LLVM 24.0.0git
SIInstrInfo.h
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1//===- SIInstrInfo.h - SI Instruction Info Interface ------------*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9/// \file
10/// Interface definition for SIInstrInfo.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef LLVM_LIB_TARGET_AMDGPU_SIINSTRINFO_H
15#define LLVM_LIB_TARGET_AMDGPU_SIINSTRINFO_H
16
17#include "AMDGPUMIRFormatter.h"
19#include "SIRegisterInfo.h"
21#include "llvm/ADT/SetVector.h"
25
26#define GET_INSTRINFO_HEADER
27#include "AMDGPUGenInstrInfo.inc"
28
29namespace llvm {
30
31class APInt;
32class GCNSubtarget;
33class LiveVariables;
34class MachineDominatorTree;
35class MachineRegisterInfo;
36class RegScavenger;
37class SIMachineFunctionInfo;
38class MCRegisterClass;
39using TargetRegisterClass = MCRegisterClass;
40class ScheduleHazardRecognizer;
41
42constexpr unsigned DefaultMemoryClusterDWordsLimit = 8;
43
44/// Mark the MMO of a uniform load if there are no potentially clobbering stores
45/// on any path from the start of an entry function to this load.
48
49/// Mark the MMO of a load as the last use.
52
53/// Mark the MMO of cooperative load/store atomics.
56
58 // Operands that need to replaced by waterfall
60 // Target physical registers replacing the MOs
62};
63/// Mark the MMO of accesses to memory locations that are
64/// never written to by other threads.
67
68/// Utility to store machine instructions worklist.
70 SIInstrWorklist() = default;
71
72 void insert(MachineInstr *MI);
73
74 MachineInstr *top() const { return InstrList[Front]; }
75
76 void erase_top() {
77 InSet.erase(InstrList[Front]);
78 ++Front;
79 }
80
81 bool empty() const { return Front == InstrList.size(); }
82
83 void clear() {
84 InstrList.clear();
85 Front = 0;
86 InSet.clear();
87 DeferredList.clear();
88 }
89
91
92 SetVector<MachineInstr *> &getDeferredList() { return DeferredList; }
93
94private:
95 /// InstrList contains the MachineInstrs.
98 unsigned Front = 0;
99 /// Deferred instructions are specific MachineInstr
100 /// that will be added by insert method.
101 SetVector<MachineInstr *> DeferredList;
102};
103
104// In namespace llvm so ADL finds it when SIInstrFlags predicates are
105// instantiated with MachineInstr (MachineInstr is in namespace llvm).
107 return MI.getDesc().TSFlags;
108}
109
110class SIInstrInfo final : public AMDGPUGenInstrInfo {
111 struct ThreeAddressUpdates;
112
113private:
114 const SIRegisterInfo RI;
115 const GCNSubtarget &ST;
116 TargetSchedModel SchedModel;
117 mutable std::unique_ptr<AMDGPUMIRFormatter> Formatter;
118
119 // The inverse predicate should have the negative value.
120 enum BranchPredicate {
121 INVALID_BR = 0,
122 SCC_TRUE = 1,
123 SCC_FALSE = -1,
124 VCCNZ = 2,
125 VCCZ = -2,
126 EXECNZ = -3,
127 EXECZ = 3
128 };
129
130 using SetVectorType = SmallSetVector<MachineInstr *, 32>;
131
132 static unsigned getBranchOpcode(BranchPredicate Cond);
133 static BranchPredicate getBranchPredicate(unsigned Opcode);
134
135public:
138 const MachineOperand &SuperReg,
139 const TargetRegisterClass *SuperRC,
140 unsigned SubIdx,
141 const TargetRegisterClass *SubRC) const;
144 const MachineOperand &SuperReg, const TargetRegisterClass *SuperRC,
145 unsigned SubIdx, const TargetRegisterClass *SubRC) const;
146
147private:
148 bool optimizeSCC(MachineInstr *SCCValid, MachineInstr *SCCRedefine,
149 bool NeedInversion) const;
150
151 bool invertSCCUse(MachineInstr *SCCDef) const;
152
153 void swapOperands(MachineInstr &Inst) const;
154
155 std::pair<bool, MachineBasicBlock *>
156 moveScalarAddSub(SIInstrWorklist &Worklist, MachineInstr &Inst,
157 MachineDominatorTree *MDT = nullptr) const;
158
159 void lowerSelect(SIInstrWorklist &Worklist, MachineInstr &Inst,
160 MachineDominatorTree *MDT = nullptr) const;
161
162 void lowerScalarAbs(SIInstrWorklist &Worklist, MachineInstr &Inst) const;
163
164 void lowerScalarAbsDiff(SIInstrWorklist &Worklist, MachineInstr &Inst) const;
165
166 void lowerScalarXnor(SIInstrWorklist &Worklist, MachineInstr &Inst) const;
167
168 void splitScalarNotBinop(SIInstrWorklist &Worklist, MachineInstr &Inst,
169 unsigned Opcode) const;
170
171 void splitScalarBinOpN2(SIInstrWorklist &Worklist, MachineInstr &Inst,
172 unsigned Opcode) const;
173
174 void splitScalar64BitUnaryOp(SIInstrWorklist &Worklist, MachineInstr &Inst,
175 unsigned Opcode, bool Swap = false) const;
176
177 void splitScalar64BitBinaryOp(SIInstrWorklist &Worklist, MachineInstr &Inst,
178 unsigned Opcode,
179 MachineDominatorTree *MDT = nullptr) const;
180
181 void splitScalarSMulU64(SIInstrWorklist &Worklist, MachineInstr &Inst,
182 MachineDominatorTree *MDT) const;
183
184 void splitScalarSMulPseudo(SIInstrWorklist &Worklist, MachineInstr &Inst,
185 MachineDominatorTree *MDT) const;
186
187 void splitScalar64BitXnor(SIInstrWorklist &Worklist, MachineInstr &Inst,
188 MachineDominatorTree *MDT = nullptr) const;
189
190 void splitScalar64BitBCNT(SIInstrWorklist &Worklist,
191 MachineInstr &Inst) const;
192 void splitScalar64BitBFE(SIInstrWorklist &Worklist, MachineInstr &Inst) const;
193 void splitScalar64BitCountOp(SIInstrWorklist &Worklist, MachineInstr &Inst,
194 unsigned Opcode,
195 MachineDominatorTree *MDT = nullptr) const;
196 void movePackToVALU(SIInstrWorklist &Worklist, MachineRegisterInfo &MRI,
197 MachineInstr &Inst) const;
198
199 void addUsersToMoveToVALUWorklist(Register Reg, MachineRegisterInfo &MRI,
200 SIInstrWorklist &Worklist) const;
201
202 void addSCCDefUsersToVALUWorklist(const MachineOperand &Op,
203 MachineInstr &SCCDefInst,
204 SIInstrWorklist &Worklist,
205 Register NewCond = Register()) const;
206 void addSCCDefsToVALUWorklist(MachineInstr *SCCUseInst,
207 SIInstrWorklist &Worklist) const;
208
209 const TargetRegisterClass *
210 getDestEquivalentVGPRClass(const MachineInstr &Inst) const;
211
212 bool checkInstOffsetsDoNotOverlap(const MachineInstr &MIa,
213 const MachineInstr &MIb) const;
214
215 Register findUsedSGPR(const MachineInstr &MI, int OpIndices[3]) const;
216
217 bool verifyCopy(const MachineInstr &MI, const MachineRegisterInfo &MRI,
218 StringRef &ErrInfo) const;
219
220 bool resultDependsOnExec(const MachineInstr &MI) const;
221
222 MachineInstr *convertToThreeAddressImpl(MachineInstr &MI,
223 ThreeAddressUpdates &Updates) const;
224
225protected:
226 /// If the specific machine instruction is a instruction that moves/copies
227 /// value from one register to another register return destination and source
228 /// registers as machine operands.
229 std::optional<DestSourcePair>
230 isCopyInstrImpl(const MachineInstr &MI) const override;
231
233 AMDGPU::OpName Src0OpName, MachineOperand &Src1,
234 AMDGPU::OpName Src1OpName) const;
235 bool isLegalToSwap(const MachineInstr &MI, unsigned fromIdx,
236 unsigned toIdx) const;
238 unsigned OpIdx0,
239 unsigned OpIdx1) const override;
240
241public:
243 MO_MASK = 0xf,
244
246 // MO_GOTPCREL -> symbol@GOTPCREL -> R_AMDGPU_GOTPCREL.
248 // MO_GOTPCREL32_LO -> symbol@gotpcrel32@lo -> R_AMDGPU_GOTPCREL32_LO.
251 // MO_GOTPCREL32_HI -> symbol@gotpcrel32@hi -> R_AMDGPU_GOTPCREL32_HI.
253 // MO_GOTPCREL64 -> symbol@GOTPCREL -> R_AMDGPU_GOTPCREL.
255 // MO_REL32_LO -> symbol@rel32@lo -> R_AMDGPU_REL32_LO.
258 // MO_REL32_HI -> symbol@rel32@hi -> R_AMDGPU_REL32_HI.
261
263
267 };
268
269 explicit SIInstrInfo(const GCNSubtarget &ST);
270
272 return RI;
273 }
274
275 const GCNSubtarget &getSubtarget() const {
276 return ST;
277 }
278
279 bool isReMaterializableImpl(const MachineInstr &MI) const override;
280
281 bool isIgnorableUse(const MachineOperand &MO) const override;
282
283 bool isSafeToSink(MachineInstr &MI, MachineBasicBlock *SuccToSinkTo,
284 MachineCycleInfo *CI) const override;
285
286 bool areLoadsFromSameBasePtr(SDNode *Load0, SDNode *Load1, int64_t &Offset0,
287 int64_t &Offset1) const override;
288
289 bool isGlobalMemoryObject(const MachineInstr *MI) const override;
290
292 const MachineInstr &LdSt,
294 bool &OffsetIsScalable, LocationSize &Width,
295 const TargetRegisterInfo *TRI) const final;
296
298 int64_t Offset1, bool OffsetIsScalable1,
300 int64_t Offset2, bool OffsetIsScalable2,
301 unsigned ClusterSize,
302 unsigned NumBytes) const override;
303
304 bool shouldScheduleLoadsNear(SDNode *Load0, SDNode *Load1, int64_t Offset0,
305 int64_t Offset1, unsigned NumLoads) const override;
306
308 const DebugLoc &DL, Register DestReg, Register SrcReg,
309 bool KillSrc, bool RenamableDest = false,
310 bool RenamableSrc = false) const override;
311
312private:
313 void storeRegToStackSlotImpl(MachineBasicBlock &MBB,
315 bool isKill, int FrameIndex,
316 const TargetRegisterClass *RC, Register VReg,
317 MachineInstr::MIFlag Flags, bool NeedsCFI) const;
318
319public:
322 bool isKill, int FrameIndex,
323 const TargetRegisterClass *RC) const;
324
326 int64_t &ImmVal) const override;
327
328 std::optional<int64_t> getImmOrMaterializedImm(const MachineRegisterInfo &MRI,
329 MachineOperand &Op) const;
330
332 const TargetRegisterClass *RC,
333 unsigned Size,
334 const SIMachineFunctionInfo &MFI,
335 bool NeedsCFI) const;
336 unsigned
338 unsigned Size,
339 const SIMachineFunctionInfo &MFI) const;
340
343 bool isKill, int FrameIndex, const TargetRegisterClass *RC, Register VReg,
344 MachineInstr::MIFlag Flags = MachineInstr::NoFlags) const override;
345
348 int FrameIndex, const TargetRegisterClass *RC, Register VReg,
349 unsigned SubReg = 0,
350 MachineInstr::MIFlag Flags = MachineInstr::NoFlags) const override;
351
352 bool expandPostRAPseudo(MachineInstr &MI) const override;
353
354 void
356 Register DestReg, unsigned SubIdx, const MachineInstr &Orig,
357 LaneBitmask UsedLanes = LaneBitmask::getAll()) const override;
358
359 // Splits a V_MOV_B64_DPP_PSEUDO opcode into a pair of v_mov_b32_dpp
360 // instructions. Returns a pair of generated instructions.
361 // Can split either post-RA with physical registers or pre-RA with
362 // virtual registers. In latter case IR needs to be in SSA form and
363 // and a REG_SEQUENCE is produced to define original register.
364 std::pair<MachineInstr*, MachineInstr*>
366
367 // Returns an opcode that can be used to move a value to a \p DstRC
368 // register. If there is no hardware instruction that can store to \p
369 // DstRC, then AMDGPU::COPY is returned.
370 unsigned getMovOpcode(const TargetRegisterClass *DstRC) const;
371
372 const MCInstrDesc &getIndirectRegWriteMovRelPseudo(unsigned VecSize,
373 unsigned EltSize,
374 bool IsSGPR) const;
375
376 const MCInstrDesc &getIndirectGPRIDXPseudo(unsigned VecSize,
377 bool IsIndirectSrc) const;
379 int commuteOpcode(unsigned Opc) const;
380
382 inline int commuteOpcode(const MachineInstr &MI) const {
383 return commuteOpcode(MI.getOpcode());
384 }
385
386 bool findCommutedOpIndices(const MachineInstr &MI, unsigned &SrcOpIdx0,
387 unsigned &SrcOpIdx1) const override;
388
389 bool findCommutedOpIndices(const MCInstrDesc &Desc, unsigned &SrcOpIdx0,
390 unsigned &SrcOpIdx1) const;
391
392 bool isBranchOffsetInRange(unsigned BranchOpc,
393 int64_t BrOffset) const override;
394
395 MachineBasicBlock *getBranchDestBlock(const MachineInstr &MI) const override;
396
397 /// Return whether the block terminate with divergent branch.
398 /// Note this only work before lowering the pseudo control flow instructions.
399 bool hasDivergentBranch(const MachineBasicBlock *MBB) const;
400
402 MachineBasicBlock &NewDestBB,
403 MachineBasicBlock &RestoreBB, const DebugLoc &DL,
404 int64_t BrOffset, RegScavenger *RS) const override;
405
409 MachineBasicBlock *&FBB,
411 bool AllowModify) const;
412
414 MachineBasicBlock *&FBB,
416 bool AllowModify = false) const override;
417
419 int *BytesRemoved = nullptr) const override;
420
423 const DebugLoc &DL,
424 int *BytesAdded = nullptr) const override;
425
427 SmallVectorImpl<MachineOperand> &Cond) const override;
428
429 std::unique_ptr<PipelinerLoopInfo>
430 analyzeLoopForPipelining(MachineBasicBlock *LoopBB) const override;
431
434 Register TrueReg, Register FalseReg, int &CondCycles,
435 int &TrueCycles, int &FalseCycles) const override;
436
440 Register TrueReg, Register FalseReg) const override;
441
442 bool analyzeCompare(const MachineInstr &MI, Register &SrcReg,
443 Register &SrcReg2, int64_t &CmpMask,
444 int64_t &CmpValue) const override;
445
446 bool optimizeCompareInstr(MachineInstr &CmpInstr, Register SrcReg,
447 Register SrcReg2, int64_t CmpMask, int64_t CmpValue,
448 const MachineRegisterInfo *MRI) const override;
449
450 bool
452 const MachineInstr &MIb) const override;
453
454 static bool isFoldableCopy(const MachineInstr &MI);
455 static unsigned getFoldableCopySrcIdx(const MachineInstr &MI);
456
457 void removeModOperands(MachineInstr &MI) const;
458
460 const MCInstrDesc &NewDesc) const;
461
462 /// Return the extracted immediate value in a subregister use from a constant
463 /// materialized in a super register.
