1664e354dSChandler Carruth //===- BasicTargetTransformInfo.cpp - Basic target-independent TTI impl ---===//
2664e354dSChandler Carruth //
3664e354dSChandler Carruth //                     The LLVM Compiler Infrastructure
4664e354dSChandler Carruth //
5664e354dSChandler Carruth // This file is distributed under the University of Illinois Open Source
6664e354dSChandler Carruth // License. See LICENSE.TXT for details.
7664e354dSChandler Carruth //
8664e354dSChandler Carruth //===----------------------------------------------------------------------===//
9664e354dSChandler Carruth /// \file
10664e354dSChandler Carruth /// This file provides the implementation of a basic TargetTransformInfo pass
11664e354dSChandler Carruth /// predicated on the target abstractions present in the target independent
12664e354dSChandler Carruth /// code generator. It uses these (primarily TargetLowering) to model as much
13664e354dSChandler Carruth /// of the TTI query interface as possible. It is included by most targets so
14664e354dSChandler Carruth /// that they can specialize only a small subset of the query space.
15664e354dSChandler Carruth ///
16664e354dSChandler Carruth //===----------------------------------------------------------------------===//
17664e354dSChandler Carruth 
18664e354dSChandler Carruth #define DEBUG_TYPE "basictti"
19664e354dSChandler Carruth #include "llvm/CodeGen/Passes.h"
20d3e73556SChandler Carruth #include "llvm/Analysis/TargetTransformInfo.h"
21664e354dSChandler Carruth #include "llvm/Target/TargetLowering.h"
22664e354dSChandler Carruth #include <utility>
23664e354dSChandler Carruth 
24664e354dSChandler Carruth using namespace llvm;
25664e354dSChandler Carruth 
26664e354dSChandler Carruth namespace {
27664e354dSChandler Carruth 
28664e354dSChandler Carruth class BasicTTI : public ImmutablePass, public TargetTransformInfo {
2956b31bd9SBenjamin Kramer   const TargetLoweringBase *TLI;
30664e354dSChandler Carruth 
31664e354dSChandler Carruth   /// Estimate the overhead of scalarizing an instruction. Insert and Extract
32664e354dSChandler Carruth   /// are set if the result needs to be inserted and/or extracted from vectors.
33664e354dSChandler Carruth   unsigned getScalarizationOverhead(Type *Ty, bool Insert, bool Extract) const;
34664e354dSChandler Carruth 
35664e354dSChandler Carruth public:
36664e354dSChandler Carruth   BasicTTI() : ImmutablePass(ID), TLI(0) {
37664e354dSChandler Carruth     llvm_unreachable("This pass cannot be directly constructed");
38664e354dSChandler Carruth   }
39664e354dSChandler Carruth 
4056b31bd9SBenjamin Kramer   BasicTTI(const TargetLoweringBase *TLI) : ImmutablePass(ID), TLI(TLI) {
41664e354dSChandler Carruth     initializeBasicTTIPass(*PassRegistry::getPassRegistry());
42664e354dSChandler Carruth   }
43664e354dSChandler Carruth 
44664e354dSChandler Carruth   virtual void initializePass() {
45664e354dSChandler Carruth     pushTTIStack(this);
46664e354dSChandler Carruth   }
47664e354dSChandler Carruth 
48664e354dSChandler Carruth   virtual void finalizePass() {
49664e354dSChandler Carruth     popTTIStack();
50664e354dSChandler Carruth   }
51664e354dSChandler Carruth 
52664e354dSChandler Carruth   virtual void getAnalysisUsage(AnalysisUsage &AU) const {
53664e354dSChandler Carruth     TargetTransformInfo::getAnalysisUsage(AU);
54664e354dSChandler Carruth   }
55664e354dSChandler Carruth 
56664e354dSChandler Carruth   /// Pass identification.
57664e354dSChandler Carruth   static char ID;
58664e354dSChandler Carruth 
59664e354dSChandler Carruth   /// Provide necessary pointer adjustments for the two base classes.
