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GCNSubtarget.h
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1//=====-- GCNSubtarget.h - Define GCN Subtarget for AMDGPU ------*- 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/// AMD GCN specific subclass of TargetSubtarget.
11//
12//===----------------------------------------------------------------------===//
13
14#ifndef LLVM_LIB_TARGET_AMDGPU_GCNSUBTARGET_H
15#define LLVM_LIB_TARGET_AMDGPU_GCNSUBTARGET_H
16
17#include "AMDGPUCallLowering.h"
19#include "AMDGPUSubtarget.h"
20#include "SIFrameLowering.h"
21#include "SIISelLowering.h"
22#include "SIInstrInfo.h"
26#include <optional>
27
28#define GET_SUBTARGETINFO_HEADER
29#include "AMDGPUGenSubtargetInfo.inc"
30
31namespace llvm {
32
33class GCNTargetMachine;
34
35/// Module flag names controlling out-of-bounds buffer access semantics.
36/// Each flag is an i32 with Module::Max merge behaviour and tri-state values:
37/// 0 = any (absent/default - backend currently treats as strict)
38/// 1 = relaxed
39/// 2 = strict
40namespace AMDGPUOOBMode {
41inline constexpr StringLiteral BufferFlag("amdgpu.buffer.oob.mode");
42inline constexpr StringLiteral TBufferFlag("amdgpu.tbuffer.oob.mode");
43} // namespace AMDGPUOOBMode
44
46 public AMDGPUSubtarget {
47public:
49
50 // Following 2 enums are documented at:
51 // - https://llvm.org/docs/AMDGPUUsage.html#trap-handler-abi
52 enum class TrapHandlerAbi {
53 NONE = 0x00,
54 AMDHSA = 0x01,
55 };
56
57 enum class TrapID {
60 };
61
62private:
63 /// SelectionDAGISel related APIs.
64 std::unique_ptr<const SelectionDAGTargetInfo> TSInfo;
65
66 /// GlobalISel related APIs.
67 std::unique_ptr<AMDGPUCallLowering> CallLoweringInfo;
68 std::unique_ptr<InlineAsmLowering> InlineAsmLoweringInfo;
69 std::unique_ptr<InstructionSelector> InstSelector;
70 std::unique_ptr<LegalizerInfo> Legalizer;
71 std::unique_ptr<AMDGPURegisterBankInfo> RegBankInfo;
72
73protected:
74 // Basic subtarget description.
76 unsigned Gen = INVALID;
78 int LDSBankCount = 0;
80
81 // Instruction cache line size in bytes; set from TableGen subtarget features.
82 unsigned InstCacheLineSize = 0;
83
84 // Data (VMEM) cache line size in bytes; set from TableGen subtarget features.
85 unsigned DataCacheLineSize = 0;
86
87 /// The width, in bits, of the num_records field of a buffer resource (V#),
88 /// set from tablegen subtarget features, 0 is unknown.
90
91 // Dynamically set bits that enable features.
92 bool ScalarizeGlobal = false;
93 const bool BufferOOBRelaxed;
95
96 /// The maximum number of instructions that may be placed within an S_CLAUSE,
97 /// which is one greater than the maximum argument to S_CLAUSE. A value of 0
98 /// indicates a lack of S_CLAUSE support.
99 unsigned MaxHardClauseLength = 0;
100
101#define GET_SUBTARGETINFO_MACRO(ATTRIBUTE, DEFAULT, GETTER) \
102 bool ATTRIBUTE = DEFAULT;
103#include "AMDGPUGenSubtargetInfo.inc"
104
105private:
106 SIInstrInfo InstrInfo;
107 SITargetLowering TLInfo;
108 SIFrameLowering FrameLowering;
109
110 /// Get the register that represents the actual dependency between the
111 /// definition and the use. The definition might only affect a subregister
112 /// that is not actually used. Works for both virtual and physical registers.
113 /// Note: Currently supports VOP3P instructions (without WMMA an SWMMAC).
114 /// Returns the definition register if there is a real dependency and no
115 /// better match is found.
116 Register getRealSchedDependency(const MachineInstr &DefI, int DefOpIdx,
117 const MachineInstr &UseI, int UseOpIdx) const;
118
119public:
121 const Triple &TT, StringRef GPU, StringRef FS, const GCNTargetMachine &TM,
122 bool BufferOOBRelaxed = false, bool TBufferOOBRelaxed = false,
123 AMDGPU::TargetIDSetting XnackSetting = AMDGPU::TargetIDSetting::Any,
124 AMDGPU::TargetIDSetting SramEccSetting = AMDGPU::TargetIDSetting::Any);
125 ~GCNSubtarget() override;
126
128 StringRef FS);
129
130 /// Diagnose inconsistent subtarget features before attempting to codegen
131 /// function \p F.
132 void checkSubtargetFeatures(const Function &F) const;
133
134 const SIInstrInfo *getInstrInfo() const override { return &InstrInfo; }
135
136 const SIFrameLowering *getFrameLowering() const override {
137 return &FrameLowering;
138 }
139
140 const SITargetLowering *getTargetLowering() const override { return &TLInfo; }
141
142 const SIRegisterInfo *getRegisterInfo() const override {
143 return &InstrInfo.getRegisterInfo();
144 }
145
146 const SelectionDAGTargetInfo *getSelectionDAGInfo() const override;
147
148 const CallLowering *getCallLowering() const override {
149 return CallLoweringInfo.get();
150 }
151
152 const InlineAsmLowering *getInlineAsmLowering() const override {
153 return InlineAsmLoweringInfo.get();
154 }
155
157 return InstSelector.get();
158 }
159
160 const LegalizerInfo *getLegalizerInfo() const override {
161 return Legalizer.get();
162 }
163
164 const AMDGPURegisterBankInfo *getRegBankInfo() const override {
165 return RegBankInfo.get();
166 }
167
168 const AMDGPU::TargetID &getTargetID() const { return TargetID; }
169
171 return &InstrItins;
172 }
173
175
177
178 bool isGFX11Plus() const { return getGeneration() >= GFX11; }
179
180#define GET_SUBTARGETINFO_MACRO(ATTRIBUTE, DEFAULT, GETTER) \
181 bool GETTER() const override { return ATTRIBUTE; }
182#include "AMDGPUGenSubtargetInfo.inc"
183
184 unsigned getMaxWaveScratchSize() const {
185 // See COMPUTE_TMPRING_SIZE.WAVESIZE.
186 if (getGeneration() >= GFX12) {
187 // 18-bit field in units of 64-dword.
188 return (64 * 4) * ((1 << 18) - 1);
189 }
190 if (getGeneration() == GFX11) {
191 // 15-bit field in units of 64-dword.
192 return (64 * 4) * ((1 << 15) - 1);
193 }
194 // 13-bit field in units of 256-dword.
195 return (256 * 4) * ((1 << 13) - 1);
196 }
197
198 /// Return the number of high bits known to be zero for a frame index.
202
203 int getLDSBankCount() const { return LDSBankCount; }
204
205 /// Instruction cache line size in bytes (64 for pre-GFX11, 128 for GFX11+).
206 unsigned getInstCacheLineSize() const { return InstCacheLineSize; }
207
208 /// Data (VMEM) cache line size in bytes (128 for gfx12), has no use before
209 /// GFX12.
210 unsigned getDataCacheLineSize() const { return DataCacheLineSize; }
211
212 unsigned getMaxPrivateElementSize(bool ForBufferRSrc = false) const {
213 return (ForBufferRSrc || !hasFlatScratchEnabled()) ? MaxPrivateElementSize
214 : 16;
215 }
216
217 unsigned getConstantBusLimit(unsigned Opcode) const;
218
219 /// Returns if the result of this instruction with a 16-bit result returned in
220 /// a 32-bit register implicitly zeroes the high 16-bits, rather than preserve
221 /// the original value.