464 ///
465 /// e.g. %imm = S_MOV_B64 K[0:63]
466 /// USE %imm.sub1
467 /// This will return K[32:63]
468 static std::optional<int64_t> extractSubregFromImm(int64_t ImmVal,
469 unsigned SubRegIndex);
470
472 MachineRegisterInfo *MRI) const final;
473
474 unsigned getMachineCSELookAheadLimit() const override { return 500; }
475
477 LiveIntervals *LIS) const override;
478
480 const MachineBasicBlock *MBB,
481 const MachineFunction &MF) const override;
482
483 static bool isSALU(const MachineInstr &MI) {
484 return SIInstrFlags::isSALU(MI);
485 }
486
487 bool isSALU(uint32_t Opcode) const {
488 return SIInstrFlags::isSALU(get(Opcode));
489 }
490
491 static bool isVALU(const MachineInstr &MI, bool AllowLDSDMA) {
492 if (!AllowLDSDMA && isLDSDMA(MI))
493 return false;
494
495 return SIInstrFlags::isVALU(MI);
496 }
497
498 /// LDSDMA instructions act as both VALU and memory instructions, thus
499 /// we also tag them as VALU. However, in many places, we do not actually want
500 /// to include LDSDMA instructions in this query. By setting \p AllowLDSDMA to
501 /// false, this will return false for LDSDMA instructions.
502 bool isVALU(uint32_t Opcode, bool AllowLDSDMA) const {
503 if (!AllowLDSDMA && isLDSDMA(Opcode))
504 return false;
505
506 return SIInstrFlags::isVALU(get(Opcode));
507 }
508
509 static bool isImage(const MachineInstr &MI) {
511 }
512
513 bool isImage(uint32_t Opcode) const {
514 return SIInstrFlags::isImage(get(Opcode));
515 }
516
517 static bool isVMEM(const MachineInstr &MI) {
518 return SIInstrFlags::isVMEM(MI);
519 }
520
521 bool isVMEM(uint32_t Opcode) const {
522 return SIInstrFlags::isVMEM(get(Opcode));
523 }
524
525 /// True if MI implicitly drains XCNT.
526 static bool isXcntDrain(const MachineInstr &MI);
527
528 static bool isSOP1(const MachineInstr &MI) {
529 return SIInstrFlags::isSOP1(MI);
530 }
531
532 bool isSOP1(uint32_t Opcode) const {
533 return SIInstrFlags::isSOP1(get(Opcode));
534 }
535
536 static bool isSOP2(const MachineInstr &MI) {
537 return SIInstrFlags::isSOP2(MI);
538 }
539
540 bool isSOP2(uint32_t Opcode) const {
541 return SIInstrFlags::isSOP2(get(Opcode));
542 }
543
544 static bool isSOPC(const MachineInstr &MI) {
545 return SIInstrFlags::isSOPC(MI);
546 }
547
548 bool isSOPC(uint32_t Opcode) const {
549 return SIInstrFlags::isSOPC(get(Opcode));
550 }
551
552 static bool isSOPK(const MachineInstr &MI) {
553 return SIInstrFlags::isSOPK(MI);
554 }
555
556 bool isSOPK(uint32_t Opcode) const {
557 return SIInstrFlags::isSOPK(get(Opcode));
558 }
559
560 static bool isSOPP(const MachineInstr &MI) {
561 return SIInstrFlags::isSOPP(MI);
562 }
563
564 bool isSOPP(uint32_t Opcode) const {
565 return SIInstrFlags::isSOPP(get(Opcode));
566 }
567
568 static bool isPacked(const MachineInstr &MI) {
570 }
571
572 bool isPacked(uint32_t Opcode) const {
573 return SIInstrFlags::isPacked(get(Opcode));
574 }
575
576 static bool isVOP1(const MachineInstr &MI) {
577 return SIInstrFlags::isVOP1(MI);
578 }
579
580 bool isVOP1(uint32_t Opcode) const {
581 return SIInstrFlags::isVOP1(get(Opcode));
582 }
583
584 static bool isVOP2(const MachineInstr &MI) {
585 return SIInstrFlags::isVOP2(MI);
586 }
587
588 bool isVOP2(uint32_t Opcode) const {
589 return SIInstrFlags::isVOP2(get(Opcode));
590 }
591
592 static bool isVOP3(const MCInstrDesc &Desc) {
594 }
595
596 static bool isVOP3(const MachineInstr &MI) { return isVOP3(MI.getDesc()); }
597
598 bool isVOP3(uint32_t Opcode) const { return isVOP3(get(Opcode)); }
599
600 static bool isSDWA(const MachineInstr &MI) {
601 return SIInstrFlags::isSDWA(MI);
602 }
603
604 bool isSDWA(uint32_t Opcode) const {
605 return SIInstrFlags::isSDWA(get(Opcode));
606 }
607
608 static bool isVOPC(const MachineInstr &MI) {
609 return SIInstrFlags::isVOPC(MI);
610 }
611
612 bool isVOPC(uint32_t Opcode) const {
613 return SIInstrFlags::isVOPC(get(Opcode));
614 }
615
616 static bool isMUBUF(const MachineInstr &MI) {
618 }
619
620 bool isMUBUF(uint32_t Opcode) const {
621 return SIInstrFlags::isMUBUF(get(Opcode));
622 }
623
624 static bool isMTBUF(const MachineInstr &MI) {
626 }
627
628 bool isMTBUF(uint32_t Opcode) const {
629 return SIInstrFlags::isMTBUF(get(Opcode));
630 }
631
632 static bool isBUF(const MachineInstr &MI) {
633 return isMUBUF(MI) || isMTBUF(MI);
634 }
635
636 static bool isSMRD(const MachineInstr &MI) {
637 return SIInstrFlags::isSMRD(MI);
638 }
639
640 bool isSMRD(uint32_t Opcode) const {
641 return SIInstrFlags::isSMRD(get(Opcode));
642 }
643
644 bool isBufferSMRD(const MachineInstr &MI) const;
645
646 static bool isDS(const MachineInstr &MI) { return SIInstrFlags::isDS(MI); }
647
648 bool isDS(uint32_t Opcode) const { return SIInstrFlags::isDS(get(Opcode)); }
649
650 static bool isLDSDMA(const MachineInstr &MI) {
651 return (SIInstrFlags::isVALU(MI) && (isMUBUF(MI) || isFLAT(MI))) ||
653 }
654
655 bool isLDSDMA(uint32_t Opcode) const {
656 return (SIInstrFlags::isVALU(get(Opcode)) &&
657 (isMUBUF(Opcode) || isFLAT(Opcode))) ||
659 }
660
661 static bool isGWS(const MachineInstr &MI) { return SIInstrFlags::isGWS(MI); }
662
663 bool isGWS(uint32_t Opcode) const { return SIInstrFlags::isGWS(get(Opcode)); }
664
665 bool isAlwaysGDS(uint32_t Opcode) const;
666
667 static bool isMIMG(const MachineInstr &MI) {
668 return SIInstrFlags::isMIMG(MI);
669 }
670
671 bool isMIMG(uint32_t Opcode) const {
672 return SIInstrFlags::isMIMG(get(Opcode));
673 }
674
675 static bool isVIMAGE(const MachineInstr &MI) {
677 }
678
679 bool isVIMAGE(uint32_t Opcode) const {
680 return SIInstrFlags::isVIMAGE(get(Opcode));
681 }
682
683 static bool isVSAMPLE(const MachineInstr &MI) {
685 }
686
687 bool isVSAMPLE(uint32_t Opcode) const {
688 return SIInstrFlags::isVSAMPLE(get(Opcode));
689 }
690
691 static bool isGather4(const MachineInstr &MI) {
693 }
694
695 bool isGather4(uint32_t Opcode) const {
696 return SIInstrFlags::isGather4(get(Opcode));
697 }
698
699 static bool isFLAT(const MachineInstr &MI) {
700 return SIInstrFlags::isFLAT(MI);
701 }
702
703 // Is a FLAT encoded instruction which accesses a specific segment,
704 // i.e. global_* or scratch_*.
708
709 bool isSegmentSpecificFLAT(uint32_t Opcode) const {
711 }
712
713 static bool isFLATGlobal(const MachineInstr &MI) {
715 }
716
717 bool isFLATGlobal(uint32_t Opcode) const {
718 return SIInstrFlags::isFlatGlobal(get(Opcode));
719 }
720
721 static bool isFLATScratch(const MachineInstr &MI) {
723 }
724
725 bool isFLATScratch(uint32_t Opcode) const {
726 return SIInstrFlags::isFlatScratch(get(Opcode));
727 }
728
729 // Any FLAT encoded instruction, including global_* and scratch_*.
730 bool isFLAT(uint32_t Opcode) const {
731 return SIInstrFlags::isFLAT(get(Opcode));
732 }
733
734 /// \returns true for SCRATCH_ instructions, or FLAT/BUF instructions unless
735 /// the MMOs do not include scratch.
736 /// Conservatively correct; will return true if \p MI cannot be proven
737 /// to not hit scratch.
738 bool mayAccessScratch(const MachineInstr &MI) const;
739
740 /// \returns true for FLAT instructions that can access VMEM.
741 bool mayAccessVMEMThroughFlat(const MachineInstr &MI) const;
742
743 /// \returns true for FLAT instructions that can access LDS.
744 bool mayAccessLDSThroughFlat(const MachineInstr &MI, bool TgSplit) const;
745
746 static bool isBlockLoadStore(uint32_t Opcode) {
747 switch (Opcode) {
748 case AMDGPU::SI_BLOCK_SPILL_V1024_SAVE:
749 case AMDGPU::SI_BLOCK_SPILL_V1024_CFI_SAVE:
750 case AMDGPU::SI_BLOCK_SPILL_V1024_RESTORE:
751 case AMDGPU::SCRATCH_STORE_BLOCK_SADDR:
752 case AMDGPU::SCRATCH_LOAD_BLOCK_SADDR:
753 case AMDGPU::SCRATCH_STORE_BLOCK_SVS:
754 case AMDGPU::SCRATCH_LOAD_BLOCK_SVS:
755 return true;
756 default:
757 return false;
758 }
759 }
760
762 switch (MI.getOpcode()) {
763 case AMDGPU::S_ABSDIFF_I32:
764 case AMDGPU::S_ABS_I32:
765 case AMDGPU::S_AND_B32:
766 case AMDGPU::S_AND_B64:
767 case AMDGPU::S_ANDN2_B32:
768 case AMDGPU::S_ANDN2_B64:
769 case AMDGPU::S_ASHR_I32:
770 case AMDGPU::S_ASHR_I64:
771 case AMDGPU::S_BCNT0_I32_B32:
772 case AMDGPU::S_BCNT0_I32_B64:
773 case AMDGPU::S_BCNT1_I32_B32:
774 case AMDGPU::S_BCNT1_I32_B64:
775 case AMDGPU::S_BFE_I32:
776 case AMDGPU::S_BFE_I64:
777 case AMDGPU::S_BFE_U32:
778 case AMDGPU::S_BFE_U64:
779 case AMDGPU::S_LSHL_B32:
780 case AMDGPU::S_LSHL_B64:
781 case AMDGPU::S_LSHR_B32:
782 case AMDGPU::S_LSHR_B64:
783 case AMDGPU::S_NAND_B32:
784 case AMDGPU::S_NAND_B64:
785 case AMDGPU::S_NOR_B32:
786 case AMDGPU::S_NOR_B64:
787 case AMDGPU::S_NOT_B32:
788 case AMDGPU::S_NOT_B64:
789 case AMDGPU::S_OR_B32:
790 case AMDGPU::S_OR_B64:
791 case AMDGPU::S_ORN2_B32:
792 case AMDGPU::S_ORN2_B64:
793 case AMDGPU::S_QUADMASK_B32:
794 case AMDGPU::S_QUADMASK_B64:
795 case AMDGPU::S_WQM_B32:
796 case AMDGPU::S_WQM_B64:
797 case AMDGPU::S_XNOR_B32:
798 case AMDGPU::S_XNOR_B64:
799 case AMDGPU::S_XOR_B32:
800 case AMDGPU::S_XOR_B64:
801 return true;
802 default:
803 return false;
804 }
805 }
806
807 static bool isEXP(const MachineInstr &MI) { return SIInstrFlags::isEXP(MI); }
808
810 if (!isEXP(MI))
811 return false;
812 unsigned Target = MI.getOperand(0).getImm();
815 }
816
817 bool isEXP(uint32_t Opcode) const { return SIInstrFlags::isEXP(get(Opcode)); }
818
819 static bool isAtomicNoRet(const MachineInstr &MI) {
821 }
822
823 bool isAtomicNoRet(uint32_t Opcode) const {
824 return SIInstrFlags::isAtomicNoRet(get(Opcode));
825 }
826
827 static bool isAtomicRet(const MachineInstr &MI) {
829 }
830
831 bool isAtomicRet(uint32_t Opcode) const {
832 return SIInstrFlags::isAtomicRet(get(Opcode));
833 }
834
835 static bool isAtomic(const MachineInstr &MI) {
837 }
838
839 bool isAtomic(uint32_t Opcode) const {
840 return SIInstrFlags::isAtomic(get(Opcode));
841 }
842
844 unsigned Opc = MI.getOpcode();
845 // Exclude instructions that read FROM LDS (not write to it)
846 return isLDSDMA(MI) && Opc != AMDGPU::BUFFER_STORE_LDS_DWORD &&
847 Opc != AMDGPU::TENSOR_STORE_FROM_LDS_d2 &&
848 Opc != AMDGPU::TENSOR_STORE_FROM_LDS_d4;
849 }
850
851 static bool isSBarrierSCCWrite(unsigned Opcode) {
852 return Opcode == AMDGPU::S_BARRIER_LEAVE ||
853 Opcode == AMDGPU::S_BARRIER_SIGNAL_ISFIRST_IMM ||
854 Opcode == AMDGPU::S_BARRIER_SIGNAL_ISFIRST_M0;
855 }
856
857 static bool isCBranchVCCZRead(const MachineInstr &MI) {
858 unsigned Opc = MI.getOpcode();
859 return (Opc == AMDGPU::S_CBRANCH_VCCNZ || Opc == AMDGPU::S_CBRANCH_VCCZ) &&
860 !MI.getOperand(1).isUndef();
861 }
862
863 static bool isWQM(const MachineInstr &MI) { return SIInstrFlags::isWQM(MI); }
864
865 bool isWQM(uint32_t Opcode) const { return SIInstrFlags::isWQM(get(Opcode)); }
866
867 static bool isDisableWQM(const MachineInstr &MI) {
869 }
870
871 bool isDisableWQM(uint32_t Opcode) const {
872 return SIInstrFlags::isDisableWQM(get(Opcode));
873 }
874
875 // SI_SPILL_S32_TO_VGPR and SI_RESTORE_S32_FROM_VGPR form a special case of
876 // SGPRs spilling to VGPRs which are SGPR spills but from VALU instructions
877 // therefore we need an explicit check for them since just checking if the
878 // Spill bit is set and what instruction type it came from misclassifies
879 // them.
