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Tom Stellard75aadc22012-12-11 21:25:42 +00001//===-- SIInstrInfo.cpp - SI Instruction Information ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10/// \file
11/// \brief SI Implementation of TargetInstrInfo.
12//
13//===----------------------------------------------------------------------===//
14
15
16#include "SIInstrInfo.h"
17#include "AMDGPUTargetMachine.h"
Tom Stellard16a9a202013-08-14 23:24:17 +000018#include "SIDefines.h"
Tom Stellardc149dc02013-11-27 21:23:35 +000019#include "SIMachineFunctionInfo.h"
Tom Stellardc5cf2f02014-08-21 20:40:54 +000020#include "llvm/CodeGen/MachineFrameInfo.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000021#include "llvm/CodeGen/MachineInstrBuilder.h"
22#include "llvm/CodeGen/MachineRegisterInfo.h"
Tom Stellard4e07b1d2014-06-10 21:20:41 +000023#include "llvm/IR/Function.h"
Tom Stellard96468902014-09-24 01:33:17 +000024#include "llvm/CodeGen/RegisterScavenging.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000025#include "llvm/MC/MCInstrDesc.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000026
27using namespace llvm;
28
Tom Stellard2e59a452014-06-13 01:32:00 +000029SIInstrInfo::SIInstrInfo(const AMDGPUSubtarget &st)
30 : AMDGPUInstrInfo(st),
31 RI(st) { }
Tom Stellard75aadc22012-12-11 21:25:42 +000032
Tom Stellard82166022013-11-13 23:36:37 +000033//===----------------------------------------------------------------------===//
34// TargetInstrInfo callbacks
35//===----------------------------------------------------------------------===//
36
Matt Arsenaultc10853f2014-08-06 00:29:43 +000037static unsigned getNumOperandsNoGlue(SDNode *Node) {
38 unsigned N = Node->getNumOperands();
39 while (N && Node->getOperand(N - 1).getValueType() == MVT::Glue)
40 --N;
41 return N;
42}
43
44static SDValue findChainOperand(SDNode *Load) {
45 SDValue LastOp = Load->getOperand(getNumOperandsNoGlue(Load) - 1);
46 assert(LastOp.getValueType() == MVT::Other && "Chain missing from load node");
47 return LastOp;
48}
49
Tom Stellard155bbb72014-08-11 22:18:17 +000050/// \brief Returns true if both nodes have the same value for the given
51/// operand \p Op, or if both nodes do not have this operand.
52static bool nodesHaveSameOperandValue(SDNode *N0, SDNode* N1, unsigned OpName) {
53 unsigned Opc0 = N0->getMachineOpcode();
54 unsigned Opc1 = N1->getMachineOpcode();
55
56 int Op0Idx = AMDGPU::getNamedOperandIdx(Opc0, OpName);
57 int Op1Idx = AMDGPU::getNamedOperandIdx(Opc1, OpName);
58
59 if (Op0Idx == -1 && Op1Idx == -1)
60 return true;
61
62
63 if ((Op0Idx == -1 && Op1Idx != -1) ||
64 (Op1Idx == -1 && Op0Idx != -1))
65 return false;
66
67 // getNamedOperandIdx returns the index for the MachineInstr's operands,
68 // which includes the result as the first operand. We are indexing into the
69 // MachineSDNode's operands, so we need to skip the result operand to get
70 // the real index.
71 --Op0Idx;
72 --Op1Idx;
73
Tom Stellardb8b84132014-09-03 15:22:39 +000074 return N0->getOperand(Op0Idx) == N1->getOperand(Op1Idx);
Tom Stellard155bbb72014-08-11 22:18:17 +000075}
76
Matt Arsenaultc10853f2014-08-06 00:29:43 +000077bool SIInstrInfo::areLoadsFromSameBasePtr(SDNode *Load0, SDNode *Load1,
78 int64_t &Offset0,
79 int64_t &Offset1) const {
80 if (!Load0->isMachineOpcode() || !Load1->isMachineOpcode())
81 return false;
82
83 unsigned Opc0 = Load0->getMachineOpcode();
84 unsigned Opc1 = Load1->getMachineOpcode();
85
86 // Make sure both are actually loads.
87 if (!get(Opc0).mayLoad() || !get(Opc1).mayLoad())
88 return false;
89
90 if (isDS(Opc0) && isDS(Opc1)) {
Tom Stellard20fa0be2014-10-07 21:09:20 +000091
92 // FIXME: Handle this case:
93 if (getNumOperandsNoGlue(Load0) != getNumOperandsNoGlue(Load1))
94 return false;
Matt Arsenaultc10853f2014-08-06 00:29:43 +000095
Matt Arsenaultc10853f2014-08-06 00:29:43 +000096 // Check base reg.
97 if (Load0->getOperand(1) != Load1->getOperand(1))
98 return false;
99
100 // Check chain.
101 if (findChainOperand(Load0) != findChainOperand(Load1))
102 return false;
103
Matt Arsenault972c12a2014-09-17 17:48:32 +0000104 // Skip read2 / write2 variants for simplicity.
105 // TODO: We should report true if the used offsets are adjacent (excluded
106 // st64 versions).
107 if (AMDGPU::getNamedOperandIdx(Opc0, AMDGPU::OpName::data1) != -1 ||
108 AMDGPU::getNamedOperandIdx(Opc1, AMDGPU::OpName::data1) != -1)
109 return false;
110
Matt Arsenaultc10853f2014-08-06 00:29:43 +0000111 Offset0 = cast<ConstantSDNode>(Load0->getOperand(2))->getZExtValue();
112 Offset1 = cast<ConstantSDNode>(Load1->getOperand(2))->getZExtValue();
113 return true;
114 }
115
116 if (isSMRD(Opc0) && isSMRD(Opc1)) {
117 assert(getNumOperandsNoGlue(Load0) == getNumOperandsNoGlue(Load1));
118
119 // Check base reg.
120 if (Load0->getOperand(0) != Load1->getOperand(0))
121 return false;
122
123 // Check chain.
124 if (findChainOperand(Load0) != findChainOperand(Load1))
125 return false;
126
127 Offset0 = cast<ConstantSDNode>(Load0->getOperand(1))->getZExtValue();
128 Offset1 = cast<ConstantSDNode>(Load1->getOperand(1))->getZExtValue();
129 return true;
130 }
131
132 // MUBUF and MTBUF can access the same addresses.
133 if ((isMUBUF(Opc0) || isMTBUF(Opc0)) && (isMUBUF(Opc1) || isMTBUF(Opc1))) {
Matt Arsenaultc10853f2014-08-06 00:29:43 +0000134
135 // MUBUF and MTBUF have vaddr at different indices.
Tom Stellard155bbb72014-08-11 22:18:17 +0000136 if (!nodesHaveSameOperandValue(Load0, Load1, AMDGPU::OpName::soffset) ||
137 findChainOperand(Load0) != findChainOperand(Load1) ||
138 !nodesHaveSameOperandValue(Load0, Load1, AMDGPU::OpName::vaddr) ||
Tom Stellardb8b84132014-09-03 15:22:39 +0000139 !nodesHaveSameOperandValue(Load0, Load1, AMDGPU::OpName::srsrc))
Matt Arsenaultc10853f2014-08-06 00:29:43 +0000140 return false;
141
Tom Stellard155bbb72014-08-11 22:18:17 +0000142 int OffIdx0 = AMDGPU::getNamedOperandIdx(Opc0, AMDGPU::OpName::offset);
143 int OffIdx1 = AMDGPU::getNamedOperandIdx(Opc1, AMDGPU::OpName::offset);
144
145 if (OffIdx0 == -1 || OffIdx1 == -1)
146 return false;
147
148 // getNamedOperandIdx returns the index for MachineInstrs. Since they
149 // inlcude the output in the operand list, but SDNodes don't, we need to
150 // subtract the index by one.
151 --OffIdx0;
152 --OffIdx1;
153
154 SDValue Off0 = Load0->getOperand(OffIdx0);
155 SDValue Off1 = Load1->getOperand(OffIdx1);
156
157 // The offset might be a FrameIndexSDNode.
158 if (!isa<ConstantSDNode>(Off0) || !isa<ConstantSDNode>(Off1))
159 return false;
160
161 Offset0 = cast<ConstantSDNode>(Off0)->getZExtValue();
162 Offset1 = cast<ConstantSDNode>(Off1)->getZExtValue();
Matt Arsenaultc10853f2014-08-06 00:29:43 +0000163 return true;
164 }
165
166 return false;
167}
168
Matt Arsenault2e991122014-09-10 23:26:16 +0000169static bool isStride64(unsigned Opc) {
170 switch (Opc) {
171 case AMDGPU::DS_READ2ST64_B32:
172 case AMDGPU::DS_READ2ST64_B64:
173 case AMDGPU::DS_WRITE2ST64_B32:
174 case AMDGPU::DS_WRITE2ST64_B64:
175 return true;
176 default:
177 return false;
178 }
179}
180
Matt Arsenault1acc72f2014-07-29 21:34:55 +0000181bool SIInstrInfo::getLdStBaseRegImmOfs(MachineInstr *LdSt,
182 unsigned &BaseReg, unsigned &Offset,
183 const TargetRegisterInfo *TRI) const {
184 unsigned Opc = LdSt->getOpcode();
185 if (isDS(Opc)) {
Matt Arsenault1acc72f2014-07-29 21:34:55 +0000186 const MachineOperand *OffsetImm = getNamedOperand(*LdSt,
187 AMDGPU::OpName::offset);
Matt Arsenault7eb0a102014-07-30 01:01:10 +0000188 if (OffsetImm) {
189 // Normal, single offset LDS instruction.
190 const MachineOperand *AddrReg = getNamedOperand(*LdSt,
191 AMDGPU::OpName::addr);
Matt Arsenault1acc72f2014-07-29 21:34:55 +0000192
Matt Arsenault7eb0a102014-07-30 01:01:10 +0000193 BaseReg = AddrReg->getReg();
194 Offset = OffsetImm->getImm();
195 return true;
Matt Arsenault1acc72f2014-07-29 21:34:55 +0000196 }
197
Matt Arsenault7eb0a102014-07-30 01:01:10 +0000198 // The 2 offset instructions use offset0 and offset1 instead. We can treat
199 // these as a load with a single offset if the 2 offsets are consecutive. We
200 // will use this for some partially aligned loads.
201 const MachineOperand *Offset0Imm = getNamedOperand(*LdSt,
202 AMDGPU::OpName::offset0);
203 const MachineOperand *Offset1Imm = getNamedOperand(*LdSt,
204 AMDGPU::OpName::offset1);
Matt Arsenault1acc72f2014-07-29 21:34:55 +0000205
Matt Arsenault7eb0a102014-07-30 01:01:10 +0000206 uint8_t Offset0 = Offset0Imm->getImm();
207 uint8_t Offset1 = Offset1Imm->getImm();
208 assert(Offset1 > Offset0);
209
210 if (Offset1 - Offset0 == 1) {
211 // Each of these offsets is in element sized units, so we need to convert
212 // to bytes of the individual reads.
213
214 unsigned EltSize;
215 if (LdSt->mayLoad())
216 EltSize = getOpRegClass(*LdSt, 0)->getSize() / 2;
217 else {
218 assert(LdSt->mayStore());
219 int Data0Idx = AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::data0);
220 EltSize = getOpRegClass(*LdSt, Data0Idx)->getSize();
221 }
222
Matt Arsenault2e991122014-09-10 23:26:16 +0000223 if (isStride64(Opc))
224 EltSize *= 64;
225
Matt Arsenault7eb0a102014-07-30 01:01:10 +0000226 const MachineOperand *AddrReg = getNamedOperand(*LdSt,
227 AMDGPU::OpName::addr);
228 BaseReg = AddrReg->getReg();
229 Offset = EltSize * Offset0;
230 return true;
231 }
232
233 return false;
Matt Arsenault1acc72f2014-07-29 21:34:55 +0000234 }
235
236 if (isMUBUF(Opc) || isMTBUF(Opc)) {
237 if (AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::soffset) != -1)
238 return false;
239
240 const MachineOperand *AddrReg = getNamedOperand(*LdSt,
241 AMDGPU::OpName::vaddr);
242 if (!AddrReg)
243 return false;
244
245 const MachineOperand *OffsetImm = getNamedOperand(*LdSt,
246 AMDGPU::OpName::offset);
247 BaseReg = AddrReg->getReg();
248 Offset = OffsetImm->getImm();
249 return true;
250 }
251
252 if (isSMRD(Opc)) {
253 const MachineOperand *OffsetImm = getNamedOperand(*LdSt,
254 AMDGPU::OpName::offset);
255 if (!OffsetImm)
256 return false;
257
258 const MachineOperand *SBaseReg = getNamedOperand(*LdSt,
259 AMDGPU::OpName::sbase);
260 BaseReg = SBaseReg->getReg();
261 Offset = OffsetImm->getImm();
262 return true;
263 }
264
265 return false;
266}
267
Matt Arsenault0e75a062014-09-17 17:48:30 +0000268bool SIInstrInfo::shouldClusterLoads(MachineInstr *FirstLdSt,
269 MachineInstr *SecondLdSt,
270 unsigned NumLoads) const {
271 unsigned Opc0 = FirstLdSt->getOpcode();
272 unsigned Opc1 = SecondLdSt->getOpcode();
273
274 // TODO: This needs finer tuning
275 if (NumLoads > 4)
276 return false;
277
278 if (isDS(Opc0) && isDS(Opc1))
279 return true;
280
281 if (isSMRD(Opc0) && isSMRD(Opc1))
282 return true;
283
284 if ((isMUBUF(Opc0) || isMTBUF(Opc0)) && (isMUBUF(Opc1) || isMTBUF(Opc1)))
285 return true;
286
287 return false;
288}
289
Tom Stellard75aadc22012-12-11 21:25:42 +0000290void
291SIInstrInfo::copyPhysReg(MachineBasicBlock &MBB,
Christian Konigd0e3da12013-03-01 09:46:27 +0000292 MachineBasicBlock::iterator MI, DebugLoc DL,
293 unsigned DestReg, unsigned SrcReg,
294 bool KillSrc) const {
295
Tom Stellard75aadc22012-12-11 21:25:42 +0000296 // If we are trying to copy to or from SCC, there is a bug somewhere else in
297 // the backend. While it may be theoretically possible to do this, it should
298 // never be necessary.
