1aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//===-- ARMTargetTransformInfo.cpp - ARM specific TTI pass ----------------===//
2aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//
3aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//                     The LLVM Compiler Infrastructure
4aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//
5aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth// This file is distributed under the University of Illinois Open Source
6aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth// License. See LICENSE.TXT for details.
7aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//
8aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//===----------------------------------------------------------------------===//
9aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth/// \file
10aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth/// This file implements a TargetTransformInfo analysis pass specific to the
11aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth/// ARM target machine. It uses the target's detailed information to provide
12aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth/// more precise answers to certain TTI queries, while letting the target
13aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth/// independent and default TTI implementations handle the rest.
14aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth///
15aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth//===----------------------------------------------------------------------===//
16aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
17aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth#include "ARM.h"
18aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth#include "ARMTargetMachine.h"
19be04929f7fd76a921540e9901f24563e51dc1219Chandler Carruth#include "llvm/Analysis/TargetTransformInfo.h"
20aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth#include "llvm/Support/Debug.h"
210261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin#include "llvm/Target/CostTable.h"
2236b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines#include "llvm/Target/TargetLowering.h"
23aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthusing namespace llvm;
24aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
25dce4a407a24b04eebc6a376f8e62b41aaa7b071fStephen Hines#define DEBUG_TYPE "armtti"
26dce4a407a24b04eebc6a376f8e62b41aaa7b071fStephen Hines
27aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth// Declare the pass initialization routine locally as target-specific passes
28dce4a407a24b04eebc6a376f8e62b41aaa7b071fStephen Hines// don't have a target-wide initialization entry point, and so we rely on the
29aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth// pass constructor initialization.
30aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthnamespace llvm {
31aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthvoid initializeARMTTIPass(PassRegistry &);
32aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth}
33aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
34aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthnamespace {
35aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
3636b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hinesclass ARMTTI final : public ImmutablePass, public TargetTransformInfo {
37aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  const ARMBaseTargetMachine *TM;
38aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  const ARMSubtarget *ST;
390261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  const ARMTargetLowering *TLI;
40aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
41aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// Estimate the overhead of scalarizing an instruction. Insert and Extract
42aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// are set if the result needs to be inserted and/or extracted from vectors.
43aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  unsigned getScalarizationOverhead(Type *Ty, bool Insert, bool Extract) const;
44aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
45aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthpublic:
46dce4a407a24b04eebc6a376f8e62b41aaa7b071fStephen Hines  ARMTTI() : ImmutablePass(ID), TM(nullptr), ST(nullptr), TLI(nullptr) {
47aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    llvm_unreachable("This pass cannot be directly constructed");
48aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  }
49aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
50aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  ARMTTI(const ARMBaseTargetMachine *TM)
510261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin      : ImmutablePass(ID), TM(TM), ST(TM->getSubtargetImpl()),
520261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin        TLI(TM->getTargetLowering()) {
53aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    initializeARMTTIPass(*PassRegistry::getPassRegistry());
54aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  }
55aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
5636b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  void initializePass() override {
57aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    pushTTIStack(this);
58aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  }
59aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
6036b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  void getAnalysisUsage(AnalysisUsage &AU) const override {
61aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    TargetTransformInfo::getAnalysisUsage(AU);
62aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  }
63aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
64aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// Pass identification.
65aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  static char ID;
66aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
67aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// Provide necessary pointer adjustments for the two base classes.