880 static bool isVGPRSpill(const MachineInstr &MI) {
881 return MI.getOpcode() != AMDGPU::SI_SPILL_S32_TO_VGPR &&
882 MI.getOpcode() != AMDGPU::SI_RESTORE_S32_FROM_VGPR &&
883 (isSpill(MI) && isVALU(MI, /*AllowLDSDMA=*/true));
884 }
885
886 bool isVGPRSpill(uint32_t Opcode) const {
887 return Opcode != AMDGPU::SI_SPILL_S32_TO_VGPR &&
888 Opcode != AMDGPU::SI_RESTORE_S32_FROM_VGPR &&
889 (isSpill(Opcode) && isVALU(Opcode, /*AllowLDSDMA=*/true));
890 }
891
892 static bool isSGPRSpill(const MachineInstr &MI) {
893 return MI.getOpcode() == AMDGPU::SI_SPILL_S32_TO_VGPR ||
894 MI.getOpcode() == AMDGPU::SI_RESTORE_S32_FROM_VGPR ||
895 (isSpill(MI) && isSALU(MI));
896 }
897
898 bool isSGPRSpill(uint32_t Opcode) const {
899 return Opcode == AMDGPU::SI_SPILL_S32_TO_VGPR ||
900 Opcode == AMDGPU::SI_RESTORE_S32_FROM_VGPR ||
901 (isSpill(Opcode) && isSALU(Opcode));
902 }
903
904 bool isSpill(uint32_t Opcode) const {
905 return SIInstrFlags::isSpill(get(Opcode));
906 }
907
908 static bool isSpill(const MCInstrDesc &Desc) {
910 }
911
912 static bool isSpill(const MachineInstr &MI) { return isSpill(MI.getDesc()); }
913
914 static bool isWWMRegSpillOpcode(uint32_t Opcode) {
915 return Opcode == AMDGPU::SI_SPILL_WWM_V32_SAVE ||
916 Opcode == AMDGPU::SI_SPILL_WWM_AV32_SAVE ||
917 Opcode == AMDGPU::SI_SPILL_WWM_V32_RESTORE ||
918 Opcode == AMDGPU::SI_SPILL_WWM_AV32_RESTORE;
919 }
920
921 static bool isChainCallOpcode(uint64_t Opcode) {
922 return Opcode == AMDGPU::SI_CS_CHAIN_TC_W32 ||
923 Opcode == AMDGPU::SI_CS_CHAIN_TC_W64;
924 }
925
926 static bool isDPP(const MachineInstr &MI) { return SIInstrFlags::isDPP(MI); }
927
928 bool isDPP(uint32_t Opcode) const { return SIInstrFlags::isDPP(get(Opcode)); }
929
930 static bool isTRANS(const MachineInstr &MI) {
932 }
933
934 bool isTRANS(uint32_t Opcode) const {
935 return SIInstrFlags::isTRANS(get(Opcode));
936 }
937
938 static bool isVOP3P(const MachineInstr &MI) {
940 }
941
942 bool isVOP3P(uint32_t Opcode) const {
943 return SIInstrFlags::isVOP3P(get(Opcode));
944 }
945
946 bool isVOP3PMix(const MachineInstr &MI) const {
947 return isVOP3PMix(MI.getOpcode());
948 }
949
950 bool isVOP3PMix(uint16_t Opcode) const {
951 switch (Opcode) {
952 case AMDGPU::V_FMA_MIXHI_F16:
953 case AMDGPU::V_FMA_MIXLO_F16:
954 case AMDGPU::V_FMA_MIX_F32:
955 case AMDGPU::V_MAD_MIXHI_F16:
956 case AMDGPU::V_MAD_MIXLO_F16:
957 case AMDGPU::V_MAD_MIX_F32:
958 return true;
959 default:
960 return false;
961 }
962 }
963
964 static bool isVINTRP(const MachineInstr &MI) {
966 }
967
968 bool isVINTRP(uint32_t Opcode) const {
969 return SIInstrFlags::isVINTRP(get(Opcode));
970 }
971
972 static bool isMAI(const MCInstrDesc &Desc) {
974 }
975
976 static bool isMAI(const MachineInstr &MI) { return isMAI(MI.getDesc()); }
977
978 bool isMAI(uint32_t Opcode) const { return isMAI(get(Opcode)); }
979
980 static bool isMFMA(const MachineInstr &MI) {
981 return isMAI(MI) && MI.getOpcode() != AMDGPU::V_ACCVGPR_WRITE_B32_e64 &&
982 MI.getOpcode() != AMDGPU::V_ACCVGPR_READ_B32_e64;
983 }
984
985 bool isMFMA(uint32_t Opcode) const {
986 return isMAI(Opcode) && Opcode != AMDGPU::V_ACCVGPR_WRITE_B32_e64 &&
987 Opcode != AMDGPU::V_ACCVGPR_READ_B32_e64;
988 }
989
990 static bool isDOT(const MachineInstr &MI) { return SIInstrFlags::isDOT(MI); }
991
992 static bool isWMMA(const MachineInstr &MI) {
993 return SIInstrFlags::isWMMA(MI);
994 }
995
996 bool isWMMA(uint32_t Opcode) const {
997 return SIInstrFlags::isWMMA(get(Opcode));
998 }
999
1000 static bool isMFMAorWMMA(const MachineInstr &MI) {
1001 return isMFMA(MI) || isWMMA(MI) || isSWMMAC(MI);
1002 }
1003
1004 bool isMFMAorWMMA(uint32_t Opcode) const {
1005 return isMFMA(Opcode) || isWMMA(Opcode) || isSWMMAC(Opcode);
1006 }
1007
1008 static bool isSWMMAC(const MachineInstr &MI) {
1009 return SIInstrFlags::isSWMMAC(MI);
1010 }
1011
1012 bool isSWMMAC(uint32_t Opcode) const {
1013 return SIInstrFlags::isSWMMAC(get(Opcode));
1014 }
1015
1016 bool isDOT(uint32_t Opcode) const { return SIInstrFlags::isDOT(get(Opcode)); }
1017
1018 bool isXDLWMMA(const MachineInstr &MI) const;
1019
1020 bool isXDL(const MachineInstr &MI) const;
1021
1022 static bool isDGEMM(unsigned Opcode) { return AMDGPU::getMAIIsDGEMM(Opcode); }
1023
1024 static bool isLDSDIR(const MachineInstr &MI) {
1025 return SIInstrFlags::isLDSDIR(MI);
1026 }
1027
1028 bool isLDSDIR(uint32_t Opcode) const {
1029 return SIInstrFlags::isLDSDIR(get(Opcode));
1030 }
1031
1032 static bool isVINTERP(const MachineInstr &MI) {
1034 }
1035
1036 bool isVINTERP(uint32_t Opcode) const {
1037 return SIInstrFlags::isVINTERP(get(Opcode));
1038 }
1039
1040 static bool isScalarUnit(const MachineInstr &MI) {
1042 }
1043
1044 static bool usesVM_CNT(const MachineInstr &MI) {
1046 }
1047
1048 static bool usesLGKM_CNT(const MachineInstr &MI) {
1050 }
1051
1052 static bool usesASYNC_CNT(const MachineInstr &MI) {
1054 }
1055
1056 bool usesASYNC_CNT(uint32_t Opcode) const {
1057 return SIInstrFlags::usesASYNC_CNT(get(Opcode));
1058 }
1059
1060 static bool usesTENSOR_CNT(const MachineInstr &MI) {
1062 }
1063
1064 bool usesTENSOR_CNT(uint32_t Opcode) const {
1065 return SIInstrFlags::usesTENSOR_CNT(get(Opcode));
1066 }
1067
1068 // Most sopk treat the immediate as a signed 16-bit, however some
1069 // use it as unsigned.
1070 static bool sopkIsZext(unsigned Opcode) {
1071 return Opcode == AMDGPU::S_CMPK_EQ_U32 || Opcode == AMDGPU::S_CMPK_LG_U32 ||
1072 Opcode == AMDGPU::S_CMPK_GT_U32 || Opcode == AMDGPU::S_CMPK_GE_U32 ||
1073 Opcode == AMDGPU::S_CMPK_LT_U32 || Opcode == AMDGPU::S_CMPK_LE_U32 ||
1074 Opcode == AMDGPU::S_GETREG_B32 ||
1075 Opcode == AMDGPU::S_GETREG_B32_const;
1076 }
1077
1078 /// \returns true if this is an s_store_dword* instruction. This is more
1079 /// specific than isSMEM && mayStore.
1080 static bool isScalarStore(const MachineInstr &MI) {
1082 }
1083
1084 bool isScalarStore(uint32_t Opcode) const {
1085 return SIInstrFlags::isScalarStore(get(Opcode));
1086 }
1087
1088 static bool isFixedSize(const MachineInstr &MI) {
1090 }
1091
1092 bool isFixedSize(uint32_t Opcode) const {
1093 return SIInstrFlags::isFixedSize(get(Opcode));
1094 }
1095
1096 static bool hasFPClamp(const MachineInstr &MI) {
1098 }
1099
1100 bool hasFPClamp(uint32_t Opcode) const {
1101 return SIInstrFlags::hasFPClamp(get(Opcode));
1102 }
1103
1104 static bool hasIntClamp(const MachineInstr &MI) {
1106 }
1107
1108 static bool hasSameClamp(const MachineInstr &A, const MachineInstr &B) {
1109 const MCInstrDesc &DA = A.getDesc(), &DB = B.getDesc();
1114 }
1115
1116 static bool usesFPDPRounding(const MachineInstr &MI) {
1118 }
1119
1120 bool usesFPDPRounding(uint32_t Opcode) const {
1121 return SIInstrFlags::usesFPDPRounding(get(Opcode));
1122 }
1123
1124 static bool isFPAtomic(const MachineInstr &MI) {
1126 }
1127
1128 bool isFPAtomic(uint32_t Opcode) const {
1129 return SIInstrFlags::isFPAtomic(get(Opcode));
1130 }
1131
1132 static bool isNeverUniform(const MachineInstr &MI) {
1134 }
1135
1136 // Check to see if opcode is for a barrier start. Pre gfx12 this is just the
1137 // S_BARRIER, but after support for S_BARRIER_SIGNAL* / S_BARRIER_WAIT we want
1138 // to check for the barrier start (S_BARRIER_SIGNAL*)
1139 bool isBarrierStart(unsigned Opcode) const {
1140 return Opcode == AMDGPU::S_BARRIER ||
1141 Opcode == AMDGPU::S_BARRIER_SIGNAL_M0 ||
1142 Opcode == AMDGPU::S_BARRIER_SIGNAL_ISFIRST_M0 ||
1143 Opcode == AMDGPU::S_BARRIER_SIGNAL_IMM ||
1144 Opcode == AMDGPU::S_BARRIER_SIGNAL_ISFIRST_IMM;
1145 }
1146
1147 bool isBarrier(unsigned Opcode) const {
1148 return isBarrierStart(Opcode) || Opcode == AMDGPU::S_BARRIER_WAIT ||
1149 Opcode == AMDGPU::S_BARRIER_INIT_M0 ||
1150 Opcode == AMDGPU::S_BARRIER_INIT_IMM ||
1151 Opcode == AMDGPU::S_BARRIER_JOIN_IMM ||
1152 Opcode == AMDGPU::S_BARRIER_LEAVE || Opcode == AMDGPU::DS_GWS_INIT ||
1153 Opcode == AMDGPU::DS_GWS_BARRIER;
1154 }
1155
1156 static bool isLoadMonitor(unsigned Opc) {
1157 switch (Opc) {
1158 case AMDGPU::GLOBAL_LOAD_MONITOR_B32:
1159 case AMDGPU::GLOBAL_LOAD_MONITOR_B32_SADDR:
1160 case AMDGPU::GLOBAL_LOAD_MONITOR_B64:
1161 case AMDGPU::GLOBAL_LOAD_MONITOR_B64_SADDR:
1162 case AMDGPU::GLOBAL_LOAD_MONITOR_B128:
1163 case AMDGPU::GLOBAL_LOAD_MONITOR_B128_SADDR:
1164 case AMDGPU::FLAT_LOAD_MONITOR_B32:
1165 case AMDGPU::FLAT_LOAD_MONITOR_B64:
1166 case AMDGPU::FLAT_LOAD_MONITOR_B128:
1167 return true;
1168 default:
1169 return false;
1170 }
1171 }
1172
1173 static bool isGFX12CacheInvOrWBInst(unsigned Opc) {
1174 return Opc == AMDGPU::GLOBAL_INV || Opc == AMDGPU::GLOBAL_WB ||
1175 Opc == AMDGPU::GLOBAL_WBINV;
1176 }
1177
1178 static bool isF16PseudoScalarTrans(unsigned Opcode) {
1179 return Opcode == AMDGPU::V_S_EXP_F16_e64 ||
1180 Opcode == AMDGPU::V_S_LOG_F16_e64 ||
1181 Opcode == AMDGPU::V_S_RCP_F16_e64 ||
1182 Opcode == AMDGPU::V_S_RSQ_F16_e64 ||
1183 Opcode == AMDGPU::V_S_SQRT_F16_e64;
1184 }
1185
1189
1190 bool doesNotReadTiedSource(uint32_t Opcode) const {
1191 return SIInstrFlags::isTiedSourceNotRead(get(Opcode));
1192 }
1193
1194 bool isIGLP(unsigned Opcode) const {
1195 return Opcode == AMDGPU::SCHED_BARRIER ||
1196 Opcode == AMDGPU::SCHED_GROUP_BARRIER || Opcode == AMDGPU::IGLP_OPT;
1197 }
1198
1199 bool isIGLP(const MachineInstr &MI) const { return isIGLP(MI.getOpcode()); }
1200
1201 // Return true if the instruction is mutually exclusive with all non-IGLP DAG
1202 // mutations, requiring all other mutations to be disabled.
