1344a3780SDimitry Andric //===----- CodeGen/ExpandVectorPredication.cpp - Expand VP intrinsics -----===//
2344a3780SDimitry Andric //
3344a3780SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4344a3780SDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
5344a3780SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6344a3780SDimitry Andric //
7344a3780SDimitry Andric //===----------------------------------------------------------------------===//
8344a3780SDimitry Andric //
9344a3780SDimitry Andric // This pass implements IR expansion for vector predication intrinsics, allowing
10344a3780SDimitry Andric // targets to enable vector predication until just before codegen.
11344a3780SDimitry Andric //
12344a3780SDimitry Andric //===----------------------------------------------------------------------===//
13344a3780SDimitry Andric
14344a3780SDimitry Andric #include "llvm/CodeGen/ExpandVectorPredication.h"
15344a3780SDimitry Andric #include "llvm/ADT/Statistic.h"
16344a3780SDimitry Andric #include "llvm/Analysis/TargetTransformInfo.h"
17344a3780SDimitry Andric #include "llvm/Analysis/ValueTracking.h"
184b4fe385SDimitry Andric #include "llvm/Analysis/VectorUtils.h"
19344a3780SDimitry Andric #include "llvm/CodeGen/Passes.h"
20344a3780SDimitry Andric #include "llvm/IR/Constants.h"
21344a3780SDimitry Andric #include "llvm/IR/Function.h"
22344a3780SDimitry Andric #include "llvm/IR/IRBuilder.h"
23344a3780SDimitry Andric #include "llvm/IR/InstIterator.h"
24344a3780SDimitry Andric #include "llvm/IR/Instructions.h"
25344a3780SDimitry Andric #include "llvm/IR/IntrinsicInst.h"
26344a3780SDimitry Andric #include "llvm/IR/Intrinsics.h"
27344a3780SDimitry Andric #include "llvm/InitializePasses.h"
28344a3780SDimitry Andric #include "llvm/Pass.h"
29344a3780SDimitry Andric #include "llvm/Support/CommandLine.h"
30344a3780SDimitry Andric #include "llvm/Support/Compiler.h"
31344a3780SDimitry Andric #include "llvm/Support/Debug.h"
32e3b55780SDimitry Andric #include <optional>
33344a3780SDimitry Andric
34344a3780SDimitry Andric using namespace llvm;
35344a3780SDimitry Andric
36344a3780SDimitry Andric using VPLegalization = TargetTransformInfo::VPLegalization;
37344a3780SDimitry Andric using VPTransform = TargetTransformInfo::VPLegalization::VPTransform;
38344a3780SDimitry Andric
39344a3780SDimitry Andric // Keep this in sync with TargetTransformInfo::VPLegalization.
40344a3780SDimitry Andric #define VPINTERNAL_VPLEGAL_CASES \
41344a3780SDimitry Andric VPINTERNAL_CASE(Legal) \
42344a3780SDimitry Andric VPINTERNAL_CASE(Discard) \
43344a3780SDimitry Andric VPINTERNAL_CASE(Convert)
44344a3780SDimitry Andric
45344a3780SDimitry Andric #define VPINTERNAL_CASE(X) "|" #X
46344a3780SDimitry Andric
47344a3780SDimitry Andric // Override options.
48344a3780SDimitry Andric static cl::opt<std::string> EVLTransformOverride(
49344a3780SDimitry Andric "expandvp-override-evl-transform", cl::init(""), cl::Hidden,
50344a3780SDimitry Andric cl::desc("Options: <empty>" VPINTERNAL_VPLEGAL_CASES
51344a3780SDimitry Andric ". If non-empty, ignore "
52344a3780SDimitry Andric "TargetTransformInfo and "
53344a3780SDimitry Andric "always use this transformation for the %evl parameter (Used in "
54344a3780SDimitry Andric "testing)."));
55344a3780SDimitry Andric
56344a3780SDimitry Andric static cl::opt<std::string> MaskTransformOverride(
57344a3780SDimitry Andric "expandvp-override-mask-transform", cl::init(""), cl::Hidden,
58344a3780SDimitry Andric cl::desc("Options: <empty>" VPINTERNAL_VPLEGAL_CASES
59344a3780SDimitry Andric ". If non-empty, Ignore "
60344a3780SDimitry Andric "TargetTransformInfo and "
61344a3780SDimitry Andric "always use this transformation for the %mask parameter (Used in "
62344a3780SDimitry Andric "testing)."));
63344a3780SDimitry Andric
64344a3780SDimitry Andric #undef VPINTERNAL_CASE
65344a3780SDimitry Andric #define VPINTERNAL_CASE(X) .Case(#X, VPLegalization::X)
66344a3780SDimitry Andric
parseOverrideOption(const std::string & TextOpt)67344a3780SDimitry Andric static VPTransform parseOverrideOption(const std::string &TextOpt) {
68344a3780SDimitry Andric return StringSwitch<VPTransform>(TextOpt) VPINTERNAL_VPLEGAL_CASES;
69344a3780SDimitry Andric }
70344a3780SDimitry Andric
71344a3780SDimitry Andric #undef VPINTERNAL_VPLEGAL_CASES
72344a3780SDimitry Andric
73344a3780SDimitry Andric // Whether any override options are set.
anyExpandVPOverridesSet()74344a3780SDimitry Andric static bool anyExpandVPOverridesSet() {
75344a3780SDimitry Andric return !EVLTransformOverride.empty() || !MaskTransformOverride.empty();
76344a3780SDimitry Andric }
77344a3780SDimitry Andric
78344a3780SDimitry Andric #define DEBUG_TYPE "expandvp"
79344a3780SDimitry Andric
80344a3780SDimitry Andric STATISTIC(NumFoldedVL, "Number of folded vector length params");
81344a3780SDimitry Andric STATISTIC(NumLoweredVPOps, "Number of folded vector predication operations");
82344a3780SDimitry Andric
83344a3780SDimitry Andric ///// Helpers {
84344a3780SDimitry Andric
85344a3780SDimitry Andric /// \returns Whether the vector mask \p MaskVal has all lane bits set.
isAllTrueMask(Value * MaskVal)86344a3780SDimitry Andric static bool isAllTrueMask(Value *MaskVal) {
874b4fe385SDimitry Andric if (Value *SplattedVal = getSplatValue(MaskVal))
884b4fe385SDimitry Andric if (auto *ConstValue = dyn_cast<Constant>(SplattedVal))
894b4fe385SDimitry Andric return ConstValue->isAllOnesValue();
904b4fe385SDimitry Andric
914b4fe385SDimitry Andric return false;
92344a3780SDimitry Andric }
93344a3780SDimitry Andric
94344a3780SDimitry Andric /// \returns A non-excepting divisor constant for this type.
getSafeDivisor(Type * DivTy)95344a3780SDimitry Andric static Constant *getSafeDivisor(Type *DivTy) {
96344a3780SDimitry Andric assert(DivTy->isIntOrIntVectorTy() && "Unsupported divisor type");
97344a3780SDimitry Andric return ConstantInt::get(DivTy, 1u, false);
98344a3780SDimitry Andric }
99344a3780SDimitry Andric
100344a3780SDimitry Andric /// Transfer operation properties from \p OldVPI to \p NewVal.
transferDecorations(Value & NewVal,VPIntrinsic & VPI)101344a3780SDimitry Andric static void transferDecorations(Value &NewVal, VPIntrinsic &VPI) {
102344a3780SDimitry Andric auto *NewInst = dyn_cast<Instruction>(&NewVal);
103344a3780SDimitry Andric if (!NewInst || !isa<FPMathOperator>(NewVal))
104344a3780SDimitry Andric return;
105344a3780SDimitry Andric
106344a3780SDimitry Andric auto *OldFMOp = dyn_cast<FPMathOperator>(&VPI);
107344a3780SDimitry Andric if (!OldFMOp)
108344a3780SDimitry Andric return;
109344a3780SDimitry Andric
110344a3780SDimitry Andric NewInst->setFastMathFlags(OldFMOp->getFastMathFlags());
111344a3780SDimitry Andric }
112344a3780SDimitry Andric
113344a3780SDimitry Andric /// Transfer all properties from \p OldOp to \p NewOp and replace all uses.
114344a3780SDimitry Andric /// OldVP gets erased.
replaceOperation(Value & NewOp,VPIntrinsic & OldOp)115344a3780SDimitry Andric static void replaceOperation(Value &NewOp, VPIntrinsic &OldOp) {
116344a3780SDimitry Andric transferDecorations(NewOp, OldOp);
117344a3780SDimitry Andric OldOp.replaceAllUsesWith(&NewOp);
118344a3780SDimitry Andric OldOp.eraseFromParent();
119344a3780SDimitry Andric }
120344a3780SDimitry Andric
maySpeculateLanes(VPIntrinsic & VPI)121145449b1SDimitry Andric static bool maySpeculateLanes(VPIntrinsic &VPI) {
122145449b1SDimitry Andric // The result of VP reductions depends on the mask and evl.