299 assert(DestReg != AMDGPU::SCC && SrcReg != AMDGPU::SCC);
300
Craig Topper0afd0ab2013-07-15 06:39:13 +0000301 static const int16_t Sub0_15[] = {
Christian Konigd0e3da12013-03-01 09:46:27 +0000302 AMDGPU::sub0, AMDGPU::sub1, AMDGPU::sub2, AMDGPU::sub3,
303 AMDGPU::sub4, AMDGPU::sub5, AMDGPU::sub6, AMDGPU::sub7,
304 AMDGPU::sub8, AMDGPU::sub9, AMDGPU::sub10, AMDGPU::sub11,
305 AMDGPU::sub12, AMDGPU::sub13, AMDGPU::sub14, AMDGPU::sub15, 0
306 };
307
Craig Topper0afd0ab2013-07-15 06:39:13 +0000308 static const int16_t Sub0_7[] = {
Christian Konigd0e3da12013-03-01 09:46:27 +0000309 AMDGPU::sub0, AMDGPU::sub1, AMDGPU::sub2, AMDGPU::sub3,
310 AMDGPU::sub4, AMDGPU::sub5, AMDGPU::sub6, AMDGPU::sub7, 0
311 };
312
Craig Topper0afd0ab2013-07-15 06:39:13 +0000313 static const int16_t Sub0_3[] = {
Christian Konigd0e3da12013-03-01 09:46:27 +0000314 AMDGPU::sub0, AMDGPU::sub1, AMDGPU::sub2, AMDGPU::sub3, 0
315 };
316
Craig Topper0afd0ab2013-07-15 06:39:13 +0000317 static const int16_t Sub0_2[] = {
Christian Konig8b1ed282013-04-10 08:39:16 +0000318 AMDGPU::sub0, AMDGPU::sub1, AMDGPU::sub2, 0
319 };
320
Craig Topper0afd0ab2013-07-15 06:39:13 +0000321 static const int16_t Sub0_1[] = {
Christian Konigd0e3da12013-03-01 09:46:27 +0000322 AMDGPU::sub0, AMDGPU::sub1, 0
323 };
324
325 unsigned Opcode;
326 const int16_t *SubIndices;
327
Christian Konig082c6612013-03-26 14:04:12 +0000328 if (AMDGPU::M0 == DestReg) {
329 // Check if M0 isn't already set to this value
330 for (MachineBasicBlock::reverse_iterator E = MBB.rend(),
331 I = MachineBasicBlock::reverse_iterator(MI); I != E; ++I) {
332
333 if (!I->definesRegister(AMDGPU::M0))
334 continue;
335
336 unsigned Opc = I->getOpcode();
337 if (Opc != TargetOpcode::COPY && Opc != AMDGPU::S_MOV_B32)
338 break;
339
340 if (!I->readsRegister(SrcReg))
341 break;
342
343 // The copy isn't necessary
344 return;
345 }
346 }
347
Christian Konigd0e3da12013-03-01 09:46:27 +0000348 if (AMDGPU::SReg_32RegClass.contains(DestReg)) {
349 assert(AMDGPU::SReg_32RegClass.contains(SrcReg));
350 BuildMI(MBB, MI, DL, get(AMDGPU::S_MOV_B32), DestReg)
351 .addReg(SrcReg, getKillRegState(KillSrc));
352 return;
353
Tom Stellardaac18892013-02-07 19:39:43 +0000354 } else if (AMDGPU::SReg_64RegClass.contains(DestReg)) {
Tom Stellard75aadc22012-12-11 21:25:42 +0000355 assert(AMDGPU::SReg_64RegClass.contains(SrcReg));
356 BuildMI(MBB, MI, DL, get(AMDGPU::S_MOV_B64), DestReg)
357 .addReg(SrcReg, getKillRegState(KillSrc));
Christian Konigd0e3da12013-03-01 09:46:27 +0000358 return;
359
360 } else if (AMDGPU::SReg_128RegClass.contains(DestReg)) {
361 assert(AMDGPU::SReg_128RegClass.contains(SrcReg));
362 Opcode = AMDGPU::S_MOV_B32;
363 SubIndices = Sub0_3;
364
365 } else if (AMDGPU::SReg_256RegClass.contains(DestReg)) {
366 assert(AMDGPU::SReg_256RegClass.contains(SrcReg));
367 Opcode = AMDGPU::S_MOV_B32;
368 SubIndices = Sub0_7;
369
370 } else if (AMDGPU::SReg_512RegClass.contains(DestReg)) {
371 assert(AMDGPU::SReg_512RegClass.contains(SrcReg));
372 Opcode = AMDGPU::S_MOV_B32;
373 SubIndices = Sub0_15;
374
Tom Stellard75aadc22012-12-11 21:25:42 +0000375 } else if (AMDGPU::VReg_32RegClass.contains(DestReg)) {
376 assert(AMDGPU::VReg_32RegClass.contains(SrcReg) ||
NAKAMURA Takumi4bb85f92013-10-28 04:07:23 +0000377 AMDGPU::SReg_32RegClass.contains(SrcReg));
Tom Stellard75aadc22012-12-11 21:25:42 +0000378 BuildMI(MBB, MI, DL, get(AMDGPU::V_MOV_B32_e32), DestReg)
379 .addReg(SrcReg, getKillRegState(KillSrc));
Christian Konigd0e3da12013-03-01 09:46:27 +0000380 return;
381
382 } else if (AMDGPU::VReg_64RegClass.contains(DestReg)) {
383 assert(AMDGPU::VReg_64RegClass.contains(SrcReg) ||
NAKAMURA Takumi4bb85f92013-10-28 04:07:23 +0000384 AMDGPU::SReg_64RegClass.contains(SrcReg));
Christian Konigd0e3da12013-03-01 09:46:27 +0000385 Opcode = AMDGPU::V_MOV_B32_e32;
386 SubIndices = Sub0_1;
387
Christian Konig8b1ed282013-04-10 08:39:16 +0000388 } else if (AMDGPU::VReg_96RegClass.contains(DestReg)) {
389 assert(AMDGPU::VReg_96RegClass.contains(SrcReg));
390 Opcode = AMDGPU::V_MOV_B32_e32;
391 SubIndices = Sub0_2;
392
Christian Konigd0e3da12013-03-01 09:46:27 +0000393 } else if (AMDGPU::VReg_128RegClass.contains(DestReg)) {
394 assert(AMDGPU::VReg_128RegClass.contains(SrcReg) ||
NAKAMURA Takumi4bb85f92013-10-28 04:07:23 +0000395 AMDGPU::SReg_128RegClass.contains(SrcReg));
Christian Konigd0e3da12013-03-01 09:46:27 +0000396 Opcode = AMDGPU::V_MOV_B32_e32;
397 SubIndices = Sub0_3;
398
399 } else if (AMDGPU::VReg_256RegClass.contains(DestReg)) {
400 assert(AMDGPU::VReg_256RegClass.contains(SrcReg) ||
NAKAMURA Takumi4bb85f92013-10-28 04:07:23 +0000401 AMDGPU::SReg_256RegClass.contains(SrcReg));
Christian Konigd0e3da12013-03-01 09:46:27 +0000402 Opcode = AMDGPU::V_MOV_B32_e32;
403 SubIndices = Sub0_7;
404
405 } else if (AMDGPU::VReg_512RegClass.contains(DestReg)) {
406 assert(AMDGPU::VReg_512RegClass.contains(SrcReg) ||
NAKAMURA Takumi4bb85f92013-10-28 04:07:23 +0000407 AMDGPU::SReg_512RegClass.contains(SrcReg));
Christian Konigd0e3da12013-03-01 09:46:27 +0000408 Opcode = AMDGPU::V_MOV_B32_e32;
409 SubIndices = Sub0_15;
410
Tom Stellard75aadc22012-12-11 21:25:42 +0000411 } else {
Christian Konigd0e3da12013-03-01 09:46:27 +0000412 llvm_unreachable("Can't copy register!");
413 }
414
415 while (unsigned SubIdx = *SubIndices++) {
416 MachineInstrBuilder Builder = BuildMI(MBB, MI, DL,
417 get(Opcode), RI.getSubReg(DestReg, SubIdx));
418
419 Builder.addReg(RI.getSubReg(SrcReg, SubIdx), getKillRegState(KillSrc));
420
421 if (*SubIndices)
422 Builder.addReg(DestReg, RegState::Define | RegState::Implicit);
Tom Stellard75aadc22012-12-11 21:25:42 +0000423 }
424}
425
Christian Konig3c145802013-03-27 09:12:59 +0000426unsigned SIInstrInfo::commuteOpcode(unsigned Opcode) const {
Christian Konig3c145802013-03-27 09:12:59 +0000427 int NewOpc;
428
429 // Try to map original to commuted opcode
430 if ((NewOpc = AMDGPU::getCommuteRev(Opcode)) != -1)
431 return NewOpc;
432
433 // Try to map commuted to original opcode
434 if ((NewOpc = AMDGPU::getCommuteOrig(Opcode)) != -1)
435 return NewOpc;
436
437 return Opcode;
438}
439
Tom Stellard96468902014-09-24 01:33:17 +0000440static bool shouldTryToSpillVGPRs(MachineFunction *MF) {
441
442 SIMachineFunctionInfo *MFI = MF->getInfo<SIMachineFunctionInfo>();
443 const TargetMachine &TM = MF->getTarget();
444
445 // FIXME: Even though it can cause problems, we need to enable
446 // spilling at -O0, since the fast register allocator always
447 // spills registers that are live at the end of blocks.
448 return MFI->getShaderType() == ShaderType::COMPUTE &&
449 TM.getOptLevel() == CodeGenOpt::None;
450
451}
452
Tom Stellardc149dc02013-11-27 21:23:35 +0000453void SIInstrInfo::storeRegToStackSlot(MachineBasicBlock &MBB,
454 MachineBasicBlock::iterator MI,
455 unsigned SrcReg, bool isKill,
456 int FrameIndex,
457 const TargetRegisterClass *RC,
458 const TargetRegisterInfo *TRI) const {
Tom Stellard4e07b1d2014-06-10 21:20:41 +0000459 MachineFunction *MF = MBB.getParent();
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000460 MachineFrameInfo *FrameInfo = MF->getFrameInfo();
Tom Stellardc149dc02013-11-27 21:23:35 +0000461 DebugLoc DL = MBB.findDebugLoc(MI);
Tom Stellard96468902014-09-24 01:33:17 +0000462 int Opcode = -1;
Tom Stellardc149dc02013-11-27 21:23:35 +0000463
Tom Stellard96468902014-09-24 01:33:17 +0000464 if (RI.isSGPRClass(RC)) {
Tom Stellardeba61072014-05-02 15:41:42 +0000465 // We are only allowed to create one new instruction when spilling
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000466 // registers, so we need to use pseudo instruction for spilling
467 // SGPRs.
Tom Stellardeba61072014-05-02 15:41:42 +0000468 switch (RC->getSize() * 8) {
Tom Stellard96468902014-09-24 01:33:17 +0000469 case 32: Opcode = AMDGPU::SI_SPILL_S32_SAVE; break;
470 case 64: Opcode = AMDGPU::SI_SPILL_S64_SAVE; break;
471 case 128: Opcode = AMDGPU::SI_SPILL_S128_SAVE; break;
472 case 256: Opcode = AMDGPU::SI_SPILL_S256_SAVE; break;
473 case 512: Opcode = AMDGPU::SI_SPILL_S512_SAVE; break;
Tom Stellardc149dc02013-11-27 21:23:35 +0000474 }
Tom Stellard96468902014-09-24 01:33:17 +0000475 } else if(shouldTryToSpillVGPRs(MF) && RI.hasVGPRs(RC)) {
476 switch(RC->getSize() * 8) {
477 case 32: Opcode = AMDGPU::SI_SPILL_V32_SAVE; break;
478 case 64: Opcode = AMDGPU::SI_SPILL_V64_SAVE; break;
479 case 96: Opcode = AMDGPU::SI_SPILL_V96_SAVE; break;
480 case 128: Opcode = AMDGPU::SI_SPILL_V128_SAVE; break;
481 case 256: Opcode = AMDGPU::SI_SPILL_V256_SAVE; break;
482 case 512: Opcode = AMDGPU::SI_SPILL_V512_SAVE; break;
483 }
484 }
Tom Stellardeba61072014-05-02 15:41:42 +0000485
Tom Stellard96468902014-09-24 01:33:17 +0000486 if (Opcode != -1) {
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000487 FrameInfo->setObjectAlignment(FrameIndex, 4);
488 BuildMI(MBB, MI, DL, get(Opcode))
Tom Stellardeba61072014-05-02 15:41:42 +0000489 .addReg(SrcReg)
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000490 .addFrameIndex(FrameIndex);
Tom Stellardeba61072014-05-02 15:41:42 +0000491 } else {
Tom Stellard96468902014-09-24 01:33:17 +0000492 LLVMContext &Ctx = MF->getFunction()->getContext();
493 Ctx.emitError("SIInstrInfo::storeRegToStackSlot - Do not know how to"
494 " spill register");
495 BuildMI(MBB, MI, DL, get(AMDGPU::V_MOV_B32_e32), AMDGPU::VGPR0)
496 .addReg(SrcReg);
Tom Stellardc149dc02013-11-27 21:23:35 +0000497 }
498}
499
500void SIInstrInfo::loadRegFromStackSlot(MachineBasicBlock &MBB,
501 MachineBasicBlock::iterator MI,
502 unsigned DestReg, int FrameIndex,
503 const TargetRegisterClass *RC,
504 const TargetRegisterInfo *TRI) const {
Tom Stellard4e07b1d2014-06-10 21:20:41 +0000505 MachineFunction *MF = MBB.getParent();
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000506 MachineFrameInfo *FrameInfo = MF->getFrameInfo();
Tom Stellardc149dc02013-11-27 21:23:35 +0000507 DebugLoc DL = MBB.findDebugLoc(MI);
Tom Stellard96468902014-09-24 01:33:17 +0000508 int Opcode = -1;
Tom Stellard4e07b1d2014-06-10 21:20:41 +0000509
Tom Stellard96468902014-09-24 01:33:17 +0000510 if (RI.isSGPRClass(RC)){
Tom Stellardeba61072014-05-02 15:41:42 +0000511 switch(RC->getSize() * 8) {
Tom Stellard96468902014-09-24 01:33:17 +0000512 case 32: Opcode = AMDGPU::SI_SPILL_S32_RESTORE; break;
513 case 64: Opcode = AMDGPU::SI_SPILL_S64_RESTORE; break;
514 case 128: Opcode = AMDGPU::SI_SPILL_S128_RESTORE; break;
515 case 256: Opcode = AMDGPU::SI_SPILL_S256_RESTORE; break;
516 case 512: Opcode = AMDGPU::SI_SPILL_S512_RESTORE; break;
Tom Stellardc149dc02013-11-27 21:23:35 +0000517 }
Tom Stellard96468902014-09-24 01:33:17 +0000518 } else if(shouldTryToSpillVGPRs(MF) && RI.hasVGPRs(RC)) {
519 switch(RC->getSize() * 8) {
520 case 32: Opcode = AMDGPU::SI_SPILL_V32_RESTORE; break;
521 case 64: Opcode = AMDGPU::SI_SPILL_V64_RESTORE; break;
522 case 96: Opcode = AMDGPU::SI_SPILL_V96_RESTORE; break;
523 case 128: Opcode = AMDGPU::SI_SPILL_V128_RESTORE; break;
524 case 256: Opcode = AMDGPU::SI_SPILL_V256_RESTORE; break;
525 case 512: Opcode = AMDGPU::SI_SPILL_V512_RESTORE; break;
526 }
527 }
Tom Stellardeba61072014-05-02 15:41:42 +0000528
Tom Stellard96468902014-09-24 01:33:17 +0000529 if (Opcode != -1) {
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000530 FrameInfo->setObjectAlignment(FrameIndex, 4);
Tom Stellardeba61072014-05-02 15:41:42 +0000531 BuildMI(MBB, MI, DL, get(Opcode), DestReg)
Tom Stellardc5cf2f02014-08-21 20:40:54 +0000532 .addFrameIndex(FrameIndex);
Tom Stellardeba61072014-05-02 15:41:42 +0000533 } else {
Tom Stellard96468902014-09-24 01:33:17 +0000534 LLVMContext &Ctx = MF->getFunction()->getContext();
535 Ctx.emitError("SIInstrInfo::loadRegFromStackSlot - Do not know how to"
536 " restore register");
537 BuildMI(MBB, MI, DL, get(AMDGPU::V_MOV_B32_e32), DestReg)
538 .addReg(AMDGPU::VGPR0);
Tom Stellardc149dc02013-11-27 21:23:35 +0000539 }
540}
541
Tom Stellard96468902014-09-24 01:33:17 +0000542/// \param @Offset Offset in bytes of the FrameIndex being spilled
543unsigned SIInstrInfo::calculateLDSSpillAddress(MachineBasicBlock &MBB,
544 MachineBasicBlock::iterator MI,
545 RegScavenger *RS, unsigned TmpReg,
546 unsigned FrameOffset,
547 unsigned Size) const {
548 MachineFunction *MF = MBB.getParent();
549 SIMachineFunctionInfo *MFI = MF->getInfo<SIMachineFunctionInfo>();
550 const AMDGPUSubtarget &ST = MF->getTarget().getSubtarget<AMDGPUSubtarget>();
551 const SIRegisterInfo *TRI =
552 static_cast<const SIRegisterInfo*>(ST.getRegisterInfo());
553 DebugLoc DL = MBB.findDebugLoc(MI);
554 unsigned WorkGroupSize = MFI->getMaximumWorkGroupSize(*MF);
555 unsigned WavefrontSize = ST.getWavefrontSize();
556
557 unsigned TIDReg = MFI->getTIDReg();
558 if (!MFI->hasCalculatedTID()) {
559 MachineBasicBlock &Entry = MBB.getParent()->front();
560 MachineBasicBlock::iterator Insert = Entry.front();
561 DebugLoc DL = Insert->getDebugLoc();
562
563 TIDReg = RI.findUnusedVGPR(MF->getRegInfo());
564 if (TIDReg == AMDGPU::NoRegister)
565 return TIDReg;
566
567
568 if (MFI->getShaderType() == ShaderType::COMPUTE &&
569 WorkGroupSize > WavefrontSize) {
570
571 unsigned TIDIGXReg = TRI->getPreloadedValue(*MF, SIRegisterInfo::TIDIG_X);
572 unsigned TIDIGYReg = TRI->getPreloadedValue(*MF, SIRegisterInfo::TIDIG_Y);
573 unsigned TIDIGZReg = TRI->getPreloadedValue(*MF, SIRegisterInfo::TIDIG_Z);
574 unsigned InputPtrReg =
575 TRI->getPreloadedValue(*MF, SIRegisterInfo::INPUT_PTR);
576 static const unsigned TIDIGRegs[3] = {
577 TIDIGXReg, TIDIGYReg, TIDIGZReg
578 };
579 for (unsigned Reg : TIDIGRegs) {
580 if (!Entry.isLiveIn(Reg))
581 Entry.addLiveIn(Reg);
582 }
583
584 RS->enterBasicBlock(&Entry);
585 unsigned STmp0 = RS->scavengeRegister(&AMDGPU::SGPR_32RegClass, 0);
586 unsigned STmp1 = RS->scavengeRegister(&AMDGPU::SGPR_32RegClass, 0);
587 BuildMI(Entry, Insert, DL, get(AMDGPU::S_LOAD_DWORD_IMM), STmp0)
588 .addReg(InputPtrReg)
589 .addImm(SI::KernelInputOffsets::NGROUPS_Z);
590 BuildMI(Entry, Insert, DL, get(AMDGPU::S_LOAD_DWORD_IMM), STmp1)
591 .addReg(InputPtrReg)
592 .addImm(SI::KernelInputOffsets::NGROUPS_Y);
593
594 // NGROUPS.X * NGROUPS.Y
595 BuildMI(Entry, Insert, DL, get(AMDGPU::S_MUL_I32), STmp1)
596 .addReg(STmp1)
597 .addReg(STmp0);
598 // (NGROUPS.X * NGROUPS.Y) * TIDIG.X
599 BuildMI(Entry, Insert, DL, get(AMDGPU::V_MUL_U32_U24_e32), TIDReg)
600 .addReg(STmp1)
601 .addReg(TIDIGXReg);
602 // NGROUPS.Z * TIDIG.Y + (NGROUPS.X * NGROPUS.Y * TIDIG.X)
603 BuildMI(Entry, Insert, DL, get(AMDGPU::V_MAD_U32_U24), TIDReg)
604 .addReg(STmp0)
605 .addReg(TIDIGYReg)
606 .addReg(TIDReg);
607 // (NGROUPS.Z * TIDIG.Y + (NGROUPS.X * NGROPUS.Y * TIDIG.X)) + TIDIG.Z
608 BuildMI(Entry, Insert, DL, get(AMDGPU::V_ADD_I32_e32), TIDReg)
609 .addReg(TIDReg)
610 .addReg(TIDIGZReg);
611 } else {
612 // Get the wave id
613 BuildMI(Entry, Insert, DL, get(AMDGPU::V_MBCNT_LO_U32_B32_e64),
614 TIDReg)
615 .addImm(-1)
616 .addImm(0);
617
618 BuildMI(Entry, Insert, DL, get(AMDGPU::V_MBCNT_HI_U32_B32_e32),
619 TIDReg)
620 .addImm(-1)
621 .addReg(TIDReg);
622 }
623
624 BuildMI(Entry, Insert, DL, get(AMDGPU::V_LSHLREV_B32_e32),
625 TIDReg)
626 .addImm(2)
627 .addReg(TIDReg);
628 MFI->setTIDReg(TIDReg);
629 }
630
631 // Add FrameIndex to LDS offset
632 unsigned LDSOffset = MFI->LDSSize + (FrameOffset * WorkGroupSize);
633 BuildMI(MBB, MI, DL, get(AMDGPU::V_ADD_I32_e32), TmpReg)
634 .addImm(LDSOffset)
635 .addReg(TIDReg);
636
637 return TmpReg;
638}
639
Tom Stellardeba61072014-05-02 15:41:42 +0000640void SIInstrInfo::insertNOPs(MachineBasicBlock::iterator MI,
641 int Count) const {
642 while (Count > 0) {
643 int Arg;
644 if (Count >= 8)
645 Arg = 7;
646 else
647 Arg = Count - 1;
648 Count -= 8;
649 BuildMI(*MI->getParent(), MI, MI->getDebugLoc(), get(AMDGPU::S_NOP))
650 .addImm(Arg);
651 }
652}
653
654bool SIInstrInfo::expandPostRAPseudo(MachineBasicBlock::iterator MI) const {
Tom Stellardeba61072014-05-02 15:41:42 +0000655 MachineBasicBlock &MBB = *MI->getParent();
656 DebugLoc DL = MBB.findDebugLoc(MI);
657 switch (MI->getOpcode()) {
658 default: return AMDGPUInstrInfo::expandPostRAPseudo(MI);
659
Tom Stellard067c8152014-07-21 14:01:14 +0000660 case AMDGPU::SI_CONSTDATA_PTR: {
661 unsigned Reg = MI->getOperand(0).getReg();
662 unsigned RegLo = RI.getSubReg(Reg, AMDGPU::sub0);
663 unsigned RegHi = RI.getSubReg(Reg, AMDGPU::sub1);
664
665 BuildMI(MBB, MI, DL, get(AMDGPU::S_GETPC_B64), Reg);
666
667 // Add 32-bit offset from this instruction to the start of the constant data.
