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Tom Stellard0d23ebe2016-08-29 19:42:52 +00001//===-- GCNSchedStrategy.cpp - GCN Scheduler Strategy ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10/// \file
11/// This contains a MachineSchedStrategy implementation for maximizing wave
12/// occupancy on GCN hardware.
13//===----------------------------------------------------------------------===//
14
15#include "GCNSchedStrategy.h"
16#include "AMDGPUSubtarget.h"
17#include "SIInstrInfo.h"
18#include "SIMachineFunctionInfo.h"
19#include "SIRegisterInfo.h"
20#include "llvm/CodeGen/RegisterClassInfo.h"
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +000021#include "llvm/Support/MathExtras.h"
Tom Stellard0d23ebe2016-08-29 19:42:52 +000022
23#define DEBUG_TYPE "misched"
24
25using namespace llvm;
26
27GCNMaxOccupancySchedStrategy::GCNMaxOccupancySchedStrategy(
28 const MachineSchedContext *C) :
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +000029 GenericScheduler(C), TargetOccupancy(0), MF(nullptr) { }
Tom Stellard0d23ebe2016-08-29 19:42:52 +000030
31static unsigned getMaxWaves(unsigned SGPRs, unsigned VGPRs,
32 const MachineFunction &MF) {
33
34 const SISubtarget &ST = MF.getSubtarget<SISubtarget>();
35 const SIMachineFunctionInfo *MFI = MF.getInfo<SIMachineFunctionInfo>();
36 unsigned MinRegOccupancy = std::min(ST.getOccupancyWithNumSGPRs(SGPRs),
37 ST.getOccupancyWithNumVGPRs(VGPRs));
38 return std::min(MinRegOccupancy,
Stanislav Mekhanoshin2b913b12017-02-01 22:59:50 +000039 ST.getOccupancyWithLocalMemSize(MFI->getLDSSize(),
40 *MF.getFunction()));
Tom Stellard0d23ebe2016-08-29 19:42:52 +000041}
42
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +000043void GCNMaxOccupancySchedStrategy::initialize(ScheduleDAGMI *DAG) {
44 GenericScheduler::initialize(DAG);
45
46 const SIRegisterInfo *SRI = static_cast<const SIRegisterInfo*>(TRI);
47
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +000048 MF = &DAG->MF;
49
50 const SISubtarget &ST = MF->getSubtarget<SISubtarget>();
51
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +000052 // FIXME: This is also necessary, because some passes that run after
53 // scheduling and before regalloc increase register pressure.
54 const int ErrorMargin = 3;
55
56 SGPRExcessLimit = Context->RegClassInfo
57 ->getNumAllocatableRegs(&AMDGPU::SGPR_32RegClass) - ErrorMargin;
58 VGPRExcessLimit = Context->RegClassInfo
59 ->getNumAllocatableRegs(&AMDGPU::VGPR_32RegClass) - ErrorMargin;
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +000060 if (TargetOccupancy) {
61 SGPRCriticalLimit = ST.getMaxNumSGPRs(TargetOccupancy, true);
62 VGPRCriticalLimit = ST.getMaxNumVGPRs(TargetOccupancy);
63 } else {
64 SGPRCriticalLimit = SRI->getRegPressureSetLimit(DAG->MF,
65 SRI->getSGPRPressureSet());
66 VGPRCriticalLimit = SRI->getRegPressureSetLimit(DAG->MF,
67 SRI->getVGPRPressureSet());
68 }
69
70 SGPRCriticalLimit -= ErrorMargin;
71 VGPRCriticalLimit -= ErrorMargin;
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +000072}
73
Tom Stellard0d23ebe2016-08-29 19:42:52 +000074void GCNMaxOccupancySchedStrategy::initCandidate(SchedCandidate &Cand, SUnit *SU,
75 bool AtTop, const RegPressureTracker &RPTracker,
76 const SIRegisterInfo *SRI,
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +000077 unsigned SGPRPressure,
78 unsigned VGPRPressure) {
Tom Stellard0d23ebe2016-08-29 19:42:52 +000079
80 Cand.SU = SU;
81 Cand.AtTop = AtTop;
82
83 // getDownwardPressure() and getUpwardPressure() make temporary changes to
84 // the the tracker, so we need to pass those function a non-const copy.