60664e354dSChandler Carruth   virtual void *getAdjustedAnalysisPointer(const void *ID) {
61664e354dSChandler Carruth     if (ID == &TargetTransformInfo::ID)
62664e354dSChandler Carruth       return (TargetTransformInfo*)this;
63664e354dSChandler Carruth     return this;
64664e354dSChandler Carruth   }
65664e354dSChandler Carruth 
66664e354dSChandler Carruth   /// \name Scalar TTI Implementations
67664e354dSChandler Carruth   /// @{
68664e354dSChandler Carruth 
69664e354dSChandler Carruth   virtual bool isLegalAddImmediate(int64_t imm) const;
70664e354dSChandler Carruth   virtual bool isLegalICmpImmediate(int64_t imm) const;
71664e354dSChandler Carruth   virtual bool isLegalAddressingMode(Type *Ty, GlobalValue *BaseGV,
72664e354dSChandler Carruth                                      int64_t BaseOffset, bool HasBaseReg,
73664e354dSChandler Carruth                                      int64_t Scale) const;
74664e354dSChandler Carruth   virtual bool isTruncateFree(Type *Ty1, Type *Ty2) const;
75664e354dSChandler Carruth   virtual bool isTypeLegal(Type *Ty) const;
76664e354dSChandler Carruth   virtual unsigned getJumpBufAlignment() const;
77664e354dSChandler Carruth   virtual unsigned getJumpBufSize() const;
78664e354dSChandler Carruth   virtual bool shouldBuildLookupTables() const;
79664e354dSChandler Carruth 
80664e354dSChandler Carruth   /// @}
81664e354dSChandler Carruth 
82664e354dSChandler Carruth   /// \name Vector TTI Implementations
83664e354dSChandler Carruth   /// @{
84664e354dSChandler Carruth 
85664e354dSChandler Carruth   virtual unsigned getNumberOfRegisters(bool Vector) const;
86b696c36fSNadav Rotem   virtual unsigned getMaximumUnrollFactor() const;
87b1791a75SNadav Rotem   virtual unsigned getRegisterBitWidth(bool Vector) const;
88b9773871SArnold Schwaighofer   virtual unsigned getArithmeticInstrCost(unsigned Opcode, Type *Ty,
89b9773871SArnold Schwaighofer                                           OperandValueKind,
90b9773871SArnold Schwaighofer                                           OperandValueKind) const;
91664e354dSChandler Carruth   virtual unsigned getShuffleCost(ShuffleKind Kind, Type *Tp,
92664e354dSChandler Carruth                                   int Index, Type *SubTp) const;
93664e354dSChandler Carruth   virtual unsigned getCastInstrCost(unsigned Opcode, Type *Dst,
94664e354dSChandler Carruth                                     Type *Src) const;
95664e354dSChandler Carruth   virtual unsigned getCFInstrCost(unsigned Opcode) const;
96664e354dSChandler Carruth   virtual unsigned getCmpSelInstrCost(unsigned Opcode, Type *ValTy,
97664e354dSChandler Carruth                                       Type *CondTy) const;
98664e354dSChandler Carruth   virtual unsigned getVectorInstrCost(unsigned Opcode, Type *Val,
99664e354dSChandler Carruth                                       unsigned Index) const;
100664e354dSChandler Carruth   virtual unsigned getMemoryOpCost(unsigned Opcode, Type *Src,
101664e354dSChandler Carruth                                    unsigned Alignment,
102664e354dSChandler Carruth                                    unsigned AddressSpace) const;
103664e354dSChandler Carruth   virtual unsigned getIntrinsicInstrCost(Intrinsic::ID, Type *RetTy,
104664e354dSChandler Carruth                                          ArrayRef<Type*> Tys) const;
105664e354dSChandler Carruth   virtual unsigned getNumberOfParts(Type *Tp) const;