Tom Stellard80942a12014-09-05 14:07:59 +0000668 BuildMI(MBB, MI, DL, get(AMDGPU::S_ADD_U32), RegLo)
Tom Stellard067c8152014-07-21 14:01:14 +0000669 .addReg(RegLo)
670 .addTargetIndex(AMDGPU::TI_CONSTDATA_START)
671 .addReg(AMDGPU::SCC, RegState::Define | RegState::Implicit);
672 BuildMI(MBB, MI, DL, get(AMDGPU::S_ADDC_U32), RegHi)
673 .addReg(RegHi)
674 .addImm(0)
675 .addReg(AMDGPU::SCC, RegState::Define | RegState::Implicit)
676 .addReg(AMDGPU::SCC, RegState::Implicit);
677 MI->eraseFromParent();
678 break;
679 }
Tom Stellard60024a02014-09-24 01:33:24 +0000680 case AMDGPU::SGPR_USE:
681 // This is just a placeholder for register allocation.
682 MI->eraseFromParent();
683 break;
Tom Stellardeba61072014-05-02 15:41:42 +0000684 }
685 return true;
686}
687
Christian Konig76edd4f2013-02-26 17:52:29 +0000688MachineInstr *SIInstrInfo::commuteInstruction(MachineInstr *MI,
689 bool NewMI) const {
Matt Arsenaultaff65fb2014-09-26 17:54:43 +0000690 if (MI->getNumOperands() < 3)
Craig Topper062a2ba2014-04-25 05:30:21 +0000691 return nullptr;
Christian Konig76edd4f2013-02-26 17:52:29 +0000692
Matt Arsenaultaff65fb2014-09-26 17:54:43 +0000693 int Src0Idx = AMDGPU::getNamedOperandIdx(MI->getOpcode(),
694 AMDGPU::OpName::src0);
695 assert(Src0Idx != -1 && "Should always have src0 operand");
696
697 if (!MI->getOperand(Src0Idx).isReg())
698 return nullptr;
699
700 int Src1Idx = AMDGPU::getNamedOperandIdx(MI->getOpcode(),
701 AMDGPU::OpName::src1);
702
Tom Stellard0e975cf2014-08-01 00:32:35 +0000703 // Make sure it s legal to commute operands for VOP2.
Matt Arsenaultaff65fb2014-09-26 17:54:43 +0000704 if ((Src1Idx != -1) && isVOP2(MI->getOpcode()) &&
705 (!isOperandLegal(MI, Src0Idx, &MI->getOperand(Src1Idx)) ||
706 !isOperandLegal(MI, Src1Idx, &MI->getOperand(Src0Idx))))
Tom Stellard0e975cf2014-08-01 00:32:35 +0000707 return nullptr;
Tom Stellard82166022013-11-13 23:36:37 +0000708
Matt Arsenaultaff65fb2014-09-26 17:54:43 +0000709 if (Src1Idx != -1 && !MI->getOperand(Src1Idx).isReg()) {
Tom Stellard82166022013-11-13 23:36:37 +0000710 // XXX: Commute instructions with FPImm operands
Matt Arsenault0bea8d82014-09-26 17:54:46 +0000711 if (NewMI || !MI->getOperand(Src1Idx).isImm() ||
Tom Stellard82166022013-11-13 23:36:37 +0000712 (!isVOP2(MI->getOpcode()) && !isVOP3(MI->getOpcode()))) {
Craig Topper062a2ba2014-04-25 05:30:21 +0000713 return nullptr;
Tom Stellard82166022013-11-13 23:36:37 +0000714 }
715
Tom Stellardb4a313a2014-08-01 00:32:39 +0000716 // XXX: Commute VOP3 instructions with abs and neg set .
Tom Stellardb4a313a2014-08-01 00:32:39 +0000717 const MachineOperand *Src0Mods = getNamedOperand(*MI,
718 AMDGPU::OpName::src0_modifiers);
719 const MachineOperand *Src1Mods = getNamedOperand(*MI,
720 AMDGPU::OpName::src1_modifiers);
721 const MachineOperand *Src2Mods = getNamedOperand(*MI,
722 AMDGPU::OpName::src2_modifiers);
723
Matt Arsenault272c50a2014-09-30 19:49:43 +0000724 if ((Src0Mods && Src0Mods->getImm()) ||
725 (Src1Mods && Src1Mods->getImm()) ||
Tom Stellardb4a313a2014-08-01 00:32:39 +0000726 (Src2Mods && Src2Mods->getImm()))
Craig Topper062a2ba2014-04-25 05:30:21 +0000727 return nullptr;
Tom Stellard82166022013-11-13 23:36:37 +0000728
Matt Arsenaultaff65fb2014-09-26 17:54:43 +0000729 unsigned Reg = MI->getOperand(Src0Idx).getReg();
730 unsigned SubReg = MI->getOperand(Src0Idx).getSubReg();
731 MI->getOperand(Src0Idx).ChangeToImmediate(MI->getOperand(Src1Idx).getImm());
732 MI->getOperand(Src1Idx).ChangeToRegister(Reg, false);
733 MI->getOperand(Src1Idx).setSubReg(SubReg);
Tom Stellard82166022013-11-13 23:36:37 +0000734 } else {
735 MI = TargetInstrInfo::commuteInstruction(MI, NewMI);
736 }
Christian Konig3c145802013-03-27 09:12:59 +0000737
738 if (MI)
739 MI->setDesc(get(commuteOpcode(MI->getOpcode())));
740
741 return MI;
Christian Konig76edd4f2013-02-26 17:52:29 +0000742}
743
Matt Arsenault92befe72014-09-26 17:54:54 +0000744// This needs to be implemented because the source modifiers may be inserted
745// between the true commutable operands, and the base
746// TargetInstrInfo::commuteInstruction uses it.
747bool SIInstrInfo::findCommutedOpIndices(MachineInstr *MI,
748 unsigned &SrcOpIdx1,
749 unsigned &SrcOpIdx2) const {
750 const MCInstrDesc &MCID = MI->getDesc();
751 if (!MCID.isCommutable())
752 return false;
753
754 unsigned Opc = MI->getOpcode();
755 int Src0Idx = AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::src0);
756 if (Src0Idx == -1)
757 return false;
758
759 // FIXME: Workaround TargetInstrInfo::commuteInstruction asserting on
760 // immediate.
761 if (!MI->getOperand(Src0Idx).isReg())
762 return false;
763
764 int Src1Idx = AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::src1);
765 if (Src1Idx == -1)
766 return false;
767
768 if (!MI->getOperand(Src1Idx).isReg())
769 return false;
770
771 SrcOpIdx1 = Src0Idx;
772 SrcOpIdx2 = Src1Idx;
773 return true;
774}
775
Tom Stellard26a3b672013-10-22 18:19:10 +0000776MachineInstr *SIInstrInfo::buildMovInstr(MachineBasicBlock *MBB,
777 MachineBasicBlock::iterator I,
778 unsigned DstReg,
779 unsigned SrcReg) const {
Tom Stellard81d871d2013-11-13 23:36:50 +0000780 return BuildMI(*MBB, I, MBB->findDebugLoc(I), get(AMDGPU::V_MOV_B32_e32),
781 DstReg) .addReg(SrcReg);
Tom Stellard26a3b672013-10-22 18:19:10 +0000782}
783
Tom Stellard75aadc22012-12-11 21:25:42 +0000784bool SIInstrInfo::isMov(unsigned Opcode) const {
785 switch(Opcode) {
786 default: return false;
787 case AMDGPU::S_MOV_B32:
788 case AMDGPU::S_MOV_B64:
789 case AMDGPU::V_MOV_B32_e32:
790 case AMDGPU::V_MOV_B32_e64:
Tom Stellard75aadc22012-12-11 21:25:42 +0000791 return true;
792 }
793}
794
795bool
796SIInstrInfo::isSafeToMoveRegClassDefs(const TargetRegisterClass *RC) const {
797 return RC != &AMDGPU::EXECRegRegClass;
798}
Tom Stellardf3b2a1e2013-02-06 17:32:29 +0000799
Tom Stellard30f59412014-03-31 14:01:56 +0000800bool
801SIInstrInfo::isTriviallyReMaterializable(const MachineInstr *MI,
802 AliasAnalysis *AA) const {
803 switch(MI->getOpcode()) {
804 default: return AMDGPUInstrInfo::isTriviallyReMaterializable(MI, AA);
805 case AMDGPU::S_MOV_B32:
806 case AMDGPU::S_MOV_B64:
807 case AMDGPU::V_MOV_B32_e32:
808 return MI->getOperand(1).isImm();
809 }
810}
811
Tom Stellard5d7aaae2014-02-10 16:58:30 +0000812namespace llvm {
813namespace AMDGPU {
814// Helper function generated by tablegen. We are wrapping this with
Matt Arsenault57e74d22014-07-29 00:02:40 +0000815// an SIInstrInfo function that returns bool rather than int.
Tom Stellard5d7aaae2014-02-10 16:58:30 +0000816int isDS(uint16_t Opcode);
817}
818}
819
820bool SIInstrInfo::isDS(uint16_t Opcode) const {
821 return ::AMDGPU::isDS(Opcode) != -1;
822}
823
Matt Arsenaultb9f46ee2014-07-28 17:59:38 +0000824bool SIInstrInfo::isMIMG(uint16_t Opcode) const {
Tom Stellard16a9a202013-08-14 23:24:17 +0000825 return get(Opcode).TSFlags & SIInstrFlags::MIMG;
826}
827
Matt Arsenaultb9f46ee2014-07-28 17:59:38 +0000828bool SIInstrInfo::isSMRD(uint16_t Opcode) const {
Michel Danzer20680b12013-08-16 16:19:24 +0000829 return get(Opcode).TSFlags & SIInstrFlags::SMRD;
830}
831
Matt Arsenaulte2fabd32014-07-29 18:51:56 +0000832bool SIInstrInfo::isMUBUF(uint16_t Opcode) const {
833 return get(Opcode).TSFlags & SIInstrFlags::MUBUF;
834}
835
836bool SIInstrInfo::isMTBUF(uint16_t Opcode) const {
837 return get(Opcode).TSFlags & SIInstrFlags::MTBUF;
838}
839
Matt Arsenault3f981402014-09-15 15:41:53 +0000840bool SIInstrInfo::isFLAT(uint16_t Opcode) const {
841 return get(Opcode).TSFlags & SIInstrFlags::FLAT;
842}
843
Tom Stellard93fabce2013-10-10 17:11:55 +0000844bool SIInstrInfo::isVOP1(uint16_t Opcode) const {
845 return get(Opcode).TSFlags & SIInstrFlags::VOP1;
846}
847
848bool SIInstrInfo::isVOP2(uint16_t Opcode) const {
849 return get(Opcode).TSFlags & SIInstrFlags::VOP2;
850}
851
852bool SIInstrInfo::isVOP3(uint16_t Opcode) const {
853 return get(Opcode).TSFlags & SIInstrFlags::VOP3;
854}
855
856bool SIInstrInfo::isVOPC(uint16_t Opcode) const {
857 return get(Opcode).TSFlags & SIInstrFlags::VOPC;
858}
859
Tom Stellard82166022013-11-13 23:36:37 +0000860bool SIInstrInfo::isSALUInstr(const MachineInstr &MI) const {
861 return get(MI.getOpcode()).TSFlags & SIInstrFlags::SALU;
862}
863
Matt Arsenaultd7bdcc42014-03-31 19:54:27 +0000864bool SIInstrInfo::isInlineConstant(const APInt &Imm) const {
865 int32_t Val = Imm.getSExtValue();
866 if (Val >= -16 && Val <= 64)
867 return true;
Tom Stellardd0084462014-03-17 17:03:52 +0000868
869 // The actual type of the operand does not seem to matter as long
870 // as the bits match one of the inline immediate values. For example:
871 //
872 // -nan has the hexadecimal encoding of 0xfffffffe which is -2 in decimal,
873 // so it is a legal inline immediate.
874 //
875 // 1065353216 has the hexadecimal encoding 0x3f800000 which is 1.0f in
876 // floating-point, so it is a legal inline immediate.
