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Tom Stellardca166212017-01-30 21:56:46 +00001//===- AMDGPULegalizerInfo.cpp -----------------------------------*- C++ -*-==//
2//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Tom Stellardca166212017-01-30 21:56:46 +00006//
7//===----------------------------------------------------------------------===//
8/// \file
9/// This file implements the targeting of the Machinelegalizer class for
10/// AMDGPU.
11/// \todo This should be generated by TableGen.
12//===----------------------------------------------------------------------===//
13
David Blaikie36a0f222018-03-23 23:58:31 +000014#include "AMDGPU.h"
Craig Topper2fa14362018-03-29 17:21:10 +000015#include "AMDGPULegalizerInfo.h"
Matt Arsenault85803362018-03-17 15:17:41 +000016#include "AMDGPUTargetMachine.h"
Matt Arsenaulta8b43392019-02-08 02:40:47 +000017#include "SIMachineFunctionInfo.h"
Matt Arsenault6ce1b4f2019-07-10 16:31:19 +000018#include "llvm/CodeGen/GlobalISel/LegalizerHelper.h"
Matt Arsenaulta8b43392019-02-08 02:40:47 +000019#include "llvm/CodeGen/GlobalISel/MachineIRBuilder.h"
David Blaikieb3bde2e2017-11-17 01:07:10 +000020#include "llvm/CodeGen/TargetOpcodes.h"
Craig Topper2fa14362018-03-29 17:21:10 +000021#include "llvm/CodeGen/ValueTypes.h"
Tom Stellardca166212017-01-30 21:56:46 +000022#include "llvm/IR/DerivedTypes.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000023#include "llvm/IR/Type.h"
Tom Stellardca166212017-01-30 21:56:46 +000024#include "llvm/Support/Debug.h"
25
Matt Arsenaulte2c86cc2019-07-01 18:45:36 +000026#define DEBUG_TYPE "amdgpu-legalinfo"
27
Tom Stellardca166212017-01-30 21:56:46 +000028using namespace llvm;
Daniel Sanders9ade5592018-01-29 17:37:29 +000029using namespace LegalizeActions;
Matt Arsenault990f5072019-01-25 00:51:00 +000030using namespace LegalizeMutations;
Matt Arsenault7ac79ed2019-01-20 19:45:18 +000031using namespace LegalityPredicates;
Tom Stellardca166212017-01-30 21:56:46 +000032
Matt Arsenaultd9141892019-02-07 19:10:15 +000033
34static LegalityPredicate isMultiple32(unsigned TypeIdx,
35 unsigned MaxSize = 512) {
36 return [=](const LegalityQuery &Query) {
37 const LLT Ty = Query.Types[TypeIdx];
38 const LLT EltTy = Ty.getScalarType();
39 return Ty.getSizeInBits() <= MaxSize && EltTy.getSizeInBits() % 32 == 0;
40 };
41}
42
Matt Arsenault18ec3822019-02-11 22:00:39 +000043static LegalityPredicate isSmallOddVector(unsigned TypeIdx) {
44 return [=](const LegalityQuery &Query) {
45 const LLT Ty = Query.Types[TypeIdx];
46 return Ty.isVector() &&
47 Ty.getNumElements() % 2 != 0 &&
48 Ty.getElementType().getSizeInBits() < 32;
49 };
50}
51
52static LegalizeMutation oneMoreElement(unsigned TypeIdx) {
53 return [=](const LegalityQuery &Query) {
54 const LLT Ty = Query.Types[TypeIdx];
55 const LLT EltTy = Ty.getElementType();
56 return std::make_pair(TypeIdx, LLT::vector(Ty.getNumElements() + 1, EltTy));
57 };
58}
59
Matt Arsenault26b7e852019-02-19 16:30:19 +000060static LegalizeMutation fewerEltsToSize64Vector(unsigned TypeIdx) {
61 return [=](const LegalityQuery &Query) {
62 const LLT Ty = Query.Types[TypeIdx];
63 const LLT EltTy = Ty.getElementType();
64 unsigned Size = Ty.getSizeInBits();
65 unsigned Pieces = (Size + 63) / 64;
66 unsigned NewNumElts = (Ty.getNumElements() + 1) / Pieces;
67 return std::make_pair(TypeIdx, LLT::scalarOrVector(NewNumElts, EltTy));
68 };
69}
70
71static LegalityPredicate vectorWiderThan(unsigned TypeIdx, unsigned Size) {
72 return [=](const LegalityQuery &Query) {
73 const LLT QueryTy = Query.Types[TypeIdx];
74 return QueryTy.isVector() && QueryTy.getSizeInBits() > Size;
75 };
76}
77
Matt Arsenaultb4c95b32019-02-19 17:03:09 +000078static LegalityPredicate numElementsNotEven(unsigned TypeIdx) {
79 return [=](const LegalityQuery &Query) {
80 const LLT QueryTy = Query.Types[TypeIdx];
81 return QueryTy.isVector() && QueryTy.getNumElements() % 2 != 0;
82 };
83}
Matt Arsenault18ec3822019-02-11 22:00:39 +000084
Matt Arsenault4dd57552019-07-09 14:17:31 +000085// Any combination of 32 or 64-bit elements up to 512 bits, and multiples of
86// v2s16.
87static LegalityPredicate isRegisterType(unsigned TypeIdx) {
88 return [=](const LegalityQuery &Query) {
89 const LLT Ty = Query.Types[TypeIdx];
90 if (Ty.isVector()) {
91 const int EltSize = Ty.getElementType().getSizeInBits();
92 return EltSize == 32 || EltSize == 64 ||
Matt Arsenault3f1a3452019-07-09 22:48:04 +000093 (EltSize == 16 && Ty.getNumElements() % 2 == 0) ||
94 EltSize == 128 || EltSize == 256;
Matt Arsenault4dd57552019-07-09 14:17:31 +000095 }
96
97 return Ty.getSizeInBits() % 32 == 0 && Ty.getSizeInBits() <= 512;
98 };
99}
100
Matt Arsenault9e8e8c62019-07-01 18:49:01 +0000101AMDGPULegalizerInfo::AMDGPULegalizerInfo(const GCNSubtarget &ST_,
102 const GCNTargetMachine &TM)
103 : ST(ST_) {
Tom Stellardca166212017-01-30 21:56:46 +0000104 using namespace TargetOpcode;
105
Matt Arsenault85803362018-03-17 15:17:41 +0000106 auto GetAddrSpacePtr = [&TM](unsigned AS) {
107 return LLT::pointer(AS, TM.getPointerSizeInBits(AS));
108 };
109
110 const LLT S1 = LLT::scalar(1);
Matt Arsenault888aa5d2019-02-03 00:07:33 +0000111 const LLT S8 = LLT::scalar(8);
Matt Arsenault45991592019-01-18 21:33:50 +0000112 const LLT S16 = LLT::scalar(16);
Tom Stellardca166212017-01-30 21:56:46 +0000113 const LLT S32 = LLT::scalar(32);
114 const LLT S64 = LLT::scalar(64);
Matt Arsenaultca676342019-01-25 02:36:32 +0000115 const LLT S128 = LLT::scalar(128);
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000116 const LLT S256 = LLT::scalar(256);
Tom Stellardeebbfc22018-06-30 04:09:44 +0000117 const LLT S512 = LLT::scalar(512);
Matt Arsenault85803362018-03-17 15:17:41 +0000118
Matt Arsenaultbee2ad72018-12-21 03:03:11 +0000119 const LLT V2S16 = LLT::vector(2, 16);
Matt Arsenaulta1515d22019-01-08 01:30:02 +0000120 const LLT V4S16 = LLT::vector(4, 16);
Matt Arsenaultbee2ad72018-12-21 03:03:11 +0000121
122 const LLT V2S32 = LLT::vector(2, 32);
123 const LLT V3S32 = LLT::vector(3, 32);
124 const LLT V4S32 = LLT::vector(4, 32);
125 const LLT V5S32 = LLT::vector(5, 32);
126 const LLT V6S32 = LLT::vector(6, 32);
127 const LLT V7S32 = LLT::vector(7, 32);
128 const LLT V8S32 = LLT::vector(8, 32);
129 const LLT V9S32 = LLT::vector(9, 32);
130 const LLT V10S32 = LLT::vector(10, 32);
131 const LLT V11S32 = LLT::vector(11, 32);
132 const LLT V12S32 = LLT::vector(12, 32);
133 const LLT V13S32 = LLT::vector(13, 32);
134 const LLT V14S32 = LLT::vector(14, 32);
135 const LLT V15S32 = LLT::vector(15, 32);
136 const LLT V16S32 = LLT::vector(16, 32);
137
138 const LLT V2S64 = LLT::vector(2, 64);
139 const LLT V3S64 = LLT::vector(3, 64);
140 const LLT V4S64 = LLT::vector(4, 64);
141 const LLT V5S64 = LLT::vector(5, 64);
142 const LLT V6S64 = LLT::vector(6, 64);
143 const LLT V7S64 = LLT::vector(7, 64);
144 const LLT V8S64 = LLT::vector(8, 64);
145
146 std::initializer_list<LLT> AllS32Vectors =
147 {V2S32, V3S32, V4S32, V5S32, V6S32, V7S32, V8S32,
148 V9S32, V10S32, V11S32, V12S32, V13S32, V14S32, V15S32, V16S32};
149 std::initializer_list<LLT> AllS64Vectors =
150 {V2S64, V3S64, V4S64, V5S64, V6S64, V7S64, V8S64};
151
Matt Arsenault85803362018-03-17 15:17:41 +0000152 const LLT GlobalPtr = GetAddrSpacePtr(AMDGPUAS::GLOBAL_ADDRESS);
153 const LLT ConstantPtr = GetAddrSpacePtr(AMDGPUAS::CONSTANT_ADDRESS);
Matt Arsenaultf3bfb852019-07-19 22:28:44 +0000154 const LLT Constant32Ptr = GetAddrSpacePtr(AMDGPUAS::CONSTANT_ADDRESS_32BIT);
Matt Arsenault685d1e82018-03-17 15:17:45 +0000155 const LLT LocalPtr = GetAddrSpacePtr(AMDGPUAS::LOCAL_ADDRESS);
Matt Arsenaultf3bfb852019-07-19 22:28:44 +0000156 const LLT RegionPtr = GetAddrSpacePtr(AMDGPUAS::REGION_ADDRESS);
Matt Arsenault0da63502018-08-31 05:49:54 +0000157 const LLT FlatPtr = GetAddrSpacePtr(AMDGPUAS::FLAT_ADDRESS);
158 const LLT PrivatePtr = GetAddrSpacePtr(AMDGPUAS::PRIVATE_ADDRESS);
Matt Arsenault85803362018-03-17 15:17:41 +0000159
Matt Arsenault934e5342018-12-13 20:34:15 +0000160 const LLT CodePtr = FlatPtr;
161
Matt Arsenault9e5e8682019-02-14 22:24:28 +0000162 const std::initializer_list<LLT> AddrSpaces64 = {
163 GlobalPtr, ConstantPtr, FlatPtr
164 };
165
166 const std::initializer_list<LLT> AddrSpaces32 = {
Matt Arsenaultf3bfb852019-07-19 22:28:44 +0000167 LocalPtr, PrivatePtr, Constant32Ptr, RegionPtr
Matt Arsenault685d1e82018-03-17 15:17:45 +0000168 };
Tom Stellardca166212017-01-30 21:56:46 +0000169
Matt Arsenault40d1faf2019-07-01 17:35:53 +0000170 const std::initializer_list<LLT> FPTypesBase = {
171 S32, S64
172 };
173
174 const std::initializer_list<LLT> FPTypes16 = {
175 S32, S64, S16
176 };
177
Matt Arsenault6ce1b4f2019-07-10 16:31:19 +0000178 const std::initializer_list<LLT> FPTypesPK16 = {
179 S32, S64, S16, V2S16
180 };
181
Matt Arsenaultadc40ba2019-01-08 01:22:47 +0000182 setAction({G_BRCOND, S1}, Legal);
183
Matt Arsenault2e0ee472019-02-21 15:48:13 +0000184 // TODO: All multiples of 32, vectors of pointers, all v2s16 pairs, more
185 // elements for v3s16
186 getActionDefinitionsBuilder(G_PHI)
187 .legalFor({S32, S64, V2S16, V4S16, S1, S128, S256})
188 .legalFor(AllS32Vectors)
189 .legalFor(AllS64Vectors)
190 .legalFor(AddrSpaces64)
191 .legalFor(AddrSpaces32)
192 .clampScalar(0, S32, S256)
193 .widenScalarToNextPow2(0, 32)
Matt Arsenaultd3093c22019-02-28 00:16:32 +0000194 .clampMaxNumElements(0, S32, 16)
Matt Arsenault72bcf152019-02-28 00:01:05 +0000195 .moreElementsIf(isSmallOddVector(0), oneMoreElement(0))
Matt Arsenault2e0ee472019-02-21 15:48:13 +0000196 .legalIf(isPointer(0));
197
Matt Arsenaultef59cb62019-07-01 18:18:55 +0000198 if (ST.has16BitInsts()) {
199 getActionDefinitionsBuilder({G_ADD, G_SUB, G_MUL})
200 .legalFor({S32, S16})
201 .clampScalar(0, S16, S32)
202 .scalarize(0);
203 } else {
204 getActionDefinitionsBuilder({G_ADD, G_SUB, G_MUL})
205 .legalFor({S32})
206 .clampScalar(0, S32, S32)
207 .scalarize(0);
208 }
Matt Arsenault2e0ee472019-02-21 15:48:13 +0000209
Matt Arsenaultef59cb62019-07-01 18:18:55 +0000210 getActionDefinitionsBuilder({G_UMULH, G_SMULH})
Matt Arsenault5d622fb2019-01-25 03:23:04 +0000211 .legalFor({S32})
Matt Arsenault211e89d2019-01-27 00:52:51 +0000212 .clampScalar(0, S32, S32)
Matt Arsenault5d622fb2019-01-25 03:23:04 +0000213 .scalarize(0);
Matt Arsenault43398832018-12-20 01:35:49 +0000214
Matt Arsenault26a6c742019-01-26 23:47:07 +0000215 // Report legal for any types we can handle anywhere. For the cases only legal
216 // on the SALU, RegBankSelect will be able to re-legalize.
