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Valery Pykhtinfd4c4102017-03-21 13:15:46 +00001//===--------------------- GCNIterativeScheduler.cpp - --------------------===//
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//
12//===----------------------------------------------------------------------===//
13
14#include "GCNIterativeScheduler.h"
15#include "GCNSchedStrategy.h"
16#include "SIMachineFunctionInfo.h"
17
18using namespace llvm;
19
20#define DEBUG_TYPE "misched"
21
22namespace llvm {
23 std::vector<const SUnit*> makeMinRegSchedule(ArrayRef<const SUnit*> TopRoots,
24 const ScheduleDAG &DAG);
25}
26
27// shim accessors for different order containers
28static inline MachineInstr *getMachineInstr(MachineInstr *MI) {
29 return MI;
30}
31static inline MachineInstr *getMachineInstr(const SUnit *SU) {
32 return SU->getInstr();
33}
34static inline MachineInstr *getMachineInstr(const SUnit &SU) {
35 return SU.getInstr();
36}
37
38#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
39LLVM_DUMP_METHOD
40static void printRegion(raw_ostream &OS,
41 MachineBasicBlock::iterator Begin,
42 MachineBasicBlock::iterator End,
43 const LiveIntervals *LIS,
44 unsigned MaxInstNum =
45 std::numeric_limits<unsigned>::max()) {
46 auto BB = Begin->getParent();
47 OS << BB->getParent()->getName() << ":BB#" << BB->getNumber()
48 << ' ' << BB->getName() << ":\n";
49 auto I = Begin;
50 MaxInstNum = std::max(MaxInstNum, 1u);
51 for (; I != End && MaxInstNum; ++I, --MaxInstNum) {
52 if (!I->isDebugValue() && LIS)
53 OS << LIS->getInstructionIndex(*I);
54 OS << '\t' << *I;
55 }
56 if (I != End) {
57 OS << "\t...\n";
58 I = std::prev(End);
59 if (!I->isDebugValue() && LIS)
60 OS << LIS->getInstructionIndex(*I);
61 OS << '\t' << *I;
62 }
63 if (End != BB->end()) { // print boundary inst if present
64 OS << "----\n";
65 if (LIS) OS << LIS->getInstructionIndex(*End) << '\t';
66 OS << *End;
67 }
68}
69
70LLVM_DUMP_METHOD
71static void printLivenessInfo(raw_ostream &OS,
72 MachineBasicBlock::iterator Begin,
73 MachineBasicBlock::iterator End,
74 const LiveIntervals *LIS) {
75 const auto BB = Begin->getParent();
76 const auto &MRI = BB->getParent()->getRegInfo();
77
78 const auto LiveIns = getLiveRegsBefore(*Begin, *LIS);
79 OS << "LIn RP: ";
80 getRegPressure(MRI, LiveIns).print(OS);
81
82 const auto BottomMI = End == BB->end() ? std::prev(End) : End;
83 const auto LiveOuts = getLiveRegsAfter(*BottomMI, *LIS);
84 OS << "LOt RP: ";
85 getRegPressure(MRI, LiveOuts).print(OS);
86}
87
88LLVM_DUMP_METHOD
89void GCNIterativeScheduler::printRegions(raw_ostream &OS) const {
90 const auto &ST = MF.getSubtarget<SISubtarget>();
91 for (const auto R : Regions) {
92 OS << "Region to schedule ";
93 printRegion(OS, R->Begin, R->End, LIS, 1);
94 printLivenessInfo(OS, R->Begin, R->End, LIS);
95 OS << "Max RP: ";
96 R->MaxPressure.print(OS, &ST);
97 }
98}
99
100LLVM_DUMP_METHOD
101void GCNIterativeScheduler::printSchedResult(raw_ostream &OS,
102 const Region *R,
103 const GCNRegPressure &RP) const {
104 OS << "\nAfter scheduling ";
105 printRegion(OS, R->Begin, R->End, LIS);
106 printSchedRP(OS, R->MaxPressure, RP);
107 OS << '\n';
108}
109
110LLVM_DUMP_METHOD
111void GCNIterativeScheduler::printSchedRP(raw_ostream &OS,
112 const GCNRegPressure &Before,
113 const GCNRegPressure &After) const {
114 const auto &ST = MF.getSubtarget<SISubtarget>();
115 OS << "RP before: ";
116 Before.print(OS, &ST);
117 OS << "RP after: ";