1203 bool isIGLPMutationOnly(unsigned Opcode) const {
1204 return Opcode == AMDGPU::SCHED_GROUP_BARRIER || Opcode == AMDGPU::IGLP_OPT;
1205 }
1206
1207 static unsigned getNonSoftWaitcntOpcode(unsigned Opcode) {
1208 switch (Opcode) {
1209 case AMDGPU::S_WAITCNT_soft:
1210 return AMDGPU::S_WAITCNT;
1211 case AMDGPU::S_WAITCNT_VSCNT_soft:
1212 return AMDGPU::S_WAITCNT_VSCNT;
1213 case AMDGPU::S_WAIT_LOADCNT_soft:
1214 return AMDGPU::S_WAIT_LOADCNT;
1215 case AMDGPU::S_WAIT_STORECNT_soft:
1216 return AMDGPU::S_WAIT_STORECNT;
1217 case AMDGPU::S_WAIT_SAMPLECNT_soft:
1218 return AMDGPU::S_WAIT_SAMPLECNT;
1219 case AMDGPU::S_WAIT_BVHCNT_soft:
1220 return AMDGPU::S_WAIT_BVHCNT;
1221 case AMDGPU::S_WAIT_DSCNT_soft:
1222 return AMDGPU::S_WAIT_DSCNT;
1223 case AMDGPU::S_WAIT_KMCNT_soft:
1224 return AMDGPU::S_WAIT_KMCNT;
1225 case AMDGPU::S_WAIT_XCNT_soft:
1226 return AMDGPU::S_WAIT_XCNT;
1227 default:
1228 return Opcode;
1229 }
1230 }
1231
1232 static bool isWaitcnt(unsigned Opcode) {
1233 switch (getNonSoftWaitcntOpcode(Opcode)) {
1234 case AMDGPU::S_WAITCNT:
1235 case AMDGPU::S_WAITCNT_VSCNT:
1236 case AMDGPU::S_WAITCNT_VMCNT:
1237 case AMDGPU::S_WAITCNT_EXPCNT:
1238 case AMDGPU::S_WAITCNT_LGKMCNT:
1239 case AMDGPU::S_WAIT_LOADCNT:
1240 case AMDGPU::S_WAIT_LOADCNT_DSCNT:
1241 case AMDGPU::S_WAIT_STORECNT:
1242 case AMDGPU::S_WAIT_STORECNT_DSCNT:
1243 case AMDGPU::S_WAIT_SAMPLECNT:
1244 case AMDGPU::S_WAIT_BVHCNT:
1245 case AMDGPU::S_WAIT_EXPCNT:
1246 case AMDGPU::S_WAIT_DSCNT:
1247 case AMDGPU::S_WAIT_KMCNT:
1248 case AMDGPU::S_WAIT_XCNT:
1249 case AMDGPU::S_WAIT_IDLE:
1250 return true;
1251 default:
1252 return false;
1253 }
1254 }
1255
1256 bool isVGPRCopy(const MachineInstr &MI) const {
1257 assert(isCopyInstr(MI));
1258 Register Dest = MI.getOperand(0).getReg();
1259 const MachineFunction &MF = *MI.getMF();
1260 const MachineRegisterInfo &MRI = MF.getRegInfo();
1261 return !RI.isSGPRReg(MRI, Dest);
1262 }
1263
1264 bool hasVGPRUses(const MachineInstr &MI) const {
1265 const MachineFunction &MF = *MI.getMF();
1266 const MachineRegisterInfo &MRI = MF.getRegInfo();
1267 return llvm::any_of(MI.explicit_uses(),
1268 [&MRI, this](const MachineOperand &MO) {
1269 return MO.isReg() && RI.isVGPR(MRI, MO.getReg());});
1270 }
1271
1272 /// Return true if the instruction modifies the mode register.q
1273 static bool modifiesModeRegister(const MachineInstr &MI);
1274
1275 /// This function is used to determine if an instruction can be safely
1276 /// executed under EXEC = 0 without hardware error, indeterminate results,
1277 /// and/or visible effects on future vector execution or outside the shader.
1278 /// Note: as of 2024 the only use of this is SIPreEmitPeephole where it is
1279 /// used in removing branches over short EXEC = 0 sequences.
1280 /// As such it embeds certain assumptions which may not apply to every case
1281 /// of EXEC = 0 execution.
1283
1284 /// Returns true if the instruction could potentially depend on the value of
1285 /// exec. If false, exec dependencies may safely be ignored.
1286 bool mayReadEXEC(const MachineRegisterInfo &MRI, const MachineInstr &MI) const;
1287
1288 bool isInlineConstant(const APInt &Imm) const;
1289
1290 bool isInlineConstant(const APFloat &Imm) const;
1291
1292 // Returns true if this non-register operand definitely does not need to be
1293 // encoded as a 32-bit literal. Note that this function handles all kinds of
1294 // operands, not just immediates.
1295 //
1296 // Some operands like FrameIndexes could resolve to an inline immediate value
1297 // that will not require an additional 4-bytes; this function assumes that it
1298 // will.
1299 bool isInlineConstant(const MachineOperand &MO, uint8_t OperandType) const {
1300 if (!MO.isImm())
1301 return false;
1302 return isInlineConstant(MO.getImm(), OperandType);
1303 }
1304 bool isInlineConstant(int64_t ImmVal, uint8_t OperandType) const;
1305
1307 const MCOperandInfo &OpInfo) const {
1308 return isInlineConstant(MO, OpInfo.OperandType);
1309 }
1310
1311 /// \p returns true if \p UseMO is substituted with \p DefMO in \p MI it would
1312 /// be an inline immediate.
1314 const MachineOperand &UseMO,
1315 const MachineOperand &DefMO) const {
1316 assert(UseMO.getParent() == &MI);
1317 int OpIdx = UseMO.getOperandNo();
1318 if (OpIdx >= MI.getDesc().NumOperands)
1319 return false;
1320
1321 return isInlineConstant(DefMO, MI.getDesc().operands()[OpIdx]);
1322 }
1323
1324 /// \p returns true if the operand \p OpIdx in \p MI is a valid inline
1325 /// immediate.
1326 bool isInlineConstant(const MachineInstr &MI, unsigned OpIdx) const {
1327 const MachineOperand &MO = MI.getOperand(OpIdx);
1328 return isInlineConstant(MO, MI.getDesc().operands()[OpIdx].OperandType);
1329 }
1330
1331 bool isInlineConstant(const MachineInstr &MI, unsigned OpIdx,
1332 int64_t ImmVal) const {
1333 if (OpIdx >= MI.getDesc().NumOperands)
1334 return false;
1335
1336 if (isCopyInstr(MI)) {
1337 unsigned Size = getOpSize(MI, OpIdx);
1338 assert(Size == 8 || Size == 4);
1339
1340 uint8_t OpType = (Size == 8) ?
1342 return isInlineConstant(ImmVal, OpType);
1343 }
1344
1345 return isInlineConstant(ImmVal, MI.getDesc().operands()[OpIdx].OperandType);
1346 }
1347
1348 bool isInlineConstant(const MachineInstr &MI, unsigned OpIdx,
1349 const MachineOperand &MO) const {
1350 return isInlineConstant(MI, OpIdx, MO.getImm());
1351 }
1352
1353 bool isInlineConstant(const MachineOperand &MO) const {
1354 return isInlineConstant(*MO.getParent(), MO.getOperandNo());
1355 }
1356
1357 bool isImmOperandLegal(const MCInstrDesc &InstDesc, unsigned OpNo,
1358 const MachineOperand &MO) const;
1359
1360 bool isLiteralOperandLegal(const MCInstrDesc &InstDesc,
1361 const MCOperandInfo &OpInfo) const;
1362
1363 bool isImmOperandLegal(const MCInstrDesc &InstDesc, unsigned OpNo,
1364 int64_t ImmVal) const;
1365
1366 bool isImmOperandLegal(const MachineInstr &MI, unsigned OpNo,
1367 const MachineOperand &MO) const {
1368 return isImmOperandLegal(MI.getDesc(), OpNo, MO);
1369 }
1370
1371 bool isNeverCoissue(MachineInstr &MI) const;
1372
1373 /// Check if this immediate value can be used for AV_MOV_B64_IMM_PSEUDO.
1374 bool isLegalAV64PseudoImm(uint64_t Imm) const;
1375
1376 /// Return true if this 64-bit VALU instruction has a 32-bit encoding.
1377 /// This function will return false if you pass it a 32-bit instruction.
1378 bool hasVALU32BitEncoding(unsigned Opcode) const;
1379
1380 bool physRegUsesConstantBus(const MachineOperand &Reg) const;
1382 const MachineRegisterInfo &MRI) const;
1383
1384 /// Returns true if this operand uses the constant bus.
1385 bool usesConstantBus(const MachineRegisterInfo &MRI,
1386 const MachineOperand &MO,
1387 const MCOperandInfo &OpInfo) const;
1388
1390 int OpIdx) const {
1391 return usesConstantBus(MRI, MI.getOperand(OpIdx),
1392 MI.getDesc().operands()[OpIdx]);
1393 }
1394
1395 /// Return true if this instruction has any modifiers.
1396 /// e.g. src[012]_mod, omod, clamp.
1397 bool hasModifiers(unsigned Opcode) const;
1398
1399 bool hasModifiersSet(const MachineInstr &MI, AMDGPU::OpName OpName) const;
1400 bool hasAnyModifiersSet(const MachineInstr &MI) const;
1401
1402 bool canShrink(const MachineInstr &MI,
1403 const MachineRegisterInfo &MRI) const;
1404
1406 unsigned NewOpcode) const;
1407
1408 bool verifyInstruction(const MachineInstr &MI,
1409 StringRef &ErrInfo) const override;
1410
1411 unsigned getVALUOp(const MachineInstr &MI) const;
1412 unsigned getVALUOp(unsigned Opc) const;
1413
1416 const DebugLoc &DL, Register Reg, bool IsSCCLive,
1417 SlotIndexes *Indexes = nullptr) const;
1418
1421 Register Reg, SlotIndexes *Indexes = nullptr) const;
1422
1424
1425 /// Return the correct register class for \p OpNo. For target-specific
1426 /// instructions, this will return the register class that has been defined
1427 /// in tablegen. For generic instructions, like REG_SEQUENCE it will return
1428 /// the register class of its machine operand.
1429 /// to infer the correct register class base on the other operands.
1431 unsigned OpNo) const;
1432
1433 /// Return the size in bytes of the operand OpNo on the given
1434 // instruction opcode.
1435 unsigned getOpSize(uint32_t Opcode, unsigned OpNo) const {
1436 const MCOperandInfo &OpInfo = get(Opcode).operands()[OpNo];
1437
1438 if (OpInfo.RegClass == -1) {
1439 // If this is an immediate operand, this must be a 32-bit literal.
1440 assert(OpInfo.OperandType == MCOI::OPERAND_IMMEDIATE);
1441 return 4;
1442 }
1443
1444 return RI.getRegSizeInBits(*RI.getRegClass(getOpRegClassID(OpInfo))) / 8;
1445 }
1446
1447 /// This form should usually be preferred since it handles operands
1448 /// with unknown register classes.
1449 unsigned getOpSize(const MachineInstr &MI, unsigned OpNo) const {
1450 const MachineOperand &MO = MI.getOperand(OpNo);
1451 if (MO.isReg()) {
1452 if (unsigned SubReg = MO.getSubReg()) {
1453 return RI.getSubRegIdxSize(SubReg) / 8;
1454 }
1455 }
1456 return RI.getRegSizeInBits(*getOpRegClass(MI, OpNo)) / 8;
1457 }
1458
1459 /// Legalize the \p OpIndex operand of this instruction by inserting
1460 /// a MOV. For example:
1461 /// ADD_I32_e32 VGPR0, 15
1462 /// to
1463 /// MOV VGPR1, 15
1464 /// ADD_I32_e32 VGPR0, VGPR1
1465 ///
1466 /// If the operand being legalized is a register, then a COPY will be used
1467 /// instead of MOV.
1468 void legalizeOpWithMove(MachineInstr &MI, unsigned OpIdx) const;
1469
1470 /// Check if \p MO is a legal operand if it was the \p OpIdx Operand
1471 /// for \p MI.
1472 bool isOperandLegal(const MachineInstr &MI, unsigned OpIdx,
1473 const MachineOperand *MO = nullptr) const;
1474
1475 /// Check if \p MO would be a valid operand for the given operand
1476 /// definition \p OpInfo. Note this does not attempt to validate constant bus
1477 /// restrictions (e.g. literal constant usage).
1479 const MCOperandInfo &OpInfo,
1480 const MachineOperand &MO) const;
1481
1482 /// Check if \p MO (a register operand) is a legal register for the
1483 /// given operand description or operand index.
1484 /// The operand index version provide more legality checks
1485 bool isLegalRegOperand(const MachineRegisterInfo &MRI,
1486 const MCOperandInfo &OpInfo,
1487 const MachineOperand &MO) const;
1488 bool isLegalRegOperand(const MachineInstr &MI, unsigned OpIdx,
1489 const MachineOperand &MO) const;
1490
1491 /// Check if \p MO would be a legal operand for a single-SGPR-read
1492 /// instruction.
1493 ///
1494 /// Single-SGPR-read instructions typically accept VGPRs, SGPRs, or immediates
1495 /// as source operands. On gfx12+, if a source operand uses SGPRs, the HW can
1496 /// only read the first SGPR and replicate the value across all lanes. \p SrcN
1497 /// can be 0, 1, or 2, representing src0, src1, and src2, respectively. If \p
1498 /// MO is nullptr, the operand corresponding to \p SrcN will be used. Non-SGPR
1499 /// operands are always considered legal.
1500 bool
1502 const MachineInstr &MI, unsigned SrcN,
1503 const MachineOperand *MO = nullptr) const;
1504
1505 /// Legalize operands in \p MI by either commuting it or inserting a
1506 /// copy of src1.
1508
1509 /// Fix operands in \p MI to satisfy constant bus requirements.
1511
1512 /// Copy a value from a VGPR (\p SrcReg) to SGPR. The desired register class
1513 /// for the dst register (\p DstRC) can be optionally supplied. This function
1514 /// can only be used when it is know that the value in SrcReg is same across
1515 /// all threads in the wave.
1516 /// \returns The SGPR register that \p SrcReg was copied to.
1519 const TargetRegisterClass *DstRC = nullptr) const;
1520
1523
1526 const TargetRegisterClass *DstRC,
1528 const DebugLoc &DL) const;
1529
1530 /// Legalize all operands in this instruction. This function may create new
1531 /// instructions and control-flow around \p MI. If present, \p MDT is
1532 /// updated.
1533 /// \returns A new basic block that contains \p MI if new blocks were created.
1535 legalizeOperands(MachineInstr &MI, MachineDominatorTree *MDT = nullptr) const;
1536
1537 /// Change SADDR form of a FLAT \p Inst to its VADDR form if saddr operand
1538 /// was moved to VGPR. \returns true if succeeded.