123145449b1SDimitry Andric if (isa<VPReductionIntrinsic>(VPI))
124145449b1SDimitry Andric return false;
125145449b1SDimitry Andric // Fallback to whether the intrinsic is speculatable.
126b1c73532SDimitry Andric if (auto IntrID = VPI.getFunctionalIntrinsicID())
127b1c73532SDimitry Andric return Intrinsic::getAttributes(VPI.getContext(), *IntrID)
128b1c73532SDimitry Andric .hasFnAttr(Attribute::AttrKind::Speculatable);
129b1c73532SDimitry Andric if (auto Opc = VPI.getFunctionalOpcode())
130b1c73532SDimitry Andric return isSafeToSpeculativelyExecuteWithOpcode(*Opc, &VPI);
131b1c73532SDimitry Andric return false;
132145449b1SDimitry Andric }
133145449b1SDimitry Andric
134344a3780SDimitry Andric //// } Helpers
135344a3780SDimitry Andric
136344a3780SDimitry Andric namespace {
137344a3780SDimitry Andric
138344a3780SDimitry Andric // Expansion pass state at function scope.
139344a3780SDimitry Andric struct CachingVPExpander {
140344a3780SDimitry Andric Function &F;
141344a3780SDimitry Andric const TargetTransformInfo &TTI;
142344a3780SDimitry Andric
143344a3780SDimitry Andric /// \returns A (fixed length) vector with ascending integer indices
144344a3780SDimitry Andric /// (<0, 1, ..., NumElems-1>).
145344a3780SDimitry Andric /// \p Builder
146344a3780SDimitry Andric /// Used for instruction creation.
147344a3780SDimitry Andric /// \p LaneTy
148344a3780SDimitry Andric /// Integer element type of the result vector.
149344a3780SDimitry Andric /// \p NumElems
150344a3780SDimitry Andric /// Number of vector elements.
151344a3780SDimitry Andric Value *createStepVector(IRBuilder<> &Builder, Type *LaneTy,
152344a3780SDimitry Andric unsigned NumElems);
153344a3780SDimitry Andric
154344a3780SDimitry Andric /// \returns A bitmask that is true where the lane position is less-than \p
155344a3780SDimitry Andric /// EVLParam
156344a3780SDimitry Andric ///
157344a3780SDimitry Andric /// \p Builder
158344a3780SDimitry Andric /// Used for instruction creation.
159344a3780SDimitry Andric /// \p VLParam
160344a3780SDimitry Andric /// The explicit vector length parameter to test against the lane
161344a3780SDimitry Andric /// positions.
162344a3780SDimitry Andric /// \p ElemCount
163344a3780SDimitry Andric /// Static (potentially scalable) number of vector elements.
164344a3780SDimitry Andric Value *convertEVLToMask(IRBuilder<> &Builder, Value *EVLParam,
165344a3780SDimitry Andric ElementCount ElemCount);
166344a3780SDimitry Andric
167344a3780SDimitry Andric Value *foldEVLIntoMask(VPIntrinsic &VPI);
168344a3780SDimitry Andric
169344a3780SDimitry Andric /// "Remove" the %evl parameter of \p PI by setting it to the static vector
170344a3780SDimitry Andric /// length of the operation.
171344a3780SDimitry Andric void discardEVLParameter(VPIntrinsic &PI);
172344a3780SDimitry Andric
173e3b55780SDimitry Andric /// Lower this VP binary operator to a unpredicated binary operator.
174344a3780SDimitry Andric Value *expandPredicationInBinaryOperator(IRBuilder<> &Builder,
175344a3780SDimitry Andric VPIntrinsic &PI);
176344a3780SDimitry Andric
177b1c73532SDimitry Andric /// Lower this VP int call to a unpredicated int call.
178b1c73532SDimitry Andric Value *expandPredicationToIntCall(IRBuilder<> &Builder, VPIntrinsic &PI,
179b1c73532SDimitry Andric unsigned UnpredicatedIntrinsicID);
180b1c73532SDimitry Andric
1817fa27ce4SDimitry Andric /// Lower this VP fp call to a unpredicated fp call.
1827fa27ce4SDimitry Andric Value *expandPredicationToFPCall(IRBuilder<> &Builder, VPIntrinsic &PI,
1837fa27ce4SDimitry Andric unsigned UnpredicatedIntrinsicID);
1847fa27ce4SDimitry Andric
185e3b55780SDimitry Andric /// Lower this VP reduction to a call to an unpredicated reduction intrinsic.
186c0981da4SDimitry Andric Value *expandPredicationInReduction(IRBuilder<> &Builder,
187c0981da4SDimitry Andric VPReductionIntrinsic &PI);
188c0981da4SDimitry Andric
189b1c73532SDimitry Andric /// Lower this VP cast operation to a non-VP intrinsic.
190b1c73532SDimitry Andric Value *expandPredicationToCastIntrinsic(IRBuilder<> &Builder,
191b1c73532SDimitry Andric VPIntrinsic &VPI);
192b1c73532SDimitry Andric
193e3b55780SDimitry Andric /// Lower this VP memory operation to a non-VP intrinsic.
1944b4fe385SDimitry Andric Value *expandPredicationInMemoryIntrinsic(IRBuilder<> &Builder,
1954b4fe385SDimitry Andric VPIntrinsic &VPI);
1964b4fe385SDimitry Andric
197e3b55780SDimitry Andric /// Lower this VP comparison to a call to an unpredicated comparison.
198e3b55780SDimitry Andric Value *expandPredicationInComparison(IRBuilder<> &Builder,
199e3b55780SDimitry Andric VPCmpIntrinsic &PI);
200e3b55780SDimitry Andric
201e3b55780SDimitry Andric /// Query TTI and expand the vector predication in \p P accordingly.
202344a3780SDimitry Andric Value *expandPredication(VPIntrinsic &PI);
203344a3780SDimitry Andric
204e3b55780SDimitry Andric /// Determine how and whether the VPIntrinsic \p VPI shall be expanded. This
205e3b55780SDimitry Andric /// overrides TTI with the cl::opts listed at the top of this file.
206344a3780SDimitry Andric VPLegalization getVPLegalizationStrategy(const VPIntrinsic &VPI) const;
207344a3780SDimitry Andric bool UsingTTIOverrides;
208344a3780SDimitry Andric
209344a3780SDimitry Andric public:
CachingVPExpander__anoneeba2d8e0111::CachingVPExpander210344a3780SDimitry Andric CachingVPExpander(Function &F, const TargetTransformInfo &TTI)
211344a3780SDimitry Andric : F(F), TTI(TTI), UsingTTIOverrides(anyExpandVPOverridesSet()) {}
212344a3780SDimitry Andric
213344a3780SDimitry Andric bool expandVectorPredication();
214344a3780SDimitry Andric };
215344a3780SDimitry Andric
216344a3780SDimitry Andric //// CachingVPExpander {
217344a3780SDimitry Andric
createStepVector(IRBuilder<> & Builder,Type * LaneTy,unsigned NumElems)218344a3780SDimitry Andric Value *CachingVPExpander::createStepVector(IRBuilder<> &Builder, Type *LaneTy,
219344a3780SDimitry Andric unsigned NumElems) {
220344a3780SDimitry Andric // TODO add caching
221344a3780SDimitry Andric SmallVector<Constant *, 16> ConstElems;
222344a3780SDimitry Andric
223344a3780SDimitry Andric for (unsigned Idx = 0; Idx < NumElems; ++Idx)
224344a3780SDimitry Andric ConstElems.push_back(ConstantInt::get(LaneTy, Idx, false));
225344a3780SDimitry Andric
226344a3780SDimitry Andric return ConstantVector::get(ConstElems);
227344a3780SDimitry Andric }
228344a3780SDimitry Andric
convertEVLToMask(IRBuilder<> & Builder,Value * EVLParam,ElementCount ElemCount)229344a3780SDimitry Andric Value *CachingVPExpander::convertEVLToMask(IRBuilder<> &Builder,
230344a3780SDimitry Andric Value *EVLParam,
231344a3780SDimitry Andric ElementCount ElemCount) {
232344a3780SDimitry Andric // TODO add caching
233344a3780SDimitry Andric // Scalable vector %evl conversion.
