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Chris Lattner78f62e32004-07-23 17:49:16 +00001//===-- LiveInterval.cpp - Live Interval Representation -------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattnerf3ebc3f2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Chris Lattner78f62e32004-07-23 17:49:16 +00007//
8//===----------------------------------------------------------------------===//
9//
Matthias Braund7df9352013-10-10 21:28:47 +000010// This file implements the LiveRange and LiveInterval classes. Given some
Chris Lattner78f62e32004-07-23 17:49:16 +000011// numbering of each the machine instructions an interval [i, j) is said to be a
Matthias Braund7df9352013-10-10 21:28:47 +000012// live range for register v if there is no instruction with number j' >= j
Bob Wilson5b562902010-01-12 22:18:56 +000013// such that v is live at j' and there is no instruction with number i' < i such
Matthias Braund7df9352013-10-10 21:28:47 +000014// that v is live at i'. In this implementation ranges can have holes,
15// i.e. a range might look like [1,20), [50,65), [1000,1001). Each
16// individual segment is represented as an instance of LiveRange::Segment,
17// and the whole range is represented as an instance of LiveRange.
Chris Lattner78f62e32004-07-23 17:49:16 +000018//
19//===----------------------------------------------------------------------===//
20
Bill Wendling3f6f0fd2006-11-28 02:08:17 +000021#include "llvm/CodeGen/LiveInterval.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000022#include "RegisterCoalescer.h"
23#include "llvm/ADT/DenseMap.h"
24#include "llvm/ADT/STLExtras.h"
25#include "llvm/ADT/SmallSet.h"
Lang Hames05fb9632009-11-03 23:52:08 +000026#include "llvm/CodeGen/LiveIntervalAnalysis.h"
Evan Cheng085caf12009-06-14 20:22:55 +000027#include "llvm/CodeGen/MachineRegisterInfo.h"
David Greenec2155322010-01-04 22:41:43 +000028#include "llvm/Support/Debug.h"
Daniel Dunbarf26e7402009-07-24 10:47:20 +000029#include "llvm/Support/raw_ostream.h"
Dan Gohman3a4be0f2008-02-10 18:45:23 +000030#include "llvm/Target/TargetRegisterInfo.h"
Alkis Evlogimenosfc59e0e2004-09-28 02:38:58 +000031#include <algorithm>
Chris Lattner78f62e32004-07-23 17:49:16 +000032using namespace llvm;
33
Benjamin Kramer51f6096c2015-03-23 12:30:58 +000034namespace {
Quentin Colombeta8cb36e2015-02-06 18:42:41 +000035//===----------------------------------------------------------------------===//
36// Implementation of various methods necessary for calculation of live ranges.
37// The implementation of the methods abstracts from the concrete type of the
38// segment collection.
39//
40// Implementation of the class follows the Template design pattern. The base
41// class contains generic algorithms that call collection-specific methods,
42// which are provided in concrete subclasses. In order to avoid virtual calls
43// these methods are provided by means of C++ template instantiation.
44// The base class calls the methods of the subclass through method impl(),
45// which casts 'this' pointer to the type of the subclass.
46//
47//===----------------------------------------------------------------------===//
48
49template <typename ImplT, typename IteratorT, typename CollectionT>
50class CalcLiveRangeUtilBase {
51protected:
52 LiveRange *LR;
53
54protected:
55 CalcLiveRangeUtilBase(LiveRange *LR) : LR(LR) {}
56
57public:
58 typedef LiveRange::Segment Segment;
59 typedef IteratorT iterator;
60
61 VNInfo *createDeadDef(SlotIndex Def, VNInfo::Allocator &VNInfoAllocator) {
62 assert(!Def.isDead() && "Cannot define a value at the dead slot");
63
64 iterator I = impl().find(Def);
65 if (I == segments().end()) {
66 VNInfo *VNI = LR->getNextValue(Def, VNInfoAllocator);
67 impl().insertAtEnd(Segment(Def, Def.getDeadSlot(), VNI));
68 return VNI;
69 }
70
71 Segment *S = segmentAt(I);
72 if (SlotIndex::isSameInstr(Def, S->start)) {
73 assert(S->valno->def == S->start && "Inconsistent existing value def");
74
75 // It is possible to have both normal and early-clobber defs of the same
76 // register on an instruction. It doesn't make a lot of sense, but it is
77 // possible to specify in inline assembly.