Matt Arsenault43398832018-12-20 01:35:49 +0000217 getActionDefinitionsBuilder({G_AND, G_OR, G_XOR})
Matt Arsenault22c4a142019-07-16 14:28:30 +0000218 .legalFor({S32, S1, S64, V2S32, S16, V2S16, V4S16})
Matt Arsenault26a6c742019-01-26 23:47:07 +0000219 .clampScalar(0, S32, S64)
Matt Arsenault26b7e852019-02-19 16:30:19 +0000220 .moreElementsIf(isSmallOddVector(0), oneMoreElement(0))
221 .fewerElementsIf(vectorWiderThan(0, 32), fewerEltsToSize64Vector(0))
Matt Arsenaultf4bfe4c2019-02-25 21:32:48 +0000222 .widenScalarToNextPow2(0)
Matt Arsenault26a6c742019-01-26 23:47:07 +0000223 .scalarize(0);
Tom Stellardee6e6452017-06-12 20:54:56 +0000224
Matt Arsenault68c668a2019-01-08 01:09:09 +0000225 getActionDefinitionsBuilder({G_UADDO, G_SADDO, G_USUBO, G_SSUBO,
226 G_UADDE, G_SADDE, G_USUBE, G_SSUBE})
Matt Arsenault4d475942019-01-26 23:44:51 +0000227 .legalFor({{S32, S1}})
228 .clampScalar(0, S32, S32);
Matt Arsenault2cc15b62019-01-08 01:03:58 +0000229
Matt Arsenault7ac79ed2019-01-20 19:45:18 +0000230 getActionDefinitionsBuilder(G_BITCAST)
231 .legalForCartesianProduct({S32, V2S16})
232 .legalForCartesianProduct({S64, V2S32, V4S16})
233 .legalForCartesianProduct({V2S64, V4S32})
234 // Don't worry about the size constraint.
235 .legalIf(all(isPointer(0), isPointer(1)));
Tom Stellardff63ee02017-06-19 13:15:45 +0000236
Matt Arsenault00ccd132019-02-12 14:54:55 +0000237 if (ST.has16BitInsts()) {
238 getActionDefinitionsBuilder(G_FCONSTANT)
239 .legalFor({S32, S64, S16})
240 .clampScalar(0, S16, S64);
241 } else {
242 getActionDefinitionsBuilder(G_FCONSTANT)
243 .legalFor({S32, S64})
244 .clampScalar(0, S32, S64);
245 }
Tom Stellardeebbfc22018-06-30 04:09:44 +0000246
Matt Arsenaultb3feccd2018-06-25 15:42:12 +0000247 getActionDefinitionsBuilder(G_IMPLICIT_DEF)
Matt Arsenaultd9141892019-02-07 19:10:15 +0000248 .legalFor({S1, S32, S64, V2S32, V4S32, V2S16, V4S16, GlobalPtr,
249 ConstantPtr, LocalPtr, FlatPtr, PrivatePtr})
Matt Arsenault18ec3822019-02-11 22:00:39 +0000250 .moreElementsIf(isSmallOddVector(0), oneMoreElement(0))
Matt Arsenaultd9141892019-02-07 19:10:15 +0000251 .clampScalarOrElt(0, S32, S512)
Matt Arsenault0f2debb2019-02-08 14:46:27 +0000252 .legalIf(isMultiple32(0))
Matt Arsenault82b10392019-02-25 20:46:06 +0000253 .widenScalarToNextPow2(0, 32)
254 .clampMaxNumElements(0, S32, 16);
Matt Arsenaultb3feccd2018-06-25 15:42:12 +0000255
Matt Arsenaultabdc4f22018-03-17 15:17:48 +0000256
Tom Stellarde0424122017-06-03 01:13:33 +0000257 // FIXME: i1 operands to intrinsics should always be legal, but other i1
258 // values may not be legal. We need to figure out how to distinguish
259 // between these two scenarios.
Matt Arsenault45991592019-01-18 21:33:50 +0000260 getActionDefinitionsBuilder(G_CONSTANT)
Matt Arsenault2065c942019-02-02 23:33:49 +0000261 .legalFor({S1, S32, S64, GlobalPtr,
262 LocalPtr, ConstantPtr, PrivatePtr, FlatPtr })
Matt Arsenault45991592019-01-18 21:33:50 +0000263 .clampScalar(0, S32, S64)
Matt Arsenault2065c942019-02-02 23:33:49 +0000264 .widenScalarToNextPow2(0)
265 .legalIf(isPointer(0));
Matt Arsenault06cbb272018-03-01 19:16:52 +0000266
Matt Arsenaultc94e26c2018-12-18 09:46:13 +0000267 setAction({G_FRAME_INDEX, PrivatePtr}, Legal);
268
Matt Arsenault93fdec72019-02-07 18:03:11 +0000269 auto &FPOpActions = getActionDefinitionsBuilder(
Matt Arsenault9dba67f2019-02-11 17:05:20 +0000270 { G_FADD, G_FMUL, G_FNEG, G_FABS, G_FMA, G_FCANONICALIZE})
Matt Arsenault93fdec72019-02-07 18:03:11 +0000271 .legalFor({S32, S64});
272
273 if (ST.has16BitInsts()) {
274 if (ST.hasVOP3PInsts())
275 FPOpActions.legalFor({S16, V2S16});
276 else
277 FPOpActions.legalFor({S16});
278 }
279
Matt Arsenault6ce1b4f2019-07-10 16:31:19 +0000280 auto &MinNumMaxNum = getActionDefinitionsBuilder({
281 G_FMINNUM, G_FMAXNUM, G_FMINNUM_IEEE, G_FMAXNUM_IEEE});
282
283 if (ST.hasVOP3PInsts()) {
284 MinNumMaxNum.customFor(FPTypesPK16)
285 .clampMaxNumElements(0, S16, 2)
286 .clampScalar(0, S16, S64)
287 .scalarize(0);
288 } else if (ST.has16BitInsts()) {
289 MinNumMaxNum.customFor(FPTypes16)
290 .clampScalar(0, S16, S64)
291 .scalarize(0);
292 } else {
293 MinNumMaxNum.customFor(FPTypesBase)
294 .clampScalar(0, S32, S64)
295 .scalarize(0);
296 }
297
298 // TODO: Implement
299 getActionDefinitionsBuilder({G_FMINIMUM, G_FMAXIMUM}).lower();
300
Matt Arsenault93fdec72019-02-07 18:03:11 +0000301 if (ST.hasVOP3PInsts())
302 FPOpActions.clampMaxNumElements(0, S16, 2);
303 FPOpActions
304 .scalarize(0)
305 .clampScalar(0, ST.has16BitInsts() ? S16 : S32, S64);
Tom Stellardd0c6cf22017-10-27 23:57:41 +0000306
Matt Arsenaultc0f75692019-02-07 18:14:39 +0000307 if (ST.has16BitInsts()) {
308 getActionDefinitionsBuilder(G_FSQRT)
309 .legalFor({S32, S64, S16})
310 .scalarize(0)
311 .clampScalar(0, S16, S64);
312 } else {
313 getActionDefinitionsBuilder(G_FSQRT)
314 .legalFor({S32, S64})
315 .scalarize(0)
316 .clampScalar(0, S32, S64);
317 }
318
Matt Arsenaultdff33c32018-12-20 00:37:02 +0000319 getActionDefinitionsBuilder(G_FPTRUNC)
Matt Arsenaulte6cebd02019-01-25 04:37:33 +0000320 .legalFor({{S32, S64}, {S16, S32}})
321 .scalarize(0);
Matt Arsenaultdff33c32018-12-20 00:37:02 +0000322
Matt Arsenault24563ef2019-01-20 18:34:24 +0000323 getActionDefinitionsBuilder(G_FPEXT)
324 .legalFor({{S64, S32}, {S32, S16}})
Matt Arsenaultca676342019-01-25 02:36:32 +0000325 .lowerFor({{S64, S16}}) // FIXME: Implement
326 .scalarize(0);
Matt Arsenault24563ef2019-01-20 18:34:24 +0000327
Matt Arsenaultb1843e12019-07-09 23:34:29 +0000328 // TODO: Verify V_BFI_B32 is generated from expanded bit ops.