234344a3780SDimitry Andric if (ElemCount.isScalable()) {
235344a3780SDimitry Andric auto *M = Builder.GetInsertBlock()->getModule();
236344a3780SDimitry Andric Type *BoolVecTy = VectorType::get(Builder.getInt1Ty(), ElemCount);
237344a3780SDimitry Andric Function *ActiveMaskFunc = Intrinsic::getDeclaration(
238344a3780SDimitry Andric M, Intrinsic::get_active_lane_mask, {BoolVecTy, EVLParam->getType()});
239344a3780SDimitry Andric // `get_active_lane_mask` performs an implicit less-than comparison.
240344a3780SDimitry Andric Value *ConstZero = Builder.getInt32(0);
241344a3780SDimitry Andric return Builder.CreateCall(ActiveMaskFunc, {ConstZero, EVLParam});
242344a3780SDimitry Andric }
243344a3780SDimitry Andric
244344a3780SDimitry Andric // Fixed vector %evl conversion.
245344a3780SDimitry Andric Type *LaneTy = EVLParam->getType();
246344a3780SDimitry Andric unsigned NumElems = ElemCount.getFixedValue();
247344a3780SDimitry Andric Value *VLSplat = Builder.CreateVectorSplat(NumElems, EVLParam);
248344a3780SDimitry Andric Value *IdxVec = createStepVector(Builder, LaneTy, NumElems);
249344a3780SDimitry Andric return Builder.CreateICmp(CmpInst::ICMP_ULT, IdxVec, VLSplat);
250344a3780SDimitry Andric }
251344a3780SDimitry Andric
252344a3780SDimitry Andric Value *
expandPredicationInBinaryOperator(IRBuilder<> & Builder,VPIntrinsic & VPI)253344a3780SDimitry Andric CachingVPExpander::expandPredicationInBinaryOperator(IRBuilder<> &Builder,
254344a3780SDimitry Andric VPIntrinsic &VPI) {
255145449b1SDimitry Andric assert((maySpeculateLanes(VPI) || VPI.canIgnoreVectorLengthParam()) &&
256344a3780SDimitry Andric "Implicitly dropping %evl in non-speculatable operator!");
257344a3780SDimitry Andric
258344a3780SDimitry Andric auto OC = static_cast<Instruction::BinaryOps>(*VPI.getFunctionalOpcode());
259344a3780SDimitry Andric assert(Instruction::isBinaryOp(OC));
260344a3780SDimitry Andric
261344a3780SDimitry Andric Value *Op0 = VPI.getOperand(0);
262344a3780SDimitry Andric Value *Op1 = VPI.getOperand(1);
263344a3780SDimitry Andric Value *Mask = VPI.getMaskParam();
264344a3780SDimitry Andric
265344a3780SDimitry Andric // Blend in safe operands.
266344a3780SDimitry Andric if (Mask && !isAllTrueMask(Mask)) {
267344a3780SDimitry Andric switch (OC) {
268344a3780SDimitry Andric default:
269344a3780SDimitry Andric // Can safely ignore the predicate.
270344a3780SDimitry Andric break;
271344a3780SDimitry Andric
272344a3780SDimitry Andric // Division operators need a safe divisor on masked-off lanes (1).
273344a3780SDimitry Andric case Instruction::UDiv:
274344a3780SDimitry Andric case Instruction::SDiv:
275344a3780SDimitry Andric case Instruction::URem:
276344a3780SDimitry Andric case Instruction::SRem:
277344a3780SDimitry Andric // 2nd operand must not be zero.
278344a3780SDimitry Andric Value *SafeDivisor = getSafeDivisor(VPI.getType());
279344a3780SDimitry Andric Op1 = Builder.CreateSelect(Mask, Op1, SafeDivisor);
280344a3780SDimitry Andric }
281344a3780SDimitry Andric }
282344a3780SDimitry Andric
283344a3780SDimitry Andric Value *NewBinOp = Builder.CreateBinOp(OC, Op0, Op1, VPI.getName());
284344a3780SDimitry Andric
285344a3780SDimitry Andric replaceOperation(*NewBinOp, VPI);
286344a3780SDimitry Andric return NewBinOp;
287344a3780SDimitry Andric }
288344a3780SDimitry Andric
expandPredicationToIntCall(IRBuilder<> & Builder,VPIntrinsic & VPI,unsigned UnpredicatedIntrinsicID)289b1c73532SDimitry Andric Value *CachingVPExpander::expandPredicationToIntCall(
290b1c73532SDimitry Andric IRBuilder<> &Builder, VPIntrinsic &VPI, unsigned UnpredicatedIntrinsicID) {
291b1c73532SDimitry Andric switch (UnpredicatedIntrinsicID) {
292b1c73532SDimitry Andric case Intrinsic::abs:
293b1c73532SDimitry Andric case Intrinsic::smax:
294b1c73532SDimitry Andric case Intrinsic::smin:
295b1c73532SDimitry Andric case Intrinsic::umax:
296b1c73532SDimitry Andric case Intrinsic::umin: {
297b1c73532SDimitry Andric Value *Op0 = VPI.getOperand(0);
298b1c73532SDimitry Andric Value *Op1 = VPI.getOperand(1);
299b1c73532SDimitry Andric Function *Fn = Intrinsic::getDeclaration(
300b1c73532SDimitry Andric VPI.getModule(), UnpredicatedIntrinsicID, {VPI.getType()});
301b1c73532SDimitry Andric Value *NewOp = Builder.CreateCall(Fn, {Op0, Op1}, VPI.getName());
302b1c73532SDimitry Andric replaceOperation(*NewOp, VPI);
303b1c73532SDimitry Andric return NewOp;
304b1c73532SDimitry Andric }
305b1c73532SDimitry Andric case Intrinsic::bswap:
306b1c73532SDimitry Andric case Intrinsic::bitreverse: {
307b1c73532SDimitry Andric Value *Op = VPI.getOperand(0);
308b1c73532SDimitry Andric Function *Fn = Intrinsic::getDeclaration(
309b1c73532SDimitry Andric VPI.getModule(), UnpredicatedIntrinsicID, {VPI.getType()});
310b1c73532SDimitry Andric Value *NewOp = Builder.CreateCall(Fn, {Op}, VPI.getName());
311b1c73532SDimitry Andric replaceOperation(*NewOp, VPI);
312b1c73532SDimitry Andric return NewOp;
313b1c73532SDimitry Andric }
314b1c73532SDimitry Andric }
315b1c73532SDimitry Andric return nullptr;
316b1c73532SDimitry Andric }
317b1c73532SDimitry Andric
expandPredicationToFPCall(IRBuilder<> & Builder,VPIntrinsic & VPI,unsigned UnpredicatedIntrinsicID)3187fa27ce4SDimitry Andric Value *CachingVPExpander::expandPredicationToFPCall(
3197fa27ce4SDimitry Andric IRBuilder<> &Builder, VPIntrinsic &VPI, unsigned UnpredicatedIntrinsicID) {
3207fa27ce4SDimitry Andric assert((maySpeculateLanes(VPI) || VPI.canIgnoreVectorLengthParam()) &&
3217fa27ce4SDimitry Andric "Implicitly dropping %evl in non-speculatable operator!");
3227fa27ce4SDimitry Andric
3237fa27ce4SDimitry Andric switch (UnpredicatedIntrinsicID) {
3247fa27ce4SDimitry Andric case Intrinsic::fabs:
3257fa27ce4SDimitry Andric case Intrinsic::sqrt: {
3267fa27ce4SDimitry Andric Value *Op0 = VPI.getOperand(0);
3277fa27ce4SDimitry Andric Function *Fn = Intrinsic::getDeclaration(
3287fa27ce4SDimitry Andric VPI.getModule(), UnpredicatedIntrinsicID, {VPI.getType()});
3297fa27ce4SDimitry Andric Value *NewOp = Builder.CreateCall(Fn, {Op0}, VPI.getName());
3307fa27ce4SDimitry Andric replaceOperation(*NewOp, VPI);
3317fa27ce4SDimitry Andric return NewOp;
3327fa27ce4SDimitry Andric }
333b1c73532SDimitry Andric case Intrinsic::maxnum:
334b1c73532SDimitry Andric case Intrinsic::minnum: {
335b1c73532SDimitry Andric Value *Op0 = VPI.getOperand(0);
336b1c73532SDimitry Andric Value *Op1 = VPI.getOperand(1);
337b1c73532SDimitry Andric Function *Fn = Intrinsic::getDeclaration(
338b1c73532SDimitry Andric VPI.getModule(), UnpredicatedIntrinsicID, {VPI.getType()});
339b1c73532SDimitry Andric Value *NewOp = Builder.CreateCall(Fn, {Op0, Op1}, VPI.getName());
340b1c73532SDimitry Andric replaceOperation(*NewOp, VPI);
341b1c73532SDimitry Andric return NewOp;
342b1c73532SDimitry Andric }
