@@ -7056,19 +7056,16 @@ bool BoUpSLP::areAllUsersVectorized(
7056
7056
7057
7057
static std::pair<InstructionCost, InstructionCost>
7058
7058
getVectorCallCosts(CallInst *CI, FixedVectorType *VecTy,
7059
- TargetTransformInfo *TTI, TargetLibraryInfo *TLI) {
7059
+ TargetTransformInfo *TTI, TargetLibraryInfo *TLI,
7060
+ ArrayRef<Type *> ArgTys) {
7060
7061
Intrinsic::ID ID = getVectorIntrinsicIDForCall(CI, TLI);
7061
7062
7062
7063
// Calculate the cost of the scalar and vector calls.
7063
- SmallVector<Type *, 4> VecTys;
7064
- for (Use &Arg : CI->args())
7065
- VecTys.push_back(
7066
- FixedVectorType::get(Arg->getType(), VecTy->getNumElements()));
7067
7064
FastMathFlags FMF;
7068
7065
if (auto *FPCI = dyn_cast<FPMathOperator>(CI))
7069
7066
FMF = FPCI->getFastMathFlags();
7070
7067
SmallVector<const Value *> Arguments(CI->args());
7071
- IntrinsicCostAttributes CostAttrs(ID, VecTy, Arguments, VecTys , FMF,
7068
+ IntrinsicCostAttributes CostAttrs(ID, VecTy, Arguments, ArgTys , FMF,
7072
7069
dyn_cast<IntrinsicInst>(CI));
7073
7070
auto IntrinsicCost =
7074
7071
TTI->getIntrinsicInstrCost(CostAttrs, TTI::TCK_RecipThroughput);
@@ -7081,8 +7078,8 @@ getVectorCallCosts(CallInst *CI, FixedVectorType *VecTy,
7081
7078
if (!CI->isNoBuiltin() && VecFunc) {
7082
7079
// Calculate the cost of the vector library call.
7083
7080
// If the corresponding vector call is cheaper, return its cost.
7084
- LibCost = TTI->getCallInstrCost(nullptr, VecTy, VecTys,
7085
- TTI::TCK_RecipThroughput);
7081
+ LibCost =
7082
+ TTI->getCallInstrCost(nullptr, VecTy, ArgTys, TTI::TCK_RecipThroughput);
7086
7083
}
7087
7084
return {IntrinsicCost, LibCost};
7088
7085
}
@@ -8508,6 +8505,30 @@ TTI::CastContextHint BoUpSLP::getCastContextHint(const TreeEntry &TE) const {
8508
8505
return TTI::CastContextHint::None;
8509
8506
}
8510
8507
8508
+ /// Builds the arguments types vector for the given call instruction with the
8509
+ /// given \p ID for the specified vector factor.
8510
+ static SmallVector<Type *> buildIntrinsicArgTypes(const CallInst *CI,
8511
+ const Intrinsic::ID ID,
8512
+ const unsigned VF,
8513
+ unsigned MinBW) {
8514
+ SmallVector<Type *> ArgTys;
8515
+ for (auto [Idx, Arg] : enumerate(CI->args())) {
8516
+ if (ID != Intrinsic::not_intrinsic) {
8517
+ if (isVectorIntrinsicWithScalarOpAtArg(ID, Idx)) {
8518
+ ArgTys.push_back(Arg->getType());
8519
+ continue;
8520
+ }
8521
+ if (MinBW > 0) {
8522
+ ArgTys.push_back(FixedVectorType::get(
8523
+ IntegerType::get(CI->getContext(), MinBW), VF));
8524
+ continue;
8525
+ }
8526
+ }
8527
+ ArgTys.push_back(FixedVectorType::get(Arg->getType(), VF));
8528
+ }
8529
+ return ArgTys;
8530
+ }
8531
+
8511
8532
InstructionCost
8512
8533
BoUpSLP::getEntryCost(const TreeEntry *E, ArrayRef<Value *> VectorizedVals,
8513
8534
SmallPtrSetImpl<Value *> &CheckedExtracts) {
@@ -9074,7 +9095,11 @@ BoUpSLP::getEntryCost(const TreeEntry *E, ArrayRef<Value *> VectorizedVals,
9074
9095
};
9075
9096
auto GetVectorCost = [=](InstructionCost CommonCost) {
9076
9097
auto *CI = cast<CallInst>(VL0);
9077
- auto VecCallCosts = getVectorCallCosts(CI, VecTy, TTI, TLI);
9098
+ Intrinsic::ID ID = getVectorIntrinsicIDForCall(CI, TLI);
9099
+ SmallVector<Type *> ArgTys =
9100
+ buildIntrinsicArgTypes(CI, ID, VecTy->getNumElements(),
9101
+ It != MinBWs.end() ? It->second.first : 0);
9102
+ auto VecCallCosts = getVectorCallCosts(CI, VecTy, TTI, TLI, ArgTys);
9078
9103
return std::min(VecCallCosts.first, VecCallCosts.second) + CommonCost;
9079
9104
};
9080
9105
return GetCostDiff(GetScalarCost, GetVectorCost);
@@ -12546,7 +12571,10 @@ Value *BoUpSLP::vectorizeTree(TreeEntry *E, bool PostponedPHIs) {
12546
12571
12547
12572
Intrinsic::ID ID = getVectorIntrinsicIDForCall(CI, TLI);
12548
12573
12549
- auto VecCallCosts = getVectorCallCosts(CI, VecTy, TTI, TLI);
12574
+ SmallVector<Type *> ArgTys =
12575
+ buildIntrinsicArgTypes(CI, ID, VecTy->getNumElements(),
12576
+ It != MinBWs.end() ? It->second.first : 0);
12577
+ auto VecCallCosts = getVectorCallCosts(CI, VecTy, TTI, TLI, ArgTys);
12550
12578
bool UseIntrinsic = ID != Intrinsic::not_intrinsic &&
12551
12579
VecCallCosts.first <= VecCallCosts.second;
12552
12580
@@ -12555,16 +12583,20 @@ Value *BoUpSLP::vectorizeTree(TreeEntry *E, bool PostponedPHIs) {
12555
12583
SmallVector<Type *, 2> TysForDecl;
12556
12584
// Add return type if intrinsic is overloaded on it.