222 bool zeroesHigh16BitsOfDest(unsigned Opcode) const;
223
224 bool hasHWFP64() const { return HasFP64; }
225
226 bool hasAddr64() const {
228 }
229
230 bool hasFlat() const {
232 }
233
234 // Return true if the target only has the reverse operand versions of VALU
235 // shift instructions (e.g. v_lshrrev_b32, and no v_lshr_b32).
236 bool hasOnlyRevVALUShifts() const {
238 }
239
240 bool hasFractBug() const { return getGeneration() == SOUTHERN_ISLANDS; }
241
242 bool hasMed3_16() const { return getGeneration() >= AMDGPUSubtarget::GFX9; }
243
244 bool hasMin3Max3_16() const {
246 }
247
248 bool hasSwap() const { return HasGFX9Insts; }
249
250 bool hasScalarPackInsts() const { return HasGFX9Insts; }
251
252 bool hasScalarMulHiInsts() const { return HasGFX9Insts; }
253
254 bool hasScalarSubwordLoads() const { return getGeneration() >= GFX12; }
255
256 bool hasAsyncMark() const { return hasVMemToLDSLoad() || HasAsynccnt; }
257
261
263 // The S_GETREG DOORBELL_ID is supported by all GFX9 onward targets.
264 return getGeneration() >= GFX9;
265 }
266
267 /// True if the offset field of DS instructions works as expected. On SI, the
268 /// offset uses a 16-bit adder and does not always wrap properly.
269 bool hasUsableDSOffset() const { return getGeneration() >= SEA_ISLANDS; }
270
272 return EnableUnsafeDSOffsetFolding;
273 }
274
275 /// Condition output from div_scale is usable.
279
280 /// Extra wait hazard is needed in some cases before
281 /// s_cbranch_vccnz/s_cbranch_vccz.
282 bool hasReadVCCZBug() const { return getGeneration() <= SEA_ISLANDS; }
283
284 /// Writes to VCC_LO/VCC_HI update the VCCZ flag.
285 bool partialVCCWritesUpdateVCCZ() const { return getGeneration() >= GFX10; }
286
287 /// A read of an SGPR by SMRD instruction requires 4 wait states when the SGPR
288 /// was written by a VALU instruction.
291 }
292
293 /// A read of an SGPR by a VMEM instruction requires 5 wait states when the
294 /// SGPR was written by a VALU Instruction.
297 }
298
299 bool hasRFEHazards() const { return getGeneration() >= VOLCANIC_ISLANDS; }
300
301 /// Number of hazard wait states for s_setreg_b32/s_setreg_imm32_b32.
302 unsigned getSetRegWaitStates() const {
303 return getGeneration() <= SEA_ISLANDS ? 1 : 2;
304 }
305
306 /// Return the amount of LDS that can be used that will not restrict the
307 /// occupancy lower than WaveCount.
308 unsigned getMaxLocalMemSizeWithWaveCount(unsigned WaveCount,
309 const Function &) const;
310
313 }
314
315 /// \returns If target supports S_DENORM_MODE.
316 bool hasDenormModeInst() const {
318 }
319
320 /// \returns If target supports ds_read/write_b128 and user enables generation
321 /// of ds_read/write_b128.
322 bool useDS128() const { return HasCIInsts && EnableDS128; }
323
324 /// \return If target supports ds_read/write_b96/128.
325 bool hasDS96AndDS128() const { return HasCIInsts; }
326
327 /// Have v_trunc_f64, v_ceil_f64, v_rndne_f64
328 bool haveRoundOpsF64() const { return HasCIInsts; }
329
330 /// \returns If MUBUF instructions always perform range checking, even for
331 /// buffer resources used for private memory access.
335
336 /// \returns If target requires PRT Struct NULL support (zero result registers
337 /// for sparse texture support).
338 bool usePRTStrictNull() const { return EnablePRTStrictNull; }
339
341 return HasUnalignedBufferAccess && HasUnalignedAccessMode;
342 }
343
345 return HasUnalignedDSAccess && HasUnalignedAccessMode;
346 }
347
349 return HasUnalignedScratchAccess && HasUnalignedAccessMode;
350 }
351
352 bool isXNACKEnabled() const {
353 return enableXNACK() || TargetID.isXnackOnOrAny();
354 }
355
358
359 /// Return the width, in bits, of the num_records field of a buffer resource
360 /// (V#) on this subtarget, or std::nullopt if not yet known.
361 std::optional<unsigned> getBufferResourceNumRecordsWidth() const {
363 return std::nullopt;
365 }
366
367 bool isCuModeEnabled() const { return EnableCuMode; }
368
369 bool isPreciseMemoryEnabled() const { return EnablePreciseMemory; }
370
371 bool hasFlatScrRegister() const { return hasFlatAddressSpace(); }
372
373 // Check if target supports ST addressing mode with FLAT scratch instructions.
374 // The ST addressing mode means no registers are used, either VGPR or SGPR,
375 // but only immediate offset is swizzled and added to the FLAT scratch base.
376 bool hasFlatScratchSTMode() const {
377 return hasFlatScratchInsts() && (hasGFX10_3Insts() || hasGFX940Insts());
378 }
379
380 bool hasFlatScratchSVSMode() const { return HasGFX940Insts || HasGFX11Insts; }
381
383 return hasArchitectedFlatScratch() ||
384 (EnableFlatScratch && hasFlatScratchInsts());
385 }
386
387 bool hasGlobalAddTidInsts() const { return HasGFX10_BEncoding; }
388
389 bool hasAtomicCSub() const { return HasGFX10_BEncoding; }
390
391 bool hasExportInsts() const {
392 return !hasGFX940Insts() && !hasGFX1250Insts();
393 }
394
395 bool hasVINTERPEncoding() const {
396 return HasGFX11Insts && !hasGFX1250Insts();
397 }
398
400 return getGeneration() >= GFX9;
401 }
402
403 bool hasFlatLgkmVMemCountInOrder() const { return getGeneration() > GFX9; }
404
405 bool hasD16LoadStore() const { return getGeneration() >= GFX9; }
406
408 return hasD16LoadStore() && !TargetID.isSramEccOnOrAny();
409 }
410
411 bool hasD16Images() const { return getGeneration() >= VOLCANIC_ISLANDS; }
412
413 /// Return if most LDS instructions have an m0 use that require m0 to be
414 /// initialized.
415 bool ldsRequiresM0Init() const { return getGeneration() < GFX9; }
416
417 // True if the hardware rewinds and replays GWS operations if a wave is
418 // preempted.
419 //
420 // If this is false, a GWS operation requires testing if a nack set the
421 // MEM_VIOL bit, and repeating if so.
422 bool hasGWSAutoReplay() const { return getGeneration() >= GFX9; }
423
424 /// \returns if target has ds_gws_sema_release_all instruction.
425 bool hasGWSSemaReleaseAll() const { return HasCIInsts; }
426
427 bool hasScalarAddSub64() const { return getGeneration() >= GFX12; }
428
429 bool hasScalarSMulU64() const { return getGeneration() >= GFX12; }
430
431 // Covers VS/PS/CS graphics shaders
432 bool isMesaGfxShader(const Function &F) const {
433 return isMesa3DOS() && AMDGPU::isShader(F.getCallingConv());
434 }
435
436 bool hasMad64_32() const { return getGeneration() >= SEA_ISLANDS; }
437
438 bool hasAtomicFaddInsts() const {
439 return HasAtomicFaddRtnInsts || HasAtomicFaddNoRtnInsts;
440 }
441
443 return getGeneration() < SEA_ISLANDS;
444 }
445
446 bool hasInstPrefetch() const {
447 return getGeneration() == GFX10 || getGeneration() == GFX11;
448 }
449
450 bool hasPrefetch() const { return HasGFX12Insts; }
451
452 bool hasInstPrefSize() const { return isGFX11Plus(); }
453
454 void getInstPrefSizeArgs(uint32_t &Mask, uint32_t &Shift, uint32_t &Width,
455 uint32_t &CacheLineSize) const {
458 if (getGeneration() == GFX11) {
459 Mask = amdhsa::COMPUTE_PGM_RSRC3_GFX11_INST_PREF_SIZE;
460 Shift = amdhsa::COMPUTE_PGM_RSRC3_GFX11_INST_PREF_SIZE_SHIFT;
461 Width = amdhsa::COMPUTE_PGM_RSRC3_GFX11_INST_PREF_SIZE_WIDTH;
462 } else {
463 Mask = amdhsa::COMPUTE_PGM_RSRC3_GFX12_PLUS_INST_PREF_SIZE;
464 Shift = amdhsa::COMPUTE_PGM_RSRC3_GFX12_PLUS_INST_PREF_SIZE_SHIFT;
465 Width = amdhsa::COMPUTE_PGM_RSRC3_GFX12_PLUS_INST_PREF_SIZE_WIDTH;
466 }
467 }
468
469 // Has s_cmpk_* instructions.