1539 bool moveFlatAddrToVGPR(MachineInstr &Inst) const;
1540
1541 /// Fix operands in Inst to fix 16bit SALU to VALU lowering.
1543 MachineRegisterInfo &MRI) const;
1544 void legalizeOperandsVALUt16(MachineInstr &Inst, unsigned OpIdx,
1545 MachineRegisterInfo &MRI) const;
1546
1547 /// Replace the instructions opcode with the equivalent VALU
1548 /// opcode. This function will also move the users of MachineInstruntions
1549 /// in the \p WorkList to the VALU if necessary. If present, \p MDT is
1550 /// updated.
1551 void moveToVALU(SIInstrWorklist &Worklist, MachineDominatorTree *MDT) const;
1552
1553 void
1555 MachineInstr &Inst,
1557 DenseMap<MachineInstr *, bool> &V2SPhyCopiesToErase) const;
1558 /// Wrapper function for generating waterfall for instruction \p MI
1559 /// This function take into consideration of related pre & succ instructions
1560 /// (e.g. calling process) into consideratioin
1563 ArrayRef<Register> PhySGPRs = {}) const;
1564
1565 void insertNoop(MachineBasicBlock &MBB,
1566 MachineBasicBlock::iterator MI) const override;
1567
1568 void insertNoops(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI,
1569 unsigned Quantity) const override;
1570
1571 /// Build instructions that simulate the behavior of a `s_trap 2` instructions
1572 /// for hardware (namely, gfx11) that runs in PRIV=1 mode. There, s_trap is
1573 /// interpreted as a nop.
1574 MachineBasicBlock *insertSimulatedTrap(MachineRegisterInfo &MRI,
1575 MachineBasicBlock &MBB,
1576 MachineInstr &MI,
1577 const DebugLoc &DL) const;
1578
1579 /// Return the number of wait states that result from executing this
1580 /// instruction.
1581 static unsigned getNumWaitStates(const MachineInstr &MI);
1582
1583 /// Returns the operand named \p Op. If \p MI does not have an
1584 /// operand named \c Op, this function returns nullptr.
1586 MachineOperand *getNamedOperand(MachineInstr &MI,
1587 AMDGPU::OpName OperandName) const;
1588
1591 AMDGPU::OpName OperandName) const {
1592 return getNamedOperand(const_cast<MachineInstr &>(MI), OperandName);
1593 }
1594
1595 /// Get required immediate operand
1597 AMDGPU::OpName OperandName) const {
1598 int Idx = AMDGPU::getNamedOperandIdx(MI.getOpcode(), OperandName);
1599 return MI.getOperand(Idx).getImm();
1600 }
1601
1604
1605 bool isLowLatencyInstruction(const MachineInstr &MI) const;
1606 bool isHighLatencyDef(int Opc) const override;
1607
1608 /// Return the descriptor of the target-specific machine instruction
1609 /// that corresponds to the specified pseudo or native opcode.
1610 const MCInstrDesc &getMCOpcodeFromPseudo(unsigned Opcode) const {
1611 return get(pseudoToMCOpcode(Opcode));
1612 }
1613
1614 Register isStackAccess(const MachineInstr &MI, int &FrameIndex,
1615 TypeSize &MemBytes) const;
1616 Register isSGPRStackAccess(const MachineInstr &MI, int &FrameIndex,
1617 TypeSize &MemBytes) const;
1618
1620 int &FrameIndex) const override {
1621 TypeSize MemBytes = TypeSize::getZero();
1622 return isLoadFromStackSlot(MI, FrameIndex, MemBytes);
1623 }
1624
1625 Register isLoadFromStackSlot(const MachineInstr &MI, int &FrameIndex,
1626 TypeSize &MemBytes) const override;
1627
1629 int &FrameIndex) const override {
1630 TypeSize MemBytes = TypeSize::getZero();
1631 return isStoreToStackSlot(MI, FrameIndex, MemBytes);
1632 }
1633
1634 Register isStoreToStackSlot(const MachineInstr &MI, int &FrameIndex,
1635 TypeSize &MemBytes) const override;
1636
1637 unsigned getInstSizeInBytes(const MachineInstr &MI) const override;
1638
1639 InstSizeVerifyMode
1640 getInstSizeVerifyMode(const MachineInstr &MI) const override;
1641
1642 bool mayAccessFlatAddressSpace(const MachineInstr &MI) const;
1643
1644 std::pair<unsigned, unsigned>
1645 decomposeMachineOperandsTargetFlags(unsigned TF) const override;
1646
1648 getSerializableTargetIndices() const override;
1649
1652
1655
1658 const ScheduleDAG *DAG) const override;
1659
1662 MachineLoopInfo *MLI) const override;
1663
1666 const ScheduleDAGMI *DAG) const override;
1667
1669 const MachineFunction &MF) const override;
1670
1672 Register Reg = Register()) const override;
1673
1674 bool canAddToBBProlog(const MachineInstr &MI) const;
1675
1678 const DebugLoc &DL, Register Src,
1679 Register Dst) const override;
1680
1683 const DebugLoc &DL, Register Src,
1684 unsigned SrcSubReg,
1685 Register Dst) const override;
1686
1687 bool isWave32() const;
1688
1689 bool isVOPDAntidependencyAllowed(const MachineInstr &MI) const;
1690
1691 bool hasRAWDependency(const MachineInstr &FirstMI,
1692 const MachineInstr &SecondMI) const;
1693
1694 /// Return a partially built integer add instruction without carry.
1695 /// Caller must add source operands.
1696 /// For pre-GFX9 it will generate unused carry destination operand.
1697 /// TODO: After GFX9 it should return a no-carry operation.
1700 const DebugLoc &DL,
1701 Register DestReg) const;
1702
1705 const DebugLoc &DL,
1706 Register DestReg,
1707 RegScavenger &RS) const;
1708
1709 static bool isKillTerminator(unsigned Opcode);
1710 const MCInstrDesc &getKillTerminatorFromPseudo(unsigned Opcode) const;
1711
1712 bool isLegalMUBUFImmOffset(unsigned Imm) const;
1713
1714 static unsigned getMaxMUBUFImmOffset(const GCNSubtarget &ST);
1715
1716 bool splitMUBUFOffset(uint32_t Imm, uint32_t &SOffset, uint32_t &ImmOffset,
1717 Align Alignment = Align(4)) const;
1718
1719 /// Returns if \p Offset is legal for the subtarget as the offset to a FLAT
1720 /// encoded instruction with the given \p FlatVariant.
1721 bool isLegalFLATOffset(int64_t Offset, unsigned AddrSpace,
1722 AMDGPU::FlatAddrSpace FlatVariant) const;
1723
1724 /// Split \p COffsetVal into {immediate offset field, remainder offset}
1725 /// values.
1726 std::pair<int64_t, int64_t>
1727 splitFlatOffset(int64_t COffsetVal, unsigned AddrSpace,
1728 AMDGPU::FlatAddrSpace FlatVariant) const;
1729
1730 /// Returns true if negative offsets are allowed for the given \p FlatVariant.
1731 bool allowNegativeFlatOffset(AMDGPU::FlatAddrSpace FlatVariant) const;
1732
1733 /// \brief Return a target-specific opcode if Opcode is a pseudo instruction.
1734 /// Return -1 if the target-specific opcode for the pseudo instruction does
1735 /// not exist. If Opcode is not a pseudo instruction, this is identity.
1736 int pseudoToMCOpcode(int Opcode) const;
1737
1738 /// \brief Check if this instruction should only be used by assembler.
1739 /// Return true if this opcode should not be used by codegen.
1740 bool isAsmOnlyOpcode(int MCOp) const;
1741
1742 void fixImplicitOperands(MachineInstr &MI) const;
1743
1745 ArrayRef<unsigned> Ops, int FrameIndex,
1746 MachineInstr *&CopyMI,
1747 LiveIntervals *LIS = nullptr,
1748 VirtRegMap *VRM = nullptr) const override;
1749
1750 unsigned getInstrLatency(const InstrItineraryData *ItinData,
1751 const MachineInstr &MI,
1752 unsigned *PredCost = nullptr) const override;
1753
1754 const MachineOperand &getCalleeOperand(const MachineInstr &MI) const override;
1755
1757
1759
1760 const MIRFormatter *getMIRFormatter() const override;
1761
1762 static unsigned getDSShaderTypeValue(const MachineFunction &MF);
1763
1764 const TargetSchedModel &getSchedModel() const { return SchedModel; }
1765
1767 Register DstReg,
1768 MachineInstr &Inst) const;
1769
1771 SIInstrWorklist &Worklist, Register DstReg, MachineInstr &Inst,
1774 DenseMap<MachineInstr *, bool> &V2SPhyCopiesToErase) const;
1775
1776 // FIXME: This should be removed
1777 // Enforce operand's \p OpName even alignment if required by target.
1778 // This is used if an operand is a 32 bit register but needs to be aligned
1779 // regardless.
1780 void enforceOperandRCAlignment(MachineInstr &MI, AMDGPU::OpName OpName) const;
1781
1782 /// Get the repeat rate for a VALU instruction from the scheduling model.
1783 /// Returns 1 for regular VALU, >1 for long-latency VALU (packed, F64, etc.)
1784 unsigned getRepeatRate(const MachineInstr &MI) const;
1785};
1786
1787/// \brief Returns true if a reg:subreg pair P has a TRC class
1789 const TargetRegisterClass &TRC,
1790 MachineRegisterInfo &MRI) {
1791 auto *RC = MRI.getRegClass(P.Reg);
1792 if (!P.SubReg)
1793 return RC == &TRC;
1794 auto *TRI = MRI.getTargetRegisterInfo();
1795 return RC == TRI->getMatchingSuperRegClass(RC, &TRC, P.SubReg);
1796}
1797
1798/// \brief Create RegSubRegPair from a register MachineOperand
1799inline
1801 assert(O.isReg());
1802 return TargetInstrInfo::RegSubRegPair(O.getReg(), O.getSubReg());
1803}
1804
1805/// \brief Return the SubReg component from REG_SEQUENCE
1806TargetInstrInfo::RegSubRegPair getRegSequenceSubReg(MachineInstr &MI,
1807 unsigned SubReg);
1808
1809/// \brief Return the defining instruction for a given reg:subreg pair
1810/// skipping copy like instructions and subreg-manipulation pseudos.
1811/// Following another subreg of a reg:subreg isn't supported.
1812MachineInstr *getVRegSubRegDef(const TargetInstrInfo::RegSubRegPair &P,
1813 const MachineRegisterInfo &MRI);
1814
1815/// \brief Return false if EXEC is not changed between the def of \p VReg at \p
1816/// DefMI and the use at \p UseMI. Should be run on SSA. Currently does not
1817/// attempt to track between blocks.
1818bool execMayBeModifiedBeforeUse(const MachineRegisterInfo &MRI,
1819 Register VReg,
1820 const MachineInstr &DefMI,
1821 const MachineInstr &UseMI);
1822
1823/// \brief Return false if EXEC is not changed between the def of \p VReg at \p
1824/// DefMI and all its uses. Should be run on SSA. Currently does not attempt to
1825/// track between blocks.
1826bool execMayBeModifiedBeforeAnyUse(const MachineRegisterInfo &MRI,
1827 Register VReg,
1828 const MachineInstr &DefMI);
1829
1830namespace AMDGPU {
1831
1833 int32_t getVOPe64(uint32_t Opcode);
1834
1836 int32_t getVOPe32(uint32_t Opcode);
1837
1839 int32_t getSDWAOp(uint32_t Opcode);
1840
1842 int32_t getDPPOp32(uint32_t Opcode);
1843
1845 int32_t getDPPOp64(uint32_t Opcode);
1846
1849
1851 int32_t getCommuteRev(uint32_t Opcode);
1852
1854 int32_t getCommuteOrig(uint32_t Opcode);
1855
1857 int32_t getAddr64Inst(uint32_t Opcode);
1858
1859 /// Check if \p Opcode is an Addr64 opcode.
1860 ///
1861 /// \returns \p Opcode if it is an Addr64 opcode, otherwise -1.
1863 int32_t getIfAddr64Inst(uint32_t Opcode);
1864
1866 int32_t getSOPKOp(uint32_t Opcode);
1867
1868 /// \returns SADDR form of a FLAT Global instruction given an \p Opcode
1869 /// of a VADDR form.
1872
1873 /// \returns VADDR form of a FLAT Global instruction given an \p Opcode
1874 /// of a SADDR form.
1877
1880
1881 /// \returns ST form with only immediate offset of a FLAT Scratch instruction
1882 /// given an \p Opcode of an SS (SADDR) form.
1885
1886 /// \returns SV (VADDR) form of a FLAT Scratch instruction given an \p Opcode
1887 /// of an SVS (SADDR + VADDR) form.
1890
1891 /// \returns SS (SADDR) form of a FLAT Scratch instruction given an \p Opcode
1892 /// of an SV (VADDR) form.
1895
1896 /// \returns SV (VADDR) form of a FLAT Scratch instruction given an \p Opcode
1897 /// of an SS (SADDR) form.
1900
1901 /// \returns earlyclobber version of a MAC MFMA is exists.
1904
1905 /// \returns Version of an instruction which uses AGPRs for coupled operands
1906 /// given an \p Opcode which uses VGPRs for coupled operands.
1908 int32_t getAGPRFormOp(uint32_t Opcode);
1909
1910 /// \returns v_cmpx version of a v_cmp instruction.
1913
1914 const uint64_t RSRC_DATA_FORMAT = 0xf00000000000LL;
1917 const uint64_t RSRC_TID_ENABLE = UINT64_C(1) << (32 + 23);
1918
1919} // end namespace AMDGPU
1920
1921namespace AMDGPU {
1923 // For sgpr to vgpr spill instructions
1925};
1926} // namespace AMDGPU
1927
1928namespace SI {
1930
1931/// Offsets in bytes from the start of the input buffer
1943
1944} // end namespace KernelInputOffsets
1945} // end namespace SI
1946
1947} // end namespace llvm
1948
1949#endif // LLVM_LIB_TARGET_AMDGPU_SIINSTRINFO_H
MachineInstrBuilder & UseMI
MachineInstrBuilder MachineInstrBuilder & DefMI
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
unsigned Imm
unsigned uint64_t
Provides AMDGPU specific target descriptions.
AMDGPU specific overrides of MIRFormatter.