Matt Arsenaultd7bdcc42014-03-31 19:54:27 +0000877
878 return (APInt::floatToBits(0.0f) == Imm) ||
879 (APInt::floatToBits(1.0f) == Imm) ||
880 (APInt::floatToBits(-1.0f) == Imm) ||
881 (APInt::floatToBits(0.5f) == Imm) ||
882 (APInt::floatToBits(-0.5f) == Imm) ||
883 (APInt::floatToBits(2.0f) == Imm) ||
884 (APInt::floatToBits(-2.0f) == Imm) ||
885 (APInt::floatToBits(4.0f) == Imm) ||
886 (APInt::floatToBits(-4.0f) == Imm);
887}
888
889bool SIInstrInfo::isInlineConstant(const MachineOperand &MO) const {
890 if (MO.isImm())
891 return isInlineConstant(APInt(32, MO.getImm(), true));
892
893 if (MO.isFPImm()) {
894 APFloat FpImm = MO.getFPImm()->getValueAPF();
895 return isInlineConstant(FpImm.bitcastToAPInt());
896 }
897
898 return false;
Tom Stellard93fabce2013-10-10 17:11:55 +0000899}
900
901bool SIInstrInfo::isLiteralConstant(const MachineOperand &MO) const {
902 return (MO.isImm() || MO.isFPImm()) && !isInlineConstant(MO);
903}
904
Matt Arsenaultbecb1402014-06-23 18:28:31 +0000905static bool compareMachineOp(const MachineOperand &Op0,
906 const MachineOperand &Op1) {
907 if (Op0.getType() != Op1.getType())
908 return false;
909
910 switch (Op0.getType()) {
911 case MachineOperand::MO_Register:
912 return Op0.getReg() == Op1.getReg();
913 case MachineOperand::MO_Immediate:
914 return Op0.getImm() == Op1.getImm();
915 case MachineOperand::MO_FPImmediate:
916 return Op0.getFPImm() == Op1.getFPImm();
917 default:
918 llvm_unreachable("Didn't expect to be comparing these operand types");
919 }
920}
921
Tom Stellardb02094e2014-07-21 15:45:01 +0000922bool SIInstrInfo::isImmOperandLegal(const MachineInstr *MI, unsigned OpNo,
923 const MachineOperand &MO) const {
924 const MCOperandInfo &OpInfo = get(MI->getOpcode()).OpInfo[OpNo];
925
Tom Stellard73ae1cb2014-09-23 21:26:25 +0000926 assert(MO.isImm() || MO.isFPImm() || MO.isTargetIndex() || MO.isFI());
Tom Stellardb02094e2014-07-21 15:45:01 +0000927
928 if (OpInfo.OperandType == MCOI::OPERAND_IMMEDIATE)
929 return true;
930
931 if (OpInfo.RegClass < 0)
932 return false;
933
Tom Stellard73ae1cb2014-09-23 21:26:25 +0000934 if (isLiteralConstant(MO))
935 return RI.regClassCanUseLiteralConstant(OpInfo.RegClass);
936
937 return RI.regClassCanUseInlineConstant(OpInfo.RegClass);
Tom Stellardb02094e2014-07-21 15:45:01 +0000938}
939
Matt Arsenaultb2baffa2014-08-15 17:49:05 +0000940bool SIInstrInfo::canFoldOffset(unsigned OffsetSize, unsigned AS) {
941 switch (AS) {
942 case AMDGPUAS::GLOBAL_ADDRESS: {
943 // MUBUF instructions a 12-bit offset in bytes.
944 return isUInt<12>(OffsetSize);
945 }
946 case AMDGPUAS::CONSTANT_ADDRESS: {
947 // SMRD instructions have an 8-bit offset in dwords.
948 return (OffsetSize % 4 == 0) && isUInt<8>(OffsetSize / 4);
949 }
950 case AMDGPUAS::LOCAL_ADDRESS:
951 case AMDGPUAS::REGION_ADDRESS: {
952 // The single offset versions have a 16-bit offset in bytes.
953 return isUInt<16>(OffsetSize);
954 }
955 case AMDGPUAS::PRIVATE_ADDRESS:
956 // Indirect register addressing does not use any offsets.
957 default:
958 return 0;
959 }
960}
961
Tom Stellard86d12eb2014-08-01 00:32:28 +0000962bool SIInstrInfo::hasVALU32BitEncoding(unsigned Opcode) const {
963 return AMDGPU::getVOPe32(Opcode) != -1;
964}
965
Tom Stellardb4a313a2014-08-01 00:32:39 +0000966bool SIInstrInfo::hasModifiers(unsigned Opcode) const {
967 // The src0_modifier operand is present on all instructions
968 // that have modifiers.
969
970 return AMDGPU::getNamedOperandIdx(Opcode,
971 AMDGPU::OpName::src0_modifiers) != -1;
972}
973
Tom Stellard73ae1cb2014-09-23 21:26:25 +0000974bool SIInstrInfo::usesConstantBus(const MachineRegisterInfo &MRI,
975 const MachineOperand &MO) const {
976 // Literal constants use the constant bus.
977 if (isLiteralConstant(MO))
978 return true;
979
980 if (!MO.isReg() || !MO.isUse())
981 return false;
982
983 if (TargetRegisterInfo::isVirtualRegister(MO.getReg()))
984 return RI.isSGPRClass(MRI.getRegClass(MO.getReg()));
985
986 // FLAT_SCR is just an SGPR pair.
987 if (!MO.isImplicit() && (MO.getReg() == AMDGPU::FLAT_SCR))
988 return true;
989
990 // EXEC register uses the constant bus.
991 if (!MO.isImplicit() && MO.getReg() == AMDGPU::EXEC)
992 return true;
993
994 // SGPRs use the constant bus
995 if (MO.getReg() == AMDGPU::M0 || MO.getReg() == AMDGPU::VCC ||
996 (!MO.isImplicit() &&
997 (AMDGPU::SGPR_32RegClass.contains(MO.getReg()) ||
998 AMDGPU::SGPR_64RegClass.contains(MO.getReg())))) {
999 return true;
1000 }
1001
1002 return false;
1003}
1004
Tom Stellard93fabce2013-10-10 17:11:55 +00001005bool SIInstrInfo::verifyInstruction(const MachineInstr *MI,
1006 StringRef &ErrInfo) const {
1007 uint16_t Opcode = MI->getOpcode();
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001008 const MachineRegisterInfo &MRI = MI->getParent()->getParent()->getRegInfo();
Tom Stellard93fabce2013-10-10 17:11:55 +00001009 int Src0Idx = AMDGPU::getNamedOperandIdx(Opcode, AMDGPU::OpName::src0);
1010 int Src1Idx = AMDGPU::getNamedOperandIdx(Opcode, AMDGPU::OpName::src1);
1011 int Src2Idx = AMDGPU::getNamedOperandIdx(Opcode, AMDGPU::OpName::src2);
1012
Tom Stellardca700e42014-03-17 17:03:49 +00001013 // Make sure the number of operands is correct.
1014 const MCInstrDesc &Desc = get(Opcode);
1015 if (!Desc.isVariadic() &&
1016 Desc.getNumOperands() != MI->getNumExplicitOperands()) {
1017 ErrInfo = "Instruction has wrong number of operands.";
1018 return false;
1019 }
1020
1021 // Make sure the register classes are correct
Tom Stellardb4a313a2014-08-01 00:32:39 +00001022 for (int i = 0, e = Desc.getNumOperands(); i != e; ++i) {
Tom Stellardca700e42014-03-17 17:03:49 +00001023 switch (Desc.OpInfo[i].OperandType) {
Tom Stellarda305f932014-07-02 20:53:44 +00001024 case MCOI::OPERAND_REGISTER: {
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001025 if ((MI->getOperand(i).isImm() || MI->getOperand(i).isFPImm()) &&
1026 !isImmOperandLegal(MI, i, MI->getOperand(i))) {
1027 ErrInfo = "Illegal immediate value for operand.";
Tom Stellardb4a313a2014-08-01 00:32:39 +00001028 return false;
1029 }
Tom Stellarda305f932014-07-02 20:53:44 +00001030 }
Tom Stellardca700e42014-03-17 17:03:49 +00001031 break;
1032 case MCOI::OPERAND_IMMEDIATE:
Tom Stellardb02094e2014-07-21 15:45:01 +00001033 // Check if this operand is an immediate.
1034 // FrameIndex operands will be replaced by immediates, so they are
1035 // allowed.
1036 if (!MI->getOperand(i).isImm() && !MI->getOperand(i).isFPImm() &&
1037 !MI->getOperand(i).isFI()) {
Tom Stellardca700e42014-03-17 17:03:49 +00001038 ErrInfo = "Expected immediate, but got non-immediate";
1039 return false;
1040 }
1041 // Fall-through
1042 default:
1043 continue;
1044 }
1045
1046 if (!MI->getOperand(i).isReg())
1047 continue;
1048
1049 int RegClass = Desc.OpInfo[i].RegClass;
1050 if (RegClass != -1) {
1051 unsigned Reg = MI->getOperand(i).getReg();
1052 if (TargetRegisterInfo::isVirtualRegister(Reg))
1053 continue;
1054
1055 const TargetRegisterClass *RC = RI.getRegClass(RegClass);
1056 if (!RC->contains(Reg)) {
1057 ErrInfo = "Operand has incorrect register class.";
1058 return false;
1059 }
1060 }
1061 }
1062
1063
Tom Stellard93fabce2013-10-10 17:11:55 +00001064 // Verify VOP*
1065 if (isVOP1(Opcode) || isVOP2(Opcode) || isVOP3(Opcode) || isVOPC(Opcode)) {
1066 unsigned ConstantBusCount = 0;
1067 unsigned SGPRUsed = AMDGPU::NoRegister;
Tom Stellard93fabce2013-10-10 17:11:55 +00001068 for (int i = 0, e = MI->getNumOperands(); i != e; ++i) {
1069 const MachineOperand &MO = MI->getOperand(i);
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001070 if (usesConstantBus(MRI, MO)) {
1071 if (MO.isReg()) {
1072 if (MO.getReg() != SGPRUsed)
Tom Stellard93fabce2013-10-10 17:11:55 +00001073 ++ConstantBusCount;
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001074 SGPRUsed = MO.getReg();
1075 } else {
1076 ++ConstantBusCount;
Tom Stellard93fabce2013-10-10 17:11:55 +00001077 }
1078 }
Tom Stellard93fabce2013-10-10 17:11:55 +00001079 }
1080 if (ConstantBusCount > 1) {
1081 ErrInfo = "VOP* instruction uses the constant bus more than once";
1082 return false;
1083 }
1084 }
1085
1086 // Verify SRC1 for VOP2 and VOPC
1087 if (Src1Idx != -1 && (isVOP2(Opcode) || isVOPC(Opcode))) {
1088 const MachineOperand &Src1 = MI->getOperand(Src1Idx);
Tom Stellard82166022013-11-13 23:36:37 +00001089 if (Src1.isImm() || Src1.isFPImm()) {
Tom Stellard93fabce2013-10-10 17:11:55 +00001090 ErrInfo = "VOP[2C] src1 cannot be an immediate.";
1091 return false;
1092 }
1093 }
1094
1095 // Verify VOP3
1096 if (isVOP3(Opcode)) {
1097 if (Src0Idx != -1 && isLiteralConstant(MI->getOperand(Src0Idx))) {
1098 ErrInfo = "VOP3 src0 cannot be a literal constant.";
1099 return false;
1100 }
1101 if (Src1Idx != -1 && isLiteralConstant(MI->getOperand(Src1Idx))) {
1102 ErrInfo = "VOP3 src1 cannot be a literal constant.";
1103 return false;
1104 }
1105 if (Src2Idx != -1 && isLiteralConstant(MI->getOperand(Src2Idx))) {
1106 ErrInfo = "VOP3 src2 cannot be a literal constant.";
1107 return false;
1108 }
1109 }
Matt Arsenaultbecb1402014-06-23 18:28:31 +00001110
1111 // Verify misc. restrictions on specific instructions.
1112 if (Desc.getOpcode() == AMDGPU::V_DIV_SCALE_F32 ||
1113 Desc.getOpcode() == AMDGPU::V_DIV_SCALE_F64) {
Matt Arsenault262407b2014-09-24 02:17:09 +00001114 const MachineOperand &Src0 = MI->getOperand(Src0Idx);
1115 const MachineOperand &Src1 = MI->getOperand(Src1Idx);
1116 const MachineOperand &Src2 = MI->getOperand(Src2Idx);
Matt Arsenaultbecb1402014-06-23 18:28:31 +00001117 if (Src0.isReg() && Src1.isReg() && Src2.isReg()) {
1118 if (!compareMachineOp(Src0, Src1) &&
1119 !compareMachineOp(Src0, Src2)) {
1120 ErrInfo = "v_div_scale_{f32|f64} require src0 = src1 or src2";
1121 return false;
1122 }
1123 }
1124 }
1125
Tom Stellard93fabce2013-10-10 17:11:55 +00001126 return true;
1127}
1128
Matt Arsenaultf14032a2013-11-15 22:02:28 +00001129unsigned SIInstrInfo::getVALUOp(const MachineInstr &MI) {
Tom Stellard82166022013-11-13 23:36:37 +00001130 switch (MI.getOpcode()) {
1131 default: return AMDGPU::INSTRUCTION_LIST_END;
1132 case AMDGPU::REG_SEQUENCE: return AMDGPU::REG_SEQUENCE;
1133 case AMDGPU::COPY: return AMDGPU::COPY;
1134 case AMDGPU::PHI: return AMDGPU::PHI;
Tom Stellard204e61b2014-04-07 19:45:45 +00001135 case AMDGPU::INSERT_SUBREG: return AMDGPU::INSERT_SUBREG;
Tom Stellarde0387202014-03-21 15:51:54 +00001136 case AMDGPU::S_MOV_B32:
1137 return MI.getOperand(1).isReg() ?
