186de486dSMatt Arsenault //===-- AMDGPUCodeGenPrepare.cpp ------------------------------------------===//
286de486dSMatt Arsenault //
32946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
42946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information.
52946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
686de486dSMatt Arsenault //
786de486dSMatt Arsenault //===----------------------------------------------------------------------===//
886de486dSMatt Arsenault //
986de486dSMatt Arsenault /// \file
1086de486dSMatt Arsenault /// This pass does misc. AMDGPU optimizations on IR before instruction
1186de486dSMatt Arsenault /// selection.
1286de486dSMatt Arsenault //
1386de486dSMatt Arsenault //===----------------------------------------------------------------------===//
1486de486dSMatt Arsenault 
1586de486dSMatt Arsenault #include "AMDGPU.h"
16a1fe17c9SMatt Arsenault #include "AMDGPUTargetMachine.h"
177e7268acSStanislav Mekhanoshin #include "llvm/Analysis/AssumptionCache.h"
18bcd91778SMatt Arsenault #include "llvm/Analysis/ConstantFolding.h"
1935617ed4SNicolai Haehnle #include "llvm/Analysis/LegacyDivergenceAnalysis.h"
2067aa18f1SStanislav Mekhanoshin #include "llvm/Analysis/ValueTracking.h"
218b61764cSFrancis Visoiu Mistrih #include "llvm/CodeGen/TargetPassConfig.h"
22a7aaadc1SFlorian Hahn #include "llvm/IR/Dominators.h"
236bda14b3SChandler Carruth #include "llvm/IR/InstVisitor.h"
246a87e9b0Sdfukalov #include "llvm/IR/IntrinsicsAMDGPU.h"
2599142003SNikita Popov #include "llvm/IR/IRBuilder.h"
2605da2fe5SReid Kleckner #include "llvm/InitializePasses.h"
27734bb7bbSEugene Zelenko #include "llvm/Pass.h"
281673a080SSimon Pilgrim #include "llvm/Support/KnownBits.h"
29a7aaadc1SFlorian Hahn #include "llvm/Transforms/Utils/IntegerDivision.h"
3086de486dSMatt Arsenault 
3186de486dSMatt Arsenault #define DEBUG_TYPE "amdgpu-codegenprepare"
3286de486dSMatt Arsenault 
3386de486dSMatt Arsenault using namespace llvm;
3486de486dSMatt Arsenault 
3586de486dSMatt Arsenault namespace {
3686de486dSMatt Arsenault 
3790083d30SMatt Arsenault static cl::opt<bool> WidenLoads(
3890083d30SMatt Arsenault   "amdgpu-codegenprepare-widen-constant-loads",
3990083d30SMatt Arsenault   cl::desc("Widen sub-dword constant address space loads in AMDGPUCodeGenPrepare"),
4090083d30SMatt Arsenault   cl::ReallyHidden,
4144920e85SStanislav Mekhanoshin   cl::init(false));
4290083d30SMatt Arsenault 
4375e6f0b3SMatt Arsenault static cl::opt<bool> Widen16BitOps(
4475e6f0b3SMatt Arsenault   "amdgpu-codegenprepare-widen-16-bit-ops",
4575e6f0b3SMatt Arsenault   cl::desc("Widen uniform 16-bit instructions to 32-bit in AMDGPUCodeGenPrepare"),
4675e6f0b3SMatt Arsenault   cl::ReallyHidden,
4775e6f0b3SMatt Arsenault   cl::init(true));
4875e6f0b3SMatt Arsenault 
49b3dd381aSMatt Arsenault static cl::opt<bool> UseMul24Intrin(
50b3dd381aSMatt Arsenault   "amdgpu-codegenprepare-mul24",
51b3dd381aSMatt Arsenault   cl::desc("Introduce mul24 intrinsics in AMDGPUCodeGenPrepare"),
52b3dd381aSMatt Arsenault   cl::ReallyHidden,
53b3dd381aSMatt Arsenault   cl::init(true));
54b3dd381aSMatt Arsenault 
559ec66860SMatt Arsenault // Legalize 64-bit division by using the generic IR expansion.
5634d9a16eSMatt Arsenault static cl::opt<bool> ExpandDiv64InIR(
5734d9a16eSMatt Arsenault   "amdgpu-codegenprepare-expand-div64",
5834d9a16eSMatt Arsenault   cl::desc("Expand 64-bit division in AMDGPUCodeGenPrepare"),
5934d9a16eSMatt Arsenault   cl::ReallyHidden,
6034d9a16eSMatt Arsenault   cl::init(false));
6134d9a16eSMatt Arsenault 
629ec66860SMatt Arsenault // Leave all division operations as they are. This supersedes ExpandDiv64InIR
639ec66860SMatt Arsenault // and is used for testing the legalizer.
649ec66860SMatt Arsenault static cl::opt<bool> DisableIDivExpand(
659ec66860SMatt Arsenault   "amdgpu-codegenprepare-disable-idiv-expansion",
669ec66860SMatt Arsenault   cl::desc("Prevent expanding integer division in AMDGPUCodeGenPrepare"),
679ec66860SMatt Arsenault   cl::ReallyHidden,
689ec66860SMatt Arsenault   cl::init(false));
699ec66860SMatt Arsenault 
7086de486dSMatt Arsenault class AMDGPUCodeGenPrepare : public FunctionPass,
71a1fe17c9SMatt Arsenault                              public InstVisitor<AMDGPUCodeGenPrepare, bool> {
725bfbae5cSTom Stellard   const GCNSubtarget *ST = nullptr;
737e7268acSStanislav Mekhanoshin   AssumptionCache *AC = nullptr;
74b30e1223SMatt Arsenault   DominatorTree *DT = nullptr;
7535617ed4SNicolai Haehnle   LegacyDivergenceAnalysis *DA = nullptr;
76734bb7bbSEugene Zelenko   Module *Mod = nullptr;
7749169a96SMatt Arsenault   const DataLayout *DL = nullptr;
78734bb7bbSEugene Zelenko   bool HasUnsafeFPMath = false;
79db0ed3e4SMatt Arsenault   bool HasFP32Denormals = false;
8086de486dSMatt Arsenault 
815f8f34e4SAdrian Prantl   /// Copies exact/nsw/nuw flags (if any) from binary operation \p I to
82f74fc60aSKonstantin Zhuravlyov   /// binary operation \p V.
83e14df4b2SKonstantin Zhuravlyov   ///
84f74fc60aSKonstantin Zhuravlyov   /// \returns Binary operation \p V.
85f74fc60aSKonstantin Zhuravlyov   /// \returns \p T's base element bit width.
86f74fc60aSKonstantin Zhuravlyov   unsigned getBaseElementBitWidth(const Type *T) const;
87e14df4b2SKonstantin Zhuravlyov 
88f74fc60aSKonstantin Zhuravlyov   /// \returns Equivalent 32 bit integer type for given type \p T. For example,
89f74fc60aSKonstantin Zhuravlyov   /// if \p T is i7, then i32 is returned; if \p T is <3 x i12>, then <3 x i32>
90f74fc60aSKonstantin Zhuravlyov   /// is returned.
91e14df4b2SKonstantin Zhuravlyov   Type *getI32Ty(IRBuilder<> &B, const Type *T) const;
92e14df4b2SKonstantin Zhuravlyov 
93e14df4b2SKonstantin Zhuravlyov   /// \returns True if binary operation \p I is a signed binary operation, false
94e14df4b2SKonstantin Zhuravlyov   /// otherwise.
95e14df4b2SKonstantin Zhuravlyov   bool isSigned(const BinaryOperator &I) const;
96e14df4b2SKonstantin Zhuravlyov 
97e14df4b2SKonstantin Zhuravlyov   /// \returns True if the condition of 'select' operation \p I comes from a
98e14df4b2SKonstantin Zhuravlyov   /// signed 'icmp' operation, false otherwise.
99e14df4b2SKonstantin Zhuravlyov   bool isSigned(const SelectInst &I) const;
100e14df4b2SKonstantin Zhuravlyov 
101f74fc60aSKonstantin Zhuravlyov   /// \returns True if type \p T needs to be promoted to 32 bit integer type,
102f74fc60aSKonstantin Zhuravlyov   /// false otherwise.
103f74fc60aSKonstantin Zhuravlyov   bool needsPromotionToI32(const Type *T) const;
104e14df4b2SKonstantin Zhuravlyov 
1055f8f34e4SAdrian Prantl   /// Promotes uniform binary operation \p I to equivalent 32 bit binary
106f74fc60aSKonstantin Zhuravlyov   /// operation.
107f74fc60aSKonstantin Zhuravlyov   ///
108f74fc60aSKonstantin Zhuravlyov   /// \details \p I's base element bit width must be greater than 1 and less
109f74fc60aSKonstantin Zhuravlyov   /// than or equal 16. Promotion is done by sign or zero extending operands to
110f74fc60aSKonstantin Zhuravlyov   /// 32 bits, replacing \p I with equivalent 32 bit binary operation, and
111f74fc60aSKonstantin Zhuravlyov   /// truncating the result of 32 bit binary operation back to \p I's original
112f74fc60aSKonstantin Zhuravlyov   /// type. Division operation is not promoted.
113f74fc60aSKonstantin Zhuravlyov   ///
114f74fc60aSKonstantin Zhuravlyov   /// \returns True if \p I is promoted to equivalent 32 bit binary operation,
115f74fc60aSKonstantin Zhuravlyov   /// false otherwise.
116f74fc60aSKonstantin Zhuravlyov   bool promoteUniformOpToI32(BinaryOperator &I) const;
117f74fc60aSKonstantin Zhuravlyov 
1185f8f34e4SAdrian Prantl   /// Promotes uniform 'icmp' operation \p I to 32 bit 'icmp' operation.
119f74fc60aSKonstantin Zhuravlyov   ///
120f74fc60aSKonstantin Zhuravlyov   /// \details \p I's base element bit width must be greater than 1 and less
121f74fc60aSKonstantin Zhuravlyov   /// than or equal 16. Promotion is done by sign or zero extending operands to
122f74fc60aSKonstantin Zhuravlyov   /// 32 bits, and replacing \p I with 32 bit 'icmp' operation.
123e14df4b2SKonstantin Zhuravlyov   ///
124e14df4b2SKonstantin Zhuravlyov   /// \returns True.
125f74fc60aSKonstantin Zhuravlyov   bool promoteUniformOpToI32(ICmpInst &I) const;
126e14df4b2SKonstantin Zhuravlyov 
1275f8f34e4SAdrian Prantl   /// Promotes uniform 'select' operation \p I to 32 bit 'select'
128f74fc60aSKonstantin Zhuravlyov   /// operation.
129f74fc60aSKonstantin Zhuravlyov   ///
130f74fc60aSKonstantin Zhuravlyov   /// \details \p I's base element bit width must be greater than 1 and less
131f74fc60aSKonstantin Zhuravlyov   /// than or equal 16. Promotion is done by sign or zero extending operands to
132f74fc60aSKonstantin Zhuravlyov   /// 32 bits, replacing \p I with 32 bit 'select' operation, and truncating the
133f74fc60aSKonstantin Zhuravlyov   /// result of 32 bit 'select' operation back to \p I's original type.
134e14df4b2SKonstantin Zhuravlyov   ///
135e14df4b2SKonstantin Zhuravlyov   /// \returns True.
136f74fc60aSKonstantin Zhuravlyov   bool promoteUniformOpToI32(SelectInst &I) const;
137b4eb5d50SKonstantin Zhuravlyov 
1385f8f34e4SAdrian Prantl   /// Promotes uniform 'bitreverse' intrinsic \p I to 32 bit 'bitreverse'
139f74fc60aSKonstantin Zhuravlyov   /// intrinsic.
140f74fc60aSKonstantin Zhuravlyov   ///
141f74fc60aSKonstantin Zhuravlyov   /// \details \p I's base element bit width must be greater than 1 and less
142f74fc60aSKonstantin Zhuravlyov   /// than or equal 16. Promotion is done by zero extending the operand to 32
143f74fc60aSKonstantin Zhuravlyov   /// bits, replacing \p I with 32 bit 'bitreverse' intrinsic, shifting the
144f74fc60aSKonstantin Zhuravlyov   /// result of 32 bit 'bitreverse' intrinsic to the right with zero fill (the
145f74fc60aSKonstantin Zhuravlyov   /// shift amount is 32 minus \p I's base element bit width), and truncating
146f74fc60aSKonstantin Zhuravlyov   /// the result of the shift operation back to \p I's original type.
147b4eb5d50SKonstantin Zhuravlyov   ///
148b4eb5d50SKonstantin Zhuravlyov   /// \returns True.
149f74fc60aSKonstantin Zhuravlyov   bool promoteUniformBitreverseToI32(IntrinsicInst &I) const;
15067aa18f1SStanislav Mekhanoshin 
15149169a96SMatt Arsenault 
15249169a96SMatt Arsenault   unsigned numBitsUnsigned(Value *Op, unsigned ScalarSize) const;
15349169a96SMatt Arsenault   unsigned numBitsSigned(Value *Op, unsigned ScalarSize) const;
15449169a96SMatt Arsenault 
15549169a96SMatt Arsenault   /// Replace mul instructions with llvm.amdgcn.mul.u24 or llvm.amdgcn.mul.s24.
15649169a96SMatt Arsenault   /// SelectionDAG has an issue where an and asserting the bits are known
15749169a96SMatt Arsenault   bool replaceMulWithMul24(BinaryOperator &I) const;
15849169a96SMatt Arsenault 
159bcd91778SMatt Arsenault   /// Perform same function as equivalently named function in DAGCombiner. Since
160bcd91778SMatt Arsenault   /// we expand some divisions here, we need to perform this before obscuring.
161bcd91778SMatt Arsenault   bool foldBinOpIntoSelect(BinaryOperator &I) const;
162bcd91778SMatt Arsenault 
163b30e1223SMatt Arsenault   bool divHasSpecialOptimization(BinaryOperator &I,
164b30e1223SMatt Arsenault                                  Value *Num, Value *Den) const;
16534d9a16eSMatt Arsenault   int getDivNumBits(BinaryOperator &I,
16634d9a16eSMatt Arsenault                     Value *Num, Value *Den,
16734d9a16eSMatt Arsenault                     unsigned AtLeast, bool Signed) const;
168b30e1223SMatt Arsenault 
16967aa18f1SStanislav Mekhanoshin   /// Expands 24 bit div or rem.
1707e7268acSStanislav Mekhanoshin   Value* expandDivRem24(IRBuilder<> &Builder, BinaryOperator &I,
1717e7268acSStanislav Mekhanoshin                         Value *Num, Value *Den,
17267aa18f1SStanislav Mekhanoshin                         bool IsDiv, bool IsSigned) const;
17367aa18f1SStanislav Mekhanoshin 
17434d9a16eSMatt Arsenault   Value *expandDivRem24Impl(IRBuilder<> &Builder, BinaryOperator &I,
17534d9a16eSMatt Arsenault                             Value *Num, Value *Den, unsigned NumBits,
17634d9a16eSMatt Arsenault                             bool IsDiv, bool IsSigned) const;
17734d9a16eSMatt Arsenault 
17867aa18f1SStanislav Mekhanoshin   /// Expands 32 bit div or rem.