MachineBasicBlock & MBB
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
MachineBasicBlock MachineBasicBlock::iterator MBBI
static GCRegistry::Add< ErlangGC > A("erlang", "erlang-compatible garbage collector")
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
#define LLVM_READONLY
Definition Compiler.h:330
IRTranslator LLVM IR MI
const AbstractManglingParser< Derived, Alloc >::OperatorInfo AbstractManglingParser< Derived, Alloc >::Ops[]
#define I(x, y, z)
Definition MD5.cpp:57
Register Reg
Register const TargetRegisterInfo * TRI
Promote Memory to Register
Definition Mem2Reg.cpp:110
uint64_t IntrinsicInst * II
#define P(N)
const SmallVectorImpl< MachineOperand > MachineBasicBlock * TBB
const SmallVectorImpl< MachineOperand > & Cond
Interface definition for SIRegisterInfo.
This file implements a set that has insertion order iteration characteristics.
This file defines the SmallPtrSet class.
static unsigned getBranchOpcode(ISD::CondCode Cond)
Class for arbitrary precision integers.
Definition APInt.h:78
Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:40
A debug info location.
Definition DebugLoc.h:126
Itinerary data supplied by a subtarget to be used by a target.
Describe properties that are true of each instruction in the target description file.
This holds information about one operand of a machine instruction, indicating the register class for ...
Definition MCInstrDesc.h:88
MIRFormater - Interface to format MIR operand based on target.
MachineInstrBundleIterator< MachineInstr > iterator
DominatorTree Class - Concrete subclass of DominatorTreeBase that is used to compute a normal dominat...
MachineRegisterInfo & getRegInfo()
getRegInfo - Return information about the registers currently in use.
Representation of each machine instruction.
Flags
Flags values. These may be or'd together.
MachineOperand class - Representation of each machine instruction operand.
unsigned getSubReg() const
LLVM_ABI unsigned getOperandNo() const
Returns the index of this operand in the instruction that it belongs to.
int64_t getImm() const
bool isReg() const
isReg - Tests if this is a MO_Register operand.
bool isImm() const
isImm - Tests if this is a MO_Immediate operand.
MachineInstr * getParent()
getParent - Return the instruction that this operand belongs to.
MachineRegisterInfo - Keep track of information for virtual and physical registers,...
const TargetRegisterClass * getRegClass(Register Reg) const
Return the register class of the specified virtual register.
const TargetRegisterInfo * getTargetRegisterInfo() const
Wrapper class representing virtual and physical registers.
Definition Register.h:20
Represents one node in the SelectionDAG.
bool usesFPDPRounding(uint32_t Opcode) const
static bool isCBranchVCCZRead(const MachineInstr &MI)
bool isLegalMUBUFImmOffset(unsigned Imm) const
bool isInlineConstant(const APInt &Imm) const
static bool isMAI(const MachineInstr &MI)
void legalizeOperandsVOP3(MachineRegisterInfo &MRI, MachineInstr &MI) const
Fix operands in MI to satisfy constant bus requirements.
bool canAddToBBProlog(const MachineInstr &MI) const
static bool isDS(const MachineInstr &MI)
static bool isVMEM(const MachineInstr &MI)
MachineBasicBlock * legalizeOperands(MachineInstr &MI, MachineDominatorTree *MDT=nullptr) const
Legalize all operands in this instruction.
bool areLoadsFromSameBasePtr(SDNode *Load0, SDNode *Load1, int64_t &Offset0, int64_t &Offset1) const override
bool isWQM(uint32_t Opcode) const
static bool isVOP3(const MachineInstr &MI)
bool isMTBUF(uint32_t Opcode) const
unsigned getLiveRangeSplitOpcode(Register Reg, const MachineFunction &MF) const override
bool getMemOperandsWithOffsetWidth(const MachineInstr &LdSt, SmallVectorImpl< const MachineOperand * > &BaseOps, int64_t &Offset, bool &OffsetIsScalable, LocationSize &Width, const TargetRegisterInfo *TRI) const final
unsigned getInstSizeInBytes(const MachineInstr &MI) const override
static bool isNeverUniform(const MachineInstr &MI)
bool isXDLWMMA(const MachineInstr &MI) const
bool isBasicBlockPrologue(const MachineInstr &MI, Register Reg=Register()) const override
bool isSpill(uint32_t Opcode) const
bool isMUBUF(uint32_t Opcode) const
uint64_t getDefaultRsrcDataFormat() const
static bool isSOPP(const MachineInstr &MI)
bool hasVGPRUses(const MachineInstr &MI) const
bool mayAccessScratch(const MachineInstr &MI) const
bool isIGLP(unsigned Opcode) const
static bool isFLATScratch(const MachineInstr &MI)
bool isLegalFLATOffset(int64_t Offset, unsigned AddrSpace, AMDGPU::FlatAddrSpace FlatVariant) const
Returns if Offset is legal for the subtarget as the offset to a FLAT encoded instruction with the giv...
const MCInstrDesc & getIndirectRegWriteMovRelPseudo(unsigned VecSize, unsigned EltSize, bool IsSGPR) const
static bool isSpill(const MachineInstr &MI)
MachineInstrBuilder getAddNoCarry(MachineBasicBlock &MBB, MachineBasicBlock::iterator I, const DebugLoc &DL, Register DestReg) const
Return a partially built integer add instruction without carry.
bool isVOP3PMix(uint16_t Opcode) const
bool mayAccessFlatAddressSpace(const MachineInstr &MI) const
bool shouldScheduleLoadsNear(SDNode *Load0, SDNode *Load1, int64_t Offset0, int64_t Offset1, unsigned NumLoads) const override
bool splitMUBUFOffset(uint32_t Imm, uint32_t &SOffset, uint32_t &ImmOffset, Align Alignment=Align(4)) const
ArrayRef< std::pair< unsigned, const char * > > getSerializableDirectMachineOperandTargetFlags() const override
void moveToVALU(SIInstrWorklist &Worklist, MachineDominatorTree *MDT) const
Replace the instructions opcode with the equivalent VALU opcode.
bool isDisableWQM(uint32_t Opcode) const
static bool isSMRD(const MachineInstr &MI)
void restoreExec(MachineFunction &MF, MachineBasicBlock &MBB, MachineBasicBlock::iterator MBBI, const DebugLoc &DL, Register Reg, SlotIndexes *Indexes=nullptr) const
void storeRegToStackSlotCFI(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, Register SrcReg, bool isKill, int FrameIndex, const TargetRegisterClass *RC) const
bool usesConstantBus(const MachineRegisterInfo &MRI, const MachineOperand &MO, const MCOperandInfo &OpInfo) const
Returns true if this operand uses the constant bus.
static unsigned getMaxMUBUFImmOffset(const GCNSubtarget &ST)
bool doesNotReadTiedSource(uint32_t Opcode) const
bool isSOPK(uint32_t Opcode) const
static unsigned getFoldableCopySrcIdx(const MachineInstr &MI)
unsigned getOpSize(uint32_t Opcode, unsigned OpNo) const
Return the size in bytes of the operand OpNo on the given.
bool isLDSDMA(uint32_t Opcode) const
static bool hasSameClamp(const MachineInstr &A, const MachineInstr &B)
void legalizeOperandsFLAT(MachineRegisterInfo &MRI, MachineInstr &MI) const
bool optimizeCompareInstr(MachineInstr &CmpInstr, Register SrcReg, Register SrcReg2, int64_t CmpMask, int64_t CmpValue, const MachineRegisterInfo *MRI) const override
bool usesConstantBus(const MachineRegisterInfo &MRI, const MachineInstr &MI, int OpIdx) const
bool isAtomicRet(uint32_t Opcode) const
static std::optional< int64_t > extractSubregFromImm(int64_t ImmVal, unsigned SubRegIndex)
Return the extracted immediate value in a subregister use from a constant materialized in a super reg...
Register isStoreToStackSlot(const MachineInstr &MI, int &FrameIndex) const override
bool isVINTRP(uint32_t Opcode) const
bool isSOP1(uint32_t Opcode) const
static bool isMTBUF(const MachineInstr &MI)
const MCInstrDesc & getIndirectGPRIDXPseudo(unsigned VecSize, bool IsIndirectSrc) const
static bool isDGEMM(unsigned Opcode)
static bool isEXP(const MachineInstr &MI)
static bool isSALU(const MachineInstr &MI)
static bool setsSCCIfResultIsNonZero(const MachineInstr &MI)
const MIRFormatter * getMIRFormatter() const override
bool isSGPRSpill(uint32_t Opcode) const
static bool isXcntDrain(const MachineInstr &MI)
True if MI implicitly drains XCNT.
void legalizeGenericOperand(MachineBasicBlock &InsertMBB, MachineBasicBlock::iterator I, const TargetRegisterClass *DstRC, MachineOperand &Op, MachineRegisterInfo &MRI, const DebugLoc &DL) const
MachineInstr * buildShrunkInst(MachineInstr &MI, unsigned NewOpcode) const
static bool isVOP2(const MachineInstr &MI)
bool analyzeBranch(MachineBasicBlock &MBB, MachineBasicBlock *&TBB, MachineBasicBlock *&FBB, SmallVectorImpl< MachineOperand > &Cond, bool AllowModify=false) const override
static bool isSDWA(const MachineInstr &MI)
const MCInstrDesc & getKillTerminatorFromPseudo(unsigned Opcode) const
static bool mayWriteLDSThroughDMA(const MachineInstr &MI)
void insertNoops(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, unsigned Quantity) const override
bool isDOT(uint32_t Opcode) const
static bool isVINTRP(const MachineInstr &MI)
bool isIGLPMutationOnly(unsigned Opcode) const
static bool isGather4(const MachineInstr &MI)
bool isDS(uint32_t Opcode) const
MachineInstr * getWholeWaveFunctionSetup(MachineFunction &MF) const
static bool isMFMAorWMMA(const MachineInstr &MI)
static bool isWQM(const MachineInstr &MI)
static bool doesNotReadTiedSource(const MachineInstr &MI)
bool isLegalVSrcOperand(const MachineRegisterInfo &MRI, const MCOperandInfo &OpInfo, const MachineOperand &MO) const
Check if MO would be a valid operand for the given operand definition OpInfo.
static bool isDOT(const MachineInstr &MI)
std::unique_ptr< PipelinerLoopInfo > analyzeLoopForPipelining(MachineBasicBlock *LoopBB) const override
InstSizeVerifyMode getInstSizeVerifyMode(const MachineInstr &MI) const override
bool isGather4(uint32_t Opcode) const
static bool usesFPDPRounding(const MachineInstr &MI)
bool isVIMAGE(uint32_t Opcode) const
MachineInstr * createPHISourceCopy(MachineBasicBlock &MBB, MachineBasicBlock::iterator InsPt, const DebugLoc &DL, Register Src, unsigned SrcSubReg, Register Dst) const override
bool isImage(uint32_t Opcode) const
static bool usesTENSOR_CNT(const MachineInstr &MI)
bool isInlineConstant(const MachineOperand &MO) const
bool hasModifiers(unsigned Opcode) const
Return true if this instruction has any modifiers.
bool shouldClusterMemOps(ArrayRef< const MachineOperand * > BaseOps1, int64_t Offset1, bool OffsetIsScalable1, ArrayRef< const MachineOperand * > BaseOps2, int64_t Offset2, bool OffsetIsScalable2, unsigned ClusterSize, unsigned NumBytes) const override
static bool isSWMMAC(const MachineInstr &MI)
ScheduleHazardRecognizer * CreateTargetMIHazardRecognizer(const InstrItineraryData *II, const ScheduleDAGMI *DAG) const override
bool isDPP(uint32_t Opcode) const
bool isWave32() const
bool isHighLatencyDef(int Opc) const override
void legalizeOpWithMove(MachineInstr &MI, unsigned OpIdx) const
Legalize the OpIndex operand of this instruction by inserting a MOV.
bool reverseBranchCondition(SmallVectorImpl< MachineOperand > &Cond) const override
static bool isVOPC(const MachineInstr &MI)
void removeModOperands(MachineInstr &MI) const
bool hasFPClamp(uint32_t Opcode) const
bool isInlineConstant(const MachineInstr &MI, unsigned OpIdx, int64_t ImmVal) const
bool isGWS(uint32_t Opcode) const
unsigned getRepeatRate(const MachineInstr &MI) const
Get the repeat rate for a VALU instruction from the scheduling model.
unsigned getVectorRegSpillRestoreOpcode(Register Reg, const TargetRegisterClass *RC, unsigned Size, const SIMachineFunctionInfo &MFI) const
bool isLegalSingleSGPRReadInstOperand(const MachineRegisterInfo &MRI, const MachineInstr &MI, unsigned SrcN, const MachineOperand *MO=nullptr) const
Check if MO would be a legal operand for a single-SGPR-read instruction.
bool isXDL(const MachineInstr &MI) const
Register isStackAccess(const MachineInstr &MI, int &FrameIndex, TypeSize &MemBytes) const
static bool isVIMAGE(const MachineInstr &MI)
static bool isLDSDIR(const MachineInstr &MI)
void enforceOperandRCAlignment(MachineInstr &MI, AMDGPU::OpName OpName) const
static bool isSOP2(const MachineInstr &MI)
LLVM_READONLY const MachineOperand * getNamedOperand(const MachineInstr &MI, AMDGPU::OpName OperandName) const
static bool isGWS(const MachineInstr &MI)
bool hasRAWDependency(const MachineInstr &FirstMI, const MachineInstr &SecondMI) const
bool isLegalAV64PseudoImm(uint64_t Imm) const
Check if this immediate value can be used for AV_MOV_B64_IMM_PSEUDO.
bool isNeverCoissue(MachineInstr &MI) const
const TargetSchedModel & getSchedModel() const
static bool isBUF(const MachineInstr &MI)
bool isInlineConstant(const MachineInstr &MI, const MachineOperand &UseMO, const MachineOperand &DefMO) const
returns true if UseMO is substituted with DefMO in MI it would be an inline immediate.
bool isSOPC(uint32_t Opcode) const
bool isMAI(uint32_t Opcode) const
void handleCopyToPhysHelper(SIInstrWorklist &Worklist, Register DstReg, MachineInstr &Inst, MachineRegisterInfo &MRI, DenseMap< MachineInstr *, V2PhysSCopyInfo > &WaterFalls, DenseMap< MachineInstr *, bool > &V2SPhyCopiesToErase) const
bool hasModifiersSet(const MachineInstr &MI, AMDGPU::OpName OpName) const
bool isLegalToSwap(const MachineInstr &MI, unsigned fromIdx, unsigned toIdx) const
bool isFixedSize(uint32_t Opcode) const
static bool isFLATGlobal(const MachineInstr &MI)
unsigned getMachineCSELookAheadLimit() const override
MachineInstr * foldMemoryOperandImpl(MachineFunction &MF, MachineInstr &MI, ArrayRef< unsigned > Ops, int FrameIndex, MachineInstr *&CopyMI, LiveIntervals *LIS=nullptr, VirtRegMap *VRM=nullptr) const override
bool isGlobalMemoryObject(const MachineInstr *MI) const override
static bool isVSAMPLE(const MachineInstr &MI)
static bool isAtomicRet(const MachineInstr &MI)
bool isBufferSMRD(const MachineInstr &MI) const
static bool isKillTerminator(unsigned Opcode)
bool isVOPDAntidependencyAllowed(const MachineInstr &MI) const
If OpX is multicycle, anti-dependencies are not allowed.
bool findCommutedOpIndices(const MachineInstr &MI, unsigned &SrcOpIdx0, unsigned &SrcOpIdx1) const override
const GCNSubtarget & getSubtarget() const
void insertScratchExecCopy(MachineFunction &MF, MachineBasicBlock &MBB, MachineBasicBlock::iterator MBBI, const DebugLoc &DL, Register Reg, bool IsSCCLive, SlotIndexes *Indexes=nullptr) const
bool hasVALU32BitEncoding(unsigned Opcode) const
Return true if this 64-bit VALU instruction has a 32-bit encoding.
static bool isDisableWQM(const MachineInstr &MI)
bool isVOP3PMix(const MachineInstr &MI) const
unsigned getMovOpcode(const TargetRegisterClass *DstRC) const
Register isSGPRStackAccess(const MachineInstr &MI, int &FrameIndex, TypeSize &MemBytes) const
bool isMFMAorWMMA(uint32_t Opcode) const
unsigned buildExtractSubReg(MachineBasicBlock::iterator MI, MachineRegisterInfo &MRI, const MachineOperand &SuperReg, const TargetRegisterClass *SuperRC, unsigned SubIdx, const TargetRegisterClass *SubRC) const
void legalizeOperandsVOP2(MachineRegisterInfo &MRI, MachineInstr &MI) const
Legalize operands in MI by either commuting it or inserting a copy of src1.
bool isFLATGlobal(uint32_t Opcode) const
static bool isVALU(const MachineInstr &MI, bool AllowLDSDMA)
bool foldImmediate(MachineInstr &UseMI, MachineInstr &DefMI, Register Reg, MachineRegisterInfo *MRI) const final
static bool isTRANS(const MachineInstr &MI)
static bool isImage(const MachineInstr &MI)
static bool isSOPK(const MachineInstr &MI)
const TargetRegisterClass * getOpRegClass(const MachineInstr &MI, unsigned OpNo) const
Return the correct register class for OpNo.