Tom Stellard8c12fd92014-03-24 16:12:34 +00001138 AMDGPU::COPY : AMDGPU::V_MOV_B32_e32;
Tom Stellard80942a12014-09-05 14:07:59 +00001139 case AMDGPU::S_ADD_I32:
1140 case AMDGPU::S_ADD_U32: return AMDGPU::V_ADD_I32_e32;
Matt Arsenault43b8e4e2013-11-18 20:09:29 +00001141 case AMDGPU::S_ADDC_U32: return AMDGPU::V_ADDC_U32_e32;
Tom Stellard80942a12014-09-05 14:07:59 +00001142 case AMDGPU::S_SUB_I32:
1143 case AMDGPU::S_SUB_U32: return AMDGPU::V_SUB_I32_e32;
Matt Arsenault43b8e4e2013-11-18 20:09:29 +00001144 case AMDGPU::S_SUBB_U32: return AMDGPU::V_SUBB_U32_e32;
Matt Arsenault869cd072014-09-03 23:24:35 +00001145 case AMDGPU::S_MUL_I32: return AMDGPU::V_MUL_LO_I32;
Matt Arsenault8e2581b2014-03-21 18:01:18 +00001146 case AMDGPU::S_AND_B32: return AMDGPU::V_AND_B32_e32;
1147 case AMDGPU::S_OR_B32: return AMDGPU::V_OR_B32_e32;
1148 case AMDGPU::S_XOR_B32: return AMDGPU::V_XOR_B32_e32;
1149 case AMDGPU::S_MIN_I32: return AMDGPU::V_MIN_I32_e32;
1150 case AMDGPU::S_MIN_U32: return AMDGPU::V_MIN_U32_e32;
1151 case AMDGPU::S_MAX_I32: return AMDGPU::V_MAX_I32_e32;
1152 case AMDGPU::S_MAX_U32: return AMDGPU::V_MAX_U32_e32;
Tom Stellard82166022013-11-13 23:36:37 +00001153 case AMDGPU::S_ASHR_I32: return AMDGPU::V_ASHR_I32_e32;
1154 case AMDGPU::S_ASHR_I64: return AMDGPU::V_ASHR_I64;
1155 case AMDGPU::S_LSHL_B32: return AMDGPU::V_LSHL_B32_e32;
1156 case AMDGPU::S_LSHL_B64: return AMDGPU::V_LSHL_B64;
1157 case AMDGPU::S_LSHR_B32: return AMDGPU::V_LSHR_B32_e32;
1158 case AMDGPU::S_LSHR_B64: return AMDGPU::V_LSHR_B64;
Matt Arsenault27cc9582014-04-18 01:53:18 +00001159 case AMDGPU::S_SEXT_I32_I8: return AMDGPU::V_BFE_I32;
1160 case AMDGPU::S_SEXT_I32_I16: return AMDGPU::V_BFE_I32;
Matt Arsenault78b86702014-04-18 05:19:26 +00001161 case AMDGPU::S_BFE_U32: return AMDGPU::V_BFE_U32;
1162 case AMDGPU::S_BFE_I32: return AMDGPU::V_BFE_I32;
Matt Arsenault43160e72014-06-18 17:13:57 +00001163 case AMDGPU::S_BREV_B32: return AMDGPU::V_BFREV_B32_e32;
Matt Arsenault2c335622014-04-09 07:16:16 +00001164 case AMDGPU::S_NOT_B32: return AMDGPU::V_NOT_B32_e32;
Matt Arsenault689f3252014-06-09 16:36:31 +00001165 case AMDGPU::S_NOT_B64: return AMDGPU::V_NOT_B32_e32;
Matt Arsenault0cb92e12014-04-11 19:25:18 +00001166 case AMDGPU::S_CMP_EQ_I32: return AMDGPU::V_CMP_EQ_I32_e32;
1167 case AMDGPU::S_CMP_LG_I32: return AMDGPU::V_CMP_NE_I32_e32;
1168 case AMDGPU::S_CMP_GT_I32: return AMDGPU::V_CMP_GT_I32_e32;
1169 case AMDGPU::S_CMP_GE_I32: return AMDGPU::V_CMP_GE_I32_e32;
1170 case AMDGPU::S_CMP_LT_I32: return AMDGPU::V_CMP_LT_I32_e32;
1171 case AMDGPU::S_CMP_LE_I32: return AMDGPU::V_CMP_LE_I32_e32;
Tom Stellard4c00b522014-05-09 16:42:22 +00001172 case AMDGPU::S_LOAD_DWORD_IMM:
Tom Stellard0c354f22014-04-30 15:31:29 +00001173 case AMDGPU::S_LOAD_DWORD_SGPR: return AMDGPU::BUFFER_LOAD_DWORD_ADDR64;
Tom Stellard4c00b522014-05-09 16:42:22 +00001174 case AMDGPU::S_LOAD_DWORDX2_IMM:
Tom Stellard0c354f22014-04-30 15:31:29 +00001175 case AMDGPU::S_LOAD_DWORDX2_SGPR: return AMDGPU::BUFFER_LOAD_DWORDX2_ADDR64;
Tom Stellard4c00b522014-05-09 16:42:22 +00001176 case AMDGPU::S_LOAD_DWORDX4_IMM:
Tom Stellard0c354f22014-04-30 15:31:29 +00001177 case AMDGPU::S_LOAD_DWORDX4_SGPR: return AMDGPU::BUFFER_LOAD_DWORDX4_ADDR64;
Matt Arsenaultb5b51102014-06-10 19:18:21 +00001178 case AMDGPU::S_BCNT1_I32_B32: return AMDGPU::V_BCNT_U32_B32_e32;
Matt Arsenault295b86e2014-06-17 17:36:27 +00001179 case AMDGPU::S_FF1_I32_B32: return AMDGPU::V_FFBL_B32_e32;
Matt Arsenault85796012014-06-17 17:36:24 +00001180 case AMDGPU::S_FLBIT_I32_B32: return AMDGPU::V_FFBH_U32_e32;
Tom Stellard82166022013-11-13 23:36:37 +00001181 }
1182}
1183
1184bool SIInstrInfo::isSALUOpSupportedOnVALU(const MachineInstr &MI) const {
1185 return getVALUOp(MI) != AMDGPU::INSTRUCTION_LIST_END;
1186}
1187
1188const TargetRegisterClass *SIInstrInfo::getOpRegClass(const MachineInstr &MI,
1189 unsigned OpNo) const {
1190 const MachineRegisterInfo &MRI = MI.getParent()->getParent()->getRegInfo();
1191 const MCInstrDesc &Desc = get(MI.getOpcode());
1192 if (MI.isVariadic() || OpNo >= Desc.getNumOperands() ||
1193 Desc.OpInfo[OpNo].RegClass == -1)
1194 return MRI.getRegClass(MI.getOperand(OpNo).getReg());
1195
1196 unsigned RCID = Desc.OpInfo[OpNo].RegClass;
1197 return RI.getRegClass(RCID);
1198}
1199
1200bool SIInstrInfo::canReadVGPR(const MachineInstr &MI, unsigned OpNo) const {
1201 switch (MI.getOpcode()) {
1202 case AMDGPU::COPY:
1203 case AMDGPU::REG_SEQUENCE:
Tom Stellard4f3b04d2014-04-17 21:00:07 +00001204 case AMDGPU::PHI:
Tom Stellarda5687382014-05-15 14:41:55 +00001205 case AMDGPU::INSERT_SUBREG:
Tom Stellard82166022013-11-13 23:36:37 +00001206 return RI.hasVGPRs(getOpRegClass(MI, 0));
1207 default:
1208 return RI.hasVGPRs(getOpRegClass(MI, OpNo));
1209 }
1210}
1211
1212void SIInstrInfo::legalizeOpWithMove(MachineInstr *MI, unsigned OpIdx) const {
1213 MachineBasicBlock::iterator I = MI;
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001214 MachineBasicBlock *MBB = MI->getParent();
Tom Stellard82166022013-11-13 23:36:37 +00001215 MachineOperand &MO = MI->getOperand(OpIdx);
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001216 MachineRegisterInfo &MRI = MBB->getParent()->getRegInfo();
Tom Stellard82166022013-11-13 23:36:37 +00001217 unsigned RCID = get(MI->getOpcode()).OpInfo[OpIdx].RegClass;
1218 const TargetRegisterClass *RC = RI.getRegClass(RCID);
1219 unsigned Opcode = AMDGPU::V_MOV_B32_e32;
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001220 if (MO.isReg())
Tom Stellard82166022013-11-13 23:36:37 +00001221 Opcode = AMDGPU::COPY;
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001222 else if (RI.isSGPRClass(RC))
Matt Arsenault671a0052013-11-14 10:08:50 +00001223 Opcode = AMDGPU::S_MOV_B32;
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001224
Tom Stellard82166022013-11-13 23:36:37 +00001225
Matt Arsenault3a4d86a2013-11-18 20:09:55 +00001226 const TargetRegisterClass *VRC = RI.getEquivalentVGPRClass(RC);
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001227 if (RI.getCommonSubClass(&AMDGPU::VReg_64RegClass, VRC))
Tom Stellard0c93c9e2014-09-05 14:08:01 +00001228 VRC = &AMDGPU::VReg_64RegClass;
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001229 else
Tom Stellard0c93c9e2014-09-05 14:08:01 +00001230 VRC = &AMDGPU::VReg_32RegClass;
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001231
Matt Arsenault3a4d86a2013-11-18 20:09:55 +00001232 unsigned Reg = MRI.createVirtualRegister(VRC);
Matt Arsenault3f3a2752014-10-13 15:47:59 +00001233 DebugLoc DL = MBB->findDebugLoc(I);
1234 BuildMI(*MI->getParent(), I, DL, get(Opcode), Reg)
1235 .addOperand(MO);
Tom Stellard82166022013-11-13 23:36:37 +00001236 MO.ChangeToRegister(Reg, false);
1237}
1238
Tom Stellard15834092014-03-21 15:51:57 +00001239unsigned SIInstrInfo::buildExtractSubReg(MachineBasicBlock::iterator MI,
1240 MachineRegisterInfo &MRI,
1241 MachineOperand &SuperReg,
1242 const TargetRegisterClass *SuperRC,
1243 unsigned SubIdx,
1244 const TargetRegisterClass *SubRC)
1245 const {
1246 assert(SuperReg.isReg());
1247
1248 unsigned NewSuperReg = MRI.createVirtualRegister(SuperRC);
1249 unsigned SubReg = MRI.createVirtualRegister(SubRC);
1250
1251 // Just in case the super register is itself a sub-register, copy it to a new
Matt Arsenault08d84942014-06-03 23:06:13 +00001252 // value so we don't need to worry about merging its subreg index with the
1253 // SubIdx passed to this function. The register coalescer should be able to
Tom Stellard15834092014-03-21 15:51:57 +00001254 // eliminate this extra copy.
1255 BuildMI(*MI->getParent(), MI, MI->getDebugLoc(), get(TargetOpcode::COPY),
1256 NewSuperReg)
1257 .addOperand(SuperReg);
1258
1259 BuildMI(*MI->getParent(), MI, MI->getDebugLoc(), get(TargetOpcode::COPY),
1260 SubReg)
1261 .addReg(NewSuperReg, 0, SubIdx);
1262 return SubReg;
1263}
1264
Matt Arsenault248b7b62014-03-24 20:08:09 +00001265MachineOperand SIInstrInfo::buildExtractSubRegOrImm(
1266 MachineBasicBlock::iterator MII,
1267 MachineRegisterInfo &MRI,
1268 MachineOperand &Op,
1269 const TargetRegisterClass *SuperRC,
1270 unsigned SubIdx,
1271 const TargetRegisterClass *SubRC) const {
1272 if (Op.isImm()) {
1273 // XXX - Is there a better way to do this?
1274 if (SubIdx == AMDGPU::sub0)
1275 return MachineOperand::CreateImm(Op.getImm() & 0xFFFFFFFF);
1276 if (SubIdx == AMDGPU::sub1)
1277 return MachineOperand::CreateImm(Op.getImm() >> 32);
1278
1279 llvm_unreachable("Unhandled register index for immediate");
1280 }
1281
1282 unsigned SubReg = buildExtractSubReg(MII, MRI, Op, SuperRC,
1283 SubIdx, SubRC);
1284 return MachineOperand::CreateReg(SubReg, false);
1285}
1286
Matt Arsenaultbd995802014-03-24 18:26:52 +00001287unsigned SIInstrInfo::split64BitImm(SmallVectorImpl<MachineInstr *> &Worklist,
1288 MachineBasicBlock::iterator MI,
1289 MachineRegisterInfo &MRI,
1290 const TargetRegisterClass *RC,
1291 const MachineOperand &Op) const {
1292 MachineBasicBlock *MBB = MI->getParent();
1293 DebugLoc DL = MI->getDebugLoc();
1294 unsigned LoDst = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1295 unsigned HiDst = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1296 unsigned Dst = MRI.createVirtualRegister(RC);
1297
1298 MachineInstr *Lo = BuildMI(*MBB, MI, DL, get(AMDGPU::S_MOV_B32),
1299 LoDst)
1300 .addImm(Op.getImm() & 0xFFFFFFFF);
1301 MachineInstr *Hi = BuildMI(*MBB, MI, DL, get(AMDGPU::S_MOV_B32),
1302 HiDst)
1303 .addImm(Op.getImm() >> 32);
1304
1305 BuildMI(*MBB, MI, DL, get(TargetOpcode::REG_SEQUENCE), Dst)
1306 .addReg(LoDst)
1307 .addImm(AMDGPU::sub0)
1308 .addReg(HiDst)
1309 .addImm(AMDGPU::sub1);
1310
1311 Worklist.push_back(Lo);
1312 Worklist.push_back(Hi);
1313
1314 return Dst;
1315}
1316
Tom Stellard0e975cf2014-08-01 00:32:35 +00001317bool SIInstrInfo::isOperandLegal(const MachineInstr *MI, unsigned OpIdx,
1318 const MachineOperand *MO) const {
1319 const MachineRegisterInfo &MRI = MI->getParent()->getParent()->getRegInfo();
1320 const MCInstrDesc &InstDesc = get(MI->getOpcode());
1321 const MCOperandInfo &OpInfo = InstDesc.OpInfo[OpIdx];
1322 const TargetRegisterClass *DefinedRC =
1323 OpInfo.RegClass != -1 ? RI.getRegClass(OpInfo.RegClass) : nullptr;
1324 if (!MO)
1325 MO = &MI->getOperand(OpIdx);
1326
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001327 if (usesConstantBus(MRI, *MO)) {
Aaron Ballmanf086a142014-09-24 13:54:56 +00001328 unsigned SGPRUsed =
1329 MO->isReg() ? MO->getReg() : (unsigned)AMDGPU::NoRegister;
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001330 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
1331 if (i == OpIdx)
1332 continue;
1333 if (usesConstantBus(MRI, MI->getOperand(i)) &&
1334 MI->getOperand(i).isReg() && MI->getOperand(i).getReg() != SGPRUsed) {
1335 return false;
1336 }
1337 }
1338 }
1339
Tom Stellard0e975cf2014-08-01 00:32:35 +00001340 if (MO->isReg()) {
1341 assert(DefinedRC);
1342 const TargetRegisterClass *RC = MRI.getRegClass(MO->getReg());
1343 return RI.getCommonSubClass(RC, RI.getRegClass(OpInfo.RegClass));
1344 }
1345
1346
1347 // Handle non-register types that are treated like immediates.
1348 assert(MO->isImm() || MO->isFPImm() || MO->isTargetIndex() || MO->isFI());
1349
Matt Arsenault4364fef2014-09-23 18:30:57 +00001350 if (!DefinedRC) {
1351 // This operand expects an immediate.
Tom Stellard0e975cf2014-08-01 00:32:35 +00001352 return true;
Matt Arsenault4364fef2014-09-23 18:30:57 +00001353 }
Tom Stellard0e975cf2014-08-01 00:32:35 +00001354
Tom Stellard73ae1cb2014-09-23 21:26:25 +00001355 return isImmOperandLegal(MI, OpIdx, *MO);
Tom Stellard0e975cf2014-08-01 00:32:35 +00001356}
1357
Tom Stellard82166022013-11-13 23:36:37 +00001358void SIInstrInfo::legalizeOperands(MachineInstr *MI) const {
1359 MachineRegisterInfo &MRI = MI->getParent()->getParent()->getRegInfo();
Tom Stellard0e975cf2014-08-01 00:32:35 +00001360
Tom Stellard82166022013-11-13 23:36:37 +00001361 int Src0Idx = AMDGPU::getNamedOperandIdx(MI->getOpcode(),
1362 AMDGPU::OpName::src0);
1363 int Src1Idx = AMDGPU::getNamedOperandIdx(MI->getOpcode(),
1364 AMDGPU::OpName::src1);
1365 int Src2Idx = AMDGPU::getNamedOperandIdx(MI->getOpcode(),
1366 AMDGPU::OpName::src2);
1367
1368 // Legalize VOP2
1369 if (isVOP2(MI->getOpcode()) && Src1Idx != -1) {
Tom Stellard0e975cf2014-08-01 00:32:35 +00001370 // Legalize src0
1371 if (!isOperandLegal(MI, Src0Idx))
Matt Arsenault08f7e372013-11-18 20:09:50 +00001372 legalizeOpWithMove(MI, Src0Idx);
Tom Stellard0e975cf2014-08-01 00:32:35 +00001373
1374 // Legalize src1
1375 if (isOperandLegal(MI, Src1Idx))
Matt Arsenault08f7e372013-11-18 20:09:50 +00001376 return;
Tom Stellard0e975cf2014-08-01 00:32:35 +00001377
1378 // Usually src0 of VOP2 instructions allow more types of inputs
1379 // than src1, so try to commute the instruction to decrease our
1380 // chances of having to insert a MOV instruction to legalize src1.
1381 if (MI->isCommutable()) {
1382 if (commuteInstruction(MI))
1383 // If we are successful in commuting, then we know MI is legal, so
1384 // we are done.
1385 return;
Matt Arsenault08f7e372013-11-18 20:09:50 +00001386 }
1387
Tom Stellard0e975cf2014-08-01 00:32:35 +00001388 legalizeOpWithMove(MI, Src1Idx);
1389 return;
Tom Stellard82166022013-11-13 23:36:37 +00001390 }
1391
Matt Arsenault08f7e372013-11-18 20:09:50 +00001392 // XXX - Do any VOP3 instructions read VCC?
Tom Stellard82166022013-11-13 23:36:37 +00001393 // Legalize VOP3
1394 if (isVOP3(MI->getOpcode())) {
Matt Arsenault5885bef2014-09-26 17:54:52 +00001395 int VOP3Idx[3] = { Src0Idx, Src1Idx, Src2Idx };
1396
Matt Arsenault6a0919f2014-09-26 17:55:03 +00001397 // Find the one SGPR operand we are allowed to use.
Matt Arsenaultee522bf2014-09-26 17:55:06 +00001398 unsigned SGPRReg = findUsedSGPR(MI, VOP3Idx);
Matt Arsenault5885bef2014-09-26 17:54:52 +00001399
Tom Stellard82166022013-11-13 23:36:37 +00001400 for (unsigned i = 0; i < 3; ++i) {
1401 int Idx = VOP3Idx[i];
1402 if (Idx == -1)
Matt Arsenault2dd31292014-09-26 17:55:14 +00001403 break;
Tom Stellard82166022013-11-13 23:36:37 +00001404 MachineOperand &MO = MI->getOperand(Idx);
1405
1406 if (MO.isReg()) {
1407 if (!RI.isSGPRClass(MRI.getRegClass(MO.getReg())))
1408 continue; // VGPRs are legal
1409
Matt Arsenaultf0b1e3a2013-11-18 20:09:21 +00001410 assert(MO.getReg() != AMDGPU::SCC && "SCC operand to VOP3 instruction");
1411
Tom Stellard82166022013-11-13 23:36:37 +00001412 if (SGPRReg == AMDGPU::NoRegister || SGPRReg == MO.getReg()) {
1413 SGPRReg = MO.getReg();
1414 // We can use one SGPR in each VOP3 instruction.
1415 continue;
1416 }
1417 } else if (!isLiteralConstant(MO)) {
1418 // If it is not a register and not a literal constant, then it must be
1419 // an inline constant which is always legal.
1420 continue;
1421 }
1422 // If we make it this far, then the operand is not legal and we must
1423 // legalize it.
1424 legalizeOpWithMove(MI, Idx);
1425 }
1426 }
1427
Tom Stellard4f3b04d2014-04-17 21:00:07 +00001428 // Legalize REG_SEQUENCE and PHI
Tom Stellard82166022013-11-13 23:36:37 +00001429 // The register class of the operands much be the same type as the register
1430 // class of the output.