118 After.print(OS, &ST);
119}
120
121#endif
122
123// DAG builder helper
124class GCNIterativeScheduler::BuildDAG {
125 GCNIterativeScheduler &Sch;
126 SmallVector<SUnit*, 8> TopRoots;
127public:
128 BuildDAG(const Region &R, GCNIterativeScheduler &_Sch)
129 : Sch(_Sch) {
130 auto BB = R.Begin->getParent();
131 Sch.BaseClass::startBlock(BB);
132 Sch.BaseClass::enterRegion(BB, R.Begin, R.End, R.NumRegionInstrs);
133
134 Sch.buildSchedGraph(Sch.AA, nullptr, nullptr, nullptr,
135 /*TrackLaneMask*/true);
136 Sch.Topo.InitDAGTopologicalSorting();
137
138 SmallVector<SUnit*, 8> BotRoots;
139 Sch.findRootsAndBiasEdges(TopRoots, BotRoots);
140 }
141 ~BuildDAG() {
142 Sch.BaseClass::exitRegion();
143 Sch.BaseClass::finishBlock();
144 }
145 ArrayRef<const SUnit*> getTopRoots() const {
146 return TopRoots;
147 }
148};
149
150class GCNIterativeScheduler::OverrideLegacyStrategy {
151 GCNIterativeScheduler &Sch;
152 Region &Rgn;
153 std::unique_ptr<MachineSchedStrategy> SaveSchedImpl;
154 GCNRegPressure SaveMaxRP;
155public:
156 OverrideLegacyStrategy(Region &R,
157 MachineSchedStrategy &OverrideStrategy,
158 GCNIterativeScheduler &_Sch)
159 : Sch(_Sch)
160 , Rgn(R)
161 , SaveSchedImpl(std::move(_Sch.SchedImpl))
162 , SaveMaxRP(R.MaxPressure) {
163 Sch.SchedImpl.reset(&OverrideStrategy);
164 auto BB = R.Begin->getParent();
165 Sch.BaseClass::startBlock(BB);
166 Sch.BaseClass::enterRegion(BB, R.Begin, R.End, R.NumRegionInstrs);
167 }
168 ~OverrideLegacyStrategy() {
169 Sch.BaseClass::exitRegion();
170 Sch.BaseClass::finishBlock();
171 Sch.SchedImpl.release();
172 Sch.SchedImpl = std::move(SaveSchedImpl);
173 }
174 void schedule() {
175 assert(Sch.RegionBegin == Rgn.Begin && Sch.RegionEnd == Rgn.End);
176 DEBUG(dbgs() << "\nScheduling ";
177 printRegion(dbgs(), Rgn.Begin, Rgn.End, Sch.LIS, 2));
178 Sch.BaseClass::schedule();
179
180 // Unfortunatelly placeDebugValues incorrectly modifies RegionEnd, restore
181 Sch.RegionEnd = Rgn.End;
182 //assert(Rgn.End == Sch.RegionEnd);
183 Rgn.Begin = Sch.RegionBegin;
184 Rgn.MaxPressure.clear();
185 }
186 void restoreOrder() {
187 assert(Sch.RegionBegin == Rgn.Begin && Sch.RegionEnd == Rgn.End);
188 // DAG SUnits are stored using original region's order
189 // so just use SUnits as the restoring schedule
190 Sch.scheduleRegion(Rgn, Sch.SUnits, SaveMaxRP);
191 }
192};
193
194// just a stub to make base class happy
195class SchedStrategyStub : public MachineSchedStrategy {
196public:
197 bool shouldTrackPressure() const override { return false; }
198 bool shouldTrackLaneMasks() const override { return false; }
199 void initialize(ScheduleDAGMI *DAG) override {}
200 SUnit *pickNode(bool &IsTopNode) override { return nullptr; }
201 void schedNode(SUnit *SU, bool IsTopNode) override {}
202 void releaseTopNode(SUnit *SU) override {}
203 void releaseBottomNode(SUnit *SU) override {}
204};
205
206GCNIterativeScheduler::GCNIterativeScheduler(MachineSchedContext *C,
207 StrategyKind S)
208 : BaseClass(C, llvm::make_unique<SchedStrategyStub>())
209 , Context(C)
210 , Strategy(S)
211 , UPTracker(*LIS) {
212}
213
214// returns max pressure for a region
215GCNRegPressure
216GCNIterativeScheduler::getRegionPressure(MachineBasicBlock::iterator Begin,
217 MachineBasicBlock::iterator End)
218 const {
219 // For the purpose of pressure tracking bottom inst of the region should
220 // be also processed. End is either BB end, BB terminator inst or sched
221 // boundary inst.