470 bool hasSCmpK() const { return getGeneration() < GFX12; }
471
472 // Scratch is allocated in 256 dword per wave blocks for the entire
473 // wavefront. When viewed from the perspective of an arbitrary workitem, this
474 // is 4-byte aligned.
475 //
476 // Only 4-byte alignment is really needed to access anything. Transformations
477 // on the pointer value itself may rely on the alignment / known low bits of
478 // the pointer. Set this to something above the minimum to avoid needing
479 // dynamic realignment in common cases.
480 Align getStackAlignment() const { return Align(16); }
481
482 bool enableMachineScheduler() const override { return true; }
483
484 bool useAA() const override;
485
486 bool enableSubRegLiveness() const override { return true; }
487
490
491 // static wrappers
492 static bool hasHalfRate64Ops(const TargetSubtargetInfo &STI);
493
494 // XXX - Why is this here if it isn't in the default pass set?
495 bool enableEarlyIfConversion() const override { return true; }
496
498 const SchedRegion &Region) const override;
499
501 const SchedRegion &Region) const override;
502
503 void overridePipelinerPolicy(MachinePipelinerPolicy &Policy) const override;
504
505 void mirFileLoaded(MachineFunction &MF) const override;
506
507 unsigned getMaxNumUserSGPRs() const {
508 return AMDGPU::getMaxNumUserSGPRs(*this);
509 }
510
511 bool useVGPRIndexMode() const;
512
513 bool hasScalarCompareEq64() const {
515 }
516
517 bool hasLDSFPAtomicAddF32() const { return HasGFX8Insts; }
518 bool hasLDSFPAtomicAddF64() const {
519 return HasGFX90AInsts || HasGFX1250Insts;
520 }
521
522 /// \returns true if the subtarget has the v_permlane64_b32 instruction.
523 bool hasPermLane64() const { return getGeneration() >= GFX11; }
524
525 /// \returns true if the subtarget supports the ds_swizzle rotate and FFT
526 /// swizzle modes (GFX9+).
527 bool hasDsSwizzleRotateMode() const { return getGeneration() >= GFX9; }
528
529 bool hasDPPRowShare() const {
530 return HasDPP && (HasGFX90AInsts || getGeneration() >= GFX10);
531 }
532
533 // Has V_PK_MOV_B32 opcode
534 bool hasPkMovB32() const { return HasGFX90AInsts; }
535
537 return getGeneration() >= GFX10 || hasGFX940Insts();
538 }
539
540 bool hasFmaakFmamkF64Insts() const { return hasGFX1250Insts(); }
541
542 bool hasNonNSAEncoding() const { return getGeneration() < GFX12; }
543
544 unsigned getNSAMaxSize(bool HasSampler = false) const {
545 return AMDGPU::getNSAMaxSize(*this, HasSampler);
546 }
547
548 bool hasMadF16() const;
549
550 // Scalar and global loads support scale_offset bit.
551 bool hasScaleOffset() const { return HasGFX1250Insts; }
552
553 // FLAT GLOBAL VOffset is signed
554 bool hasSignedGVSOffset() const { return HasGFX1250Insts; }
555
557
559 return HasUserSGPRInit16Bug && isWave32();
560 }
561
565
566 // \returns true if the subtarget supports DWORDX3 load/store instructions.
567 bool hasDwordx3LoadStores() const { return HasCIInsts; }
568
572
577
580 }
581
584 }
585
587 return HasLDSMisalignedBug && !EnableCuMode;
588 }
589
590 // Shift amount of a 64 bit shift cannot be a highest allocated register
591 // if also at the end of the allocation block.
592 bool hasShift64HighRegBug() const { return HasGFX90AInsts; }
593
594 // v_dot2c_f32_f16 unconditionally flushes f16 subnormal inputs to zero
595 // regardless of the MODE register, unlike v_fma_mix_f32 which respects it.
597 return HasGFX90AInsts && !HasGFX940Insts;
598 }
599
600 // Has one cycle hazard on transcendental instruction feeding a
601 // non transcendental VALU.
602 bool hasTransForwardingHazard() const { return HasGFX940Insts; }
603
604 // Has one cycle hazard on a VALU instruction partially writing dst with
605 // a shift of result bits feeding another VALU instruction.
606 bool hasDstSelForwardingHazard() const { return HasGFX940Insts; }
607
608 // Cannot use op_sel with v_dot instructions.
609 bool hasDOTOpSelHazard() const { return HasGFX940Insts || HasGFX11Insts; }
610
611 // Does not have HW interlocs for VALU writing and then reading SGPRs.
612 bool hasVDecCoExecHazard() const { return HasGFX940Insts; }
613
614 bool hasHardClauses() const { return MaxHardClauseLength > 0; }
615
617 return getGeneration() == GFX10;
618 }
619
620 bool hasVOP3DPP() const { return getGeneration() >= GFX11; }
621
622 bool hasLdsDirect() const { return getGeneration() >= GFX11; }
623
624 bool hasLdsWaitVMSRC() const { return getGeneration() >= GFX12; }
625
627 return getGeneration() == GFX11;
628 }
629
630 bool hasCvtScaleForwardingHazard() const { return HasGFX950Insts; }
631
632 // All GFX9 targets experience a fetch delay when an instruction at the start
633 // of a loop header is split by a 32-byte fetch window boundary, but GFX950
634 // is uniquely sensitive to this: the delay triggers further performance
635 // degradation beyond the fetch latency itself.
636 bool hasLoopHeadInstSplitSensitivity() const { return HasGFX950Insts; }
637
638 bool requiresCodeObjectV6() const { return RequiresCOV6; }
639
640 bool useVGPRBlockOpsForCSR() const { return UseBlockVGPROpsForCSR; }
641
642 bool hasVALUMaskWriteHazard() const { return getGeneration() == GFX11; }
643
645 return HasGFX12Insts && !HasGFX1250Insts;
646 }
647
648 bool setRegModeNeedsVNOPs() const {
649 return HasGFX1250Insts && getGeneration() == GFX12;
650 }
651
652 /// Return if operations acting on VGPR tuples require even alignment.
653 bool needsAlignedVGPRs() const { return RequiresAlignVGPR; }
654
655 /// Return true if the target has the S_PACK_HL_B32_B16 instruction.
656 bool hasSPackHL() const { return HasGFX11Insts; }
657
658 /// Return true if the target has the V_CVT_PK_I16_F32/V_CVT_PK_U16_F32
659 /// instructions.
660 bool hasVCvtPkIU16F32() const { return HasGFX11Insts; }
661
662 /// Return true if the target's EXP instruction supports the NULL export
663 /// target.
664 bool hasNullExportTarget() const { return !HasGFX11Insts; }
665
666 bool hasFlatScratchSVSSwizzleBug() const { return getGeneration() == GFX11; }
667
668 /// Return true if the target has the S_DELAY_ALU instruction.
669 bool hasDelayAlu() const { return HasGFX11Insts; }
670
671 /// Returns true if the target supports
672 /// global_load_lds_dwordx3/global_load_lds_dwordx4 or
673 /// buffer_load_dwordx3/buffer_load_dwordx4 with the lds bit.