6836b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  void *getAdjustedAnalysisPointer(const void *ID) override {
69aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    if (ID == &TargetTransformInfo::ID)
70aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth      return (TargetTransformInfo*)this;
71aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    return this;
72aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  }
73aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
74aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// \name Scalar TTI Implementations
75aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// @{
7636b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  using TargetTransformInfo::getIntImmCost;
7736b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getIntImmCost(const APInt &Imm, Type *Ty) const override;
78aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
79aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  /// @}
8083be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem
8183be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem
8283be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem  /// \name Vector TTI Implementations
8383be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem  /// @{
8483be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem
8536b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getNumberOfRegisters(bool Vector) const override {
8683be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem    if (Vector) {
8783be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem      if (ST->hasNEON())
8883be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem        return 16;
8983be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem      return 0;
9083be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem    }
9183be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem
9283be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem    if (ST->isThumb1Only())
9383be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem      return 8;
9436b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines    return 13;
9583be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem  }
9683be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem
9736b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getRegisterBitWidth(bool Vector) const override {
9814925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem    if (Vector) {
9914925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem      if (ST->hasNEON())
10014925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem        return 128;
10114925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem      return 0;
10214925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem    }
10314925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem
10414925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem    return 32;
10514925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem  }
10614925e6b885f8bd8cf448627386d412831f4bf1bNadav Rotem
10736b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getMaximumUnrollFactor() const override {
10883be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem    // These are out of order CPUs:
10983be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem    if (ST->isCortexA15() || ST->isSwift())
11083be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem      return 2;
11183be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem    return 1;
11283be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem  }
11383be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem
1146851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer  unsigned getShuffleCost(ShuffleKind Kind, Type *Tp,
11536b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                          int Index, Type *SubTp) const override;
1166851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer
1170261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  unsigned getCastInstrCost(unsigned Opcode, Type *Dst,
11836b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                            Type *Src) const override;
1190261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
12036b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getCmpSelInstrCost(unsigned Opcode, Type *ValTy,
12136b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                              Type *CondTy) const override;
12266f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer
12336b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getVectorInstrCost(unsigned Opcode, Type *Val,
12436b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                              unsigned Index) const override;
125fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer
12636b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned getAddressComputationCost(Type *Val,
12736b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                                     bool IsComplex) const override;
12845c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
12936b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  unsigned
13036b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  getArithmeticInstrCost(unsigned Opcode, Type *Ty,
13136b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                         OperandValueKind Op1Info = OK_AnyValue,
13236b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                         OperandValueKind Op2Info = OK_AnyValue) const override;
133c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer
134c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer  unsigned getMemoryOpCost(unsigned Opcode, Type *Src, unsigned Alignment,
13536b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                           unsigned AddressSpace) const override;
13683be7b0dd3ae9a3cb22d36ae4c1775972553b94bNadav Rotem  /// @}
137aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth};
138aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
139aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth} // end anonymous namespace
140aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
141aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler CarruthINITIALIZE_AG_PASS(ARMTTI, TargetTransformInfo, "armtti",
142aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth                   "ARM Target Transform Info", true, true, false)
143aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthchar ARMTTI::ID = 0;
144aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
145aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler CarruthImmutablePass *
146aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthllvm::createARMTargetTransformInfoPass(const ARMBaseTargetMachine *TM) {
147aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  return new ARMTTI(TM);
148aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth}
149aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
150aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
151aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruthunsigned ARMTTI::getIntImmCost(const APInt &Imm, Type *Ty) const {
152aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  assert(Ty->isIntegerTy());
153aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
154aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  unsigned Bits = Ty->getPrimitiveSizeInBits();
155aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  if (Bits == 0 || Bits > 32)
156aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    return 4;
157aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth
158aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  int32_t SImmVal = Imm.getSExtValue();
159aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  uint32_t ZImmVal = Imm.getZExtValue();
160aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  if (!ST->isThumb()) {
161aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    if ((SImmVal >= 0 && SImmVal < 65536) ||
162aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth        (ARM_AM::getSOImmVal(ZImmVal) != -1) ||
163aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth        (ARM_AM::getSOImmVal(~ZImmVal) != -1))
164aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth      return 1;
165aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    return ST->hasV6T2Ops() ? 2 : 3;
16636b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  }
16736b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  if (ST->isThumb2()) {
168aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    if ((SImmVal >= 0 && SImmVal < 65536) ||
169aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth        (ARM_AM::getT2SOImmVal(ZImmVal) != -1) ||
170aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth        (ARM_AM::getT2SOImmVal(~ZImmVal) != -1))
171aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth      return 1;
172aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth    return ST->hasV6T2Ops() ? 2 : 3;
173aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth  }
17436b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  // Thumb1.
17536b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  if (SImmVal >= 0 && SImmVal < 256)
17636b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines    return 1;
17736b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  if ((~ZImmVal < 256) || ARM_AM::isThumbImmShiftedVal(ZImmVal))
17836b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines    return 2;
17936b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  // Load from constantpool.
