31#define DEBUG_TYPE "iroutliner"
34using namespace IRSimilarity;
58 cl::desc(
"Enable the IR outliner on linkonceodr functions"),
65 cl::desc(
"Debug option to outline greedily, without restriction that "
66 "calculated benefit outweighs cost"));
158 TargetBB.
splice(TargetBB.
end(), &SourceBB);
168 for (
auto &VtoBB : Map)
169 SortedKeys.push_back(VtoBB.first);
173 if (SortedKeys.size() == 1) {
174 assert(!SortedKeys[0] &&
"Expected a single void value.");
190 assert(GVN &&
"No GVN for incoming value");
192 std::optional<unsigned> FirstGVN =
193 Other.Candidate->fromCanonicalNum(*CanonNum);
194 std::optional<Value *> FoundValueOpt =
Other.Candidate->fromGVN(*FirstGVN);
195 return FoundValueOpt.value_or(
nullptr);
202 assert(FirstNonPHI &&
"block is empty?");
204 if (!CorrespondingVal)
207 cast<Instruction>(CorrespondingVal)->
getParent();
208 return CorrespondingBlock;
225 for (
unsigned Idx = 0, PNEnd = PN.getNumIncomingValues();
Idx != PNEnd;
234 assert(BI &&
"Not a branch instruction?");
263 assert(EndInst &&
"Expected an end instruction?");
274 assert(StartInst &&
"Expected a start instruction?");
293 while (
PHINode *PN = dyn_cast<PHINode>(&*It)) {
294 unsigned NumPredsOutsideRegion = 0;
295 for (
unsigned i = 0, e = PN->getNumIncomingValues(); i != e; ++i) {
296 if (!BBSet.
contains(PN->getIncomingBlock(i))) {
297 PHIPredBlock = PN->getIncomingBlock(i);
298 ++NumPredsOutsideRegion;
305 IBlock = PN->getIncomingBlock(i);
306 if (IBlock ==
EndBB && EndBBTermAndBackInstDifferent) {
307 PHIPredBlock = PN->getIncomingBlock(i);
308 ++NumPredsOutsideRegion;
312 if (NumPredsOutsideRegion > 1)
320 if (isa<PHINode>(StartInst) && StartInst != &*
StartBB->
begin())
325 if (isa<PHINode>(BackInst) &&
392 assert(
StartBB !=
nullptr &&
"StartBB for Candidate is not defined!");
410 "PrevBB has more than one predecessor. Should be 0 or 1.");
434 assert(
FollowBB !=
nullptr &&
"FollowBB for Candidate is not defined!");
462static std::optional<bool>
466 Constant *CST = dyn_cast<Constant>(V);
476 std::tie(GVNToConstantIt, Inserted) =
477 GVNToConstant.
insert(std::make_pair(GVN, CST));
480 if (Inserted || (GVNToConstantIt->second == CST))
503 switch (
I->getOpcode()) {
504 case Instruction::FDiv:
505 case Instruction::FRem:
506 case Instruction::SDiv:
507 case Instruction::SRem:
508 case Instruction::UDiv:
509 case Instruction::URem:
533 OutputMappings.
find(Input);
534 if (OutputMapping != OutputMappings.
end())
535 return OutputMapping->second;
552 bool ConstantsTheSame =
true;
561 std::optional<unsigned> GVNOpt =
C.getGVN(V);
562 assert(GVNOpt &&
"Expected a GVN for operand?");
563 unsigned GVN = *GVNOpt;
567 if (isa<Constant>(V))
568 ConstantsTheSame =
false;
576 std::optional<bool> ConstantMatches =
578 if (ConstantMatches) {
579 if (*ConstantMatches)
582 ConstantsTheSame =
false;
589 ConstantsTheSame =
false;
595 return ConstantsTheSame;
607 OutputGVNCombinations.insert(
OS->GVNStores);
612 if (OutputGVNCombinations.size() > 1)
630 unsigned FunctionNameSuffix) {
643 Type *ExtractedFuncType =
R->ExtractedFunction->getReturnType();
646 RetTy = ExtractedFuncType;
656 "outlined_ir_func_" + std::to_string(FunctionNameSuffix), M);
661 Attribute::SwiftError);
681 Unit ,
F->getName(), Dummy, Unit ,
683 DB.createSubroutineType(
DB.getOrCreateTypeArray({})),
685 DINode::DIFlags::FlagArtificial ,
687 DISubprogram::SPFlagDefinition | DISubprogram::SPFlagOptimized);
690 F->setSubprogram(OutlinedSP);
706 CurrBB.removeFromParent();
707 CurrBB.insertInto(&New);
714 NewEnds.
insert(std::make_pair(RI->getReturnValue(), &CurrBB));
721 Val.dropDbgRecords();
725 if (!isa<CallInst>(&Val)) {
734 if (
auto *Loc = dyn_cast_or_null<DILocation>(MD))
736 Loc->getColumn(), SP,
nullptr);
762 std::vector<unsigned> &Inputs) {
766 for (IRInstructionDataList::iterator IDIt =
C.begin(), EndIDIt =
C.end();
767 IDIt != EndIDIt; IDIt++) {
768 for (
Value *V : (*IDIt).OperVals) {
771 unsigned GVN = *
C.getGVN(V);
772 if (isa<Constant>(V))
774 Inputs.push_back(GVN);
792 std::vector<unsigned> &EndInputNumbers) {
796 for (
Value *Input : CurrentInputs) {
797 assert(Input &&
"Have a nullptr as an input");
798 auto It = OutputMappings.
find(Input);
799 if (It != OutputMappings.
end())
801 assert(
C.getGVN(Input) &&
"Could not find a numbering for the given input");
802 EndInputNumbers.push_back(*
C.getGVN(Input));
820 for (
Value *Input : ArgInputs) {
821 auto It = OutputMappings.
find(Input);
822 if (It != OutputMappings.
end())
824 RemappedArgInputs.
insert(Input);
867 CE->findInputsOutputs(OverallInputs, DummyOutputs, SinkCands);
868 assert(
Region.StartBB &&
"Region must have a start BasicBlock!");
875 if (!CE->isEligible()) {
876 Region.IgnoreRegion =
true;
881 CE->findAllocas(CEAC, SinkCands, HoistCands, Dummy);
882 CE->findInputsOutputs(PremappedInputs, Outputs, SinkCands);
889 if (OverallInputs.
size() != PremappedInputs.
size()) {
890 Region.IgnoreRegion =
true;
918 std::vector<unsigned> &InputGVNs,
925 unsigned TypeIndex = 0;
928 unsigned OriginalIndex = 0;
939 for (
unsigned InputVal : InputGVNs) {
940 std::optional<unsigned> CanonicalNumberOpt =
C.getCanonicalNum(InputVal);
941 assert(CanonicalNumberOpt &&
"Canonical number not found?");
942 unsigned CanonicalNumber = *CanonicalNumberOpt;
944 std::optional<Value *> InputOpt =
C.fromGVN(InputVal);
945 assert(InputOpt &&
"Global value number not found?");
946 Value *Input = *InputOpt;
958 "Argument already marked with swifterr for this OutlinableGroup!");
965 if (
Constant *CST = dyn_cast<Constant>(Input)) {
967 Region.AggArgToConstant.insert(std::make_pair(AggArgIt->second, CST));
970 std::make_pair(CanonicalNumber, TypeIndex));
971 Region.AggArgToConstant.insert(std::make_pair(TypeIndex, CST));
979 assert(ArgInputs.