674 bool hasLDSLoadB96_B128() const { return hasGFX950Insts(); }
675
676 /// \returns true if the target uses LOADcnt/SAMPLEcnt/BVHcnt, DScnt/KMcnt
677 /// and STOREcnt rather than VMcnt, LGKMcnt and VScnt respectively.
678 bool hasExtendedWaitCounts() const { return getGeneration() >= GFX12; }
679
680 /// \returns true if the target has packed f32 instructions that only read 32
681 /// bits from a scalar operand (SGPR or literal) and replicates the bits to
682 /// both channels.
684 return getGeneration() == GFX12 && HasGFX1250Insts;
685 }
686
687 bool hasAddPC64Inst() const { return HasGFX1250Insts; }
688
689 /// \returns true if the target supports expert scheduling mode 2 which relies
690 /// on the compiler to insert waits to avoid hazards between VMEM and VALU
691 /// instructions in some instances.
692 bool hasExpertSchedulingMode() const { return getGeneration() >= GFX12; }
693
694 /// \returns The maximum number of instructions that can be enclosed in an
695 /// S_CLAUSE on the given subtarget, or 0 for targets that do not support that
696 /// instruction.
697 unsigned maxHardClauseLength() const { return MaxHardClauseLength; }
698
699 /// Return the maximum number of waves per SIMD for kernels using \p SGPRs
700 /// SGPRs
701 unsigned getOccupancyWithNumSGPRs(unsigned SGPRs) const;
702
703 /// Return the maximum number of waves per SIMD for kernels using \p VGPRs
704 /// VGPRs
705 unsigned getOccupancyWithNumVGPRs(unsigned VGPRs,
706 unsigned DynamicVGPRBlockSize) const;
707
708 /// Subtarget's minimum/maximum occupancy, in number of waves per EU, that can
709 /// be achieved when the only function running on a CU is \p F, each workgroup
710 /// uses \p LDSSize bytes of LDS, and each wave uses \p NumSGPRs SGPRs and \p
711 /// NumVGPRs VGPRs. The flat workgroup sizes associated to the function are a
712 /// range, so this returns a range as well.
713 ///
714 /// Note that occupancy can be affected by the scratch allocation as well, but
715 /// we do not have enough information to compute it.
716 std::pair<unsigned, unsigned> computeOccupancy(const Function &F,
717 unsigned LDSSize = 0,
718 unsigned NumSGPRs = 0,
719 unsigned NumVGPRs = 0) const;
720
721 /// \returns true if the flat_scratch register should be initialized with the
722 /// pointer to the wave's scratch memory rather than a size and offset.
723 bool flatScratchIsPointer() const {
725 }
726
727 /// \returns true if the machine has merged shaders in which s0-s7 are
728 /// reserved by the hardware and user SGPRs start at s8
729 bool hasMergedShaders() const { return getGeneration() >= GFX9; }
730
731 // \returns true if the target supports the pre-NGG legacy geometry path.
732 bool hasLegacyGeometry() const { return getGeneration() < GFX11; }
733
734 // \returns true if the target has split barriers feature
735 bool hasSplitBarriers() const { return getGeneration() >= GFX12; }
736
737 // \returns true if the target has WG_RR_MODE kernel descriptor mode bit
738 bool hasRrWGMode() const { return getGeneration() >= GFX12; }
739
740 /// \returns true if VADDR and SADDR fields in VSCRATCH can use negative
741 /// values.
742 bool hasSignedScratchOffsets() const { return getGeneration() >= GFX12; }
743
744 bool hasINVWBL2WaitCntRequirement() const { return HasGFX1250Insts; }
745
746 bool hasVOPD3() const { return HasGFX1250Insts; }
747
748 // \returns true if the target has V_PK_{MIN|MAX}3_{I|U}16 instructions.
749 bool hasPkMinMax3Insts() const { return HasGFX1250Insts; }
750
751 // \returns ture if target has S_GET_SHADER_CYCLES_U64 instruction.
752 bool hasSGetShaderCyclesInst() const { return HasGFX1250Insts; }
753
754 // \returns true if S_GETPC_B64 zero-extends the result from 48 bits instead
755 // of sign-extending. Note that GFX1250 has not only fixed the bug but also
756 // extended VA to 57 bits.
758 return HasGFX12Insts && !HasGFX1250Insts;
759 }
760
761 // \returns true if the target needs to create a prolog for backward
762 // compatibility when preloading kernel arguments.
764 return hasKernargPreload() && !HasGFX1250Insts;
765 }
766
767 bool hasCondSubInsts() const { return HasGFX12Insts; }
768
769 bool hasSubClampInsts() const { return hasGFX10_3Insts(); }
770
771 bool hasAnyPackedFP32Ops() const {
772 return hasPackedFP32Ops() || hasPackedFP32SingleSGPROps();
773 };
774
775 bool hasAnyPackedFP64Ops() const { return hasPackedFP64SingleSGPROps(); };
776
777 bool hasAnyPackedU64Ops() const { return hasPackedU64SingleSGPROps(); };
778
779 /// \returns SGPR allocation granularity supported by the subtarget.
780 unsigned getSGPRAllocGranule() const {
781 return AMDGPU::getSGPRAllocGranule(getTargetID().getGPUKind());
782 }
783
784 /// \returns SGPR encoding granularity supported by the subtarget.
785 unsigned getSGPREncodingGranule() const {
787 }
788
789 /// \returns Total number of SGPRs supported by the subtarget.
790 unsigned getTotalNumSGPRs() const {
791 return AMDGPU::getTotalNumSGPRs(getTargetID().getGPUKind());
792 }
793
794 /// \returns Addressable number of SGPRs supported by the subtarget.
795 unsigned getAddressableNumSGPRs() const {
796 return AMDGPU::getAddressableNumSGPRs(getTargetID().getGPUKind());
797 }
798
799 /// \returns Minimum number of SGPRs that meets the given number of waves per
800 /// execution unit requirement supported by the subtarget.
801 unsigned getMinNumSGPRs(unsigned WavesPerEU) const {
802 return AMDGPU::IsaInfo::getMinNumSGPRs(*this, WavesPerEU);
803 }
804
805 /// \returns Maximum number of SGPRs that meets the given number of waves per
806 /// execution unit requirement supported by the subtarget.
807 unsigned getMaxNumSGPRs(unsigned WavesPerEU, bool Addressable) const {
808 return AMDGPU::IsaInfo::getMaxNumSGPRs(*this, WavesPerEU, Addressable);
809 }
810
811 /// \returns Reserved number of SGPRs. This is common
812 /// utility function called by MachineFunction and
813 /// Function variants of getReservedNumSGPRs.
814 unsigned getBaseReservedNumSGPRs(const bool HasFlatScratch) const;
815 /// \returns Reserved number of SGPRs for given machine function \p MF.
816 unsigned getReservedNumSGPRs(const MachineFunction &MF) const;
817
818 /// \returns Reserved number of SGPRs for given function \p F.
819 unsigned getReservedNumSGPRs(const Function &F) const;
820
821 /// \returns Maximum number of preloaded SGPRs for the subtarget.
822 unsigned getMaxNumPreloadedSGPRs() const;
823
824 /// \returns max num SGPRs. This is the common utility
825 /// function called by MachineFunction and Function
826 /// variants of getMaxNumSGPRs.
827 unsigned getBaseMaxNumSGPRs(const Function &F,
828 std::pair<unsigned, unsigned> WavesPerEU,
829 unsigned PreloadedSGPRs,
830 unsigned ReservedNumSGPRs) const;
831
832 /// \returns Maximum number of SGPRs that meets number of waves per execution
833 /// unit requirement for function \p MF, or number of SGPRs explicitly
834 /// requested using "amdgpu-num-sgpr" attribute attached to function \p MF.
835 ///
836 /// \returns Value that meets number of waves per execution unit requirement
837 /// if explicitly requested value cannot be converted to integer, violates
838 /// subtarget's specifications, or does not meet number of waves per execution
839 /// unit requirement.
840 unsigned getMaxNumSGPRs(const MachineFunction &MF) const;
841
842 /// \returns Maximum number of SGPRs that meets number of waves per execution
843 /// unit requirement for function \p F, or number of SGPRs explicitly
844 /// requested using "amdgpu-num-sgpr" attribute attached to function \p F.