329 getActionDefinitionsBuilder(G_FCOPYSIGN).lower();
Matt Arsenault1448f562019-05-17 12:19:52 +0000330
Matt Arsenault745fd9f2019-01-20 19:10:31 +0000331 getActionDefinitionsBuilder(G_FSUB)
Matt Arsenaultaebb2ee2019-01-22 20:14:29 +0000332 // Use actual fsub instruction
333 .legalFor({S32})
334 // Must use fadd + fneg
335 .lowerFor({S64, S16, V2S16})
Matt Arsenault990f5072019-01-25 00:51:00 +0000336 .scalarize(0)
Matt Arsenaultaebb2ee2019-01-22 20:14:29 +0000337 .clampScalar(0, S32, S64);
Matt Arsenaulte01e7c82018-12-18 09:19:03 +0000338
Matt Arsenault24563ef2019-01-20 18:34:24 +0000339 getActionDefinitionsBuilder({G_SEXT, G_ZEXT, G_ANYEXT})
Matt Arsenault46ffe682019-01-20 19:28:20 +0000340 .legalFor({{S64, S32}, {S32, S16}, {S64, S16},
Matt Arsenaultca676342019-01-25 02:36:32 +0000341 {S32, S1}, {S64, S1}, {S16, S1},
342 // FIXME: Hack
Matt Arsenaultf4bfe4c2019-02-25 21:32:48 +0000343 {S64, LLT::scalar(33)},
Matt Arsenault888aa5d2019-02-03 00:07:33 +0000344 {S32, S8}, {S128, S32}, {S128, S64}, {S32, LLT::scalar(24)}})
Matt Arsenaultca676342019-01-25 02:36:32 +0000345 .scalarize(0);
Matt Arsenaultf38f4832018-12-13 08:23:51 +0000346
Matt Arsenaultfb671642019-01-22 00:20:17 +0000347 getActionDefinitionsBuilder({G_SITOFP, G_UITOFP})
Matt Arsenaulte6cebd02019-01-25 04:37:33 +0000348 .legalFor({{S32, S32}, {S64, S32}})
Matt Arsenault02b5ca82019-05-17 23:05:13 +0000349 .lowerFor({{S32, S64}})
Matt Arsenault2f292202019-05-17 23:05:18 +0000350 .customFor({{S64, S64}})
Matt Arsenaulte6cebd02019-01-25 04:37:33 +0000351 .scalarize(0);
Matt Arsenaultdd022ce2018-03-01 19:04:25 +0000352
Matt Arsenaultfb671642019-01-22 00:20:17 +0000353 getActionDefinitionsBuilder({G_FPTOSI, G_FPTOUI})
Matt Arsenaulte6cebd02019-01-25 04:37:33 +0000354 .legalFor({{S32, S32}, {S32, S64}})
355 .scalarize(0);
Tom Stellard33445762018-02-07 04:47:59 +0000356
Matt Arsenault6aebcd52019-05-17 12:20:01 +0000357 getActionDefinitionsBuilder(G_INTRINSIC_ROUND)
Matt Arsenault2e5f9002019-01-27 00:12:21 +0000358 .legalFor({S32, S64})
359 .scalarize(0);
Matt Arsenaultf4c21c52018-12-21 03:14:45 +0000360
Matt Arsenault6aafc5e2019-05-17 12:19:57 +0000361 if (ST.getGeneration() >= AMDGPUSubtarget::SEA_ISLANDS) {
Matt Arsenaulta510b572019-05-17 12:20:05 +0000362 getActionDefinitionsBuilder({G_INTRINSIC_TRUNC, G_FCEIL, G_FRINT})
Matt Arsenault6aafc5e2019-05-17 12:19:57 +0000363 .legalFor({S32, S64})
364 .clampScalar(0, S32, S64)
365 .scalarize(0);
366 } else {
Matt Arsenaulta510b572019-05-17 12:20:05 +0000367 getActionDefinitionsBuilder({G_INTRINSIC_TRUNC, G_FCEIL, G_FRINT})
Matt Arsenault6aafc5e2019-05-17 12:19:57 +0000368 .legalFor({S32})
369 .customFor({S64})
370 .clampScalar(0, S32, S64)
371 .scalarize(0);
372 }
Tom Stellardca166212017-01-30 21:56:46 +0000373
Matt Arsenault9e5e8682019-02-14 22:24:28 +0000374 getActionDefinitionsBuilder(G_GEP)
375 .legalForCartesianProduct(AddrSpaces64, {S64})
376 .legalForCartesianProduct(AddrSpaces32, {S32})
377 .scalarize(0);
Matt Arsenault3b9a82f2019-01-25 04:54:00 +0000378
Matt Arsenault934e5342018-12-13 20:34:15 +0000379 setAction({G_BLOCK_ADDR, CodePtr}, Legal);
380
Matt Arsenault8b8eee52019-07-09 14:10:43 +0000381 auto &CmpBuilder =
382 getActionDefinitionsBuilder(G_ICMP)
Matt Arsenault58f9d3d2019-02-02 23:35:15 +0000383 .legalForCartesianProduct(
384 {S1}, {S32, S64, GlobalPtr, LocalPtr, ConstantPtr, PrivatePtr, FlatPtr})
Matt Arsenault8b8eee52019-07-09 14:10:43 +0000385 .legalFor({{S1, S32}, {S1, S64}});
386 if (ST.has16BitInsts()) {
387 CmpBuilder.legalFor({{S1, S16}});
388 }
389
390 CmpBuilder
Matt Arsenault58f9d3d2019-02-02 23:35:15 +0000391 .widenScalarToNextPow2(1)
392 .clampScalar(1, S32, S64)
393 .scalarize(0)
394 .legalIf(all(typeIs(0, S1), isPointer(1)));
395
396 getActionDefinitionsBuilder(G_FCMP)
Matt Arsenault40d1faf2019-07-01 17:35:53 +0000397 .legalForCartesianProduct({S1}, ST.has16BitInsts() ? FPTypes16 : FPTypesBase)
Matt Arsenault1b1e6852019-01-25 02:59:34 +0000398 .widenScalarToNextPow2(1)
399 .clampScalar(1, S32, S64)
Matt Arsenaultded2f822019-01-26 23:54:53 +0000400 .scalarize(0);
Matt Arsenault1b1e6852019-01-25 02:59:34 +0000401
Matt Arsenault95fd95c2019-01-25 04:03:38 +0000402 // FIXME: fexp, flog2, flog10 needs to be custom lowered.
403 getActionDefinitionsBuilder({G_FPOW, G_FEXP, G_FEXP2,
404 G_FLOG, G_FLOG2, G_FLOG10})
405 .legalFor({S32})
406 .scalarize(0);
Tom Stellard8cd60a52017-06-06 14:16:50 +0000407
Matt Arsenaultd5684f72019-01-31 02:09:57 +0000408 // The 64-bit versions produce 32-bit results, but only on the SALU.
409 getActionDefinitionsBuilder({G_CTLZ, G_CTLZ_ZERO_UNDEF,
410 G_CTTZ, G_CTTZ_ZERO_UNDEF,
411 G_CTPOP})
412 .legalFor({{S32, S32}, {S32, S64}})
413 .clampScalar(0, S32, S32)
Matt Arsenault75e30c42019-02-20 16:42:52 +0000414 .clampScalar(1, S32, S64)
Matt Arsenaultb10fa8d2019-02-21 15:22:20 +0000415 .scalarize(0)
416 .widenScalarToNextPow2(0, 32)
417 .widenScalarToNextPow2(1, 32);
Matt Arsenaultd5684f72019-01-31 02:09:57 +0000418
Matt Arsenaultd1bfc8d2019-01-31 02:34:03 +0000419 // TODO: Expand for > s32
420 getActionDefinitionsBuilder(G_BSWAP)
421 .legalFor({S32})
422 .clampScalar(0, S32, S32)
423 .scalarize(0);
Matt Arsenaultd5684f72019-01-31 02:09:57 +0000424
Matt Arsenault0f3ba442019-05-23 17:58:48 +0000425 if (ST.has16BitInsts()) {
426 if (ST.hasVOP3PInsts()) {
427 getActionDefinitionsBuilder({G_SMIN, G_SMAX, G_UMIN, G_UMAX})
428 .legalFor({S32, S16, V2S16})
429 .moreElementsIf(isSmallOddVector(0), oneMoreElement(0))
430 .clampMaxNumElements(0, S16, 2)
431 .clampScalar(0, S16, S32)
432 .widenScalarToNextPow2(0)
433 .scalarize(0);
434 } else {
435 getActionDefinitionsBuilder({G_SMIN, G_SMAX, G_UMIN, G_UMAX})
436 .legalFor({S32, S16})
437 .widenScalarToNextPow2(0)
438 .clampScalar(0, S16, S32)
439 .scalarize(0);
440 }
441 } else {
442 getActionDefinitionsBuilder({G_SMIN, G_SMAX, G_UMIN, G_UMAX})
443 .legalFor({S32})
444 .clampScalar(0, S32, S32)
445 .widenScalarToNextPow2(0)
446 .scalarize(0);
447 }
Matt Arsenaultf38f4832018-12-13 08:23:51 +0000448
Matt Arsenaultcbaada62019-02-02 23:29:55 +0000449 auto smallerThan = [](unsigned TypeIdx0, unsigned TypeIdx1) {
450 return [=](const LegalityQuery &Query) {
451 return Query.Types[TypeIdx0].getSizeInBits() <
452 Query.Types[TypeIdx1].getSizeInBits();
453 };
454 };
455
456 auto greaterThan = [](unsigned TypeIdx0, unsigned TypeIdx1) {
457 return [=](const LegalityQuery &Query) {
458 return Query.Types[TypeIdx0].getSizeInBits() >
459 Query.Types[TypeIdx1].getSizeInBits();
460 };
461 };
462
Tom Stellard7c650782018-10-05 04:34:09 +0000463 getActionDefinitionsBuilder(G_INTTOPTR)
Matt Arsenaultcbaada62019-02-02 23:29:55 +0000464 // List the common cases
Matt Arsenault9e5e8682019-02-14 22:24:28 +0000465 .legalForCartesianProduct(AddrSpaces64, {S64})
466 .legalForCartesianProduct(AddrSpaces32, {S32})
Matt Arsenaultcbaada62019-02-02 23:29:55 +0000467 .scalarize(0)
468 // Accept any address space as long as the size matches
469 .legalIf(sameSize(0, 1))
470 .widenScalarIf(smallerThan(1, 0),
471 [](const LegalityQuery &Query) {
472 return std::make_pair(1, LLT::scalar(Query.Types[0].getSizeInBits()));
473 })
474 .narrowScalarIf(greaterThan(1, 0),
475 [](const LegalityQuery &Query) {
476 return std::make_pair(1, LLT::scalar(Query.Types[0].getSizeInBits()));
477 });
Matt Arsenault85803362018-03-17 15:17:41 +0000478
Matt Arsenaultf38f4832018-12-13 08:23:51 +0000479 getActionDefinitionsBuilder(G_PTRTOINT)
Matt Arsenaultcbaada62019-02-02 23:29:55 +0000480 // List the common cases
Matt Arsenault9e5e8682019-02-14 22:24:28 +0000481 .legalForCartesianProduct(AddrSpaces64, {S64})
482 .legalForCartesianProduct(AddrSpaces32, {S32})
Matt Arsenaultcbaada62019-02-02 23:29:55 +0000483 .scalarize(0)
484 // Accept any address space as long as the size matches
485 .legalIf(sameSize(0, 1))
486 .widenScalarIf(smallerThan(0, 1),
487 [](const LegalityQuery &Query) {
488 return std::make_pair(0, LLT::scalar(Query.Types[1].getSizeInBits()));
489 })
490 .narrowScalarIf(
491 greaterThan(0, 1),
492 [](const LegalityQuery &Query) {
493 return std::make_pair(0, LLT::scalar(Query.Types[1].getSizeInBits()));
494 });
Matt Arsenaultf38f4832018-12-13 08:23:51 +0000495
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000496 if (ST.hasFlatAddressSpace()) {
497 getActionDefinitionsBuilder(G_ADDRSPACE_CAST)
498 .scalarize(0)
499 .custom();
500 }
501
Matt Arsenault35c96592019-07-16 18:05:29 +0000502 // TODO: Should load to s16 be legal? Most loads extend to 32-bits, but we
503 // handle some operations by just promoting the register during
504 // selection. There are also d16 loads on GFX9+ which preserve the high bits.