count(Input) &&
"Input cannot be found!");
982 if (OriginalIndex != AggArgIt->second)
983 Region.ChangedArgOrder =
true;
984 Region.ExtractedArgToAgg.insert(
985 std::make_pair(OriginalIndex, AggArgIt->second));
986 Region.AggArgToExtracted.insert(
987 std::make_pair(AggArgIt->second, OriginalIndex));
990 std::make_pair(CanonicalNumber, TypeIndex));
991 Region.ExtractedArgToAgg.insert(std::make_pair(OriginalIndex, TypeIndex));
992 Region.AggArgToExtracted.insert(std::make_pair(TypeIndex, OriginalIndex));
1007 Region.NumExtractedInputs = OriginalIndex;
1026 [PHILoc, &PN, V, &BlocksInRegion](
unsigned Idx) {
1027 return (Idx != PHILoc && V == PN.getIncomingValue(Idx) &&
1028 !BlocksInRegion.contains(PN.getIncomingBlock(Idx)));
1033 return any_of(V->users(), [&Exits, &BlocksInRegion](
User *U) {
1034 Instruction *I = dyn_cast<Instruction>(U);
1041 BasicBlock *Parent = I->getParent();
1042 if (BlocksInRegion.contains(Parent))
1048 if (!isa<PHINode>(I))
1055 if (!Exits.contains(Parent))
1082 for (
PHINode &PN : CurrentExitFromRegion->
phis()) {
1085 for (
unsigned I = 0, E = PN.getNumIncomingValues();
I < E; ++
I)
1086 if (RegionBlocks.
contains(PN.getIncomingBlock(
I)))
1090 unsigned NumIncomingVals = IncomingVals.
size();
1091 if (NumIncomingVals == 0)
1096 if (NumIncomingVals == 1) {
1097 Value *V = PN.getIncomingValue(*IncomingVals.
begin());
1098 OutputsWithNonPhiUses.
insert(V);
1099 OutputsReplacedByPHINode.
erase(V);
1109 for (
unsigned Idx : IncomingVals) {
1110 Value *V = PN.getIncomingValue(
Idx);
1111 if (!isa<Constant>(V) &&
1113 OutputsWithNonPhiUses.
insert(V);
1114 OutputsReplacedByPHINode.
erase(V);
1117 if (!OutputsWithNonPhiUses.
contains(V))
1118 OutputsReplacedByPHINode.
insert(V);
1161 unsigned AggArgIdx) {
1173 if (!
Blocks.contains(IncomingBlock))
1183 Region.IgnoreRegion =
true;
1184 return std::nullopt;
1188 unsigned GVN = *OGVN;
1190 assert(OGVN &&
"No GVN found for incoming value?");
1195 OGVN = Cand.
getGVN(IncomingBlock);
1202 "Unknown basic block used in exit path PHINode.");
1210 if (!
Blocks.contains(Pred)) {
1214 assert(PrevBlock &&
"Expected a predecessor not in the reigon!");
1215 OGVN = Cand.
getGVN(PrevBlock);
1219 assert(OGVN &&
"No GVN found for incoming block?");
1228 std::optional<unsigned> BBGVN = Cand.
getGVN(PHIBB);
1229 assert(BBGVN &&
"Could not find GVN for the incoming block!");
1232 assert(BBGVN &&
"Could not find canonical number for the incoming block!");
1237 std::make_pair(std::make_pair(*BBGVN, AggArgIdx), PHIGVNs);
1244 bool Inserted =
false;
1251 return GVNToPHIIt->second;
1267 C.getBasicBlocks(BlocksInRegion, BE);
1273 if (!BlocksInRegion.
contains(Succ))
1283 OutputsReplacedByPHINode,
1284 OutputsWithNonPhiUses);
1287 unsigned OriginalIndex =
Region.NumExtractedInputs;
1300 for (
Value *Output : Outputs) {
1310 if (OutputsReplacedByPHINode.
contains(Output))
1313 unsigned AggArgIdx = 0;
1314 for (
unsigned Jdx = TypeIndex; Jdx < ArgumentSize; Jdx++) {
1318 if (!AggArgsUsed.
insert(Jdx).second)
1322 Region.ExtractedArgToAgg.insert(std::make_pair(OriginalIndex, Jdx));
1323 Region.AggArgToExtracted.insert(std::make_pair(Jdx, OriginalIndex));
1333 M.getDataLayout().getAllocaAddrSpace()));
1337 AggArgsUsed.
insert(ArgTypeIdx);
1338 Region.ExtractedArgToAgg.insert(
1339 std::make_pair(OriginalIndex, ArgTypeIdx));
1340 Region.AggArgToExtracted.insert(
1341 std::make_pair(ArgTypeIdx, OriginalIndex));
1342 AggArgIdx = ArgTypeIdx;
1346 PHINode *PN = dyn_cast<PHINode>(Output);
1348 std::optional<unsigned> GVN;
1366 GVN =
C.getGVN(Output);
1367 GVN =
C.getCanonicalNum(*GVN);
1373 Region.GVNStores.push_back(*GVN);
1386 std::vector<unsigned> Inputs;
1414 std::vector<Value *> NewCallArgs;
1419 assert(Call &&
"Call to replace is nullptr?");
1421 assert(AggFunc &&
"Function to replace with is nullptr?");
1427 if (!
Region.ChangedArgOrder && AggFunc->
arg_size() == Call->arg_size()) {
1428 LLVM_DEBUG(
dbgs() <<
"Replace call to " << *Call <<
" with call to "
1429 << *AggFunc <<
" with same number of arguments\n");
1430 Call->setCalledFunction(AggFunc);
1438 for (
unsigned AggArgIdx = 0; AggArgIdx < AggFunc->
arg_size(); AggArgIdx++) {
1440 if (AggArgIdx == AggFunc->
arg_size() - 1 &&
1446 <<
Region.OutputBlockNum <<
"\n");
1452 ArgPair =
Region.AggArgToExtracted.find(AggArgIdx);
1453 if (ArgPair !=
Region.AggArgToExtracted.
end()) {
1454 Value *ArgumentValue = Call->getArgOperand(ArgPair->second);
1458 LLVM_DEBUG(
dbgs() <<
"Setting argument " << AggArgIdx <<
" to value "
1459 << *ArgumentValue <<
"\n");
1460 NewCallArgs.push_back(ArgumentValue);
1465 if (
auto It =
Region.AggArgToConstant.find(AggArgIdx);
1468 LLVM_DEBUG(
dbgs() <<
"Setting argument " << AggArgIdx <<
" to value "
1470 NewCallArgs.push_back(CST);
1477 LLVM_DEBUG(
dbgs() <<
"Setting argument " << AggArgIdx <<
" to nullptr\n");
1482 LLVM_DEBUG(
dbgs() <<
"Replace call to " << *Call <<
" with call to "
1483 << *AggFunc <<
" with new set of arguments\n");
1486 Call->getIterator());
1493 if (
Region.NewFront->Inst == OldCall)
1494 Region.NewFront->Inst = Call;
1495 if (
Region.NewBack->Inst == OldCall)
1496 Region.NewBack->Inst = Call;
1499 Call->setDebugLoc(
Region.Call->getDebugLoc());
1530 return PhiBlockForRetVal->second;
1532 auto ReturnBlockForRetVal = Group.