343ac9a064cSDimitry Andric case Intrinsic::fma:
344ac9a064cSDimitry Andric case Intrinsic::fmuladd:
3457fa27ce4SDimitry Andric case Intrinsic::experimental_constrained_fma:
3467fa27ce4SDimitry Andric case Intrinsic::experimental_constrained_fmuladd: {
3477fa27ce4SDimitry Andric Value *Op0 = VPI.getOperand(0);
3487fa27ce4SDimitry Andric Value *Op1 = VPI.getOperand(1);
3497fa27ce4SDimitry Andric Value *Op2 = VPI.getOperand(2);
3507fa27ce4SDimitry Andric Function *Fn = Intrinsic::getDeclaration(
3517fa27ce4SDimitry Andric VPI.getModule(), UnpredicatedIntrinsicID, {VPI.getType()});
352ac9a064cSDimitry Andric Value *NewOp;
353ac9a064cSDimitry Andric if (Intrinsic::isConstrainedFPIntrinsic(UnpredicatedIntrinsicID))
354ac9a064cSDimitry Andric NewOp =
3557fa27ce4SDimitry Andric Builder.CreateConstrainedFPCall(Fn, {Op0, Op1, Op2}, VPI.getName());
356ac9a064cSDimitry Andric else
357ac9a064cSDimitry Andric NewOp = Builder.CreateCall(Fn, {Op0, Op1, Op2}, VPI.getName());
3587fa27ce4SDimitry Andric replaceOperation(*NewOp, VPI);
3597fa27ce4SDimitry Andric return NewOp;
3607fa27ce4SDimitry Andric }
3617fa27ce4SDimitry Andric }
3627fa27ce4SDimitry Andric
3637fa27ce4SDimitry Andric return nullptr;
3647fa27ce4SDimitry Andric }
3657fa27ce4SDimitry Andric
getNeutralReductionElement(const VPReductionIntrinsic & VPI,Type * EltTy)366c0981da4SDimitry Andric static Value *getNeutralReductionElement(const VPReductionIntrinsic &VPI,
367c0981da4SDimitry Andric Type *EltTy) {
368c0981da4SDimitry Andric bool Negative = false;
369c0981da4SDimitry Andric unsigned EltBits = EltTy->getScalarSizeInBits();
370ac9a064cSDimitry Andric Intrinsic::ID VID = VPI.getIntrinsicID();
371ac9a064cSDimitry Andric switch (VID) {
372c0981da4SDimitry Andric default:
373c0981da4SDimitry Andric llvm_unreachable("Expecting a VP reduction intrinsic");
374c0981da4SDimitry Andric case Intrinsic::vp_reduce_add:
375c0981da4SDimitry Andric case Intrinsic::vp_reduce_or:
376c0981da4SDimitry Andric case Intrinsic::vp_reduce_xor:
377c0981da4SDimitry Andric case Intrinsic::vp_reduce_umax:
378c0981da4SDimitry Andric return Constant::getNullValue(EltTy);
379c0981da4SDimitry Andric case Intrinsic::vp_reduce_mul:
380c0981da4SDimitry Andric return ConstantInt::get(EltTy, 1, /*IsSigned*/ false);
381c0981da4SDimitry Andric case Intrinsic::vp_reduce_and:
382c0981da4SDimitry Andric case Intrinsic::vp_reduce_umin:
383c0981da4SDimitry Andric return ConstantInt::getAllOnesValue(EltTy);
384c0981da4SDimitry Andric case Intrinsic::vp_reduce_smin:
385c0981da4SDimitry Andric return ConstantInt::get(EltTy->getContext(),
386c0981da4SDimitry Andric APInt::getSignedMaxValue(EltBits));
387c0981da4SDimitry Andric case Intrinsic::vp_reduce_smax:
388c0981da4SDimitry Andric return ConstantInt::get(EltTy->getContext(),
389c0981da4SDimitry Andric APInt::getSignedMinValue(EltBits));
390c0981da4SDimitry Andric case Intrinsic::vp_reduce_fmax:
391ac9a064cSDimitry Andric case Intrinsic::vp_reduce_fmaximum:
392c0981da4SDimitry Andric Negative = true;
393e3b55780SDimitry Andric [[fallthrough]];
394ac9a064cSDimitry Andric case Intrinsic::vp_reduce_fmin:
395ac9a064cSDimitry Andric case Intrinsic::vp_reduce_fminimum: {
396ac9a064cSDimitry Andric bool PropagatesNaN = VID == Intrinsic::vp_reduce_fminimum ||
397ac9a064cSDimitry Andric VID == Intrinsic::vp_reduce_fmaximum;
398c0981da4SDimitry Andric FastMathFlags Flags = VPI.getFastMathFlags();
399c0981da4SDimitry Andric const fltSemantics &Semantics = EltTy->getFltSemantics();
400ac9a064cSDimitry Andric return (!Flags.noNaNs() && !PropagatesNaN)
401ac9a064cSDimitry Andric ? ConstantFP::getQNaN(EltTy, Negative)
402c0981da4SDimitry Andric : !Flags.noInfs()
403c0981da4SDimitry Andric ? ConstantFP::getInfinity(EltTy, Negative)
404c0981da4SDimitry Andric : ConstantFP::get(EltTy,
405c0981da4SDimitry Andric APFloat::getLargest(Semantics, Negative));
406c0981da4SDimitry Andric }
407c0981da4SDimitry Andric case Intrinsic::vp_reduce_fadd:
408c0981da4SDimitry Andric return ConstantFP::getNegativeZero(EltTy);
409c0981da4SDimitry Andric case Intrinsic::vp_reduce_fmul:
410c0981da4SDimitry Andric return ConstantFP::get(EltTy, 1.0);
411c0981da4SDimitry Andric }
412c0981da4SDimitry Andric }
413c0981da4SDimitry Andric
414c0981da4SDimitry Andric Value *
expandPredicationInReduction(IRBuilder<> & Builder,VPReductionIntrinsic & VPI)415c0981da4SDimitry Andric CachingVPExpander::expandPredicationInReduction(IRBuilder<> &Builder,
416c0981da4SDimitry Andric VPReductionIntrinsic &VPI) {
417145449b1SDimitry Andric assert((maySpeculateLanes(VPI) || VPI.canIgnoreVectorLengthParam()) &&
418c0981da4SDimitry Andric "Implicitly dropping %evl in non-speculatable operator!");
419c0981da4SDimitry Andric
420c0981da4SDimitry Andric Value *Mask = VPI.getMaskParam();
421c0981da4SDimitry Andric Value *RedOp = VPI.getOperand(VPI.getVectorParamPos());
422c0981da4SDimitry Andric
423c0981da4SDimitry Andric // Insert neutral element in masked-out positions
424c0981da4SDimitry Andric if (Mask && !isAllTrueMask(Mask)) {
425c0981da4SDimitry Andric auto *NeutralElt = getNeutralReductionElement(VPI, VPI.getType());
426c0981da4SDimitry Andric auto *NeutralVector = Builder.CreateVectorSplat(
427c0981da4SDimitry Andric cast<VectorType>(RedOp->getType())->getElementCount(), NeutralElt);
428c0981da4SDimitry Andric RedOp = Builder.CreateSelect(Mask, RedOp, NeutralVector);
429c0981da4SDimitry Andric }
430c0981da4SDimitry Andric
431c0981da4SDimitry Andric Value *Reduction;
432c0981da4SDimitry Andric Value *Start = VPI.getOperand(VPI.getStartParamPos());
433c0981da4SDimitry Andric
434c0981da4SDimitry Andric switch (VPI.getIntrinsicID()) {
435c0981da4SDimitry Andric default:
436c0981da4SDimitry Andric llvm_unreachable("Impossible reduction kind");
437c0981da4SDimitry Andric case Intrinsic::vp_reduce_add:
438c0981da4SDimitry Andric Reduction = Builder.CreateAddReduce(RedOp);
439c0981da4SDimitry Andric Reduction = Builder.CreateAdd(Reduction, Start);
440c0981da4SDimitry Andric break;
441c0981da4SDimitry Andric case Intrinsic::vp_reduce_mul:
442c0981da4SDimitry Andric Reduction = Builder.CreateMulReduce(RedOp);
443c0981da4SDimitry Andric Reduction = Builder.CreateMul(Reduction, Start);
444c0981da4SDimitry Andric break;
445c0981da4SDimitry Andric case Intrinsic::vp_reduce_and:
446c0981da4SDimitry Andric Reduction = Builder.CreateAndReduce(RedOp);
447c0981da4SDimitry Andric Reduction = Builder.CreateAnd(Reduction, Start);
448c0981da4SDimitry Andric break;
449c0981da4SDimitry Andric case Intrinsic::vp_reduce_or:
450c0981da4SDimitry Andric Reduction = Builder.CreateOrReduce(RedOp);
451c0981da4SDimitry Andric Reduction = Builder.CreateOr(Reduction, Start);
452c0981da4SDimitry Andric break;
453c0981da4SDimitry Andric case Intrinsic::vp_reduce_xor:
454c0981da4SDimitry Andric Reduction = Builder.CreateXorReduce(RedOp);
455c0981da4SDimitry Andric Reduction = Builder.CreateXor(Reduction, Start);
456c0981da4SDimitry Andric break;
457c0981da4SDimitry Andric case Intrinsic::vp_reduce_smax:
458c0981da4SDimitry Andric Reduction = Builder.CreateIntMaxReduce(RedOp, /*IsSigned*/ true);
459c0981da4SDimitry Andric Reduction =
460c0981da4SDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::smax, Reduction, Start);
461c0981da4SDimitry Andric break;
462c0981da4SDimitry Andric case Intrinsic::vp_reduce_smin:
463c0981da4SDimitry Andric Reduction = Builder.CreateIntMinReduce(RedOp, /*IsSigned*/ true);
464c0981da4SDimitry Andric Reduction =
465c0981da4SDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::smin, Reduction, Start);
466c0981da4SDimitry Andric break;
467c0981da4SDimitry Andric case Intrinsic::vp_reduce_umax:
468c0981da4SDimitry Andric Reduction = Builder.CreateIntMaxReduce(RedOp, /*IsSigned*/ false);
469c0981da4SDimitry Andric Reduction =
470c0981da4SDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::umax, Reduction, Start);
471c0981da4SDimitry Andric break;
472c0981da4SDimitry Andric case Intrinsic::vp_reduce_umin:
473c0981da4SDimitry Andric Reduction = Builder.CreateIntMinReduce(RedOp, /*IsSigned*/ false);
474c0981da4SDimitry Andric Reduction =
475c0981da4SDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::umin, Reduction, Start);
476c0981da4SDimitry Andric break;
477c0981da4SDimitry Andric case Intrinsic::vp_reduce_fmax:
478c0981da4SDimitry Andric Reduction = Builder.CreateFPMaxReduce(RedOp);
479c0981da4SDimitry Andric transferDecorations(*Reduction, VPI);
480c0981da4SDimitry Andric Reduction =
481c0981da4SDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::maxnum, Reduction, Start);
482c0981da4SDimitry Andric break;
483c0981da4SDimitry Andric case Intrinsic::vp_reduce_fmin:
484c0981da4SDimitry Andric Reduction = Builder.CreateFPMinReduce(RedOp);
485c0981da4SDimitry Andric transferDecorations(*Reduction, VPI);
486c0981da4SDimitry Andric Reduction =
487c0981da4SDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::minnum, Reduction, Start);
488c0981da4SDimitry Andric break;
489ac9a064cSDimitry Andric case Intrinsic::vp_reduce_fmaximum:
490ac9a064cSDimitry Andric Reduction = Builder.CreateFPMaximumReduce(RedOp);
491ac9a064cSDimitry Andric transferDecorations(*Reduction, VPI);
492ac9a064cSDimitry Andric Reduction =
493ac9a064cSDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::maximum, Reduction, Start);
494ac9a064cSDimitry Andric break;
495ac9a064cSDimitry Andric case Intrinsic::vp_reduce_fminimum:
496ac9a064cSDimitry Andric Reduction = Builder.CreateFPMinimumReduce(RedOp);
497ac9a064cSDimitry Andric transferDecorations(*Reduction, VPI);
498ac9a064cSDimitry Andric Reduction =
499ac9a064cSDimitry Andric Builder.CreateBinaryIntrinsic(Intrinsic::minimum, Reduction, Start);
500ac9a064cSDimitry Andric break;
501c0981da4SDimitry Andric case Intrinsic::vp_reduce_fadd:
502c0981da4SDimitry Andric Reduction = Builder.CreateFAddReduce(Start, RedOp);
503c0981da4SDimitry Andric break;
504c0981da4SDimitry Andric case Intrinsic::vp_reduce_fmul:
505c0981da4SDimitry Andric Reduction = Builder.CreateFMulReduce(Start, RedOp);
506c0981da4SDimitry Andric break;
507c0981da4SDimitry Andric }
508c0981da4SDimitry Andric
509c0981da4SDimitry Andric replaceOperation(*Reduction, VPI);
510c0981da4SDimitry Andric return Reduction;
511c0981da4SDimitry Andric }
512c0981da4SDimitry Andric
expandPredicationToCastIntrinsic(IRBuilder<> & Builder,VPIntrinsic & VPI)513b1c73532SDimitry Andric Value *CachingVPExpander::expandPredicationToCastIntrinsic(IRBuilder<> &Builder,
514b1c73532SDimitry Andric VPIntrinsic &VPI) {
515b1c73532SDimitry Andric Value *CastOp = nullptr;
516b1c73532SDimitry Andric switch (VPI.getIntrinsicID()) {
517b1c73532SDimitry Andric default:
518b1c73532SDimitry Andric llvm_unreachable("Not a VP cast intrinsic");
519b1c73532SDimitry Andric case Intrinsic::vp_sext:
520b1c73532SDimitry Andric CastOp =
521b1c73532SDimitry Andric Builder.CreateSExt(VPI.getOperand(0), VPI.getType(), VPI.getName());
522b1c73532SDimitry Andric break;
523b1c73532SDimitry Andric case Intrinsic::vp_zext:
524b1c73532SDimitry Andric CastOp =
525b1c73532SDimitry Andric Builder.CreateZExt(VPI.getOperand(0), VPI.getType(), VPI.getName());
526b1c73532SDimitry Andric break;
527b1c73532SDimitry Andric case Intrinsic::vp_trunc:
528b1c73532SDimitry Andric CastOp =
529b1c73532SDimitry Andric Builder.CreateTrunc(VPI.getOperand(0), VPI.getType(), VPI.getName());
530b1c73532SDimitry Andric break;
531b1c73532SDimitry Andric case Intrinsic::vp_inttoptr:
532b1c73532SDimitry Andric CastOp =
533b1c73532SDimitry Andric Builder.CreateIntToPtr(VPI.getOperand(0), VPI.getType(), VPI.getName());
534b1c73532SDimitry Andric break;
535b1c73532SDimitry Andric case Intrinsic::vp_ptrtoint:
536b1c73532SDimitry Andric CastOp =
537b1c73532SDimitry Andric Builder.CreatePtrToInt(VPI.getOperand(0), VPI.getType(), VPI.getName());
538b1c73532SDimitry Andric break;
539b1c73532SDimitry Andric case Intrinsic::vp_fptosi:
540b1c73532SDimitry Andric CastOp =
541b1c73532SDimitry Andric Builder.CreateFPToSI(VPI.getOperand(0), VPI.getType(), VPI.getName());
542b1c73532SDimitry Andric break;
543b1c73532SDimitry Andric
544b1c73532SDimitry Andric case Intrinsic::vp_fptoui:
545b1c73532SDimitry Andric CastOp =
546b1c73532SDimitry Andric Builder.CreateFPToUI(VPI.getOperand(0), VPI.getType(), VPI.getName());
547b1c73532SDimitry Andric break;
548b1c73532SDimitry Andric case Intrinsic::vp_sitofp:
549b1c73532SDimitry Andric CastOp =
550b1c73532SDimitry Andric Builder.CreateSIToFP(VPI.getOperand(0), VPI.getType(), VPI.getName());
551b1c73532SDimitry Andric break;
552b1c73532SDimitry Andric case Intrinsic::vp_uitofp:
553b1c73532SDimitry Andric CastOp =
554b1c73532SDimitry Andric Builder.CreateUIToFP(VPI.getOperand(0), VPI.getType(), VPI.getName());
555b1c73532SDimitry Andric break;
556b1c73532SDimitry Andric case Intrinsic::vp_fptrunc:
557b1c73532SDimitry Andric CastOp =
558b1c73532SDimitry Andric Builder.CreateFPTrunc(VPI.getOperand(0), VPI.getType(), VPI.getName());
559b1c73532SDimitry Andric break;
560b1c73532SDimitry Andric case Intrinsic::vp_fpext:
561b1c73532SDimitry Andric CastOp =
562b1c73532SDimitry Andric Builder.CreateFPExt(VPI.getOperand(0), VPI.getType(), VPI.getName());
563b1c73532SDimitry Andric break;
564b1c73532SDimitry Andric }
565b1c73532SDimitry Andric replaceOperation(*CastOp, VPI);
566b1c73532SDimitry Andric return CastOp;
567b1c73532SDimitry Andric }
568b1c73532SDimitry Andric
5694b4fe385SDimitry Andric Value *
expandPredicationInMemoryIntrinsic(IRBuilder<> & Builder,VPIntrinsic & VPI)5704b4fe385SDimitry Andric CachingVPExpander::expandPredicationInMemoryIntrinsic(IRBuilder<> &Builder,