85 RegPressureTracker &TempTracker = const_cast<RegPressureTracker&>(RPTracker);
86
87 std::vector<unsigned> Pressure;
88 std::vector<unsigned> MaxPressure;
89
90 if (AtTop)
91 TempTracker.getDownwardPressure(SU->getInstr(), Pressure, MaxPressure);
92 else {
93 // FIXME: I think for bottom up scheduling, the register pressure is cached
94 // and can be retrieved by DAG->getPressureDif(SU).
95 TempTracker.getUpwardPressure(SU->getInstr(), Pressure, MaxPressure);
96 }
Matt Arsenaultf3dd8632016-11-01 00:55:14 +000097
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +000098 unsigned NewSGPRPressure = Pressure[SRI->getSGPRPressureSet()];
99 unsigned NewVGPRPressure = Pressure[SRI->getVGPRPressureSet()];
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000100
101 // If two instructions increase the pressure of different register sets
102 // by the same amount, the generic scheduler will prefer to schedule the
103 // instruction that increases the set with the least amount of registers,
104 // which in our case would be SGPRs. This is rarely what we want, so
105 // when we report excess/critical register pressure, we do it either
106 // only for VGPRs or only for SGPRs.
107
108 // FIXME: Better heuristics to determine whether to prefer SGPRs or VGPRs.
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000109 const unsigned MaxVGPRPressureInc = 16;
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000110 bool ShouldTrackVGPRs = VGPRPressure + MaxVGPRPressureInc >= VGPRExcessLimit;
111 bool ShouldTrackSGPRs = !ShouldTrackVGPRs && SGPRPressure >= SGPRExcessLimit;
112
113
114 // FIXME: We have to enter REG-EXCESS before we reach the actual threshold
115 // to increase the likelihood we don't go over the limits. We should improve
116 // the analysis to look through dependencies to find the path with the least
117 // register pressure.
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000118
119 // We only need to update the RPDelata for instructions that increase
120 // register pressure. Instructions that decrease or keep reg pressure
121 // the same will be marked as RegExcess in tryCandidate() when they
122 // are compared with instructions that increase the register pressure.
123 if (ShouldTrackVGPRs && NewVGPRPressure >= VGPRExcessLimit) {
124 Cand.RPDelta.Excess = PressureChange(SRI->getVGPRPressureSet());
125 Cand.RPDelta.Excess.setUnitInc(NewVGPRPressure - VGPRExcessLimit);
126 }
127
128 if (ShouldTrackSGPRs && NewSGPRPressure >= SGPRExcessLimit) {
129 Cand.RPDelta.Excess = PressureChange(SRI->getSGPRPressureSet());
Valery Pykhtin75d1de92017-01-26 10:51:47 +0000130 Cand.RPDelta.Excess.setUnitInc(NewSGPRPressure - SGPRExcessLimit);
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000131 }
132
133 // Register pressure is considered 'CRITICAL' if it is approaching a value
134 // that would reduce the wave occupancy for the execution unit. When
135 // register pressure is 'CRITICAL', increading SGPR and VGPR pressure both
136 // has the same cost, so we don't need to prefer one over the other.