Matt Arsenault85803362018-03-17 15:17:41 +0000505 getActionDefinitionsBuilder({G_LOAD, G_STORE})
Matt Arsenault18619af2019-01-29 18:13:02 +0000506 .narrowScalarIf([](const LegalityQuery &Query) {
507 unsigned Size = Query.Types[0].getSizeInBits();
508 unsigned MemSize = Query.MMODescrs[0].SizeInBits;
509 return (Size > 32 && MemSize < Size);
510 },
511 [](const LegalityQuery &Query) {
512 return std::make_pair(0, LLT::scalar(32));
513 })
Matt Arsenault7bedceb2019-08-01 01:44:22 +0000514 .moreElementsIf(isSmallOddVector(0), oneMoreElement(0))
Matt Arsenault9e8e8c62019-07-01 18:49:01 +0000515 .fewerElementsIf([=](const LegalityQuery &Query) {
Matt Arsenault045bc9a2019-01-30 02:35:38 +0000516 unsigned MemSize = Query.MMODescrs[0].SizeInBits;
Matt Arsenaultc7bce732019-01-31 02:46:05 +0000517 return (MemSize == 96) &&
518 Query.Types[0].isVector() &&
Matt Arsenaulte4c2e9b2019-06-19 23:54:58 +0000519 !ST.hasDwordx3LoadStores();
Matt Arsenault045bc9a2019-01-30 02:35:38 +0000520 },
521 [=](const LegalityQuery &Query) {
522 return std::make_pair(0, V2S32);
523 })
Matt Arsenault9e8e8c62019-07-01 18:49:01 +0000524 .legalIf([=](const LegalityQuery &Query) {
Matt Arsenault85803362018-03-17 15:17:41 +0000525 const LLT &Ty0 = Query.Types[0];
526
Matt Arsenault18619af2019-01-29 18:13:02 +0000527 unsigned Size = Ty0.getSizeInBits();
528 unsigned MemSize = Query.MMODescrs[0].SizeInBits;
Matt Arsenaulteb2603c2019-02-02 23:39:13 +0000529 if (Size < 32 || (Size > 32 && MemSize < Size))
Matt Arsenault18619af2019-01-29 18:13:02 +0000530 return false;
531
532 if (Ty0.isVector() && Size != MemSize)
533 return false;
534
Matt Arsenault85803362018-03-17 15:17:41 +0000535 // TODO: Decompose private loads into 4-byte components.
536 // TODO: Illegal flat loads on SI
Matt Arsenault18619af2019-01-29 18:13:02 +0000537 switch (MemSize) {
538 case 8:
539 case 16:
540 return Size == 32;
Matt Arsenault85803362018-03-17 15:17:41 +0000541 case 32:
542 case 64:
543 case 128:
544 return true;
545
546 case 96:
Matt Arsenaulte4c2e9b2019-06-19 23:54:58 +0000547 return ST.hasDwordx3LoadStores();
Matt Arsenault85803362018-03-17 15:17:41 +0000548
549 case 256:
550 case 512:
Tom Stellardd0ba79f2019-07-10 00:22:41 +0000551 // TODO: Possibly support loads of i256 and i512 . This will require
552 // adding i256 and i512 types to MVT in order for to be able to use
553 // TableGen.
554 // TODO: Add support for other vector types, this will require
555 // defining more value mappings for the new types.
556 return Ty0.isVector() && (Ty0.getScalarType().getSizeInBits() == 32 ||
557 Ty0.getScalarType().getSizeInBits() == 64);
558
Matt Arsenault85803362018-03-17 15:17:41 +0000559 default:
560 return false;
561 }
Matt Arsenault18619af2019-01-29 18:13:02 +0000562 })
563 .clampScalar(0, S32, S64);
Matt Arsenault85803362018-03-17 15:17:41 +0000564
565
Matt Arsenault530d05e2019-02-14 22:41:09 +0000566 // FIXME: Handle alignment requirements.
Matt Arsenault6614f852019-01-22 19:02:10 +0000567 auto &ExtLoads = getActionDefinitionsBuilder({G_SEXTLOAD, G_ZEXTLOAD})
Matt Arsenault530d05e2019-02-14 22:41:09 +0000568 .legalForTypesWithMemDesc({
569 {S32, GlobalPtr, 8, 8},
570 {S32, GlobalPtr, 16, 8},
571 {S32, LocalPtr, 8, 8},
572 {S32, LocalPtr, 16, 8},
573 {S32, PrivatePtr, 8, 8},
574 {S32, PrivatePtr, 16, 8}});
Matt Arsenault6614f852019-01-22 19:02:10 +0000575 if (ST.hasFlatAddressSpace()) {
Matt Arsenault530d05e2019-02-14 22:41:09 +0000576 ExtLoads.legalForTypesWithMemDesc({{S32, FlatPtr, 8, 8},
577 {S32, FlatPtr, 16, 8}});
Matt Arsenault6614f852019-01-22 19:02:10 +0000578 }
579
580 ExtLoads.clampScalar(0, S32, S32)
581 .widenScalarToNextPow2(0)
582 .unsupportedIfMemSizeNotPow2()
583 .lower();
584
Matt Arsenault36d40922018-12-20 00:33:49 +0000585 auto &Atomics = getActionDefinitionsBuilder(
586 {G_ATOMICRMW_XCHG, G_ATOMICRMW_ADD, G_ATOMICRMW_SUB,
587 G_ATOMICRMW_AND, G_ATOMICRMW_OR, G_ATOMICRMW_XOR,
588 G_ATOMICRMW_MAX, G_ATOMICRMW_MIN, G_ATOMICRMW_UMAX,
589 G_ATOMICRMW_UMIN, G_ATOMIC_CMPXCHG})
590 .legalFor({{S32, GlobalPtr}, {S32, LocalPtr},
591 {S64, GlobalPtr}, {S64, LocalPtr}});
592 if (ST.hasFlatAddressSpace()) {
593 Atomics.legalFor({{S32, FlatPtr}, {S64, FlatPtr}});
594 }
Tom Stellardca166212017-01-30 21:56:46 +0000595
Matt Arsenault26cb53b2019-08-01 03:33:15 +0000596 getActionDefinitionsBuilder(G_ATOMICRMW_FADD)
597 .legalFor({{S32, LocalPtr}});
598
Matt Arsenault96e47012019-01-18 21:42:55 +0000599 // TODO: Pointer types, any 32-bit or 64-bit vector
600 getActionDefinitionsBuilder(G_SELECT)
Matt Arsenaultfdf36722019-07-01 15:42:47 +0000601 .legalForCartesianProduct({S32, S64, S16, V2S32, V2S16, V4S16,
Matt Arsenault10547232019-02-04 14:04:52 +0000602 GlobalPtr, LocalPtr, FlatPtr, PrivatePtr,
603 LLT::vector(2, LocalPtr), LLT::vector(2, PrivatePtr)}, {S1})
Matt Arsenaultfdf36722019-07-01 15:42:47 +0000604 .clampScalar(0, S16, S64)
Matt Arsenaultb4c95b32019-02-19 17:03:09 +0000605 .moreElementsIf(isSmallOddVector(0), oneMoreElement(0))
606 .fewerElementsIf(numElementsNotEven(0), scalarize(0))
Matt Arsenaultdc6c7852019-01-30 04:19:31 +0000607 .scalarize(1)
Matt Arsenault2491f822019-02-02 23:31:50 +0000608 .clampMaxNumElements(0, S32, 2)
609 .clampMaxNumElements(0, LocalPtr, 2)
610 .clampMaxNumElements(0, PrivatePtr, 2)
Matt Arsenaultb4c95b32019-02-19 17:03:09 +0000611 .scalarize(0)
Matt Arsenault4ed6cca2019-04-05 14:03:04 +0000612 .widenScalarToNextPow2(0)
Matt Arsenault2491f822019-02-02 23:31:50 +0000613 .legalIf(all(isPointer(0), typeIs(1, S1)));
Tom Stellard2860a422017-06-07 13:54:51 +0000614
Matt Arsenault4c5e8f512019-01-22 22:00:19 +0000615 // TODO: Only the low 4/5/6 bits of the shift amount are observed, so we can
616 // be more flexible with the shift amount type.
617 auto &Shifts = getActionDefinitionsBuilder({G_SHL, G_LSHR, G_ASHR})
618 .legalFor({{S32, S32}, {S64, S32}});
Matt Arsenaultf6cab162019-01-30 03:36:25 +0000619 if (ST.has16BitInsts()) {
Matt Arsenaultc83b8232019-02-07 17:38:00 +0000620 if (ST.hasVOP3PInsts()) {
621 Shifts.legalFor({{S16, S32}, {S16, S16}, {V2S16, V2S16}})
622 .clampMaxNumElements(0, S16, 2);
623 } else
624 Shifts.legalFor({{S16, S32}, {S16, S16}});
Matt Arsenaultfbec8fe2019-02-07 19:37:44 +0000625
626 Shifts.clampScalar(1, S16, S32);
Matt Arsenaultf6cab162019-01-30 03:36:25 +0000627 Shifts.clampScalar(0, S16, S64);
Matt Arsenaultb0a22702019-02-08 15:06:24 +0000628 Shifts.widenScalarToNextPow2(0, 16);
Matt Arsenaultfbec8fe2019-02-07 19:37:44 +0000629 } else {
630 // Make sure we legalize the shift amount type first, as the general
631 // expansion for the shifted type will produce much worse code if it hasn't
632 // been truncated already.