106594fa2dcSArnold Schwaighofer   virtual unsigned getAddressComputationCost(Type *Ty) const;
107664e354dSChandler Carruth 
108664e354dSChandler Carruth   /// @}
109664e354dSChandler Carruth };
110664e354dSChandler Carruth 
111664e354dSChandler Carruth }
112664e354dSChandler Carruth 
113664e354dSChandler Carruth INITIALIZE_AG_PASS(BasicTTI, TargetTransformInfo, "basictti",
114664e354dSChandler Carruth                    "Target independent code generator's TTI", true, true, false)
115664e354dSChandler Carruth char BasicTTI::ID = 0;
116664e354dSChandler Carruth 
117664e354dSChandler Carruth ImmutablePass *
11856b31bd9SBenjamin Kramer llvm::createBasicTargetTransformInfoPass(const TargetLoweringBase *TLI) {
119664e354dSChandler Carruth   return new BasicTTI(TLI);
120664e354dSChandler Carruth }
121664e354dSChandler Carruth 
122664e354dSChandler Carruth 
123664e354dSChandler Carruth bool BasicTTI::isLegalAddImmediate(int64_t imm) const {
124664e354dSChandler Carruth   return TLI->isLegalAddImmediate(imm);
125664e354dSChandler Carruth }
126664e354dSChandler Carruth 
127664e354dSChandler Carruth bool BasicTTI::isLegalICmpImmediate(int64_t imm) const {
128664e354dSChandler Carruth   return TLI->isLegalICmpImmediate(imm);
129664e354dSChandler Carruth }
130664e354dSChandler Carruth 
131664e354dSChandler Carruth bool BasicTTI::isLegalAddressingMode(Type *Ty, GlobalValue *BaseGV,
132664e354dSChandler Carruth                                      int64_t BaseOffset, bool HasBaseReg,
133664e354dSChandler Carruth                                      int64_t Scale) const {
13456b31bd9SBenjamin Kramer   TargetLoweringBase::AddrMode AM;
135664e354dSChandler Carruth   AM.BaseGV = BaseGV;
136664e354dSChandler Carruth   AM.BaseOffs = BaseOffset;
137664e354dSChandler Carruth   AM.HasBaseReg = HasBaseReg;
138664e354dSChandler Carruth   AM.Scale = Scale;
139664e354dSChandler Carruth   return TLI->isLegalAddressingMode(AM, Ty);
140664e354dSChandler Carruth }
141664e354dSChandler Carruth 
142664e354dSChandler Carruth bool BasicTTI::isTruncateFree(Type *Ty1, Type *Ty2) const {
143664e354dSChandler Carruth   return TLI->isTruncateFree(Ty1, Ty2);
144664e354dSChandler Carruth }
145664e354dSChandler Carruth 
146664e354dSChandler Carruth bool BasicTTI::isTypeLegal(Type *Ty) const {
147664e354dSChandler Carruth   EVT T = TLI->getValueType(Ty);
148664e354dSChandler Carruth   return TLI->isTypeLegal(T);
149664e354dSChandler Carruth }
150664e354dSChandler Carruth 
151664e354dSChandler Carruth unsigned BasicTTI::getJumpBufAlignment() const {
152664e354dSChandler Carruth   return TLI->getJumpBufAlignment();
153664e354dSChandler Carruth }
154664e354dSChandler Carruth 
155664e354dSChandler Carruth unsigned BasicTTI::getJumpBufSize() const {
156664e354dSChandler Carruth   return TLI->getJumpBufSize();
157664e354dSChandler Carruth }
158664e354dSChandler Carruth 
159664e354dSChandler Carruth bool BasicTTI::shouldBuildLookupTables() const {
160664e354dSChandler Carruth   return TLI->supportJumpTables() &&
161664e354dSChandler Carruth       (TLI->isOperationLegalOrCustom(ISD::BR_JT, MVT::Other) ||
162664e354dSChandler Carruth        TLI->isOperationLegalOrCustom(ISD::BRIND, MVT::Other));
163664e354dSChandler Carruth }
164664e354dSChandler Carruth 
165664e354dSChandler Carruth //===----------------------------------------------------------------------===//
166664e354dSChandler Carruth //
167664e354dSChandler Carruth // Calls used by the vectorizers.