78 //
79 // Just convert everything to early-clobber.
80 Def = std::min(Def, S->start);
81 if (Def != S->start)
82 S->start = S->valno->def = Def;
83 return S->valno;
84 }
85 assert(SlotIndex::isEarlierInstr(Def, S->start) && "Already live at def");
86 VNInfo *VNI = LR->getNextValue(Def, VNInfoAllocator);
87 segments().insert(I, Segment(Def, Def.getDeadSlot(), VNI));
88 return VNI;
89 }
90
Matthias Braun11042c82015-02-18 01:50:52 +000091 VNInfo *extendInBlock(SlotIndex StartIdx, SlotIndex Use) {
Quentin Colombeta8cb36e2015-02-06 18:42:41 +000092 if (segments().empty())
93 return nullptr;
94 iterator I =
Matthias Braun11042c82015-02-18 01:50:52 +000095 impl().findInsertPos(Segment(Use.getPrevSlot(), Use, nullptr));
Quentin Colombeta8cb36e2015-02-06 18:42:41 +000096 if (I == segments().begin())
97 return nullptr;
98 --I;
99 if (I->end <= StartIdx)
100 return nullptr;
Matthias Braun11042c82015-02-18 01:50:52 +0000101 if (I->end < Use)
102 extendSegmentEndTo(I, Use);
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000103 return I->valno;
104 }
105
106 /// This method is used when we want to extend the segment specified
107 /// by I to end at the specified endpoint. To do this, we should
108 /// merge and eliminate all segments that this will overlap
109 /// with. The iterator is not invalidated.
110 void extendSegmentEndTo(iterator I, SlotIndex NewEnd) {
111 assert(I != segments().end() && "Not a valid segment!");
112 Segment *S = segmentAt(I);
113 VNInfo *ValNo = I->valno;
114
115 // Search for the first segment that we can't merge with.
116 iterator MergeTo = std::next(I);
117 for (; MergeTo != segments().end() && NewEnd >= MergeTo->end; ++MergeTo)
118 assert(MergeTo->valno == ValNo && "Cannot merge with differing values!");
119
120 // If NewEnd was in the middle of a segment, make sure to get its endpoint.
121 S->end = std::max(NewEnd, std::prev(MergeTo)->end);
122
123 // If the newly formed segment now touches the segment after it and if they
124 // have the same value number, merge the two segments into one segment.
125 if (MergeTo != segments().end() && MergeTo->start <= I->end &&
126 MergeTo->valno == ValNo) {
127 S->end = MergeTo->end;
128 ++MergeTo;
129 }
130
131 // Erase any dead segments.
132 segments().erase(std::next(I), MergeTo);
133 }
134
135 /// This method is used when we want to extend the segment specified
136 /// by I to start at the specified endpoint. To do this, we should
137 /// merge and eliminate all segments that this will overlap with.
138 iterator extendSegmentStartTo(iterator I, SlotIndex NewStart) {
139 assert(I != segments().end() && "Not a valid segment!");
140 Segment *S = segmentAt(I);
141 VNInfo *ValNo = I->valno;
142
143 // Search for the first segment that we can't merge with.
144 iterator MergeTo = I;
145 do {
146 if (MergeTo == segments().begin()) {
147 S->start = NewStart;
148 segments().erase(MergeTo, I);
149 return I;
150 }
151 assert(MergeTo->valno == ValNo && "Cannot merge with differing values!");
152 --MergeTo;
153 } while (NewStart <= MergeTo->start);
154
155 // If we start in the middle of another segment, just delete a range and
156 // extend that segment.
157 if (MergeTo->end >= NewStart && MergeTo->valno == ValNo) {
158 segmentAt(MergeTo)->end = S->end;
159 } else {
160 // Otherwise, extend the segment right after.