5714b4fe385SDimitry Andric VPIntrinsic &VPI) {
5724b4fe385SDimitry Andric assert(VPI.canIgnoreVectorLengthParam());
5734b4fe385SDimitry Andric
574ac9a064cSDimitry Andric const auto &DL = F.getDataLayout();
5754b4fe385SDimitry Andric
5764b4fe385SDimitry Andric Value *MaskParam = VPI.getMaskParam();
5774b4fe385SDimitry Andric Value *PtrParam = VPI.getMemoryPointerParam();
5784b4fe385SDimitry Andric Value *DataParam = VPI.getMemoryDataParam();
5794b4fe385SDimitry Andric bool IsUnmasked = isAllTrueMask(MaskParam);
5804b4fe385SDimitry Andric
5814b4fe385SDimitry Andric MaybeAlign AlignOpt = VPI.getPointerAlignment();
5824b4fe385SDimitry Andric
5834b4fe385SDimitry Andric Value *NewMemoryInst = nullptr;
5844b4fe385SDimitry Andric switch (VPI.getIntrinsicID()) {
5854b4fe385SDimitry Andric default:
5864b4fe385SDimitry Andric llvm_unreachable("Not a VP memory intrinsic");
5874b4fe385SDimitry Andric case Intrinsic::vp_store:
5884b4fe385SDimitry Andric if (IsUnmasked) {
5894b4fe385SDimitry Andric StoreInst *NewStore =
5904b4fe385SDimitry Andric Builder.CreateStore(DataParam, PtrParam, /*IsVolatile*/ false);
5914b4fe385SDimitry Andric if (AlignOpt.has_value())
592e3b55780SDimitry Andric NewStore->setAlignment(*AlignOpt);
5934b4fe385SDimitry Andric NewMemoryInst = NewStore;
5944b4fe385SDimitry Andric } else
5954b4fe385SDimitry Andric NewMemoryInst = Builder.CreateMaskedStore(
5964b4fe385SDimitry Andric DataParam, PtrParam, AlignOpt.valueOrOne(), MaskParam);
5974b4fe385SDimitry Andric
5984b4fe385SDimitry Andric break;
5994b4fe385SDimitry Andric case Intrinsic::vp_load:
6004b4fe385SDimitry Andric if (IsUnmasked) {
6014b4fe385SDimitry Andric LoadInst *NewLoad =
6024b4fe385SDimitry Andric Builder.CreateLoad(VPI.getType(), PtrParam, /*IsVolatile*/ false);
6034b4fe385SDimitry Andric if (AlignOpt.has_value())
604e3b55780SDimitry Andric NewLoad->setAlignment(*AlignOpt);
6054b4fe385SDimitry Andric NewMemoryInst = NewLoad;
6064b4fe385SDimitry Andric } else
6074b4fe385SDimitry Andric NewMemoryInst = Builder.CreateMaskedLoad(
6084b4fe385SDimitry Andric VPI.getType(), PtrParam, AlignOpt.valueOrOne(), MaskParam);
6094b4fe385SDimitry Andric
6104b4fe385SDimitry Andric break;
6114b4fe385SDimitry Andric case Intrinsic::vp_scatter: {
6124b4fe385SDimitry Andric auto *ElementType =
6134b4fe385SDimitry Andric cast<VectorType>(DataParam->getType())->getElementType();
6144b4fe385SDimitry Andric NewMemoryInst = Builder.CreateMaskedScatter(
6154b4fe385SDimitry Andric DataParam, PtrParam,
6164b4fe385SDimitry Andric AlignOpt.value_or(DL.getPrefTypeAlign(ElementType)), MaskParam);
6174b4fe385SDimitry Andric break;
6184b4fe385SDimitry Andric }
6194b4fe385SDimitry Andric case Intrinsic::vp_gather: {
6204b4fe385SDimitry Andric auto *ElementType = cast<VectorType>(VPI.getType())->getElementType();
6214b4fe385SDimitry Andric NewMemoryInst = Builder.CreateMaskedGather(
6224b4fe385SDimitry Andric VPI.getType(), PtrParam,
6234b4fe385SDimitry Andric AlignOpt.value_or(DL.getPrefTypeAlign(ElementType)), MaskParam, nullptr,
6244b4fe385SDimitry Andric VPI.getName());
6254b4fe385SDimitry Andric break;
6264b4fe385SDimitry Andric }
6274b4fe385SDimitry Andric }
6284b4fe385SDimitry Andric
6294b4fe385SDimitry Andric assert(NewMemoryInst);
6304b4fe385SDimitry Andric replaceOperation(*NewMemoryInst, VPI);
6314b4fe385SDimitry Andric return NewMemoryInst;
6324b4fe385SDimitry Andric }
6334b4fe385SDimitry Andric
expandPredicationInComparison(IRBuilder<> & Builder,VPCmpIntrinsic & VPI)634e3b55780SDimitry Andric Value *CachingVPExpander::expandPredicationInComparison(IRBuilder<> &Builder,
635e3b55780SDimitry Andric VPCmpIntrinsic &VPI) {
636e3b55780SDimitry Andric assert((maySpeculateLanes(VPI) || VPI.canIgnoreVectorLengthParam()) &&
637e3b55780SDimitry Andric "Implicitly dropping %evl in non-speculatable operator!");
638e3b55780SDimitry Andric
639e3b55780SDimitry Andric assert(*VPI.getFunctionalOpcode() == Instruction::ICmp ||
640e3b55780SDimitry Andric *VPI.getFunctionalOpcode() == Instruction::FCmp);
641e3b55780SDimitry Andric
642e3b55780SDimitry Andric Value *Op0 = VPI.getOperand(0);
643e3b55780SDimitry Andric Value *Op1 = VPI.getOperand(1);
644e3b55780SDimitry Andric auto Pred = VPI.getPredicate();
645e3b55780SDimitry Andric
646e3b55780SDimitry Andric auto *NewCmp = Builder.CreateCmp(Pred, Op0, Op1);
647e3b55780SDimitry Andric
648e3b55780SDimitry Andric replaceOperation(*NewCmp, VPI);
649e3b55780SDimitry Andric return NewCmp;
650e3b55780SDimitry Andric }
651e3b55780SDimitry Andric
discardEVLParameter(VPIntrinsic & VPI)652344a3780SDimitry Andric void CachingVPExpander::discardEVLParameter(VPIntrinsic &VPI) {
653344a3780SDimitry Andric LLVM_DEBUG(dbgs() << "Discard EVL parameter in " << VPI << "\n");
654344a3780SDimitry Andric
655344a3780SDimitry Andric if (VPI.canIgnoreVectorLengthParam())
656344a3780SDimitry Andric return;
657344a3780SDimitry Andric
658344a3780SDimitry Andric Value *EVLParam = VPI.getVectorLengthParam();
659344a3780SDimitry Andric if (!EVLParam)
660344a3780SDimitry Andric return;
661344a3780SDimitry Andric
662344a3780SDimitry Andric ElementCount StaticElemCount = VPI.getStaticVectorLength();
663344a3780SDimitry Andric Value *MaxEVL = nullptr;
664344a3780SDimitry Andric Type *Int32Ty = Type::getInt32Ty(VPI.getContext());
665344a3780SDimitry Andric if (StaticElemCount.isScalable()) {
666344a3780SDimitry Andric // TODO add caching
667344a3780SDimitry Andric auto *M = VPI.getModule();
668344a3780SDimitry Andric Function *VScaleFunc =
669344a3780SDimitry Andric Intrinsic::getDeclaration(M, Intrinsic::vscale, Int32Ty);
670344a3780SDimitry Andric IRBuilder<> Builder(VPI.getParent(), VPI.getIterator());
671344a3780SDimitry Andric Value *FactorConst = Builder.getInt32(StaticElemCount.getKnownMinValue());
672344a3780SDimitry Andric Value *VScale = Builder.CreateCall(VScaleFunc, {}, "vscale");
673344a3780SDimitry Andric MaxEVL = Builder.CreateMul(VScale, FactorConst, "scalable_size",
674344a3780SDimitry Andric /*NUW*/ true, /*NSW*/ false);
675344a3780SDimitry Andric } else {
676344a3780SDimitry Andric MaxEVL = ConstantInt::get(Int32Ty, StaticElemCount.getFixedValue(), false);
677344a3780SDimitry Andric }
678344a3780SDimitry Andric VPI.setVectorLengthParam(MaxEVL);
679344a3780SDimitry Andric }
680344a3780SDimitry Andric
foldEVLIntoMask(VPIntrinsic & VPI)681344a3780SDimitry Andric Value *CachingVPExpander::foldEVLIntoMask(VPIntrinsic &VPI) {
682344a3780SDimitry Andric LLVM_DEBUG(dbgs() << "Folding vlen for " << VPI << '\n');
683344a3780SDimitry Andric
684344a3780SDimitry Andric IRBuilder<> Builder(&VPI);
685344a3780SDimitry Andric
686344a3780SDimitry Andric // Ineffective %evl parameter and so nothing to do here.
