *I, SILValue Op) {
// If we are running with 'frozen' owned arg releases, check if we have a
// frozen use in the side table. If so, this release must be known safe.
if (State->FreezeOwnedArgEpilogueReleases)
if (isGuaranteedSafetyByEpilogueRelease(I, Op, State->EAFI))
return true;
// A guaranteed function argument is guaranteed to outlive the function we are
// processing. So bottom up for such a parameter, we are always known safe.
if (auto *Arg = dyn_cast<SILFunctionArgument>(Op)) {
if (Arg->hasConvention(SILArgumentConvention::Direct_Guaranteed)) {
return true;
}
}
// If Op is a load from an in_guaranteed parameter, it is guaranteed as well.
if (auto *LI = dyn_cast<LoadInst>(Op)) {
SILValue RCIdentity = State->RCFI->getRCIdentityRoot(LI->getOperand());
if (auto *Arg = dyn_cast<SILFunctionArgument>(RCIdentity)) {
if (Arg->hasConvention(SILArgumentConvention::Indirect_In_Guaranteed)) {
return true;
}
}
}
return false;
}
template <class ARCState>
typename BottomUpDataflowRCStateVisitor<ARCState>::DataflowResult
BottomUpDataflowRCStateVisitor<ARCState>::visitStrongDecrement(SILNode *N) {
auto *I = dyn_cast<SILInstruction>(N);
if (!I)
return DataflowResult();
SILValue Op = RCFI->getRCIdentityRoot(I->getOperand(0));
// If this instruction is a post dominating release, skip it so we don't pair
// it up with anything. Do make sure that it does not effect any other
// instructions.
if (FreezeOwnedArgEpilogueReleases && isOwnedArgumentEpilogueRelease(I, Op, EAFI))
return DataflowResult(Op);
BottomUpRefCountState &State = DataflowState.getBottomUpRefCountState(Op);
bool NestingDetected = State.initWithMutatorInst(SetFactory.get(I), RCFI);
if (isKnownSafe(this, I, Op)) {
State.updateKnownSafe(true);
}
LLVM_DEBUG(llvm::dbgs() << " REF COUNT DECREMENT! Known Safe: "
<< (State.isKnownSafe() ? "yes" : "no") << "\n");
// Continue on to see if our reference decrement could potentially affect
// any other pointers via a use or a decrement.
return DataflowResult(Op, NestingDetected);
}
template <class ARCState>
typename BottomUpDataflowRCStateVisitor<ARCState>::DataflowResult
BottomUpDataflowRCStateVisitor<ARCState>::visitStrongIncrement(SILNode *N) {
auto *I = dyn_cast<SILInstruction>(N);
if (!I)
return DataflowResult();
// Look up the state associated with its operand...
SILValue Op = RCFI->getRCIdentityRoot(I->getOperand(0));
auto &RefCountState = DataflowState.getBottomUpRefCountState(Op);
LLVM_DEBUG(llvm::dbgs() << " REF COUNT INCREMENT!\n");
// If we find a state initialized with a matching increment, pair this
// decrement with a copy of the ref count state and then clear the ref
// count state in preparation for any future pairs we may see on the same
// pointer.
if (RefCountState.isRefCountInstMatchedToTrackedInstruction(I)) {
// Copy the current value of ref count state into the result map.
IncToDecStateMap[I] = RefCountState;
LLVM_DEBUG(llvm::dbgs() << " MATCHING DECREMENT:"
<< RefCountState.getRCRoot());
// Clear the ref count state so it can be used for future pairs we may
// see.
RefCountState.clear();
}
#ifndef NDEBUG
else {
if (RefCountState.isTrackingRefCountInst()) {
LLVM_DEBUG(llvm::dbgs() << " FAILED MATCH DECREMENT:"
<< RefCountState.getRCRoot());
} else {
LLVM_DEBUG(llvm::dbgs() << " FAILED MATCH DECREMENT. Not tracking a "
"decrement.\n");
}
}
#endif
return DataflowResult(Op);
}
//===----------------------------------------------------------------------===//
// TopDownDataflowRCStateVisitor
//===----------------------------------------------------------------------===//
template <class ARCState>
TopDownDataflowRCStateVisitor<ARCState>::TopDownDataflowRCStateVisitor(
RCIdentityFunctionInfo *RCFI, ARCState &DataflowState,
DecToIncStateMapTy &DecToIncStateMap,
ImmutablePointerSetFactory<SILInstruction *> &SetFactory)
: RCFI(RCFI), DataflowState(DataflowState),
DecToIncStateMap(DecToIncStateMap), SetFactory(SetFactory) {}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::
visitAutoreleasePoolCall(SILNode *N) {
DataflowState.clear();
// We just cleared our BB State so we have no more possible effects.
return DataflowResult(RCStateTransitionDataflowResultKind::NoEffects);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::visitStrongDecrement(SILNode *N) {
auto *I = dyn_cast<SILInstruction>(N);
if (!I)
return DataflowResult();
// Look up the state associated with I's operand...
SILValue Op = RCFI->getRCIdentityRoot(I->getOperand(0));
auto &RefCountState = DataflowState.getTopDownRefCountState(Op);
LLVM_DEBUG(llvm::dbgs() << " REF COUNT DECREMENT!\n");
// If we are tracking an increment on the ref count root associated with
// the decrement and the decrement matches, pair this decrement with a
// copy of the increment state and then clear the original increment state
// so that we are ready to process further values.
if (RefCountState.isRefCountInstMatchedToTrackedInstruction(I)) {
// Copy the current value of ref count state into the result map.
DecToIncStateMap[I] = RefCountState;
LLVM_DEBUG(llvm::dbgs() << " MATCHING INCREMENT:\n"
<< RefCountState.getRCRoot());
// Clear the ref count state in preparation for more pairs.