161 ++MergeTo;
162 Segment *MergeToSeg = segmentAt(MergeTo);
163 MergeToSeg->start = NewStart;
164 MergeToSeg->end = S->end;
165 }
166
167 segments().erase(std::next(MergeTo), std::next(I));
168 return MergeTo;
169 }
170
171 iterator addSegment(Segment S) {
172 SlotIndex Start = S.start, End = S.end;
173 iterator I = impl().findInsertPos(S);
174
175 // If the inserted segment starts in the middle or right at the end of
176 // another segment, just extend that segment to contain the segment of S.
177 if (I != segments().begin()) {
178 iterator B = std::prev(I);
179 if (S.valno == B->valno) {
180 if (B->start <= Start && B->end >= Start) {
181 extendSegmentEndTo(B, End);
182 return B;
183 }
184 } else {
185 // Check to make sure that we are not overlapping two live segments with
186 // different valno's.
187 assert(B->end <= Start &&
188 "Cannot overlap two segments with differing ValID's"
189 " (did you def the same reg twice in a MachineInstr?)");
190 }
191 }
192
193 // Otherwise, if this segment ends in the middle of, or right next
194 // to, another segment, merge it into that segment.
195 if (I != segments().end()) {
196 if (S.valno == I->valno) {
197 if (I->start <= End) {
198 I = extendSegmentStartTo(I, Start);
199
200 // If S is a complete superset of a segment, we may need to grow its
201 // endpoint as well.
202 if (End > I->end)
203 extendSegmentEndTo(I, End);
204 return I;
205 }
206 } else {
207 // Check to make sure that we are not overlapping two live segments with
208 // different valno's.
209 assert(I->start >= End &&
210 "Cannot overlap two segments with differing ValID's");
211 }
212 }
213
214 // Otherwise, this is just a new segment that doesn't interact with
215 // anything.
216 // Insert it.
217 return segments().insert(I, S);
218 }
219
220private:
221 ImplT &impl() { return *static_cast<ImplT *>(this); }
222
223 CollectionT &segments() { return impl().segmentsColl(); }
224
225 Segment *segmentAt(iterator I) { return const_cast<Segment *>(&(*I)); }
226};
227
228//===----------------------------------------------------------------------===//
229// Instantiation of the methods for calculation of live ranges
230// based on a segment vector.
231//===----------------------------------------------------------------------===//
232
233class CalcLiveRangeUtilVector;
234typedef CalcLiveRangeUtilBase<CalcLiveRangeUtilVector, LiveRange::iterator,
235 LiveRange::Segments> CalcLiveRangeUtilVectorBase;
236
237class CalcLiveRangeUtilVector : public CalcLiveRangeUtilVectorBase {
238public:
239 CalcLiveRangeUtilVector(LiveRange *LR) : CalcLiveRangeUtilVectorBase(LR) {}
240
241private:
242 friend CalcLiveRangeUtilVectorBase;
243
244 LiveRange::Segments &segmentsColl() { return LR->segments; }
245
246 void insertAtEnd(const Segment &S) { LR->segments.push_back(S); }
247
248 iterator find(SlotIndex Pos) { return LR->find(Pos); }
249
250 iterator findInsertPos(Segment S) {
251 return std::upper_bound(LR->begin(), LR->end(), S.start);
252 }
253};
254
255//===----------------------------------------------------------------------===//
256// Instantiation of the methods for calculation of live ranges
257// based on a segment set.