137
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000138 int SGPRDelta = NewSGPRPressure - SGPRCriticalLimit;
139 int VGPRDelta = NewVGPRPressure - VGPRCriticalLimit;
140
141 if (SGPRDelta >= 0 || VGPRDelta >= 0) {
142 if (SGPRDelta > VGPRDelta) {
143 Cand.RPDelta.CriticalMax = PressureChange(SRI->getSGPRPressureSet());
144 Cand.RPDelta.CriticalMax.setUnitInc(SGPRDelta);
145 } else {
146 Cand.RPDelta.CriticalMax = PressureChange(SRI->getVGPRPressureSet());
147 Cand.RPDelta.CriticalMax.setUnitInc(VGPRDelta);
148 }
149 }
150}
151
152// This function is mostly cut and pasted from
153// GenericScheduler::pickNodeFromQueue()
154void GCNMaxOccupancySchedStrategy::pickNodeFromQueue(SchedBoundary &Zone,
155 const CandPolicy &ZonePolicy,
156 const RegPressureTracker &RPTracker,
157 SchedCandidate &Cand) {
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000158 const SIRegisterInfo *SRI = static_cast<const SIRegisterInfo*>(TRI);
159 ArrayRef<unsigned> Pressure = RPTracker.getRegSetPressureAtPos();
160 unsigned SGPRPressure = Pressure[SRI->getSGPRPressureSet()];
161 unsigned VGPRPressure = Pressure[SRI->getVGPRPressureSet()];
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000162 ReadyQueue &Q = Zone.Available;
163 for (SUnit *SU : Q) {
164
165 SchedCandidate TryCand(ZonePolicy);
166 initCandidate(TryCand, SU, Zone.isTop(), RPTracker, SRI,
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000167 SGPRPressure, VGPRPressure);
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000168 // Pass SchedBoundary only when comparing nodes from the same boundary.
169 SchedBoundary *ZoneArg = Cand.AtTop == TryCand.AtTop ? &Zone : nullptr;
170 GenericScheduler::tryCandidate(Cand, TryCand, ZoneArg);
171 if (TryCand.Reason != NoCand) {
172 // Initialize resource delta if needed in case future heuristics query it.
173 if (TryCand.ResDelta == SchedResourceDelta())
174 TryCand.initResourceDelta(Zone.DAG, SchedModel);
175 Cand.setBest(TryCand);
176 }
177 }
178}
179
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000180// This function is mostly cut and pasted from
181// GenericScheduler::pickNodeBidirectional()
182SUnit *GCNMaxOccupancySchedStrategy::pickNodeBidirectional(bool &IsTopNode) {
183 // Schedule as far as possible in the direction of no choice. This is most
184 // efficient, but also provides the best heuristics for CriticalPSets.
185 if (SUnit *SU = Bot.pickOnlyChoice()) {
186 IsTopNode = false;
187 return SU;
188 }
189 if (SUnit *SU = Top.pickOnlyChoice()) {
190 IsTopNode = true;
191 return SU;
192 }
193 // Set the bottom-up policy based on the state of the current bottom zone and
194 // the instructions outside the zone, including the top zone.
195 CandPolicy BotPolicy;
196 setPolicy(BotPolicy, /*IsPostRA=*/false, Bot, &Top);
197 // Set the top-down policy based on the state of the current top zone and
198 // the instructions outside the zone, including the bottom zone.
199 CandPolicy TopPolicy;
200 setPolicy(TopPolicy, /*IsPostRA=*/false, Top, &Bot);
201
202 // See if BotCand is still valid (because we previously scheduled from Top).
203 DEBUG(dbgs() << "Picking from Bot:\n");
204 if (!BotCand.isValid() || BotCand.SU->isScheduled ||
205 BotCand.Policy != BotPolicy) {
206 BotCand.reset(CandPolicy());
207 pickNodeFromQueue(Bot, BotPolicy, DAG->getBotRPTracker(), BotCand);
208 assert(BotCand.Reason != NoCand && "failed to find the first candidate");
209 } else {
210 DEBUG(traceCandidate(BotCand));
211 }
212
213 // Check if the top Q has a better candidate.
214 DEBUG(dbgs() << "Picking from Top:\n");
215 if (!TopCand.isValid() || TopCand.SU->isScheduled ||
216 TopCand.Policy != TopPolicy) {
217 TopCand.reset(CandPolicy());
218 pickNodeFromQueue(Top, TopPolicy, DAG->getTopRPTracker(), TopCand);
219 assert(TopCand.Reason != NoCand && "failed to find the first candidate");
220 } else {
221 DEBUG(traceCandidate(TopCand));
222 }
223
224 // Pick best from BotCand and TopCand.