222 auto const BBEnd = Begin->getParent()->end();
223 auto const BottomMI = End == BBEnd ? std::prev(End) : End;
224
225 // scheduleRegions walks bottom to top, so its likely we just get next
226 // instruction to track
227 auto AfterBottomMI = std::next(BottomMI);
228 if (AfterBottomMI == BBEnd ||
229 &*AfterBottomMI != UPTracker.getLastTrackedMI()) {
230 UPTracker.reset(*BottomMI);
231 } else {
232 assert(UPTracker.isValid());
233 }
234
235 for (auto I = BottomMI; I != Begin; --I)
236 UPTracker.recede(*I);
237
238 UPTracker.recede(*Begin);
239
240 assert(UPTracker.isValid() ||
241 (dbgs() << "Tracked region ",
242 printRegion(dbgs(), Begin, End, LIS), false));
243 return UPTracker.moveMaxPressure();
244}
245
246// returns max pressure for a tentative schedule
247template <typename Range> GCNRegPressure
248GCNIterativeScheduler::getSchedulePressure(const Region &R,
249 Range &&Schedule) const {
250 auto const BBEnd = R.Begin->getParent()->end();
251 GCNUpwardRPTracker RPTracker(*LIS);
252 if (R.End != BBEnd) {
253 // R.End points to the boundary instruction but the
254 // schedule doesn't include it
255 RPTracker.reset(*R.End);
256 RPTracker.recede(*R.End);
257 } else {
258 // R.End doesn't point to the boundary instruction
259 RPTracker.reset(*std::prev(BBEnd));
260 }
261 for (auto I = Schedule.end(), B = Schedule.begin(); I != B;) {
262 RPTracker.recede(*getMachineInstr(*--I));
263 }
264 return RPTracker.moveMaxPressure();
265}
266
267void GCNIterativeScheduler::enterRegion(MachineBasicBlock *BB, // overriden
268 MachineBasicBlock::iterator Begin,
269 MachineBasicBlock::iterator End,
270 unsigned NumRegionInstrs) {
271 BaseClass::enterRegion(BB, Begin, End, NumRegionInstrs);
272 if (NumRegionInstrs > 2) {
273 Regions.push_back(
274 new (Alloc.Allocate())
275 Region { Begin, End, NumRegionInstrs,
276 getRegionPressure(Begin, End), nullptr });
277 }
278}
279
280void GCNIterativeScheduler::schedule() { // overriden
281 // do nothing
282 DEBUG(
283 printLivenessInfo(dbgs(), RegionBegin, RegionEnd, LIS);
284 if (!Regions.empty() && Regions.back()->Begin == RegionBegin) {
285 dbgs() << "Max RP: ";
286 Regions.back()->MaxPressure.print(dbgs(), &MF.getSubtarget<SISubtarget>());
287 }
288 dbgs() << '\n';
289 );
290}
291
292void GCNIterativeScheduler::finalizeSchedule() { // overriden
293 if (Regions.empty())
294 return;
295 switch (Strategy) {
296 case SCHEDULE_MINREGONLY: scheduleMinReg(); break;
297 case SCHEDULE_MINREGFORCED: scheduleMinReg(true); break;
298 case SCHEDULE_LEGACYMAXOCCUPANCY: scheduleLegacyMaxOccupancy(); break;
299 }
300}
301
302// Detach schedule from SUnits and interleave it with debug values.
303// Returned schedule becomes independent of DAG state.
304std::vector<MachineInstr*>
305GCNIterativeScheduler::detachSchedule(ScheduleRef Schedule) const {
306 std::vector<MachineInstr*> Res;
307 Res.reserve(Schedule.size() * 2);
308
309 if (FirstDbgValue)
310 Res.push_back(FirstDbgValue);
311
312 const auto DbgB = DbgValues.begin(), DbgE = DbgValues.end();
313 for (auto SU : Schedule) {
314 Res.push_back(SU->getInstr());
315 const auto &D = std::find_if(DbgB, DbgE, [SU](decltype(*DbgB) &P) {
316 return P.second == SU->getInstr();
317 });
318 if (D != DbgE)
319 Res.push_back(D->first);
320 }
321 return Res;
322}
323
324void GCNIterativeScheduler::setBestSchedule(Region &R,
325 ScheduleRef Schedule,
326 const GCNRegPressure &MaxRP) {
327 R.BestSchedule.reset(
328 new TentativeSchedule{ detachSchedule(Schedule), MaxRP });
329}
330
331void GCNIterativeScheduler::scheduleBest(Region &R) {
332 assert(R.BestSchedule.get() && "No schedule specified");
333 scheduleRegion(R, R.BestSchedule->Schedule, R.BestSchedule->MaxPressure);
334 R.BestSchedule.reset();
335}
336
337// minimal required region scheduler, works for ranges of SUnits*,
338// SUnits or MachineIntrs*
339template <typename Range>
340void GCNIterativeScheduler::scheduleRegion(Region &R, Range &&Schedule,
341 const GCNRegPressure &MaxRP) {
342 assert(RegionBegin == R.Begin && RegionEnd == R.End);
343 assert(LIS != nullptr);
344#ifndef NDEBUG
345 const auto SchedMaxRP = getSchedulePressure(R, Schedule);
346#endif
347 auto BB = R.Begin->getParent();
348 auto Top = R.Begin;
349 for (const auto &I : Schedule) {
350 auto MI = getMachineInstr(I);
351 if (MI != &*Top) {
352 BB->remove(MI);
353 BB->insert(Top, MI);
354 if (!MI->isDebugValue())
355 LIS->handleMove(*MI, true);
356 }
357 if (!MI->isDebugValue()) {
358 // Reset read - undef flags and update them later.