258//===----------------------------------------------------------------------===//
259
260class CalcLiveRangeUtilSet;
261typedef CalcLiveRangeUtilBase<CalcLiveRangeUtilSet,
262 LiveRange::SegmentSet::iterator,
263 LiveRange::SegmentSet> CalcLiveRangeUtilSetBase;
264
265class CalcLiveRangeUtilSet : public CalcLiveRangeUtilSetBase {
266public:
267 CalcLiveRangeUtilSet(LiveRange *LR) : CalcLiveRangeUtilSetBase(LR) {}
268
269private:
270 friend CalcLiveRangeUtilSetBase;
271
272 LiveRange::SegmentSet &segmentsColl() { return *LR->segmentSet; }
273
274 void insertAtEnd(const Segment &S) {
275 LR->segmentSet->insert(LR->segmentSet->end(), S);
276 }
277
278 iterator find(SlotIndex Pos) {
279 iterator I =
280 LR->segmentSet->upper_bound(Segment(Pos, Pos.getNextSlot(), nullptr));
281 if (I == LR->segmentSet->begin())
282 return I;
283 iterator PrevI = std::prev(I);
284 if (Pos < (*PrevI).end)
285 return PrevI;
286 return I;
287 }
288
289 iterator findInsertPos(Segment S) {
290 iterator I = LR->segmentSet->upper_bound(S);
291 if (I != LR->segmentSet->end() && !(S.start < *I))
292 ++I;
293 return I;
294 }
295};
Benjamin Kramer51f6096c2015-03-23 12:30:58 +0000296} // namespace
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000297
298//===----------------------------------------------------------------------===//
299// LiveRange methods
300//===----------------------------------------------------------------------===//
301
Matthias Braund7df9352013-10-10 21:28:47 +0000302LiveRange::iterator LiveRange::find(SlotIndex Pos) {
Jakob Stoklund Olesendae1dc12011-03-12 01:50:35 +0000303 // This algorithm is basically std::upper_bound.
304 // Unfortunately, std::upper_bound cannot be used with mixed types until we
305 // adopt C++0x. Many libraries can do it, but not all.
306 if (empty() || Pos >= endIndex())
307 return end();
308 iterator I = begin();
Matthias Braun305ef7f2013-09-06 16:44:32 +0000309 size_t Len = size();
Jakob Stoklund Olesendae1dc12011-03-12 01:50:35 +0000310 do {
311 size_t Mid = Len >> 1;
312 if (Pos < I[Mid].end)
313 Len = Mid;
314 else
315 I += Mid + 1, Len -= Mid + 1;
316 } while (Len);
317 return I;
Jakob Stoklund Olesen55d738e22010-06-25 22:53:05 +0000318}
319
Matthias Braund7df9352013-10-10 21:28:47 +0000320VNInfo *LiveRange::createDeadDef(SlotIndex Def,
321 VNInfo::Allocator &VNInfoAllocator) {
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000322 // Use the segment set, if it is available.
323 if (segmentSet != nullptr)
324 return CalcLiveRangeUtilSet(this).createDeadDef(Def, VNInfoAllocator);
325 // Otherwise use the segment vector.
326 return CalcLiveRangeUtilVector(this).createDeadDef(Def, VNInfoAllocator);
Jakob Stoklund Olesen989b3b12012-06-05 21:54:09 +0000327}
328
Matthias Braund7df9352013-10-10 21:28:47 +0000329// overlaps - Return true if the intersection of the two live ranges is
Chris Lattnercb0c9652004-11-18 03:47:34 +0000330// not empty.
331//
Chris Lattner78f62e32004-07-23 17:49:16 +0000332// An example for overlaps():
333//
334// 0: A = ...
335// 4: B = ...
336// 8: C = A + B ;; last use of A
337//
Matthias Braund7df9352013-10-10 21:28:47 +0000338// The live ranges should look like:
Chris Lattner78f62e32004-07-23 17:49:16 +0000339//
340// A = [3, 11)
341// B = [7, x)
342// C = [11, y)
343//
344// A->overlaps(C) should return false since we want to be able to join
345// A and C.