18036b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  return 3;
181aeef83c6afa1e18d1cf9d359cc678ca0ad556175Chandler Carruth}
1820261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
1830261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golinunsigned ARMTTI::getCastInstrCost(unsigned Opcode, Type *Dst,
18436b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                                  Type *Src) const {
1850261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  int ISD = TLI->InstructionOpcodeToISD(Opcode);
1860261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  assert(ISD && "Invalid opcode");
1870261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
188c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer  // Single to/from double precision conversions.
189fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  static const CostTblEntry<MVT::SimpleValueType> NEONFltDblTbl[] = {
190c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer    // Vector fptrunc/fpext conversions.
191c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer    { ISD::FP_ROUND,   MVT::v2f64, 2 },
192c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer    { ISD::FP_EXTEND,  MVT::v2f32, 2 },
193c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer    { ISD::FP_EXTEND,  MVT::v4f32, 4 }
194c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer  };
195c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer
196c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer  if (Src->isVectorTy() && ST->hasNEON() && (ISD == ISD::FP_ROUND ||
197c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer                                          ISD == ISD::FP_EXTEND)) {
198c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer    std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Src);
199fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    int Idx = CostTableLookup(NEONFltDblTbl, ISD, LT.second);
200c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer    if (Idx != -1)
201c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer      return LT.first * NEONFltDblTbl[Idx].Cost;
202c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer  }
203c0d8dc0eb6e1df872affadba01f60e42275e2863Arnold Schwaighofer
2040261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  EVT SrcTy = TLI->getValueType(Src);
2050261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  EVT DstTy = TLI->getValueType(Dst);
2060261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
2070261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  if (!SrcTy.isSimple() || !DstTy.isSimple())
2080261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    return TargetTransformInfo::getCastInstrCost(Opcode, Dst, Src);
2090261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
2100261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  // Some arithmetic, load and store operations have specific instructions
211e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  // to cast up/down their types automatically at no extra cost.
212e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  // TODO: Get these tables to know at least what the related operations are.
213fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  static const TypeConversionCostTblEntry<MVT::SimpleValueType>
214fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  NEONVectorConversionTbl[] = {
2150261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    { ISD::SIGN_EXTEND, MVT::v4i32, MVT::v4i16, 0 },
2160261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    { ISD::ZERO_EXTEND, MVT::v4i32, MVT::v4i16, 0 },
2170261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    { ISD::SIGN_EXTEND, MVT::v2i64, MVT::v2i32, 1 },
2180261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    { ISD::ZERO_EXTEND, MVT::v2i64, MVT::v2i32, 1 },
2190261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    { ISD::TRUNCATE,    MVT::v4i32, MVT::v4i64, 0 },
2200261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    { ISD::TRUNCATE,    MVT::v4i16, MVT::v4i32, 1 },
221e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
2225ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    // The number of vmovl instructions for the extension.
2235ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::SIGN_EXTEND, MVT::v4i64, MVT::v4i16, 3 },
2245ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::ZERO_EXTEND, MVT::v4i64, MVT::v4i16, 3 },
2255ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::SIGN_EXTEND, MVT::v8i32, MVT::v8i8, 3 },
2265ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::ZERO_EXTEND, MVT::v8i32, MVT::v8i8, 3 },
2275ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::SIGN_EXTEND, MVT::v8i64, MVT::v8i8, 7 },
2285ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::ZERO_EXTEND, MVT::v8i64, MVT::v8i8, 7 },
2295ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::SIGN_EXTEND, MVT::v8i64, MVT::v8i16, 6 },
2305ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::ZERO_EXTEND, MVT::v8i64, MVT::v8i16, 6 },
2315ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::SIGN_EXTEND, MVT::v16i32, MVT::v16i8, 6 },
2325ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin    { ISD::ZERO_EXTEND, MVT::v16i32, MVT::v16i8, 6 },
2335ad5f5931e34d5be410b1e901640bc1c2d308612Renato Golin
2340cb1019e9cd41237408eae09623eb9a34a4cbe0cJim Grosbach    // Operations that we legalize using splitting.