168664e354dSChandler Carruth //
169664e354dSChandler Carruth //===----------------------------------------------------------------------===//
170664e354dSChandler Carruth 
171664e354dSChandler Carruth unsigned BasicTTI::getScalarizationOverhead(Type *Ty, bool Insert,
172664e354dSChandler Carruth                                             bool Extract) const {
173664e354dSChandler Carruth   assert (Ty->isVectorTy() && "Can only scalarize vectors");
174664e354dSChandler Carruth   unsigned Cost = 0;
175664e354dSChandler Carruth 
176664e354dSChandler Carruth   for (int i = 0, e = Ty->getVectorNumElements(); i < e; ++i) {
177664e354dSChandler Carruth     if (Insert)
178664e354dSChandler Carruth       Cost += TopTTI->getVectorInstrCost(Instruction::InsertElement, Ty, i);
179664e354dSChandler Carruth     if (Extract)
180664e354dSChandler Carruth       Cost += TopTTI->getVectorInstrCost(Instruction::ExtractElement, Ty, i);
181664e354dSChandler Carruth   }
182664e354dSChandler Carruth 
183664e354dSChandler Carruth   return Cost;
184664e354dSChandler Carruth }
185664e354dSChandler Carruth 
186664e354dSChandler Carruth unsigned BasicTTI::getNumberOfRegisters(bool Vector) const {
187664e354dSChandler Carruth   return 1;
188664e354dSChandler Carruth }
189664e354dSChandler Carruth 
190b1791a75SNadav Rotem unsigned BasicTTI::getRegisterBitWidth(bool Vector) const {
191b1791a75SNadav Rotem   return 32;
192b1791a75SNadav Rotem }
193b1791a75SNadav Rotem 
194b696c36fSNadav Rotem unsigned BasicTTI::getMaximumUnrollFactor() const {
195b696c36fSNadav Rotem   return 1;
196b696c36fSNadav Rotem }
197b696c36fSNadav Rotem 
198b9773871SArnold Schwaighofer unsigned BasicTTI::getArithmeticInstrCost(unsigned Opcode, Type *Ty,
199b9773871SArnold Schwaighofer                                           OperandValueKind,
200b9773871SArnold Schwaighofer                                           OperandValueKind) const {
201664e354dSChandler Carruth   // Check if any of the operands are vector operands.
202664e354dSChandler Carruth   int ISD = TLI->InstructionOpcodeToISD(Opcode);
203664e354dSChandler Carruth   assert(ISD && "Invalid opcode");
204664e354dSChandler Carruth 
205664e354dSChandler Carruth   std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Ty);
206664e354dSChandler Carruth 
207*87a0af6eSNadav Rotem   bool IsFloat = Ty->getScalarType()->isFloatingPointTy();
208*87a0af6eSNadav Rotem   unsigned OpCost = (IsFloat ? 2 : 1);
209*87a0af6eSNadav Rotem 
210664e354dSChandler Carruth   if (TLI->isOperationLegalOrPromote(ISD, LT.second)) {
211664e354dSChandler Carruth     // The operation is legal. Assume it costs 1.
212664e354dSChandler Carruth     // If the type is split to multiple registers, assume that thre is some
213664e354dSChandler Carruth     // overhead to this.
214664e354dSChandler Carruth     // TODO: Once we have extract/insert subvector cost we need to use them.
215664e354dSChandler Carruth     if (LT.first > 1)
216*87a0af6eSNadav Rotem       return LT.first * 2 * OpCost;
217*87a0af6eSNadav Rotem     return LT.first * 1 * OpCost;
218664e354dSChandler Carruth   }
219664e354dSChandler Carruth 
220664e354dSChandler Carruth   if (!TLI->isOperationExpand(ISD, LT.second)) {
221664e354dSChandler Carruth     // If the operation is custom lowered then assume
222664e354dSChandler Carruth     // thare the code is twice as expensive.
223*87a0af6eSNadav Rotem     return LT.first * 2 * OpCost;
224664e354dSChandler Carruth   }
225664e354dSChandler Carruth 
226664e354dSChandler Carruth   // Else, assume that we need to scalarize this op.
227664e354dSChandler Carruth   if (Ty->isVectorTy()) {
228664e354dSChandler Carruth     unsigned Num = Ty->getVectorNumElements();
229664e354dSChandler Carruth     unsigned Cost = TopTTI->getArithmeticInstrCost(Opcode, Ty->getScalarType());
230664e354dSChandler Carruth     // return the cost of multiple scalar invocation plus the cost of inserting
231664e354dSChandler Carruth     // and extracting the values.
232664e354dSChandler Carruth     return getScalarizationOverhead(Ty, true, true) + Num * Cost;
233664e354dSChandler Carruth   }
234664e354dSChandler Carruth 
235664e354dSChandler Carruth   // We don't know anything about this scalar instruction.