Tom Stellard4f3b04d2014-04-17 21:00:07 +00001431 if (MI->getOpcode() == AMDGPU::REG_SEQUENCE ||
1432 MI->getOpcode() == AMDGPU::PHI) {
Craig Topper062a2ba2014-04-25 05:30:21 +00001433 const TargetRegisterClass *RC = nullptr, *SRC = nullptr, *VRC = nullptr;
Tom Stellard82166022013-11-13 23:36:37 +00001434 for (unsigned i = 1, e = MI->getNumOperands(); i != e; i+=2) {
1435 if (!MI->getOperand(i).isReg() ||
1436 !TargetRegisterInfo::isVirtualRegister(MI->getOperand(i).getReg()))
1437 continue;
1438 const TargetRegisterClass *OpRC =
1439 MRI.getRegClass(MI->getOperand(i).getReg());
1440 if (RI.hasVGPRs(OpRC)) {
1441 VRC = OpRC;
1442 } else {
1443 SRC = OpRC;
1444 }
1445 }
1446
1447 // If any of the operands are VGPR registers, then they all most be
1448 // otherwise we will create illegal VGPR->SGPR copies when legalizing
1449 // them.
1450 if (VRC || !RI.isSGPRClass(getOpRegClass(*MI, 0))) {
1451 if (!VRC) {
1452 assert(SRC);
1453 VRC = RI.getEquivalentVGPRClass(SRC);
1454 }
1455 RC = VRC;
1456 } else {
1457 RC = SRC;
1458 }
1459
1460 // Update all the operands so they have the same type.
1461 for (unsigned i = 1, e = MI->getNumOperands(); i != e; i+=2) {
1462 if (!MI->getOperand(i).isReg() ||
1463 !TargetRegisterInfo::isVirtualRegister(MI->getOperand(i).getReg()))
1464 continue;
1465 unsigned DstReg = MRI.createVirtualRegister(RC);
Tom Stellard4f3b04d2014-04-17 21:00:07 +00001466 MachineBasicBlock *InsertBB;
1467 MachineBasicBlock::iterator Insert;
1468 if (MI->getOpcode() == AMDGPU::REG_SEQUENCE) {
1469 InsertBB = MI->getParent();
1470 Insert = MI;
1471 } else {
1472 // MI is a PHI instruction.
1473 InsertBB = MI->getOperand(i + 1).getMBB();
1474 Insert = InsertBB->getFirstTerminator();
1475 }
1476 BuildMI(*InsertBB, Insert, MI->getDebugLoc(),
Tom Stellard82166022013-11-13 23:36:37 +00001477 get(AMDGPU::COPY), DstReg)
1478 .addOperand(MI->getOperand(i));
1479 MI->getOperand(i).setReg(DstReg);
1480 }
1481 }
Tom Stellard15834092014-03-21 15:51:57 +00001482
Tom Stellarda5687382014-05-15 14:41:55 +00001483 // Legalize INSERT_SUBREG
1484 // src0 must have the same register class as dst
1485 if (MI->getOpcode() == AMDGPU::INSERT_SUBREG) {
1486 unsigned Dst = MI->getOperand(0).getReg();
1487 unsigned Src0 = MI->getOperand(1).getReg();
1488 const TargetRegisterClass *DstRC = MRI.getRegClass(Dst);
1489 const TargetRegisterClass *Src0RC = MRI.getRegClass(Src0);
1490 if (DstRC != Src0RC) {
1491 MachineBasicBlock &MBB = *MI->getParent();
1492 unsigned NewSrc0 = MRI.createVirtualRegister(DstRC);
1493 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::COPY), NewSrc0)
1494 .addReg(Src0);
1495 MI->getOperand(1).setReg(NewSrc0);
1496 }
1497 return;
1498 }
1499
Tom Stellard15834092014-03-21 15:51:57 +00001500 // Legalize MUBUF* instructions
1501 // FIXME: If we start using the non-addr64 instructions for compute, we
1502 // may need to legalize them here.
Tom Stellard155bbb72014-08-11 22:18:17 +00001503 int SRsrcIdx =
1504 AMDGPU::getNamedOperandIdx(MI->getOpcode(), AMDGPU::OpName::srsrc);
1505 if (SRsrcIdx != -1) {
1506 // We have an MUBUF instruction
1507 MachineOperand *SRsrc = &MI->getOperand(SRsrcIdx);
1508 unsigned SRsrcRC = get(MI->getOpcode()).OpInfo[SRsrcIdx].RegClass;
1509 if (RI.getCommonSubClass(MRI.getRegClass(SRsrc->getReg()),
1510 RI.getRegClass(SRsrcRC))) {
1511 // The operands are legal.
1512 // FIXME: We may need to legalize operands besided srsrc.
1513 return;
1514 }
Tom Stellard15834092014-03-21 15:51:57 +00001515
Tom Stellard155bbb72014-08-11 22:18:17 +00001516 MachineBasicBlock &MBB = *MI->getParent();
1517 // Extract the the ptr from the resource descriptor.
Tom Stellard15834092014-03-21 15:51:57 +00001518
Tom Stellard155bbb72014-08-11 22:18:17 +00001519 // SRsrcPtrLo = srsrc:sub0
1520 unsigned SRsrcPtrLo = buildExtractSubReg(MI, MRI, *SRsrc,
1521 &AMDGPU::VReg_128RegClass, AMDGPU::sub0, &AMDGPU::VReg_32RegClass);
Tom Stellard15834092014-03-21 15:51:57 +00001522
Tom Stellard155bbb72014-08-11 22:18:17 +00001523 // SRsrcPtrHi = srsrc:sub1
1524 unsigned SRsrcPtrHi = buildExtractSubReg(MI, MRI, *SRsrc,
1525 &AMDGPU::VReg_128RegClass, AMDGPU::sub1, &AMDGPU::VReg_32RegClass);
Tom Stellard15834092014-03-21 15:51:57 +00001526
Tom Stellard155bbb72014-08-11 22:18:17 +00001527 // Create an empty resource descriptor
1528 unsigned Zero64 = MRI.createVirtualRegister(&AMDGPU::SReg_64RegClass);
1529 unsigned SRsrcFormatLo = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1530 unsigned SRsrcFormatHi = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1531 unsigned NewSRsrc = MRI.createVirtualRegister(&AMDGPU::SReg_128RegClass);
Tom Stellard15834092014-03-21 15:51:57 +00001532
Tom Stellard155bbb72014-08-11 22:18:17 +00001533 // Zero64 = 0
1534 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B64),
1535 Zero64)
1536 .addImm(0);
Tom Stellard15834092014-03-21 15:51:57 +00001537
Tom Stellard155bbb72014-08-11 22:18:17 +00001538 // SRsrcFormatLo = RSRC_DATA_FORMAT{31-0}
1539 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32),
1540 SRsrcFormatLo)
1541 .addImm(AMDGPU::RSRC_DATA_FORMAT & 0xFFFFFFFF);
Tom Stellard15834092014-03-21 15:51:57 +00001542
Tom Stellard155bbb72014-08-11 22:18:17 +00001543 // SRsrcFormatHi = RSRC_DATA_FORMAT{63-32}
1544 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32),
1545 SRsrcFormatHi)
1546 .addImm(AMDGPU::RSRC_DATA_FORMAT >> 32);
Tom Stellard15834092014-03-21 15:51:57 +00001547
Tom Stellard155bbb72014-08-11 22:18:17 +00001548 // NewSRsrc = {Zero64, SRsrcFormat}
1549 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::REG_SEQUENCE),
1550 NewSRsrc)
1551 .addReg(Zero64)
1552 .addImm(AMDGPU::sub0_sub1)
1553 .addReg(SRsrcFormatLo)
1554 .addImm(AMDGPU::sub2)
1555 .addReg(SRsrcFormatHi)
1556 .addImm(AMDGPU::sub3);
1557
1558 MachineOperand *VAddr = getNamedOperand(*MI, AMDGPU::OpName::vaddr);
1559 unsigned NewVAddr = MRI.createVirtualRegister(&AMDGPU::VReg_64RegClass);
1560 unsigned NewVAddrLo;
1561 unsigned NewVAddrHi;
1562 if (VAddr) {
1563 // This is already an ADDR64 instruction so we need to add the pointer
1564 // extracted from the resource descriptor to the current value of VAddr.
1565 NewVAddrLo = MRI.createVirtualRegister(&AMDGPU::VReg_32RegClass);
1566 NewVAddrHi = MRI.createVirtualRegister(&AMDGPU::VReg_32RegClass);
1567
1568 // NewVaddrLo = SRsrcPtrLo + VAddr:sub0
Tom Stellard15834092014-03-21 15:51:57 +00001569 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::V_ADD_I32_e32),
1570 NewVAddrLo)
1571 .addReg(SRsrcPtrLo)
Tom Stellard155bbb72014-08-11 22:18:17 +00001572 .addReg(VAddr->getReg(), 0, AMDGPU::sub0)
1573 .addReg(AMDGPU::VCC, RegState::ImplicitDefine);
Tom Stellard15834092014-03-21 15:51:57 +00001574
Tom Stellard155bbb72014-08-11 22:18:17 +00001575 // NewVaddrHi = SRsrcPtrHi + VAddr:sub1
Tom Stellard15834092014-03-21 15:51:57 +00001576 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::V_ADDC_U32_e32),
1577 NewVAddrHi)
1578 .addReg(SRsrcPtrHi)
Tom Stellard155bbb72014-08-11 22:18:17 +00001579 .addReg(VAddr->getReg(), 0, AMDGPU::sub1)
Tom Stellard15834092014-03-21 15:51:57 +00001580 .addReg(AMDGPU::VCC, RegState::ImplicitDefine)
1581 .addReg(AMDGPU::VCC, RegState::Implicit);
1582
Tom Stellard155bbb72014-08-11 22:18:17 +00001583 } else {
1584 // This instructions is the _OFFSET variant, so we need to convert it to
1585 // ADDR64.
1586 MachineOperand *VData = getNamedOperand(*MI, AMDGPU::OpName::vdata);
1587 MachineOperand *Offset = getNamedOperand(*MI, AMDGPU::OpName::offset);
1588 MachineOperand *SOffset = getNamedOperand(*MI, AMDGPU::OpName::soffset);
1589 assert(SOffset->isImm() && SOffset->getImm() == 0 && "Legalizing MUBUF "
1590 "with non-zero soffset is not implemented");
NAKAMURA Takumi5f79ee52014-08-11 23:03:38 +00001591 (void)SOffset;
Tom Stellard15834092014-03-21 15:51:57 +00001592
Tom Stellard155bbb72014-08-11 22:18:17 +00001593 // Create the new instruction.
1594 unsigned Addr64Opcode = AMDGPU::getAddr64Inst(MI->getOpcode());
1595 MachineInstr *Addr64 =
1596 BuildMI(MBB, MI, MI->getDebugLoc(), get(Addr64Opcode))
1597 .addOperand(*VData)
1598 .addOperand(*SRsrc)
1599 .addReg(AMDGPU::NoRegister) // Dummy value for vaddr.
1600 // This will be replaced later
1601 // with the new value of vaddr.
1602 .addOperand(*Offset);
Tom Stellard15834092014-03-21 15:51:57 +00001603
Tom Stellard155bbb72014-08-11 22:18:17 +00001604 MI->removeFromParent();
1605 MI = Addr64;
Tom Stellard15834092014-03-21 15:51:57 +00001606
Tom Stellard155bbb72014-08-11 22:18:17 +00001607 NewVAddrLo = SRsrcPtrLo;
1608 NewVAddrHi = SRsrcPtrHi;
1609 VAddr = getNamedOperand(*MI, AMDGPU::OpName::vaddr);
1610 SRsrc = getNamedOperand(*MI, AMDGPU::OpName::srsrc);
Tom Stellard15834092014-03-21 15:51:57 +00001611 }
Tom Stellard155bbb72014-08-11 22:18:17 +00001612
1613 // NewVaddr = {NewVaddrHi, NewVaddrLo}
1614 BuildMI(MBB, MI, MI->getDebugLoc(), get(AMDGPU::REG_SEQUENCE),
1615 NewVAddr)
1616 .addReg(NewVAddrLo)
1617 .addImm(AMDGPU::sub0)
1618 .addReg(NewVAddrHi)
1619 .addImm(AMDGPU::sub1);
1620
1621
1622 // Update the instruction to use NewVaddr
1623 VAddr->setReg(NewVAddr);
1624 // Update the instruction to use NewSRsrc
1625 SRsrc->setReg(NewSRsrc);
Tom Stellard15834092014-03-21 15:51:57 +00001626 }
Tom Stellard82166022013-11-13 23:36:37 +00001627}
1628
Tom Stellard745f2ed2014-08-21 20:41:00 +00001629void SIInstrInfo::splitSMRD(MachineInstr *MI,
1630 const TargetRegisterClass *HalfRC,
1631 unsigned HalfImmOp, unsigned HalfSGPROp,
1632 MachineInstr *&Lo, MachineInstr *&Hi) const {
1633
1634 DebugLoc DL = MI->getDebugLoc();
1635 MachineBasicBlock *MBB = MI->getParent();
1636 MachineRegisterInfo &MRI = MBB->getParent()->getRegInfo();
1637 unsigned RegLo = MRI.createVirtualRegister(HalfRC);
1638 unsigned RegHi = MRI.createVirtualRegister(HalfRC);
1639 unsigned HalfSize = HalfRC->getSize();
1640 const MachineOperand *OffOp =
1641 getNamedOperand(*MI, AMDGPU::OpName::offset);
1642 const MachineOperand *SBase = getNamedOperand(*MI, AMDGPU::OpName::sbase);
1643
1644 if (OffOp) {
1645 // Handle the _IMM variant
1646 unsigned LoOffset = OffOp->getImm();
1647 unsigned HiOffset = LoOffset + (HalfSize / 4);
1648 Lo = BuildMI(*MBB, MI, DL, get(HalfImmOp), RegLo)
1649 .addOperand(*SBase)
1650 .addImm(LoOffset);
1651
1652 if (!isUInt<8>(HiOffset)) {
1653 unsigned OffsetSGPR =
1654 MRI.createVirtualRegister(&AMDGPU::SReg_32RegClass);
1655 BuildMI(*MBB, MI, DL, get(AMDGPU::S_MOV_B32), OffsetSGPR)
1656 .addImm(HiOffset << 2); // The immediate offset is in dwords,
1657 // but offset in register is in bytes.
1658 Hi = BuildMI(*MBB, MI, DL, get(HalfSGPROp), RegHi)
1659 .addOperand(*SBase)
1660 .addReg(OffsetSGPR);
1661 } else {
1662 Hi = BuildMI(*MBB, MI, DL, get(HalfImmOp), RegHi)
1663 .addOperand(*SBase)
1664 .addImm(HiOffset);
1665 }
1666 } else {
1667 // Handle the _SGPR variant
1668 MachineOperand *SOff = getNamedOperand(*MI, AMDGPU::OpName::soff);
1669 Lo = BuildMI(*MBB, MI, DL, get(HalfSGPROp), RegLo)
1670 .addOperand(*SBase)
1671 .addOperand(*SOff);
1672 unsigned OffsetSGPR = MRI.createVirtualRegister(&AMDGPU::SReg_32RegClass);
1673 BuildMI(*MBB, MI, DL, get(AMDGPU::S_ADD_I32), OffsetSGPR)
1674 .addOperand(*SOff)
1675 .addImm(HalfSize);
1676 Hi = BuildMI(*MBB, MI, DL, get(HalfSGPROp))
1677 .addOperand(*SBase)
1678 .addReg(OffsetSGPR);
1679 }
1680
1681 unsigned SubLo, SubHi;
1682 switch (HalfSize) {
1683 case 4:
1684 SubLo = AMDGPU::sub0;
1685 SubHi = AMDGPU::sub1;
1686 break;
1687 case 8:
1688 SubLo = AMDGPU::sub0_sub1;
1689 SubHi = AMDGPU::sub2_sub3;
1690 break;
1691 case 16:
1692 SubLo = AMDGPU::sub0_sub1_sub2_sub3;
1693 SubHi = AMDGPU::sub4_sub5_sub6_sub7;
1694 break;
1695 case 32:
1696 SubLo = AMDGPU::sub0_sub1_sub2_sub3_sub4_sub5_sub6_sub7;
1697 SubHi = AMDGPU::sub8_sub9_sub10_sub11_sub12_sub13_sub14_sub15;
1698 break;
1699 default:
1700 llvm_unreachable("Unhandled HalfSize");
1701 }
1702
1703 BuildMI(*MBB, MI, DL, get(AMDGPU::REG_SEQUENCE))
1704 .addOperand(MI->getOperand(0))
1705 .addReg(RegLo)
1706 .addImm(SubLo)
1707 .addReg(RegHi)
1708 .addImm(SubHi);
1709}
1710
Tom Stellard0c354f22014-04-30 15:31:29 +00001711void SIInstrInfo::moveSMRDToVALU(MachineInstr *MI, MachineRegisterInfo &MRI) const {
1712 MachineBasicBlock *MBB = MI->getParent();
1713 switch (MI->getOpcode()) {
Tom Stellard4c00b522014-05-09 16:42:22 +00001714 case AMDGPU::S_LOAD_DWORD_IMM:
Tom Stellard0c354f22014-04-30 15:31:29 +00001715 case AMDGPU::S_LOAD_DWORD_SGPR:
Tom Stellard4c00b522014-05-09 16:42:22 +00001716 case AMDGPU::S_LOAD_DWORDX2_IMM:
Tom Stellard0c354f22014-04-30 15:31:29 +00001717 case AMDGPU::S_LOAD_DWORDX2_SGPR:
Tom Stellard4c00b522014-05-09 16:42:22 +00001718 case AMDGPU::S_LOAD_DWORDX4_IMM:
Tom Stellard745f2ed2014-08-21 20:41:00 +00001719 case AMDGPU::S_LOAD_DWORDX4_SGPR: {
Tom Stellard0c354f22014-04-30 15:31:29 +00001720 unsigned NewOpcode = getVALUOp(*MI);
Tom Stellard4c00b522014-05-09 16:42:22 +00001721 unsigned RegOffset;
1722 unsigned ImmOffset;
Tom Stellard0c354f22014-04-30 15:31:29 +00001723
Tom Stellard4c00b522014-05-09 16:42:22 +00001724 if (MI->getOperand(2).isReg()) {
1725 RegOffset = MI->getOperand(2).getReg();
1726 ImmOffset = 0;
1727 } else {
1728 assert(MI->getOperand(2).isImm());
1729 // SMRD instructions take a dword offsets and MUBUF instructions
1730 // take a byte offset.