633 Shifts.clampScalar(1, S32, S32);
Matt Arsenault4c5e8f512019-01-22 22:00:19 +0000634 Shifts.clampScalar(0, S32, S64);
Matt Arsenaultb0a22702019-02-08 15:06:24 +0000635 Shifts.widenScalarToNextPow2(0, 32);
Matt Arsenaultfbec8fe2019-02-07 19:37:44 +0000636 }
637 Shifts.scalarize(0);
Tom Stellardca166212017-01-30 21:56:46 +0000638
Matt Arsenault7b9ed892018-03-12 13:35:53 +0000639 for (unsigned Op : {G_EXTRACT_VECTOR_ELT, G_INSERT_VECTOR_ELT}) {
Matt Arsenault63786292019-01-22 20:38:15 +0000640 unsigned VecTypeIdx = Op == G_EXTRACT_VECTOR_ELT ? 1 : 0;
641 unsigned EltTypeIdx = Op == G_EXTRACT_VECTOR_ELT ? 0 : 1;
642 unsigned IdxTypeIdx = 2;
643
Matt Arsenault7b9ed892018-03-12 13:35:53 +0000644 getActionDefinitionsBuilder(Op)
Matt Arsenaultb0e04c02019-07-15 19:40:59 +0000645 .customIf([=](const LegalityQuery &Query) {
Matt Arsenault90bdfb32019-07-15 18:31:10 +0000646 const LLT EltTy = Query.Types[EltTypeIdx];
647 const LLT VecTy = Query.Types[VecTypeIdx];
648 const LLT IdxTy = Query.Types[IdxTypeIdx];
649 return (EltTy.getSizeInBits() == 16 ||
650 EltTy.getSizeInBits() % 32 == 0) &&
651 VecTy.getSizeInBits() % 32 == 0 &&
652 VecTy.getSizeInBits() <= 512 &&
653 IdxTy.getSizeInBits() == 32;
Matt Arsenault63786292019-01-22 20:38:15 +0000654 })
655 .clampScalar(EltTypeIdx, S32, S64)
656 .clampScalar(VecTypeIdx, S32, S64)
657 .clampScalar(IdxTypeIdx, S32, S32);
Matt Arsenault7b9ed892018-03-12 13:35:53 +0000658 }
659
Matt Arsenault63786292019-01-22 20:38:15 +0000660 getActionDefinitionsBuilder(G_EXTRACT_VECTOR_ELT)
661 .unsupportedIf([=](const LegalityQuery &Query) {
662 const LLT &EltTy = Query.Types[1].getElementType();
663 return Query.Types[0] != EltTy;
664 });
665
Matt Arsenaultc4d07552019-02-20 16:11:22 +0000666 for (unsigned Op : {G_EXTRACT, G_INSERT}) {
667 unsigned BigTyIdx = Op == G_EXTRACT ? 1 : 0;
668 unsigned LitTyIdx = Op == G_EXTRACT ? 0 : 1;
669
670 // FIXME: Doesn't handle extract of illegal sizes.
671 getActionDefinitionsBuilder(Op)
Matt Arsenault91be65b2019-02-07 17:25:51 +0000672 .legalIf([=](const LegalityQuery &Query) {
Matt Arsenaultc4d07552019-02-20 16:11:22 +0000673 const LLT BigTy = Query.Types[BigTyIdx];
674 const LLT LitTy = Query.Types[LitTyIdx];
675 return (BigTy.getSizeInBits() % 32 == 0) &&
676 (LitTy.getSizeInBits() % 16 == 0);
677 })
Matt Arsenault91be65b2019-02-07 17:25:51 +0000678 .widenScalarIf(
Matt Arsenaultc4d07552019-02-20 16:11:22 +0000679 [=](const LegalityQuery &Query) {
680 const LLT BigTy = Query.Types[BigTyIdx];
681 return (BigTy.getScalarSizeInBits() < 16);
682 },
683 LegalizeMutations::widenScalarOrEltToNextPow2(BigTyIdx, 16))
684 .widenScalarIf(
685 [=](const LegalityQuery &Query) {
686 const LLT LitTy = Query.Types[LitTyIdx];
687 return (LitTy.getScalarSizeInBits() < 16);
688 },
689 LegalizeMutations::widenScalarOrEltToNextPow2(LitTyIdx, 16))
Matt Arsenault2b6f76f2019-04-22 15:22:46 +0000690 .moreElementsIf(isSmallOddVector(BigTyIdx), oneMoreElement(BigTyIdx))
691 .widenScalarToNextPow2(BigTyIdx, 32);
692
Matt Arsenaultc4d07552019-02-20 16:11:22 +0000693 }
Matt Arsenault71272e62018-03-05 16:25:15 +0000694
Amara Emerson5ec14602018-12-10 18:44:58 +0000695 getActionDefinitionsBuilder(G_BUILD_VECTOR)
Matt Arsenaultaebb2ee2019-01-22 20:14:29 +0000696 .legalForCartesianProduct(AllS32Vectors, {S32})
697 .legalForCartesianProduct(AllS64Vectors, {S64})
698 .clampNumElements(0, V16S32, V16S32)
699 .clampNumElements(0, V2S64, V8S64)
700 .minScalarSameAs(1, 0)
Matt Arsenault3f1a3452019-07-09 22:48:04 +0000701 .legalIf(isRegisterType(0))
702 .minScalarOrElt(0, S32);
Matt Arsenaultbee2ad72018-12-21 03:03:11 +0000703
Matt Arsenaulta1515d22019-01-08 01:30:02 +0000704 getActionDefinitionsBuilder(G_CONCAT_VECTORS)
Matt Arsenault4dd57552019-07-09 14:17:31 +0000705 .legalIf(isRegisterType(0));
Matt Arsenaulta1515d22019-01-08 01:30:02 +0000706
Matt Arsenault690645b2019-08-13 16:09:07 +0000707 // TODO: Don't fully scalarize v2s16 pieces
708 getActionDefinitionsBuilder(G_SHUFFLE_VECTOR).lower();
709
Matt Arsenault503afda2018-03-12 13:35:43 +0000710 // Merge/Unmerge
711 for (unsigned Op : {G_MERGE_VALUES, G_UNMERGE_VALUES}) {
712 unsigned BigTyIdx = Op == G_MERGE_VALUES ? 0 : 1;
713 unsigned LitTyIdx = Op == G_MERGE_VALUES ? 1 : 0;
714
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000715 auto notValidElt = [=](const LegalityQuery &Query, unsigned TypeIdx) {
716 const LLT &Ty = Query.Types[TypeIdx];
717 if (Ty.isVector()) {
718 const LLT &EltTy = Ty.getElementType();
719 if (EltTy.getSizeInBits() < 8 || EltTy.getSizeInBits() > 64)
720 return true;
721 if (!isPowerOf2_32(EltTy.getSizeInBits()))
722 return true;
723 }
724 return false;
725 };
726
Matt Arsenault503afda2018-03-12 13:35:43 +0000727 getActionDefinitionsBuilder(Op)
Matt Arsenaultd8d193d2019-01-29 23:17:35 +0000728 .widenScalarToNextPow2(LitTyIdx, /*Min*/ 16)
729 // Clamp the little scalar to s8-s256 and make it a power of 2. It's not
730 // worth considering the multiples of 64 since 2*192 and 2*384 are not
731 // valid.
732 .clampScalar(LitTyIdx, S16, S256)
733 .widenScalarToNextPow2(LitTyIdx, /*Min*/ 32)
734
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000735 // Break up vectors with weird elements into scalars
736 .fewerElementsIf(
737 [=](const LegalityQuery &Query) { return notValidElt(Query, 0); },
Matt Arsenault990f5072019-01-25 00:51:00 +0000738 scalarize(0))
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000739 .fewerElementsIf(
740 [=](const LegalityQuery &Query) { return notValidElt(Query, 1); },
Matt Arsenault990f5072019-01-25 00:51:00 +0000741 scalarize(1))
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000742 .clampScalar(BigTyIdx, S32, S512)
Matt Arsenaultd9d30a42019-08-01 19:10:05 +0000743 .lowerFor({{S16, V2S16}})
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000744 .widenScalarIf(
745 [=](const LegalityQuery &Query) {
746 const LLT &Ty = Query.Types[BigTyIdx];
747 return !isPowerOf2_32(Ty.getSizeInBits()) &&
748 Ty.getSizeInBits() % 16 != 0;
749 },
750 [=](const LegalityQuery &Query) {
751 // Pick the next power of 2, or a multiple of 64 over 128.
752 // Whichever is smaller.
753 const LLT &Ty = Query.Types[BigTyIdx];
754 unsigned NewSizeInBits = 1 << Log2_32_Ceil(Ty.getSizeInBits() + 1);
755 if (NewSizeInBits >= 256) {
756 unsigned RoundedTo = alignTo<64>(Ty.getSizeInBits() + 1);
757 if (RoundedTo < NewSizeInBits)
758 NewSizeInBits = RoundedTo;
759 }
760 return std::make_pair(BigTyIdx, LLT::scalar(NewSizeInBits));
761 })
Matt Arsenault503afda2018-03-12 13:35:43 +0000762 .legalIf([=](const LegalityQuery &Query) {
763 const LLT &BigTy = Query.Types[BigTyIdx];
764 const LLT &LitTy = Query.Types[LitTyIdx];
Matt Arsenaultff6a9a22019-01-20 18:40:36 +0000765
766 if (BigTy.isVector() && BigTy.getSizeInBits() < 32)
767 return false;
768 if (LitTy.isVector() && LitTy.getSizeInBits() < 32)
769 return false;
770
771 return BigTy.getSizeInBits() % 16 == 0 &&
772 LitTy.getSizeInBits() % 16 == 0 &&
Matt Arsenault503afda2018-03-12 13:35:43 +0000773 BigTy.getSizeInBits() <= 512;
774 })
775 // Any vectors left are the wrong size. Scalarize them.
Matt Arsenault990f5072019-01-25 00:51:00 +0000776 .scalarize(0)
777 .scalarize(1);
Matt Arsenault503afda2018-03-12 13:35:43 +0000778 }
779
Daniel Sanderse9a57c22019-08-09 21:11:20 +0000780 getActionDefinitionsBuilder(G_SEXT_INREG).lower();
781
Tom Stellardca166212017-01-30 21:56:46 +0000782 computeTables();
Roman Tereshin76c29c62018-05-31 16:16:48 +0000783 verify(*ST.getInstrInfo());
Tom Stellardca166212017-01-30 21:56:46 +0000784}
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000785
786bool AMDGPULegalizerInfo::legalizeCustom(MachineInstr &MI,
787 MachineRegisterInfo &MRI,
788 MachineIRBuilder &MIRBuilder,
789 GISelChangeObserver &Observer) const {
790 switch (MI.getOpcode()) {
791 case TargetOpcode::G_ADDRSPACE_CAST:
792 return legalizeAddrSpaceCast(MI, MRI, MIRBuilder);
Matt Arsenault6aafc5e2019-05-17 12:19:57 +0000793 case TargetOpcode::G_FRINT:
794 return legalizeFrint(MI, MRI, MIRBuilder);
Matt Arsenaulta510b572019-05-17 12:20:05 +0000795 case TargetOpcode::G_FCEIL:
796 return legalizeFceil(MI, MRI, MIRBuilder);
Matt Arsenault6aebcd52019-05-17 12:20:01 +0000797 case TargetOpcode::G_INTRINSIC_TRUNC:
798 return legalizeIntrinsicTrunc(MI, MRI, MIRBuilder);
Matt Arsenault2f292202019-05-17 23:05:18 +0000799 case TargetOpcode::G_SITOFP:
800 return legalizeITOFP(MI, MRI, MIRBuilder, true);
801 case TargetOpcode::G_UITOFP:
802 return legalizeITOFP(MI, MRI, MIRBuilder, false);
Matt Arsenault6ce1b4f2019-07-10 16:31:19 +0000803 case TargetOpcode::G_FMINNUM:
804 case TargetOpcode::G_FMAXNUM:
805 case TargetOpcode::G_FMINNUM_IEEE:
806 case TargetOpcode::G_FMAXNUM_IEEE:
807 return legalizeMinNumMaxNum(MI, MRI, MIRBuilder);
Matt Arsenaultb0e04c02019-07-15 19:40:59 +0000808 case TargetOpcode::G_EXTRACT_VECTOR_ELT:
809 return legalizeExtractVectorElt(MI, MRI, MIRBuilder);
810 case TargetOpcode::G_INSERT_VECTOR_ELT:
Matt Arsenault6ed315f2019-07-15 19:43:04 +0000811 return legalizeInsertVectorElt(MI, MRI, MIRBuilder);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000812 default:
813 return false;
814 }
815
816 llvm_unreachable("expected switch to return");
817}
818
Matt Arsenault1178dc32019-06-28 01:16:46 +0000819Register AMDGPULegalizerInfo::getSegmentAperture(
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000820 unsigned AS,
821 MachineRegisterInfo &MRI,
822 MachineIRBuilder &MIRBuilder) const {
823 MachineFunction &MF = MIRBuilder.getMF();
824 const GCNSubtarget &ST = MF.getSubtarget<GCNSubtarget>();
825 const LLT S32 = LLT::scalar(32);
826
827 if (ST.hasApertureRegs()) {
828 // FIXME: Use inline constants (src_{shared, private}_base) instead of
829 // getreg.