359 for (auto &Op : MI->operands())
360 if (Op.isReg() && Op.isDef())
361 Op.setIsUndef(false);
362
363 RegisterOperands RegOpers;
364 RegOpers.collect(*MI, *TRI, MRI, /*ShouldTrackLaneMasks*/true,
365 /*IgnoreDead*/false);
366 // Adjust liveness and add missing dead+read-undef flags.
367 auto SlotIdx = LIS->getInstructionIndex(*MI).getRegSlot();
368 RegOpers.adjustLaneLiveness(*LIS, MRI, SlotIdx, MI);
369 }
370 Top = std::next(MI->getIterator());
371 }
372 RegionBegin = getMachineInstr(Schedule.front());
373
374 // Schedule consisting of MachineInstr* is considered 'detached'
375 // and already interleaved with debug values
376 if (!std::is_same<decltype(*Schedule.begin()), MachineInstr*>::value) {
377 placeDebugValues();
378 // Unfortunatelly placeDebugValues incorrectly modifies RegionEnd, restore
379 //assert(R.End == RegionEnd);
380 RegionEnd = R.End;
381 }
382
383 R.Begin = RegionBegin;
384 R.MaxPressure = MaxRP;
385
386#ifndef NDEBUG
387 const auto RegionMaxRP = getRegionPressure(R);
388 const auto &ST = MF.getSubtarget<SISubtarget>();
389#endif
390 assert((SchedMaxRP == RegionMaxRP && (MaxRP.empty() || SchedMaxRP == MaxRP))
391 || (dbgs() << "Max RP mismatch!!!\n"
392 "RP for schedule (calculated): ",
393 SchedMaxRP.print(dbgs(), &ST),
394 dbgs() << "RP for schedule (reported): ",
395 MaxRP.print(dbgs(), &ST),
396 dbgs() << "RP after scheduling: ",
397 RegionMaxRP.print(dbgs(), &ST),
398 false));
399}
400
401// Sort recorded regions by pressure - highest at the front
402void GCNIterativeScheduler::sortRegionsByPressure(unsigned TargetOcc) {
403 const auto &ST = MF.getSubtarget<SISubtarget>();
404 std::sort(Regions.begin(), Regions.end(),
405 [&ST, TargetOcc](const Region *R1, const Region *R2) {
406 return R2->MaxPressure.less(ST, R1->MaxPressure, TargetOcc);
407 });
408}
409
410///////////////////////////////////////////////////////////////////////////////
411// Legacy MaxOccupancy Strategy
412
413// Tries to increase occupancy applying minreg scheduler for a sequence of
414// most demanding regions. Obtained schedules are saved as BestSchedule for a
415// region.
416// TargetOcc is the best achievable occupancy for a kernel.
417// Returns better occupancy on success or current occupancy on fail.
418// BestSchedules aren't deleted on fail.