Chris Lattnercb0c9652004-11-18 03:47:34 +0000346//
Matthias Braund7df9352013-10-10 21:28:47 +0000347bool LiveRange::overlapsFrom(const LiveRange& other,
348 const_iterator StartPos) const {
349 assert(!empty() && "empty range");
Chris Lattnercb0c9652004-11-18 03:47:34 +0000350 const_iterator i = begin();
351 const_iterator ie = end();
352 const_iterator j = StartPos;
353 const_iterator je = other.end();
354
355 assert((StartPos->start <= i->start || StartPos == other.begin()) &&
Chris Lattner7598c312004-11-18 04:02:11 +0000356 StartPos != other.end() && "Bogus start position hint!");
Chris Lattnerccc75d4f2004-07-25 07:11:19 +0000357
Chris Lattner78f62e32004-07-23 17:49:16 +0000358 if (i->start < j->start) {
Chris Lattner2fcc5e42004-07-23 18:40:00 +0000359 i = std::upper_bound(i, ie, j->start);
Matthias Braun305ef7f2013-09-06 16:44:32 +0000360 if (i != begin()) --i;
Chris Lattner2fcc5e42004-07-23 18:40:00 +0000361 } else if (j->start < i->start) {
Chris Lattner5684f482004-12-04 01:22:09 +0000362 ++StartPos;
363 if (StartPos != other.end() && StartPos->start <= i->start) {
364 assert(StartPos < other.end() && i < end());
Chris Lattner7598c312004-11-18 04:02:11 +0000365 j = std::upper_bound(j, je, i->start);
Matthias Braun305ef7f2013-09-06 16:44:32 +0000366 if (j != other.begin()) --j;
Chris Lattner7598c312004-11-18 04:02:11 +0000367 }
Chris Lattner2fcc5e42004-07-23 18:40:00 +0000368 } else {
369 return true;
Chris Lattner78f62e32004-07-23 17:49:16 +0000370 }
371
Chris Lattnere3b9cb92004-11-18 05:28:21 +0000372 if (j == je) return false;
373
374 while (i != ie) {
Chris Lattner78f62e32004-07-23 17:49:16 +0000375 if (i->start > j->start) {
Alkis Evlogimenoscf72e7f2004-07-24 11:44:15 +0000376 std::swap(i, j);
377 std::swap(ie, je);
Chris Lattner78f62e32004-07-23 17:49:16 +0000378 }
Chris Lattner78f62e32004-07-23 17:49:16 +0000379
380 if (i->end > j->start)
381 return true;
382 ++i;
383 }
384
385 return false;
386}
387
Matthias Braund7df9352013-10-10 21:28:47 +0000388bool LiveRange::overlaps(const LiveRange &Other, const CoalescerPair &CP,
389 const SlotIndexes &Indexes) const {
390 assert(!empty() && "empty range");
Jakob Stoklund Olesen866908c2012-09-06 18:15:23 +0000391 if (Other.empty())
392 return false;
393
394 // Use binary searches to find initial positions.
395 const_iterator I = find(Other.beginIndex());
396 const_iterator IE = end();
397 if (I == IE)
398 return false;
399 const_iterator J = Other.find(I->start);
400 const_iterator JE = Other.end();
401 if (J == JE)
402 return false;
403
404 for (;;) {
405 // J has just been advanced to satisfy:
406 assert(J->end >= I->start);
407 // Check for an overlap.
408 if (J->start < I->end) {
409 // I and J are overlapping. Find the later start.
410 SlotIndex Def = std::max(I->start, J->start);
411 // Allow the overlap if Def is a coalescable copy.
412 if (Def.isBlock() ||
413 !CP.isCoalescable(Indexes.getInstructionFromIndex(Def)))
414 return true;
415 }
416 // Advance the iterator that ends first to check for more overlaps.
417 if (J->end > I->end) {
418 std::swap(I, J);
419 std::swap(IE, JE);
420 }
421 // Advance J until J->end >= I->start.
422 do
423 if (++J == JE)
424 return false;
425 while (J->end < I->start);
426 }
427}
428
Matthias Braund7df9352013-10-10 21:28:47 +0000429/// overlaps - Return true if the live range overlaps an interval specified
Evan Chengb685be02009-04-18 08:52:15 +0000430/// by [Start, End).