1797e7268acSStanislav Mekhanoshin   Value* expandDivRem32(IRBuilder<> &Builder, BinaryOperator &I,
18067aa18f1SStanislav Mekhanoshin                         Value *Num, Value *Den) const;
18167aa18f1SStanislav Mekhanoshin 
18234d9a16eSMatt Arsenault   Value *shrinkDivRem64(IRBuilder<> &Builder, BinaryOperator &I,
18334d9a16eSMatt Arsenault                         Value *Num, Value *Den) const;
18434d9a16eSMatt Arsenault   void expandDivRem64(BinaryOperator &I) const;
18534d9a16eSMatt Arsenault 
1865f8f34e4SAdrian Prantl   /// Widen a scalar load.
187a126a13bSWei Ding   ///
188a126a13bSWei Ding   /// \details \p Widen scalar load for uniform, small type loads from constant
189a126a13bSWei Ding   //  memory / to a full 32-bits and then truncate the input to allow a scalar
190a126a13bSWei Ding   //  load instead of a vector load.
191a126a13bSWei Ding   //
192a126a13bSWei Ding   /// \returns True.
193a126a13bSWei Ding 
194a126a13bSWei Ding   bool canWidenScalarExtLoad(LoadInst &I) const;
195e14df4b2SKonstantin Zhuravlyov 
19686de486dSMatt Arsenault public:
19786de486dSMatt Arsenault   static char ID;
198734bb7bbSEugene Zelenko 
1998b61764cSFrancis Visoiu Mistrih   AMDGPUCodeGenPrepare() : FunctionPass(ID) {}
200a1fe17c9SMatt Arsenault 
201a1fe17c9SMatt Arsenault   bool visitFDiv(BinaryOperator &I);
2022e5dc4a1SAnshil Gandhi   bool visitXor(BinaryOperator &I);
203a1fe17c9SMatt Arsenault 
204e14df4b2SKonstantin Zhuravlyov   bool visitInstruction(Instruction &I) { return false; }
205e14df4b2SKonstantin Zhuravlyov   bool visitBinaryOperator(BinaryOperator &I);
206a126a13bSWei Ding   bool visitLoadInst(LoadInst &I);
207e14df4b2SKonstantin Zhuravlyov   bool visitICmpInst(ICmpInst &I);
208e14df4b2SKonstantin Zhuravlyov   bool visitSelectInst(SelectInst &I);
20986de486dSMatt Arsenault 
210b4eb5d50SKonstantin Zhuravlyov   bool visitIntrinsicInst(IntrinsicInst &I);
211b4eb5d50SKonstantin Zhuravlyov   bool visitBitreverseIntrinsicInst(IntrinsicInst &I);
212b4eb5d50SKonstantin Zhuravlyov 
21386de486dSMatt Arsenault   bool doInitialization(Module &M) override;
21486de486dSMatt Arsenault   bool runOnFunction(Function &F) override;
21586de486dSMatt Arsenault 
216117296c0SMehdi Amini   StringRef getPassName() const override { return "AMDGPU IR optimizations"; }
21786de486dSMatt Arsenault 
21886de486dSMatt Arsenault   void getAnalysisUsage(AnalysisUsage &AU) const override {
2197e7268acSStanislav Mekhanoshin     AU.addRequired<AssumptionCacheTracker>();
22035617ed4SNicolai Haehnle     AU.addRequired<LegacyDivergenceAnalysis>();
22165dbdc32SMatt Arsenault 
22265dbdc32SMatt Arsenault     // FIXME: Division expansion needs to preserve the dominator tree.
22365dbdc32SMatt Arsenault     if (!ExpandDiv64InIR)
22486de486dSMatt Arsenault       AU.setPreservesAll();
22586de486dSMatt Arsenault  }
22686de486dSMatt Arsenault };
22786de486dSMatt Arsenault 
228734bb7bbSEugene Zelenko } // end anonymous namespace
22986de486dSMatt Arsenault 
230f74fc60aSKonstantin Zhuravlyov unsigned AMDGPUCodeGenPrepare::getBaseElementBitWidth(const Type *T) const {
231f74fc60aSKonstantin Zhuravlyov   assert(needsPromotionToI32(T) && "T does not need promotion to i32");
232e14df4b2SKonstantin Zhuravlyov 
233e14df4b2SKonstantin Zhuravlyov   if (T->isIntegerTy())
234f74fc60aSKonstantin Zhuravlyov     return T->getIntegerBitWidth();
235f74fc60aSKonstantin Zhuravlyov   return cast<VectorType>(T)->getElementType()->getIntegerBitWidth();
236e14df4b2SKonstantin Zhuravlyov }
237e14df4b2SKonstantin Zhuravlyov 
238e14df4b2SKonstantin Zhuravlyov Type *AMDGPUCodeGenPrepare::getI32Ty(IRBuilder<> &B, const Type *T) const {
239f74fc60aSKonstantin Zhuravlyov   assert(needsPromotionToI32(T) && "T does not need promotion to i32");
240e14df4b2SKonstantin Zhuravlyov 
241e14df4b2SKonstantin Zhuravlyov   if (T->isIntegerTy())
242e14df4b2SKonstantin Zhuravlyov     return B.getInt32Ty();
2433254a001SChristopher Tetreault   return FixedVectorType::get(B.getInt32Ty(), cast<FixedVectorType>(T));
244e14df4b2SKonstantin Zhuravlyov }
245e14df4b2SKonstantin Zhuravlyov 
246e14df4b2SKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::isSigned(const BinaryOperator &I) const {
247691e2e02SKonstantin Zhuravlyov   return I.getOpcode() == Instruction::AShr ||
248691e2e02SKonstantin Zhuravlyov       I.getOpcode() == Instruction::SDiv || I.getOpcode() == Instruction::SRem;
249e14df4b2SKonstantin Zhuravlyov }
250e14df4b2SKonstantin Zhuravlyov 
251e14df4b2SKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::isSigned(const SelectInst &I) const {
252e14df4b2SKonstantin Zhuravlyov   return isa<ICmpInst>(I.getOperand(0)) ?
253e14df4b2SKonstantin Zhuravlyov       cast<ICmpInst>(I.getOperand(0))->isSigned() : false;
254e14df4b2SKonstantin Zhuravlyov }
255e14df4b2SKonstantin Zhuravlyov 
256f74fc60aSKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::needsPromotionToI32(const Type *T) const {
25775e6f0b3SMatt Arsenault   if (!Widen16BitOps)
25875e6f0b3SMatt Arsenault     return false;
25975e6f0b3SMatt Arsenault 
260eb522e68SMatt Arsenault   const IntegerType *IntTy = dyn_cast<IntegerType>(T);
261eb522e68SMatt Arsenault   if (IntTy && IntTy->getBitWidth() > 1 && IntTy->getBitWidth() <= 16)
262f74fc60aSKonstantin Zhuravlyov     return true;
263eb522e68SMatt Arsenault 
264eb522e68SMatt Arsenault   if (const VectorType *VT = dyn_cast<VectorType>(T)) {
265eb522e68SMatt Arsenault     // TODO: The set of packed operations is more limited, so may want to
266eb522e68SMatt Arsenault     // promote some anyway.
267eb522e68SMatt Arsenault     if (ST->hasVOP3PInsts())
268f74fc60aSKonstantin Zhuravlyov       return false;
269eb522e68SMatt Arsenault 
270eb522e68SMatt Arsenault     return needsPromotionToI32(VT->getElementType());
271eb522e68SMatt Arsenault   }
272eb522e68SMatt Arsenault 
273eb522e68SMatt Arsenault   return false;
274f74fc60aSKonstantin Zhuravlyov }
275e14df4b2SKonstantin Zhuravlyov 
276d59e6404SMatt Arsenault // Return true if the op promoted to i32 should have nsw set.
277d59e6404SMatt Arsenault static bool promotedOpIsNSW(const Instruction &I) {
278d59e6404SMatt Arsenault   switch (I.getOpcode()) {
279d59e6404SMatt Arsenault   case Instruction::Shl:
280d59e6404SMatt Arsenault   case Instruction::Add:
281d59e6404SMatt Arsenault   case Instruction::Sub:
282d59e6404SMatt Arsenault     return true;
283d59e6404SMatt Arsenault   case Instruction::Mul:
284d59e6404SMatt Arsenault     return I.hasNoUnsignedWrap();
285d59e6404SMatt Arsenault   default:
286d59e6404SMatt Arsenault     return false;
287d59e6404SMatt Arsenault   }
288d59e6404SMatt Arsenault }
289d59e6404SMatt Arsenault 
290d59e6404SMatt Arsenault // Return true if the op promoted to i32 should have nuw set.
291d59e6404SMatt Arsenault static bool promotedOpIsNUW(const Instruction &I) {
292d59e6404SMatt Arsenault   switch (I.getOpcode()) {
293d59e6404SMatt Arsenault   case Instruction::Shl:
294d59e6404SMatt Arsenault   case Instruction::Add:
295d59e6404SMatt Arsenault   case Instruction::Mul:
296d59e6404SMatt Arsenault     return true;
297d59e6404SMatt Arsenault   case Instruction::Sub:
298d59e6404SMatt Arsenault     return I.hasNoUnsignedWrap();
299d59e6404SMatt Arsenault   default:
300d59e6404SMatt Arsenault     return false;
301d59e6404SMatt Arsenault   }
302d59e6404SMatt Arsenault }
303d59e6404SMatt Arsenault 
304a126a13bSWei Ding bool AMDGPUCodeGenPrepare::canWidenScalarExtLoad(LoadInst &I) const {
305a126a13bSWei Ding   Type *Ty = I.getType();
306a126a13bSWei Ding   const DataLayout &DL = Mod->getDataLayout();
307a126a13bSWei Ding   int TySize = DL.getTypeSizeInBits(Ty);
30852911428SGuillaume Chatelet   Align Alignment = DL.getValueOrABITypeAlignment(I.getAlign(), Ty);
309a126a13bSWei Ding 
31052911428SGuillaume Chatelet   return I.isSimple() && TySize < 32 && Alignment >= 4 && DA->isUniform(&I);
311a126a13bSWei Ding }
312a126a13bSWei Ding 
313f74fc60aSKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::promoteUniformOpToI32(BinaryOperator &I) const {
314f74fc60aSKonstantin Zhuravlyov   assert(needsPromotionToI32(I.getType()) &&
315f74fc60aSKonstantin Zhuravlyov          "I does not need promotion to i32");
316f74fc60aSKonstantin Zhuravlyov 
317f74fc60aSKonstantin Zhuravlyov   if (I.getOpcode() == Instruction::SDiv ||
31867aa18f1SStanislav Mekhanoshin       I.getOpcode() == Instruction::UDiv ||
31967aa18f1SStanislav Mekhanoshin       I.getOpcode() == Instruction::SRem ||
32067aa18f1SStanislav Mekhanoshin       I.getOpcode() == Instruction::URem)
321e14df4b2SKonstantin Zhuravlyov     return false;
322e14df4b2SKonstantin Zhuravlyov 
323e14df4b2SKonstantin Zhuravlyov   IRBuilder<> Builder(&I);
324e14df4b2SKonstantin Zhuravlyov   Builder.SetCurrentDebugLocation(I.getDebugLoc());
325e14df4b2SKonstantin Zhuravlyov 
326e14df4b2SKonstantin Zhuravlyov   Type *I32Ty = getI32Ty(Builder, I.getType());
327e14df4b2SKonstantin Zhuravlyov   Value *ExtOp0 = nullptr;
328e14df4b2SKonstantin Zhuravlyov   Value *ExtOp1 = nullptr;
329e14df4b2SKonstantin Zhuravlyov   Value *ExtRes = nullptr;
330e14df4b2SKonstantin Zhuravlyov   Value *TruncRes = nullptr;
331e14df4b2SKonstantin Zhuravlyov 
332e14df4b2SKonstantin Zhuravlyov   if (isSigned(I)) {
333e14df4b2SKonstantin Zhuravlyov     ExtOp0 = Builder.CreateSExt(I.getOperand(0), I32Ty);
334e14df4b2SKonstantin Zhuravlyov     ExtOp1 = Builder.CreateSExt(I.getOperand(1), I32Ty);
335e14df4b2SKonstantin Zhuravlyov   } else {
336e14df4b2SKonstantin Zhuravlyov     ExtOp0 = Builder.CreateZExt(I.getOperand(0), I32Ty);
337e14df4b2SKonstantin Zhuravlyov     ExtOp1 = Builder.CreateZExt(I.getOperand(1), I32Ty);
338e14df4b2SKonstantin Zhuravlyov   }
339d59e6404SMatt Arsenault 
340d59e6404SMatt Arsenault   ExtRes = Builder.CreateBinOp(I.getOpcode(), ExtOp0, ExtOp1);
341d59e6404SMatt Arsenault   if (Instruction *Inst = dyn_cast<Instruction>(ExtRes)) {
342d59e6404SMatt Arsenault     if (promotedOpIsNSW(cast<Instruction>(I)))
343d59e6404SMatt Arsenault       Inst->setHasNoSignedWrap();
344d59e6404SMatt Arsenault 
345d59e6404SMatt Arsenault     if (promotedOpIsNUW(cast<Instruction>(I)))
346d59e6404SMatt Arsenault       Inst->setHasNoUnsignedWrap();
347d59e6404SMatt Arsenault 
348d59e6404SMatt Arsenault     if (const auto *ExactOp = dyn_cast<PossiblyExactOperator>(&I))
349d59e6404SMatt Arsenault       Inst->setIsExact(ExactOp->isExact());
350d59e6404SMatt Arsenault   }
351d59e6404SMatt Arsenault 
352f74fc60aSKonstantin Zhuravlyov   TruncRes = Builder.CreateTrunc(ExtRes, I.getType());
353e14df4b2SKonstantin Zhuravlyov 
354e14df4b2SKonstantin Zhuravlyov   I.replaceAllUsesWith(TruncRes);
355e14df4b2SKonstantin Zhuravlyov   I.eraseFromParent();
356e14df4b2SKonstantin Zhuravlyov 
357e14df4b2SKonstantin Zhuravlyov   return true;
358e14df4b2SKonstantin Zhuravlyov }
359e14df4b2SKonstantin Zhuravlyov 
360f74fc60aSKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::promoteUniformOpToI32(ICmpInst &I) const {
361f74fc60aSKonstantin Zhuravlyov   assert(needsPromotionToI32(I.getOperand(0)->getType()) &&
362f74fc60aSKonstantin Zhuravlyov          "I does not need promotion to i32");
363e14df4b2SKonstantin Zhuravlyov 
364e14df4b2SKonstantin Zhuravlyov   IRBuilder<> Builder(&I);
365e14df4b2SKonstantin Zhuravlyov   Builder.SetCurrentDebugLocation(I.getDebugLoc());
366e14df4b2SKonstantin Zhuravlyov 
367f74fc60aSKonstantin Zhuravlyov   Type *I32Ty = getI32Ty(Builder, I.getOperand(0)->getType());
368e14df4b2SKonstantin Zhuravlyov   Value *ExtOp0 = nullptr;
369e14df4b2SKonstantin Zhuravlyov   Value *ExtOp1 = nullptr;
370e14df4b2SKonstantin Zhuravlyov   Value *NewICmp  = nullptr;
371e14df4b2SKonstantin Zhuravlyov 
372e14df4b2SKonstantin Zhuravlyov   if (I.isSigned()) {
373f74fc60aSKonstantin Zhuravlyov     ExtOp0 = Builder.CreateSExt(I.getOperand(0), I32Ty);
374f74fc60aSKonstantin Zhuravlyov     ExtOp1 = Builder.CreateSExt(I.getOperand(1), I32Ty);
