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Tom Stellardcb6ba622016-04-30 00:23:06 +00001//===-- GCNHazardRecognizers.cpp - GCN Hazard Recognizer Impls ------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file implements hazard recognizers for scheduling on GCN processors.
11//
12//===----------------------------------------------------------------------===//
13
Tom Stellardcb6ba622016-04-30 00:23:06 +000014#include "AMDGPUSubtarget.h"
Eugene Zelenko734bb7b2017-01-20 17:52:16 +000015#include "GCNHazardRecognizer.h"
16#include "SIDefines.h"
Tom Stellardcb6ba622016-04-30 00:23:06 +000017#include "SIInstrInfo.h"
Eugene Zelenko734bb7b2017-01-20 17:52:16 +000018#include "SIRegisterInfo.h"
19#include "Utils/AMDGPUBaseInfo.h"
20#include "llvm/ADT/iterator_range.h"
21#include "llvm/CodeGen/MachineFunction.h"
22#include "llvm/CodeGen/MachineInstr.h"
23#include "llvm/CodeGen/MachineOperand.h"
Tom Stellardcb6ba622016-04-30 00:23:06 +000024#include "llvm/CodeGen/ScheduleDAG.h"
Eugene Zelenko734bb7b2017-01-20 17:52:16 +000025#include "llvm/MC/MCInstrDesc.h"
26#include "llvm/Support/ErrorHandling.h"
27#include <algorithm>
28#include <cassert>
29#include <limits>
30#include <set>
31#include <vector>
Tom Stellardcb6ba622016-04-30 00:23:06 +000032
33using namespace llvm;
34
35//===----------------------------------------------------------------------===//
36// Hazard Recoginizer Implementation
37//===----------------------------------------------------------------------===//
38
39GCNHazardRecognizer::GCNHazardRecognizer(const MachineFunction &MF) :
40 CurrCycleInstr(nullptr),
Matt Arsenault43e92fe2016-06-24 06:30:11 +000041 MF(MF),
Matt Arsenault59ece952017-03-17 21:36:28 +000042 ST(MF.getSubtarget<SISubtarget>()),
43 TII(*ST.getInstrInfo()) {
Tom Stellardcb6ba622016-04-30 00:23:06 +000044 MaxLookAhead = 5;
45}
46
47void GCNHazardRecognizer::EmitInstruction(SUnit *SU) {
48 EmitInstruction(SU->getInstr());
49}
50
51void GCNHazardRecognizer::EmitInstruction(MachineInstr *MI) {
52 CurrCycleInstr = MI;
53}
54
Tom Stellard5ab61542016-10-07 23:42:48 +000055static bool isDivFMas(unsigned Opcode) {
56 return Opcode == AMDGPU::V_DIV_FMAS_F32 || Opcode == AMDGPU::V_DIV_FMAS_F64;
57}
58
Tom Stellard961811c2016-10-15 00:58:14 +000059static bool isSGetReg(unsigned Opcode) {
60 return Opcode == AMDGPU::S_GETREG_B32;
61}
62
63static bool isSSetReg(unsigned Opcode) {
64 return Opcode == AMDGPU::S_SETREG_B32 || Opcode == AMDGPU::S_SETREG_IMM32_B32;
65}
66
Tom Stellard04051b52016-10-27 23:42:29 +000067static bool isRWLane(unsigned Opcode) {
68 return Opcode == AMDGPU::V_READLANE_B32 || Opcode == AMDGPU::V_WRITELANE_B32;
69}
70
Tom Stellardaea899e2016-10-27 23:50:21 +000071static bool isRFE(unsigned Opcode) {
72 return Opcode == AMDGPU::S_RFE_B64;
73}
74
Matt Arsenaulte823d922017-02-18 18:29:53 +000075static bool isSMovRel(unsigned Opcode) {
Matt Arsenault59ece952017-03-17 21:36:28 +000076 switch (Opcode) {