845 ///
846 /// \returns Value that meets number of waves per execution unit requirement
847 /// if explicitly requested value cannot be converted to integer, violates
848 /// subtarget's specifications, or does not meet number of waves per execution
849 /// unit requirement.
850 unsigned getMaxNumSGPRs(const Function &F) const;
851
852 /// \returns VGPR allocation granularity supported by the subtarget.
853 unsigned getVGPRAllocGranule(unsigned DynamicVGPRBlockSize) const {
854 return AMDGPU::IsaInfo::getVGPRAllocGranule(*this, DynamicVGPRBlockSize);
855 }
856
857 /// \returns VGPR encoding granularity supported by the subtarget.
858 unsigned getVGPREncodingGranule() const {
860 }
861
862 /// \returns Total number of VGPRs supported by the subtarget.
863 unsigned getTotalNumVGPRs() const {
865 }
866
867 /// \returns Addressable number of architectural VGPRs supported by the
868 /// subtarget.
872
873 /// \returns Addressable number of VGPRs supported by the subtarget.
874 unsigned getAddressableNumVGPRs(unsigned DynamicVGPRBlockSize) const {
875 return AMDGPU::IsaInfo::getAddressableNumVGPRs(*this, DynamicVGPRBlockSize);
876 }
877
878 /// \returns the minimum number of VGPRs that will prevent achieving more than
879 /// the specified number of waves \p WavesPerEU.
880 unsigned getMinNumVGPRs(unsigned WavesPerEU,
881 unsigned DynamicVGPRBlockSize) const {
882 return AMDGPU::IsaInfo::getMinNumVGPRs(*this, WavesPerEU,
883 DynamicVGPRBlockSize);
884 }
885
886 /// \returns the maximum number of VGPRs that can be used and still achieved
887 /// at least the specified number of waves \p WavesPerEU.
888 unsigned getMaxNumVGPRs(unsigned WavesPerEU,
889 unsigned DynamicVGPRBlockSize) const {
890 return AMDGPU::IsaInfo::getMaxNumVGPRs(*this, WavesPerEU,
891 DynamicVGPRBlockSize);
892 }
893
894 /// \returns max num VGPRs. This is the common utility function
895 /// called by MachineFunction and Function variants of getMaxNumVGPRs.
896 unsigned
898 std::pair<unsigned, unsigned> NumVGPRBounds) const;
899
900 /// \returns Maximum number of VGPRs that meets number of waves per execution
901 /// unit requirement for function \p F, or number of VGPRs explicitly
902 /// requested using "amdgpu-num-vgpr" attribute attached to function \p F.
903 ///
904 /// \returns Value that meets number of waves per execution unit requirement
905 /// if explicitly requested value cannot be converted to integer, violates
906 /// subtarget's specifications, or does not meet number of waves per execution
907 /// unit requirement.
908 unsigned getMaxNumVGPRs(const Function &F) const;
909
910 unsigned getMaxNumAGPRs(const Function &F) const { return getMaxNumVGPRs(F); }
911
912 /// Return a pair of maximum numbers of VGPRs and AGPRs that meet the number
913 /// of waves per execution unit required for the function \p MF.
914 std::pair<unsigned, unsigned> getMaxNumVectorRegs(const Function &F) const;
915
916 /// \returns Maximum number of VGPRs that meets number of waves per execution
917 /// unit requirement for function \p MF, or number of VGPRs explicitly
918 /// requested using "amdgpu-num-vgpr" attribute attached to function \p MF.
919 ///
920 /// \returns Value that meets number of waves per execution unit requirement
921 /// if explicitly requested value cannot be converted to integer, violates
922 /// subtarget's specifications, or does not meet number of waves per execution
923 /// unit requirement.
924 unsigned getMaxNumVGPRs(const MachineFunction &MF) const;
925
926 bool isWave32() const { return getWavefrontSize() == 32; }
927
928 bool isWave64() const { return getWavefrontSize() == 64; }
929
930 /// Returns if the wavesize of this subtarget is known reliable. This is false
931 /// only for the a default target-cpu that does not have an explicit
932 /// +wavefrontsize target feature.
933 bool isWaveSizeKnown() const {
934 return hasFeature(AMDGPU::FeatureWavefrontSize32) ||
935 hasFeature(AMDGPU::FeatureWavefrontSize64);
936 }
937
939 return getRegisterInfo()->getBoolRC();
940 }
941
942 /// \returns Maximum number of work groups per compute unit supported by the
943 /// subtarget and limited by given \p FlatWorkGroupSize.
944 unsigned getMaxWorkGroupsPerCU(unsigned FlatWorkGroupSize) const override {
945 return AMDGPU::IsaInfo::getMaxWorkGroupsPerCU(*this, FlatWorkGroupSize);
946 }
947
948 /// \returns Minimum flat work group size supported by the subtarget.
949 unsigned getMinFlatWorkGroupSize() const override {
951 }
952
953 /// \returns Maximum flat work group size supported by the subtarget.
954 unsigned getMaxFlatWorkGroupSize() const override {
956 }
957
958 /// \returns Number of waves per execution unit required to support the given
959 /// \p FlatWorkGroupSize.
960 unsigned
961 getWavesPerEUForWorkGroup(unsigned FlatWorkGroupSize) const override {
962 return AMDGPU::IsaInfo::getWavesPerEUForWorkGroup(*this, FlatWorkGroupSize);
963 }
964
965 /// \returns Minimum number of waves per execution unit supported by the
966 /// subtarget.
967 unsigned getMinWavesPerEU() const override {
969 }
970
971 void adjustSchedDependency(SUnit *Def, int DefOpIdx, SUnit *Use, int UseOpIdx,
972 SDep &Dep,
973 const TargetSchedModel *SchedModel) const override;
974
975 // \returns true if it's beneficial on this subtarget for the scheduler to
976 // cluster stores as well as loads.
977 bool shouldClusterStores() const { return getGeneration() >= GFX11; }
978
979 // \returns the number of address arguments from which to enable MIMG NSA
980 // on supported architectures.
981 unsigned getNSAThreshold(const MachineFunction &MF) const;
982
983 // \returns true if the subtarget has a hazard requiring an "s_nop 0"
984 // instruction before "s_sendmsg sendmsg(MSG_DEALLOC_VGPRS)".
985 bool requiresNopBeforeDeallocVGPRs() const { return !HasGFX1250Insts; }
986
987 // \returns true if the subtarget needs S_WAIT_ALU 0 before S_GETREG_B32 on
988 // STATUS, STATE_PRIV, EXCP_FLAG_PRIV, or EXCP_FLAG_USER.
989 bool requiresWaitIdleBeforeGetReg() const { return HasGFX1250Insts; }
990
992 // AMDGPU doesn't care if early-clobber and undef operands are allocated
993 // to the same register.
994 return false;
995 }
996
997 // DS_ATOMIC_ASYNC_BARRIER_ARRIVE_B64 shall not be claused with anything
998 // and surronded by S_WAIT_ALU(0xFFE3).
1000 return getGeneration() == GFX12;
1001 }
1002
1003 // Requires s_wait_alu(0) after s102/s103 write and src_flat_scratch_base
1004 // read.
1006 return HasGFX1250Insts && getGeneration() == GFX12;
1007 }
1008
1009 // src_flat_scratch_hi cannot be used as a source in SALU producing a 64-bit
1010 // result.
1012 return HasGFX1250Insts && getGeneration() == GFX12;
1013 }
1014
1015 /// \returns true if the subtarget requires a wait for xcnt before VMEM
1016 /// accesses that must never be repeated in the event of a page fault/re-try.
1017 /// Atomic stores/rmw and all volatile accesses fall under this criteria.
1019 return HasGFX1250Insts;
1020 }
1021
1022 /// \returns the number of significant bits in the immediate field of the
1023 /// S_NOP instruction.