EndBBs.
find(RetVal);
1534 "Could not find output value!");
1535 BasicBlock *ReturnBB = ReturnBlockForRetVal->second;
1541 PhiBlockForRetVal->second = PHIBlock;
1548 BranchesToChange.
push_back(cast<BranchInst>(Pred->getTerminator()));
1553 for (
unsigned Succ = 0,
End = BI->getNumSuccessors(); Succ <
End; Succ++) {
1554 if (BI->getSuccessor(Succ) != ReturnBB)
1556 BI->setSuccessor(Succ, PHIBlock);
1561 return PhiBlockForRetVal->second;
1578 return Region.Call->getArgOperand(
A->getArgNo());
1591 unsigned ArgNum =
A->getArgNo();
1595 if (
auto It =
Region.AggArgToConstant.find(ArgNum);
1601 ArgNum =
Region.AggArgToExtracted.find(ArgNum)->second;
1602 return Region.Call->getArgOperand(ArgNum);
1618 SmallVector<std::pair<unsigned, BasicBlock *>> &CanonNums,
1619 bool ReplacedWithOutlinedCall =
true) {
1626 if (
Argument *
A = dyn_cast<Argument>(IVal)) {
1627 if (ReplacedWithOutlinedCall)
1637 std::optional<unsigned> GVN =
Region.Candidate->getGVN(IVal);
1638 assert(GVN &&
"No GVN for incoming value");
1639 std::optional<unsigned> CanonNum =
Region.Candidate->getCanonicalNum(*GVN);
1640 assert(CanonNum &&
"No Canonical Number for GVN");
1641 CanonNums.push_back(std::make_pair(*CanonNum, IBlock));
1692 CurrentCanonNums.
clear();
1698 if (PNCanonNums.
size() != CurrentCanonNums.
size())
1701 bool FoundMatch =
true;
1710 for (
unsigned Idx = 0, Edx = PNCanonNums.
size();
Idx < Edx; ++
Idx) {
1711 std::pair<unsigned, BasicBlock *> ToCompareTo = CurrentCanonNums[
Idx];
1712 std::pair<unsigned, BasicBlock *> ToAdd = PNCanonNums[
Idx];
1713 if (ToCompareTo.first != ToAdd.first) {
1719 Region.findCorrespondingBlockIn(*FirstRegion, ToAdd.second);
1720 assert(CorrespondingBlock &&
"Found block is nullptr");
1721 if (CorrespondingBlock != ToCompareTo.second) {
1730 UsedPHIs.
insert(&CurrPN);
1747 Region.findCorrespondingBlockIn(*FirstRegion, IncomingBlock);
1752 if (
Argument *
A = dyn_cast<Argument>(IncomingVal)) {
1760 Value *Val =
Region.findCorrespondingValueIn(*FirstRegion, IncomingVal);
1761 assert(Val &&
"Value is nullptr?");
1765 Val = RemappedIt->second;
1784 bool FirstFunction =
false) {
1786 assert(
Region.ExtractedFunction &&
"Region has no extracted function?");
1794 for (
unsigned ArgIdx = 0; ArgIdx <
Region.ExtractedFunction->arg_size();
1797 "No mapping from extracted to outlined?");
1798 unsigned AggArgIdx =
Region.ExtractedArgToAgg.find(ArgIdx)->second;
1803 if (ArgIdx <
Region.NumExtractedInputs) {
1804 LLVM_DEBUG(
dbgs() <<
"Replacing uses of input " << *Arg <<
" in function "
1805 << *
Region.ExtractedFunction <<
" with " << *AggArg
1809 Region.RemappedArguments.insert(std::make_pair(V, AggArg));
1818 assert(InstAsUser &&
"User is nullptr!");
1824 bool EdgeAdded =
false;
1825 if (Descendants.
size() == 0) {
1835 ReturnInst *RI = dyn_cast<ReturnInst>(DescendBB->getTerminator());
1839 auto VBBIt = OutputBBs.
find(RetVal);
1840 assert(VBBIt != OutputBBs.
end() &&
"Could not find output value!");
1846 Value *ValueOperand = SI->getValueOperand();
1848 StoreInst *NewI = cast<StoreInst>(
I->clone());
1853 << *OutputBB <<
"\n");
1857 if (!isa<PHINode>(ValueOperand) ||
1858 Region.Candidate->getGVN(ValueOperand).has_value()) {
1862 Region.findCorrespondingValueIn(*Group.
Regions[0], ValueOperand);
1863 assert(CorrVal &&
"Value is nullptr?");
1867 PHINode *PN = cast<PHINode>(SI->getValueOperand());
1870 if (
Region.Candidate->getGVN(PN))
1880 if (FirstFunction) {
1894 OutputMappings, UsedPHIs);
1902 I->eraseFromParent();
1904 LLVM_DEBUG(
dbgs() <<
"Replacing uses of output " << *Arg <<
" in function "
1905 << *
Region.ExtractedFunction <<
" with " << *AggArg
1921 for (std::pair<unsigned, Constant *> &Const :
Region.AggArgToConstant) {
1922 unsigned AggArgIdx = Const.first;
1923 assert(OutlinedFunction &&
"Overall Function is not defined?");
1930 <<
" in function " << *OutlinedFunction <<
" with "
1948 bool Mismatch =
false;
1949 unsigned MatchingNum = 0;
1955 for (std::pair<Value *, BasicBlock *> &VToB : CompBBs) {
1957 OutputBBs.
find(VToB.first);
1958 if (OutputBBIt == OutputBBs.
end()) {
1965 if (CompBB->
size() - 1 != OutputBB->
size()) {
1972 if (isa<BranchInst>(&
I))
1975 if (!
I.isIdenticalTo(&(*NIt))) {
1990 return std::nullopt;
2001 bool AllRemoved =
true;
2002 Value *RetValueForBB;
2006 for (std::pair<Value *, BasicBlock *> &VtoBB : BlocksToPrune) {
2007 RetValueForBB = VtoBB.first;
2008 NewBB = VtoBB.second;
2012 if (NewBB->
size() == 0) {
2025 BlocksToPrune.
erase(V);
2029 Region.OutputBlockNum = -1;
2059 std::optional<unsigned> MatchingBB =
2066 <<
Region.ExtractedFunction <<
" to " << *MatchingBB);
2068 Region.OutputBlockNum = *MatchingBB;
2069 for (std::pair<Value *, BasicBlock *> &VtoBB : OutputBBs)
2070 VtoBB.second->eraseFromParent();
2074 Region.OutputBlockNum = OutputStoreBBs.size();
2076 Value *RetValueForBB;
2079 for (std::pair<Value *, BasicBlock *> &VtoBB : OutputBBs) {
2080 RetValueForBB = VtoBB.first;
2081 NewBB = VtoBB.second;
2083 EndBBs.
find(RetValueForBB);
2085 <<
Region.ExtractedFunction <<
" to "
2088 OutputStoreBBs.back().insert(std::make_pair(RetValueForBB, NewBB));
2105 std::vector<Value *> SortedKeys;
2109 for (
Value *RetVal : SortedKeys) {
2114 NewMap.
insert(std::make_pair(RetVal, NewBB));
2143 for (std::pair<Value *, BasicBlock *> &RetBlockPair : ReturnBBs) {
2144 std::pair<Value *, BasicBlock *> &OutputBlock =
2146 BasicBlock *ReturnBlock = RetBlockPair.second;
2151 Term->moveBefore(*ReturnBlock, ReturnBlock->
end());
2154 LLVM_DEBUG(
dbgs() <<
"Create switch statement in " << *AggFunc <<
" for "
2155 << OutputStoreBBs.
size() <<
"\n");
2158 ReturnBlock, OutputStoreBBs.
size(), EndBB);
2163 OutputStoreBB.
find(OutputBlock.first);
2165 if (OSBBIt == OutputStoreBB.
end())
2172 Term->setSuccessor(0, ReturnBlock);
2179 assert(OutputStoreBBs.size() < 2 &&
"Different store sets not handled!");
2187 if (OutputStoreBBs.size() == 1) {
2188 LLVM_DEBUG(
dbgs() <<
"Move store instructions to the end block in "
2191 for (std::pair<Value *, BasicBlock *> &VBPair : OutputBlocks) {
2193 EndBBs.
find(VBPair.first);
2194 assert(EndBBIt != EndBBs.
end() &&
"Could not find end block");
2198 Term->eraseFromParent();
2201 Term->moveBefore(*EndBB, EndBB->
end());
2223 std::vector<Function *> &FuncsToRemove,
2252 for (std::pair<Value *, BasicBlock *> &VToBB : NewBBs) {
2257 OutputStoreBBs.back().insert(VToBB);
2269void IROutliner::deduplicateExtractedSections(
2271 std::vector<Function *> &FuncsToRemove,
unsigned &OutlinedFunctionNum) {
2272 createFunction(M, CurrentGroup, OutlinedFunctionNum);
2274 std::vector<DenseMap<Value *, BasicBlock *>> OutputStoreBBs;
2291 "output_block_" +
Twine(
static_cast<unsigned>(
Idx)));
2294 CurrentGroup.
EndBBs, OutputMappings,
2304 OutlinedFunctionNum++;
2321 IRInstructionDataList::iterator NextIDIt = std::next(
ID.getIterator());
2324 if (!