375e14df4b2SKonstantin Zhuravlyov   } else {
376f74fc60aSKonstantin Zhuravlyov     ExtOp0 = Builder.CreateZExt(I.getOperand(0), I32Ty);
377f74fc60aSKonstantin Zhuravlyov     ExtOp1 = Builder.CreateZExt(I.getOperand(1), I32Ty);
378e14df4b2SKonstantin Zhuravlyov   }
379e14df4b2SKonstantin Zhuravlyov   NewICmp = Builder.CreateICmp(I.getPredicate(), ExtOp0, ExtOp1);
380e14df4b2SKonstantin Zhuravlyov 
381e14df4b2SKonstantin Zhuravlyov   I.replaceAllUsesWith(NewICmp);
382e14df4b2SKonstantin Zhuravlyov   I.eraseFromParent();
383e14df4b2SKonstantin Zhuravlyov 
384e14df4b2SKonstantin Zhuravlyov   return true;
385e14df4b2SKonstantin Zhuravlyov }
386e14df4b2SKonstantin Zhuravlyov 
387f74fc60aSKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::promoteUniformOpToI32(SelectInst &I) const {
388f74fc60aSKonstantin Zhuravlyov   assert(needsPromotionToI32(I.getType()) &&
389f74fc60aSKonstantin Zhuravlyov          "I does not need promotion to i32");
390e14df4b2SKonstantin Zhuravlyov 
391e14df4b2SKonstantin Zhuravlyov   IRBuilder<> Builder(&I);
392e14df4b2SKonstantin Zhuravlyov   Builder.SetCurrentDebugLocation(I.getDebugLoc());
393e14df4b2SKonstantin Zhuravlyov 
394e14df4b2SKonstantin Zhuravlyov   Type *I32Ty = getI32Ty(Builder, I.getType());
395e14df4b2SKonstantin Zhuravlyov   Value *ExtOp1 = nullptr;
396e14df4b2SKonstantin Zhuravlyov   Value *ExtOp2 = nullptr;
397e14df4b2SKonstantin Zhuravlyov   Value *ExtRes = nullptr;
398e14df4b2SKonstantin Zhuravlyov   Value *TruncRes = nullptr;
399e14df4b2SKonstantin Zhuravlyov 
400e14df4b2SKonstantin Zhuravlyov   if (isSigned(I)) {
401e14df4b2SKonstantin Zhuravlyov     ExtOp1 = Builder.CreateSExt(I.getOperand(1), I32Ty);
402e14df4b2SKonstantin Zhuravlyov     ExtOp2 = Builder.CreateSExt(I.getOperand(2), I32Ty);
403e14df4b2SKonstantin Zhuravlyov   } else {
404e14df4b2SKonstantin Zhuravlyov     ExtOp1 = Builder.CreateZExt(I.getOperand(1), I32Ty);
405e14df4b2SKonstantin Zhuravlyov     ExtOp2 = Builder.CreateZExt(I.getOperand(2), I32Ty);
406e14df4b2SKonstantin Zhuravlyov   }
407e14df4b2SKonstantin Zhuravlyov   ExtRes = Builder.CreateSelect(I.getOperand(0), ExtOp1, ExtOp2);
408f74fc60aSKonstantin Zhuravlyov   TruncRes = Builder.CreateTrunc(ExtRes, I.getType());
409e14df4b2SKonstantin Zhuravlyov 
410e14df4b2SKonstantin Zhuravlyov   I.replaceAllUsesWith(TruncRes);
411e14df4b2SKonstantin Zhuravlyov   I.eraseFromParent();
412e14df4b2SKonstantin Zhuravlyov 
413e14df4b2SKonstantin Zhuravlyov   return true;
414e14df4b2SKonstantin Zhuravlyov }
415e14df4b2SKonstantin Zhuravlyov 
416f74fc60aSKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::promoteUniformBitreverseToI32(
417b4eb5d50SKonstantin Zhuravlyov     IntrinsicInst &I) const {
418f74fc60aSKonstantin Zhuravlyov   assert(I.getIntrinsicID() == Intrinsic::bitreverse &&
419f74fc60aSKonstantin Zhuravlyov          "I must be bitreverse intrinsic");
420f74fc60aSKonstantin Zhuravlyov   assert(needsPromotionToI32(I.getType()) &&
421f74fc60aSKonstantin Zhuravlyov          "I does not need promotion to i32");
422b4eb5d50SKonstantin Zhuravlyov 
423b4eb5d50SKonstantin Zhuravlyov   IRBuilder<> Builder(&I);
424b4eb5d50SKonstantin Zhuravlyov   Builder.SetCurrentDebugLocation(I.getDebugLoc());
425b4eb5d50SKonstantin Zhuravlyov 
426b4eb5d50SKonstantin Zhuravlyov   Type *I32Ty = getI32Ty(Builder, I.getType());
427b4eb5d50SKonstantin Zhuravlyov   Function *I32 =
428c09e2d7eSKonstantin Zhuravlyov       Intrinsic::getDeclaration(Mod, Intrinsic::bitreverse, { I32Ty });
429b4eb5d50SKonstantin Zhuravlyov   Value *ExtOp = Builder.CreateZExt(I.getOperand(0), I32Ty);
430b4eb5d50SKonstantin Zhuravlyov   Value *ExtRes = Builder.CreateCall(I32, { ExtOp });
431f74fc60aSKonstantin Zhuravlyov   Value *LShrOp =
432f74fc60aSKonstantin Zhuravlyov       Builder.CreateLShr(ExtRes, 32 - getBaseElementBitWidth(I.getType()));
433b4eb5d50SKonstantin Zhuravlyov   Value *TruncRes =
434f74fc60aSKonstantin Zhuravlyov       Builder.CreateTrunc(LShrOp, I.getType());
435b4eb5d50SKonstantin Zhuravlyov 
436b4eb5d50SKonstantin Zhuravlyov   I.replaceAllUsesWith(TruncRes);
437b4eb5d50SKonstantin Zhuravlyov   I.eraseFromParent();
438b4eb5d50SKonstantin Zhuravlyov 
439b4eb5d50SKonstantin Zhuravlyov   return true;
440b4eb5d50SKonstantin Zhuravlyov }
441b4eb5d50SKonstantin Zhuravlyov 
44249169a96SMatt Arsenault unsigned AMDGPUCodeGenPrepare::numBitsUnsigned(Value *Op,
44349169a96SMatt Arsenault                                                unsigned ScalarSize) const {
44449169a96SMatt Arsenault   KnownBits Known = computeKnownBits(Op, *DL, 0, AC);
44549169a96SMatt Arsenault   return ScalarSize - Known.countMinLeadingZeros();
44649169a96SMatt Arsenault }
44749169a96SMatt Arsenault 
44849169a96SMatt Arsenault unsigned AMDGPUCodeGenPrepare::numBitsSigned(Value *Op,
44949169a96SMatt Arsenault                                              unsigned ScalarSize) const {
45049169a96SMatt Arsenault   // In order for this to be a signed 24-bit value, bit 23, must
45149169a96SMatt Arsenault   // be a sign bit.
45249169a96SMatt Arsenault   return ScalarSize - ComputeNumSignBits(Op, *DL, 0, AC);
45349169a96SMatt Arsenault }
45449169a96SMatt Arsenault 
45549169a96SMatt Arsenault static void extractValues(IRBuilder<> &Builder,
45649169a96SMatt Arsenault                           SmallVectorImpl<Value *> &Values, Value *V) {
4573254a001SChristopher Tetreault   auto *VT = dyn_cast<FixedVectorType>(V->getType());
45849169a96SMatt Arsenault   if (!VT) {
45949169a96SMatt Arsenault     Values.push_back(V);
46049169a96SMatt Arsenault     return;
46149169a96SMatt Arsenault   }
46249169a96SMatt Arsenault 
46349169a96SMatt Arsenault   for (int I = 0, E = VT->getNumElements(); I != E; ++I)
46449169a96SMatt Arsenault     Values.push_back(Builder.CreateExtractElement(V, I));
46549169a96SMatt Arsenault }
46649169a96SMatt Arsenault 
46749169a96SMatt Arsenault static Value *insertValues(IRBuilder<> &Builder,
46849169a96SMatt Arsenault                            Type *Ty,
46949169a96SMatt Arsenault                            SmallVectorImpl<Value *> &Values) {
47049169a96SMatt Arsenault   if (Values.size() == 1)
47149169a96SMatt Arsenault     return Values[0];
47249169a96SMatt Arsenault 
47349169a96SMatt Arsenault   Value *NewVal = UndefValue::get(Ty);
47449169a96SMatt Arsenault   for (int I = 0, E = Values.size(); I != E; ++I)
47549169a96SMatt Arsenault     NewVal = Builder.CreateInsertElement(NewVal, Values[I], I);
47649169a96SMatt Arsenault 
47749169a96SMatt Arsenault   return NewVal;
47849169a96SMatt Arsenault }
47949169a96SMatt Arsenault 
48049169a96SMatt Arsenault bool AMDGPUCodeGenPrepare::replaceMulWithMul24(BinaryOperator &I) const {
48149169a96SMatt Arsenault   if (I.getOpcode() != Instruction::Mul)
48249169a96SMatt Arsenault     return false;
48349169a96SMatt Arsenault 
48449169a96SMatt Arsenault   Type *Ty = I.getType();
48549169a96SMatt Arsenault   unsigned Size = Ty->getScalarSizeInBits();
48649169a96SMatt Arsenault   if (Size <= 16 && ST->has16BitInsts())
48749169a96SMatt Arsenault     return false;
48849169a96SMatt Arsenault 
48949169a96SMatt Arsenault   // Prefer scalar if this could be s_mul_i32
49049169a96SMatt Arsenault   if (DA->isUniform(&I))
49149169a96SMatt Arsenault     return false;
49249169a96SMatt Arsenault 
49349169a96SMatt Arsenault   Value *LHS = I.getOperand(0);
49449169a96SMatt Arsenault   Value *RHS = I.getOperand(1);
49549169a96SMatt Arsenault   IRBuilder<> Builder(&I);
49649169a96SMatt Arsenault   Builder.SetCurrentDebugLocation(I.getDebugLoc());
49749169a96SMatt Arsenault 
49849169a96SMatt Arsenault   Intrinsic::ID IntrID = Intrinsic::not_intrinsic;
49949169a96SMatt Arsenault 
500*de303840SAbinav Puthan Purayil   unsigned LHSBits = 0, RHSBits = 0;
501*de303840SAbinav Puthan Purayil 
502*de303840SAbinav Puthan Purayil   if (ST->hasMulU24() && (LHSBits = numBitsUnsigned(LHS, Size)) <= 24 &&
503*de303840SAbinav Puthan Purayil       (RHSBits = numBitsUnsigned(RHS, Size)) <= 24) {
5040379263fSAbinav Puthan Purayil     // The mul24 instruction yields the low-order 32 bits. If the original
5050379263fSAbinav Puthan Purayil     // result and the destination is wider than 32 bits, the mul24 would
5060379263fSAbinav Puthan Purayil     // truncate the result.
507*de303840SAbinav Puthan Purayil     if (Size > 32 && LHSBits + RHSBits > 32)
508b3c9d84eSAbinav Puthan Purayil       return false;
509b3c9d84eSAbinav Puthan Purayil 
51049169a96SMatt Arsenault     IntrID = Intrinsic::amdgcn_mul_u24;
511*de303840SAbinav Puthan Purayil   } else if (ST->hasMulI24() &&
512*de303840SAbinav Puthan Purayil              (LHSBits = numBitsSigned(LHS, Size)) < 24 &&
513*de303840SAbinav Puthan Purayil              (RHSBits = numBitsSigned(RHS, Size)) < 24) {
5140379263fSAbinav Puthan Purayil     // The original result is positive if its destination is wider than 32 bits
5150379263fSAbinav Puthan Purayil     // and its highest set bit is at bit 31. Generating mul24 and sign-extending
5160379263fSAbinav Puthan Purayil     // it would yield a negative value.
517*de303840SAbinav Puthan Purayil     if (Size > 32 && LHSBits + RHSBits > 30)
518b3c9d84eSAbinav Puthan Purayil       return false;
519b3c9d84eSAbinav Puthan Purayil 
52049169a96SMatt Arsenault     IntrID = Intrinsic::amdgcn_mul_i24;
52149169a96SMatt Arsenault   } else
52249169a96SMatt Arsenault     return false;
52349169a96SMatt Arsenault 
52449169a96SMatt Arsenault   SmallVector<Value *, 4> LHSVals;
52549169a96SMatt Arsenault   SmallVector<Value *, 4> RHSVals;
52649169a96SMatt Arsenault   SmallVector<Value *, 4> ResultVals;
52749169a96SMatt Arsenault   extractValues(Builder, LHSVals, LHS);
52849169a96SMatt Arsenault   extractValues(Builder, RHSVals, RHS);
52949169a96SMatt Arsenault 
53049169a96SMatt Arsenault 
53149169a96SMatt Arsenault   IntegerType *I32Ty = Builder.getInt32Ty();
53249169a96SMatt Arsenault   FunctionCallee Intrin = Intrinsic::getDeclaration(Mod, IntrID);
53349169a96SMatt Arsenault   for (int I = 0, E = LHSVals.size(); I != E; ++I) {
53449169a96SMatt Arsenault     Value *LHS, *RHS;
53549169a96SMatt Arsenault     if (IntrID == Intrinsic::amdgcn_mul_u24) {
53649169a96SMatt Arsenault       LHS = Builder.CreateZExtOrTrunc(LHSVals[I], I32Ty);
53749169a96SMatt Arsenault       RHS = Builder.CreateZExtOrTrunc(RHSVals[I], I32Ty);
53849169a96SMatt Arsenault     } else {
53949169a96SMatt Arsenault       LHS = Builder.CreateSExtOrTrunc(LHSVals[I], I32Ty);
54049169a96SMatt Arsenault       RHS = Builder.CreateSExtOrTrunc(RHSVals[I], I32Ty);
54149169a96SMatt Arsenault     }
54249169a96SMatt Arsenault 
54349169a96SMatt Arsenault     Value *Result = Builder.CreateCall(Intrin, {LHS, RHS});
54449169a96SMatt Arsenault 
54549169a96SMatt Arsenault     if (IntrID == Intrinsic::amdgcn_mul_u24) {
54649169a96SMatt Arsenault       ResultVals.push_back(Builder.CreateZExtOrTrunc(Result,
54749169a96SMatt Arsenault                                                      LHSVals[I]->getType()));
54849169a96SMatt Arsenault     } else {
54949169a96SMatt Arsenault       ResultVals.push_back(Builder.CreateSExtOrTrunc(Result,
55049169a96SMatt Arsenault                                                      LHSVals[I]->getType()));
55149169a96SMatt Arsenault     }
55249169a96SMatt Arsenault   }
55349169a96SMatt Arsenault 
554c6ab2b4fSMatt Arsenault   Value *NewVal = insertValues(Builder, Ty, ResultVals);
555c6ab2b4fSMatt Arsenault   NewVal->takeName(&I);
556c6ab2b4fSMatt Arsenault   I.replaceAllUsesWith(NewVal);
55749169a96SMatt Arsenault   I.eraseFromParent();
55849169a96SMatt Arsenault 
55949169a96SMatt Arsenault   return true;
56049169a96SMatt Arsenault }
56149169a96SMatt Arsenault 
5622fe500abSMatt Arsenault // Find a select instruction, which may have been casted. This is mostly to deal
563e93e1b62SMatt Arsenault // with cases where i16 selects were promoted here to i32.