1024 unsigned getSNopBits() const {
1026 return 7;
1028 return 4;
1029 return 3;
1030 }
1031
1035
1037 return (getGeneration() <= AMDGPUSubtarget::GFX9 ||
1039 isWave32();
1040 }
1041
1042 /// Return true if real (non-fake) variants of True16 instructions using
1043 /// 16-bit registers should be code-generated. Fake True16 instructions are
1044 /// identical to non-fake ones except that they take 32-bit registers as
1045 /// operands and always use their low halves.
1046 // TODO: Remove and use hasTrue16BitInsts() instead once True16 is fully
1047 // supported and the support for fake True16 instructions is removed.
1048 bool useRealTrue16Insts() const {
1049 return hasTrue16BitInsts() && EnableRealTrue16Insts;
1050 }
1051
1052 bool requiresWaitOnWorkgroupReleaseFence(bool TgSplit) const {
1053 return getGeneration() >= GFX10 || TgSplit;
1054 }
1055
1056 bool useDFAforSMS() const override { return false; }
1057
1058 bool enableWindowScheduler() const override { return false; }
1059};
1060
1062public:
1063 bool hasImplicitBufferPtr() const { return ImplicitBufferPtr; }
1064
1065 bool hasPrivateSegmentBuffer() const { return PrivateSegmentBuffer; }
1066
1067 bool hasDispatchPtr() const { return DispatchPtr; }
1068
1069 bool hasQueuePtr() const { return QueuePtr; }
1070
1071 bool hasKernargSegmentPtr() const { return KernargSegmentPtr; }
1072
1073 bool hasDispatchID() const { return DispatchID; }
1074
1075 bool hasFlatScratchInit() const { return FlatScratchInit; }
1076
1077 bool hasPrivateSegmentSize() const { return PrivateSegmentSize; }
1078
1079 unsigned getNumKernargPreloadSGPRs() const { return NumKernargPreloadSGPRs; }
1080
1081 unsigned getNumUsedUserSGPRs() const { return NumUsedUserSGPRs; }
1082
1083 unsigned getNumFreeUserSGPRs();
1084
1085 void allocKernargPreloadSGPRs(unsigned NumSGPRs);
1086
1097
1098 // Returns the size in number of SGPRs for preload user SGPR field.
1100 switch (ID) {
1102 return 2;
1104 return 4;
1105 case DispatchPtrID:
1106 return 2;
1107 case QueuePtrID:
1108 return 2;
1110 return 2;
1111 case DispatchIdID:
1112 return 2;
1113 case FlatScratchInitID:
1114 return 2;
1116 return 1;
1117 }
1118 llvm_unreachable("Unknown UserSGPRID.");
1119 }
1120
1121 GCNUserSGPRUsageInfo(const Function &F, const GCNSubtarget &ST);
1122
1123private:
1124 const GCNSubtarget &ST;
1125
1126 // Private memory buffer
1127 // Compute directly in sgpr[0:1]
1128 // Other shaders indirect 64-bits at sgpr[0:1]
1129 bool ImplicitBufferPtr = false;
1130
1131 bool PrivateSegmentBuffer = false;
1132
1133 bool DispatchPtr = false;
1134
1135 bool QueuePtr = false;
1136
1137 bool KernargSegmentPtr = false;
1138
1139 bool DispatchID = false;
1140
1141 bool FlatScratchInit = false;
1142
1143 bool PrivateSegmentSize = false;
1144
1145 unsigned NumKernargPreloadSGPRs = 0;
1146
1147 unsigned NumUsedUserSGPRs = 0;
1148};
1149
1150} // end namespace llvm
1151
1152#endif // LLVM_LIB_TARGET_AMDGPU_GCNSUBTARGET_H
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
static cl::opt< bool > EnableLoadStoreOpt("aarch64-enable-ldst-opt", cl::desc("Enable the load/store pair" " optimization pass"), cl::init(true), cl::Hidden)
This file describes how to lower LLVM calls to machine code calls.
This file declares the targeting of the RegisterBankInfo class for AMDGPU.
Base class for AMDGPU specific classes of TargetSubtarget.
static cl::opt< bool > SramEccSetting("amdgpu-sramecc", cl::desc("Force amdgpu.sramecc for testing"), cl::ReallyHidden)
static cl::opt< bool > XnackSetting("amdgpu-xnack", cl::desc("Force amdgpu.xnack value for testing"), cl::ReallyHidden)
AMDHSA kernel descriptor definitions.
DXIL Legalizer
static bool hasFeature(StringRef Feature, const FeatureBitset &FeatureBits, ArrayRef< SubtargetFeatureKV > ProcFeatures)
#define F(x, y, z)
Definition MD5.cpp:54
Promote Memory to Register
Definition Mem2Reg.cpp:110
SI DAG Lowering interface definition.
Interface definition for SIInstrInfo.
static cl::opt< unsigned > CacheLineSize("cache-line-size", cl::init(0), cl::Hidden, cl::desc("Use this to override the target cache line size when " "specified by the user."))
unsigned getWavefrontSizeLog2() const
AMDGPUSubtarget(const Triple &TT)
unsigned getMaxWavesPerEU() const
unsigned getWavefrontSize() const
bool hasPrefetch() const
bool hasFlat() const
bool hasD16Images() const
InstrItineraryData InstrItins
bool useVGPRIndexMode() const
bool dot2UnconditionalFlush() const
bool partialVCCWritesUpdateVCCZ() const
Writes to VCC_LO/VCC_HI update the VCCZ flag.
bool hasSwap() const
bool hasPkMinMax3Insts() const
bool hasD16LoadStore() const
bool hasMergedShaders() const
bool hasRrWGMode() const
bool hasScalarCompareEq64() const
int getLDSBankCount() const
bool hasOnlyRevVALUShifts() const
bool hasNonNSAEncoding() const
bool hasUsableDivScaleConditionOutput() const
Condition output from div_scale is usable.
bool hasExpertSchedulingMode() const
void mirFileLoaded(MachineFunction &MF) const override
bool hasUsableDSOffset() const
True if the offset field of DS instructions works as expected.
bool loadStoreOptEnabled() const
bool enableSubRegLiveness() const override
unsigned getSGPRAllocGranule() const
bool hasFlatLgkmVMemCountInOrder() const
bool flatScratchIsPointer() const
bool hasShift64HighRegBug() const
unsigned MaxPrivateElementSize
bool unsafeDSOffsetFoldingEnabled() const
bool hasFPAtomicToDenormModeHazard() const
unsigned getAddressableNumArchVGPRs() const
bool vmemWriteNeedsExpWaitcnt() const
bool shouldClusterStores() const
unsigned getMinNumSGPRs(unsigned WavesPerEU) const
bool hasUserSGPRInit16BugInWave32() const
unsigned getSGPREncodingGranule() const
void ParseSubtargetFeatures(StringRef CPU, StringRef TuneCPU, StringRef FS)
void overridePipelinerPolicy(MachinePipelinerPolicy &Policy) const override
bool hasFlatScratchHiInB64InstHazard() const
bool hasDstSelForwardingHazard() const
void setScalarizeGlobalBehavior(bool b)
bool hasFlatScratchEnabled() const
bool hasRelaxedBufferOOBMode() const
unsigned DataCacheLineSize
unsigned getSNopBits() const
bool hasLDSLoadB96_B128() const
Returns true if the target supports global_load_lds_dwordx3/global_load_lds_dwordx4 or buffer_load_dw...
bool hasMultiDwordFlatScratchAddressing() const
bool hasFmaakFmamkF64Insts() const
bool hasDsSwizzleRotateMode() const
bool hasHWFP64() const
bool hasScaleOffset() const
bool hasAnyPackedFP64Ops() const
bool hasDenormModeInst() const
bool hasCvtScaleForwardingHazard() const
unsigned getTotalNumVGPRs() const
unsigned getMinWavesPerEU() const override
bool hasUnalignedDSAccessEnabled() const
const SIInstrInfo * getInstrInfo() const override
unsigned getMaxWorkGroupsPerCU(unsigned FlatWorkGroupSize) const override
unsigned getConstantBusLimit(unsigned Opcode) const
bool hasVALUMaskWriteHazard() const
bool hasCondSubInsts() const
const InlineAsmLowering * getInlineAsmLowering() const override
unsigned getTotalNumSGPRs() const
const InstrItineraryData * getInstrItineraryData() const override
void adjustSchedDependency(SUnit *Def, int DefOpIdx, SUnit *Use, int UseOpIdx, SDep &Dep, const TargetSchedModel *SchedModel) const override
void overridePostRASchedPolicy(MachineSchedPolicy &Policy, const SchedRegion &Region) const override
unsigned getMaxLocalMemSizeWithWaveCount(unsigned WaveCount, const Function &) const
Return the amount of LDS that can be used that will not restrict the occupancy lower than WaveCount.
bool hasPkMovB32() const
bool needsAlignedVGPRs() const
Return if operations acting on VGPR tuples require even alignment.