ID.Inst->isTerminator())
2325 NextModuleInst =
ID.Inst->getNextNode();
2326 else if (NextIDLInst !=
nullptr)
2328 &*NextIDIt->Inst->
getParent()->instructionsWithoutDebug().begin();
2330 if (NextIDLInst && NextIDLInst != NextModuleInst)
2336bool IROutliner::isCompatibleWithAlreadyOutlinedCode(
2344 for (
unsigned Idx = StartIdx;
Idx <= EndIdx;
Idx++)
2350 if (!
Region.Candidate->backInstruction()->isTerminator()) {
2352 Region.Candidate->backInstruction()->getNextNode();
2353 assert(NewEndInst &&
"Next instruction is a nullptr?");
2354 if (
Region.Candidate->
end()->Inst != NewEndInst) {
2358 InstructionClassifier.visit(*NewEndInst), *IDL);
2370 return !this->InstructionClassifier.visit(
ID.Inst);
2374void IROutliner::pruneIncompatibleRegions(
2375 std::vector<IRSimilarityCandidate> &CandidateVec,
2377 bool PreviouslyOutlined;
2382 return LHS.getStartIdx() <
RHS.getStartIdx();
2388 if (FirstCandidate.getLength() == 2) {
2389 if (isa<CallInst>(FirstCandidate.front()->Inst) &&
2390 isa<BranchInst>(FirstCandidate.back()->Inst))
2394 unsigned CurrentEndIdx = 0;
2396 PreviouslyOutlined =
false;
2401 for (
unsigned Idx = StartIdx;
Idx <= EndIdx;
Idx++)
2403 PreviouslyOutlined =
true;
2407 if (PreviouslyOutlined)
2413 return ID.Inst->getParent()->hasAddressTaken();
2416 if (BBHasAddressTaken)
2424 dbgs() <<
"... Skipping function with nooutline attribute: "
2425 << FnForCurrCand.
getName() <<
"\n";
2431 !OutlineFromLinkODRs)
2436 if (CurrentEndIdx != 0 && StartIdx <= CurrentEndIdx)
2443 return !this->InstructionClassifier.visit(
ID.Inst);
2453 CurrentEndIdx = EndIdx;
2464 RegionBenefit +=
Region->getBenefit(
TTI);
2466 <<
" saved instructions to overfall benefit.\n");
2469 return RegionBenefit;
2481 unsigned OutputCanon) {
2489 "Could not find GVN set for PHINode number!");
2490 assert(It->second.second.size() > 0 &&
"PHINode does not have any values!");
2491 OutputCanon = *It->second.second.begin();
2493 std::optional<unsigned> OGVN =
2494 Region.Candidate->fromCanonicalNum(OutputCanon);
2495 assert(OGVN &&
"Could not find GVN for Canonical Number?");
2496 std::optional<Value *> OV =
Region.Candidate->fromGVN(*OGVN);
2497 assert(OV &&
"Could not find value for GVN?");
2508 for (
unsigned OutputCanon :
Region->GVNStores) {
2515 <<
" instructions to cost for output of type "
2516 << *
V->getType() <<
"\n");
2517 OverallCost += LoadCost;
2536 unsigned NumOutputBranches = 0;
2547 if (!isa<BranchInst>(
ID.Inst))
2550 for (
Value *V :
ID.OperVals) {
2552 if (!CandidateBlocks.
contains(BB) && FoundBlocks.
insert(BB).second)
2553 NumOutputBranches++;
2561 for (
unsigned OutputCanon : OutputUse) {
2571 <<
" instructions to cost for output of type "
2572 << *V->getType() <<
"\n");
2573 OutputCost += StoreCost * NumOutputBranches;
2578 LLVM_DEBUG(
dbgs() <<
"Adding " << BranchCost <<
" to the current cost for"
2579 <<
" a branch instruction\n");
2580 OutputCost += BranchCost * NumOutputBranches;
2594 InstructionCost TotalCost = ComparisonCost * BranchCost * DifferentBlocks;
2597 <<
" instructions for each switch case for each different"
2598 <<
" output path in a function\n");
2599 OutputCost += TotalCost * NumOutputBranches;
2606 InstructionCost RegionBenefit = findBenefitFromAllRegions(CurrentGroup);
2607 CurrentGroup.
Benefit += RegionBenefit;
2610 InstructionCost OutputReloadCost = findCostOutputReloads(CurrentGroup);
2611 CurrentGroup.
Cost += OutputReloadCost;
2615 RegionBenefit / CurrentGroup.
Regions.size();
2616 unsigned OverallArgumentNum = CurrentGroup.
ArgumentTypes.size();
2617 unsigned NumRegions = CurrentGroup.
Regions.size();
2619 getTTI(*CurrentGroup.
Regions[0]->Candidate->getFunction());
2624 <<
" instructions to cost for body of new function.\n");
2625 CurrentGroup.
Cost += AverageRegionBenefit;
2631 <<
" instructions to cost for each argument in the new"
2633 CurrentGroup.
Cost +=
2641 <<
" instructions to cost for each argument in the new"
2642 <<
" function " << NumRegions <<
" times for the "
2643 <<
"needed argument handling at the call site.\n");
2644 CurrentGroup.
Cost +=
2657 std::optional<unsigned> OutputIdx;
2659 for (
unsigned ArgIdx =
Region.NumExtractedInputs;
2660 ArgIdx < Region.Call->arg_size(); ArgIdx++) {
2661 if (Operand ==
Region.Call->getArgOperand(ArgIdx)) {
2662 OutputIdx = ArgIdx -
Region.NumExtractedInputs;
2672 auto It = OutputMappings.find(Outputs[*OutputIdx]);
2673 if (It == OutputMappings.end()) {
2674 LLVM_DEBUG(
dbgs() <<
"Mapping extracted output " << *LI <<
" to "
2675 << *Outputs[*OutputIdx] <<
"\n");
2676 OutputMappings.insert(std::make_pair(LI, Outputs[*OutputIdx]));
2678 Value *Orig = It->second;
2679 LLVM_DEBUG(
dbgs() <<
"Mapping extracted output " << *Orig <<
" to "
2680 << *Outputs[*OutputIdx] <<
"\n");
2681 OutputMappings.insert(std::make_pair(LI, Orig));
2687 assert(
Region.StartBB &&
"StartBB for the OutlinableRegion is nullptr!");
2691 Region.ExtractedFunction =
2692 Region.CE->extractCodeRegion(CEAC, ArgInputs, Outputs);
2696 if (!
Region.ExtractedFunction) {
2699 Region.reattachCandidate();
2707 User *InstAsUser =
Region.ExtractedFunction->user_back();
2711 if (
Region.PrevBB == InitialStart) {
2720 Region.StartBB = RewrittenBB;
2721 Region.EndBB = RewrittenBB;
2732 *BeginRewritten, InstructionClassifier.visit(*BeginRewritten), *IDL);
2734 *EndRewritten, InstructionClassifier.visit(*EndRewritten), *IDL);
2745 assert(RewrittenBB !=
nullptr &&
2746 "Could not find a predecessor after extraction!");
2751 if (
CallInst *CI = dyn_cast<CallInst>(&
I)) {
2752 if (
Region.ExtractedFunction == CI->getCalledFunction())
2754 }
else if (
LoadInst *LI = dyn_cast<LoadInst>(&
I))
2756 Region.reattachCandidate();
2760unsigned IROutliner::doOutline(
Module &M) {
2770 unsigned OutlinedFunctionNum = 0;
2773 if (SimilarityCandidates.size() > 1)
2775 [](
const std::vector<IRSimilarityCandidate> &LHS,
2776 const std::vector<IRSimilarityCandidate> &RHS) {
2777 return LHS[0].getLength() *
LHS.size() >
2778 RHS[0].getLength() *
RHS.size();
2782 std::vector<OutlinableGroup> PotentialGroups(SimilarityCandidates.size());
2785 std::vector<OutlinableGroup *> NegativeCostGroups;
2786 std::vector<OutlinableRegion *> OutlinedRegions;
2788 unsigned PotentialGroupIdx = 0;
2793 pruneIncompatibleRegions(CandidateVec, CurrentGroup);
2798 if (CurrentGroup.