77 case AMDGPU::S_MOVRELS_B32:
78 case AMDGPU::S_MOVRELS_B64:
79 case AMDGPU::S_MOVRELD_B32:
80 case AMDGPU::S_MOVRELD_B64:
81 return true;
82 default:
83 return false;
84 }
Matt Arsenaulte823d922017-02-18 18:29:53 +000085}
86
Tom Stellardaea899e2016-10-27 23:50:21 +000087static unsigned getHWReg(const SIInstrInfo *TII, const MachineInstr &RegInstr) {
Tom Stellard961811c2016-10-15 00:58:14 +000088 const MachineOperand *RegOp = TII->getNamedOperand(RegInstr,
89 AMDGPU::OpName::simm16);
90 return RegOp->getImm() & AMDGPU::Hwreg::ID_MASK_;
91}
92
Tom Stellardcb6ba622016-04-30 00:23:06 +000093ScheduleHazardRecognizer::HazardType
94GCNHazardRecognizer::getHazardType(SUnit *SU, int Stalls) {
Tom Stellardcb6ba622016-04-30 00:23:06 +000095 MachineInstr *MI = SU->getInstr();
96
Aaron Ballman5c190d02016-05-02 14:48:03 +000097 if (SIInstrInfo::isSMRD(*MI) && checkSMRDHazards(MI) > 0)
Tom Stellardcb6ba622016-04-30 00:23:06 +000098 return NoopHazard;
99
Aaron Ballman5c190d02016-05-02 14:48:03 +0000100 if (SIInstrInfo::isVMEM(*MI) && checkVMEMHazards(MI) > 0)
Tom Stellardcb6ba622016-04-30 00:23:06 +0000101 return NoopHazard;
102
Tom Stellardb133fbb2016-10-27 23:05:31 +0000103 if (SIInstrInfo::isVALU(*MI) && checkVALUHazards(MI) > 0)
104 return NoopHazard;
105
Tom Stellarda27007e2016-05-02 16:23:09 +0000106 if (SIInstrInfo::isDPP(*MI) && checkDPPHazards(MI) > 0)
107 return NoopHazard;
108
Tom Stellard5ab61542016-10-07 23:42:48 +0000109 if (isDivFMas(MI->getOpcode()) && checkDivFMasHazards(MI) > 0)
110 return NoopHazard;
111
Tom Stellard04051b52016-10-27 23:42:29 +0000112 if (isRWLane(MI->getOpcode()) && checkRWLaneHazards(MI) > 0)
113 return NoopHazard;
114
Tom Stellard961811c2016-10-15 00:58:14 +0000115 if (isSGetReg(MI->getOpcode()) && checkGetRegHazards(MI) > 0)
116 return NoopHazard;
117
Tom Stellard30d30822016-10-27 20:39:09 +0000118 if (isSSetReg(MI->getOpcode()) && checkSetRegHazards(MI) > 0)
119 return NoopHazard;
120
Tom Stellardaea899e2016-10-27 23:50:21 +0000121 if (isRFE(MI->getOpcode()) && checkRFEHazards(MI) > 0)
122 return NoopHazard;
123
Matt Arsenault59ece952017-03-17 21:36:28 +0000124 if ((TII.isVINTRP(*MI) || isSMovRel(MI->getOpcode())) &&
Matt Arsenaulte823d922017-02-18 18:29:53 +0000125 checkReadM0Hazards(MI) > 0)
126 return NoopHazard;
127
128 if (checkAnyInstHazards(MI) > 0)
129 return NoopHazard;
130
Tom Stellardcb6ba622016-04-30 00:23:06 +0000131 return NoHazard;
132}
133
134unsigned GCNHazardRecognizer::PreEmitNoops(SUnit *SU) {
135 return PreEmitNoops(SU->getInstr());
136}
137
138unsigned GCNHazardRecognizer::PreEmitNoops(MachineInstr *MI) {
Matt Arsenaulte823d922017-02-18 18:29:53 +0000139 int WaitStates = std::max(0, checkAnyInstHazards(MI));
140
Aaron Ballman5c190d02016-05-02 14:48:03 +0000141 if (SIInstrInfo::isSMRD(*MI))
Matt Arsenaulte823d922017-02-18 18:29:53 +0000142 return std::max(WaitStates, checkSMRDHazards(MI));