2350cb1019e9cd41237408eae09623eb9a34a4cbe0cJim Grosbach    { ISD::TRUNCATE,    MVT::v16i8, MVT::v16i32, 6 },
2360cb1019e9cd41237408eae09623eb9a34a4cbe0cJim Grosbach    { ISD::TRUNCATE,    MVT::v8i8, MVT::v8i32, 3 },
237b6f4872d29136637a3a5dfdf185f5afcbcdd3b2aArnold Schwaighofer
238e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    // Vector float <-> i32 conversions.
239e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v4f32, MVT::v4i32, 1 },
240e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v4f32, MVT::v4i32, 1 },
241bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer
242bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f32, MVT::v2i8, 3 },
243bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f32, MVT::v2i8, 3 },
244bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f32, MVT::v2i16, 2 },
245bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f32, MVT::v2i16, 2 },
246bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f32, MVT::v2i32, 1 },
247bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f32, MVT::v2i32, 1 },
248bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v4f32, MVT::v4i1, 3 },
249bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v4f32, MVT::v4i1, 3 },
250bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v4f32, MVT::v4i8, 3 },
251bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v4f32, MVT::v4i8, 3 },
252bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v4f32, MVT::v4i16, 2 },
253bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v4f32, MVT::v4i16, 2 },
254bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v8f32, MVT::v8i16, 4 },
255bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v8f32, MVT::v8i16, 4 },
256bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v8f32, MVT::v8i32, 2 },
257bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v8f32, MVT::v8i32, 2 },
258bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v16f32, MVT::v16i16, 8 },
259bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v16f32, MVT::v16i16, 8 },
260bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v16f32, MVT::v16i32, 4 },
261bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v16f32, MVT::v16i32, 4 },
262bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer
263e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::v4i32, MVT::v4f32, 1 },
264e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::v4i32, MVT::v4f32, 1 },
26501f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::v4i8, MVT::v4f32, 3 },
26601f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::v4i8, MVT::v4f32, 3 },
26701f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::v4i16, MVT::v4f32, 2 },
26801f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::v4i16, MVT::v4f32, 2 },
269e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
270e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    // Vector double <-> i32 conversions.
271e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f64, MVT::v2i32, 2 },
272e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f64, MVT::v2i32, 2 },
273bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer
274bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f64, MVT::v2i8, 4 },
275bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f64, MVT::v2i8, 4 },
276bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f64, MVT::v2i16, 3 },
277bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f64, MVT::v2i16, 3 },
278bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::v2f64, MVT::v2i32, 2 },
279bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::v2f64, MVT::v2i32, 2 },
280bf37bf9e21653f2439960d906a9c28cc19042bb0Arnold Schwaighofer
281e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::v2i32, MVT::v2f64, 2 },
28201f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::v2i32, MVT::v2f64, 2 },
28301f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::v8i16, MVT::v8f32, 4 },
28401f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::v8i16, MVT::v8f32, 4 },
28501f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::v16i16, MVT::v16f32, 8 },
28601f25710148721f9fc2dece5eec17899ca414bccArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::v16i16, MVT::v16f32, 8 }
2870261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  };
2880261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
289e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  if (SrcTy.isVector() && ST->hasNEON()) {
290fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    int Idx = ConvertCostTableLookup(NEONVectorConversionTbl, ISD,
291fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer                                     DstTy.getSimpleVT(), SrcTy.getSimpleVT());
2920261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin    if (Idx != -1)
293e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer      return NEONVectorConversionTbl[Idx].Cost;
294e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  }
295e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
296e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  // Scalar float to integer conversions.
297fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  static const TypeConversionCostTblEntry<MVT::SimpleValueType>
298fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  NEONFloatConversionTbl[] = {
299e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i1, MVT::f32, 2 },
300e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i1, MVT::f32, 2 },
301e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i1, MVT::f64, 2 },
302e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i1, MVT::f64, 2 },
303e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i8, MVT::f32, 2 },
304e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i8, MVT::f32, 2 },
305e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i8, MVT::f64, 2 },
306e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i8, MVT::f64, 2 },
307e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i16, MVT::f32, 2 },
308e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i16, MVT::f32, 2 },
309e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i16, MVT::f64, 2 },
310e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i16, MVT::f64, 2 },
311e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i32, MVT::f32, 2 },
312e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i32, MVT::f32, 2 },
313e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i32, MVT::f64, 2 },
314e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i32, MVT::f64, 2 },
315e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i64, MVT::f32, 10 },
316e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i64, MVT::f32, 10 },
317e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_SINT,  MVT::i64, MVT::f64, 10 },
318e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::FP_TO_UINT,  MVT::i64, MVT::f64, 10 }
319e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  };
320e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  if (SrcTy.isFloatingPoint() && ST->hasNEON()) {
321fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    int Idx = ConvertCostTableLookup(NEONFloatConversionTbl, ISD,
322fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer                                     DstTy.getSimpleVT(), SrcTy.getSimpleVT());
323e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    if (Idx != -1)
324e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer        return NEONFloatConversionTbl[Idx].Cost;
325e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  }
326e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
327e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  // Scalar integer to float conversions.
328fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  static const TypeConversionCostTblEntry<MVT::SimpleValueType>
329fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  NEONIntegerConversionTbl[] = {
330e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f32, MVT::i1, 2 },
331e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f32, MVT::i1, 2 },
332e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f64, MVT::i1, 2 },
333e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f64, MVT::i1, 2 },
334e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f32, MVT::i8, 2 },
335e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f32, MVT::i8, 2 },
336e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f64, MVT::i8, 2 },
337e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f64, MVT::i8, 2 },
338e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f32, MVT::i16, 2 },
339e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f32, MVT::i16, 2 },
340e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f64, MVT::i16, 2 },
341e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f64, MVT::i16, 2 },
342e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f32, MVT::i32, 2 },
343e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f32, MVT::i32, 2 },
344e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f64, MVT::i32, 2 },
345e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f64, MVT::i32, 2 },
346e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f32, MVT::i64, 10 },
347e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f32, MVT::i64, 10 },
348e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SINT_TO_FP,  MVT::f64, MVT::i64, 10 },
349e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::UINT_TO_FP,  MVT::f64, MVT::i64, 10 }
350e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  };
351e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
352e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  if (SrcTy.isInteger() && ST->hasNEON()) {
353fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    int Idx = ConvertCostTableLookup(NEONIntegerConversionTbl, ISD,
354fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer                                     DstTy.getSimpleVT(), SrcTy.getSimpleVT());
355e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    if (Idx != -1)
356e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer      return NEONIntegerConversionTbl[Idx].Cost;
3570261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  }
3580261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin
359e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  // Scalar integer conversion costs.
360fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  static const TypeConversionCostTblEntry<MVT::SimpleValueType>
361fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  ARMIntegerConversionTbl[] = {
362e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    // i16 -> i64 requires two dependent operations.
363e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::SIGN_EXTEND, MVT::i64, MVT::i16, 2 },
364e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
365e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    // Truncates on i64 are assumed to be free.
366e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::TRUNCATE,    MVT::i32, MVT::i64, 0 },
367e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::TRUNCATE,    MVT::i16, MVT::i64, 0 },
368e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::TRUNCATE,    MVT::i8,  MVT::i64, 0 },
369e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    { ISD::TRUNCATE,    MVT::i1,  MVT::i64, 0 }
370e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  };
371e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
372e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  if (SrcTy.isInteger()) {
373fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    int Idx = ConvertCostTableLookup(ARMIntegerConversionTbl, ISD,
374fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer                                     DstTy.getSimpleVT(), SrcTy.getSimpleVT());
375e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer    if (Idx != -1)
376e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer      return ARMIntegerConversionTbl[Idx].Cost;
377e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer  }
378e2d5590c33f1b5203c0104c1c82bf8e0f28b828eArnold Schwaighofer
3790261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin  return TargetTransformInfo::getCastInstrCost(Opcode, Dst, Src);
3800261cea689c71a15175faf37fdc6bd1d9f69c46eRenato Golin}
381a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer
382a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighoferunsigned ARMTTI::getVectorInstrCost(unsigned Opcode, Type *ValTy,
383a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer                                    unsigned Index) const {
384fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer  // Penalize inserting into an D-subregister. We end up with a three times
385fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer  // lower estimated throughput on swift.