Regions.size() < 2)
2812 OutlinedRegions.clear();
2816 OS->splitCandidate();
2821 if (!
OS->CandidateSplit)
2826 OS->Candidate->getBasicBlocks(BlocksInRegion, BE);
2827 OS->CE =
new (ExtractorAllocator.Allocate())
2828 CodeExtractor(BE,
nullptr,
false,
nullptr,
nullptr,
nullptr,
false,
2829 false,
nullptr,
"outlined");
2830 findAddInputsOutputs(M, *
OS, NotSame);
2831 if (!
OS->IgnoreRegion)
2832 OutlinedRegions.push_back(
OS);
2836 OS->reattachCandidate();
2839 CurrentGroup.
Regions = std::move(OutlinedRegions);
2841 if (CurrentGroup.
Regions.empty())
2847 findCostBenefit(M, CurrentGroup);
2851 if (CurrentGroup.
Cost >= CurrentGroup.
Benefit && CostModel) {
2853 getORE(*CurrentGroup.
Regions[0]->Candidate->getFunction());
2857 C->frontInstruction());
2858 R <<
"did not outline "
2860 <<
" regions due to estimated increase of "
2861 <<
ore::NV(
"InstructionIncrease",
2863 <<
" instructions at locations ";
2869 Region->Candidate->frontInstruction()->getDebugLoc());
2871 [&R]() { R <<
" "; });
2877 NegativeCostGroups.push_back(&CurrentGroup);
2880 ExtractorAllocator.DestroyAll();
2882 if (NegativeCostGroups.size() > 1)
2885 return LHS->Benefit -
LHS->Cost >
RHS->Benefit -
RHS->Cost;
2888 std::vector<Function *> FuncsToRemove;
2892 OutlinedRegions.clear();
2896 if (!isCompatibleWithAlreadyOutlinedCode(*
Region))
2898 OutlinedRegions.push_back(
Region);
2901 if (OutlinedRegions.size() < 2)
2906 CurrentGroup.
Regions = std::move(OutlinedRegions);
2909 CurrentGroup.
Cost = 0;
2910 findCostBenefit(M, CurrentGroup);
2914 OutlinedRegions.clear();
2916 Region->splitCandidate();
2917 if (!
Region->CandidateSplit)
2919 OutlinedRegions.push_back(
Region);
2922 CurrentGroup.
Regions = std::move(OutlinedRegions);
2923 if (CurrentGroup.
Regions.size() < 2) {
2925 R->reattachCandidate();
2930 <<
" and benefit " << CurrentGroup.
Benefit <<
"\n");
2933 OutlinedRegions.clear();
2937 OS->Candidate->getBasicBlocks(BlocksInRegion, BE);
2938 OS->CE =
new (ExtractorAllocator.Allocate())
2939 CodeExtractor(BE,
nullptr,
false,
nullptr,
nullptr,
nullptr,
false,
2940 false,
nullptr,
"outlined");
2941 bool FunctionOutlined = extractSection(*
OS);
2942 if (FunctionOutlined) {
2943 unsigned StartIdx =
OS->Candidate->getStartIdx();
2944 unsigned EndIdx =
OS->Candidate->getEndIdx();
2945 for (
unsigned Idx = StartIdx;
Idx <= EndIdx;
Idx++)
2948 OutlinedRegions.push_back(
OS);
2953 <<
" with benefit " << CurrentGroup.
Benefit
2954 <<
" and cost " << CurrentGroup.
Cost <<
"\n");
2956 CurrentGroup.
Regions = std::move(OutlinedRegions);
2958 if (CurrentGroup.
Regions.empty())
2962 getORE(*CurrentGroup.
Regions[0]->Call->getFunction());
2966 R <<
"outlined " <<
ore::NV(std::to_string(CurrentGroup.
Regions.size()))
2967 <<
" regions with decrease of "
2969 <<
" instructions at locations ";
2973 R << ore::NV(
"DebugLoc",
2974 Region->Candidate->frontInstruction()->getDebugLoc());
2976 [&R]() { R <<
" "; });
2980 deduplicateExtractedSections(M, CurrentGroup, FuncsToRemove,
2981 OutlinedFunctionNum);
2985 F->eraseFromParent();
2987 return OutlinedFunctionNum;
2994 return doOutline(M) > 0;
3010 std::unique_ptr<OptimizationRemarkEmitter> ORE;
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
ReachingDefAnalysis InstSet & ToRemove
This file contains the simple types necessary to represent the attributes associated with functions a...
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
Returns the sub type a function will return at a given Idx Should correspond to the result type of an ExtractValue instruction executed with just that one unsigned Idx
std::optional< std::vector< StOtherPiece > > Other
DenseMap< Block *, BlockRelaxAux > Blocks
std::pair< ArgLocWithBBCanon, CanonList > PHINodeData
static void remapExtractedInputs(const ArrayRef< Value * > ArgInputs, const DenseMap< Value *, Value * > &OutputMappings, SetVector< Value * > &RemappedArgInputs)
Find the original value for the ArgInput values if any one of them was replaced during a previous ext...
static std::optional< unsigned > getGVNForPHINode(OutlinableRegion &Region, PHINode *PN, DenseSet< BasicBlock * > &Blocks, unsigned AggArgIdx)
Create a special GVN for PHINodes that will be used outside of the region.
static Value * getPassedArgumentAndAdjustArgumentLocation(const Argument *A, const OutlinableRegion &Region)
For the function call now representing the Region, find the passed value to that call that represents...
static void findCanonNumsForPHI(PHINode *PN, OutlinableRegion &Region, const DenseMap< Value *, Value * > &OutputMappings, SmallVector< std::pair< unsigned, BasicBlock * > > &CanonNums, bool ReplacedWithOutlinedCall=true)
Find the canonical numbering for the incoming Values into the PHINode PN.
static cl::opt< bool > NoCostModel("ir-outlining-no-cost", cl::init(false), cl::ReallyHidden, cl::desc("Debug option to outline greedily, without restriction that " "calculated benefit outweighs cost"))
static void moveBBContents(BasicBlock &SourceBB, BasicBlock &TargetBB)
Move the contents of SourceBB to before the last instruction of TargetBB.
static bool nextIRInstructionDataMatchesNextInst(IRInstructionData &ID)
Checks that the next instruction in the InstructionDataList matches the next instruction in the modul...
static void moveFunctionData(Function &Old, Function &New, DenseMap< Value *, BasicBlock * > &NewEnds)
Move each BasicBlock in Old to New.
static cl::opt< bool > EnableLinkOnceODRIROutlining("enable-linkonceodr-ir-outlining", cl::Hidden, cl::desc("Enable the IR outliner on linkonceodr functions"), cl::init(false))
static void getCodeExtractorArguments(OutlinableRegion &Region, std::vector< unsigned > &InputGVNs, DenseSet< unsigned > &NotSame, DenseMap< Value *, Value * > &OutputMappings, SetVector< Value * > &ArgInputs, SetVector< Value * > &Outputs)
Find the input GVNs and the output values for a region of Instructions.
static void fillOverallFunction(Module &M, OutlinableGroup &CurrentGroup, std::vector< DenseMap< Value *, BasicBlock * > > &OutputStoreBBs, std::vector< Function * > &FuncsToRemove, const DenseMap< Value *, Value * > &OutputMappings)
Fill the new function that will serve as the replacement function for all of the extracted regions of...
static void findExtractedOutputToOverallOutputMapping(Module &M, OutlinableRegion &Region, SetVector< Value * > &Outputs)
Create a mapping of the output arguments for the Region to the output arguments of the overall outlin...