419unsigned GCNIterativeScheduler::tryMaximizeOccupancy(unsigned TargetOcc) {
420 // TODO: assert Regions are sorted descending by pressure
421 const auto &ST = MF.getSubtarget<SISubtarget>();
422 const auto Occ = Regions.front()->MaxPressure.getOccupancy(ST);
423 DEBUG(dbgs() << "Trying to to improve occupancy, target = " << TargetOcc
424 << ", current = " << Occ << '\n');
425
426 auto NewOcc = TargetOcc;
427 for (auto R : Regions) {
428 if (R->MaxPressure.getOccupancy(ST) >= NewOcc)
429 break;
430
431 DEBUG(printRegion(dbgs(), R->Begin, R->End, LIS, 3);
432 printLivenessInfo(dbgs(), R->Begin, R->End, LIS));
433
434 BuildDAG DAG(*R, *this);
435 const auto MinSchedule = makeMinRegSchedule(DAG.getTopRoots(), *this);
436 const auto MaxRP = getSchedulePressure(*R, MinSchedule);
437 DEBUG(dbgs() << "Occupancy improvement attempt:\n";
438 printSchedRP(dbgs(), R->MaxPressure, MaxRP));
439
440 NewOcc = std::min(NewOcc, MaxRP.getOccupancy(ST));
441 if (NewOcc <= Occ)
442 break;
443
444 setBestSchedule(*R, MinSchedule, MaxRP);
445 }
446 DEBUG(dbgs() << "New occupancy = " << NewOcc
447 << ", prev occupancy = " << Occ << '\n');
448 return std::max(NewOcc, Occ);
449}
450
451void GCNIterativeScheduler::scheduleLegacyMaxOccupancy(
452 bool TryMaximizeOccupancy) {
453 const auto &ST = MF.getSubtarget<SISubtarget>();
454 auto TgtOcc = ST.getOccupancyWithLocalMemSize(MF);
455
456 sortRegionsByPressure(TgtOcc);
457 auto Occ = Regions.front()->MaxPressure.getOccupancy(ST);
458
459 if (TryMaximizeOccupancy && Occ < TgtOcc)
460 Occ = tryMaximizeOccupancy(TgtOcc);
461
462 // This is really weird but for some magic scheduling regions twice
463 // gives performance improvement
464 const int NumPasses = Occ < TgtOcc ? 2 : 1;
465
466 TgtOcc = std::min(Occ, TgtOcc);
467 DEBUG(dbgs() << "Scheduling using default scheduler, "
468 "target occupancy = " << TgtOcc << '\n');
469 GCNMaxOccupancySchedStrategy LStrgy(Context);
470
471 for (int I = 0; I < NumPasses; ++I) {
472 // running first pass with TargetOccupancy = 0 mimics previous scheduling
473 // approach and is a performance magic
474 LStrgy.setTargetOccupancy(I == 0 ? 0 : TgtOcc);
475 for (auto R : Regions) {
476 OverrideLegacyStrategy Ovr(*R, LStrgy, *this);
477
478 Ovr.schedule();
479 const auto RP = getRegionPressure(*R);
480 DEBUG(printSchedRP(dbgs(), R->MaxPressure, RP));
481
482 if (RP.getOccupancy(ST) < TgtOcc) {
483 DEBUG(dbgs() << "Didn't fit into target occupancy O" << TgtOcc);
484 if (R->BestSchedule.get() &&
485 R->BestSchedule->MaxPressure.getOccupancy(ST) >= TgtOcc) {
486 DEBUG(dbgs() << ", scheduling minimal register\n");
487 scheduleBest(*R);
488 } else {
489 DEBUG(dbgs() << ", restoring\n");
490 Ovr.restoreOrder();
491 assert(R->MaxPressure.getOccupancy(ST) >= TgtOcc);
492 }
493 }
494 }
495 }
496}
497
498///////////////////////////////////////////////////////////////////////////////
499// Minimal Register Strategy
500
501void GCNIterativeScheduler::scheduleMinReg(bool force) {
502 const auto &ST = MF.getSubtarget<SISubtarget>();
503 const auto TgtOcc = ST.getOccupancyWithLocalMemSize(MF);
504 sortRegionsByPressure(TgtOcc);
505
506 auto MaxPressure = Regions.front()->MaxPressure;
507 for (auto R : Regions) {
508 if (!force && R->MaxPressure.less(ST, MaxPressure, TgtOcc))
509 break;
510
511 BuildDAG DAG(*R, *this);
512 const auto MinSchedule = makeMinRegSchedule(DAG.getTopRoots(), *this);
513
514 const auto RP = getSchedulePressure(*R, MinSchedule);
515 DEBUG(if (R->MaxPressure.less(ST, RP, TgtOcc)) {
516 dbgs() << "\nWarning: Pressure becomes worse after minreg!";
517 printSchedRP(dbgs(), R->MaxPressure, RP);
518 });
519
520 if (!force && MaxPressure.less(ST, RP, TgtOcc))
521 break;
522
523 scheduleRegion(*R, MinSchedule, RP);
524 DEBUG(printSchedResult(dbgs(), R, RP));
525
526 MaxPressure = RP;
527 }
528}