MachineBasicBlock * insertSimulatedTrap(MachineRegisterInfo &MRI, MachineBasicBlock &MBB, MachineInstr &MI, const DebugLoc &DL) const
Build instructions that simulate the behavior of a s_trap 2 instructions for hardware (namely,...
bool isMIMG(uint32_t Opcode) const
static unsigned getNonSoftWaitcntOpcode(unsigned Opcode)
bool isInlineConstant(const MachineInstr &MI, unsigned OpIdx) const
returns true if the operand OpIdx in MI is a valid inline immediate.
bool isVGPRSpill(uint32_t Opcode) const
static unsigned getDSShaderTypeValue(const MachineFunction &MF)
static bool isFoldableCopy(const MachineInstr &MI)
bool isAtomic(uint32_t Opcode) const
bool isIgnorableUse(const MachineOperand &MO) const override
static bool isVINTERP(const MachineInstr &MI)
static bool isMUBUF(const MachineInstr &MI)
bool expandPostRAPseudo(MachineInstr &MI) const override
bool analyzeCompare(const MachineInstr &MI, Register &SrcReg, Register &SrcReg2, int64_t &CmpMask, int64_t &CmpValue) const override
void createWaterFallForSiCall(MachineInstr *MI, MachineDominatorTree *MDT, ArrayRef< MachineOperand * > ScalarOps, ArrayRef< Register > PhySGPRs={}) const
Wrapper function for generating waterfall for instruction MI This function take into consideration of...
void loadRegFromStackSlot(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, Register DestReg, int FrameIndex, const TargetRegisterClass *RC, Register VReg, unsigned SubReg=0, MachineInstr::MIFlag Flags=MachineInstr::NoFlags) const override
static bool hasFPClamp(const MachineInstr &MI)
bool isVOP2(uint32_t Opcode) const
static bool isGFX12CacheInvOrWBInst(unsigned Opc)
static bool isSegmentSpecificFLAT(const MachineInstr &MI)
static bool isWaitcnt(unsigned Opcode)
bool isReMaterializableImpl(const MachineInstr &MI) const override
bool isFLATScratch(uint32_t Opcode) const
static bool isVOP3(const MCInstrDesc &Desc)
unsigned getOpSize(const MachineInstr &MI, unsigned OpNo) const
This form should usually be preferred since it handles operands with unknown register classes.
bool isSegmentSpecificFLAT(uint32_t Opcode) const
Register isLoadFromStackSlot(const MachineInstr &MI, int &FrameIndex) const override
bool physRegUsesConstantBus(const MachineOperand &Reg) const
bool isInlineConstant(const MachineOperand &MO, const MCOperandInfo &OpInfo) const
static bool isF16PseudoScalarTrans(unsigned Opcode)
void insertSelect(MachineBasicBlock &MBB, MachineBasicBlock::iterator I, const DebugLoc &DL, Register DstReg, ArrayRef< MachineOperand > Cond, Register TrueReg, Register FalseReg) const override
bool mayAccessVMEMThroughFlat(const MachineInstr &MI) const
static bool isChainCallOpcode(uint64_t Opcode)
bool isVOPC(uint32_t Opcode) const
static bool isDPP(const MachineInstr &MI)
bool analyzeBranchImpl(MachineBasicBlock &MBB, MachineBasicBlock::iterator I, MachineBasicBlock *&TBB, MachineBasicBlock *&FBB, SmallVectorImpl< MachineOperand > &Cond, bool AllowModify) const
bool isPacked(uint32_t Opcode) const
static bool isMFMA(const MachineInstr &MI)
bool isLowLatencyInstruction(const MachineInstr &MI) const
bool isIGLP(const MachineInstr &MI) const
std::optional< int64_t > getImmOrMaterializedImm(const MachineRegisterInfo &MRI, MachineOperand &Op) const
static bool isScalarStore(const MachineInstr &MI)
bool isFLAT(uint32_t Opcode) const
std::optional< DestSourcePair > isCopyInstrImpl(const MachineInstr &MI) const override
If the specific machine instruction is a instruction that moves/copies value from one register to ano...
bool isVALU(uint32_t Opcode, bool AllowLDSDMA) const
LDSDMA instructions act as both VALU and memory instructions, thus we also tag them as VALU.
void mutateAndCleanupImplicit(MachineInstr &MI, const MCInstrDesc &NewDesc) const
ValueUniformity getGenericValueUniformity(const MachineInstr &MI) const
static bool isMAI(const MCInstrDesc &Desc)
void reMaterialize(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, Register DestReg, unsigned SubIdx, const MachineInstr &Orig, LaneBitmask UsedLanes=LaneBitmask::getAll()) const override
static bool isFPAtomic(const MachineInstr &MI)
static bool usesLGKM_CNT(const MachineInstr &MI)
bool isFPAtomic(uint32_t Opcode) const
void legalizeOperandsVALUt16(MachineInstr &Inst, MachineRegisterInfo &MRI) const
Fix operands in Inst to fix 16bit SALU to VALU lowering.
bool isImmOperandLegal(const MCInstrDesc &InstDesc, unsigned OpNo, const MachineOperand &MO) const
static bool isPacked(const MachineInstr &MI)
bool canShrink(const MachineInstr &MI, const MachineRegisterInfo &MRI) const
const MachineOperand & getCalleeOperand(const MachineInstr &MI) const override
bool isAsmOnlyOpcode(int MCOp) const
Check if this instruction should only be used by assembler.
bool isAlwaysGDS(uint32_t Opcode) const
static bool isVGPRSpill(const MachineInstr &MI)
ScheduleHazardRecognizer * CreateTargetPostRAHazardRecognizer(const InstrItineraryData *II, const ScheduleDAG *DAG) const override
This is used by the post-RA scheduler (SchedulePostRAList.cpp).
bool verifyInstruction(const MachineInstr &MI, StringRef &ErrInfo) const override
static bool isSBarrierSCCWrite(unsigned Opcode)
unsigned getInstrLatency(const InstrItineraryData *ItinData, const MachineInstr &MI, unsigned *PredCost=nullptr) const override
unsigned getVectorRegSpillSaveOpcode(Register Reg, const TargetRegisterClass *RC, unsigned Size, const SIMachineFunctionInfo &MFI, bool NeedsCFI) const
int64_t getNamedImmOperand(const MachineInstr &MI, AMDGPU::OpName OperandName) const
Get required immediate operand.
bool isSOP2(uint32_t Opcode) const
ArrayRef< std::pair< int, const char * > > getSerializableTargetIndices() const override
bool isVGPRCopy(const MachineInstr &MI) const
bool isVOP1(uint32_t Opcode) const
bool isVINTERP(uint32_t Opcode) const
bool regUsesConstantBus(const MachineOperand &Reg, const MachineRegisterInfo &MRI) const
static bool isMIMG(const MachineInstr &MI)
MachineOperand buildExtractSubRegOrImm(MachineBasicBlock::iterator MI, MachineRegisterInfo &MRI, const MachineOperand &SuperReg, const TargetRegisterClass *SuperRC, unsigned SubIdx, const TargetRegisterClass *SubRC) const
bool isSchedulingBoundary(const MachineInstr &MI, const MachineBasicBlock *MBB, const MachineFunction &MF) const override
bool isLegalRegOperand(const MachineRegisterInfo &MRI, const MCOperandInfo &OpInfo, const MachineOperand &MO) const
Check if MO (a register operand) is a legal register for the given operand description or operand ind...
LLVM_READONLY int commuteOpcode(const MachineInstr &MI) const
static unsigned getNumWaitStates(const MachineInstr &MI)
Return the number of wait states that result from executing this instruction.
static bool isVOP3P(const MachineInstr &MI)
unsigned getVALUOp(const MachineInstr &MI) const
static bool modifiesModeRegister(const MachineInstr &MI)
Return true if the instruction modifies the mode register.q.
Register readlaneVGPRToSGPR(Register SrcReg, MachineInstr &UseMI, MachineRegisterInfo &MRI, const TargetRegisterClass *DstRC=nullptr) const
Copy a value from a VGPR (SrcReg) to SGPR.
bool hasDivergentBranch(const MachineBasicBlock *MBB) const
Return whether the block terminate with divergent branch.
bool isInlineConstant(const MachineOperand &MO, uint8_t OperandType) const
std::pair< int64_t, int64_t > splitFlatOffset(int64_t COffsetVal, unsigned AddrSpace, AMDGPU::FlatAddrSpace FlatVariant) const
Split COffsetVal into {immediate offset field, remainder offset} values.
unsigned removeBranch(MachineBasicBlock &MBB, int *BytesRemoved=nullptr) const override
bool isVOP3P(uint32_t Opcode) const
void fixImplicitOperands(MachineInstr &MI) const
bool moveFlatAddrToVGPR(MachineInstr &Inst) const
Change SADDR form of a FLAT Inst to its VADDR form if saddr operand was moved to VGPR.
bool isSWMMAC(uint32_t Opcode) const
static bool usesASYNC_CNT(const MachineInstr &MI)
void copyPhysReg(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, const DebugLoc &DL, Register DestReg, Register SrcReg, bool KillSrc, bool RenamableDest=false, bool RenamableSrc=false) const override
void createReadFirstLaneFromCopyToPhysReg(MachineRegisterInfo &MRI, Register DstReg, MachineInstr &Inst) const
bool swapSourceModifiers(MachineInstr &MI, MachineOperand &Src0, AMDGPU::OpName Src0OpName, MachineOperand &Src1, AMDGPU::OpName Src1OpName) const
MachineBasicBlock * getBranchDestBlock(const MachineInstr &MI) const override
static bool isDualSourceBlendEXP(const MachineInstr &MI)
bool hasUnwantedEffectsWhenEXECEmpty(const MachineInstr &MI) const
This function is used to determine if an instruction can be safely executed under EXEC = 0 without ha...
bool getConstValDefinedInReg(const MachineInstr &MI, const Register Reg, int64_t &ImmVal) const override
static bool isAtomic(const MachineInstr &MI)
bool canInsertSelect(const MachineBasicBlock &MBB, ArrayRef< MachineOperand > Cond, Register DstReg, Register TrueReg, Register FalseReg, int &CondCycles, int &TrueCycles, int &FalseCycles) const override
bool isLiteralOperandLegal(const MCInstrDesc &InstDesc, const MCOperandInfo &OpInfo) const
static bool isWWMRegSpillOpcode(uint32_t Opcode)
static bool sopkIsZext(unsigned Opcode)
static bool isSGPRSpill(const MachineInstr &MI)
static bool isWMMA(const MachineInstr &MI)
bool isMFMA(uint32_t Opcode) const
ArrayRef< std::pair< MachineMemOperand::Flags, const char * > > getSerializableMachineMemOperandTargetFlags() const override
MachineInstr * convertToThreeAddress(MachineInstr &MI, LiveVariables *LV, LiveIntervals *LIS) const override
bool mayReadEXEC(const MachineRegisterInfo &MRI, const MachineInstr &MI) const
Returns true if the instruction could potentially depend on the value of exec.
bool isSALU(uint32_t Opcode) const
bool isSMRD(uint32_t Opcode) const
bool isWMMA(uint32_t Opcode) const
void legalizeOperandsSMRD(MachineRegisterInfo &MRI, MachineInstr &MI) const
bool isVSAMPLE(uint32_t Opcode) const
bool isBranchOffsetInRange(unsigned BranchOpc, int64_t BrOffset) const override
unsigned insertBranch(MachineBasicBlock &MBB, MachineBasicBlock *TBB, MachineBasicBlock *FBB, ArrayRef< MachineOperand > Cond, const DebugLoc &DL, int *BytesAdded=nullptr) const override
void insertNoop(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI) const override
std::pair< MachineInstr *, MachineInstr * > expandMovDPP64(MachineInstr &MI) const
static bool isLoadMonitor(unsigned Opc)
static bool isSOP1(const MachineInstr &MI)
static bool isSOPC(const MachineInstr &MI)
bool isSOPP(uint32_t Opcode) const
static bool isFLAT(const MachineInstr &MI)
const SIRegisterInfo & getRegisterInfo() const
bool isLDSDIR(uint32_t Opcode) const
bool isBarrier(unsigned Opcode) const
bool isAtomicNoRet(uint32_t Opcode) const
MachineInstr * commuteInstructionImpl(MachineInstr &MI, bool NewMI, unsigned OpIdx0, unsigned OpIdx1) const override
bool isVOP3(uint32_t Opcode) const
bool mayAccessLDSThroughFlat(const MachineInstr &MI, bool TgSplit) const
static bool hasIntClamp(const MachineInstr &MI)
static bool isSpill(const MCInstrDesc &Desc)
int pseudoToMCOpcode(int Opcode) const
Return a target-specific opcode if Opcode is a pseudo instruction.