1731 ImmOffset = MI->getOperand(2).getImm() << 2;
1732 RegOffset = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1733 if (isUInt<12>(ImmOffset)) {
1734 BuildMI(*MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32),
1735 RegOffset)
1736 .addImm(0);
1737 } else {
1738 BuildMI(*MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32),
1739 RegOffset)
1740 .addImm(ImmOffset);
1741 ImmOffset = 0;
1742 }
1743 }
Tom Stellard0c354f22014-04-30 15:31:29 +00001744
1745 unsigned SRsrc = MRI.createVirtualRegister(&AMDGPU::SReg_128RegClass);
Tom Stellard4c00b522014-05-09 16:42:22 +00001746 unsigned DWord0 = RegOffset;
Tom Stellard0c354f22014-04-30 15:31:29 +00001747 unsigned DWord1 = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1748 unsigned DWord2 = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1749 unsigned DWord3 = MRI.createVirtualRegister(&AMDGPU::SGPR_32RegClass);
1750
1751 BuildMI(*MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32), DWord1)
1752 .addImm(0);
1753 BuildMI(*MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32), DWord2)
1754 .addImm(AMDGPU::RSRC_DATA_FORMAT & 0xFFFFFFFF);
1755 BuildMI(*MBB, MI, MI->getDebugLoc(), get(AMDGPU::S_MOV_B32), DWord3)
1756 .addImm(AMDGPU::RSRC_DATA_FORMAT >> 32);
1757 BuildMI(*MBB, MI, MI->getDebugLoc(), get(AMDGPU::REG_SEQUENCE), SRsrc)
1758 .addReg(DWord0)
1759 .addImm(AMDGPU::sub0)
1760 .addReg(DWord1)
1761 .addImm(AMDGPU::sub1)
1762 .addReg(DWord2)
1763 .addImm(AMDGPU::sub2)
1764 .addReg(DWord3)
1765 .addImm(AMDGPU::sub3);
Tom Stellard745f2ed2014-08-21 20:41:00 +00001766 MI->setDesc(get(NewOpcode));
1767 if (MI->getOperand(2).isReg()) {
1768 MI->getOperand(2).setReg(MI->getOperand(1).getReg());
1769 } else {
1770 MI->getOperand(2).ChangeToRegister(MI->getOperand(1).getReg(), false);
1771 }
1772 MI->getOperand(1).setReg(SRsrc);
1773 MI->addOperand(*MBB->getParent(), MachineOperand::CreateImm(ImmOffset));
1774
1775 const TargetRegisterClass *NewDstRC =
1776 RI.getRegClass(get(NewOpcode).OpInfo[0].RegClass);
1777
1778 unsigned DstReg = MI->getOperand(0).getReg();
1779 unsigned NewDstReg = MRI.createVirtualRegister(NewDstRC);
1780 MRI.replaceRegWith(DstReg, NewDstReg);
1781 break;
1782 }
1783 case AMDGPU::S_LOAD_DWORDX8_IMM:
1784 case AMDGPU::S_LOAD_DWORDX8_SGPR: {
1785 MachineInstr *Lo, *Hi;
1786 splitSMRD(MI, &AMDGPU::SReg_128RegClass, AMDGPU::S_LOAD_DWORDX4_IMM,
1787 AMDGPU::S_LOAD_DWORDX4_SGPR, Lo, Hi);
1788 MI->eraseFromParent();
1789 moveSMRDToVALU(Lo, MRI);
1790 moveSMRDToVALU(Hi, MRI);
1791 break;
1792 }
1793
1794 case AMDGPU::S_LOAD_DWORDX16_IMM:
1795 case AMDGPU::S_LOAD_DWORDX16_SGPR: {
1796 MachineInstr *Lo, *Hi;
1797 splitSMRD(MI, &AMDGPU::SReg_256RegClass, AMDGPU::S_LOAD_DWORDX8_IMM,
1798 AMDGPU::S_LOAD_DWORDX8_SGPR, Lo, Hi);
1799 MI->eraseFromParent();
1800 moveSMRDToVALU(Lo, MRI);
1801 moveSMRDToVALU(Hi, MRI);
1802 break;
1803 }
Tom Stellard0c354f22014-04-30 15:31:29 +00001804 }
1805}
1806
Tom Stellard82166022013-11-13 23:36:37 +00001807void SIInstrInfo::moveToVALU(MachineInstr &TopInst) const {
1808 SmallVector<MachineInstr *, 128> Worklist;
1809 Worklist.push_back(&TopInst);
1810
1811 while (!Worklist.empty()) {
1812 MachineInstr *Inst = Worklist.pop_back_val();
Tom Stellarde0387202014-03-21 15:51:54 +00001813 MachineBasicBlock *MBB = Inst->getParent();
1814 MachineRegisterInfo &MRI = MBB->getParent()->getRegInfo();
1815
Matt Arsenault27cc9582014-04-18 01:53:18 +00001816 unsigned Opcode = Inst->getOpcode();
Tom Stellard0c354f22014-04-30 15:31:29 +00001817 unsigned NewOpcode = getVALUOp(*Inst);
Matt Arsenault27cc9582014-04-18 01:53:18 +00001818
Tom Stellarde0387202014-03-21 15:51:54 +00001819 // Handle some special cases
Matt Arsenault27cc9582014-04-18 01:53:18 +00001820 switch (Opcode) {
Tom Stellard0c354f22014-04-30 15:31:29 +00001821 default:
1822 if (isSMRD(Inst->getOpcode())) {
1823 moveSMRDToVALU(Inst, MRI);
1824 }
1825 break;
Matt Arsenaultbd995802014-03-24 18:26:52 +00001826 case AMDGPU::S_MOV_B64: {
1827 DebugLoc DL = Inst->getDebugLoc();
Tom Stellarde0387202014-03-21 15:51:54 +00001828
Matt Arsenaultbd995802014-03-24 18:26:52 +00001829 // If the source operand is a register we can replace this with a
1830 // copy.
1831 if (Inst->getOperand(1).isReg()) {
1832 MachineInstr *Copy = BuildMI(*MBB, Inst, DL, get(TargetOpcode::COPY))
1833 .addOperand(Inst->getOperand(0))
1834 .addOperand(Inst->getOperand(1));
1835 Worklist.push_back(Copy);
1836 } else {
1837 // Otherwise, we need to split this into two movs, because there is
1838 // no 64-bit VALU move instruction.
1839 unsigned Reg = Inst->getOperand(0).getReg();
1840 unsigned Dst = split64BitImm(Worklist,
1841 Inst,
1842 MRI,
1843 MRI.getRegClass(Reg),
1844 Inst->getOperand(1));
1845 MRI.replaceRegWith(Reg, Dst);
Tom Stellarde0387202014-03-21 15:51:54 +00001846 }
Matt Arsenaultbd995802014-03-24 18:26:52 +00001847 Inst->eraseFromParent();
1848 continue;
1849 }
Matt Arsenaultf35182c2014-03-24 20:08:05 +00001850 case AMDGPU::S_AND_B64:
Matt Arsenault689f3252014-06-09 16:36:31 +00001851 splitScalar64BitBinaryOp(Worklist, Inst, AMDGPU::S_AND_B32);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00001852 Inst->eraseFromParent();
1853 continue;
1854
1855 case AMDGPU::S_OR_B64:
Matt Arsenault689f3252014-06-09 16:36:31 +00001856 splitScalar64BitBinaryOp(Worklist, Inst, AMDGPU::S_OR_B32);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00001857 Inst->eraseFromParent();
1858 continue;
1859
1860 case AMDGPU::S_XOR_B64:
Matt Arsenault689f3252014-06-09 16:36:31 +00001861 splitScalar64BitBinaryOp(Worklist, Inst, AMDGPU::S_XOR_B32);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00001862 Inst->eraseFromParent();
1863 continue;
1864
1865 case AMDGPU::S_NOT_B64:
Matt Arsenault689f3252014-06-09 16:36:31 +00001866 splitScalar64BitUnaryOp(Worklist, Inst, AMDGPU::S_NOT_B32);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00001867 Inst->eraseFromParent();
1868 continue;
1869
Matt Arsenault8333e432014-06-10 19:18:24 +00001870 case AMDGPU::S_BCNT1_I32_B64:
1871 splitScalar64BitBCNT(Worklist, Inst);
1872 Inst->eraseFromParent();
1873 continue;
1874
Matt Arsenaultf35182c2014-03-24 20:08:05 +00001875 case AMDGPU::S_BFE_U64:
1876 case AMDGPU::S_BFE_I64:
1877 case AMDGPU::S_BFM_B64:
1878 llvm_unreachable("Moving this op to VALU not implemented");
Tom Stellarde0387202014-03-21 15:51:54 +00001879 }
1880
Tom Stellard15834092014-03-21 15:51:57 +00001881 if (NewOpcode == AMDGPU::INSTRUCTION_LIST_END) {
1882 // We cannot move this instruction to the VALU, so we should try to
1883 // legalize its operands instead.
1884 legalizeOperands(Inst);
Tom Stellard82166022013-11-13 23:36:37 +00001885 continue;
Tom Stellard15834092014-03-21 15:51:57 +00001886 }
Tom Stellard82166022013-11-13 23:36:37 +00001887
Tom Stellard82166022013-11-13 23:36:37 +00001888 // Use the new VALU Opcode.
1889 const MCInstrDesc &NewDesc = get(NewOpcode);
1890 Inst->setDesc(NewDesc);
1891
Matt Arsenaultf0b1e3a2013-11-18 20:09:21 +00001892 // Remove any references to SCC. Vector instructions can't read from it, and
1893 // We're just about to add the implicit use / defs of VCC, and we don't want
1894 // both.
1895 for (unsigned i = Inst->getNumOperands() - 1; i > 0; --i) {
1896 MachineOperand &Op = Inst->getOperand(i);
1897 if (Op.isReg() && Op.getReg() == AMDGPU::SCC)
1898 Inst->RemoveOperand(i);
1899 }
1900
Matt Arsenault27cc9582014-04-18 01:53:18 +00001901 if (Opcode == AMDGPU::S_SEXT_I32_I8 || Opcode == AMDGPU::S_SEXT_I32_I16) {
1902 // We are converting these to a BFE, so we need to add the missing
1903 // operands for the size and offset.
1904 unsigned Size = (Opcode == AMDGPU::S_SEXT_I32_I8) ? 8 : 16;
1905 Inst->addOperand(MachineOperand::CreateImm(0));
1906 Inst->addOperand(MachineOperand::CreateImm(Size));
1907
Matt Arsenaultb5b51102014-06-10 19:18:21 +00001908 } else if (Opcode == AMDGPU::S_BCNT1_I32_B32) {
1909 // The VALU version adds the second operand to the result, so insert an
1910 // extra 0 operand.
1911 Inst->addOperand(MachineOperand::CreateImm(0));
Tom Stellard82166022013-11-13 23:36:37 +00001912 }
1913
Matt Arsenault27cc9582014-04-18 01:53:18 +00001914 addDescImplicitUseDef(NewDesc, Inst);
Tom Stellard82166022013-11-13 23:36:37 +00001915
Matt Arsenault78b86702014-04-18 05:19:26 +00001916 if (Opcode == AMDGPU::S_BFE_I32 || Opcode == AMDGPU::S_BFE_U32) {
1917 const MachineOperand &OffsetWidthOp = Inst->getOperand(2);
1918 // If we need to move this to VGPRs, we need to unpack the second operand
1919 // back into the 2 separate ones for bit offset and width.
1920 assert(OffsetWidthOp.isImm() &&
1921 "Scalar BFE is only implemented for constant width and offset");
1922 uint32_t Imm = OffsetWidthOp.getImm();
1923
1924 uint32_t Offset = Imm & 0x3f; // Extract bits [5:0].
1925 uint32_t BitWidth = (Imm & 0x7f0000) >> 16; // Extract bits [22:16].
Matt Arsenault78b86702014-04-18 05:19:26 +00001926 Inst->RemoveOperand(2); // Remove old immediate.
1927 Inst->addOperand(MachineOperand::CreateImm(Offset));
Vincent Lejeune94af31f2014-05-10 19:18:33 +00001928 Inst->addOperand(MachineOperand::CreateImm(BitWidth));
Matt Arsenault78b86702014-04-18 05:19:26 +00001929 }
1930
Tom Stellard82166022013-11-13 23:36:37 +00001931 // Update the destination register class.
Tom Stellarde1a24452014-04-17 21:00:01 +00001932
Tom Stellard82166022013-11-13 23:36:37 +00001933 const TargetRegisterClass *NewDstRC = getOpRegClass(*Inst, 0);
1934
Matt Arsenault27cc9582014-04-18 01:53:18 +00001935 switch (Opcode) {
Tom Stellard82166022013-11-13 23:36:37 +00001936 // For target instructions, getOpRegClass just returns the virtual
1937 // register class associated with the operand, so we need to find an
1938 // equivalent VGPR register class in order to move the instruction to the
1939 // VALU.
1940 case AMDGPU::COPY:
1941 case AMDGPU::PHI:
1942 case AMDGPU::REG_SEQUENCE:
Tom Stellard204e61b2014-04-07 19:45:45 +00001943 case AMDGPU::INSERT_SUBREG:
Tom Stellard82166022013-11-13 23:36:37 +00001944 if (RI.hasVGPRs(NewDstRC))
1945 continue;
1946 NewDstRC = RI.getEquivalentVGPRClass(NewDstRC);
1947 if (!NewDstRC)
1948 continue;
1949 break;
1950 default:
1951 break;
1952 }
1953
1954 unsigned DstReg = Inst->getOperand(0).getReg();
1955 unsigned NewDstReg = MRI.createVirtualRegister(NewDstRC);
1956 MRI.replaceRegWith(DstReg, NewDstReg);
1957
Tom Stellarde1a24452014-04-17 21:00:01 +00001958 // Legalize the operands
1959 legalizeOperands(Inst);
1960
Tom Stellard82166022013-11-13 23:36:37 +00001961 for (MachineRegisterInfo::use_iterator I = MRI.use_begin(NewDstReg),
1962 E = MRI.use_end(); I != E; ++I) {
Owen Anderson16c6bf42014-03-13 23:12:04 +00001963 MachineInstr &UseMI = *I->getParent();
Tom Stellard82166022013-11-13 23:36:37 +00001964 if (!canReadVGPR(UseMI, I.getOperandNo())) {
1965 Worklist.push_back(&UseMI);
1966 }
1967 }
1968 }
1969}
1970
Tom Stellardf3b2a1e2013-02-06 17:32:29 +00001971//===----------------------------------------------------------------------===//
1972// Indirect addressing callbacks
1973//===----------------------------------------------------------------------===//
1974
1975unsigned SIInstrInfo::calculateIndirectAddress(unsigned RegIndex,
1976 unsigned Channel) const {
1977 assert(Channel == 0);
1978 return RegIndex;
1979}
1980
Tom Stellard26a3b672013-10-22 18:19:10 +00001981const TargetRegisterClass *SIInstrInfo::getIndirectAddrRegClass() const {
Tom Stellard81d871d2013-11-13 23:36:50 +00001982 return &AMDGPU::VReg_32RegClass;
Tom Stellardf3b2a1e2013-02-06 17:32:29 +00001983}
1984
Matt Arsenault689f3252014-06-09 16:36:31 +00001985void SIInstrInfo::splitScalar64BitUnaryOp(
1986 SmallVectorImpl<MachineInstr *> &Worklist,
1987 MachineInstr *Inst,
1988 unsigned Opcode) const {
1989 MachineBasicBlock &MBB = *Inst->getParent();
1990 MachineRegisterInfo &MRI = MBB.getParent()->getRegInfo();
1991
1992 MachineOperand &Dest = Inst->getOperand(0);
1993 MachineOperand &Src0 = Inst->getOperand(1);
1994 DebugLoc DL = Inst->getDebugLoc();
1995
1996 MachineBasicBlock::iterator MII = Inst;
1997
1998 const MCInstrDesc &InstDesc = get(Opcode);
1999 const TargetRegisterClass *Src0RC = Src0.isReg() ?