225 DEBUG(
226 dbgs() << "Top Cand: ";
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000227 traceCandidate(TopCand);
Stanislav Mekhanoshin99be1af2017-02-06 23:16:51 +0000228 dbgs() << "Bot Cand: ";
229 traceCandidate(BotCand);
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000230 );
231 SchedCandidate Cand;
232 if (TopCand.Reason == BotCand.Reason) {
233 Cand = BotCand;
234 GenericSchedulerBase::CandReason TopReason = TopCand.Reason;
235 TopCand.Reason = NoCand;
236 GenericScheduler::tryCandidate(Cand, TopCand, nullptr);
237 if (TopCand.Reason != NoCand) {
Matt Arsenaultf3dd8632016-11-01 00:55:14 +0000238 Cand.setBest(TopCand);
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000239 } else {
240 TopCand.Reason = TopReason;
241 }
242 } else {
243 if (TopCand.Reason == RegExcess && TopCand.RPDelta.Excess.getUnitInc() <= 0) {
244 Cand = TopCand;
245 } else if (BotCand.Reason == RegExcess && BotCand.RPDelta.Excess.getUnitInc() <= 0) {
246 Cand = BotCand;
247 } else if (TopCand.Reason == RegCritical && TopCand.RPDelta.CriticalMax.getUnitInc() <= 0) {
248 Cand = TopCand;
249 } else if (BotCand.Reason == RegCritical && BotCand.RPDelta.CriticalMax.getUnitInc() <= 0) {
250 Cand = BotCand;
251 } else {
Stanislav Mekhanoshin79da2a72017-03-11 00:29:27 +0000252 if (BotCand.Reason > TopCand.Reason) {
Tom Stellard0d23ebe2016-08-29 19:42:52 +0000253 Cand = TopCand;
254 } else {
255 Cand = BotCand;
256 }
257 }
258 }
259 DEBUG(
260 dbgs() << "Picking: ";
261 traceCandidate(Cand);
262 );
263
264 IsTopNode = Cand.AtTop;
265 return Cand.SU;
266}
267
268// This function is mostly cut and pasted from
269// GenericScheduler::pickNode()
270SUnit *GCNMaxOccupancySchedStrategy::pickNode(bool &IsTopNode) {
271 if (DAG->top() == DAG->bottom()) {
272 assert(Top.Available.empty() && Top.Pending.empty() &&
273 Bot.Available.empty() && Bot.Pending.empty() && "ReadyQ garbage");
274 return nullptr;
275 }
276 SUnit *SU;
277 do {
278 if (RegionPolicy.OnlyTopDown) {
279 SU = Top.pickOnlyChoice();
280 if (!SU) {
281 CandPolicy NoPolicy;
282 TopCand.reset(NoPolicy);
283 pickNodeFromQueue(Top, NoPolicy, DAG->getTopRPTracker(), TopCand);
284 assert(TopCand.Reason != NoCand && "failed to find a candidate");
285 SU = TopCand.SU;
286 }
287 IsTopNode = true;
288 } else if (RegionPolicy.OnlyBottomUp) {
289 SU = Bot.pickOnlyChoice();
290 if (!SU) {
291 CandPolicy NoPolicy;
292 BotCand.reset(NoPolicy);
293 pickNodeFromQueue(Bot, NoPolicy, DAG->getBotRPTracker(), BotCand);
294 assert(BotCand.Reason != NoCand && "failed to find a candidate");
295 SU = BotCand.SU;
296 }
297 IsTopNode = false;
298 } else {
299 SU = pickNodeBidirectional(IsTopNode);
300 }
301 } while (SU->isScheduled);
302
303 if (SU->isTopReady())
304 Top.removeReady(SU);
305 if (SU->isBottomReady())
306 Bot.removeReady(SU);
307
308 DEBUG(dbgs() << "Scheduling SU(" << SU->NodeNum << ") " << *SU->getInstr());
309 return SU;
310}
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000311
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +0000312GCNScheduleDAGMILive::GCNScheduleDAGMILive(MachineSchedContext *C,
313 std::unique_ptr<MachineSchedStrategy> S) :
314 ScheduleDAGMILive(C, std::move(S)),
315 ST(MF.getSubtarget<SISubtarget>()),
316 MFI(*MF.getInfo<SIMachineFunctionInfo>()),
317 StartingOccupancy(ST.getOccupancyWithLocalMemSize(MFI.getLDSSize(),
318 *MF.getFunction())),
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000319 MinOccupancy(StartingOccupancy), Stage(0), RegionIdx(0) {
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +0000320
321 DEBUG(dbgs() << "Starting occupancy is " << StartingOccupancy << ".\n");
322}
323
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000324void GCNScheduleDAGMILive::schedule() {
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000325 if (Stage == 0) {
326 // Just record regions at the first pass.