830 unsigned Offset = AS == AMDGPUAS::LOCAL_ADDRESS ?
831 AMDGPU::Hwreg::OFFSET_SRC_SHARED_BASE :
832 AMDGPU::Hwreg::OFFSET_SRC_PRIVATE_BASE;
833 unsigned WidthM1 = AS == AMDGPUAS::LOCAL_ADDRESS ?
834 AMDGPU::Hwreg::WIDTH_M1_SRC_SHARED_BASE :
835 AMDGPU::Hwreg::WIDTH_M1_SRC_PRIVATE_BASE;
836 unsigned Encoding =
837 AMDGPU::Hwreg::ID_MEM_BASES << AMDGPU::Hwreg::ID_SHIFT_ |
838 Offset << AMDGPU::Hwreg::OFFSET_SHIFT_ |
839 WidthM1 << AMDGPU::Hwreg::WIDTH_M1_SHIFT_;
840
Matt Arsenault1178dc32019-06-28 01:16:46 +0000841 Register ApertureReg = MRI.createGenericVirtualRegister(S32);
842 Register GetReg = MRI.createVirtualRegister(&AMDGPU::SReg_32RegClass);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000843
844 MIRBuilder.buildInstr(AMDGPU::S_GETREG_B32)
845 .addDef(GetReg)
846 .addImm(Encoding);
847 MRI.setType(GetReg, S32);
848
Amara Emerson946b1242019-04-15 05:04:20 +0000849 auto ShiftAmt = MIRBuilder.buildConstant(S32, WidthM1 + 1);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000850 MIRBuilder.buildInstr(TargetOpcode::G_SHL)
851 .addDef(ApertureReg)
852 .addUse(GetReg)
Amara Emerson946b1242019-04-15 05:04:20 +0000853 .addUse(ShiftAmt.getReg(0));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000854
855 return ApertureReg;
856 }
857
Matt Arsenault1178dc32019-06-28 01:16:46 +0000858 Register QueuePtr = MRI.createGenericVirtualRegister(
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000859 LLT::pointer(AMDGPUAS::CONSTANT_ADDRESS, 64));
860
861 // FIXME: Placeholder until we can track the input registers.
862 MIRBuilder.buildConstant(QueuePtr, 0xdeadbeef);
863
864 // Offset into amd_queue_t for group_segment_aperture_base_hi /
865 // private_segment_aperture_base_hi.
866 uint32_t StructOffset = (AS == AMDGPUAS::LOCAL_ADDRESS) ? 0x40 : 0x44;
867
868 // FIXME: Don't use undef
869 Value *V = UndefValue::get(PointerType::get(
870 Type::getInt8Ty(MF.getFunction().getContext()),
871 AMDGPUAS::CONSTANT_ADDRESS));
872
873 MachinePointerInfo PtrInfo(V, StructOffset);
874 MachineMemOperand *MMO = MF.getMachineMemOperand(
875 PtrInfo,
876 MachineMemOperand::MOLoad |
877 MachineMemOperand::MODereferenceable |
878 MachineMemOperand::MOInvariant,
879 4,
880 MinAlign(64, StructOffset));
881
Matt Arsenaulte3a676e2019-06-24 15:50:29 +0000882 Register LoadResult = MRI.createGenericVirtualRegister(S32);
883 Register LoadAddr;
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000884
885 MIRBuilder.materializeGEP(LoadAddr, QueuePtr, LLT::scalar(64), StructOffset);
886 MIRBuilder.buildLoad(LoadResult, LoadAddr, *MMO);
887 return LoadResult;
888}
889
890bool AMDGPULegalizerInfo::legalizeAddrSpaceCast(
891 MachineInstr &MI, MachineRegisterInfo &MRI,
892 MachineIRBuilder &MIRBuilder) const {
893 MachineFunction &MF = MIRBuilder.getMF();
894
895 MIRBuilder.setInstr(MI);
896
Matt Arsenaulte3a676e2019-06-24 15:50:29 +0000897 Register Dst = MI.getOperand(0).getReg();
898 Register Src = MI.getOperand(1).getReg();
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000899
900 LLT DstTy = MRI.getType(Dst);
901 LLT SrcTy = MRI.getType(Src);
902 unsigned DestAS = DstTy.getAddressSpace();
903 unsigned SrcAS = SrcTy.getAddressSpace();
904
905 // TODO: Avoid reloading from the queue ptr for each cast, or at least each
906 // vector element.
907 assert(!DstTy.isVector());
908
909 const AMDGPUTargetMachine &TM
910 = static_cast<const AMDGPUTargetMachine &>(MF.getTarget());
911
912 const GCNSubtarget &ST = MF.getSubtarget<GCNSubtarget>();
913 if (ST.getTargetLowering()->isNoopAddrSpaceCast(SrcAS, DestAS)) {
Matt Arsenaultdc88a2c2019-02-08 14:16:11 +0000914 MI.setDesc(MIRBuilder.getTII().get(TargetOpcode::G_BITCAST));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000915 return true;
916 }
917
918 if (SrcAS == AMDGPUAS::FLAT_ADDRESS) {
919 assert(DestAS == AMDGPUAS::LOCAL_ADDRESS ||
920 DestAS == AMDGPUAS::PRIVATE_ADDRESS);
921 unsigned NullVal = TM.getNullPointerValue(DestAS);
922
Amara Emerson946b1242019-04-15 05:04:20 +0000923 auto SegmentNull = MIRBuilder.buildConstant(DstTy, NullVal);
924 auto FlatNull = MIRBuilder.buildConstant(SrcTy, 0);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000925
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000926 Register PtrLo32 = MRI.createGenericVirtualRegister(DstTy);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000927
928 // Extract low 32-bits of the pointer.
929 MIRBuilder.buildExtract(PtrLo32, Src, 0);
930
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000931 Register CmpRes = MRI.createGenericVirtualRegister(LLT::scalar(1));
Amara Emerson946b1242019-04-15 05:04:20 +0000932 MIRBuilder.buildICmp(CmpInst::ICMP_NE, CmpRes, Src, FlatNull.getReg(0));
933 MIRBuilder.buildSelect(Dst, CmpRes, PtrLo32, SegmentNull.getReg(0));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000934
935 MI.eraseFromParent();
936 return true;
937 }
938
939 assert(SrcAS == AMDGPUAS::LOCAL_ADDRESS ||
940 SrcAS == AMDGPUAS::PRIVATE_ADDRESS);
941
Amara Emerson946b1242019-04-15 05:04:20 +0000942 auto SegmentNull =
943 MIRBuilder.buildConstant(SrcTy, TM.getNullPointerValue(SrcAS));
944 auto FlatNull =
945 MIRBuilder.buildConstant(DstTy, TM.getNullPointerValue(DestAS));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000946
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000947 Register ApertureReg = getSegmentAperture(DestAS, MRI, MIRBuilder);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000948
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000949 Register CmpRes = MRI.createGenericVirtualRegister(LLT::scalar(1));
Amara Emerson946b1242019-04-15 05:04:20 +0000950 MIRBuilder.buildICmp(CmpInst::ICMP_NE, CmpRes, Src, SegmentNull.getReg(0));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000951
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000952 Register BuildPtr = MRI.createGenericVirtualRegister(DstTy);
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000953
954 // Coerce the type of the low half of the result so we can use merge_values.
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000955 Register SrcAsInt = MRI.createGenericVirtualRegister(LLT::scalar(32));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000956 MIRBuilder.buildInstr(TargetOpcode::G_PTRTOINT)
957 .addDef(SrcAsInt)
958 .addUse(Src);
959
960 // TODO: Should we allow mismatched types but matching sizes in merges to
961 // avoid the ptrtoint?
962 MIRBuilder.buildMerge(BuildPtr, {SrcAsInt, ApertureReg});
Amara Emerson946b1242019-04-15 05:04:20 +0000963 MIRBuilder.buildSelect(Dst, CmpRes, BuildPtr, FlatNull.getReg(0));
Matt Arsenaulta8b43392019-02-08 02:40:47 +0000964
965 MI.eraseFromParent();
966 return true;
967}
Matt Arsenault6aafc5e2019-05-17 12:19:57 +0000968
969bool AMDGPULegalizerInfo::legalizeFrint(
970 MachineInstr &MI, MachineRegisterInfo &MRI,
971 MachineIRBuilder &MIRBuilder) const {
972 MIRBuilder.setInstr(MI);
973
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +0000974 Register Src = MI.getOperand(1).getReg();
Matt Arsenault6aafc5e2019-05-17 12:19:57 +0000975 LLT Ty = MRI.getType(Src);
976 assert(Ty.isScalar() && Ty.getSizeInBits() == 64);
977
978 APFloat C1Val(APFloat::IEEEdouble(), "0x1.0p+52");
979 APFloat C2Val(APFloat::IEEEdouble(), "0x1.fffffffffffffp+51");
980
981 auto C1 = MIRBuilder.buildFConstant(Ty, C1Val);
982 auto CopySign = MIRBuilder.buildFCopysign(Ty, C1, Src);
983
984 // TODO: Should this propagate fast-math-flags?
985 auto Tmp1 = MIRBuilder.buildFAdd(Ty, Src, CopySign);
986 auto Tmp2 = MIRBuilder.buildFSub(Ty, Tmp1, CopySign);
987
988 auto C2 = MIRBuilder.buildFConstant(Ty, C2Val);
989 auto Fabs = MIRBuilder.buildFAbs(Ty, Src);
990
991 auto Cond = MIRBuilder.buildFCmp(CmpInst::FCMP_OGT, LLT::scalar(1), Fabs, C2);
992 MIRBuilder.buildSelect(MI.getOperand(0).getReg(), Cond, Src, Tmp2);
993 return true;
994}
Matt Arsenault6aebcd52019-05-17 12:20:01 +0000995
Matt Arsenaulta510b572019-05-17 12:20:05 +0000996bool AMDGPULegalizerInfo::legalizeFceil(
997 MachineInstr &MI, MachineRegisterInfo &MRI,
998 MachineIRBuilder &B) const {
999 B.setInstr(MI);
1000
Matt Arsenault1a02d302019-05-17 12:59:27 +00001001 const LLT S1 = LLT::scalar(1);
1002 const LLT S64 = LLT::scalar(64);
1003
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +00001004 Register Src = MI.getOperand(1).getReg();
Matt Arsenault1a02d302019-05-17 12:59:27 +00001005 assert(MRI.getType(Src) == S64);
Matt Arsenaulta510b572019-05-17 12:20:05 +00001006
1007 // result = trunc(src)
1008 // if (src > 0.0 && src != result)
1009 // result += 1.0
1010
Matt Arsenaulta510b572019-05-17 12:20:05 +00001011 auto Trunc = B.buildInstr(TargetOpcode::G_INTRINSIC_TRUNC, {S64}, {Src});
1012
Matt Arsenaulta510b572019-05-17 12:20:05 +00001013 const auto Zero = B.buildFConstant(S64, 0.0);
1014 const auto One = B.buildFConstant(S64, 1.0);
1015 auto Lt0 = B.buildFCmp(CmpInst::FCMP_OGT, S1, Src, Zero);
1016 auto NeTrunc = B.buildFCmp(CmpInst::FCMP_ONE, S1, Src, Trunc);
1017 auto And = B.buildAnd(S1, Lt0, NeTrunc);
1018 auto Add = B.buildSelect(S64, And, One, Zero);
1019
1020 // TODO: Should this propagate fast-math-flags?