static void alignOutputBlockWithAggFunc(OutlinableGroup &OG, OutlinableRegion &Region, DenseMap< Value *, BasicBlock * > &OutputBBs, DenseMap< Value *, BasicBlock * > &EndBBs, const DenseMap< Value *, Value * > &OutputMappings, std::vector< DenseMap< Value *, BasicBlock * > > &OutputStoreBBs)
For the outlined section, move needed the StoreInsts for the output registers into their own block.
static bool collectRegionsConstants(OutlinableRegion &Region, DenseMap< unsigned, Constant * > &GVNToConstant, DenseSet< unsigned > &NotSame)
Find whether Region matches the global value numbering to Constant mapping found so far.
static PHINode * findOrCreatePHIInBlock(PHINode &PN, OutlinableRegion &Region, BasicBlock *OverallPhiBlock, const DenseMap< Value *, Value * > &OutputMappings, DenseSet< PHINode * > &UsedPHIs)
Find, or add PHINode PN to the combined PHINode Block OverallPHIBlock in order to condense the number...
static bool analyzeAndPruneOutputBlocks(DenseMap< Value *, BasicBlock * > &BlocksToPrune, OutlinableRegion &Region)
Remove empty output blocks from the outlined region.
static hash_code encodePHINodeData(PHINodeData &PND)
Encode PND as an integer for easy lookup based on the argument location, the parent BasicBlock canoni...
CallInst * replaceCalledFunction(Module &M, OutlinableRegion &Region)
Replace the extracted function in the Region with a call to the overall function constructed from the...
static void createAndInsertBasicBlocks(DenseMap< Value *, BasicBlock * > &OldMap, DenseMap< Value *, BasicBlock * > &NewMap, Function *ParentFunc, Twine BaseName)
Takes in a mapping, OldMap of ConstantValues to BasicBlocks, sorts keys, before creating a basic bloc...
static bool outputHasNonPHI(Value *V, unsigned PHILoc, PHINode &PN, SmallPtrSet< BasicBlock *, 1 > &Exits, DenseSet< BasicBlock * > &BlocksInRegion)
Check if the V has any uses outside of the region other than PN.
static void analyzeExitPHIsForOutputUses(BasicBlock *CurrentExitFromRegion, SmallPtrSet< BasicBlock *, 1 > &PotentialExitsFromRegion, DenseSet< BasicBlock * > &RegionBlocks, SetVector< Value * > &Outputs, DenseSet< Value * > &OutputsReplacedByPHINode, DenseSet< Value * > &OutputsWithNonPhiUses)
Test whether CurrentExitFromRegion contains any PhiNodes that should be considered outputs.
static void getSortedConstantKeys(std::vector< Value * > &SortedKeys, DenseMap< Value *, BasicBlock * > &Map)
A function to sort the keys of Map, which must be a mapping of constant values to basic blocks and re...
static InstructionCost findCostForOutputBlocks(Module &M, OutlinableGroup &CurrentGroup, TargetTransformInfo &TTI)
Find the extra instructions needed to handle any output values for the region.
static void replaceTargetsFromPHINode(BasicBlock *PHIBlock, BasicBlock *Find, BasicBlock *Replace, DenseSet< BasicBlock * > &Included)
Rewrite the BranchInsts in the incoming blocks to PHIBlock that are found in Included to branch to Ba...
static void findExtractedInputToOverallInputMapping(OutlinableRegion &Region, std::vector< unsigned > &InputGVNs, SetVector< Value * > &ArgInputs)
Look over the inputs and map each input argument to an argument in the overall function for the Outli...
static void mapInputsToGVNs(IRSimilarityCandidate &C, SetVector< Value * > &CurrentInputs, const DenseMap< Value *, Value * > &OutputMappings, std::vector< unsigned > &EndInputNumbers)
Find the GVN for the inputs that have been found by the CodeExtractor.
static void replaceArgumentUses(OutlinableRegion &Region, DenseMap< Value *, BasicBlock * > &OutputBBs, const DenseMap< Value *, Value * > &OutputMappings, bool FirstFunction=false)
static DISubprogram * getSubprogramOrNull(OutlinableGroup &Group)
Get the subprogram if it exists for one of the outlined regions.
static Value * findOutputMapping(const DenseMap< Value *, Value * > OutputMappings, Value *Input)
Check the OutputMappings structure for value Input, if it exists it has been used as an output for ou...
static Value * findOutputValueInRegion(OutlinableRegion &Region, unsigned OutputCanon)
For the OutputCanon number passed in find the value represented by this canonical number.
static std::optional< bool > constantMatches(Value *V, unsigned GVN, DenseMap< unsigned, Constant * > &GVNToConstant)
Find whether V matches the Constants previously found for the GVN.
static void findConstants(IRSimilarityCandidate &C, DenseSet< unsigned > &NotSame, std::vector< unsigned > &Inputs)
Find the constants that will need to be lifted into arguments as they are not the same in each instan...
void replaceConstants(OutlinableRegion &Region)
Within an extracted function, replace the constants that need to be lifted into arguments with the ac...
std::pair< unsigned, unsigned > ArgLocWithBBCanon
static Value * getPassedArgumentInAlreadyOutlinedFunction(const Argument *A, const OutlinableRegion &Region)
For the function call now representing the Region, find the passed value to that call that represents...
void createSwitchStatement(Module &M, OutlinableGroup &OG, DenseMap< Value *, BasicBlock * > &EndBBs, std::vector< DenseMap< Value *, BasicBlock * > > &OutputStoreBBs)
Create the switch statement for outlined function to differentiate between all the output blocks.
static BasicBlock * findOrCreatePHIBlock(OutlinableGroup &Group, Value *RetVal)
Find or create a BasicBlock in the outlined function containing PhiBlocks for RetVal.
std::optional< unsigned > findDuplicateOutputBlock(DenseMap< Value *, BasicBlock * > &OutputBBs, std::vector< DenseMap< Value *, BasicBlock * > > &OutputStoreBBs)
It is possible that there is a basic block that already performs the same stores.
This header defines various interfaces for pass management in LLVM.
static const T * Find(StringRef S, ArrayRef< T > A)
Find KV in array using binary search.
FunctionAnalysisManager FAM
A container for analyses that lazily runs them and caches their results.
PassT::Result & getResult(IRUnitT &IR, ExtraArgTs... ExtraArgs)
Get the result of an analysis pass for a given IR unit.
This class represents an incoming formal argument to a Function.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
LLVM_ABI AttributeSet getFnAttrs() const
The function attributes are returned.
LLVM Basic Block Representation.
LLVM_ABI void replaceSuccessorsPhiUsesWith(BasicBlock *Old, BasicBlock *New)
Update all phi nodes in this basic block's successors to refer to basic block New instead of basic bl...
iterator begin()
Instruction iterator methods.
iterator_range< const_phi_iterator > phis() const
Returns a range that iterates over the phis in the basic block.
LLVM_ABI const_iterator getFirstInsertionPt() const
Returns an iterator to the first instruction in this block that is suitable for inserting a non-PHI i...
static BasicBlock * Create(LLVMContext &Context, const Twine &Name="", Function *Parent=nullptr, BasicBlock *InsertBefore=nullptr)
Creates a new BasicBlock.
LLVM_ABI InstListType::const_iterator getFirstNonPHIOrDbg(bool SkipPseudoOp=true) const
Returns a pointer to the first instruction in this block that is not a PHINode or a debug intrinsic,...
LLVM_ABI bool hasNPredecessors(unsigned N) const
Return true if this block has exactly N predecessors.
LLVM_ABI BasicBlock * splitBasicBlock(iterator I, const Twine &BBName="", bool Before=false)
Split the basic block into two basic blocks at the specified instruction.
LLVM_ABI const BasicBlock * getUniqueSuccessor() const
Return the successor of this block if it has a unique successor.
LLVM_ABI const BasicBlock * getSinglePredecessor() const
Return the predecessor of this block if it has a single predecessor block.
const Function * getParent() const
Return the enclosing method, or null if none.