Matthias Braund7df9352013-10-10 21:28:47 +0000431bool LiveRange::overlaps(SlotIndex Start, SlotIndex End) const {
Evan Chengb685be02009-04-18 08:52:15 +0000432 assert(Start < End && "Invalid range");
Jakob Stoklund Olesenb43455f2010-07-13 19:42:20 +0000433 const_iterator I = std::lower_bound(begin(), end(), End);
434 return I != begin() && (--I)->end > Start;
Evan Chengb685be02009-04-18 08:52:15 +0000435}
436
Matthias Braune62c2072014-12-10 01:12:06 +0000437bool LiveRange::covers(const LiveRange &Other) const {
438 if (empty())
439 return Other.empty();
440
441 const_iterator I = begin();
Matthias Braun96761952014-12-10 23:07:54 +0000442 for (const Segment &O : Other.segments) {
443 I = advanceTo(I, O.start);
444 if (I == end() || I->start > O.start)
Matthias Braune62c2072014-12-10 01:12:06 +0000445 return false;
446
Matthias Braun96761952014-12-10 23:07:54 +0000447 // Check adjacent live segments and see if we can get behind O.end.
448 while (I->end < O.end) {
Matthias Braune62c2072014-12-10 01:12:06 +0000449 const_iterator Last = I;
450 // Get next segment and abort if it was not adjacent.
451 ++I;
452 if (I == end() || Last->end != I->start)
453 return false;
454 }
455 }
456 return true;
457}
Lang Hames2e3f20b2010-07-26 01:49:41 +0000458
459/// ValNo is dead, remove it. If it is the largest value number, just nuke it
460/// (and any other deleted values neighboring it), otherwise mark it as ~1U so
461/// it can be nuked later.
Matthias Braund7df9352013-10-10 21:28:47 +0000462void LiveRange::markValNoForDeletion(VNInfo *ValNo) {
Lang Hames2e3f20b2010-07-26 01:49:41 +0000463 if (ValNo->id == getNumValNums()-1) {
464 do {
465 valnos.pop_back();
466 } while (!valnos.empty() && valnos.back()->isUnused());
467 } else {
Jakob Stoklund Olesendaae19f2012-08-03 20:59:32 +0000468 ValNo->markUnused();
Lang Hames2e3f20b2010-07-26 01:49:41 +0000469 }
470}
471
Jakob Stoklund Olesen8c0f6932010-08-06 18:46:59 +0000472/// RenumberValues - Renumber all values in order of appearance and delete the
473/// remaining unused values.
Matthias Braund7df9352013-10-10 21:28:47 +0000474void LiveRange::RenumberValues() {
Jakob Stoklund Olesen8c0f6932010-08-06 18:46:59 +0000475 SmallPtrSet<VNInfo*, 8> Seen;
476 valnos.clear();
Matthias Braun96761952014-12-10 23:07:54 +0000477 for (const Segment &S : segments) {
478 VNInfo *VNI = S.valno;
David Blaikie70573dc2014-11-19 07:49:26 +0000479 if (!Seen.insert(VNI).second)
Jakob Stoklund Olesen8c0f6932010-08-06 18:46:59 +0000480 continue;
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000481 assert(!VNI->isUnused() && "Unused valno used by live segment");
Jakob Stoklund Olesen8c0f6932010-08-06 18:46:59 +0000482 VNI->id = (unsigned)valnos.size();
483 valnos.push_back(VNI);
484 }
485}
486
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000487void LiveRange::addSegmentToSet(Segment S) {
488 CalcLiveRangeUtilSet(this).addSegment(S);
Chris Lattnerb4acba42004-07-23 19:38:44 +0000489}
490
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000491LiveRange::iterator LiveRange::addSegment(Segment S) {
492 // Use the segment set, if it is available.
493 if (segmentSet != nullptr) {
494 addSegmentToSet(S);
495 return end();
Chris Lattnerb4acba42004-07-23 19:38:44 +0000496 }
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000497 // Otherwise use the segment vector.
498 return CalcLiveRangeUtilVector(this).addSegment(S);
Chris Lattnerb4acba42004-07-23 19:38:44 +0000499}
500
Matthias Braundbcca0d2014-12-24 02:11:51 +0000501void LiveRange::append(const Segment S) {
502 // Check that the segment belongs to the back of the list.