Tom Stellardcb6ba622016-04-30 00:23:06 +0000143
Tom Stellardb133fbb2016-10-27 23:05:31 +0000144 if (SIInstrInfo::isVALU(*MI)) {
Matt Arsenaulte823d922017-02-18 18:29:53 +0000145 WaitStates = std::max(WaitStates, checkVALUHazards(MI));
Tom Stellardcb6ba622016-04-30 00:23:06 +0000146
Tom Stellardb133fbb2016-10-27 23:05:31 +0000147 if (SIInstrInfo::isVMEM(*MI))
148 WaitStates = std::max(WaitStates, checkVMEMHazards(MI));
Tom Stellarda27007e2016-05-02 16:23:09 +0000149
Tom Stellardb133fbb2016-10-27 23:05:31 +0000150 if (SIInstrInfo::isDPP(*MI))
151 WaitStates = std::max(WaitStates, checkDPPHazards(MI));
152
153 if (isDivFMas(MI->getOpcode()))
154 WaitStates = std::max(WaitStates, checkDivFMasHazards(MI));
155
Tom Stellard04051b52016-10-27 23:42:29 +0000156 if (isRWLane(MI->getOpcode()))
157 WaitStates = std::max(WaitStates, checkRWLaneHazards(MI));
158
Matt Arsenault59ece952017-03-17 21:36:28 +0000159 if (TII.isVINTRP(*MI))
Matt Arsenaulte823d922017-02-18 18:29:53 +0000160 WaitStates = std::max(WaitStates, checkReadM0Hazards(MI));
161
Tom Stellardb133fbb2016-10-27 23:05:31 +0000162 return WaitStates;
163 }
Tom Stellard5ab61542016-10-07 23:42:48 +0000164
Tom Stellard961811c2016-10-15 00:58:14 +0000165 if (isSGetReg(MI->getOpcode()))
Matt Arsenaulte823d922017-02-18 18:29:53 +0000166 return std::max(WaitStates, checkGetRegHazards(MI));
Tom Stellard961811c2016-10-15 00:58:14 +0000167
Tom Stellard30d30822016-10-27 20:39:09 +0000168 if (isSSetReg(MI->getOpcode()))
Matt Arsenaulte823d922017-02-18 18:29:53 +0000169 return std::max(WaitStates, checkSetRegHazards(MI));
Tom Stellard30d30822016-10-27 20:39:09 +0000170
Tom Stellardaea899e2016-10-27 23:50:21 +0000171 if (isRFE(MI->getOpcode()))
Matt Arsenaulte823d922017-02-18 18:29:53 +0000172 return std::max(WaitStates, checkRFEHazards(MI));
Tom Stellardaea899e2016-10-27 23:50:21 +0000173
Matt Arsenault59ece952017-03-17 21:36:28 +0000174 if (TII.isVINTRP(*MI) || isSMovRel(MI->getOpcode()))
Matt Arsenaulte823d922017-02-18 18:29:53 +0000175 return std::max(WaitStates, checkReadM0Hazards(MI));
176
177 return WaitStates;
Tom Stellardcb6ba622016-04-30 00:23:06 +0000178}
179
180void GCNHazardRecognizer::EmitNoop() {
181 EmittedInstrs.push_front(nullptr);
182}
183
184void GCNHazardRecognizer::AdvanceCycle() {
Tom Stellardcb6ba622016-04-30 00:23:06 +0000185 // When the scheduler detects a stall, it will call AdvanceCycle() without
186 // emitting any instructions.
187 if (!CurrCycleInstr)
188 return;
189
Matt Arsenault59ece952017-03-17 21:36:28 +0000190 unsigned NumWaitStates = TII.getNumWaitStates(*CurrCycleInstr);
Tom Stellardcb6ba622016-04-30 00:23:06 +0000191
192 // Keep track of emitted instructions
193 EmittedInstrs.push_front(CurrCycleInstr);
194
195 // Add a nullptr for each additional wait state after the first. Make sure
196 // not to add more than getMaxLookAhead() items to the list, since we
197 // truncate the list to that size right after this loop.