5642fe500abSMatt Arsenault static SelectInst *findSelectThroughCast(Value *V, CastInst *&Cast) {
5652fe500abSMatt Arsenault   Cast = nullptr;
5662fe500abSMatt Arsenault   if (SelectInst *Sel = dyn_cast<SelectInst>(V))
5672fe500abSMatt Arsenault     return Sel;
5682fe500abSMatt Arsenault 
5692fe500abSMatt Arsenault   if ((Cast = dyn_cast<CastInst>(V))) {
5702fe500abSMatt Arsenault     if (SelectInst *Sel = dyn_cast<SelectInst>(Cast->getOperand(0)))
5712fe500abSMatt Arsenault       return Sel;
5722fe500abSMatt Arsenault   }
5732fe500abSMatt Arsenault 
5742fe500abSMatt Arsenault   return nullptr;
5752fe500abSMatt Arsenault }
5762fe500abSMatt Arsenault 
577bcd91778SMatt Arsenault bool AMDGPUCodeGenPrepare::foldBinOpIntoSelect(BinaryOperator &BO) const {
578bcd91778SMatt Arsenault   // Don't do this unless the old select is going away. We want to eliminate the
579bcd91778SMatt Arsenault   // binary operator, not replace a binop with a select.
580bcd91778SMatt Arsenault   int SelOpNo = 0;
5812fe500abSMatt Arsenault 
5822fe500abSMatt Arsenault   CastInst *CastOp;
5832fe500abSMatt Arsenault 
584dfec7022SMatt Arsenault   // TODO: Should probably try to handle some cases with multiple
585dfec7022SMatt Arsenault   // users. Duplicating the select may be profitable for division.
5862fe500abSMatt Arsenault   SelectInst *Sel = findSelectThroughCast(BO.getOperand(0), CastOp);
587bcd91778SMatt Arsenault   if (!Sel || !Sel->hasOneUse()) {
588bcd91778SMatt Arsenault     SelOpNo = 1;
5892fe500abSMatt Arsenault     Sel = findSelectThroughCast(BO.getOperand(1), CastOp);
590bcd91778SMatt Arsenault   }
591bcd91778SMatt Arsenault 
592bcd91778SMatt Arsenault   if (!Sel || !Sel->hasOneUse())
593bcd91778SMatt Arsenault     return false;
594bcd91778SMatt Arsenault 
595bcd91778SMatt Arsenault   Constant *CT = dyn_cast<Constant>(Sel->getTrueValue());
596bcd91778SMatt Arsenault   Constant *CF = dyn_cast<Constant>(Sel->getFalseValue());
597bcd91778SMatt Arsenault   Constant *CBO = dyn_cast<Constant>(BO.getOperand(SelOpNo ^ 1));
598bcd91778SMatt Arsenault   if (!CBO || !CT || !CF)
599bcd91778SMatt Arsenault     return false;
600bcd91778SMatt Arsenault 
6012fe500abSMatt Arsenault   if (CastOp) {
602dfec7022SMatt Arsenault     if (!CastOp->hasOneUse())
603dfec7022SMatt Arsenault       return false;
6042fe500abSMatt Arsenault     CT = ConstantFoldCastOperand(CastOp->getOpcode(), CT, BO.getType(), *DL);
6052fe500abSMatt Arsenault     CF = ConstantFoldCastOperand(CastOp->getOpcode(), CF, BO.getType(), *DL);
6062fe500abSMatt Arsenault   }
6072fe500abSMatt Arsenault 
608bcd91778SMatt Arsenault   // TODO: Handle special 0/-1 cases DAG combine does, although we only really
609bcd91778SMatt Arsenault   // need to handle divisions here.
610bcd91778SMatt Arsenault   Constant *FoldedT = SelOpNo ?
611bcd91778SMatt Arsenault     ConstantFoldBinaryOpOperands(BO.getOpcode(), CBO, CT, *DL) :
612bcd91778SMatt Arsenault     ConstantFoldBinaryOpOperands(BO.getOpcode(), CT, CBO, *DL);
613bcd91778SMatt Arsenault   if (isa<ConstantExpr>(FoldedT))
614bcd91778SMatt Arsenault     return false;
615bcd91778SMatt Arsenault 
616bcd91778SMatt Arsenault   Constant *FoldedF = SelOpNo ?
617bcd91778SMatt Arsenault     ConstantFoldBinaryOpOperands(BO.getOpcode(), CBO, CF, *DL) :
618bcd91778SMatt Arsenault     ConstantFoldBinaryOpOperands(BO.getOpcode(), CF, CBO, *DL);
619bcd91778SMatt Arsenault   if (isa<ConstantExpr>(FoldedF))
620bcd91778SMatt Arsenault     return false;
621bcd91778SMatt Arsenault 
622bcd91778SMatt Arsenault   IRBuilder<> Builder(&BO);
623bcd91778SMatt Arsenault   Builder.SetCurrentDebugLocation(BO.getDebugLoc());
624bcd91778SMatt Arsenault   if (const FPMathOperator *FPOp = dyn_cast<const FPMathOperator>(&BO))
625bcd91778SMatt Arsenault     Builder.setFastMathFlags(FPOp->getFastMathFlags());
626bcd91778SMatt Arsenault 
627bcd91778SMatt Arsenault   Value *NewSelect = Builder.CreateSelect(Sel->getCondition(),
628bcd91778SMatt Arsenault                                           FoldedT, FoldedF);
629bcd91778SMatt Arsenault   NewSelect->takeName(&BO);
630bcd91778SMatt Arsenault   BO.replaceAllUsesWith(NewSelect);
631bcd91778SMatt Arsenault   BO.eraseFromParent();
6322fe500abSMatt Arsenault   if (CastOp)
6332fe500abSMatt Arsenault     CastOp->eraseFromParent();
634bcd91778SMatt Arsenault   Sel->eraseFromParent();
635bcd91778SMatt Arsenault   return true;
636bcd91778SMatt Arsenault }
637bcd91778SMatt Arsenault 
638884acbb9SChangpeng Fang // Optimize fdiv with rcp:
63925315359SChangpeng Fang //
640884acbb9SChangpeng Fang // 1/x -> rcp(x) when rcp is sufficiently accurate or inaccurate rcp is
641884acbb9SChangpeng Fang //               allowed with unsafe-fp-math or afn.
64225315359SChangpeng Fang //
643884acbb9SChangpeng Fang // a/b -> a*rcp(b) when inaccurate rcp is allowed with unsafe-fp-math or afn.
644884acbb9SChangpeng Fang static Value *optimizeWithRcp(Value *Num, Value *Den, bool AllowInaccurateRcp,
64598ed613cSNikita Popov                               bool RcpIsAccurate, IRBuilder<> &Builder,
646884acbb9SChangpeng Fang                               Module *Mod) {
64725315359SChangpeng Fang 
648884acbb9SChangpeng Fang   if (!AllowInaccurateRcp && !RcpIsAccurate)
64925315359SChangpeng Fang     return nullptr;
65025315359SChangpeng Fang 
651884acbb9SChangpeng Fang   Type *Ty = Den->getType();
65225315359SChangpeng Fang   if (const ConstantFP *CLHS = dyn_cast<ConstantFP>(Num)) {
653884acbb9SChangpeng Fang     if (AllowInaccurateRcp || RcpIsAccurate) {
65425315359SChangpeng Fang       if (CLHS->isExactlyValue(1.0)) {
655b87e3e2dSMatt Arsenault         Function *Decl = Intrinsic::getDeclaration(
656b87e3e2dSMatt Arsenault           Mod, Intrinsic::amdgcn_rcp, Ty);
657b87e3e2dSMatt Arsenault 
65825315359SChangpeng Fang         // v_rcp_f32 and v_rsq_f32 do not support denormals, and according to
65925315359SChangpeng Fang         // the CI documentation has a worst case error of 1 ulp.
66025315359SChangpeng Fang         // OpenCL requires <= 2.5 ulp for 1.0 / x, so it should always be OK to
66125315359SChangpeng Fang         // use it as long as we aren't trying to use denormals.
66225315359SChangpeng Fang         //
66325315359SChangpeng Fang         // v_rcp_f16 and v_rsq_f16 DO support denormals.
66425315359SChangpeng Fang 
66525315359SChangpeng Fang         // NOTE: v_sqrt and v_rcp will be combined to v_rsq later. So we don't
66625315359SChangpeng Fang         //       insert rsq intrinsic here.
66725315359SChangpeng Fang 
66825315359SChangpeng Fang         // 1.0 / x -> rcp(x)
66925315359SChangpeng Fang         return Builder.CreateCall(Decl, { Den });
67025315359SChangpeng Fang       }
67125315359SChangpeng Fang 
67225315359SChangpeng Fang        // Same as for 1.0, but expand the sign out of the constant.
67325315359SChangpeng Fang       if (CLHS->isExactlyValue(-1.0)) {
674b87e3e2dSMatt Arsenault         Function *Decl = Intrinsic::getDeclaration(
675b87e3e2dSMatt Arsenault           Mod, Intrinsic::amdgcn_rcp, Ty);
676b87e3e2dSMatt Arsenault 
67725315359SChangpeng Fang          // -1.0 / x -> rcp (fneg x)
67825315359SChangpeng Fang          Value *FNeg = Builder.CreateFNeg(Den);
67925315359SChangpeng Fang          return Builder.CreateCall(Decl, { FNeg });
68025315359SChangpeng Fang        }
68125315359SChangpeng Fang     }
68225315359SChangpeng Fang   }
68325315359SChangpeng Fang 
684884acbb9SChangpeng Fang   if (AllowInaccurateRcp) {
685b87e3e2dSMatt Arsenault     Function *Decl = Intrinsic::getDeclaration(
686b87e3e2dSMatt Arsenault       Mod, Intrinsic::amdgcn_rcp, Ty);
687b87e3e2dSMatt Arsenault 
68825315359SChangpeng Fang     // Turn into multiply by the reciprocal.
68925315359SChangpeng Fang     // x / y -> x * (1.0 / y)
69025315359SChangpeng Fang     Value *Recip = Builder.CreateCall(Decl, { Den });
691884acbb9SChangpeng Fang     return Builder.CreateFMul(Num, Recip);
69225315359SChangpeng Fang   }
69325315359SChangpeng Fang   return nullptr;
69425315359SChangpeng Fang }
69525315359SChangpeng Fang 
696884acbb9SChangpeng Fang // optimize with fdiv.fast:
697884acbb9SChangpeng Fang //
698884acbb9SChangpeng Fang // a/b -> fdiv.fast(a, b) when !fpmath >= 2.5ulp with denormals flushed.
699884acbb9SChangpeng Fang //
700884acbb9SChangpeng Fang // 1/x -> fdiv.fast(1,x)  when !fpmath >= 2.5ulp.
701884acbb9SChangpeng Fang //
702884acbb9SChangpeng Fang // NOTE: optimizeWithRcp should be tried first because rcp is the preference.
703884acbb9SChangpeng Fang static Value *optimizeWithFDivFast(Value *Num, Value *Den, float ReqdAccuracy,
70498ed613cSNikita Popov                                    bool HasDenormals, IRBuilder<> &Builder,
705884acbb9SChangpeng Fang                                    Module *Mod) {
706884acbb9SChangpeng Fang   // fdiv.fast can achieve 2.5 ULP accuracy.
707884acbb9SChangpeng Fang   if (ReqdAccuracy < 2.5f)
708884acbb9SChangpeng Fang     return nullptr;
709df61be70SStanislav Mekhanoshin 
710884acbb9SChangpeng Fang   // Only have fdiv.fast for f32.
711884acbb9SChangpeng Fang   Type *Ty = Den->getType();
712884acbb9SChangpeng Fang   if (!Ty->isFloatTy())
713884acbb9SChangpeng Fang     return nullptr;
714df61be70SStanislav Mekhanoshin 
715884acbb9SChangpeng Fang   bool NumIsOne = false;
716884acbb9SChangpeng Fang   if (const ConstantFP *CNum = dyn_cast<ConstantFP>(Num)) {
717884acbb9SChangpeng Fang     if (CNum->isExactlyValue(+1.0) || CNum->isExactlyValue(-1.0))
718884acbb9SChangpeng Fang       NumIsOne = true;
719a1fe17c9SMatt Arsenault   }
720a1fe17c9SMatt Arsenault 
721884acbb9SChangpeng Fang   // fdiv does not support denormals. But 1.0/x is always fine to use it.
722884acbb9SChangpeng Fang   if (HasDenormals && !NumIsOne)
723884acbb9SChangpeng Fang     return nullptr;
72425315359SChangpeng Fang 
725884acbb9SChangpeng Fang   Function *Decl = Intrinsic::getDeclaration(Mod, Intrinsic::amdgcn_fdiv_fast);
726884acbb9SChangpeng Fang   return Builder.CreateCall(Decl, { Num, Den });
727884acbb9SChangpeng Fang }
728884acbb9SChangpeng Fang 
729884acbb9SChangpeng Fang // Optimizations is performed based on fpmath, fast math flags as well as
730884acbb9SChangpeng Fang // denormals to optimize fdiv with either rcp or fdiv.fast.
73125315359SChangpeng Fang //
732884acbb9SChangpeng Fang // With rcp:
733884acbb9SChangpeng Fang //   1/x -> rcp(x) when rcp is sufficiently accurate or inaccurate rcp is
734884acbb9SChangpeng Fang //                 allowed with unsafe-fp-math or afn.