386a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer  if (ST->isSwift() &&
387a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer      Opcode == Instruction::InsertElement &&
388a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer      ValTy->isVectorTy() &&
389a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer      ValTy->getScalarSizeInBits() <= 32)
390fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer    return 3;
391a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer
392a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer  return TargetTransformInfo::getVectorInstrCost(Opcode, ValTy, Index);
393a7ad84851b018602487779d97195bad0536f9a7aArnold Schwaighofer}
39466f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer
39566f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighoferunsigned ARMTTI::getCmpSelInstrCost(unsigned Opcode, Type *ValTy,
39666f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer                                    Type *CondTy) const {
39766f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer
39866f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer  int ISD = TLI->InstructionOpcodeToISD(Opcode);
39966f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer  // On NEON a a vector select gets lowered to vbsl.
40066f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer  if (ST->hasNEON() && ValTy->isVectorTy() && ISD == ISD::SELECT) {
401d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer    // Lowering of some vector selects is currently far from perfect.
402fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    static const TypeConversionCostTblEntry<MVT::SimpleValueType>
403fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    NEONVectorSelectTbl[] = {
404d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer      { ISD::SELECT, MVT::v16i1, MVT::v16i16, 2*16 + 1 + 3*1 + 4*1 },
405d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer      { ISD::SELECT, MVT::v8i1, MVT::v8i32, 4*8 + 1*3 + 1*4 + 1*2 },
406d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer      { ISD::SELECT, MVT::v16i1, MVT::v16i32, 4*16 + 1*6 + 1*8 + 1*4 },
407d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer      { ISD::SELECT, MVT::v4i1, MVT::v4i64, 4*4 + 1*2 + 1 },
408d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer      { ISD::SELECT, MVT::v8i1, MVT::v8i64, 50 },
409d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer      { ISD::SELECT, MVT::v16i1, MVT::v16i64, 100 }
410d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer    };
411d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer
412d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer    EVT SelCondTy = TLI->getValueType(CondTy);
413d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer    EVT SelValTy = TLI->getValueType(ValTy);
41438ffffeebc22ca8ea67456193672109a3adc11b6Renato Golin    if (SelCondTy.isSimple() && SelValTy.isSimple()) {
415fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer      int Idx = ConvertCostTableLookup(NEONVectorSelectTbl, ISD,
416fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer                                       SelCondTy.getSimpleVT(),
417fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer                                       SelValTy.getSimpleVT());
41838ffffeebc22ca8ea67456193672109a3adc11b6Renato Golin      if (Idx != -1)
41938ffffeebc22ca8ea67456193672109a3adc11b6Renato Golin        return NEONVectorSelectTbl[Idx].Cost;
42038ffffeebc22ca8ea67456193672109a3adc11b6Renato Golin    }
421d81511f0a671a9271d7ba10cce6c27331b57f553Arnold Schwaighofer
42266f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer    std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(ValTy);
42366f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer    return LT.first;
42466f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer  }
42566f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer
42666f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer  return TargetTransformInfo::getCmpSelInstrCost(Opcode, ValTy, CondTy);
42766f535a273e52d56199c7ce8f975796017b6cbb2Arnold Schwaighofer}
428fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer
429c0a11edba6ea46c782672ab3fb4e4ab3dc267a22Arnold Schwaighoferunsigned ARMTTI::getAddressComputationCost(Type *Ty, bool IsComplex) const {
4304a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer  // Address computations in vectorized code with non-consecutive addresses will
4314a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer  // likely result in more instructions compared to scalar code where the
4324a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer  // computation can more often be merged into the index mode. The resulting
4334a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer  // extra micro-ops can significantly decrease throughput.
4344a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer  unsigned NumVectorInstToHideOverhead = 10;
4354a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer
4364a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer  if (Ty->isVectorTy() && IsComplex)
4374a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer    return NumVectorInstToHideOverhead;
4384a1c764264a8908aa041acf12f68cd8bcc2037b1Arnold Schwaighofer
439fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer  // In many cases the address computation is not merged into the instruction
440fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer  // addressing mode.
441fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer  return 1;
442fb55a8fd7c38aa09d9c243d48a8a72d890f36a3dArnold Schwaighofer}
4436851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer
4446851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighoferunsigned ARMTTI::getShuffleCost(ShuffleKind Kind, Type *Tp, int Index,
4456851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer                                Type *SubTp) const {
446cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  // We only handle costs of reverse and alternate shuffles for now.
447cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  if (Kind != SK_Reverse && Kind != SK_Alternate)
4486851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer    return TargetTransformInfo::getShuffleCost(Kind, Tp, Index, SubTp);
4496851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer
450cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  if (Kind == SK_Reverse) {
451cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    static const CostTblEntry<MVT::SimpleValueType> NEONShuffleTbl[] = {
452cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        // Reverse shuffle cost one instruction if we are shuffling within a
453cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        // double word (vrev) or two if we shuffle a quad word (vrev, vext).
454cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2i32, 1},
455cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2f32, 1},
456cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2i64, 1},
457cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2f64, 1},
4586851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer
459cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v4i32, 2},
460cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v4f32, 2},
461cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v8i16, 2},
462cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v16i8, 2}};
4636851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer
464cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Tp);
465cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines
466cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    int Idx = CostTableLookup(NEONShuffleTbl, ISD::VECTOR_SHUFFLE, LT.second);
467cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    if (Idx == -1)
468cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines      return TargetTransformInfo::getShuffleCost(Kind, Tp, Index, SubTp);
4696851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer
470cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    return LT.first * NEONShuffleTbl[Idx].Cost;
471cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  }
472cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  if (Kind == SK_Alternate) {
473cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    static const CostTblEntry<MVT::SimpleValueType> NEONAltShuffleTbl[] = {
474cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        // Alt shuffle cost table for ARM. Cost is the number of instructions
475cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        // required to create the shuffled vector.
476cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines
477cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2f32, 1},
478cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2i64, 1},
479cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2f64, 1},
480cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v2i32, 1},
481cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines
482cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v4i32, 2},
483cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v4f32, 2},
484cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v4i16, 2},
485cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines
486cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v8i16, 16},
487cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines
488cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        {ISD::VECTOR_SHUFFLE, MVT::v16i8, 32}};
489cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines
490cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Tp);
491cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    int Idx =
492cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines        CostTableLookup(NEONAltShuffleTbl, ISD::VECTOR_SHUFFLE, LT.second);
493cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    if (Idx == -1)
494cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines      return TargetTransformInfo::getShuffleCost(Kind, Tp, Index, SubTp);
495cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines    return LT.first * NEONAltShuffleTbl[Idx].Cost;
496cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  }
497cd81d94322a39503e4a3e87b6ee03d4fcb3465fbStephen Hines  return TargetTransformInfo::getShuffleCost(Kind, Tp, Index, SubTp);
4986851623c54b35673f6e9a0ed0fd12378c93f48c4Arnold Schwaighofer}
49945c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
50036b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hinesunsigned ARMTTI::getArithmeticInstrCost(unsigned Opcode, Type *Ty,
50136b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines                                        OperandValueKind Op1Info,
50245c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer                                        OperandValueKind Op2Info) const {
50345c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
50445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  int ISDOpcode = TLI->InstructionOpcodeToISD(Opcode);
50545c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Ty);
50645c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
50745c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  const unsigned FunctionCallDivCost = 20;
50845c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  const unsigned ReciprocalDivCost = 10;
509fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer  static const CostTblEntry<MVT::SimpleValueType> CostTbl[] = {
51045c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    // Division.
51145c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    // These costs are somewhat random. Choose a cost of 20 to indicate that
51245c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    // vectorizing devision (added function call) is going to be very expensive.
51345c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    // Double registers types.