const MCInstrDesc & getMCOpcodeFromPseudo(unsigned Opcode) const
Return the descriptor of the target-specific machine instruction that corresponds to the specified ps...
bool isImmOperandLegal(const MachineInstr &MI, unsigned OpNo, const MachineOperand &MO) const
bool isEXP(uint32_t Opcode) const
bool isInlineConstant(const MachineInstr &MI, unsigned OpIdx, const MachineOperand &MO) const
static bool isScalarUnit(const MachineInstr &MI)
static bool usesVM_CNT(const MachineInstr &MI)
MachineInstr * createPHIDestinationCopy(MachineBasicBlock &MBB, MachineBasicBlock::iterator InsPt, const DebugLoc &DL, Register Src, Register Dst) const override
static bool isFixedSize(const MachineInstr &MI)
bool isSafeToSink(MachineInstr &MI, MachineBasicBlock *SuccToSinkTo, MachineCycleInfo *CI) const override
bool usesTENSOR_CNT(uint32_t Opcode) const
LLVM_READONLY int commuteOpcode(unsigned Opc) const
bool isScalarStore(uint32_t Opcode) const
static bool isBlockLoadStore(uint32_t Opcode)
ValueUniformity getValueUniformity(const MachineInstr &MI) const final
uint64_t getScratchRsrcWords23() const
bool usesASYNC_CNT(uint32_t Opcode) const
LLVM_READONLY MachineOperand * getNamedOperand(MachineInstr &MI, AMDGPU::OpName OperandName) const
Returns the operand named Op.
std::pair< unsigned, unsigned > decomposeMachineOperandsTargetFlags(unsigned TF) const override
bool isVMEM(uint32_t Opcode) const
bool areMemAccessesTriviallyDisjoint(const MachineInstr &MIa, const MachineInstr &MIb) const override
bool isOperandLegal(const MachineInstr &MI, unsigned OpIdx, const MachineOperand *MO=nullptr) const
Check if MO is a legal operand if it was the OpIdx Operand for MI.
void storeRegToStackSlot(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, Register SrcReg, bool isKill, int FrameIndex, const TargetRegisterClass *RC, Register VReg, MachineInstr::MIFlag Flags=MachineInstr::NoFlags) const override
bool allowNegativeFlatOffset(AMDGPU::FlatAddrSpace FlatVariant) const
Returns true if negative offsets are allowed for the given FlatVariant.
bool isBarrierStart(unsigned Opcode) const
void moveToVALUImpl(SIInstrWorklist &Worklist, MachineDominatorTree *MDT, MachineInstr &Inst, DenseMap< MachineInstr *, V2PhysSCopyInfo > &WaterFalls, DenseMap< MachineInstr *, bool > &V2SPhyCopiesToErase) const
static bool isLDSDMA(const MachineInstr &MI)
static bool isAtomicNoRet(const MachineInstr &MI)
static bool isVOP1(const MachineInstr &MI)
SIInstrInfo(const GCNSubtarget &ST)
void insertIndirectBranch(MachineBasicBlock &MBB, MachineBasicBlock &NewDestBB, MachineBasicBlock &RestoreBB, const DebugLoc &DL, int64_t BrOffset, RegScavenger *RS) const override
bool isTRANS(uint32_t Opcode) const
bool isSDWA(uint32_t Opcode) const
bool hasAnyModifiersSet(const MachineInstr &MI) const
This class keeps track of the SPI_SP_INPUT_ADDR config register, which tells the hardware which inter...
ScheduleDAGMI is an implementation of ScheduleDAGInstrs that simply schedules machine instructions ac...
HazardRecognizer - This determines whether or not an instruction can be issued this cycle,...
A vector that has set insertion semantics.
Definition SetVector.h:57
SlotIndexes pass.
SmallPtrSet - This class implements a set which is optimized for holding SmallSize or less elements.
A SetVector that performs no allocations if smaller than a certain size.
Definition SetVector.h:345
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
Represent a constant reference to a string, i.e.
Definition StringRef.h:56
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
Provide an instruction scheduling machine model to CodeGen passes.
Target - Wrapper for Target specific information.
static constexpr TypeSize getZero()
Definition TypeSize.h:349
const uint64_t RSRC_DATA_FORMAT
LLVM_READONLY int32_t getSOPKOp(uint32_t Opcode)
LLVM_READONLY int32_t getCommuteRev(uint32_t Opcode)
LLVM_READONLY int32_t getCommuteOrig(uint32_t Opcode)
LLVM_READONLY int32_t getDPPOp32(uint32_t Opcode)
LLVM_READONLY int32_t getGlobalVaddrOp(uint32_t Opcode)
LLVM_READONLY int32_t getMFMAEarlyClobberOp(uint32_t Opcode)
const uint64_t RSRC_ELEMENT_SIZE_SHIFT
LLVM_READONLY int32_t getIfAddr64Inst(uint32_t Opcode)
Check if Opcode is an Addr64 opcode.
LLVM_READONLY int32_t getVCMPXNoSDstOp(uint32_t Opcode)
const uint64_t RSRC_TID_ENABLE
LLVM_READONLY int32_t getVOPe32(uint32_t Opcode)
LLVM_READONLY int32_t getSDWAOp(uint32_t Opcode)
LLVM_READONLY int32_t getVCMPXOpFromVCMP(uint32_t Opcode)
LLVM_READONLY int32_t getAGPRFormOp(uint32_t Opcode)
LLVM_READONLY int32_t getGlobalSaddrOp(uint32_t Opcode)
LLVM_READONLY int32_t getAddr64Inst(uint32_t Opcode)
LLVM_READONLY int32_t getVOPe64(uint32_t Opcode)
LLVM_READONLY int32_t getDPPOp64(uint32_t Opcode)
@ OPERAND_REG_IMM_INT64
Definition SIDefines.h:432
@ OPERAND_REG_IMM_INT32
Operands with register, 32-bit, or 64-bit immediate.
Definition SIDefines.h:431
LLVM_READONLY int32_t getBasicFromSDWAOp(uint32_t Opcode)
LLVM_READONLY int32_t getFlatScratchInstSSfromSV(uint32_t Opcode)
const uint64_t RSRC_INDEX_STRIDE_SHIFT
bool getMAIIsDGEMM(unsigned Opc)
Returns true if MAI operation is a double precision GEMM.
LLVM_READONLY int32_t getFlatScratchInstSVfromSVS(uint32_t Opcode)
LLVM_READONLY int32_t getFlatScratchInstSVfromSS(uint32_t Opcode)
LLVM_READONLY int32_t getFlatScratchInstSTfromSS(uint32_t Opcode)
@ OPERAND_IMMEDIATE
Definition MCInstrDesc.h:61
constexpr bool isAtomicRet(const T &...O)
Definition SIDefines.h:367
constexpr bool isVOPC(const T &...O)
Definition SIDefines.h:236
constexpr bool isVOP3(const T &...O)
Definition SIDefines.h:239
constexpr bool isScalarStore(const T &...O)
Definition SIDefines.h:313
constexpr bool isVOP1(const T &...O)
Definition SIDefines.h:230
constexpr bool isFPAtomic(const T &...O)
Definition SIDefines.h:352
constexpr bool usesVM_CNT(const T &...O)
Definition SIDefines.h:388
constexpr bool usesTENSOR_CNT(const T &...O)
Definition SIDefines.h:310
constexpr bool isMAI(const T &...O)
Definition SIDefines.h:355
constexpr bool isVOP2(const T &...O)
Definition SIDefines.h:233
constexpr bool isSWMMAC(const T &...O)
Definition SIDefines.h:382
constexpr bool isTRANS(const T &...O)
Definition SIDefines.h:258
constexpr bool isSOP2(const T &...O)
Definition SIDefines.h:218
constexpr bool isFLAT(const T &...O)
Definition SIDefines.h:286
constexpr bool isVOP3P(const T &...O)
Definition SIDefines.h:242
constexpr bool usesFPDPRounding(const T &...O)
Definition SIDefines.h:349
constexpr bool isDisableWQM(const T &...O)
Definition SIDefines.h:304
constexpr bool hasIntClamp(const T &...O)
Definition SIDefines.h:331
constexpr bool isAtomicNoRet(const T &...O)
Definition SIDefines.h:364
constexpr bool isMTBUF(const T &...O)
Definition SIDefines.h:264
constexpr bool isVIMAGE(const T &...O)
Definition SIDefines.h:277
constexpr bool isSMRD(const T &...O)
Definition SIDefines.h:271
constexpr bool isFlatScratch(const T &...O)
Definition SIDefines.h:361
constexpr bool isSpill(const T &...O)
Definition SIDefines.h:292
constexpr bool isMIMG(const T &...O)
Definition SIDefines.h:274
constexpr bool isVMEM(const T &...O)
Definition SIDefines.h:407
constexpr bool hasFPClamp(const T &...O)
Definition SIDefines.h:328
constexpr bool isNeverUniform(const T &...O)
Definition SIDefines.h:376
constexpr bool isImage(const T &...O)
Definition SIDefines.h:403
constexpr bool isWMMA(const T &...O)
Definition SIDefines.h:370
constexpr bool isVALU(const T &...O)
Definition SIDefines.h:212
constexpr bool isWQM(const T &...O)
Definition SIDefines.h:301
constexpr bool hasClampLo(const T &...O)
Definition SIDefines.h:334
constexpr bool isGWS(const T &...O)
Definition SIDefines.h:379
constexpr bool isFlatGlobal(const T &...O)
Definition SIDefines.h:346
constexpr bool usesASYNC_CNT(const T &...O)
Definition SIDefines.h:319
constexpr bool isMUBUF(const T &...O)
Definition SIDefines.h:261
constexpr bool isSDWA(const T &...O)
Definition SIDefines.h:252
constexpr bool isTiedSourceNotRead(const T &...O)
Definition SIDefines.h:373
constexpr bool isEXP(const T &...O)
Definition SIDefines.h:283
constexpr bool usesLGKM_CNT(const T &...O)
Definition SIDefines.h:391
constexpr bool isSOPK(const T &...O)
Definition SIDefines.h:224
constexpr bool isSOPC(const T &...O)
Definition SIDefines.h:221
constexpr bool isSOPP(const T &...O)
Definition SIDefines.h:227
constexpr bool isDOT(const T &...O)
Definition SIDefines.h:358
constexpr bool isVINTRP(const T &...O)
Definition SIDefines.h:249
constexpr bool isVINTERP(const T &...O)
Definition SIDefines.h:298
constexpr bool isVSAMPLE(const T &...O)
Definition SIDefines.h:280
constexpr bool isDS(const T &...O)
Definition SIDefines.h:289
constexpr bool isAtomic(const T &...O)
Definition SIDefines.h:396
constexpr bool isLDSDIR(const T &...O)
Definition SIDefines.h:295
constexpr bool isSALU(const T &...O)
Definition SIDefines.h:209
constexpr bool isGather4(const T &...O)
Definition SIDefines.h:307
constexpr bool isPacked(const T &...O)
Definition SIDefines.h:340
constexpr bool hasClampHi(const T &...O)
Definition SIDefines.h:337
constexpr bool isDPP(const T &...O)
Definition SIDefines.h:255
constexpr bool isSOP1(const T &...O)
Definition SIDefines.h:215
constexpr bool isSegmentSpecificFLAT(const T &...O)
Definition SIDefines.h:399
constexpr bool isFixedSize(const T &...O)
Definition SIDefines.h:316
Offsets
Offsets in bytes from the start of the input buffer.
This is an optimization pass for GlobalISel generic memory operations.
@ Offset
Definition DWP.cpp:578
TargetInstrInfo::RegSubRegPair getRegSubRegPair(const MachineOperand &O)
Create RegSubRegPair from a register MachineOperand.
bool execMayBeModifiedBeforeUse(const MachineRegisterInfo &MRI, Register VReg, const MachineInstr &DefMI, const MachineInstr &UseMI)
Return false if EXEC is not changed between the def of VReg at DefMI and the use at UseMI.
uint64_t getTSFlags(const MachineInstr &MI)
Op::Description Desc
TargetInstrInfo::RegSubRegPair getRegSequenceSubReg(MachineInstr &MI, unsigned SubReg)
Return the SubReg component from REG_SEQUENCE.
static const MachineMemOperand::Flags MONoClobber
Mark the MMO of a uniform load if there are no potentially clobbering stores on any path from the sta...
Definition SIInstrInfo.h:46
bool any_of(R &&range, UnaryPredicate P)
Provide wrappers to std::any_of which take ranges instead of having to pass begin/end explicitly.
Definition STLExtras.h:1746
MachineInstr * getVRegSubRegDef(const TargetInstrInfo::RegSubRegPair &P, const MachineRegisterInfo &MRI)
Return the defining instruction for a given reg:subreg pair skipping copy like instructions and subre...
decltype(auto) get(const PointerIntPair< PointerTy, IntBits, IntType, PtrTraits, Info > &Pair)
static const MachineMemOperand::Flags MOCooperative
Mark the MMO of cooperative load/store atomics.
Definition SIInstrInfo.h:54
DWARFExpression::Operation Op
constexpr unsigned DefaultMemoryClusterDWordsLimit
Definition SIInstrInfo.h:42
static const MachineMemOperand::Flags MOLastUse
Mark the MMO of a load as the last use.
Definition SIInstrInfo.h:50
bool isOfRegClass(const TargetInstrInfo::RegSubRegPair &P, const TargetRegisterClass &TRC, MachineRegisterInfo &MRI)
Returns true if a reg:subreg pair P has a TRC class.
ValueUniformity
Enum describing how values behave with respect to uniformity and divergence, to answer the question: ...
Definition Uniformity.h:18
static const MachineMemOperand::Flags MOThreadPrivate
Mark the MMO of accesses to memory locations that are never written to by other threads.
Definition SIInstrInfo.h:65
bool execMayBeModifiedBeforeAnyUse(const MachineRegisterInfo &MRI, Register VReg, const MachineInstr &DefMI)
Return false if EXEC is not changed between the def of VReg at DefMI and all its uses.
MCRegisterClass TargetRegisterClass
Definition FastISel.h:58
Helper struct for the implementation of 3-address conversion to communicate updates made to instructi...
This struct is a compact representation of a valid (non-zero power of two) alignment.
Definition Alignment.h:39
static constexpr LaneBitmask getAll()
Definition LaneBitmask.h:82
Utility to store machine instructions worklist.
Definition SIInstrInfo.h:69
MachineInstr * top() const
Definition SIInstrInfo.h:74
bool isDeferred(MachineInstr *MI)
SetVector< MachineInstr * > & getDeferredList()
Definition SIInstrInfo.h:92
void insert(MachineInstr *MI)
A pair composed of a register and a sub-register index.
SmallVector< MachineOperand * > MOs
Definition SIInstrInfo.h:59
SmallVector< Register > SGPRs
Definition SIInstrInfo.h:61