687344a3780SDimitry Andric if (VPI.canIgnoreVectorLengthParam())
688344a3780SDimitry Andric return &VPI;
689344a3780SDimitry Andric
690344a3780SDimitry Andric // Only VP intrinsics can have an %evl parameter.
691344a3780SDimitry Andric Value *OldMaskParam = VPI.getMaskParam();
692344a3780SDimitry Andric Value *OldEVLParam = VPI.getVectorLengthParam();
693344a3780SDimitry Andric assert(OldMaskParam && "no mask param to fold the vl param into");
694344a3780SDimitry Andric assert(OldEVLParam && "no EVL param to fold away");
695344a3780SDimitry Andric
696344a3780SDimitry Andric LLVM_DEBUG(dbgs() << "OLD evl: " << *OldEVLParam << '\n');
697344a3780SDimitry Andric LLVM_DEBUG(dbgs() << "OLD mask: " << *OldMaskParam << '\n');
698344a3780SDimitry Andric
699344a3780SDimitry Andric // Convert the %evl predication into vector mask predication.
700344a3780SDimitry Andric ElementCount ElemCount = VPI.getStaticVectorLength();
701344a3780SDimitry Andric Value *VLMask = convertEVLToMask(Builder, OldEVLParam, ElemCount);
702344a3780SDimitry Andric Value *NewMaskParam = Builder.CreateAnd(VLMask, OldMaskParam);
703344a3780SDimitry Andric VPI.setMaskParam(NewMaskParam);
704344a3780SDimitry Andric
705344a3780SDimitry Andric // Drop the %evl parameter.
706344a3780SDimitry Andric discardEVLParameter(VPI);
707344a3780SDimitry Andric assert(VPI.canIgnoreVectorLengthParam() &&
708344a3780SDimitry Andric "transformation did not render the evl param ineffective!");
709344a3780SDimitry Andric
710344a3780SDimitry Andric // Reassess the modified instruction.
711344a3780SDimitry Andric return &VPI;
712344a3780SDimitry Andric }
713344a3780SDimitry Andric
expandPredication(VPIntrinsic & VPI)714344a3780SDimitry Andric Value *CachingVPExpander::expandPredication(VPIntrinsic &VPI) {
715344a3780SDimitry Andric LLVM_DEBUG(dbgs() << "Lowering to unpredicated op: " << VPI << '\n');
716344a3780SDimitry Andric
717344a3780SDimitry Andric IRBuilder<> Builder(&VPI);
718344a3780SDimitry Andric
719344a3780SDimitry Andric // Try lowering to a LLVM instruction first.
720344a3780SDimitry Andric auto OC = VPI.getFunctionalOpcode();
721344a3780SDimitry Andric
722344a3780SDimitry Andric if (OC && Instruction::isBinaryOp(*OC))
723344a3780SDimitry Andric return expandPredicationInBinaryOperator(Builder, VPI);
724344a3780SDimitry Andric
725c0981da4SDimitry Andric if (auto *VPRI = dyn_cast<VPReductionIntrinsic>(&VPI))
726c0981da4SDimitry Andric return expandPredicationInReduction(Builder, *VPRI);
727c0981da4SDimitry Andric
728e3b55780SDimitry Andric if (auto *VPCmp = dyn_cast<VPCmpIntrinsic>(&VPI))
729e3b55780SDimitry Andric return expandPredicationInComparison(Builder, *VPCmp);
730e3b55780SDimitry Andric
731b1c73532SDimitry Andric if (VPCastIntrinsic::isVPCast(VPI.getIntrinsicID())) {
732b1c73532SDimitry Andric return expandPredicationToCastIntrinsic(Builder, VPI);
733b1c73532SDimitry Andric }
734b1c73532SDimitry Andric
7354b4fe385SDimitry Andric switch (VPI.getIntrinsicID()) {
7364b4fe385SDimitry Andric default:
7374b4fe385SDimitry Andric break;
7387fa27ce4SDimitry Andric case Intrinsic::vp_fneg: {
7397fa27ce4SDimitry Andric Value *NewNegOp = Builder.CreateFNeg(VPI.getOperand(0), VPI.getName());
7407fa27ce4SDimitry Andric replaceOperation(*NewNegOp, VPI);
7417fa27ce4SDimitry Andric return NewNegOp;
7427fa27ce4SDimitry Andric }
743b1c73532SDimitry Andric case Intrinsic::vp_abs:
744b1c73532SDimitry Andric case Intrinsic::vp_smax:
745b1c73532SDimitry Andric case Intrinsic::vp_smin:
746b1c73532SDimitry Andric case Intrinsic::vp_umax:
747b1c73532SDimitry Andric case Intrinsic::vp_umin:
748b1c73532SDimitry Andric case Intrinsic::vp_bswap:
749b1c73532SDimitry Andric case Intrinsic::vp_bitreverse:
750b1c73532SDimitry Andric return expandPredicationToIntCall(Builder, VPI,
751b1c73532SDimitry Andric VPI.getFunctionalIntrinsicID().value());
7527fa27ce4SDimitry Andric case Intrinsic::vp_fabs:
7537fa27ce4SDimitry Andric case Intrinsic::vp_sqrt:
754b1c73532SDimitry Andric case Intrinsic::vp_maxnum:
755b1c73532SDimitry Andric case Intrinsic::vp_minnum:
7564df029ccSDimitry Andric case Intrinsic::vp_maximum:
7574df029ccSDimitry Andric case Intrinsic::vp_minimum:
758ac9a064cSDimitry Andric case Intrinsic::vp_fma:
759ac9a064cSDimitry Andric case Intrinsic::vp_fmuladd:
760b1c73532SDimitry Andric return expandPredicationToFPCall(Builder, VPI,
761b1c73532SDimitry Andric VPI.getFunctionalIntrinsicID().value());
7624b4fe385SDimitry Andric case Intrinsic::vp_load:
7634b4fe385SDimitry Andric case Intrinsic::vp_store:
7644b4fe385SDimitry Andric case Intrinsic::vp_gather:
7654b4fe385SDimitry Andric case Intrinsic::vp_scatter:
7664b4fe385SDimitry Andric return expandPredicationInMemoryIntrinsic(Builder, VPI);
7674b4fe385SDimitry Andric }
7684b4fe385SDimitry Andric
7697fa27ce4SDimitry Andric if (auto CID = VPI.getConstrainedIntrinsicID())
7707fa27ce4SDimitry Andric if (Value *Call = expandPredicationToFPCall(Builder, VPI, *CID))
7717fa27ce4SDimitry Andric return Call;
7727fa27ce4SDimitry Andric
773344a3780SDimitry Andric return &VPI;
774344a3780SDimitry Andric }
775344a3780SDimitry Andric
776344a3780SDimitry Andric //// } CachingVPExpander
777344a3780SDimitry Andric
778344a3780SDimitry Andric struct TransformJob {
779344a3780SDimitry Andric VPIntrinsic *PI;
780344a3780SDimitry Andric TargetTransformInfo::VPLegalization Strategy;
TransformJob__anoneeba2d8e0111::TransformJob781344a3780SDimitry Andric TransformJob(VPIntrinsic *PI, TargetTransformInfo::VPLegalization InitStrat)
782344a3780SDimitry Andric : PI(PI), Strategy(InitStrat) {}
783344a3780SDimitry Andric
isDone__anoneeba2d8e0111::TransformJob784344a3780SDimitry Andric bool isDone() const { return Strategy.shouldDoNothing(); }
785344a3780SDimitry Andric };
786344a3780SDimitry Andric
sanitizeStrategy(VPIntrinsic & VPI,VPLegalization & LegalizeStrat)787145449b1SDimitry Andric void sanitizeStrategy(VPIntrinsic &VPI, VPLegalization &LegalizeStrat) {
788145449b1SDimitry Andric // Operations with speculatable lanes do not strictly need predication.
789145449b1SDimitry Andric if (maySpeculateLanes(VPI)) {
790344a3780SDimitry Andric // Converting a speculatable VP intrinsic means dropping %mask and %evl.
791344a3780SDimitry Andric // No need to expand %evl into the %mask only to ignore that code.