1021 B.buildFAdd(MI.getOperand(0).getReg(), Trunc, Add);
1022 return true;
1023}
1024
Matt Arsenault6aebcd52019-05-17 12:20:01 +00001025static MachineInstrBuilder extractF64Exponent(unsigned Hi,
1026 MachineIRBuilder &B) {
1027 const unsigned FractBits = 52;
1028 const unsigned ExpBits = 11;
1029 LLT S32 = LLT::scalar(32);
1030
1031 auto Const0 = B.buildConstant(S32, FractBits - 32);
1032 auto Const1 = B.buildConstant(S32, ExpBits);
1033
1034 auto ExpPart = B.buildIntrinsic(Intrinsic::amdgcn_ubfe, {S32}, false)
1035 .addUse(Const0.getReg(0))
1036 .addUse(Const1.getReg(0));
1037
1038 return B.buildSub(S32, ExpPart, B.buildConstant(S32, 1023));
1039}
1040
1041bool AMDGPULegalizerInfo::legalizeIntrinsicTrunc(
1042 MachineInstr &MI, MachineRegisterInfo &MRI,
1043 MachineIRBuilder &B) const {
1044 B.setInstr(MI);
1045
Matt Arsenault1a02d302019-05-17 12:59:27 +00001046 const LLT S1 = LLT::scalar(1);
1047 const LLT S32 = LLT::scalar(32);
1048 const LLT S64 = LLT::scalar(64);
Matt Arsenault6aebcd52019-05-17 12:20:01 +00001049
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +00001050 Register Src = MI.getOperand(1).getReg();
Matt Arsenault1a02d302019-05-17 12:59:27 +00001051 assert(MRI.getType(Src) == S64);
Matt Arsenault6aebcd52019-05-17 12:20:01 +00001052
1053 // TODO: Should this use extract since the low half is unused?
1054 auto Unmerge = B.buildUnmerge({S32, S32}, Src);
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +00001055 Register Hi = Unmerge.getReg(1);
Matt Arsenault6aebcd52019-05-17 12:20:01 +00001056
1057 // Extract the upper half, since this is where we will find the sign and
1058 // exponent.
1059 auto Exp = extractF64Exponent(Hi, B);
1060
1061 const unsigned FractBits = 52;
1062
1063 // Extract the sign bit.
1064 const auto SignBitMask = B.buildConstant(S32, UINT32_C(1) << 31);
1065 auto SignBit = B.buildAnd(S32, Hi, SignBitMask);
1066
1067 const auto FractMask = B.buildConstant(S64, (UINT64_C(1) << FractBits) - 1);
1068
1069 const auto Zero32 = B.buildConstant(S32, 0);
1070
1071 // Extend back to 64-bits.
1072 auto SignBit64 = B.buildMerge(S64, {Zero32.getReg(0), SignBit.getReg(0)});
1073
1074 auto Shr = B.buildAShr(S64, FractMask, Exp);
1075 auto Not = B.buildNot(S64, Shr);
1076 auto Tmp0 = B.buildAnd(S64, Src, Not);
1077 auto FiftyOne = B.buildConstant(S32, FractBits - 1);
1078
1079 auto ExpLt0 = B.buildICmp(CmpInst::ICMP_SLT, S1, Exp, Zero32);
1080 auto ExpGt51 = B.buildICmp(CmpInst::ICMP_SGT, S1, Exp, FiftyOne);
1081
1082 auto Tmp1 = B.buildSelect(S64, ExpLt0, SignBit64, Tmp0);
1083 B.buildSelect(MI.getOperand(0).getReg(), ExpGt51, Src, Tmp1);
1084 return true;
1085}
Matt Arsenault2f292202019-05-17 23:05:18 +00001086
1087bool AMDGPULegalizerInfo::legalizeITOFP(
1088 MachineInstr &MI, MachineRegisterInfo &MRI,
1089 MachineIRBuilder &B, bool Signed) const {
1090 B.setInstr(MI);
1091
Matt Arsenaultfaeaedf2019-06-24 16:16:12 +00001092 Register Dst = MI.getOperand(0).getReg();
1093 Register Src = MI.getOperand(1).getReg();
Matt Arsenault2f292202019-05-17 23:05:18 +00001094
1095 const LLT S64 = LLT::scalar(64);
1096 const LLT S32 = LLT::scalar(32);
1097
1098 assert(MRI.getType(Src) == S64 && MRI.getType(Dst) == S64);
1099
1100 auto Unmerge = B.buildUnmerge({S32, S32}, Src);
1101
1102 auto CvtHi = Signed ?
1103 B.buildSITOFP(S64, Unmerge.getReg(1)) :
1104 B.buildUITOFP(S64, Unmerge.getReg(1));
1105
1106 auto CvtLo = B.buildUITOFP(S64, Unmerge.getReg(0));
1107
1108 auto ThirtyTwo = B.buildConstant(S32, 32);
1109 auto LdExp = B.buildIntrinsic(Intrinsic::amdgcn_ldexp, {S64}, false)
1110 .addUse(CvtHi.getReg(0))
1111 .addUse(ThirtyTwo.getReg(0));
1112
1113 // TODO: Should this propagate fast-math-flags?
1114 B.buildFAdd(Dst, LdExp, CvtLo);
1115 MI.eraseFromParent();
1116 return true;
1117}
Matt Arsenaulte15770a2019-07-01 18:40:23 +00001118
Matt Arsenault6ce1b4f2019-07-10 16:31:19 +00001119bool AMDGPULegalizerInfo::legalizeMinNumMaxNum(
1120 MachineInstr &MI, MachineRegisterInfo &MRI,
1121 MachineIRBuilder &B) const {
1122 MachineFunction &MF = B.getMF();
1123 const SIMachineFunctionInfo *MFI = MF.getInfo<SIMachineFunctionInfo>();
1124
1125 const bool IsIEEEOp = MI.getOpcode() == AMDGPU::G_FMINNUM_IEEE ||
1126 MI.getOpcode() == AMDGPU::G_FMAXNUM_IEEE;
1127
1128 // With ieee_mode disabled, the instructions have the correct behavior
1129 // already for G_FMINNUM/G_FMAXNUM
1130 if (!MFI->getMode().IEEE)
1131 return !IsIEEEOp;
1132
1133 if (IsIEEEOp)
1134 return true;
1135
1136 MachineIRBuilder HelperBuilder(MI);
1137 GISelObserverWrapper DummyObserver;
1138 LegalizerHelper Helper(MF, DummyObserver, HelperBuilder);
1139 HelperBuilder.setMBB(*MI.getParent());
1140 return Helper.lowerFMinNumMaxNum(MI) == LegalizerHelper::Legalized;
1141}
1142
Matt Arsenaultb0e04c02019-07-15 19:40:59 +00001143bool AMDGPULegalizerInfo::legalizeExtractVectorElt(
1144 MachineInstr &MI, MachineRegisterInfo &MRI,
1145 MachineIRBuilder &B) const {
1146 // TODO: Should move some of this into LegalizerHelper.
1147
1148 // TODO: Promote dynamic indexing of s16 to s32
1149 // TODO: Dynamic s64 indexing is only legal for SGPR.
1150 Optional<int64_t> IdxVal = getConstantVRegVal(MI.getOperand(2).getReg(), MRI);
1151 if (!IdxVal) // Dynamic case will be selected to register indexing.
1152 return true;
1153
1154 Register Dst = MI.getOperand(0).getReg();
1155 Register Vec = MI.getOperand(1).getReg();
1156
1157 LLT VecTy = MRI.getType(Vec);
1158 LLT EltTy = VecTy.getElementType();
1159 assert(EltTy == MRI.getType(Dst));
1160
1161 B.setInstr(MI);
1162
1163 if (IdxVal.getValue() < VecTy.getNumElements())
1164 B.buildExtract(Dst, Vec, IdxVal.getValue() * EltTy.getSizeInBits());
1165 else
1166 B.buildUndef(Dst);
1167
1168 MI.eraseFromParent();
1169 return true;
1170}
1171
Matt Arsenault6ed315f2019-07-15 19:43:04 +00001172bool AMDGPULegalizerInfo::legalizeInsertVectorElt(
1173 MachineInstr &MI, MachineRegisterInfo &MRI,
1174 MachineIRBuilder &B) const {
1175 // TODO: Should move some of this into LegalizerHelper.
1176
1177 // TODO: Promote dynamic indexing of s16 to s32
1178 // TODO: Dynamic s64 indexing is only legal for SGPR.
1179 Optional<int64_t> IdxVal = getConstantVRegVal(MI.getOperand(3).getReg(), MRI);
1180 if (!IdxVal) // Dynamic case will be selected to register indexing.
1181 return true;
1182
1183 Register Dst = MI.getOperand(0).getReg();
1184 Register Vec = MI.getOperand(1).getReg();
1185 Register Ins = MI.getOperand(2).getReg();
1186
1187 LLT VecTy = MRI.getType(Vec);
1188 LLT EltTy = VecTy.getElementType();
1189 assert(EltTy == MRI.getType(Ins));
1190
1191 B.setInstr(MI);
1192
1193 if (IdxVal.getValue() < VecTy.getNumElements())
1194 B.buildInsert(Dst, Vec, Ins, IdxVal.getValue() * EltTy.getSizeInBits());
1195 else
1196 B.buildUndef(Dst);
1197
1198 MI.eraseFromParent();
1199 return true;
1200}
1201
Matt Arsenaulte15770a2019-07-01 18:40:23 +00001202// Return the use branch instruction, otherwise null if the usage is invalid.
1203static MachineInstr *verifyCFIntrinsic(MachineInstr &MI,
1204 MachineRegisterInfo &MRI) {
1205 Register CondDef = MI.getOperand(0).getReg();
1206 if (!MRI.hasOneNonDBGUse(CondDef))
1207 return nullptr;
1208
1209 MachineInstr &UseMI = *MRI.use_instr_nodbg_begin(CondDef);
1210 return UseMI.getParent() == MI.getParent() &&
1211 UseMI.getOpcode() == AMDGPU::G_BRCOND ? &UseMI : nullptr;
1212}
1213
Matt Arsenaulte2c86cc2019-07-01 18:45:36 +00001214Register AMDGPULegalizerInfo::getLiveInRegister(MachineRegisterInfo &MRI,
1215 Register Reg, LLT Ty) const {
1216 Register LiveIn = MRI.getLiveInVirtReg(Reg);
1217 if (LiveIn)
1218 return LiveIn;
1219
1220 Register NewReg = MRI.createGenericVirtualRegister(Ty);
1221 MRI.addLiveIn(Reg, NewReg);
1222 return NewReg;
1223}
1224
1225bool AMDGPULegalizerInfo::loadInputValue(Register DstReg, MachineIRBuilder &B,
1226 const ArgDescriptor *Arg) const {
1227 if (!Arg->isRegister())
1228 return false; // TODO: Handle these
1229
1230 assert(Arg->getRegister() != 0);
1231 assert(Arg->getRegister().isPhysical());
1232
1233 MachineRegisterInfo &MRI = *B.getMRI();
1234
1235 LLT Ty = MRI.getType(DstReg);
1236 Register LiveIn = getLiveInRegister(MRI, Arg->getRegister(), Ty);
1237
1238 if (Arg->isMasked()) {
1239 // TODO: Should we try to emit this once in the entry block?