236*87a0af6eSNadav Rotem   return OpCost;
237664e354dSChandler Carruth }
238664e354dSChandler Carruth 
239664e354dSChandler Carruth unsigned BasicTTI::getShuffleCost(ShuffleKind Kind, Type *Tp, int Index,
240664e354dSChandler Carruth                                   Type *SubTp) const {
241664e354dSChandler Carruth   return 1;
242664e354dSChandler Carruth }
243664e354dSChandler Carruth 
244664e354dSChandler Carruth unsigned BasicTTI::getCastInstrCost(unsigned Opcode, Type *Dst,
245664e354dSChandler Carruth                                     Type *Src) const {
246664e354dSChandler Carruth   int ISD = TLI->InstructionOpcodeToISD(Opcode);
247664e354dSChandler Carruth   assert(ISD && "Invalid opcode");
248664e354dSChandler Carruth 
249664e354dSChandler Carruth   std::pair<unsigned, MVT> SrcLT = TLI->getTypeLegalizationCost(Src);
250664e354dSChandler Carruth   std::pair<unsigned, MVT> DstLT = TLI->getTypeLegalizationCost(Dst);
251664e354dSChandler Carruth 
252e55aa3c8SNadav Rotem   // Check for NOOP conversions.
253e55aa3c8SNadav Rotem   if (SrcLT.first == DstLT.first &&
254e55aa3c8SNadav Rotem       SrcLT.second.getSizeInBits() == DstLT.second.getSizeInBits()) {
255664e354dSChandler Carruth 
256e55aa3c8SNadav Rotem       // Bitcast between types that are legalized to the same type are free.
257e55aa3c8SNadav Rotem       if (Opcode == Instruction::BitCast || Opcode == Instruction::Trunc)
258664e354dSChandler Carruth         return 0;
259e55aa3c8SNadav Rotem   }
260664e354dSChandler Carruth 
261664e354dSChandler Carruth   if (Opcode == Instruction::Trunc &&
262664e354dSChandler Carruth       TLI->isTruncateFree(SrcLT.second, DstLT.second))
263664e354dSChandler Carruth     return 0;
264664e354dSChandler Carruth 
265664e354dSChandler Carruth   if (Opcode == Instruction::ZExt &&
266664e354dSChandler Carruth       TLI->isZExtFree(SrcLT.second, DstLT.second))
267664e354dSChandler Carruth     return 0;
268664e354dSChandler Carruth 
269e55aa3c8SNadav Rotem   // If the cast is marked as legal (or promote) then assume low cost.
270e55aa3c8SNadav Rotem   if (TLI->isOperationLegalOrPromote(ISD, DstLT.second))
271e55aa3c8SNadav Rotem     return 1;
272e55aa3c8SNadav Rotem 
273e55aa3c8SNadav Rotem   // Handle scalar conversions.
274e55aa3c8SNadav Rotem   if (!Src->isVectorTy() && !Dst->isVectorTy()) {
275e55aa3c8SNadav Rotem 
276e55aa3c8SNadav Rotem     // Scalar bitcasts are usually free.
277e55aa3c8SNadav Rotem     if (Opcode == Instruction::BitCast)
278e55aa3c8SNadav Rotem       return 0;
279e55aa3c8SNadav Rotem 
280664e354dSChandler Carruth     // Just check the op cost. If the operation is legal then assume it costs 1.
281664e354dSChandler Carruth     if (!TLI->isOperationExpand(ISD, DstLT.second))
282664e354dSChandler Carruth       return  1;
283664e354dSChandler Carruth 
284664e354dSChandler Carruth     // Assume that illegal scalar instruction are expensive.
285664e354dSChandler Carruth     return 4;
286664e354dSChandler Carruth   }
287664e354dSChandler Carruth 
288664e354dSChandler Carruth   // Check vector-to-vector casts.
289664e354dSChandler Carruth   if (Dst->isVectorTy() && Src->isVectorTy()) {
290664e354dSChandler Carruth 
291664e354dSChandler Carruth     // If the cast is between same-sized registers, then the check is simple.
292664e354dSChandler Carruth     if (SrcLT.first == DstLT.first &&
293664e354dSChandler Carruth         SrcLT.second.getSizeInBits() == DstLT.second.getSizeInBits()) {
294664e354dSChandler Carruth 
295664e354dSChandler Carruth       // Assume that Zext is done using AND.
296664e354dSChandler Carruth       if (Opcode == Instruction::ZExt)
297664e354dSChandler Carruth         return 1;
298664e354dSChandler Carruth 
299664e354dSChandler Carruth       // Assume that sext is done using SHL and SRA.
300664e354dSChandler Carruth       if (Opcode == Instruction::SExt)
301664e354dSChandler Carruth         return 2;
302664e354dSChandler Carruth 
303664e354dSChandler Carruth       // Just check the op cost. If the operation is legal then assume it costs
304664e354dSChandler Carruth       // 1 and multiply by the type-legalization overhead.