Align getStackAlignment() const
bool privateMemoryResourceIsRangeChecked() const
bool hasScalarSubwordLoads() const
const bool BufferOOBRelaxed
bool hasMadF16() const
bool hasDsAtomicAsyncBarrierArriveB64PipeBug() const
unsigned getInstCacheLineSize() const
Instruction cache line size in bytes (64 for pre-GFX11, 128 for GFX11+).
bool hasLoopHeadInstSplitSensitivity() const
bool hasDwordx3LoadStores() const
bool hasSignedScratchOffsets() const
bool hasGlobalAddTidInsts() const
bool hasFlatScrRegister() const
bool hasGetPCZeroExtension() const
bool hasPermLane64() const
bool requiresNopBeforeDeallocVGPRs() const
unsigned getMinNumVGPRs(unsigned WavesPerEU, unsigned DynamicVGPRBlockSize) const
bool supportsGetDoorbellID() const
unsigned getMaxNumAGPRs(const Function &F) const
bool hasReadM0MovRelInterpHazard() const
bool hasInstPrefSize() const
const SIRegisterInfo * getRegisterInfo() const override
bool hasDOTOpSelHazard() const
bool hasLdsWaitVMSRC() const
const TargetRegisterClass * getBoolRC() const
unsigned getBaseMaxNumVGPRs(const Function &F, std::pair< unsigned, unsigned > NumVGPRBounds) const
bool hasFmaakFmamkF32Insts() const
bool hasMad64_32() const
InstructionSelector * getInstructionSelector() const override
unsigned getVGPREncodingGranule() const
bool hasHardClauses() const
bool useDS128() const
bool hasExtendedWaitCounts() const
bool enableWindowScheduler() const override
bool d16PreservesUnusedBits() const
bool hasInstPrefetch() const
bool hasAddPC64Inst() const
unsigned maxHardClauseLength() const
bool hasAnyPackedFP32Ops() const
bool isMesaGfxShader(const Function &F) const
bool hasExportInsts() const
bool hasVINTERPEncoding() const
const AMDGPURegisterBankInfo * getRegBankInfo() const override
bool hasLegacyGeometry() const
TrapHandlerAbi getTrapHandlerAbi() const
bool isCuModeEnabled() const
const SIFrameLowering * getFrameLowering() const override
bool hasDPPRowShare() const
bool zeroesHigh16BitsOfDest(unsigned Opcode) const
Returns if the result of this instruction with a 16-bit result returned in a 32-bit register implicit...
unsigned getBaseMaxNumSGPRs(const Function &F, std::pair< unsigned, unsigned > WavesPerEU, unsigned PreloadedSGPRs, unsigned ReservedNumSGPRs) const
unsigned getMaxNumPreloadedSGPRs() const
GCNSubtarget & initializeSubtargetDependencies(const Triple &TT, StringRef GPU, StringRef FS)
bool has12DWordStoreHazard() const
bool hasVALUPartialForwardingHazard() const
void overrideSchedPolicy(MachineSchedPolicy &Policy, const SchedRegion &Region) const override
bool useVGPRBlockOpsForCSR() const
std::pair< unsigned, unsigned > computeOccupancy(const Function &F, unsigned LDSSize=0, unsigned NumSGPRs=0, unsigned NumVGPRs=0) const
Subtarget's minimum/maximum occupancy, in number of waves per EU, that can be achieved when the only ...
bool requiresWaitOnWorkgroupReleaseFence(bool TgSplit) const
bool needsKernArgPreloadProlog() const
bool hasMin3Max3_16() const
unsigned getMaxNumVGPRs(unsigned WavesPerEU, unsigned DynamicVGPRBlockSize) const
unsigned getVGPRAllocGranule(unsigned DynamicVGPRBlockSize) const
bool useDFAforSMS() const override
AMDGPU::TargetID TargetID
unsigned getSetRegWaitStates() const
Number of hazard wait states for s_setreg_b32/s_setreg_imm32_b32.
const SITargetLowering * getTargetLowering() const override
bool hasTransForwardingHazard() const
bool enableMachineScheduler() const override
bool hasLDSFPAtomicAddF64() const
unsigned getNSAThreshold(const MachineFunction &MF) const
bool getScalarizeGlobalBehavior() const
bool hasPKF32InstsReplicatingLower32BitsOfScalarInput() const
bool hasReadM0LdsDmaHazard() const
bool hasScalarSMulU64() const
const AMDGPU::TargetID & getTargetID() const
unsigned getKnownHighZeroBitsForFrameIndex() const
Return the number of high bits known to be zero for a frame index.
bool hasScratchBaseForwardingHazard() const
unsigned BufferResourceNumRecordsWidth
The width, in bits, of the num_records field of a buffer resource (V#), set from tablegen subtarget f...
GCNSubtarget(const Triple &TT, StringRef GPU, StringRef FS, const GCNTargetMachine &TM, bool BufferOOBRelaxed=false, bool TBufferOOBRelaxed=false, AMDGPU::TargetIDSetting XnackSetting=AMDGPU::TargetIDSetting::Any, AMDGPU::TargetIDSetting SramEccSetting=AMDGPU::TargetIDSetting::Any)
bool hasRelaxedTBufferOOBMode() const
bool hasScalarPackInsts() const
bool requiresDisjointEarlyClobberAndUndef() const override
bool hasVALUReadSGPRHazard() const
bool usePRTStrictNull() const
unsigned getAddressableNumVGPRs(unsigned DynamicVGPRBlockSize) const
bool supportsWaveWideBPermute() const
bool hasMed3_16() const
unsigned getReservedNumSGPRs(const MachineFunction &MF) const
bool hasUnalignedScratchAccessEnabled() const
bool hasNullExportTarget() const
Return true if the target's EXP instruction supports the NULL export target.
bool ldsRequiresM0Init() const
Return if most LDS instructions have an m0 use that require m0 to be initialized.
bool useRealTrue16Insts() const
Return true if real (non-fake) variants of True16 instructions using 16-bit registers should be code-...
const bool TBufferOOBRelaxed
bool useAA() const override
bool isWave32() const
bool isGFX11Plus() const
unsigned getOccupancyWithNumVGPRs(unsigned VGPRs, unsigned DynamicVGPRBlockSize) const
Return the maximum number of waves per SIMD for kernels using VGPRs VGPRs.
bool hasUnalignedBufferAccessEnabled() const
bool isWaveSizeKnown() const
Returns if the wavesize of this subtarget is known reliable.
unsigned getMaxPrivateElementSize(bool ForBufferRSrc=false) const
unsigned getMinFlatWorkGroupSize() const override
bool hasAsyncMark() const
bool hasSPackHL() const
Return true if the target has the S_PACK_HL_B32_B16 instruction.
bool supportsMinMaxDenormModes() const
bool supportsBPermute() const
bool hasFlatScratchSVSMode() const
unsigned InstCacheLineSize
std::optional< unsigned > getBufferResourceNumRecordsWidth() const
Return the width, in bits, of the num_records field of a buffer resource (V#) on this subtarget,...