1240 const LLT S32 = LLT::scalar(32);
1241 const unsigned Mask = Arg->getMask();
1242 const unsigned Shift = countTrailingZeros<unsigned>(Mask);
1243
1244 auto ShiftAmt = B.buildConstant(S32, Shift);
1245 auto LShr = B.buildLShr(S32, LiveIn, ShiftAmt);
1246 B.buildAnd(DstReg, LShr, B.buildConstant(S32, Mask >> Shift));
1247 } else
1248 B.buildCopy(DstReg, LiveIn);
1249
1250 // Insert the argument copy if it doens't already exist.
1251 // FIXME: It seems EmitLiveInCopies isn't called anywhere?
1252 if (!MRI.getVRegDef(LiveIn)) {
1253 MachineBasicBlock &EntryMBB = B.getMF().front();
1254 EntryMBB.addLiveIn(Arg->getRegister());
1255 B.setInsertPt(EntryMBB, EntryMBB.begin());
1256 B.buildCopy(LiveIn, Arg->getRegister());
1257 }
1258
1259 return true;
1260}
1261
1262bool AMDGPULegalizerInfo::legalizePreloadedArgIntrin(
1263 MachineInstr &MI,
1264 MachineRegisterInfo &MRI,
1265 MachineIRBuilder &B,
1266 AMDGPUFunctionArgInfo::PreloadedValue ArgType) const {
1267 B.setInstr(MI);
1268
1269 const SIMachineFunctionInfo *MFI = B.getMF().getInfo<SIMachineFunctionInfo>();
1270
1271 const ArgDescriptor *Arg;
1272 const TargetRegisterClass *RC;
1273 std::tie(Arg, RC) = MFI->getPreloadedValue(ArgType);
1274 if (!Arg) {
1275 LLVM_DEBUG(dbgs() << "Required arg register missing\n");
1276 return false;
1277 }
1278
1279 if (loadInputValue(MI.getOperand(0).getReg(), B, Arg)) {
1280 MI.eraseFromParent();
1281 return true;
1282 }
1283
1284 return false;
1285}
1286
Austin Kerbowc99f62e2019-07-30 18:49:16 +00001287bool AMDGPULegalizerInfo::legalizeFDIVFast(MachineInstr &MI,
1288 MachineRegisterInfo &MRI,
1289 MachineIRBuilder &B) const {
1290 B.setInstr(MI);
1291 Register Res = MI.getOperand(0).getReg();
1292 Register LHS = MI.getOperand(2).getReg();
1293 Register RHS = MI.getOperand(3).getReg();
1294 uint16_t Flags = MI.getFlags();
1295
1296 LLT S32 = LLT::scalar(32);
1297 LLT S1 = LLT::scalar(1);
1298
1299 auto Abs = B.buildFAbs(S32, RHS, Flags);
1300 const APFloat C0Val(1.0f);
1301
1302 auto C0 = B.buildConstant(S32, 0x6f800000);
1303 auto C1 = B.buildConstant(S32, 0x2f800000);
1304 auto C2 = B.buildConstant(S32, FloatToBits(1.0f));
1305
1306 auto CmpRes = B.buildFCmp(CmpInst::FCMP_OGT, S1, Abs, C0, Flags);
1307 auto Sel = B.buildSelect(S32, CmpRes, C1, C2, Flags);
1308
1309 auto Mul0 = B.buildFMul(S32, RHS, Sel, Flags);
1310
1311 auto RCP = B.buildIntrinsic(Intrinsic::amdgcn_rcp, {S32}, false)
1312 .addUse(Mul0.getReg(0))
1313 .setMIFlags(Flags);
1314
1315 auto Mul1 = B.buildFMul(S32, LHS, RCP, Flags);
1316
1317 B.buildFMul(Res, Sel, Mul1, Flags);
1318
1319 MI.eraseFromParent();
1320 return true;
1321}
1322
Matt Arsenault9e8e8c62019-07-01 18:49:01 +00001323bool AMDGPULegalizerInfo::legalizeImplicitArgPtr(MachineInstr &MI,
1324 MachineRegisterInfo &MRI,
1325 MachineIRBuilder &B) const {
1326 const SIMachineFunctionInfo *MFI = B.getMF().getInfo<SIMachineFunctionInfo>();
1327 if (!MFI->isEntryFunction()) {
1328 return legalizePreloadedArgIntrin(MI, MRI, B,
1329 AMDGPUFunctionArgInfo::IMPLICIT_ARG_PTR);
1330 }
1331
1332 B.setInstr(MI);
1333
1334 uint64_t Offset =
1335 ST.getTargetLowering()->getImplicitParameterOffset(
1336 B.getMF(), AMDGPUTargetLowering::FIRST_IMPLICIT);
1337 Register DstReg = MI.getOperand(0).getReg();
1338 LLT DstTy = MRI.getType(DstReg);
1339 LLT IdxTy = LLT::scalar(DstTy.getSizeInBits());
1340
1341 const ArgDescriptor *Arg;
1342 const TargetRegisterClass *RC;
1343 std::tie(Arg, RC)
1344 = MFI->getPreloadedValue(AMDGPUFunctionArgInfo::KERNARG_SEGMENT_PTR);
1345 if (!Arg)
1346 return false;
1347
1348 Register KernargPtrReg = MRI.createGenericVirtualRegister(DstTy);
1349 if (!loadInputValue(KernargPtrReg, B, Arg))
1350 return false;
1351
1352 B.buildGEP(DstReg, KernargPtrReg, B.buildConstant(IdxTy, Offset).getReg(0));
1353 MI.eraseFromParent();
1354 return true;
1355}
1356
Matt Arsenaulte15770a2019-07-01 18:40:23 +00001357bool AMDGPULegalizerInfo::legalizeIntrinsic(MachineInstr &MI,
1358 MachineRegisterInfo &MRI,
1359 MachineIRBuilder &B) const {
1360 // Replace the use G_BRCOND with the exec manipulate and branch pseudos.
1361 switch (MI.getOperand(MI.getNumExplicitDefs()).getIntrinsicID()) {
1362 case Intrinsic::amdgcn_if: {
1363 if (MachineInstr *BrCond = verifyCFIntrinsic(MI, MRI)) {
1364 const SIRegisterInfo *TRI
1365 = static_cast<const SIRegisterInfo *>(MRI.getTargetRegisterInfo());
1366
1367 B.setInstr(*BrCond);
1368 Register Def = MI.getOperand(1).getReg();
1369 Register Use = MI.getOperand(3).getReg();
1370 B.buildInstr(AMDGPU::SI_IF)
1371 .addDef(Def)
1372 .addUse(Use)
1373 .addMBB(BrCond->getOperand(1).getMBB());
1374
1375 MRI.setRegClass(Def, TRI->getWaveMaskRegClass());
1376 MRI.setRegClass(Use, TRI->getWaveMaskRegClass());
1377 MI.eraseFromParent();
1378 BrCond->eraseFromParent();
1379 return true;
1380 }
1381
1382 return false;
1383 }
1384 case Intrinsic::amdgcn_loop: {
1385 if (MachineInstr *BrCond = verifyCFIntrinsic(MI, MRI)) {
1386 const SIRegisterInfo *TRI
1387 = static_cast<const SIRegisterInfo *>(MRI.getTargetRegisterInfo());
1388
1389 B.setInstr(*BrCond);
1390 Register Reg = MI.getOperand(2).getReg();
1391 B.buildInstr(AMDGPU::SI_LOOP)
1392 .addUse(Reg)
1393 .addMBB(BrCond->getOperand(1).getMBB());
1394 MI.eraseFromParent();
1395 BrCond->eraseFromParent();
1396 MRI.setRegClass(Reg, TRI->getWaveMaskRegClass());
1397 return true;
1398 }
1399
1400 return false;
1401 }
Matt Arsenault9e8e8c62019-07-01 18:49:01 +00001402 case Intrinsic::amdgcn_kernarg_segment_ptr:
1403 return legalizePreloadedArgIntrin(
1404 MI, MRI, B, AMDGPUFunctionArgInfo::KERNARG_SEGMENT_PTR);
1405 case Intrinsic::amdgcn_implicitarg_ptr:
1406 return legalizeImplicitArgPtr(MI, MRI, B);
Matt Arsenaulte2c86cc2019-07-01 18:45:36 +00001407 case Intrinsic::amdgcn_workitem_id_x:
1408 return legalizePreloadedArgIntrin(MI, MRI, B,
1409 AMDGPUFunctionArgInfo::WORKITEM_ID_X);
1410 case Intrinsic::amdgcn_workitem_id_y:
1411 return legalizePreloadedArgIntrin(MI, MRI, B,
1412 AMDGPUFunctionArgInfo::WORKITEM_ID_Y);
1413 case Intrinsic::amdgcn_workitem_id_z:
1414 return legalizePreloadedArgIntrin(MI, MRI, B,
1415 AMDGPUFunctionArgInfo::WORKITEM_ID_Z);
Matt Arsenault756d8192019-07-01 18:47:22 +00001416 case Intrinsic::amdgcn_workgroup_id_x:
1417 return legalizePreloadedArgIntrin(MI, MRI, B,
1418 AMDGPUFunctionArgInfo::WORKGROUP_ID_X);
1419 case Intrinsic::amdgcn_workgroup_id_y:
1420 return legalizePreloadedArgIntrin(MI, MRI, B,
1421 AMDGPUFunctionArgInfo::WORKGROUP_ID_Y);
1422 case Intrinsic::amdgcn_workgroup_id_z:
1423 return legalizePreloadedArgIntrin(MI, MRI, B,
1424 AMDGPUFunctionArgInfo::WORKGROUP_ID_Z);
Matt Arsenaultbae36362019-07-01 18:50:50 +00001425 case Intrinsic::amdgcn_dispatch_ptr:
1426 return legalizePreloadedArgIntrin(MI, MRI, B,
1427 AMDGPUFunctionArgInfo::DISPATCH_PTR);
1428 case Intrinsic::amdgcn_queue_ptr:
1429 return legalizePreloadedArgIntrin(MI, MRI, B,
1430 AMDGPUFunctionArgInfo::QUEUE_PTR);
1431 case Intrinsic::amdgcn_implicit_buffer_ptr:
1432 return legalizePreloadedArgIntrin(
1433 MI, MRI, B, AMDGPUFunctionArgInfo::IMPLICIT_BUFFER_PTR);
1434 case Intrinsic::amdgcn_dispatch_id:
1435 return legalizePreloadedArgIntrin(MI, MRI, B,
1436 AMDGPUFunctionArgInfo::DISPATCH_ID);
Austin Kerbowc99f62e2019-07-30 18:49:16 +00001437 case Intrinsic::amdgcn_fdiv_fast:
1438 return legalizeFDIVFast(MI, MRI, B);
Matt Arsenaulte15770a2019-07-01 18:40:23 +00001439 default:
1440 return true;
1441 }
1442
1443 return true;
1444}