305664e354dSChandler Carruth       if (!TLI->isOperationExpand(ISD, DstLT.second))
306664e354dSChandler Carruth         return SrcLT.first * 1;
307664e354dSChandler Carruth     }
308664e354dSChandler Carruth 
309664e354dSChandler Carruth     // If we are converting vectors and the operation is illegal, or
310664e354dSChandler Carruth     // if the vectors are legalized to different types, estimate the
311664e354dSChandler Carruth     // scalarization costs.
312664e354dSChandler Carruth     unsigned Num = Dst->getVectorNumElements();
313664e354dSChandler Carruth     unsigned Cost = TopTTI->getCastInstrCost(Opcode, Dst->getScalarType(),
314664e354dSChandler Carruth                                              Src->getScalarType());
315664e354dSChandler Carruth 
316664e354dSChandler Carruth     // Return the cost of multiple scalar invocation plus the cost of
317664e354dSChandler Carruth     // inserting and extracting the values.
318664e354dSChandler Carruth     return getScalarizationOverhead(Dst, true, true) + Num * Cost;
319664e354dSChandler Carruth   }
320664e354dSChandler Carruth 
321664e354dSChandler Carruth   // We already handled vector-to-vector and scalar-to-scalar conversions. This
322664e354dSChandler Carruth   // is where we handle bitcast between vectors and scalars. We need to assume
323664e354dSChandler Carruth   //  that the conversion is scalarized in one way or another.
324664e354dSChandler Carruth   if (Opcode == Instruction::BitCast)
325664e354dSChandler Carruth     // Illegal bitcasts are done by storing and loading from a stack slot.
326664e354dSChandler Carruth     return (Src->isVectorTy()? getScalarizationOverhead(Src, false, true):0) +
327664e354dSChandler Carruth            (Dst->isVectorTy()? getScalarizationOverhead(Dst, true, false):0);
328664e354dSChandler Carruth 
329664e354dSChandler Carruth   llvm_unreachable("Unhandled cast");
330664e354dSChandler Carruth  }
331664e354dSChandler Carruth 
332664e354dSChandler Carruth unsigned BasicTTI::getCFInstrCost(unsigned Opcode) const {
333664e354dSChandler Carruth   // Branches are assumed to be predicted.
334664e354dSChandler Carruth   return 0;
335664e354dSChandler Carruth }
336664e354dSChandler Carruth 
337664e354dSChandler Carruth unsigned BasicTTI::getCmpSelInstrCost(unsigned Opcode, Type *ValTy,
338664e354dSChandler Carruth                                       Type *CondTy) const {
339664e354dSChandler Carruth   int ISD = TLI->InstructionOpcodeToISD(Opcode);
340664e354dSChandler Carruth   assert(ISD && "Invalid opcode");
341664e354dSChandler Carruth 
342664e354dSChandler Carruth   // Selects on vectors are actually vector selects.
343664e354dSChandler Carruth   if (ISD == ISD::SELECT) {
344664e354dSChandler Carruth     assert(CondTy && "CondTy must exist");
345664e354dSChandler Carruth     if (CondTy->isVectorTy())
346664e354dSChandler Carruth       ISD = ISD::VSELECT;
347664e354dSChandler Carruth   }
348664e354dSChandler Carruth 
349664e354dSChandler Carruth   std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(ValTy);
350664e354dSChandler Carruth 
351664e354dSChandler Carruth   if (!TLI->isOperationExpand(ISD, LT.second)) {
352664e354dSChandler Carruth     // The operation is legal. Assume it costs 1. Multiply
353664e354dSChandler Carruth     // by the type-legalization overhead.
354664e354dSChandler Carruth     return LT.first * 1;
355664e354dSChandler Carruth   }
356664e354dSChandler Carruth 
357664e354dSChandler Carruth   // Otherwise, assume that the cast is scalarized.
358664e354dSChandler Carruth   if (ValTy->isVectorTy()) {
359664e354dSChandler Carruth     unsigned Num = ValTy->getVectorNumElements();
360664e354dSChandler Carruth     if (CondTy)
361664e354dSChandler Carruth       CondTy = CondTy->getScalarType();
362664e354dSChandler Carruth     unsigned Cost = TopTTI->getCmpSelInstrCost(Opcode, ValTy->getScalarType(),
363664e354dSChandler Carruth                                                CondTy);
364664e354dSChandler Carruth 
365664e354dSChandler Carruth     // Return the cost of multiple scalar invocation plus the cost of inserting
366664e354dSChandler Carruth     // and extracting the values.