198 for (unsigned i = 1, e = std::min(NumWaitStates, getMaxLookAhead());
199 i < e; ++i) {
200 EmittedInstrs.push_front(nullptr);
201 }
202
203 // getMaxLookahead() is the largest number of wait states we will ever need
204 // to insert, so there is no point in keeping track of more than that many
205 // wait states.
206 EmittedInstrs.resize(getMaxLookAhead());
207
208 CurrCycleInstr = nullptr;
209}
210
211void GCNHazardRecognizer::RecedeCycle() {
212 llvm_unreachable("hazard recognizer does not support bottom-up scheduling.");
213}
214
215//===----------------------------------------------------------------------===//
216// Helper Functions
217//===----------------------------------------------------------------------===//
218
Tom Stellardb133fbb2016-10-27 23:05:31 +0000219int GCNHazardRecognizer::getWaitStatesSince(
Tom Stellard961811c2016-10-15 00:58:14 +0000220 function_ref<bool(MachineInstr *)> IsHazard) {
Tom Stellard961811c2016-10-15 00:58:14 +0000221 int WaitStates = -1;
222 for (MachineInstr *MI : EmittedInstrs) {
223 ++WaitStates;
Tom Stellardb133fbb2016-10-27 23:05:31 +0000224 if (!MI || !IsHazard(MI))
Tom Stellard961811c2016-10-15 00:58:14 +0000225 continue;
226 return WaitStates;
227 }
228 return std::numeric_limits<int>::max();
229}
230
Tom Stellardb133fbb2016-10-27 23:05:31 +0000231int GCNHazardRecognizer::getWaitStatesSinceDef(
232 unsigned Reg, function_ref<bool(MachineInstr *)> IsHazardDef) {
233 const SIRegisterInfo *TRI = ST.getRegisterInfo();
234
235 auto IsHazardFn = [IsHazardDef, TRI, Reg] (MachineInstr *MI) {
236 return IsHazardDef(MI) && MI->modifiesRegister(Reg, TRI);
237 };
238
239 return getWaitStatesSince(IsHazardFn);
240}
241
242int GCNHazardRecognizer::getWaitStatesSinceSetReg(
243 function_ref<bool(MachineInstr *)> IsHazard) {
Tom Stellardb133fbb2016-10-27 23:05:31 +0000244 auto IsHazardFn = [IsHazard] (MachineInstr *MI) {
245 return isSSetReg(MI->getOpcode()) && IsHazard(MI);
246 };
247
248 return getWaitStatesSince(IsHazardFn);
249}
250
Tom Stellardcb6ba622016-04-30 00:23:06 +0000251//===----------------------------------------------------------------------===//
252// No-op Hazard Detection
253//===----------------------------------------------------------------------===//
254
Tom Stellard1f520e52016-05-02 17:39:06 +0000255static void addRegsToSet(iterator_range<MachineInstr::const_mop_iterator> Ops,
256 std::set<unsigned> &Set) {
257 for (const MachineOperand &Op : Ops) {
258 if (Op.isReg())
259 Set.insert(Op.getReg());
260 }
261}
262
263int GCNHazardRecognizer::checkSMEMSoftClauseHazards(MachineInstr *SMEM) {
Tom Stellard1f520e52016-05-02 17:39:06 +0000264 // SMEM soft clause are only present on VI+
Matt Arsenault43e92fe2016-06-24 06:30:11 +0000265 if (ST.getGeneration() < SISubtarget::VOLCANIC_ISLANDS)
Tom Stellard1f520e52016-05-02 17:39:06 +0000266 return 0;
267
268 // A soft-clause is any group of consecutive SMEM instructions. The
269 // instructions in this group may return out of order and/or may be
270 // replayed (i.e. the same instruction issued more than once).
271 //
272 // In order to handle these situations correctly we need to make sure
273 // that when a clause has more than one instruction, no instruction in the
274 // clause writes to a register that is read another instruction in the clause
275 // (including itself). If we encounter this situaion, we need to break the
276 // clause by inserting a non SMEM instruction.