LLVM_ABI SymbolTableList< BasicBlock >::iterator eraseFromParent()
Unlink 'this' from the containing function and delete it.
InstListType::iterator iterator
Instruction iterators...
LLVM_ABI LLVMContext & getContext() const
Get the context in which this basic block lives.
const Instruction * getTerminator() const LLVM_READONLY
Returns the terminator instruction if the block is well formed or null if the block is not well forme...
LLVM_ABI bool hasNPredecessorsOrMore(unsigned N) const
Return true if this block has N predecessors or more.
void splice(BasicBlock::iterator ToIt, BasicBlock *FromBB)
Transfer all instructions from FromBB to this basic block at ToIt.
Conditional or Unconditional Branch instruction.
unsigned getNumSuccessors() const
static BranchInst * Create(BasicBlock *IfTrue, InsertPosition InsertBefore=nullptr)
BasicBlock * getSuccessor(unsigned i) const
void setSuccessor(unsigned idx, BasicBlock *NewSucc)
This class represents a function call, abstracting a target machine's calling convention.
static CallInst * Create(FunctionType *Ty, Value *F, const Twine &NameStr="", InsertPosition InsertBefore=nullptr)
This is the shared class of boolean and integer constants.
uint64_t getLimitedValue(uint64_t Limit=~0ULL) const
getLimitedValue - If the value is smaller than the specified limit, return it, otherwise return the l...
static LLVM_ABI ConstantPointerNull * get(PointerType *T)
Static factory methods - Return objects of the specified value.
This is an important base class in LLVM.
Subprogram description. Uses SubclassData1.
static DebugLoc getDropped()
iterator find(const_arg_type_t< KeyT > Val)
std::pair< iterator, bool > try_emplace(KeyT &&Key, Ts &&...Args)
bool erase(const KeyT &Val)
bool contains(const_arg_type_t< KeyT > Val) const
Return true if the specified key is in the map, false otherwise.
std::pair< iterator, bool > insert(const std::pair< KeyT, ValueT > &KV)
Implements a dense probed hash-table based set.
void getDescendants(NodeT *R, SmallVectorImpl< NodeT * > &Result) const
Get all nodes dominated by R, including R itself.
void insertEdge(NodeT *From, NodeT *To)
Inform the dominator tree about a CFG edge insertion and update the tree.
void deleteEdge(NodeT *From, NodeT *To)
Inform the dominator tree about a CFG edge deletion and update the tree.
Concrete subclass of DominatorTreeBase that is used to compute a normal dominator tree.
Class to represent function types.
static LLVM_ABI FunctionType * get(Type *Result, ArrayRef< Type * > Params, bool isVarArg)
This static method is the primary way of constructing a FunctionType.
void addFnAttr(Attribute::AttrKind Kind)
Add function attributes to this function.
static Function * Create(FunctionType *Ty, LinkageTypes Linkage, unsigned AddrSpace, const Twine &N="", Module *M=nullptr)
const BasicBlock & getEntryBlock() const
FunctionType * getFunctionType() const
Returns the FunctionType for me.
const BasicBlock & back() const
AttributeList getAttributes() const
Return the attribute list for this Function.
bool hasOptNone() const
Do not optimize this function (-O0).
LLVMContext & getContext() const
getContext - Return a reference to the LLVMContext associated with this function.
void addParamAttr(unsigned ArgNo, Attribute::AttrKind Kind)
adds the attribute to the list of attributes for the given arg.
Argument * getArg(unsigned i) const
bool hasFnAttribute(Attribute::AttrKind Kind) const
Return true if the function has the attribute.
bool hasLinkOnceODRLinkage() const
@ InternalLinkage
Rename collisions when linking (static functions).
PreservedAnalyses run(Module &M, ModuleAnalysisManager &AM)
This class is a pass that identifies similarity in a Module, extracts instances of the similarity,...
An analysis pass that runs and returns the IRSimilarityIdentifier run on the Module.
This is a class that wraps a range of IRInstructionData from one point to another in the vector of IR...
Instruction * backInstruction()
std::optional< unsigned > getGVN(Value *V)
Finds the positive number associated with V if it has been mapped.
unsigned getEndIdx() const
void getBasicBlocks(DenseSet< BasicBlock * > &BBSet) const
unsigned getStartIdx() const
BasicBlock * getStartBB()
std::optional< unsigned > getCanonicalNum(unsigned N)
Find the canonical number from the global value number N stored in the candidate.
IRInstructionData * front() const
This class puts all the pieces of the IRInstructionData, IRInstructionMapper, IRSimilarityCandidate t...
An analysis over an "outer" IR unit that provides access to an analysis manager over an "inner" IR un...
LLVM_ABI Instruction * clone() const
Create a copy of 'this' instruction that is identical in all ways except the following:
LLVM_ABI void insertBefore(InstListType::iterator InsertPos)
Insert an unlinked instruction into a basic block immediately before the specified position.
LLVM_ABI InstListType::iterator eraseFromParent()
This method unlinks 'this' from the containing basic block and deletes it.
LLVM_ABI const Function * getFunction() const
Return the function this instruction belongs to.
bool isTerminator() const
void setDebugLoc(DebugLoc Loc)
Set the debug location information for this instruction.
LLVM_ABI InstListType::iterator insertInto(BasicBlock *ParentBB, InstListType::iterator It)
Inserts an unlinked instruction into ParentBB at position It and returns the iterator of the inserted...
An instruction for reading from memory.
Value * getPointerOperand()
static MDTuple * get(LLVMContext &Context, ArrayRef< Metadata * > MDs)
LLVM_ABI void getNameWithPrefix(raw_ostream &OS, const GlobalValue *GV, bool CannotUsePrivateLabel) const
Print the appropriate prefix and the specified global variable's name.
A Module instance is used to store all the information related to an LLVM module.
void setIncomingBlock(unsigned i, BasicBlock *BB)
void setIncomingValue(unsigned i, Value *V)
BasicBlock * getIncomingBlock(unsigned i) const
Return incoming basic block number i.
Value * getIncomingValue(unsigned i) const
Return incoming value number x.
unsigned getNumIncomingValues() const
Return the number of incoming edges.
static LLVM_ABI PointerType * get(Type *ElementType, unsigned AddressSpace)
This constructs a pointer to an object of the specified type in a numbered address space.
A set of analyses that are preserved following a run of a transformation pass.
static PreservedAnalyses none()
Convenience factory function for the empty preserved set.
static PreservedAnalyses all()
Construct a special preserved set that preserves all passes.
bool contains(const BlockT *BB) const
Check if the region contains a BasicBlock.
RegionT * getParent() const
Get the parent of the Region.
Return a value (possibly void), from a function.
Value * getReturnValue() const
Convenience accessor. Returns null if there is no return value.
A vector that has set insertion semantics.
ArrayRef< value_type > getArrayRef() const
size_type size() const
Determine the number of elements in the SetVector.
size_type count(const key_type &key) const
Count the number of elements of a given key in the SetVector.
bool insert(const value_type &X)
Insert a new element into the SetVector.
std::pair< iterator, bool > insert(PtrType Ptr)
Inserts Ptr if and only if there is no element in the container equal to Ptr.
SmallPtrSet - This class implements a set which is optimized for holding SmallSize or less elements.
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
An instruction for storing to memory.
std::string str() const
str - Get the contents as an std::string.
static SwitchInst * Create(Value *Value, BasicBlock *Default, unsigned NumCases, InsertPosition InsertBefore=nullptr)
LLVM_ABI void addCase(ConstantInt *OnVal, BasicBlock *Dest)
Add an entry to the switch instruction.
Analysis pass providing the TargetTransformInfo.
Twine - A lightweight data structure for efficiently representing the concatenation of temporary valu...