2000 MRI.getRegClass(Src0.getReg()) :
2001 &AMDGPU::SGPR_32RegClass;
2002
2003 const TargetRegisterClass *Src0SubRC = RI.getSubRegClass(Src0RC, AMDGPU::sub0);
2004
2005 MachineOperand SrcReg0Sub0 = buildExtractSubRegOrImm(MII, MRI, Src0, Src0RC,
2006 AMDGPU::sub0, Src0SubRC);
2007
2008 const TargetRegisterClass *DestRC = MRI.getRegClass(Dest.getReg());
2009 const TargetRegisterClass *DestSubRC = RI.getSubRegClass(DestRC, AMDGPU::sub0);
2010
2011 unsigned DestSub0 = MRI.createVirtualRegister(DestRC);
2012 MachineInstr *LoHalf = BuildMI(MBB, MII, DL, InstDesc, DestSub0)
2013 .addOperand(SrcReg0Sub0);
2014
2015 MachineOperand SrcReg0Sub1 = buildExtractSubRegOrImm(MII, MRI, Src0, Src0RC,
2016 AMDGPU::sub1, Src0SubRC);
2017
2018 unsigned DestSub1 = MRI.createVirtualRegister(DestSubRC);
2019 MachineInstr *HiHalf = BuildMI(MBB, MII, DL, InstDesc, DestSub1)
2020 .addOperand(SrcReg0Sub1);
2021
2022 unsigned FullDestReg = MRI.createVirtualRegister(DestRC);
2023 BuildMI(MBB, MII, DL, get(TargetOpcode::REG_SEQUENCE), FullDestReg)
2024 .addReg(DestSub0)
2025 .addImm(AMDGPU::sub0)
2026 .addReg(DestSub1)
2027 .addImm(AMDGPU::sub1);
2028
2029 MRI.replaceRegWith(Dest.getReg(), FullDestReg);
2030
2031 // Try to legalize the operands in case we need to swap the order to keep it
2032 // valid.
2033 Worklist.push_back(LoHalf);
2034 Worklist.push_back(HiHalf);
2035}
2036
2037void SIInstrInfo::splitScalar64BitBinaryOp(
2038 SmallVectorImpl<MachineInstr *> &Worklist,
2039 MachineInstr *Inst,
2040 unsigned Opcode) const {
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002041 MachineBasicBlock &MBB = *Inst->getParent();
2042 MachineRegisterInfo &MRI = MBB.getParent()->getRegInfo();
2043
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002044 MachineOperand &Dest = Inst->getOperand(0);
2045 MachineOperand &Src0 = Inst->getOperand(1);
2046 MachineOperand &Src1 = Inst->getOperand(2);
2047 DebugLoc DL = Inst->getDebugLoc();
2048
2049 MachineBasicBlock::iterator MII = Inst;
2050
2051 const MCInstrDesc &InstDesc = get(Opcode);
Matt Arsenault684dc802014-03-24 20:08:13 +00002052 const TargetRegisterClass *Src0RC = Src0.isReg() ?
2053 MRI.getRegClass(Src0.getReg()) :
2054 &AMDGPU::SGPR_32RegClass;
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002055
Matt Arsenault684dc802014-03-24 20:08:13 +00002056 const TargetRegisterClass *Src0SubRC = RI.getSubRegClass(Src0RC, AMDGPU::sub0);
2057 const TargetRegisterClass *Src1RC = Src1.isReg() ?
2058 MRI.getRegClass(Src1.getReg()) :
2059 &AMDGPU::SGPR_32RegClass;
2060
2061 const TargetRegisterClass *Src1SubRC = RI.getSubRegClass(Src1RC, AMDGPU::sub0);
2062
2063 MachineOperand SrcReg0Sub0 = buildExtractSubRegOrImm(MII, MRI, Src0, Src0RC,
2064 AMDGPU::sub0, Src0SubRC);
2065 MachineOperand SrcReg1Sub0 = buildExtractSubRegOrImm(MII, MRI, Src1, Src1RC,
2066 AMDGPU::sub0, Src1SubRC);
2067
2068 const TargetRegisterClass *DestRC = MRI.getRegClass(Dest.getReg());
2069 const TargetRegisterClass *DestSubRC = RI.getSubRegClass(DestRC, AMDGPU::sub0);
2070
2071 unsigned DestSub0 = MRI.createVirtualRegister(DestRC);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002072 MachineInstr *LoHalf = BuildMI(MBB, MII, DL, InstDesc, DestSub0)
Matt Arsenault248b7b62014-03-24 20:08:09 +00002073 .addOperand(SrcReg0Sub0)
2074 .addOperand(SrcReg1Sub0);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002075
Matt Arsenault684dc802014-03-24 20:08:13 +00002076 MachineOperand SrcReg0Sub1 = buildExtractSubRegOrImm(MII, MRI, Src0, Src0RC,
2077 AMDGPU::sub1, Src0SubRC);
2078 MachineOperand SrcReg1Sub1 = buildExtractSubRegOrImm(MII, MRI, Src1, Src1RC,
2079 AMDGPU::sub1, Src1SubRC);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002080
Matt Arsenault684dc802014-03-24 20:08:13 +00002081 unsigned DestSub1 = MRI.createVirtualRegister(DestSubRC);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002082 MachineInstr *HiHalf = BuildMI(MBB, MII, DL, InstDesc, DestSub1)
Matt Arsenault248b7b62014-03-24 20:08:09 +00002083 .addOperand(SrcReg0Sub1)
2084 .addOperand(SrcReg1Sub1);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002085
Matt Arsenault684dc802014-03-24 20:08:13 +00002086 unsigned FullDestReg = MRI.createVirtualRegister(DestRC);
Matt Arsenaultf35182c2014-03-24 20:08:05 +00002087 BuildMI(MBB, MII, DL, get(TargetOpcode::REG_SEQUENCE), FullDestReg)
2088 .addReg(DestSub0)
2089 .addImm(AMDGPU::sub0)
2090 .addReg(DestSub1)
2091 .addImm(AMDGPU::sub1);
2092
2093 MRI.replaceRegWith(Dest.getReg(), FullDestReg);
2094
2095 // Try to legalize the operands in case we need to swap the order to keep it
2096 // valid.
2097 Worklist.push_back(LoHalf);
2098 Worklist.push_back(HiHalf);
2099}
2100
Matt Arsenault8333e432014-06-10 19:18:24 +00002101void SIInstrInfo::splitScalar64BitBCNT(SmallVectorImpl<MachineInstr *> &Worklist,
2102 MachineInstr *Inst) const {
2103 MachineBasicBlock &MBB = *Inst->getParent();
2104 MachineRegisterInfo &MRI = MBB.getParent()->getRegInfo();
2105
2106 MachineBasicBlock::iterator MII = Inst;
2107 DebugLoc DL = Inst->getDebugLoc();
2108
2109 MachineOperand &Dest = Inst->getOperand(0);
2110 MachineOperand &Src = Inst->getOperand(1);
2111
2112 const MCInstrDesc &InstDesc = get(AMDGPU::V_BCNT_U32_B32_e32);
2113 const TargetRegisterClass *SrcRC = Src.isReg() ?
2114 MRI.getRegClass(Src.getReg()) :
2115 &AMDGPU::SGPR_32RegClass;
2116
2117 unsigned MidReg = MRI.createVirtualRegister(&AMDGPU::VGPR_32RegClass);
2118 unsigned ResultReg = MRI.createVirtualRegister(&AMDGPU::VGPR_32RegClass);
2119
2120 const TargetRegisterClass *SrcSubRC = RI.getSubRegClass(SrcRC, AMDGPU::sub0);
2121
2122 MachineOperand SrcRegSub0 = buildExtractSubRegOrImm(MII, MRI, Src, SrcRC,
2123 AMDGPU::sub0, SrcSubRC);
2124 MachineOperand SrcRegSub1 = buildExtractSubRegOrImm(MII, MRI, Src, SrcRC,
2125 AMDGPU::sub1, SrcSubRC);
2126
2127 MachineInstr *First = BuildMI(MBB, MII, DL, InstDesc, MidReg)
2128 .addOperand(SrcRegSub0)
2129 .addImm(0);
2130
2131 MachineInstr *Second = BuildMI(MBB, MII, DL, InstDesc, ResultReg)
2132 .addOperand(SrcRegSub1)
2133 .addReg(MidReg);
2134
2135 MRI.replaceRegWith(Dest.getReg(), ResultReg);
2136
2137 Worklist.push_back(First);
2138 Worklist.push_back(Second);
2139}
2140
Matt Arsenault27cc9582014-04-18 01:53:18 +00002141void SIInstrInfo::addDescImplicitUseDef(const MCInstrDesc &NewDesc,
2142 MachineInstr *Inst) const {
2143 // Add the implict and explicit register definitions.
2144 if (NewDesc.ImplicitUses) {
2145 for (unsigned i = 0; NewDesc.ImplicitUses[i]; ++i) {
2146 unsigned Reg = NewDesc.ImplicitUses[i];
2147 Inst->addOperand(MachineOperand::CreateReg(Reg, false, true));
2148 }
2149 }
2150
2151 if (NewDesc.ImplicitDefs) {
2152 for (unsigned i = 0; NewDesc.ImplicitDefs[i]; ++i) {
2153 unsigned Reg = NewDesc.ImplicitDefs[i];
2154 Inst->addOperand(MachineOperand::CreateReg(Reg, true, true));
2155 }
2156 }
2157}
2158
Matt Arsenaultee522bf2014-09-26 17:55:06 +00002159unsigned SIInstrInfo::findUsedSGPR(const MachineInstr *MI,
2160 int OpIndices[3]) const {
2161 const MCInstrDesc &Desc = get(MI->getOpcode());
2162
2163 // Find the one SGPR operand we are allowed to use.
2164 unsigned SGPRReg = AMDGPU::NoRegister;
2165
2166 // First we need to consider the instruction's operand requirements before
2167 // legalizing. Some operands are required to be SGPRs, such as implicit uses
2168 // of VCC, but we are still bound by the constant bus requirement to only use
2169 // one.
2170 //
2171 // If the operand's class is an SGPR, we can never move it.
2172
2173 for (const MachineOperand &MO : MI->implicit_operands()) {
2174 // We only care about reads.
2175 if (MO.isDef())
2176 continue;
2177
2178 if (MO.getReg() == AMDGPU::VCC)
2179 return AMDGPU::VCC;
2180
2181 if (MO.getReg() == AMDGPU::FLAT_SCR)
2182 return AMDGPU::FLAT_SCR;
2183 }
2184
2185 unsigned UsedSGPRs[3] = { AMDGPU::NoRegister };
2186 const MachineRegisterInfo &MRI = MI->getParent()->getParent()->getRegInfo();
2187
2188 for (unsigned i = 0; i < 3; ++i) {
2189 int Idx = OpIndices[i];
2190 if (Idx == -1)
2191 break;
2192
2193 const MachineOperand &MO = MI->getOperand(Idx);
2194 if (RI.isSGPRClassID(Desc.OpInfo[Idx].RegClass))
2195 SGPRReg = MO.getReg();
2196
2197 if (MO.isReg() && RI.isSGPRClass(MRI.getRegClass(MO.getReg())))
2198 UsedSGPRs[i] = MO.getReg();
2199 }
2200
2201 if (SGPRReg != AMDGPU::NoRegister)
2202 return SGPRReg;
2203
2204 // We don't have a required SGPR operand, so we have a bit more freedom in
2205 // selecting operands to move.
2206
2207 // Try to select the most used SGPR. If an SGPR is equal to one of the
2208 // others, we choose that.
2209 //
2210 // e.g.
2211 // V_FMA_F32 v0, s0, s0, s0 -> No moves
2212 // V_FMA_F32 v0, s0, s1, s0 -> Move s1
2213
2214 if (UsedSGPRs[0] != AMDGPU::NoRegister) {
2215 if (UsedSGPRs[0] == UsedSGPRs[1] || UsedSGPRs[0] == UsedSGPRs[2])
2216 SGPRReg = UsedSGPRs[0];
2217 }
2218
2219 if (SGPRReg == AMDGPU::NoRegister && UsedSGPRs[1] != AMDGPU::NoRegister) {
2220 if (UsedSGPRs[1] == UsedSGPRs[2])
2221 SGPRReg = UsedSGPRs[1];
2222 }
2223
2224 return SGPRReg;
2225}
2226
Tom Stellardf3b2a1e2013-02-06 17:32:29 +00002227MachineInstrBuilder SIInstrInfo::buildIndirectWrite(
2228 MachineBasicBlock *MBB,
2229 MachineBasicBlock::iterator I,
2230 unsigned ValueReg,
2231 unsigned Address, unsigned OffsetReg) const {
Tom Stellard81d871d2013-11-13 23:36:50 +00002232 const DebugLoc &DL = MBB->findDebugLoc(I);
2233 unsigned IndirectBaseReg = AMDGPU::VReg_32RegClass.getRegister(
2234 getIndirectIndexBegin(*MBB->getParent()));
2235
2236 return BuildMI(*MBB, I, DL, get(AMDGPU::SI_INDIRECT_DST_V1))
2237 .addReg(IndirectBaseReg, RegState::Define)
2238 .addOperand(I->getOperand(0))
2239 .addReg(IndirectBaseReg)
2240 .addReg(OffsetReg)
2241 .addImm(0)
2242 .addReg(ValueReg);
Tom Stellardf3b2a1e2013-02-06 17:32:29 +00002243}
2244
2245MachineInstrBuilder SIInstrInfo::buildIndirectRead(
2246 MachineBasicBlock *MBB,
2247 MachineBasicBlock::iterator I,
2248 unsigned ValueReg,
2249 unsigned Address, unsigned OffsetReg) const {
Tom Stellard81d871d2013-11-13 23:36:50 +00002250 const DebugLoc &DL = MBB->findDebugLoc(I);
2251 unsigned IndirectBaseReg = AMDGPU::VReg_32RegClass.getRegister(
2252 getIndirectIndexBegin(*MBB->getParent()));
2253
2254 return BuildMI(*MBB, I, DL, get(AMDGPU::SI_INDIRECT_SRC))
2255 .addOperand(I->getOperand(0))
2256 .addOperand(I->getOperand(1))
2257 .addReg(IndirectBaseReg)
2258 .addReg(OffsetReg)
2259 .addImm(0);
2260
2261}
2262
2263void SIInstrInfo::reserveIndirectRegisters(BitVector &Reserved,
2264 const MachineFunction &MF) const {
2265 int End = getIndirectIndexEnd(MF);
2266 int Begin = getIndirectIndexBegin(MF);
2267
2268 if (End == -1)
2269 return;
2270
2271
2272 for (int Index = Begin; Index <= End; ++Index)
2273 Reserved.set(AMDGPU::VReg_32RegClass.getRegister(Index));
2274
Tom Stellard415ef6d2013-11-13 23:58:51 +00002275 for (int Index = std::max(0, Begin - 1); Index <= End; ++Index)
Tom Stellard81d871d2013-11-13 23:36:50 +00002276 Reserved.set(AMDGPU::VReg_64RegClass.getRegister(Index));
2277
Tom Stellard415ef6d2013-11-13 23:58:51 +00002278 for (int Index = std::max(0, Begin - 2); Index <= End; ++Index)
Tom Stellard81d871d2013-11-13 23:36:50 +00002279 Reserved.set(AMDGPU::VReg_96RegClass.getRegister(Index));
2280
Tom Stellard415ef6d2013-11-13 23:58:51 +00002281 for (int Index = std::max(0, Begin - 3); Index <= End; ++Index)
Tom Stellard81d871d2013-11-13 23:36:50 +00002282 Reserved.set(AMDGPU::VReg_128RegClass.getRegister(Index));
2283
Tom Stellard415ef6d2013-11-13 23:58:51 +00002284 for (int Index = std::max(0, Begin - 7); Index <= End; ++Index)
Tom Stellard81d871d2013-11-13 23:36:50 +00002285 Reserved.set(AMDGPU::VReg_256RegClass.getRegister(Index));
2286
Tom Stellard415ef6d2013-11-13 23:58:51 +00002287 for (int Index = std::max(0, Begin - 15); Index <= End; ++Index)
Tom Stellard81d871d2013-11-13 23:36:50 +00002288 Reserved.set(AMDGPU::VReg_512RegClass.getRegister(Index));
Tom Stellardf3b2a1e2013-02-06 17:32:29 +00002289}
Tom Stellard1aaad692014-07-21 16:55:33 +00002290
Tom Stellard6407e1e2014-08-01 00:32:33 +00002291MachineOperand *SIInstrInfo::getNamedOperand(MachineInstr &MI,
Tom Stellard1aaad692014-07-21 16:55:33 +00002292 unsigned OperandName) const {
2293 int Idx = AMDGPU::getNamedOperandIdx(MI.getOpcode(), OperandName);
2294 if (Idx == -1)
2295 return nullptr;
2296
2297 return &MI.getOperand(Idx);
2298}