277
Tom Stellard1f520e52016-05-02 17:39:06 +0000278 std::set<unsigned> ClauseDefs;
279 std::set<unsigned> ClauseUses;
280
281 for (MachineInstr *MI : EmittedInstrs) {
282
283 // When we hit a non-SMEM instruction then we have passed the start of the
284 // clause and we can stop.
Aaron Ballman3bd56b32016-05-03 15:17:25 +0000285 if (!MI || !SIInstrInfo::isSMRD(*MI))
Tom Stellard1f520e52016-05-02 17:39:06 +0000286 break;
287
288 addRegsToSet(MI->defs(), ClauseDefs);
289 addRegsToSet(MI->uses(), ClauseUses);
290 }
291
292 if (ClauseDefs.empty())
293 return 0;
294
295 // FIXME: When we support stores, we need to make sure not to put loads and
296 // stores in the same clause if they use the same address. For now, just
297 // start a new clause whenever we see a store.
298 if (SMEM->mayStore())
299 return 1;
300
301 addRegsToSet(SMEM->defs(), ClauseDefs);
302 addRegsToSet(SMEM->uses(), ClauseUses);
303
304 std::vector<unsigned> Result(std::max(ClauseDefs.size(), ClauseUses.size()));
305 std::vector<unsigned>::iterator End;
306
307 End = std::set_intersection(ClauseDefs.begin(), ClauseDefs.end(),
308 ClauseUses.begin(), ClauseUses.end(), Result.begin());
309
310 // If the set of defs and uses intersect then we cannot add this instruction
311 // to the clause, so we have a hazard.
312 if (End != Result.begin())
313 return 1;
314
315 return 0;
316}
317
Tom Stellardcb6ba622016-04-30 00:23:06 +0000318int GCNHazardRecognizer::checkSMRDHazards(MachineInstr *SMRD) {
Matt Arsenault43e92fe2016-06-24 06:30:11 +0000319 const SISubtarget &ST = MF.getSubtarget<SISubtarget>();
Tom Stellard1f520e52016-05-02 17:39:06 +0000320 int WaitStatesNeeded = 0;
321
322 WaitStatesNeeded = checkSMEMSoftClauseHazards(SMRD);
Tom Stellardcb6ba622016-04-30 00:23:06 +0000323
324 // This SMRD hazard only affects SI.
Matt Arsenault43e92fe2016-06-24 06:30:11 +0000325 if (ST.getGeneration() != SISubtarget::SOUTHERN_ISLANDS)
Tom Stellard1f520e52016-05-02 17:39:06 +0000326 return WaitStatesNeeded;
Tom Stellardcb6ba622016-04-30 00:23:06 +0000327
328 // A read of an SGPR by SMRD instruction requires 4 wait states when the
329 // SGPR was written by a VALU instruction.
330 int SmrdSgprWaitStates = 4;
Matt Arsenault59ece952017-03-17 21:36:28 +0000331 auto IsHazardDefFn = [this] (MachineInstr *MI) { return TII.isVALU(*MI); };
Tom Stellardcb6ba622016-04-30 00:23:06 +0000332
333 for (const MachineOperand &Use : SMRD->uses()) {
334 if (!Use.isReg())
335 continue;
336 int WaitStatesNeededForUse =
337 SmrdSgprWaitStates - getWaitStatesSinceDef(Use.getReg(), IsHazardDefFn);
338 WaitStatesNeeded = std::max(WaitStatesNeeded, WaitStatesNeededForUse);
339 }
340 return WaitStatesNeeded;
341}
342
343int GCNHazardRecognizer::checkVMEMHazards(MachineInstr* VMEM) {
Matt Arsenault43e92fe2016-06-24 06:30:11 +0000344 const SIInstrInfo *TII = ST.getInstrInfo();
Tom Stellardcb6ba622016-04-30 00:23:06 +0000345
Matt Arsenault43e92fe2016-06-24 06:30:11 +0000346 if (ST.getGeneration() < SISubtarget::VOLCANIC_ISLANDS)
Tom Stellardcb6ba622016-04-30 00:23:06 +0000347 return 0;
348
349 const SIRegisterInfo &TRI = TII->getRegisterInfo();
350
351 // A read of an SGPR by a VMEM instruction requires 5 wait states when the
352 // SGPR was written by a VALU Instruction.