503 assert(segments.empty() || segments.back().end <= S.start);
504 segments.push_back(S);
505}
506
Matthias Braund7df9352013-10-10 21:28:47 +0000507/// extendInBlock - If this range is live before Kill in the basic
Jakob Stoklund Olesen0494c5c2011-09-13 16:47:56 +0000508/// block that starts at StartIdx, extend it to be live up to Kill and return
Matthias Braund7df9352013-10-10 21:28:47 +0000509/// the value. If there is no live range before Kill, return NULL.
510VNInfo *LiveRange::extendInBlock(SlotIndex StartIdx, SlotIndex Kill) {
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000511 // Use the segment set, if it is available.
512 if (segmentSet != nullptr)
513 return CalcLiveRangeUtilSet(this).extendInBlock(StartIdx, Kill);
514 // Otherwise use the segment vector.
515 return CalcLiveRangeUtilVector(this).extendInBlock(StartIdx, Kill);
Jakob Stoklund Olesen9e326a82011-03-02 00:06:15 +0000516}
Chris Lattner038747f2004-07-24 02:52:23 +0000517
Matthias Braund7df9352013-10-10 21:28:47 +0000518/// Remove the specified segment from this range. Note that the segment must
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000519/// be in a single Segment in its entirety.
Matthias Braund7df9352013-10-10 21:28:47 +0000520void LiveRange::removeSegment(SlotIndex Start, SlotIndex End,
521 bool RemoveDeadValNo) {
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000522 // Find the Segment containing this span.
Matthias Braun305ef7f2013-09-06 16:44:32 +0000523 iterator I = find(Start);
Matthias Braund7df9352013-10-10 21:28:47 +0000524 assert(I != end() && "Segment is not in range!");
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000525 assert(I->containsInterval(Start, End)
Matthias Braund7df9352013-10-10 21:28:47 +0000526 && "Segment is not entirely in range!");
Chris Lattner038747f2004-07-24 02:52:23 +0000527
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000528 // If the span we are removing is at the start of the Segment, adjust it.
Evan Cheng47f462a2008-02-13 02:48:26 +0000529 VNInfo *ValNo = I->valno;
Chris Lattner038747f2004-07-24 02:52:23 +0000530 if (I->start == Start) {
Evan Cheng05cc4862007-08-11 00:59:19 +0000531 if (I->end == End) {
Evan Cheng47f462a2008-02-13 02:48:26 +0000532 if (RemoveDeadValNo) {
533 // Check if val# is dead.
534 bool isDead = true;
535 for (const_iterator II = begin(), EE = end(); II != EE; ++II)
536 if (II != I && II->valno == ValNo) {
537 isDead = false;
538 break;
Jakob Stoklund Olesen55d738e22010-06-25 22:53:05 +0000539 }
Evan Cheng47f462a2008-02-13 02:48:26 +0000540 if (isDead) {
Lang Hames2e3f20b2010-07-26 01:49:41 +0000541 // Now that ValNo is dead, remove it.
542 markValNoForDeletion(ValNo);
Evan Cheng47f462a2008-02-13 02:48:26 +0000543 }
544 }
545
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000546 segments.erase(I); // Removed the whole Segment.
Evan Cheng05cc4862007-08-11 00:59:19 +0000547 } else
Chris Lattner038747f2004-07-24 02:52:23 +0000548 I->start = End;
549 return;
550 }
551
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000552 // Otherwise if the span we are removing is at the end of the Segment,
Chris Lattner038747f2004-07-24 02:52:23 +0000553 // adjust the other way.
554 if (I->end == End) {
Chris Lattneraf7e8982004-07-25 05:43:53 +0000555 I->end = Start;
Chris Lattner038747f2004-07-24 02:52:23 +0000556 return;
557 }
558
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000559 // Otherwise, we are splitting the Segment into two pieces.
Lang Hames05fb9632009-11-03 23:52:08 +0000560 SlotIndex OldEnd = I->end;
Matthias Braund7df9352013-10-10 21:28:47 +0000561 I->end = Start; // Trim the old segment.
Chris Lattner038747f2004-07-24 02:52:23 +0000562
563 // Insert the new one.