73525315359SChangpeng Fang //
736884acbb9SChangpeng Fang //   a/b -> a*rcp(b) when inaccurate rcp is allowed with unsafe-fp-math or afn.
73725315359SChangpeng Fang //
738884acbb9SChangpeng Fang // With fdiv.fast:
739884acbb9SChangpeng Fang //   a/b -> fdiv.fast(a, b) when !fpmath >= 2.5ulp with denormals flushed.
74025315359SChangpeng Fang //
741884acbb9SChangpeng Fang //   1/x -> fdiv.fast(1,x)  when !fpmath >= 2.5ulp.
742884acbb9SChangpeng Fang //
743884acbb9SChangpeng Fang // NOTE: rcp is the preference in cases that both are legal.
744a1fe17c9SMatt Arsenault bool AMDGPUCodeGenPrepare::visitFDiv(BinaryOperator &FDiv) {
745a1fe17c9SMatt Arsenault 
74625315359SChangpeng Fang   Type *Ty = FDiv.getType()->getScalarType();
747a1fe17c9SMatt Arsenault 
7482a0db8d7SMatt Arsenault   // The f64 rcp/rsq approximations are pretty inaccurate. We can do an
7492a0db8d7SMatt Arsenault   // expansion around them in codegen.
7502a0db8d7SMatt Arsenault   if (Ty->isDoubleTy())
7512a0db8d7SMatt Arsenault     return false;
7522a0db8d7SMatt Arsenault 
75325315359SChangpeng Fang   // No intrinsic for fdiv16 if target does not support f16.
75425315359SChangpeng Fang   if (Ty->isHalfTy() && !ST->has16BitInsts())
755a1fe17c9SMatt Arsenault     return false;
756a1fe17c9SMatt Arsenault 
757a1fe17c9SMatt Arsenault   const FPMathOperator *FPOp = cast<const FPMathOperator>(&FDiv);
758884acbb9SChangpeng Fang   const float ReqdAccuracy =  FPOp->getFPAccuracy();
759a1fe17c9SMatt Arsenault 
760884acbb9SChangpeng Fang   // Inaccurate rcp is allowed with unsafe-fp-math or afn.
761a1fe17c9SMatt Arsenault   FastMathFlags FMF = FPOp->getFastMathFlags();
762884acbb9SChangpeng Fang   const bool AllowInaccurateRcp = HasUnsafeFPMath || FMF.approxFunc();
7639d7b1c9dSStanislav Mekhanoshin 
764884acbb9SChangpeng Fang   // rcp_f16 is accurate for !fpmath >= 1.0ulp.
765884acbb9SChangpeng Fang   // rcp_f32 is accurate for !fpmath >= 1.0ulp and denormals are flushed.
766884acbb9SChangpeng Fang   // rcp_f64 is never accurate.
767884acbb9SChangpeng Fang   const bool RcpIsAccurate = (Ty->isHalfTy() && ReqdAccuracy >= 1.0f) ||
768884acbb9SChangpeng Fang             (Ty->isFloatTy() && !HasFP32Denormals && ReqdAccuracy >= 1.0f);
769a1fe17c9SMatt Arsenault 
77025315359SChangpeng Fang   IRBuilder<> Builder(FDiv.getParent(), std::next(FDiv.getIterator()));
771a1fe17c9SMatt Arsenault   Builder.setFastMathFlags(FMF);
772a1fe17c9SMatt Arsenault   Builder.SetCurrentDebugLocation(FDiv.getDebugLoc());
773a1fe17c9SMatt Arsenault 
774a1fe17c9SMatt Arsenault   Value *Num = FDiv.getOperand(0);
775a1fe17c9SMatt Arsenault   Value *Den = FDiv.getOperand(1);
776a1fe17c9SMatt Arsenault 
777a1fe17c9SMatt Arsenault   Value *NewFDiv = nullptr;
7783254a001SChristopher Tetreault   if (auto *VT = dyn_cast<FixedVectorType>(FDiv.getType())) {
779a1fe17c9SMatt Arsenault     NewFDiv = UndefValue::get(VT);
780a1fe17c9SMatt Arsenault 
781a1fe17c9SMatt Arsenault     // FIXME: Doesn't do the right thing for cases where the vector is partially
782a1fe17c9SMatt Arsenault     // constant. This works when the scalarizer pass is run first.
783a1fe17c9SMatt Arsenault     for (unsigned I = 0, E = VT->getNumElements(); I != E; ++I) {
784a1fe17c9SMatt Arsenault       Value *NumEltI = Builder.CreateExtractElement(Num, I);
785a1fe17c9SMatt Arsenault       Value *DenEltI = Builder.CreateExtractElement(Den, I);
786884acbb9SChangpeng Fang       // Try rcp first.
787884acbb9SChangpeng Fang       Value *NewElt = optimizeWithRcp(NumEltI, DenEltI, AllowInaccurateRcp,
788884acbb9SChangpeng Fang                                       RcpIsAccurate, Builder, Mod);
789884acbb9SChangpeng Fang       if (!NewElt) // Try fdiv.fast.
790884acbb9SChangpeng Fang         NewElt = optimizeWithFDivFast(NumEltI, DenEltI, ReqdAccuracy,
791884acbb9SChangpeng Fang                                       HasFP32Denormals, Builder, Mod);
792884acbb9SChangpeng Fang       if (!NewElt) // Keep the original.
793884acbb9SChangpeng Fang         NewElt = Builder.CreateFDiv(NumEltI, DenEltI);
794a1fe17c9SMatt Arsenault 
795a1fe17c9SMatt Arsenault       NewFDiv = Builder.CreateInsertElement(NewFDiv, NewElt, I);
796a1fe17c9SMatt Arsenault     }
797884acbb9SChangpeng Fang   } else { // Scalar FDiv.
798884acbb9SChangpeng Fang     // Try rcp first.
799884acbb9SChangpeng Fang     NewFDiv = optimizeWithRcp(Num, Den, AllowInaccurateRcp, RcpIsAccurate,
800884acbb9SChangpeng Fang                               Builder, Mod);
801884acbb9SChangpeng Fang     if (!NewFDiv) { // Try fdiv.fast.
802884acbb9SChangpeng Fang       NewFDiv = optimizeWithFDivFast(Num, Den, ReqdAccuracy, HasFP32Denormals,
803884acbb9SChangpeng Fang                                      Builder, Mod);
80425315359SChangpeng Fang     }
805a1fe17c9SMatt Arsenault   }
806a1fe17c9SMatt Arsenault 
807a1fe17c9SMatt Arsenault   if (NewFDiv) {
808a1fe17c9SMatt Arsenault     FDiv.replaceAllUsesWith(NewFDiv);
809a1fe17c9SMatt Arsenault     NewFDiv->takeName(&FDiv);
810a1fe17c9SMatt Arsenault     FDiv.eraseFromParent();
811a1fe17c9SMatt Arsenault   }
812a1fe17c9SMatt Arsenault 
813df61be70SStanislav Mekhanoshin   return !!NewFDiv;
814a1fe17c9SMatt Arsenault }
815a1fe17c9SMatt Arsenault 
8162e5dc4a1SAnshil Gandhi bool AMDGPUCodeGenPrepare::visitXor(BinaryOperator &I) {
8172e5dc4a1SAnshil Gandhi   // Match the Xor instruction, its type and its operands
8182e5dc4a1SAnshil Gandhi   IntrinsicInst *IntrinsicCall = dyn_cast<IntrinsicInst>(I.getOperand(0));
8192e5dc4a1SAnshil Gandhi   ConstantInt *RHS = dyn_cast<ConstantInt>(I.getOperand(1));
8202e5dc4a1SAnshil Gandhi   if (!RHS || !IntrinsicCall || RHS->getSExtValue() != -1)
8212e5dc4a1SAnshil Gandhi     return visitBinaryOperator(I);
8222e5dc4a1SAnshil Gandhi 
823dc6e8dfdSJacob Lambert   // Check if the Call is an intrinsic instruction to amdgcn_class intrinsic
8242e5dc4a1SAnshil Gandhi   // has only one use
8252e5dc4a1SAnshil Gandhi   if (IntrinsicCall->getIntrinsicID() != Intrinsic::amdgcn_class ||
8262e5dc4a1SAnshil Gandhi       !IntrinsicCall->hasOneUse())
8272e5dc4a1SAnshil Gandhi     return visitBinaryOperator(I);
8282e5dc4a1SAnshil Gandhi 
8292e5dc4a1SAnshil Gandhi   // "Not" the second argument of the intrinsic call
8302e5dc4a1SAnshil Gandhi   ConstantInt *Arg = dyn_cast<ConstantInt>(IntrinsicCall->getOperand(1));
8312e5dc4a1SAnshil Gandhi   if (!Arg)
8322e5dc4a1SAnshil Gandhi     return visitBinaryOperator(I);
8332e5dc4a1SAnshil Gandhi 
8342e5dc4a1SAnshil Gandhi   IntrinsicCall->setOperand(
8352e5dc4a1SAnshil Gandhi       1, ConstantInt::get(Arg->getType(), Arg->getZExtValue() ^ 0x3ff));
8362e5dc4a1SAnshil Gandhi   I.replaceAllUsesWith(IntrinsicCall);
8372e5dc4a1SAnshil Gandhi   I.eraseFromParent();
8382e5dc4a1SAnshil Gandhi   return true;
8392e5dc4a1SAnshil Gandhi }
8402e5dc4a1SAnshil Gandhi 
841a1fe17c9SMatt Arsenault static bool hasUnsafeFPMath(const Function &F) {
842a1fe17c9SMatt Arsenault   Attribute Attr = F.getFnAttribute("unsafe-fp-math");
843d6de1e1aSSerge Guelton   return Attr.getValueAsBool();
844a1fe17c9SMatt Arsenault }
845a1fe17c9SMatt Arsenault 
84667aa18f1SStanislav Mekhanoshin static std::pair<Value*, Value*> getMul64(IRBuilder<> &Builder,
84767aa18f1SStanislav Mekhanoshin                                           Value *LHS, Value *RHS) {
84867aa18f1SStanislav Mekhanoshin   Type *I32Ty = Builder.getInt32Ty();
84967aa18f1SStanislav Mekhanoshin   Type *I64Ty = Builder.getInt64Ty();
850e14df4b2SKonstantin Zhuravlyov 
85167aa18f1SStanislav Mekhanoshin   Value *LHS_EXT64 = Builder.CreateZExt(LHS, I64Ty);
85267aa18f1SStanislav Mekhanoshin   Value *RHS_EXT64 = Builder.CreateZExt(RHS, I64Ty);
85367aa18f1SStanislav Mekhanoshin   Value *MUL64 = Builder.CreateMul(LHS_EXT64, RHS_EXT64);
85467aa18f1SStanislav Mekhanoshin   Value *Lo = Builder.CreateTrunc(MUL64, I32Ty);
85567aa18f1SStanislav Mekhanoshin   Value *Hi = Builder.CreateLShr(MUL64, Builder.getInt64(32));
85667aa18f1SStanislav Mekhanoshin   Hi = Builder.CreateTrunc(Hi, I32Ty);
85767aa18f1SStanislav Mekhanoshin   return std::make_pair(Lo, Hi);
85867aa18f1SStanislav Mekhanoshin }
85967aa18f1SStanislav Mekhanoshin 
86067aa18f1SStanislav Mekhanoshin static Value* getMulHu(IRBuilder<> &Builder, Value *LHS, Value *RHS) {
86167aa18f1SStanislav Mekhanoshin   return getMul64(Builder, LHS, RHS).second;
86267aa18f1SStanislav Mekhanoshin }
86367aa18f1SStanislav Mekhanoshin 
86434d9a16eSMatt Arsenault /// Figure out how many bits are really needed for this ddivision. \p AtLeast is
86534d9a16eSMatt Arsenault /// an optimization hint to bypass the second ComputeNumSignBits call if we the
86634d9a16eSMatt Arsenault /// first one is insufficient. Returns -1 on failure.
86734d9a16eSMatt Arsenault int AMDGPUCodeGenPrepare::getDivNumBits(BinaryOperator &I,
86834d9a16eSMatt Arsenault                                         Value *Num, Value *Den,
86934d9a16eSMatt Arsenault                                         unsigned AtLeast, bool IsSigned) const {
87034d9a16eSMatt Arsenault   const DataLayout &DL = Mod->getDataLayout();
87134d9a16eSMatt Arsenault   unsigned LHSSignBits = ComputeNumSignBits(Num, DL, 0, AC, &I);
87234d9a16eSMatt Arsenault   if (LHSSignBits < AtLeast)
87334d9a16eSMatt Arsenault     return -1;
87434d9a16eSMatt Arsenault 
87534d9a16eSMatt Arsenault   unsigned RHSSignBits = ComputeNumSignBits(Den, DL, 0, AC, &I);
87634d9a16eSMatt Arsenault   if (RHSSignBits < AtLeast)
87734d9a16eSMatt Arsenault     return -1;
87834d9a16eSMatt Arsenault 
87934d9a16eSMatt Arsenault   unsigned SignBits = std::min(LHSSignBits, RHSSignBits);
88034d9a16eSMatt Arsenault   unsigned DivBits = Num->getType()->getScalarSizeInBits() - SignBits;
88134d9a16eSMatt Arsenault   if (IsSigned)
88234d9a16eSMatt Arsenault     ++DivBits;
88334d9a16eSMatt Arsenault   return DivBits;
88434d9a16eSMatt Arsenault }
88534d9a16eSMatt Arsenault 
88667aa18f1SStanislav Mekhanoshin // The fractional part of a float is enough to accurately represent up to
88767aa18f1SStanislav Mekhanoshin // a 24-bit signed integer.