353 int VmemSgprWaitStates = 5;
354 int WaitStatesNeeded = 0;
355 auto IsHazardDefFn = [TII] (MachineInstr *MI) { return TII->isVALU(*MI); };
356
357 for (const MachineOperand &Use : VMEM->uses()) {
358 if (!Use.isReg() || TRI.isVGPR(MF.getRegInfo(), Use.getReg()))
359 continue;
360
361 int WaitStatesNeededForUse =
362 VmemSgprWaitStates - getWaitStatesSinceDef(Use.getReg(), IsHazardDefFn);
363 WaitStatesNeeded = std::max(WaitStatesNeeded, WaitStatesNeededForUse);
364 }
365 return WaitStatesNeeded;
366}
Tom Stellarda27007e2016-05-02 16:23:09 +0000367
368int GCNHazardRecognizer::checkDPPHazards(MachineInstr *DPP) {
Matt Arsenault43e92fe2016-06-24 06:30:11 +0000369 const SIRegisterInfo *TRI = ST.getRegisterInfo();
Tom Stellarda27007e2016-05-02 16:23:09 +0000370
371 // Check for DPP VGPR read after VALU VGPR write.
372 int DppVgprWaitStates = 2;
373 int WaitStatesNeeded = 0;
374
375 for (const MachineOperand &Use : DPP->uses()) {
376 if (!Use.isReg() || !TRI->isVGPR(MF.getRegInfo(), Use.getReg()))
377 continue;
378 int WaitStatesNeededForUse =
379 DppVgprWaitStates - getWaitStatesSinceDef(Use.getReg());
380 WaitStatesNeeded = std::max(WaitStatesNeeded, WaitStatesNeededForUse);
381 }
382
383 return WaitStatesNeeded;
384}
Tom Stellard5ab61542016-10-07 23:42:48 +0000385
386int GCNHazardRecognizer::checkDivFMasHazards(MachineInstr *DivFMas) {
387 const SIInstrInfo *TII = ST.getInstrInfo();
388
389 // v_div_fmas requires 4 wait states after a write to vcc from a VALU
390 // instruction.
391 const int DivFMasWaitStates = 4;
392 auto IsHazardDefFn = [TII] (MachineInstr *MI) { return TII->isVALU(*MI); };
393 int WaitStatesNeeded = getWaitStatesSinceDef(AMDGPU::VCC, IsHazardDefFn);
394
395 return DivFMasWaitStates - WaitStatesNeeded;
396}
Tom Stellard961811c2016-10-15 00:58:14 +0000397
398int GCNHazardRecognizer::checkGetRegHazards(MachineInstr *GetRegInstr) {
399 const SIInstrInfo *TII = ST.getInstrInfo();
400 unsigned GetRegHWReg = getHWReg(TII, *GetRegInstr);
401
402 const int GetRegWaitStates = 2;
403 auto IsHazardFn = [TII, GetRegHWReg] (MachineInstr *MI) {
404 return GetRegHWReg == getHWReg(TII, *MI);
405 };
406 int WaitStatesNeeded = getWaitStatesSinceSetReg(IsHazardFn);
407
408 return GetRegWaitStates - WaitStatesNeeded;
409}
Tom Stellard30d30822016-10-27 20:39:09 +0000410
411int GCNHazardRecognizer::checkSetRegHazards(MachineInstr *SetRegInstr) {
412 const SIInstrInfo *TII = ST.getInstrInfo();
413 unsigned HWReg = getHWReg(TII, *SetRegInstr);
414
415 const int SetRegWaitStates =
416 ST.getGeneration() <= AMDGPUSubtarget::SEA_ISLANDS ? 1 : 2;