bool hasAtomicFaddInsts() const
bool hasSubClampInsts() const
bool requiresWaitXCntForSingleAccessInstructions() const
unsigned getNSAMaxSize(bool HasSampler=false) const
unsigned getOccupancyWithNumSGPRs(unsigned SGPRs) const
Return the maximum number of waves per SIMD for kernels using SGPRs SGPRs.
bool hasVOP3DPP() const
void getInstPrefSizeArgs(uint32_t &Mask, uint32_t &Shift, uint32_t &Width, uint32_t &CacheLineSize) const
unsigned getMaxFlatWorkGroupSize() const override
unsigned getMaxNumUserSGPRs() const
unsigned MaxHardClauseLength
The maximum number of instructions that may be placed within an S_CLAUSE, which is one greater than t...
bool hasFlatScratchSVSSwizzleBug() const
bool hasVDecCoExecHazard() const
bool hasSignedGVSOffset() const
bool hasLDSFPAtomicAddF32() const
unsigned getWavesPerEUForWorkGroup(unsigned FlatWorkGroupSize) const override
bool haveRoundOpsF64() const
Have v_trunc_f64, v_ceil_f64, v_rndne_f64.
bool hasDelayAlu() const
Return true if the target has the S_DELAY_ALU instruction.
unsigned getDataCacheLineSize() const
Data (VMEM) cache line size in bytes (128 for gfx12), has no use before GFX12.
bool hasReadM0SendMsgHazard() const
bool hasScalarMulHiInsts() const
bool hasSCmpK() const
bool hasVCvtPkIU16F32() const
Return true if the target has the V_CVT_PK_I16_F32/V_CVT_PK_U16_F32 instructions.
const LegalizerInfo * getLegalizerInfo() const override
bool requiresWaitIdleBeforeGetReg() const
bool hasDS96AndDS128() const
bool hasReadM0LdsDirectHazard() const
static bool hasHalfRate64Ops(const TargetSubtargetInfo &STI)
Generation getGeneration() const
unsigned getMaxNumSGPRs(unsigned WavesPerEU, bool Addressable) const
std::pair< unsigned, unsigned > getMaxNumVectorRegs(const Function &F) const
Return a pair of maximum numbers of VGPRs and AGPRs that meet the number of waves per execution unit ...
bool isXNACKEnabled() const
bool hasScalarAddSub64() const
bool hasSplitBarriers() const
bool enableEarlyIfConversion() const override
bool hasSMRDReadVALUDefHazard() const
A read of an SGPR by SMRD instruction requires 4 wait states when the SGPR was written by a VALU inst...
bool hasSGetShaderCyclesInst() const
bool hasINVWBL2WaitCntRequirement() const
bool hasRFEHazards() const
bool hasVMEMReadSGPRVALUDefHazard() const
A read of an SGPR by a VMEM instruction requires 5 wait states when the SGPR was written by a VALU In...
bool hasFlatScratchSTMode() const
unsigned getBaseReservedNumSGPRs(const bool HasFlatScratch) const
bool hasGWSSemaReleaseAll() const
bool hasAddr64() const
unsigned getAddressableNumSGPRs() const
bool hasReadVCCZBug() const
Extra wait hazard is needed in some cases before s_cbranch_vccnz/s_cbranch_vccz.
bool isWave64() const
bool setRegModeNeedsVNOPs() const
bool hasFractBug() const
bool isPreciseMemoryEnabled() const
unsigned getMaxWaveScratchSize() const
bool hasLDSMisalignedBugInWGPMode() const
bool hasAnyPackedU64Ops() const
void checkSubtargetFeatures(const Function &F) const
Diagnose inconsistent subtarget features before attempting to codegen function F.
~GCNSubtarget() override
const SelectionDAGTargetInfo * getSelectionDAGInfo() const override
bool hasVOPD3() const
bool hasAtomicCSub() const
bool requiresCodeObjectV6() const
const CallLowering * getCallLowering() const override
bool hasLdsDirect() const
bool hasGWSAutoReplay() const
static unsigned getNumUserSGPRForField(UserSGPRID ID)
void allocKernargPreloadSGPRs(unsigned NumSGPRs)
bool hasPrivateSegmentBuffer() const
unsigned getNumKernargPreloadSGPRs() const
unsigned getNumUsedUserSGPRs() const
GCNUserSGPRUsageInfo(const Function &F, const GCNSubtarget &ST)
Itinerary data supplied by a subtarget to be used by a target.
Scheduling dependency.
Definition ScheduleDAG.h:52
const TargetRegisterClass * getBoolRC() const
Scheduling unit. This is a node in the scheduling DAG.
Targets can subclass this to parameterize the SelectionDAG lowering and instruction selection process...
A wrapper around a string literal that serves as a proxy for constructing global tables of StringRefs...
Definition StringRef.h:888
Represent a constant reference to a string, i.e.
Definition StringRef.h:56
Provide an instruction scheduling machine model to CodeGen passes.
TargetSubtargetInfo - Generic base class for all target subtargets.
Triple - Helper class for working with autoconf configuration names.
Definition Triple.h:48
A Use represents the edge between a Value definition and its users.
Definition Use.h:35
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
Module flag names controlling out-of-bounds buffer access semantics.
constexpr StringLiteral BufferFlag("amdgpu.buffer.oob.mode")
constexpr StringLiteral TBufferFlag("amdgpu.tbuffer.oob.mode")
unsigned getAddressableNumArchVGPRs(const MCSubtargetInfo &STI)
unsigned getMinFlatWorkGroupSize(const MCSubtargetInfo &STI)
unsigned getVGPREncodingGranule(const MCSubtargetInfo &STI, std::optional< bool > EnableWavefrontSize32)
unsigned getMaxWorkGroupsPerCU(const MCSubtargetInfo &STI, unsigned FlatWorkGroupSize)
unsigned getMinNumSGPRs(const MCSubtargetInfo &STI, unsigned WavesPerEU)
unsigned getMaxNumSGPRs(const MCSubtargetInfo &STI, unsigned WavesPerEU, bool Addressable)
unsigned getWavesPerEUForWorkGroup(const MCSubtargetInfo &STI, unsigned FlatWorkGroupSize)
constexpr unsigned getMaxFlatWorkGroupSize()
unsigned getSGPREncodingGranule(const MCSubtargetInfo &STI)
unsigned getTotalNumVGPRs(const MCSubtargetInfo &STI)
unsigned getMinNumVGPRs(const MCSubtargetInfo &STI, unsigned WavesPerEU, unsigned DynamicVGPRBlockSize)
unsigned getAddressableNumVGPRs(const MCSubtargetInfo &STI, unsigned DynamicVGPRBlockSize)
unsigned getMaxNumVGPRs(const MCSubtargetInfo &STI, unsigned WavesPerEU, unsigned DynamicVGPRBlockSize)
unsigned getVGPRAllocGranule(const MCSubtargetInfo &STI, unsigned DynamicVGPRBlockSize, std::optional< bool > EnableWavefrontSize32)
LLVM_READNONE constexpr bool isShader(CallingConv::ID CC)
unsigned getMaxNumUserSGPRs(const MCSubtargetInfo &STI)
unsigned getNSAMaxSize(const MCSubtargetInfo &STI, bool HasSampler)
LLVM_ABI unsigned getAddressableNumSGPRs(GPUKind AK)
LLVM_ABI unsigned getTotalNumSGPRs(GPUKind AK)
LLVM_ABI unsigned getSGPRAllocGranule(GPUKind AK)
constexpr unsigned getMinWavesPerEU()
This is an optimization pass for GlobalISel generic memory operations.
int countl_zero(T Val)
Count number of 0's from the most significant bit to the least stopping at the first 1.
Definition bit.h:263
MCRegisterClass TargetRegisterClass
Definition FastISel.h:58
This struct is a compact representation of a valid (non-zero power of two) alignment.
Definition Alignment.h:39
Software pipelining policy for a loop, which a target can customize by implementing TargetSubtargetIn...
Define a generic scheduling policy for targets that don't provide their own MachineSchedStrategy.
A region of an MBB for scheduling.