88867aa18f1SStanislav Mekhanoshin Value *AMDGPUCodeGenPrepare::expandDivRem24(IRBuilder<> &Builder,
8897e7268acSStanislav Mekhanoshin                                             BinaryOperator &I,
89067aa18f1SStanislav Mekhanoshin                                             Value *Num, Value *Den,
89167aa18f1SStanislav Mekhanoshin                                             bool IsDiv, bool IsSigned) const {
89234d9a16eSMatt Arsenault   int DivBits = getDivNumBits(I, Num, Den, 9, IsSigned);
89334d9a16eSMatt Arsenault   if (DivBits == -1)
89467aa18f1SStanislav Mekhanoshin     return nullptr;
89534d9a16eSMatt Arsenault   return expandDivRem24Impl(Builder, I, Num, Den, DivBits, IsDiv, IsSigned);
89634d9a16eSMatt Arsenault }
89767aa18f1SStanislav Mekhanoshin 
89834d9a16eSMatt Arsenault Value *AMDGPUCodeGenPrepare::expandDivRem24Impl(IRBuilder<> &Builder,
89934d9a16eSMatt Arsenault                                                 BinaryOperator &I,
90034d9a16eSMatt Arsenault                                                 Value *Num, Value *Den,
90134d9a16eSMatt Arsenault                                                 unsigned DivBits,
90234d9a16eSMatt Arsenault                                                 bool IsDiv, bool IsSigned) const {
90367aa18f1SStanislav Mekhanoshin   Type *I32Ty = Builder.getInt32Ty();
90434d9a16eSMatt Arsenault   Num = Builder.CreateTrunc(Num, I32Ty);
90534d9a16eSMatt Arsenault   Den = Builder.CreateTrunc(Den, I32Ty);
90634d9a16eSMatt Arsenault 
90767aa18f1SStanislav Mekhanoshin   Type *F32Ty = Builder.getFloatTy();
90867aa18f1SStanislav Mekhanoshin   ConstantInt *One = Builder.getInt32(1);
90967aa18f1SStanislav Mekhanoshin   Value *JQ = One;
91067aa18f1SStanislav Mekhanoshin 
91167aa18f1SStanislav Mekhanoshin   if (IsSigned) {
91267aa18f1SStanislav Mekhanoshin     // char|short jq = ia ^ ib;
91367aa18f1SStanislav Mekhanoshin     JQ = Builder.CreateXor(Num, Den);
91467aa18f1SStanislav Mekhanoshin 
91567aa18f1SStanislav Mekhanoshin     // jq = jq >> (bitsize - 2)
91667aa18f1SStanislav Mekhanoshin     JQ = Builder.CreateAShr(JQ, Builder.getInt32(30));
91767aa18f1SStanislav Mekhanoshin 
91867aa18f1SStanislav Mekhanoshin     // jq = jq | 0x1
91967aa18f1SStanislav Mekhanoshin     JQ = Builder.CreateOr(JQ, One);
92067aa18f1SStanislav Mekhanoshin   }
92167aa18f1SStanislav Mekhanoshin 
92267aa18f1SStanislav Mekhanoshin   // int ia = (int)LHS;
92367aa18f1SStanislav Mekhanoshin   Value *IA = Num;
92467aa18f1SStanislav Mekhanoshin 
92567aa18f1SStanislav Mekhanoshin   // int ib, (int)RHS;
92667aa18f1SStanislav Mekhanoshin   Value *IB = Den;
92767aa18f1SStanislav Mekhanoshin 
92867aa18f1SStanislav Mekhanoshin   // float fa = (float)ia;
92967aa18f1SStanislav Mekhanoshin   Value *FA = IsSigned ? Builder.CreateSIToFP(IA, F32Ty)
93067aa18f1SStanislav Mekhanoshin                        : Builder.CreateUIToFP(IA, F32Ty);
93167aa18f1SStanislav Mekhanoshin 
93267aa18f1SStanislav Mekhanoshin   // float fb = (float)ib;
93367aa18f1SStanislav Mekhanoshin   Value *FB = IsSigned ? Builder.CreateSIToFP(IB,F32Ty)
93467aa18f1SStanislav Mekhanoshin                        : Builder.CreateUIToFP(IB,F32Ty);
93567aa18f1SStanislav Mekhanoshin 
93692c62582SMatt Arsenault   Function *RcpDecl = Intrinsic::getDeclaration(Mod, Intrinsic::amdgcn_rcp,
93792c62582SMatt Arsenault                                                 Builder.getFloatTy());
93892c62582SMatt Arsenault   Value *RCP = Builder.CreateCall(RcpDecl, { FB });
93967aa18f1SStanislav Mekhanoshin   Value *FQM = Builder.CreateFMul(FA, RCP);
94067aa18f1SStanislav Mekhanoshin 
94167aa18f1SStanislav Mekhanoshin   // fq = trunc(fqm);
94257f5d0a8SNeil Henning   CallInst *FQ = Builder.CreateUnaryIntrinsic(Intrinsic::trunc, FQM);
94367aa18f1SStanislav Mekhanoshin   FQ->copyFastMathFlags(Builder.getFastMathFlags());
94467aa18f1SStanislav Mekhanoshin 
94567aa18f1SStanislav Mekhanoshin   // float fqneg = -fq;
94667aa18f1SStanislav Mekhanoshin   Value *FQNeg = Builder.CreateFNeg(FQ);
94767aa18f1SStanislav Mekhanoshin 
94867aa18f1SStanislav Mekhanoshin   // float fr = mad(fqneg, fb, fa);
9499ee272f1SStanislav Mekhanoshin   auto FMAD = !ST->hasMadMacF32Insts()
9509ee272f1SStanislav Mekhanoshin                   ? Intrinsic::fma
9519ee272f1SStanislav Mekhanoshin                   : (Intrinsic::ID)Intrinsic::amdgcn_fmad_ftz;
9529ee272f1SStanislav Mekhanoshin   Value *FR = Builder.CreateIntrinsic(FMAD,
95357f5d0a8SNeil Henning                                       {FQNeg->getType()}, {FQNeg, FB, FA}, FQ);
95467aa18f1SStanislav Mekhanoshin 
95567aa18f1SStanislav Mekhanoshin   // int iq = (int)fq;
95667aa18f1SStanislav Mekhanoshin   Value *IQ = IsSigned ? Builder.CreateFPToSI(FQ, I32Ty)
95767aa18f1SStanislav Mekhanoshin                        : Builder.CreateFPToUI(FQ, I32Ty);
95867aa18f1SStanislav Mekhanoshin 
95967aa18f1SStanislav Mekhanoshin   // fr = fabs(fr);
96057f5d0a8SNeil Henning   FR = Builder.CreateUnaryIntrinsic(Intrinsic::fabs, FR, FQ);
96167aa18f1SStanislav Mekhanoshin 
96267aa18f1SStanislav Mekhanoshin   // fb = fabs(fb);
96357f5d0a8SNeil Henning   FB = Builder.CreateUnaryIntrinsic(Intrinsic::fabs, FB, FQ);
96467aa18f1SStanislav Mekhanoshin 
96567aa18f1SStanislav Mekhanoshin   // int cv = fr >= fb;
96667aa18f1SStanislav Mekhanoshin   Value *CV = Builder.CreateFCmpOGE(FR, FB);
96767aa18f1SStanislav Mekhanoshin 
96867aa18f1SStanislav Mekhanoshin   // jq = (cv ? jq : 0);
96967aa18f1SStanislav Mekhanoshin   JQ = Builder.CreateSelect(CV, JQ, Builder.getInt32(0));
97067aa18f1SStanislav Mekhanoshin 
97167aa18f1SStanislav Mekhanoshin   // dst = iq + jq;
97267aa18f1SStanislav Mekhanoshin   Value *Div = Builder.CreateAdd(IQ, JQ);
97367aa18f1SStanislav Mekhanoshin 
97467aa18f1SStanislav Mekhanoshin   Value *Res = Div;
97567aa18f1SStanislav Mekhanoshin   if (!IsDiv) {
97667aa18f1SStanislav Mekhanoshin     // Rem needs compensation, it's easier to recompute it
97767aa18f1SStanislav Mekhanoshin     Value *Rem = Builder.CreateMul(Div, Den);
97867aa18f1SStanislav Mekhanoshin     Res = Builder.CreateSub(Num, Rem);
97967aa18f1SStanislav Mekhanoshin   }
98067aa18f1SStanislav Mekhanoshin 
98134d9a16eSMatt Arsenault   if (DivBits != 0 && DivBits < 32) {
982e5823bf8SMatt Arsenault     // Extend in register from the number of bits this divide really is.
98367aa18f1SStanislav Mekhanoshin     if (IsSigned) {
98434d9a16eSMatt Arsenault       int InRegBits = 32 - DivBits;
98534d9a16eSMatt Arsenault 
98634d9a16eSMatt Arsenault       Res = Builder.CreateShl(Res, InRegBits);
98734d9a16eSMatt Arsenault       Res = Builder.CreateAShr(Res, InRegBits);
98867aa18f1SStanislav Mekhanoshin     } else {
98934d9a16eSMatt Arsenault       ConstantInt *TruncMask
99034d9a16eSMatt Arsenault         = Builder.getInt32((UINT64_C(1) << DivBits) - 1);
99167aa18f1SStanislav Mekhanoshin       Res = Builder.CreateAnd(Res, TruncMask);
99267aa18f1SStanislav Mekhanoshin     }
99334d9a16eSMatt Arsenault   }
99467aa18f1SStanislav Mekhanoshin 
99567aa18f1SStanislav Mekhanoshin   return Res;
99667aa18f1SStanislav Mekhanoshin }
99767aa18f1SStanislav Mekhanoshin 
998b30e1223SMatt Arsenault // Try to recognize special cases the DAG will emit special, better expansions
999b30e1223SMatt Arsenault // than the general expansion we do here.
1000b30e1223SMatt Arsenault 
1001b30e1223SMatt Arsenault // TODO: It would be better to just directly handle those optimizations here.
1002b30e1223SMatt Arsenault bool AMDGPUCodeGenPrepare::divHasSpecialOptimization(
1003b30e1223SMatt Arsenault   BinaryOperator &I, Value *Num, Value *Den) const {
1004b30e1223SMatt Arsenault   if (Constant *C = dyn_cast<Constant>(Den)) {
1005b30e1223SMatt Arsenault     // Arbitrary constants get a better expansion as long as a wider mulhi is
1006b30e1223SMatt Arsenault     // legal.
1007b30e1223SMatt Arsenault     if (C->getType()->getScalarSizeInBits() <= 32)
1008b30e1223SMatt Arsenault       return true;
1009b30e1223SMatt Arsenault 
1010b30e1223SMatt Arsenault     // TODO: Sdiv check for not exact for some reason.
1011b30e1223SMatt Arsenault 
1012b30e1223SMatt Arsenault     // If there's no wider mulhi, there's only a better expansion for powers of
1013b30e1223SMatt Arsenault     // two.
1014b30e1223SMatt Arsenault     // TODO: Should really know for each vector element.
1015b30e1223SMatt Arsenault     if (isKnownToBeAPowerOfTwo(C, *DL, true, 0, AC, &I, DT))
1016b30e1223SMatt Arsenault       return true;
1017b30e1223SMatt Arsenault 
1018b30e1223SMatt Arsenault     return false;
1019b30e1223SMatt Arsenault   }
1020b30e1223SMatt Arsenault 
1021b30e1223SMatt Arsenault   if (BinaryOperator *BinOpDen = dyn_cast<BinaryOperator>(Den)) {
1022b30e1223SMatt Arsenault     // fold (udiv x, (shl c, y)) -> x >>u (log2(c)+y) iff c is power of 2
1023b30e1223SMatt Arsenault     if (BinOpDen->getOpcode() == Instruction::Shl &&
1024b30e1223SMatt Arsenault         isa<Constant>(BinOpDen->getOperand(0)) &&
1025b30e1223SMatt Arsenault         isKnownToBeAPowerOfTwo(BinOpDen->getOperand(0), *DL, true,
1026b30e1223SMatt Arsenault                                0, AC, &I, DT)) {
1027b30e1223SMatt Arsenault       return true;
1028b30e1223SMatt Arsenault     }
1029b30e1223SMatt Arsenault   }
1030b30e1223SMatt Arsenault 
1031b30e1223SMatt Arsenault   return false;
1032b30e1223SMatt Arsenault }
1033b30e1223SMatt Arsenault 
10345fa87ec0SNikita Popov static Value *getSign32(Value *V, IRBuilder<> &Builder, const DataLayout *DL) {
10355fa87ec0SNikita Popov   // Check whether the sign can be determined statically.
10365fa87ec0SNikita Popov   KnownBits Known = computeKnownBits(V, *DL);
10375fa87ec0SNikita Popov   if (Known.isNegative())
10385fa87ec0SNikita Popov     return Constant::getAllOnesValue(V->getType());
10395fa87ec0SNikita Popov   if (Known.isNonNegative())
10405fa87ec0SNikita Popov     return Constant::getNullValue(V->getType());
10415fa87ec0SNikita Popov   return Builder.CreateAShr(V, Builder.getInt32(31));
10425fa87ec0SNikita Popov }
10435fa87ec0SNikita Popov 
104467aa18f1SStanislav Mekhanoshin Value *AMDGPUCodeGenPrepare::expandDivRem32(IRBuilder<> &Builder,
1045f4bd01c1SJay Foad                                             BinaryOperator &I, Value *X,
1046f4bd01c1SJay Foad                                             Value *Y) const {
10477e7268acSStanislav Mekhanoshin   Instruction::BinaryOps Opc = I.getOpcode();
104867aa18f1SStanislav Mekhanoshin   assert(Opc == Instruction::URem || Opc == Instruction::UDiv ||
104967aa18f1SStanislav Mekhanoshin          Opc == Instruction::SRem || Opc == Instruction::SDiv);
105067aa18f1SStanislav Mekhanoshin 
105167aa18f1SStanislav Mekhanoshin   FastMathFlags FMF;
105267aa18f1SStanislav Mekhanoshin   FMF.setFast();
105367aa18f1SStanislav Mekhanoshin   Builder.setFastMathFlags(FMF);
105467aa18f1SStanislav Mekhanoshin 
1055f4bd01c1SJay Foad   if (divHasSpecialOptimization(I, X, Y))
1056b30e1223SMatt Arsenault     return nullptr;  // Keep it for later optimization.
105767aa18f1SStanislav Mekhanoshin 
105867aa18f1SStanislav Mekhanoshin   bool IsDiv = Opc == Instruction::UDiv || Opc == Instruction::SDiv;
105967aa18f1SStanislav Mekhanoshin   bool IsSigned = Opc == Instruction::SRem || Opc == Instruction::SDiv;
106067aa18f1SStanislav Mekhanoshin 
1061f4bd01c1SJay Foad   Type *Ty = X->getType();
106267aa18f1SStanislav Mekhanoshin   Type *I32Ty = Builder.getInt32Ty();
106367aa18f1SStanislav Mekhanoshin   Type *F32Ty = Builder.getFloatTy();
106467aa18f1SStanislav Mekhanoshin 
106567aa18f1SStanislav Mekhanoshin   if (Ty->getScalarSizeInBits() < 32) {
106667aa18f1SStanislav Mekhanoshin     if (IsSigned) {
1067f4bd01c1SJay Foad       X = Builder.CreateSExt(X, I32Ty);
1068f4bd01c1SJay Foad       Y = Builder.CreateSExt(Y, I32Ty);
106967aa18f1SStanislav Mekhanoshin     } else {
1070f4bd01c1SJay Foad       X = Builder.CreateZExt(X, I32Ty);
1071f4bd01c1SJay Foad       Y = Builder.CreateZExt(Y, I32Ty);
107267aa18f1SStanislav Mekhanoshin     }
107367aa18f1SStanislav Mekhanoshin   }
107467aa18f1SStanislav Mekhanoshin 
1075f4bd01c1SJay Foad   if (Value *Res = expandDivRem24(Builder, I, X, Y, IsDiv, IsSigned)) {
107634d9a16eSMatt Arsenault     return IsSigned ? Builder.CreateSExtOrTrunc(Res, Ty) :
107734d9a16eSMatt Arsenault                       Builder.CreateZExtOrTrunc(Res, Ty);
107867aa18f1SStanislav Mekhanoshin   }
107967aa18f1SStanislav Mekhanoshin 
108067aa18f1SStanislav Mekhanoshin   ConstantInt *Zero = Builder.getInt32(0);
108167aa18f1SStanislav Mekhanoshin   ConstantInt *One = Builder.getInt32(1);
108267aa18f1SStanislav Mekhanoshin 
108367aa18f1SStanislav Mekhanoshin   Value *Sign = nullptr;
108467aa18f1SStanislav Mekhanoshin   if (IsSigned) {
1085f4bd01c1SJay Foad     Value *SignX = getSign32(X, Builder, DL);
1086f4bd01c1SJay Foad     Value *SignY = getSign32(Y, Builder, DL);
108767aa18f1SStanislav Mekhanoshin     // Remainder sign is the same as LHS
1088f4bd01c1SJay Foad     Sign = IsDiv ? Builder.CreateXor(SignX, SignY) : SignX;
108967aa18f1SStanislav Mekhanoshin 
1090f4bd01c1SJay Foad     X = Builder.CreateAdd(X, SignX);
1091f4bd01c1SJay Foad     Y = Builder.CreateAdd(Y, SignY);
109267aa18f1SStanislav Mekhanoshin 
1093f4bd01c1SJay Foad     X = Builder.CreateXor(X, SignX);
1094f4bd01c1SJay Foad     Y = Builder.CreateXor(Y, SignY);
109567aa18f1SStanislav Mekhanoshin   }
109667aa18f1SStanislav Mekhanoshin 
1097f4bd01c1SJay Foad   // The algorithm here is based on ideas from "Software Integer Division", Tom
1098f4bd01c1SJay Foad   // Rodeheffer, August 2008.