417 auto IsHazardFn = [TII, HWReg] (MachineInstr *MI) {
418 return HWReg == getHWReg(TII, *MI);
419 };
420 int WaitStatesNeeded = getWaitStatesSinceSetReg(IsHazardFn);
421 return SetRegWaitStates - WaitStatesNeeded;
422}
Tom Stellardb133fbb2016-10-27 23:05:31 +0000423
424int GCNHazardRecognizer::createsVALUHazard(const MachineInstr &MI) {
425 if (!MI.mayStore())
426 return -1;
427
428 const SIInstrInfo *TII = ST.getInstrInfo();
429 unsigned Opcode = MI.getOpcode();
430 const MCInstrDesc &Desc = MI.getDesc();
431
432 int VDataIdx = AMDGPU::getNamedOperandIdx(Opcode, AMDGPU::OpName::vdata);
433 int VDataRCID = -1;
434 if (VDataIdx != -1)
435 VDataRCID = Desc.OpInfo[VDataIdx].RegClass;
436
437 if (TII->isMUBUF(MI) || TII->isMTBUF(MI)) {
Jan Veselye8cc3952016-11-15 23:55:15 +0000438 // There is no hazard if the instruction does not use vector regs
439 // (like wbinvl1)
440 if (VDataIdx == -1)
441 return -1;
Tom Stellardb133fbb2016-10-27 23:05:31 +0000442 // For MUBUF/MTBUF instructions this hazard only exists if the
443 // instruction is not using a register in the soffset field.
444 const MachineOperand *SOffset =
445 TII->getNamedOperand(MI, AMDGPU::OpName::soffset);
446 // If we have no soffset operand, then assume this field has been
447 // hardcoded to zero.
448 if (AMDGPU::getRegBitWidth(VDataRCID) > 64 &&
449 (!SOffset || !SOffset->isReg()))
450 return VDataIdx;
451 }
452
453 // MIMG instructions create a hazard if they don't use a 256-bit T# and
454 // the store size is greater than 8 bytes and they have more than two bits
455 // of their dmask set.
456 // All our MIMG definitions use a 256-bit T#, so we can skip checking for them.
457 if (TII->isMIMG(MI)) {
458 int SRsrcIdx = AMDGPU::getNamedOperandIdx(Opcode, AMDGPU::OpName::srsrc);
459 assert(SRsrcIdx != -1 &&
460 AMDGPU::getRegBitWidth(Desc.OpInfo[SRsrcIdx].RegClass) == 256);
Tom Stellard6b9c1be2016-10-27 23:28:03 +0000461 (void)SRsrcIdx;
Tom Stellardb133fbb2016-10-27 23:05:31 +0000462 }
463
464 if (TII->isFLAT(MI)) {
Matt Arsenault97279a82016-11-29 19:30:44 +0000465 int DataIdx = AMDGPU::getNamedOperandIdx(Opcode, AMDGPU::OpName::vdata);
Tom Stellardb133fbb2016-10-27 23:05:31 +0000466 if (AMDGPU::getRegBitWidth(Desc.OpInfo[DataIdx].RegClass) > 64)
467 return DataIdx;
468 }
469
470 return -1;
471}
472
473int GCNHazardRecognizer::checkVALUHazards(MachineInstr *VALU) {
474 // This checks for the hazard where VMEM instructions that store more than
475 // 8 bytes can have there store data over written by the next instruction.