327 Regions.push_back(std::make_pair(RegionBegin, RegionEnd));
328 return;
329 }
330
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000331 std::vector<MachineInstr*> Unsched;
332 Unsched.reserve(NumRegionInstrs);
333 for (auto &I : *this)
334 Unsched.push_back(&I);
335
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000336 GCNRegPressure PressureBefore;
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000337 if (LIS) {
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000338 PressureBefore = Pressure[RegionIdx];
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000339
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000340 DEBUG(const SIRegisterInfo *SRI = static_cast<const SIRegisterInfo*>(TRI);
341 dbgs() << "Pressure before scheduling:\nRegion live-ins:";
342 for (unsigned I = 0, E = MRI.getNumVirtRegs(); I != E; ++I) {
343 unsigned Reg = TargetRegisterInfo::index2VirtReg(I);
344 auto It = LiveIns[RegionIdx].find(Reg);
345 if (It != LiveIns[RegionIdx].end() && It->second.any())
346 dbgs() << ' ' << PrintVRegOrUnit(Reg, SRI) << ':'
347 << PrintLaneMask(It->second);
348 }
349 auto P = llvm::getRegPressure(MRI, LiveIns[RegionIdx]);
350 dbgs() << "\nLive-in pressure:\nSGPR = " << P.getSGPRNum()
351 << "\nVGPR = " << P.getVGPRNum()
352 << "\nReal region's register pressure:\nSGPR = "
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000353 << PressureBefore.getSGPRNum()
354 << "\nVGPR = " << PressureBefore.getVGPRNum() << '\n');
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000355 }
356
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000357 ScheduleDAGMILive::schedule();
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000358 Regions[RegionIdx] = std::make_pair(RegionBegin, RegionEnd);
Stanislav Mekhanoshinb933c3f2017-03-28 21:48:54 +0000359
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000360 if (!LIS)
361 return;
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000362
363 // Check the results of scheduling.
364 GCNMaxOccupancySchedStrategy &S = (GCNMaxOccupancySchedStrategy&)*SchedImpl;
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000365 auto PressureAfter = getRealRegPressure();
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000366
367 DEBUG(dbgs() << "Pressure after scheduling:\nSGPR = "
368 << PressureAfter.getSGPRNum()
369 << "\nVGPR = " << PressureAfter.getVGPRNum() << '\n');
370
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000371 if (PressureAfter.getSGPRNum() <= S.SGPRCriticalLimit &&
372 PressureAfter.getVGPRNum() <= S.VGPRCriticalLimit) {
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000373 Pressure[RegionIdx] = PressureAfter;
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000374 DEBUG(dbgs() << "Pressure in desired limits, done.\n");
375 return;
376 }
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000377 unsigned WavesAfter = getMaxWaves(PressureAfter.getSGPRNum(),
378 PressureAfter.getVGPRNum(), MF);
379 unsigned WavesBefore = getMaxWaves(PressureBefore.getSGPRNum(),
380 PressureBefore.getVGPRNum(), MF);
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000381 DEBUG(dbgs() << "Occupancy before scheduling: " << WavesBefore <<
382 ", after " << WavesAfter << ".\n");
383
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +0000384 // We could not keep current target occupancy because of the just scheduled
385 // region. Record new occupancy for next scheduling cycle.