367664e354dSChandler Carruth     return getScalarizationOverhead(ValTy, true, false) + Num * Cost;
368664e354dSChandler Carruth   }
369664e354dSChandler Carruth 
370664e354dSChandler Carruth   // Unknown scalar opcode.
371664e354dSChandler Carruth   return 1;
372664e354dSChandler Carruth }
373664e354dSChandler Carruth 
374664e354dSChandler Carruth unsigned BasicTTI::getVectorInstrCost(unsigned Opcode, Type *Val,
375664e354dSChandler Carruth                                       unsigned Index) const {
376664e354dSChandler Carruth   return 1;
377664e354dSChandler Carruth }
378664e354dSChandler Carruth 
379664e354dSChandler Carruth unsigned BasicTTI::getMemoryOpCost(unsigned Opcode, Type *Src,
380664e354dSChandler Carruth                                    unsigned Alignment,
381664e354dSChandler Carruth                                    unsigned AddressSpace) const {
382664e354dSChandler Carruth   assert(!Src->isVoidTy() && "Invalid type");
383664e354dSChandler Carruth   std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Src);
384664e354dSChandler Carruth 
385664e354dSChandler Carruth   // Assume that all loads of legal types cost 1.
386664e354dSChandler Carruth   return LT.first;
387664e354dSChandler Carruth }
388664e354dSChandler Carruth 
389f7cfac7aSBenjamin Kramer unsigned BasicTTI::getIntrinsicInstrCost(Intrinsic::ID IID, Type *RetTy,
390664e354dSChandler Carruth                                          ArrayRef<Type *> Tys) const {
391f7cfac7aSBenjamin Kramer   unsigned ISD = 0;
392f7cfac7aSBenjamin Kramer   switch (IID) {
393f7cfac7aSBenjamin Kramer   default: {
394f7cfac7aSBenjamin Kramer     // Assume that we need to scalarize this intrinsic.
395664e354dSChandler Carruth     unsigned ScalarizationCost = 0;
396664e354dSChandler Carruth     unsigned ScalarCalls = 1;
397664e354dSChandler Carruth     if (RetTy->isVectorTy()) {
398664e354dSChandler Carruth       ScalarizationCost = getScalarizationOverhead(RetTy, true, false);
399664e354dSChandler Carruth       ScalarCalls = std::max(ScalarCalls, RetTy->getVectorNumElements());
400664e354dSChandler Carruth     }
401664e354dSChandler Carruth     for (unsigned i = 0, ie = Tys.size(); i != ie; ++i) {
402664e354dSChandler Carruth       if (Tys[i]->isVectorTy()) {
403664e354dSChandler Carruth         ScalarizationCost += getScalarizationOverhead(Tys[i], false, true);
404664e354dSChandler Carruth         ScalarCalls = std::max(ScalarCalls, RetTy->getVectorNumElements());
405664e354dSChandler Carruth       }
406664e354dSChandler Carruth     }
407f7cfac7aSBenjamin Kramer 
408664e354dSChandler Carruth     return ScalarCalls + ScalarizationCost;
409664e354dSChandler Carruth   }
410f7cfac7aSBenjamin Kramer   // Look for intrinsics that can be lowered directly or turned into a scalar
411f7cfac7aSBenjamin Kramer   // intrinsic call.