1099f4bd01c1SJay Foad   //
1100f4bd01c1SJay Foad   // unsigned udiv(unsigned x, unsigned y) {
1101f4bd01c1SJay Foad   //   // Initial estimate of inv(y). The constant is less than 2^32 to ensure
1102f4bd01c1SJay Foad   //   // that this is a lower bound on inv(y), even if some of the calculations
1103f4bd01c1SJay Foad   //   // round up.
1104f4bd01c1SJay Foad   //   unsigned z = (unsigned)((4294967296.0 - 512.0) * v_rcp_f32((float)y));
1105f4bd01c1SJay Foad   //
1106f4bd01c1SJay Foad   //   // One round of UNR (Unsigned integer Newton-Raphson) to improve z.
1107f4bd01c1SJay Foad   //   // Empirically this is guaranteed to give a "two-y" lower bound on
1108f4bd01c1SJay Foad   //   // inv(y).
1109f4bd01c1SJay Foad   //   z += umulh(z, -y * z);
1110f4bd01c1SJay Foad   //
1111f4bd01c1SJay Foad   //   // Quotient/remainder estimate.
1112f4bd01c1SJay Foad   //   unsigned q = umulh(x, z);
1113f4bd01c1SJay Foad   //   unsigned r = x - q * y;
1114f4bd01c1SJay Foad   //
1115f4bd01c1SJay Foad   //   // Two rounds of quotient/remainder refinement.
1116f4bd01c1SJay Foad   //   if (r >= y) {
1117f4bd01c1SJay Foad   //     ++q;
1118f4bd01c1SJay Foad   //     r -= y;
1119f4bd01c1SJay Foad   //   }
1120f4bd01c1SJay Foad   //   if (r >= y) {
1121f4bd01c1SJay Foad   //     ++q;
1122f4bd01c1SJay Foad   //     r -= y;
1123f4bd01c1SJay Foad   //   }
1124f4bd01c1SJay Foad   //
1125f4bd01c1SJay Foad   //   return q;
1126f4bd01c1SJay Foad   // }
112792c62582SMatt Arsenault 
1128f4bd01c1SJay Foad   // Initial estimate of inv(y).
1129f4bd01c1SJay Foad   Value *FloatY = Builder.CreateUIToFP(Y, F32Ty);
1130f4bd01c1SJay Foad   Function *Rcp = Intrinsic::getDeclaration(Mod, Intrinsic::amdgcn_rcp, F32Ty);
1131f4bd01c1SJay Foad   Value *RcpY = Builder.CreateCall(Rcp, {FloatY});
1132f4bd01c1SJay Foad   Constant *Scale = ConstantFP::get(F32Ty, BitsToFloat(0x4F7FFFFE));
1133f4bd01c1SJay Foad   Value *ScaledY = Builder.CreateFMul(RcpY, Scale);
1134f4bd01c1SJay Foad   Value *Z = Builder.CreateFPToUI(ScaledY, I32Ty);
113567aa18f1SStanislav Mekhanoshin 
1136f4bd01c1SJay Foad   // One round of UNR.
1137f4bd01c1SJay Foad   Value *NegY = Builder.CreateSub(Zero, Y);
1138f4bd01c1SJay Foad   Value *NegYZ = Builder.CreateMul(NegY, Z);
1139f4bd01c1SJay Foad   Z = Builder.CreateAdd(Z, getMulHu(Builder, Z, NegYZ));
114067aa18f1SStanislav Mekhanoshin 
1141f4bd01c1SJay Foad   // Quotient/remainder estimate.
1142f4bd01c1SJay Foad   Value *Q = getMulHu(Builder, X, Z);
1143f4bd01c1SJay Foad   Value *R = Builder.CreateSub(X, Builder.CreateMul(Q, Y));
114467aa18f1SStanislav Mekhanoshin 
1145f4bd01c1SJay Foad   // First quotient/remainder refinement.
1146f4bd01c1SJay Foad   Value *Cond = Builder.CreateICmpUGE(R, Y);
1147f4bd01c1SJay Foad   if (IsDiv)
1148f4bd01c1SJay Foad     Q = Builder.CreateSelect(Cond, Builder.CreateAdd(Q, One), Q);
1149f4bd01c1SJay Foad   R = Builder.CreateSelect(Cond, Builder.CreateSub(R, Y), R);
115067aa18f1SStanislav Mekhanoshin 
1151f4bd01c1SJay Foad   // Second quotient/remainder refinement.
1152f4bd01c1SJay Foad   Cond = Builder.CreateICmpUGE(R, Y);
115367aa18f1SStanislav Mekhanoshin   Value *Res;
1154f4bd01c1SJay Foad   if (IsDiv)
1155f4bd01c1SJay Foad     Res = Builder.CreateSelect(Cond, Builder.CreateAdd(Q, One), Q);
1156f4bd01c1SJay Foad   else
1157f4bd01c1SJay Foad     Res = Builder.CreateSelect(Cond, Builder.CreateSub(R, Y), R);
115867aa18f1SStanislav Mekhanoshin 
115967aa18f1SStanislav Mekhanoshin   if (IsSigned) {
116067aa18f1SStanislav Mekhanoshin     Res = Builder.CreateXor(Res, Sign);
116167aa18f1SStanislav Mekhanoshin     Res = Builder.CreateSub(Res, Sign);
116267aa18f1SStanislav Mekhanoshin   }
116367aa18f1SStanislav Mekhanoshin 
116467aa18f1SStanislav Mekhanoshin   Res = Builder.CreateTrunc(Res, Ty);
116567aa18f1SStanislav Mekhanoshin 
116667aa18f1SStanislav Mekhanoshin   return Res;
116767aa18f1SStanislav Mekhanoshin }
116867aa18f1SStanislav Mekhanoshin 
116934d9a16eSMatt Arsenault Value *AMDGPUCodeGenPrepare::shrinkDivRem64(IRBuilder<> &Builder,
117034d9a16eSMatt Arsenault                                             BinaryOperator &I,
117134d9a16eSMatt Arsenault                                             Value *Num, Value *Den) const {
117234d9a16eSMatt Arsenault   if (!ExpandDiv64InIR && divHasSpecialOptimization(I, Num, Den))
117334d9a16eSMatt Arsenault     return nullptr;  // Keep it for later optimization.
117434d9a16eSMatt Arsenault 
117534d9a16eSMatt Arsenault   Instruction::BinaryOps Opc = I.getOpcode();
117634d9a16eSMatt Arsenault 
117734d9a16eSMatt Arsenault   bool IsDiv = Opc == Instruction::SDiv || Opc == Instruction::UDiv;
117834d9a16eSMatt Arsenault   bool IsSigned = Opc == Instruction::SDiv || Opc == Instruction::SRem;
117934d9a16eSMatt Arsenault 
118034d9a16eSMatt Arsenault   int NumDivBits = getDivNumBits(I, Num, Den, 32, IsSigned);
118134d9a16eSMatt Arsenault   if (NumDivBits == -1)
118234d9a16eSMatt Arsenault     return nullptr;
118334d9a16eSMatt Arsenault 
118434d9a16eSMatt Arsenault   Value *Narrowed = nullptr;
118534d9a16eSMatt Arsenault   if (NumDivBits <= 24) {
118634d9a16eSMatt Arsenault     Narrowed = expandDivRem24Impl(Builder, I, Num, Den, NumDivBits,
118734d9a16eSMatt Arsenault                                   IsDiv, IsSigned);
118834d9a16eSMatt Arsenault   } else if (NumDivBits <= 32) {
118934d9a16eSMatt Arsenault     Narrowed = expandDivRem32(Builder, I, Num, Den);
119034d9a16eSMatt Arsenault   }
119134d9a16eSMatt Arsenault 
119234d9a16eSMatt Arsenault   if (Narrowed) {
119334d9a16eSMatt Arsenault     return IsSigned ? Builder.CreateSExt(Narrowed, Num->getType()) :
119434d9a16eSMatt Arsenault                       Builder.CreateZExt(Narrowed, Num->getType());
119534d9a16eSMatt Arsenault   }
119634d9a16eSMatt Arsenault 
119734d9a16eSMatt Arsenault   return nullptr;
119834d9a16eSMatt Arsenault }
119934d9a16eSMatt Arsenault 
120034d9a16eSMatt Arsenault void AMDGPUCodeGenPrepare::expandDivRem64(BinaryOperator &I) const {
120134d9a16eSMatt Arsenault   Instruction::BinaryOps Opc = I.getOpcode();
120234d9a16eSMatt Arsenault   // Do the general expansion.
120334d9a16eSMatt Arsenault   if (Opc == Instruction::UDiv || Opc == Instruction::SDiv) {
120434d9a16eSMatt Arsenault     expandDivisionUpTo64Bits(&I);
120534d9a16eSMatt Arsenault     return;
120634d9a16eSMatt Arsenault   }
120734d9a16eSMatt Arsenault 
120834d9a16eSMatt Arsenault   if (Opc == Instruction::URem || Opc == Instruction::SRem) {
120934d9a16eSMatt Arsenault     expandRemainderUpTo64Bits(&I);
121034d9a16eSMatt Arsenault     return;
121134d9a16eSMatt Arsenault   }
121234d9a16eSMatt Arsenault 
121334d9a16eSMatt Arsenault   llvm_unreachable("not a division");
121434d9a16eSMatt Arsenault }
121534d9a16eSMatt Arsenault 
121667aa18f1SStanislav Mekhanoshin bool AMDGPUCodeGenPrepare::visitBinaryOperator(BinaryOperator &I) {
1217bcd91778SMatt Arsenault   if (foldBinOpIntoSelect(I))
1218bcd91778SMatt Arsenault     return true;
1219bcd91778SMatt Arsenault 
1220f74fc60aSKonstantin Zhuravlyov   if (ST->has16BitInsts() && needsPromotionToI32(I.getType()) &&
122167aa18f1SStanislav Mekhanoshin       DA->isUniform(&I) && promoteUniformOpToI32(I))
122267aa18f1SStanislav Mekhanoshin     return true;
122367aa18f1SStanislav Mekhanoshin 
1224b3dd381aSMatt Arsenault   if (UseMul24Intrin && replaceMulWithMul24(I))
122549169a96SMatt Arsenault     return true;
122649169a96SMatt Arsenault 
122767aa18f1SStanislav Mekhanoshin   bool Changed = false;
122867aa18f1SStanislav Mekhanoshin   Instruction::BinaryOps Opc = I.getOpcode();
122967aa18f1SStanislav Mekhanoshin   Type *Ty = I.getType();
123067aa18f1SStanislav Mekhanoshin   Value *NewDiv = nullptr;
123134d9a16eSMatt Arsenault   unsigned ScalarSize = Ty->getScalarSizeInBits();
123234d9a16eSMatt Arsenault 
123334d9a16eSMatt Arsenault   SmallVector<BinaryOperator *, 8> Div64ToExpand;
123434d9a16eSMatt Arsenault 
123567aa18f1SStanislav Mekhanoshin   if ((Opc == Instruction::URem || Opc == Instruction::UDiv ||
123667aa18f1SStanislav Mekhanoshin        Opc == Instruction::SRem || Opc == Instruction::SDiv) &&
12379ec66860SMatt Arsenault       ScalarSize <= 64 &&
12389ec66860SMatt Arsenault       !DisableIDivExpand) {
123967aa18f1SStanislav Mekhanoshin     Value *Num = I.getOperand(0);
124067aa18f1SStanislav Mekhanoshin     Value *Den = I.getOperand(1);
124167aa18f1SStanislav Mekhanoshin     IRBuilder<> Builder(&I);
124267aa18f1SStanislav Mekhanoshin     Builder.SetCurrentDebugLocation(I.getDebugLoc());
124367aa18f1SStanislav Mekhanoshin 
12443254a001SChristopher Tetreault     if (auto *VT = dyn_cast<FixedVectorType>(Ty)) {
124567aa18f1SStanislav Mekhanoshin       NewDiv = UndefValue::get(VT);
124667aa18f1SStanislav Mekhanoshin 
12477e7268acSStanislav Mekhanoshin       for (unsigned N = 0, E = VT->getNumElements(); N != E; ++N) {
12487e7268acSStanislav Mekhanoshin         Value *NumEltN = Builder.CreateExtractElement(Num, N);
12497e7268acSStanislav Mekhanoshin         Value *DenEltN = Builder.CreateExtractElement(Den, N);
125034d9a16eSMatt Arsenault 
125134d9a16eSMatt Arsenault         Value *NewElt;
125234d9a16eSMatt Arsenault         if (ScalarSize <= 32) {
125334d9a16eSMatt Arsenault           NewElt = expandDivRem32(Builder, I, NumEltN, DenEltN);
125467aa18f1SStanislav Mekhanoshin           if (!NewElt)
12557e7268acSStanislav Mekhanoshin             NewElt = Builder.CreateBinOp(Opc, NumEltN, DenEltN);
125634d9a16eSMatt Arsenault         } else {
125734d9a16eSMatt Arsenault           // See if this 64-bit division can be shrunk to 32/24-bits before
125834d9a16eSMatt Arsenault           // producing the general expansion.