386 unsigned NewOccupancy = std::max(WavesAfter, WavesBefore);
387 if (NewOccupancy < MinOccupancy) {
388 MinOccupancy = NewOccupancy;
389 DEBUG(dbgs() << "Occupancy lowered for the function to "
390 << MinOccupancy << ".\n");
391 }
392
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000393 if (WavesAfter >= WavesBefore) {
394 Pressure[RegionIdx] = PressureAfter;
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000395 return;
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000396 }
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000397
398 DEBUG(dbgs() << "Attempting to revert scheduling.\n");
399 RegionEnd = RegionBegin;
400 for (MachineInstr *MI : Unsched) {
401 if (MI->getIterator() != RegionEnd) {
402 BB->remove(MI);
403 BB->insert(RegionEnd, MI);
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000404 LIS->handleMove(*MI, true);
Stanislav Mekhanoshin080889c2017-02-28 16:26:27 +0000405 }
406 // Reset read-undef flags and update them later.
407 for (auto &Op : MI->operands())
408 if (Op.isReg() && Op.isDef())
409 Op.setIsUndef(false);
410 RegisterOperands RegOpers;
411 RegOpers.collect(*MI, *TRI, MRI, ShouldTrackLaneMasks, false);
412 if (ShouldTrackLaneMasks) {
413 // Adjust liveness and add missing dead+read-undef flags.
414 SlotIndex SlotIdx = LIS->getInstructionIndex(*MI).getRegSlot();
415 RegOpers.adjustLaneLiveness(*LIS, MRI, SlotIdx, MI);
416 } else {
417 // Adjust for missing dead-def flags.
418 RegOpers.detectDeadDefs(*MI, *LIS);
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000419 }
420 RegionEnd = MI->getIterator();
421 ++RegionEnd;
422 DEBUG(dbgs() << "Scheduling " << *MI);
423 }
424 RegionBegin = Unsched.front()->getIterator();
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000425 Regions[RegionIdx] = std::make_pair(RegionBegin, RegionEnd);
Stanislav Mekhanoshin582a5232017-02-15 17:19:50 +0000426
427 placeDebugValues();
428}
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000429
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000430GCNRegPressure GCNScheduleDAGMILive::getRealRegPressure() const {
431 GCNDownwardRPTracker RPTracker(*LIS);
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000432 RPTracker.advance(begin(), end(), &LiveIns[RegionIdx]);
Stanislav Mekhanoshin464cecf2017-05-16 15:43:52 +0000433 return RPTracker.moveMaxPressure();
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000434}
435
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000436void GCNScheduleDAGMILive::computeBlockPressure(const MachineBasicBlock *MBB) {
437 GCNDownwardRPTracker RPTracker(*LIS);
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +0000438
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000439 // If the block has the only successor then live-ins of that successor are
440 // live-outs of the current block. We can reuse calculated live set if the
441 // successor will be sent to scheduling past current block.
442 const MachineBasicBlock *OnlySucc = nullptr;
443 if (MBB->succ_size() == 1 && !(*MBB->succ_begin())->empty()) {
444 SlotIndexes *Ind = LIS->getSlotIndexes();
445 if (Ind->getMBBStartIdx(MBB) < Ind->getMBBStartIdx(*MBB->succ_begin()))
446 OnlySucc = *MBB->succ_begin();
Stanislav Mekhanoshin357d3db2017-02-28 19:20:33 +0000447 }
Stanislav Mekhanoshinb1086072017-05-16 16:11:26 +0000448
449 // Scheduler sends regions from the end of the block upwards.