412f7cfac7aSBenjamin Kramer   case Intrinsic::sqrt:    ISD = ISD::FSQRT;  break;
413f7cfac7aSBenjamin Kramer   case Intrinsic::sin:     ISD = ISD::FSIN;   break;
414f7cfac7aSBenjamin Kramer   case Intrinsic::cos:     ISD = ISD::FCOS;   break;
415f7cfac7aSBenjamin Kramer   case Intrinsic::exp:     ISD = ISD::FEXP;   break;
416f7cfac7aSBenjamin Kramer   case Intrinsic::exp2:    ISD = ISD::FEXP2;  break;
417f7cfac7aSBenjamin Kramer   case Intrinsic::log:     ISD = ISD::FLOG;   break;
418f7cfac7aSBenjamin Kramer   case Intrinsic::log10:   ISD = ISD::FLOG10; break;
419f7cfac7aSBenjamin Kramer   case Intrinsic::log2:    ISD = ISD::FLOG2;  break;
420f7cfac7aSBenjamin Kramer   case Intrinsic::fabs:    ISD = ISD::FABS;   break;
421f7cfac7aSBenjamin Kramer   case Intrinsic::floor:   ISD = ISD::FFLOOR; break;
422f7cfac7aSBenjamin Kramer   case Intrinsic::ceil:    ISD = ISD::FCEIL;  break;
423f7cfac7aSBenjamin Kramer   case Intrinsic::trunc:   ISD = ISD::FTRUNC; break;
424f7cfac7aSBenjamin Kramer   case Intrinsic::rint:    ISD = ISD::FRINT;  break;
425f7cfac7aSBenjamin Kramer   case Intrinsic::pow:     ISD = ISD::FPOW;   break;
426f7cfac7aSBenjamin Kramer   case Intrinsic::fma:     ISD = ISD::FMA;    break;
427f7cfac7aSBenjamin Kramer   case Intrinsic::fmuladd: ISD = ISD::FMA;    break; // FIXME: mul + add?
428f7cfac7aSBenjamin Kramer   }
429f7cfac7aSBenjamin Kramer 
430f7cfac7aSBenjamin Kramer   std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(RetTy);
431f7cfac7aSBenjamin Kramer 
432f7cfac7aSBenjamin Kramer   if (TLI->isOperationLegalOrPromote(ISD, LT.second)) {
433f7cfac7aSBenjamin Kramer     // The operation is legal. Assume it costs 1.
434f7cfac7aSBenjamin Kramer     // If the type is split to multiple registers, assume that thre is some
435f7cfac7aSBenjamin Kramer     // overhead to this.
436f7cfac7aSBenjamin Kramer     // TODO: Once we have extract/insert subvector cost we need to use them.
437f7cfac7aSBenjamin Kramer     if (LT.first > 1)
438f7cfac7aSBenjamin Kramer       return LT.first * 2;
439f7cfac7aSBenjamin Kramer     return LT.first * 1;
440f7cfac7aSBenjamin Kramer   }
441f7cfac7aSBenjamin Kramer 
442f7cfac7aSBenjamin Kramer   if (!TLI->isOperationExpand(ISD, LT.second)) {
443f7cfac7aSBenjamin Kramer     // If the operation is custom lowered then assume
444f7cfac7aSBenjamin Kramer     // thare the code is twice as expensive.
445f7cfac7aSBenjamin Kramer     return LT.first * 2;
446f7cfac7aSBenjamin Kramer   }
447f7cfac7aSBenjamin Kramer 
448f7cfac7aSBenjamin Kramer   // Else, assume that we need to scalarize this intrinsic. For math builtins
449f7cfac7aSBenjamin Kramer   // this will emit a costly libcall, adding call overhead and spills. Make it
450f7cfac7aSBenjamin Kramer   // very expensive.
451f7cfac7aSBenjamin Kramer   if (RetTy->isVectorTy()) {
452f7cfac7aSBenjamin Kramer     unsigned Num = RetTy->getVectorNumElements();
453f7cfac7aSBenjamin Kramer     unsigned Cost = TopTTI->getIntrinsicInstrCost(IID, RetTy->getScalarType(),
454f7cfac7aSBenjamin Kramer                                                   Tys);
455f7cfac7aSBenjamin Kramer     return 10 * Cost * Num;
456f7cfac7aSBenjamin Kramer   }
457f7cfac7aSBenjamin Kramer 
458f7cfac7aSBenjamin Kramer   // This is going to be turned into a library call, make it expensive.
459f7cfac7aSBenjamin Kramer   return 10;
460f7cfac7aSBenjamin Kramer }
461664e354dSChandler Carruth 
462664e354dSChandler Carruth unsigned BasicTTI::getNumberOfParts(Type *Tp) const {
463664e354dSChandler Carruth   std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Tp);
464664e354dSChandler Carruth   return LT.first;
465664e354dSChandler Carruth }
466594fa2dcSArnold Schwaighofer 
467594fa2dcSArnold Schwaighofer unsigned BasicTTI::getAddressComputationCost(Type *Ty) const {
468594fa2dcSArnold Schwaighofer   return 0;
469594fa2dcSArnold Schwaighofer }
470