12557
12585
if (UseIntrinsic && isVectorIntrinsicWithOverloadTypeAtArg(ID, -1))
12558
- TysForDecl.push_back(
12559
- FixedVectorType::get(CI->getType(), E->Scalars.size()));
12586
+ TysForDecl.push_back(VecTy);
12560
12587
auto *CEI = cast<CallInst>(VL0);
12561
12588
for (unsigned I : seq<unsigned>(0, CI->arg_size())) {
12562
12589
ValueList OpVL;
12563
12590
// Some intrinsics have scalar arguments. This argument should not be
12564
12591
// vectorized.
12565
12592
if (UseIntrinsic && isVectorIntrinsicWithScalarOpAtArg(ID, I)) {
12566
12593
ScalarArg = CEI->getArgOperand(I);
12567
- OpVecs.push_back(CEI->getArgOperand(I));
12594
+ // if decided to reduce bitwidth of abs intrinsic, it second argument
12595
+ // must be set false (do not return poison, if value issigned min).
12596
+ if (ID == Intrinsic::abs && It != MinBWs.end() &&
12597
+ It->second.first < DL->getTypeSizeInBits(CEI->getType()))
12598
+ ScalarArg = Builder.getFalse();
12599
+ OpVecs.push_back(ScalarArg);
12568
12600
if (isVectorIntrinsicWithOverloadTypeAtArg(ID, I))
12569
12601
TysForDecl.push_back(ScalarArg->getType());
12570
12602
continue;
@@ -12577,10 +12609,13 @@ Value *BoUpSLP::vectorizeTree(TreeEntry *E, bool PostponedPHIs) {
12577
12609
}
12578
12610
ScalarArg = CEI->getArgOperand(I);
12579
12611
if (cast<VectorType>(OpVec->getType())->getElementType() !=
12580
- ScalarArg->getType()) {
12612
+ ScalarArg->getType() &&
12613
+ It == MinBWs.end()) {
12581
12614
auto *CastTy = FixedVectorType::get(ScalarArg->getType(),
12582
12615
VecTy->getNumElements());
12583
12616
OpVec = Builder.CreateIntCast(OpVec, CastTy, GetOperandSignedness(I));
12617
+ } else if (It != MinBWs.end()) {
12618
+ OpVec = Builder.CreateIntCast(OpVec, VecTy, GetOperandSignedness(I));
12584
12619
}
12585
12620
LLVM_DEBUG(dbgs() << "SLP: OpVec[" << I << "]: " << *OpVec << "\n");
12586
12621
OpVecs.push_back(OpVec);
@@ -14324,6 +14359,45 @@ bool BoUpSLP::collectValuesToDemote(
14324
14359
return TryProcessInstruction(I, *ITE, BitWidth, Ops);
14325
14360
}
14326
14361
14362
+ case Instruction::Call: {
14363
+ auto *IC = dyn_cast<IntrinsicInst>(I);
14364
+ if (!IC)
14365
+ break;
14366
+ Intrinsic::ID ID = getVectorIntrinsicIDForCall(IC, TLI);
14367
+ if (ID != Intrinsic::abs && ID != Intrinsic::smin &&
14368
+ ID != Intrinsic::smax && ID != Intrinsic::umin && ID != Intrinsic::umax)
14369
+ break;
14370
+ SmallVector<Value *> Operands(1, I->getOperand(0));
14371
+ End = 1;
14372
+ if (ID != Intrinsic::abs) {
14373
+ Operands.push_back(I->getOperand(1));
14374
+ End = 2;
14375
+ }
14376
+ InstructionCost BestCost =
14377
+ std::numeric_limits<InstructionCost::CostType>::max();
14378
+ unsigned BestBitWidth = BitWidth;
14379
+ unsigned VF = ITE->Scalars.size();
14380
+ // Choose the best bitwidth based on cost estimations.
14381
+ auto Checker = [&](unsigned BitWidth, unsigned) {
14382
+ unsigned MinBW = PowerOf2Ceil(BitWidth);
14383
+ SmallVector<Type *> ArgTys = buildIntrinsicArgTypes(IC, ID, VF, MinBW);
14384
+ auto VecCallCosts = getVectorCallCosts(
14385
+ IC,
14386
+ FixedVectorType::get(IntegerType::get(IC->getContext(), MinBW), VF),
14387
+ TTI, TLI, ArgTys);
14388
+ InstructionCost Cost = std::min(VecCallCosts.first, VecCallCosts.second);
14389
+ if (Cost < BestCost) {
14390
+ BestCost = Cost;
14391
+ BestBitWidth = BitWidth;
14392
+ }
14393
+ return false;
14394
+ };
14395
+ [[maybe_unused]] bool NeedToExit;
14396
+ (void)AttemptCheckBitwidth(Checker, NeedToExit);
14397
+ BitWidth = BestBitWidth;
14398
+ return TryProcessInstruction(I, *ITE, BitWidth, Operands);
14399
+ }
14400
+
14327
14401
// Otherwise, conservatively give up.
14328
14402
default:
14329
14403
break;
0 commit comments