450 size_t CurRegion = RegionIdx;
451 for (size_t E = Regions.size(); CurRegion != E; ++CurRegion)
452 if (Regions[CurRegion].first->getParent() != MBB)
453 break;
454 --CurRegion;
455
456 auto I = MBB->begin();
457 auto LiveInIt = MBBLiveIns.find(MBB);
458 if (LiveInIt != MBBLiveIns.end()) {
459 auto LiveIn = std::move(LiveInIt->second);
460 RPTracker.reset(*MBB->begin(), &LiveIn);
461 MBBLiveIns.erase(LiveInIt);
462 } else {
463 I = Regions[CurRegion].first;
464 RPTracker.reset(*I);
465 }
466
467 for ( ; ; ) {
468 I = RPTracker.getNext();
469
470 if (Regions[CurRegion].first == I) {
471 LiveIns[CurRegion] = RPTracker.getLiveRegs();
472 RPTracker.clearMaxPressure();
473 }
474
475 if (Regions[CurRegion].second == I) {
476 Pressure[CurRegion] = RPTracker.moveMaxPressure();
477 if (CurRegion-- == RegionIdx)
478 break;
479 }
480 RPTracker.advanceToNext();
481 RPTracker.advanceBeforeNext();
482 }
483
484 if (OnlySucc) {
485 if (I != MBB->end()) {
486 RPTracker.advanceToNext();
487 RPTracker.advance(MBB->end());
488 }
489 RPTracker.reset(*OnlySucc->begin(), &RPTracker.getLiveRegs());
490 RPTracker.advanceBeforeNext();
491 MBBLiveIns[OnlySucc] = RPTracker.moveLiveRegs();
492 }
493}
494
495void GCNScheduleDAGMILive::finalizeSchedule() {
496 GCNMaxOccupancySchedStrategy &S = (GCNMaxOccupancySchedStrategy&)*SchedImpl;
497 DEBUG(dbgs() << "All regions recorded, starting actual scheduling.\n");
498
499 LiveIns.resize(Regions.size());
500 Pressure.resize(Regions.size());
501
502 do {
503 Stage++;
504 RegionIdx = 0;
505 MachineBasicBlock *MBB = nullptr;
506
507 if (Stage > 1) {
508 // Retry function scheduling if we found resulting occupancy and it is
509 // lower than used for first pass scheduling. This will give more freedom
510 // to schedule low register pressure blocks.
511 // Code is partially copied from MachineSchedulerBase::scheduleRegions().
512
513 if (!LIS || StartingOccupancy <= MinOccupancy)
514 break;
515
516 DEBUG(dbgs()
517 << "Retrying function scheduling with lowest recorded occupancy "
518 << MinOccupancy << ".\n");
519
520 S.setTargetOccupancy(MinOccupancy);
521 }
522
523 for (auto Region : Regions) {
524 RegionBegin = Region.first;
525 RegionEnd = Region.second;
526
527 if (RegionBegin->getParent() != MBB) {
528 if (MBB) finishBlock();
529 MBB = RegionBegin->getParent();
530 startBlock(MBB);
531 if (Stage == 1)
532 computeBlockPressure(MBB);
533 }
534
535 unsigned NumRegionInstrs = std::distance(begin(), end());
536 enterRegion(MBB, begin(), end(), NumRegionInstrs);
537
538 // Skip empty scheduling regions (0 or 1 schedulable instructions).
539 if (begin() == end() || begin() == std::prev(end())) {
540 exitRegion();
541 continue;
542 }
543
544 DEBUG(dbgs() << "********** MI Scheduling **********\n");
545 DEBUG(dbgs() << MF.getName()
546 << ":BB#" << MBB->getNumber() << " " << MBB->getName()
547 << "\n From: " << *begin() << " To: ";
548 if (RegionEnd != MBB->end()) dbgs() << *RegionEnd;
549 else dbgs() << "End";
550 dbgs() << " RegionInstrs: " << NumRegionInstrs << '\n');
551
552 schedule();
553
554 exitRegion();
555 ++RegionIdx;
556 }
557 finishBlock();
558
559 } while (Stage < 2);
Stanislav Mekhanoshin282e8e42017-02-28 17:22:39 +0000560}