125934d9a16eSMatt Arsenault           NewElt = shrinkDivRem64(Builder, I, NumEltN, DenEltN);
126034d9a16eSMatt Arsenault           if (!NewElt) {
126134d9a16eSMatt Arsenault             // The general 64-bit expansion introduces control flow and doesn't
126234d9a16eSMatt Arsenault             // return the new value. Just insert a scalar copy and defer
126334d9a16eSMatt Arsenault             // expanding it.
126434d9a16eSMatt Arsenault             NewElt = Builder.CreateBinOp(Opc, NumEltN, DenEltN);
126534d9a16eSMatt Arsenault             Div64ToExpand.push_back(cast<BinaryOperator>(NewElt));
126634d9a16eSMatt Arsenault           }
126734d9a16eSMatt Arsenault         }
126834d9a16eSMatt Arsenault 
12697e7268acSStanislav Mekhanoshin         NewDiv = Builder.CreateInsertElement(NewDiv, NewElt, N);
127067aa18f1SStanislav Mekhanoshin       }
127167aa18f1SStanislav Mekhanoshin     } else {
127234d9a16eSMatt Arsenault       if (ScalarSize <= 32)
12737e7268acSStanislav Mekhanoshin         NewDiv = expandDivRem32(Builder, I, Num, Den);
127434d9a16eSMatt Arsenault       else {
127534d9a16eSMatt Arsenault         NewDiv = shrinkDivRem64(Builder, I, Num, Den);
127634d9a16eSMatt Arsenault         if (!NewDiv)
127734d9a16eSMatt Arsenault           Div64ToExpand.push_back(&I);
127834d9a16eSMatt Arsenault       }
127967aa18f1SStanislav Mekhanoshin     }
128067aa18f1SStanislav Mekhanoshin 
128167aa18f1SStanislav Mekhanoshin     if (NewDiv) {
128267aa18f1SStanislav Mekhanoshin       I.replaceAllUsesWith(NewDiv);
128367aa18f1SStanislav Mekhanoshin       I.eraseFromParent();
128467aa18f1SStanislav Mekhanoshin       Changed = true;
128567aa18f1SStanislav Mekhanoshin     }
128667aa18f1SStanislav Mekhanoshin   }
1287e14df4b2SKonstantin Zhuravlyov 
128834d9a16eSMatt Arsenault   if (ExpandDiv64InIR) {
128934d9a16eSMatt Arsenault     // TODO: We get much worse code in specially handled constant cases.
129034d9a16eSMatt Arsenault     for (BinaryOperator *Div : Div64ToExpand) {
129134d9a16eSMatt Arsenault       expandDivRem64(*Div);
129234d9a16eSMatt Arsenault       Changed = true;
129334d9a16eSMatt Arsenault     }
129434d9a16eSMatt Arsenault   }
129534d9a16eSMatt Arsenault 
1296e14df4b2SKonstantin Zhuravlyov   return Changed;
1297e14df4b2SKonstantin Zhuravlyov }
1298e14df4b2SKonstantin Zhuravlyov 
1299a126a13bSWei Ding bool AMDGPUCodeGenPrepare::visitLoadInst(LoadInst &I) {
130090083d30SMatt Arsenault   if (!WidenLoads)
130190083d30SMatt Arsenault     return false;
130290083d30SMatt Arsenault 
13030da6350dSMatt Arsenault   if ((I.getPointerAddressSpace() == AMDGPUAS::CONSTANT_ADDRESS ||
13040da6350dSMatt Arsenault        I.getPointerAddressSpace() == AMDGPUAS::CONSTANT_ADDRESS_32BIT) &&
1305a126a13bSWei Ding       canWidenScalarExtLoad(I)) {
1306a126a13bSWei Ding     IRBuilder<> Builder(&I);
1307a126a13bSWei Ding     Builder.SetCurrentDebugLocation(I.getDebugLoc());
1308a126a13bSWei Ding 
1309a126a13bSWei Ding     Type *I32Ty = Builder.getInt32Ty();
1310a126a13bSWei Ding     Type *PT = PointerType::get(I32Ty, I.getPointerAddressSpace());
1311a126a13bSWei Ding     Value *BitCast= Builder.CreateBitCast(I.getPointerOperand(), PT);
131214359ef1SJames Y Knight     LoadInst *WidenLoad = Builder.CreateLoad(I32Ty, BitCast);
131357e541e8SMatt Arsenault     WidenLoad->copyMetadata(I);
131457e541e8SMatt Arsenault 
131557e541e8SMatt Arsenault     // If we have range metadata, we need to convert the type, and not make
131657e541e8SMatt Arsenault     // assumptions about the high bits.
131757e541e8SMatt Arsenault     if (auto *Range = WidenLoad->getMetadata(LLVMContext::MD_range)) {
131857e541e8SMatt Arsenault       ConstantInt *Lower =
131957e541e8SMatt Arsenault         mdconst::extract<ConstantInt>(Range->getOperand(0));
132057e541e8SMatt Arsenault 
1321477b9bc9SJay Foad       if (Lower->isNullValue()) {
132257e541e8SMatt Arsenault         WidenLoad->setMetadata(LLVMContext::MD_range, nullptr);
132357e541e8SMatt Arsenault       } else {
132457e541e8SMatt Arsenault         Metadata *LowAndHigh[] = {
132557e541e8SMatt Arsenault           ConstantAsMetadata::get(ConstantInt::get(I32Ty, Lower->getValue().zext(32))),
132657e541e8SMatt Arsenault           // Don't make assumptions about the high bits.
132757e541e8SMatt Arsenault           ConstantAsMetadata::get(ConstantInt::get(I32Ty, 0))
132857e541e8SMatt Arsenault         };
132957e541e8SMatt Arsenault 
133057e541e8SMatt Arsenault         WidenLoad->setMetadata(LLVMContext::MD_range,
133157e541e8SMatt Arsenault                                MDNode::get(Mod->getContext(), LowAndHigh));
133257e541e8SMatt Arsenault       }
133357e541e8SMatt Arsenault     }
1334a126a13bSWei Ding 
1335a126a13bSWei Ding     int TySize = Mod->getDataLayout().getTypeSizeInBits(I.getType());
1336a126a13bSWei Ding     Type *IntNTy = Builder.getIntNTy(TySize);
1337a126a13bSWei Ding     Value *ValTrunc = Builder.CreateTrunc(WidenLoad, IntNTy);
1338a126a13bSWei Ding     Value *ValOrig = Builder.CreateBitCast(ValTrunc, I.getType());
1339a126a13bSWei Ding     I.replaceAllUsesWith(ValOrig);
1340a126a13bSWei Ding     I.eraseFromParent();
1341a126a13bSWei Ding     return true;
1342a126a13bSWei Ding   }
1343a126a13bSWei Ding 
1344a126a13bSWei Ding   return false;
1345a126a13bSWei Ding }
1346a126a13bSWei Ding 
1347e14df4b2SKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::visitICmpInst(ICmpInst &I) {
1348e14df4b2SKonstantin Zhuravlyov   bool Changed = false;
1349e14df4b2SKonstantin Zhuravlyov 
1350f74fc60aSKonstantin Zhuravlyov   if (ST->has16BitInsts() && needsPromotionToI32(I.getOperand(0)->getType()) &&
1351f74fc60aSKonstantin Zhuravlyov       DA->isUniform(&I))
1352f74fc60aSKonstantin Zhuravlyov     Changed |= promoteUniformOpToI32(I);
1353e14df4b2SKonstantin Zhuravlyov 
1354e14df4b2SKonstantin Zhuravlyov   return Changed;
1355e14df4b2SKonstantin Zhuravlyov }
1356e14df4b2SKonstantin Zhuravlyov 
1357e14df4b2SKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::visitSelectInst(SelectInst &I) {
1358e14df4b2SKonstantin Zhuravlyov   bool Changed = false;
1359e14df4b2SKonstantin Zhuravlyov 
1360f74fc60aSKonstantin Zhuravlyov   if (ST->has16BitInsts() && needsPromotionToI32(I.getType()) &&
1361f74fc60aSKonstantin Zhuravlyov       DA->isUniform(&I))
1362f74fc60aSKonstantin Zhuravlyov     Changed |= promoteUniformOpToI32(I);
1363b4eb5d50SKonstantin Zhuravlyov 
1364b4eb5d50SKonstantin Zhuravlyov   return Changed;
1365b4eb5d50SKonstantin Zhuravlyov }
1366b4eb5d50SKonstantin Zhuravlyov 
1367b4eb5d50SKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::visitIntrinsicInst(IntrinsicInst &I) {
1368b4eb5d50SKonstantin Zhuravlyov   switch (I.getIntrinsicID()) {
1369b4eb5d50SKonstantin Zhuravlyov   case Intrinsic::bitreverse:
1370b4eb5d50SKonstantin Zhuravlyov     return visitBitreverseIntrinsicInst(I);
1371b4eb5d50SKonstantin Zhuravlyov   default:
1372b4eb5d50SKonstantin Zhuravlyov     return false;
1373b4eb5d50SKonstantin Zhuravlyov   }
1374b4eb5d50SKonstantin Zhuravlyov }
1375b4eb5d50SKonstantin Zhuravlyov 
1376b4eb5d50SKonstantin Zhuravlyov bool AMDGPUCodeGenPrepare::visitBitreverseIntrinsicInst(IntrinsicInst &I) {
1377b4eb5d50SKonstantin Zhuravlyov   bool Changed = false;
1378b4eb5d50SKonstantin Zhuravlyov 
1379f74fc60aSKonstantin Zhuravlyov   if (ST->has16BitInsts() && needsPromotionToI32(I.getType()) &&
1380f74fc60aSKonstantin Zhuravlyov       DA->isUniform(&I))
1381f74fc60aSKonstantin Zhuravlyov     Changed |= promoteUniformBitreverseToI32(I);
1382e14df4b2SKonstantin Zhuravlyov 
1383e14df4b2SKonstantin Zhuravlyov   return Changed;
1384e14df4b2SKonstantin Zhuravlyov }
1385e14df4b2SKonstantin Zhuravlyov 
138686de486dSMatt Arsenault bool AMDGPUCodeGenPrepare::doInitialization(Module &M) {
1387a1fe17c9SMatt Arsenault   Mod = &M;
138849169a96SMatt Arsenault   DL = &Mod->getDataLayout();
138986de486dSMatt Arsenault   return false;
139086de486dSMatt Arsenault }
139186de486dSMatt Arsenault 
139286de486dSMatt Arsenault bool AMDGPUCodeGenPrepare::runOnFunction(Function &F) {
13938b61764cSFrancis Visoiu Mistrih   if (skipFunction(F))
139486de486dSMatt Arsenault     return false;
139586de486dSMatt Arsenault 
13968b61764cSFrancis Visoiu Mistrih   auto *TPC = getAnalysisIfAvailable<TargetPassConfig>();
13978b61764cSFrancis Visoiu Mistrih   if (!TPC)
13988b61764cSFrancis Visoiu Mistrih     return false;
13998b61764cSFrancis Visoiu Mistrih 
140012269ddaSMatt Arsenault   const AMDGPUTargetMachine &TM = TPC->getTM<AMDGPUTargetMachine>();
14015bfbae5cSTom Stellard   ST = &TM.getSubtarget<GCNSubtarget>(F);
14027e7268acSStanislav Mekhanoshin   AC = &getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F);
140335617ed4SNicolai Haehnle   DA = &getAnalysis<LegacyDivergenceAnalysis>();
1404b30e1223SMatt Arsenault 
1405b30e1223SMatt Arsenault   auto *DTWP = getAnalysisIfAvailable<DominatorTreeWrapperPass>();
1406b30e1223SMatt Arsenault   DT = DTWP ? &DTWP->getDomTree() : nullptr;
1407b30e1223SMatt Arsenault 
1408a1fe17c9SMatt Arsenault   HasUnsafeFPMath = hasUnsafeFPMath(F);
14095660bb6bSMatt Arsenault 
14105660bb6bSMatt Arsenault   AMDGPU::SIModeRegisterDefaults Mode(F);
14115660bb6bSMatt Arsenault   HasFP32Denormals = Mode.allFP32Denormals();
141286de486dSMatt Arsenault 
1413a1fe17c9SMatt Arsenault   bool MadeChange = false;
1414a1fe17c9SMatt Arsenault 
141534d9a16eSMatt Arsenault   Function::iterator NextBB;
141634d9a16eSMatt Arsenault   for (Function::iterator FI = F.begin(), FE = F.end(); FI != FE; FI = NextBB) {
141734d9a16eSMatt Arsenault     BasicBlock *BB = &*FI;
141834d9a16eSMatt Arsenault     NextBB = std::next(FI);
141934d9a16eSMatt Arsenault 
1420a1fe17c9SMatt Arsenault     BasicBlock::iterator Next;
142134d9a16eSMatt Arsenault     for (BasicBlock::iterator I = BB->begin(), E = BB->end(); I != E; I = Next) {
1422a1fe17c9SMatt Arsenault       Next = std::next(I);
142334d9a16eSMatt Arsenault 
1424a1fe17c9SMatt Arsenault       MadeChange |= visit(*I);
142534d9a16eSMatt Arsenault 
142634d9a16eSMatt Arsenault       if (Next != E) { // Control flow changed
142734d9a16eSMatt Arsenault         BasicBlock *NextInstBB = Next->getParent();
142834d9a16eSMatt Arsenault         if (NextInstBB != BB) {
142934d9a16eSMatt Arsenault           BB = NextInstBB;
143034d9a16eSMatt Arsenault           E = BB->end();
143134d9a16eSMatt Arsenault           FE = F.end();
143234d9a16eSMatt Arsenault         }
143334d9a16eSMatt Arsenault       }
1434a1fe17c9SMatt Arsenault     }
1435a1fe17c9SMatt Arsenault   }
1436a1fe17c9SMatt Arsenault 
1437a1fe17c9SMatt Arsenault   return MadeChange;
143886de486dSMatt Arsenault }
143986de486dSMatt Arsenault 
14408b61764cSFrancis Visoiu Mistrih INITIALIZE_PASS_BEGIN(AMDGPUCodeGenPrepare, DEBUG_TYPE,
144186de486dSMatt Arsenault                       "AMDGPU IR optimizations", false, false)
14427e7268acSStanislav Mekhanoshin INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker)
144335617ed4SNicolai Haehnle INITIALIZE_PASS_DEPENDENCY(LegacyDivergenceAnalysis)
14448b61764cSFrancis Visoiu Mistrih INITIALIZE_PASS_END(AMDGPUCodeGenPrepare, DEBUG_TYPE, "AMDGPU IR optimizations",
14458b61764cSFrancis Visoiu Mistrih                     false, false)
144686de486dSMatt Arsenault 
144786de486dSMatt Arsenault char AMDGPUCodeGenPrepare::ID = 0;
144886de486dSMatt Arsenault 
14498b61764cSFrancis Visoiu Mistrih FunctionPass *llvm::createAMDGPUCodeGenPreparePass() {
14508b61764cSFrancis Visoiu Mistrih   return new AMDGPUCodeGenPrepare();
145186de486dSMatt Arsenault }
1452