RefCountState.clear();
}
#if NDEBUG
else {
if (RefCountState.isTrackingRefCountInst()) {
LLVM_DEBUG(llvm::dbgs() << " FAILED MATCH INCREMENT:\n"
<< RefCountState.getValue());
} else {
LLVM_DEBUG(llvm::dbgs() << " FAILED MATCH. NO INCREMENT.\n");
}
}
#endif
// Otherwise we continue processing the reference count decrement to see if
// the decrement can affect any other pointers that we are tracking.
return DataflowResult(Op);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::visitStrongIncrement(SILNode *N) {
auto *I = dyn_cast<SILInstruction>(N);
if (!I)
return DataflowResult();
// Map the increment's operand to a newly initialized or reinitialized ref
// count state and continue...
SILValue Op = RCFI->getRCIdentityRoot(I->getOperand(0));
auto &State = DataflowState.getTopDownRefCountState(Op);
bool NestingDetected = State.initWithMutatorInst(SetFactory.get(I), RCFI);
LLVM_DEBUG(llvm::dbgs() << " REF COUNT INCREMENT! Known Safe: "
<< (State.isKnownSafe() ? "yes" : "no") << "\n");
// Continue processing in case this increment could be a CanUse for a
// different pointer.
return DataflowResult(Op, NestingDetected);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::visitStrongEntranceArgument(
SILFunctionArgument *Arg) {
LLVM_DEBUG(llvm::dbgs() << "VISITING ENTRANCE ARGUMENT: " << *Arg);
if (!Arg->hasConvention(SILArgumentConvention::Direct_Owned)) {
LLVM_DEBUG(llvm::dbgs() << " Not owned! Bailing!\n");
return DataflowResult();
}
LLVM_DEBUG(llvm::dbgs() << " Initializing state.\n");
auto &State = DataflowState.getTopDownRefCountState(Arg);
State.initWithArg(Arg);
return DataflowResult();
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::
visitStrongEntranceApply(ApplyInst *AI) {
LLVM_DEBUG(llvm::dbgs() << "VISITING ENTRANCE APPLY: " << *AI);
// We should have checked earlier that AI has an owned result value. To
// prevent mistakes, assert that here.
#ifndef NDEBUG
bool hasOwnedResult = false;
for (auto result : AI->getSubstCalleeConv().getDirectSILResults()) {
if (result.getConvention() == ResultConvention::Owned)
hasOwnedResult = true;
}
assert(hasOwnedResult && "Expected AI to be Owned here");
#endif
// Otherwise, return a dataflow result containing a +1.
LLVM_DEBUG(llvm::dbgs() << " Initializing state.\n");
auto &State = DataflowState.getTopDownRefCountState(AI);
State.initWithEntranceInst(SetFactory.get(AI), AI);
return DataflowResult(AI);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::visitStrongEntrancePartialApply(
PartialApplyInst *PAI) {
LLVM_DEBUG(llvm::dbgs() << "VISITING ENTRANCE PARTIAL APPLY: " << *PAI);
// Rreturn a dataflow result containing a +1.
LLVM_DEBUG(llvm::dbgs() << " Initializing state.\n");
auto &State = DataflowState.getTopDownRefCountState(PAI);
State.initWithEntranceInst(SetFactory.get(PAI), PAI);
return DataflowResult(PAI);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::
visitStrongEntranceAllocRef(AllocRefInst *ARI) {
// Alloc refs always introduce new references at +1.
TopDownRefCountState &State = DataflowState.getTopDownRefCountState(ARI);
State.initWithEntranceInst(SetFactory.get(ARI), ARI);
return DataflowResult(ARI);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::
visitStrongEntranceAllocRefDynamic(AllocRefDynamicInst *ARI) {
// Alloc ref dynamic always introduce references at +1.
auto &State = DataflowState.getTopDownRefCountState(ARI);
State.initWithEntranceInst(SetFactory.get(ARI), ARI);
return DataflowResult(ARI);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::
visitStrongAllocBox(AllocBoxInst *ABI) {
// Alloc box introduces a ref count of +1 on its container.
auto &State = DataflowState.getTopDownRefCountState(ABI);
State.initWithEntranceInst(SetFactory.get(ABI), ABI);
return DataflowResult(ABI);
}
template <class ARCState>
typename TopDownDataflowRCStateVisitor<ARCState>::DataflowResult
TopDownDataflowRCStateVisitor<ARCState>::
visitStrongEntrance(SILNode *N) {
if (auto *Arg = dyn_cast<SILFunctionArgument>(N))
return visitStrongEntranceArgument(Arg);
if (auto *AI = dyn_cast<ApplyInst>(N))
return visitStrongEntranceApply(AI);
if (auto *ARI = dyn_cast<AllocRefInst>(N))
return visitStrongEntranceAllocRef(ARI);
if (auto *ARI = dyn_cast<AllocRefDynamicInst>(N))
return visitStrongEntranceAllocRefDynamic(ARI);
if (auto *ABI = dyn_cast<AllocBoxInst>(N))
return visitStrongAllocBox(ABI);
if (auto *PAI = dyn_cast<PartialApplyInst>(N))
return visitStrongEntrancePartialApply(PAI);
return DataflowResult();
}
//===----------------------------------------------------------------------===//
// Template Instantiation
//===----------------------------------------------------------------------===//
namespace swift {
template class BottomUpDataflowRCStateVisitor<ARCBBState>;
template class BottomUpDataflowRCStateVisitor<ARCRegionState>;
template class TopDownDataflowRCStateVisitor<ARCBBState>;
template class TopDownDataflowRCStateVisitor<ARCRegionState>;
} // namespace swift
|