792344a3780SDimitry Andric if (LegalizeStrat.OpStrategy == VPLegalization::Convert)
793344a3780SDimitry Andric LegalizeStrat.EVLParamStrategy = VPLegalization::Discard;
794344a3780SDimitry Andric return;
795344a3780SDimitry Andric }
796344a3780SDimitry Andric
797344a3780SDimitry Andric // We have to preserve the predicating effect of %evl for this
798344a3780SDimitry Andric // non-speculatable VP intrinsic.
799344a3780SDimitry Andric // 1) Never discard %evl.
800344a3780SDimitry Andric // 2) If this VP intrinsic will be expanded to non-VP code, make sure that
801344a3780SDimitry Andric // %evl gets folded into %mask.
802344a3780SDimitry Andric if ((LegalizeStrat.EVLParamStrategy == VPLegalization::Discard) ||
803344a3780SDimitry Andric (LegalizeStrat.OpStrategy == VPLegalization::Convert)) {
804344a3780SDimitry Andric LegalizeStrat.EVLParamStrategy = VPLegalization::Convert;
805344a3780SDimitry Andric }
806344a3780SDimitry Andric }
807344a3780SDimitry Andric
808344a3780SDimitry Andric VPLegalization
getVPLegalizationStrategy(const VPIntrinsic & VPI) const809344a3780SDimitry Andric CachingVPExpander::getVPLegalizationStrategy(const VPIntrinsic &VPI) const {
810344a3780SDimitry Andric auto VPStrat = TTI.getVPLegalizationStrategy(VPI);
811344a3780SDimitry Andric if (LLVM_LIKELY(!UsingTTIOverrides)) {
812344a3780SDimitry Andric // No overrides - we are in production.
813344a3780SDimitry Andric return VPStrat;
814344a3780SDimitry Andric }
815344a3780SDimitry Andric
816344a3780SDimitry Andric // Overrides set - we are in testing, the following does not need to be
817344a3780SDimitry Andric // efficient.
818344a3780SDimitry Andric VPStrat.EVLParamStrategy = parseOverrideOption(EVLTransformOverride);
819344a3780SDimitry Andric VPStrat.OpStrategy = parseOverrideOption(MaskTransformOverride);
820344a3780SDimitry Andric return VPStrat;
821344a3780SDimitry Andric }
822344a3780SDimitry Andric
823e3b55780SDimitry Andric /// Expand llvm.vp.* intrinsics as requested by \p TTI.
expandVectorPredication()824344a3780SDimitry Andric bool CachingVPExpander::expandVectorPredication() {
825344a3780SDimitry Andric SmallVector<TransformJob, 16> Worklist;
826344a3780SDimitry Andric
827344a3780SDimitry Andric // Collect all VPIntrinsics that need expansion and determine their expansion
828344a3780SDimitry Andric // strategy.
829344a3780SDimitry Andric for (auto &I : instructions(F)) {
830344a3780SDimitry Andric auto *VPI = dyn_cast<VPIntrinsic>(&I);
831344a3780SDimitry Andric if (!VPI)
832344a3780SDimitry Andric continue;
833344a3780SDimitry Andric auto VPStrat = getVPLegalizationStrategy(*VPI);
834145449b1SDimitry Andric sanitizeStrategy(*VPI, VPStrat);
835344a3780SDimitry Andric if (!VPStrat.shouldDoNothing())
836344a3780SDimitry Andric Worklist.emplace_back(VPI, VPStrat);
837344a3780SDimitry Andric }
838344a3780SDimitry Andric if (Worklist.empty())
839344a3780SDimitry Andric return false;
840344a3780SDimitry Andric
841344a3780SDimitry Andric // Transform all VPIntrinsics on the worklist.
842344a3780SDimitry Andric LLVM_DEBUG(dbgs() << "\n:::: Transforming " << Worklist.size()
843344a3780SDimitry Andric << " instructions ::::\n");
844344a3780SDimitry Andric for (TransformJob Job : Worklist) {
845344a3780SDimitry Andric // Transform the EVL parameter.
846344a3780SDimitry Andric switch (Job.Strategy.EVLParamStrategy) {
847344a3780SDimitry Andric case VPLegalization::Legal:
848344a3780SDimitry Andric break;
849344a3780SDimitry Andric case VPLegalization::Discard:
850344a3780SDimitry Andric discardEVLParameter(*Job.PI);
851344a3780SDimitry Andric break;
852344a3780SDimitry Andric case VPLegalization::Convert:
853344a3780SDimitry Andric if (foldEVLIntoMask(*Job.PI))
854344a3780SDimitry Andric ++NumFoldedVL;
855344a3780SDimitry Andric break;
856344a3780SDimitry Andric }
857344a3780SDimitry Andric Job.Strategy.EVLParamStrategy = VPLegalization::Legal;
858344a3780SDimitry Andric
859344a3780SDimitry Andric // Replace with a non-predicated operation.
860344a3780SDimitry Andric switch (Job.Strategy.OpStrategy) {
861344a3780SDimitry Andric case VPLegalization::Legal:
862344a3780SDimitry Andric break;
863344a3780SDimitry Andric case VPLegalization::Discard:
864344a3780SDimitry Andric llvm_unreachable("Invalid strategy for operators.");
865344a3780SDimitry Andric case VPLegalization::Convert:
866344a3780SDimitry Andric expandPredication(*Job.PI);
867344a3780SDimitry Andric ++NumLoweredVPOps;
868344a3780SDimitry Andric break;
869344a3780SDimitry Andric }
870344a3780SDimitry Andric Job.Strategy.OpStrategy = VPLegalization::Legal;
871344a3780SDimitry Andric
872344a3780SDimitry Andric assert(Job.isDone() && "incomplete transformation");
873344a3780SDimitry Andric }
874344a3780SDimitry Andric
875344a3780SDimitry Andric return true;
876344a3780SDimitry Andric }
877344a3780SDimitry Andric class ExpandVectorPredication : public FunctionPass {
878344a3780SDimitry Andric public:
879344a3780SDimitry Andric static char ID;
ExpandVectorPredication()880344a3780SDimitry Andric ExpandVectorPredication() : FunctionPass(ID) {
881344a3780SDimitry Andric initializeExpandVectorPredicationPass(*PassRegistry::getPassRegistry());
882344a3780SDimitry Andric }
883344a3780SDimitry Andric
runOnFunction(Function & F)884344a3780SDimitry Andric bool runOnFunction(Function &F) override {
885344a3780SDimitry Andric const auto *TTI = &getAnalysis<TargetTransformInfoWrapperPass>().getTTI(F);
886344a3780SDimitry Andric CachingVPExpander VPExpander(F, *TTI);
887344a3780SDimitry Andric return VPExpander.expandVectorPredication();
888344a3780SDimitry Andric }
889344a3780SDimitry Andric
getAnalysisUsage(AnalysisUsage & AU) const890344a3780SDimitry Andric void getAnalysisUsage(AnalysisUsage &AU) const override {
891344a3780SDimitry Andric AU.addRequired<TargetTransformInfoWrapperPass>();
892344a3780SDimitry Andric AU.setPreservesCFG();
893344a3780SDimitry Andric }
894344a3780SDimitry Andric };
895344a3780SDimitry Andric } // namespace
896344a3780SDimitry Andric
897344a3780SDimitry Andric char ExpandVectorPredication::ID;
898344a3780SDimitry Andric INITIALIZE_PASS_BEGIN(ExpandVectorPredication, "expandvp",
899344a3780SDimitry Andric "Expand vector predication intrinsics", false, false)
INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)900344a3780SDimitry Andric INITIALIZE_PASS_DEPENDENCY(TargetTransformInfoWrapperPass)
901344a3780SDimitry Andric INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
902344a3780SDimitry Andric INITIALIZE_PASS_END(ExpandVectorPredication, "expandvp",
903344a3780SDimitry Andric "Expand vector predication intrinsics", false, false)
904344a3780SDimitry Andric
905344a3780SDimitry Andric FunctionPass *llvm::createExpandVectorPredicationPass() {
906344a3780SDimitry Andric return new ExpandVectorPredication();
907344a3780SDimitry Andric }
908344a3780SDimitry Andric
909344a3780SDimitry Andric PreservedAnalyses
run(Function & F,FunctionAnalysisManager & AM)910344a3780SDimitry Andric ExpandVectorPredicationPass::run(Function &F, FunctionAnalysisManager &AM) {
911344a3780SDimitry Andric const auto &TTI = AM.getResult<TargetIRAnalysis>(F);
912344a3780SDimitry Andric CachingVPExpander VPExpander(F, TTI);
913344a3780SDimitry Andric if (!VPExpander.expandVectorPredication())
914344a3780SDimitry Andric return PreservedAnalyses::all();
915344a3780SDimitry Andric PreservedAnalyses PA;
916344a3780SDimitry Andric PA.preserveSet<CFGAnalyses>();
917344a3780SDimitry Andric return PA;
918344a3780SDimitry Andric }
919