476 if (!ST.has12DWordStoreHazard())
477 return 0;
478
479 const SIRegisterInfo *TRI = ST.getRegisterInfo();
480 const MachineRegisterInfo &MRI = VALU->getParent()->getParent()->getRegInfo();
481
482 const int VALUWaitStates = 1;
483 int WaitStatesNeeded = 0;
484
485 for (const MachineOperand &Def : VALU->defs()) {
486 if (!TRI->isVGPR(MRI, Def.getReg()))
487 continue;
488 unsigned Reg = Def.getReg();
489 auto IsHazardFn = [this, Reg, TRI] (MachineInstr *MI) {
490 int DataIdx = createsVALUHazard(*MI);
491 return DataIdx >= 0 &&
492 TRI->regsOverlap(MI->getOperand(DataIdx).getReg(), Reg);
493 };
494 int WaitStatesNeededForDef =
495 VALUWaitStates - getWaitStatesSince(IsHazardFn);
496 WaitStatesNeeded = std::max(WaitStatesNeeded, WaitStatesNeededForDef);
497 }
498 return WaitStatesNeeded;
499}
Tom Stellard04051b52016-10-27 23:42:29 +0000500
501int GCNHazardRecognizer::checkRWLaneHazards(MachineInstr *RWLane) {
502 const SIInstrInfo *TII = ST.getInstrInfo();
503 const SIRegisterInfo *TRI = ST.getRegisterInfo();
504 const MachineRegisterInfo &MRI =
505 RWLane->getParent()->getParent()->getRegInfo();
506
507 const MachineOperand *LaneSelectOp =
508 TII->getNamedOperand(*RWLane, AMDGPU::OpName::src1);
509
510 if (!LaneSelectOp->isReg() || !TRI->isSGPRReg(MRI, LaneSelectOp->getReg()))
511 return 0;
512
513 unsigned LaneSelectReg = LaneSelectOp->getReg();
514 auto IsHazardFn = [TII] (MachineInstr *MI) {
515 return TII->isVALU(*MI);
516 };
517
518 const int RWLaneWaitStates = 4;
519 int WaitStatesSince = getWaitStatesSinceDef(LaneSelectReg, IsHazardFn);
520 return RWLaneWaitStates - WaitStatesSince;
521}
Tom Stellardaea899e2016-10-27 23:50:21 +0000522
523int GCNHazardRecognizer::checkRFEHazards(MachineInstr *RFE) {
Tom Stellardaea899e2016-10-27 23:50:21 +0000524 if (ST.getGeneration() < AMDGPUSubtarget::VOLCANIC_ISLANDS)
525 return 0;
526
527 const SIInstrInfo *TII = ST.getInstrInfo();
528
529 const int RFEWaitStates = 1;
530
531 auto IsHazardFn = [TII] (MachineInstr *MI) {
532 return getHWReg(TII, *MI) == AMDGPU::Hwreg::ID_TRAPSTS;
533 };
534 int WaitStatesNeeded = getWaitStatesSinceSetReg(IsHazardFn);
535 return RFEWaitStates - WaitStatesNeeded;
536}
Matt Arsenaulte823d922017-02-18 18:29:53 +0000537
538int GCNHazardRecognizer::checkAnyInstHazards(MachineInstr *MI) {
539 if (MI->isDebugValue())
540 return 0;
541
542 const SIRegisterInfo *TRI = ST.getRegisterInfo();
543 if (!ST.hasSMovFedHazard())
544 return 0;
545
546 // Check for any instruction reading an SGPR after a write from
547 // s_mov_fed_b32.
548 int MovFedWaitStates = 1;
549 int WaitStatesNeeded = 0;
550
551 for (const MachineOperand &Use : MI->uses()) {
552 if (!Use.isReg() || TRI->isVGPR(MF.getRegInfo(), Use.getReg()))
553 continue;
554 auto IsHazardFn = [] (MachineInstr *MI) {
555 return MI->getOpcode() == AMDGPU::S_MOV_FED_B32;
556 };
557 int WaitStatesNeededForUse =
558 MovFedWaitStates - getWaitStatesSinceDef(Use.getReg(), IsHazardFn);
559 WaitStatesNeeded = std::max(WaitStatesNeeded, WaitStatesNeededForUse);
560 }
561
562 return WaitStatesNeeded;
563}
564
565int GCNHazardRecognizer::checkReadM0Hazards(MachineInstr *MI) {
566 if (!ST.hasReadM0Hazard())
567 return 0;
568
569 const SIInstrInfo *TII = ST.getInstrInfo();
570 int SMovRelWaitStates = 1;
571 auto IsHazardFn = [TII] (MachineInstr *MI) {
572 return TII->isSALU(*MI);
573 };
574 return SMovRelWaitStates - getWaitStatesSinceDef(AMDGPU::M0, IsHazardFn);
575}