The instances of the Type class are immutable: once they are created, they are never changed.
static LLVM_ABI IntegerType * getInt32Ty(LLVMContext &C)
static LLVM_ABI Type * getVoidTy(LLVMContext &C)
bool isIntegerTy() const
True if this is an instance of IntegerType.
bool isVoidTy() const
Return true if this is 'void'.
void setOperand(unsigned i, Value *Val)
LLVM Value Representation.
Type * getType() const
All values are typed, get the type of this value.
bool hasOneUse() const
Return true if there is exactly one use of this value.
LLVM_ABI void replaceAllUsesWith(Value *V)
Change all uses of this to point to a new Value.
LLVM_ABI bool isSwiftError() const
Return true if this value is a swifterror value.
LLVM_ABI StringRef getName() const
Return a constant reference to the value's name.
std::pair< iterator, bool > insert(const ValueT &V)
bool contains(const_arg_type_t< ValueT > V) const
Check if the set contains the given element.
bool erase(const ValueT &V)
An opaque object representing a hash code.
const ParentTy * getParent() const
self_iterator getIterator()
NodeTy * getNextNode()
Get the next node, or nullptr for the list tail.
A raw_ostream that writes to an std::string.
iterator erase(iterator I)
Remove a node by iterator; never deletes.
iterator insert(iterator I, reference Node)
Insert a node by reference; never copies.
LLVM_ABI void mergeAttributesForOutlining(Function &Base, const Function &ToMerge)
Merges the functions attributes from ToMerge into function Base.
@ C
The default llvm calling convention, compatible with C.
std::vector< SimilarityGroup > SimilarityGroupList
std::vector< IRSimilarityCandidate > SimilarityGroup
initializer< Ty > init(const Ty &Val)
DiagnosticInfoOptimizationBase::Argument NV
This is an optimization pass for GlobalISel generic memory operations.
void stable_sort(R &&Range)
hash_code hash_value(const FixedPointSemantics &Val)
void interleave(ForwardIterator begin, ForwardIterator end, UnaryFunctor each_fn, NullaryFunctor between_fn)
An STL-style algorithm similar to std::for_each that applies a second functor between every pair of e...
auto successors(const MachineBasicBlock *BB)
iterator_range< early_inc_iterator_impl< detail::IterOfRange< RangeT > > > make_early_inc_range(RangeT &&Range)
Make a range that does early increment to allow mutation of the underlying range without disrupting i...
cl::opt< bool > DisableIndirectCalls("no-ir-sim-indirect-calls", cl::init(false), cl::ReallyHidden, cl::desc("disable outlining indirect calls."))
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
@ RF_IgnoreMissingLocals
If this flag is set, the remapper ignores missing function-local entries (Argument,...
@ RF_NoModuleLevelChanges
If this flag is set, the remapper knows that only local values within a function (such as an instruct...
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
bool none_of(R &&Range, UnaryPredicate P)
Provide wrappers to std::none_of which take ranges instead of having to pass begin/end explicitly.
cl::opt< bool > DisableBranches("no-ir-sim-branch-matching", cl::init(false), cl::ReallyHidden, cl::desc("disable similarity matching, and outlining, " "across branches for debugging purposes."))
cl::opt< bool > DisableIntrinsics("no-ir-sim-intrinsics", cl::init(false), cl::ReallyHidden, cl::desc("Don't match or outline intrinsics"))
void RemapFunction(Function &F, ValueToValueMapTy &VM, RemapFlags Flags=RF_None, ValueMapTypeRemapper *TypeMapper=nullptr, ValueMaterializer *Materializer=nullptr, const MetadataPredicate *IdentityMD=nullptr)
Remap the operands, metadata, arguments, and instructions of a function.
auto predecessors(const MachineBasicBlock *BB)
hash_code hash_combine(const Ts &...args)
Combine values into a single hash_code.
LLVM_ABI void updateLoopMetadataDebugLocations(Instruction &I, function_ref< Metadata *(Metadata *)> Updater)
Update the debug locations contained within the MD_loop metadata attached to the instruction I,...
hash_code hash_combine_range(InputIteratorT first, InputIteratorT last)
Compute a hash_code for a sequence of values.
The OutlinableGroup holds all the overarching information for outlining a set of regions that are str...
std::optional< unsigned > SwiftErrorArgument
The argument that needs to be marked with the swifterr attribute.
std::vector< Type * > ArgumentTypes
The argument types for the function created as the overall function to replace the extracted function...
DenseSet< ArrayRef< unsigned > > OutputGVNCombinations
A set containing the different GVN store sets needed.
void findSameConstants(DenseSet< unsigned > &NotSame)
For the Regions, we look at every Value.
InstructionCost Cost
The number of added instructions needed for the outlining of the Regions.
DenseMap< unsigned, std::pair< std::pair< unsigned, unsigned >, SmallVector< unsigned, 2 > > > PHINodeGVNToGVNs
unsigned PHINodeGVNTracker
Tracker counting backwards from the highest unsigned value possible to avoid conflicting with the GVN...
std::vector< OutlinableRegion * > Regions
The sections that could be outlined.
DenseMap< hash_code, unsigned > GVNsToPHINodeGVN
bool IgnoreGroup
Flag for whether we should not consider this group of OutlinableRegions for extraction.
DenseMap< Value *, BasicBlock * > EndBBs
The return blocks for the overall function.
unsigned BranchesToOutside
The number of branches in the region target a basic block that is outside of the region.
Function * OutlinedFunction
The Function for the collective overall function.
bool InputTypesSet
Flag for whether the ArgumentTypes have been defined after the extraction of the first region.
DenseMap< Value *, BasicBlock * > PHIBlocks
The PHIBlocks with their corresponding return block based on the return value as the key.
FunctionType * OutlinedFunctionType
The FunctionType for the overall function.
DenseMap< unsigned, unsigned > CanonicalNumberToAggArg
The mapping of the canonical numbering of the values in outlined sections to specific arguments.
void collectGVNStoreSets(Module &M)
For the regions, look at each set of GVN stores needed and account for each combination.
InstructionCost Benefit
The number of instructions that will be outlined by extracting Regions.
unsigned NumAggregateInputs
The number of input values in ArgumentTypes.
This struct is a compact representation of a valid (non-zero power of two) alignment.
This provides the utilities for hashing an Instruction to an unsigned integer.
Instruction * Inst
The source Instruction that is being wrapped.
Incoming for lane maks phi as machine instruction, incoming register Reg and incoming block Block are...
The OutlinableRegion holds all the information for a specific region, or sequence of instructions.
CallInst * Call
The call site of the extracted region.
InstructionCost getBenefit(TargetTransformInfo &TTI)
Get the size of the code removed from the region.
BasicBlock * FollowBB
The BasicBlock that is after the start of the region BasicBlock, only defined when the region has bee...
unsigned OutputBlockNum
The corresponding BasicBlock with the appropriate stores for this OutlinableRegion in the overall fun...
bool CandidateSplit
Flag for whether we have split out the IRSimilarityCanidate.
void splitCandidate()
For the contained region, split the parent BasicBlock at the starting and ending instructions of the ...
Value * findCorrespondingValueIn(const OutlinableRegion &Other, Value *V)
Find a corresponding value for V in similar OutlinableRegion Other.
BasicBlock * findCorrespondingBlockIn(const OutlinableRegion &Other, BasicBlock *BB)
Find a corresponding BasicBlock for BB in similar OutlinableRegion Other.
BasicBlock * PrevBB
The BasicBlock that is before the start of the region BasicBlock, only defined when the region has be...
BasicBlock * EndBB
The BasicBlock that contains the ending instruction of the region.
IRSimilarityCandidate * Candidate
Describes the region of code.
DenseMap< Value *, Value * > RemappedArguments
Values in the outlined functions will often be replaced by arguments.
Function * ExtractedFunction
The function for the extracted region.
bool EndsInBranch
Marks whether this region ends in a branch, there is special handling required for the following basi...
BasicBlock * StartBB
The BasicBlock that contains the starting instruction of the region.
void reattachCandidate()
For the contained region, reattach the BasicBlock at the starting and ending instructions of the cont...