51445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v1i64, 1 * FunctionCallDivCost},
51545c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v1i64, 1 * FunctionCallDivCost},
51645c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v1i64, 1 * FunctionCallDivCost},
51745c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v1i64, 1 * FunctionCallDivCost},
51845c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v2i32, 2 * FunctionCallDivCost},
51945c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v2i32, 2 * FunctionCallDivCost},
52045c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v2i32, 2 * FunctionCallDivCost},
52145c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v2i32, 2 * FunctionCallDivCost},
52245c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v4i16,     ReciprocalDivCost},
52345c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v4i16,     ReciprocalDivCost},
52445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v4i16, 4 * FunctionCallDivCost},
52545c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v4i16, 4 * FunctionCallDivCost},
52645c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v8i8,      ReciprocalDivCost},
52745c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v8i8,      ReciprocalDivCost},
52845c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v8i8,  8 * FunctionCallDivCost},
52945c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v8i8,  8 * FunctionCallDivCost},
53045c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    // Quad register types.
53145c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v2i64, 2 * FunctionCallDivCost},
53245c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v2i64, 2 * FunctionCallDivCost},
53345c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v2i64, 2 * FunctionCallDivCost},
53445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v2i64, 2 * FunctionCallDivCost},
53545c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v4i32, 4 * FunctionCallDivCost},
53645c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v4i32, 4 * FunctionCallDivCost},
53745c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v4i32, 4 * FunctionCallDivCost},
53845c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v4i32, 4 * FunctionCallDivCost},
53945c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v8i16, 8 * FunctionCallDivCost},
54045c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v8i16, 8 * FunctionCallDivCost},
54145c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v8i16, 8 * FunctionCallDivCost},
54245c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v8i16, 8 * FunctionCallDivCost},
54345c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SDIV, MVT::v16i8, 16 * FunctionCallDivCost},
54445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UDIV, MVT::v16i8, 16 * FunctionCallDivCost},
54545c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::SREM, MVT::v16i8, 16 * FunctionCallDivCost},
54645c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    { ISD::UREM, MVT::v16i8, 16 * FunctionCallDivCost},
54745c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    // Multiplication.
54845c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  };
54945c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
55045c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  int Idx = -1;
55145c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
55245c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  if (ST->hasNEON())
553fc6434a73d053c3e1d9c79034a267ae1434483adBenjamin Kramer    Idx = CostTableLookup(CostTbl, ISDOpcode, LT.second);
55445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
55545c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer  if (Idx != -1)
55645c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer    return LT.first * CostTbl[Idx].Cost;
55745c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
5587e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  unsigned Cost =
5597e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer      TargetTransformInfo::getArithmeticInstrCost(Opcode, Ty, Op1Info, Op2Info);
5607e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer
5617e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  // This is somewhat of a hack. The problem that we are facing is that SROA
5627e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  // creates a sequence of shift, and, or instructions to construct values.
5637e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  // These sequences are recognized by the ISel and have zero-cost. Not so for
5647e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  // the vectorized code. Because we have support for v2i64 but not i64 those
56536b56886974eae4f9c5ebc96befd3e7bfe5de338Stephen Hines  // sequences look particularly beneficial to vectorize.
5667e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  // To work around this we increase the cost of v2i64 operations to make them
5677e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  // seem less beneficial.
5687e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  if (LT.second == MVT::v2i64 &&
5697e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer      Op2Info == TargetTransformInfo::OK_UniformConstantValue)
5707e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer    Cost += 4;
5717e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer
5727e8cebf22d170769b0bf0c2a69309faa0e36ac4cArnold Schwaighofer  return Cost;
57345c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer}
57445c9e0b412495c2d660918b0e964529bcb5e05b8Arnold Schwaighofer
575c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighoferunsigned ARMTTI::getMemoryOpCost(unsigned Opcode, Type *Src, unsigned Alignment,
576c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer                                 unsigned AddressSpace) const {
577c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer  std::pair<unsigned, MVT> LT = TLI->getTypeLegalizationCost(Src);
578c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer
579c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer  if (Src->isVectorTy() && Alignment != 16 &&
580c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer      Src->getVectorElementType()->isDoubleTy()) {
581c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer    // Unaligned loads/stores are extremely inefficient.
582c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer    // We need 4 uops for vst.1/vld.1 vs 1uop for vldr/vstr.
583c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer    return LT.first * 4;
584c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer  }
585c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer  return LT.first;
586c04d241d13820b33224b5cbd89a427fc08e5d1d9Arnold Schwaighofer}
587