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000564 segments.insert(std::next(I), Segment(End, OldEnd, ValNo));
Chris Lattner038747f2004-07-24 02:52:23 +0000565}
566
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000567/// removeValNo - Remove all the segments defined by the specified value#.
Evan Cheng47f462a2008-02-13 02:48:26 +0000568/// Also remove the value# from value# list.
Matthias Braund7df9352013-10-10 21:28:47 +0000569void LiveRange::removeValNo(VNInfo *ValNo) {
Evan Cheng47f462a2008-02-13 02:48:26 +0000570 if (empty()) return;
Benjamin Kramer4c5dcb02015-02-28 20:14:27 +0000571 segments.erase(std::remove_if(begin(), end(), [ValNo](const Segment &S) {
572 return S.valno == ValNo;
573 }), end());
Lang Hames2e3f20b2010-07-26 01:49:41 +0000574 // Now that ValNo is dead, remove it.
575 markValNoForDeletion(ValNo);
Evan Cheng47f462a2008-02-13 02:48:26 +0000576}
Lang Hames3fffe622009-09-04 20:41:11 +0000577
Matthias Braund7df9352013-10-10 21:28:47 +0000578void LiveRange::join(LiveRange &Other,
579 const int *LHSValNoAssignments,
580 const int *RHSValNoAssignments,
581 SmallVectorImpl<VNInfo *> &NewVNInfo) {
Chandler Carruthac766b92012-07-10 05:06:03 +0000582 verify();
583
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000584 // Determine if any of our values are mapped. This is uncommon, so we want
Matthias Braund7df9352013-10-10 21:28:47 +0000585 // to avoid the range scan if not.
Chris Lattner34434e92006-08-29 23:18:15 +0000586 bool MustMapCurValNos = false;
Evan Cheng2089a212007-09-01 02:03:17 +0000587 unsigned NumVals = getNumValNums();
588 unsigned NumNewVals = NewVNInfo.size();
589 for (unsigned i = 0; i != NumVals; ++i) {
590 unsigned LHSValID = LHSValNoAssignments[i];
591 if (i != LHSValID ||
Lang Hames4d04f752012-02-02 06:55:45 +0000592 (NewVNInfo[LHSValID] && NewVNInfo[LHSValID] != getValNumInfo(i))) {
Chris Lattner34434e92006-08-29 23:18:15 +0000593 MustMapCurValNos = true;
Lang Hames4d04f752012-02-02 06:55:45 +0000594 break;
595 }
Chris Lattnerd9bbbb82004-07-24 03:41:50 +0000596 }
Evan Cheng1ad4a612007-08-29 20:45:00 +0000597
Matthias Braund7df9352013-10-10 21:28:47 +0000598 // If we have to apply a mapping to our base range assignment, rewrite it now.
Jakob Stoklund Olesen4976d0d2012-09-27 21:05:59 +0000599 if (MustMapCurValNos && !empty()) {
Chris Lattner34434e92006-08-29 23:18:15 +0000600 // Map the first live range.
Lang Hames3a20bc32012-02-02 05:37:34 +0000601
Chris Lattner34434e92006-08-29 23:18:15 +0000602 iterator OutIt = begin();
Evan Cheng1ad4a612007-08-29 20:45:00 +0000603 OutIt->valno = NewVNInfo[LHSValNoAssignments[OutIt->valno->id]];
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000604 for (iterator I = std::next(OutIt), E = end(); I != E; ++I) {
Lang Hames3a20bc32012-02-02 05:37:34 +0000605 VNInfo* nextValNo = NewVNInfo[LHSValNoAssignments[I->valno->id]];
Craig Topperc0196b12014-04-14 00:51:57 +0000606 assert(nextValNo && "Huh?");
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000607
Chris Lattner34434e92006-08-29 23:18:15 +0000608 // If this live range has the same value # as its immediate predecessor,
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000609 // and if they are neighbors, remove one Segment. This happens when we
Lang Hames3a20bc32012-02-02 05:37:34 +0000610 // have [0,4:0)[4,7:1) and map 0/1 onto the same value #.
611 if (OutIt->valno == nextValNo && OutIt->end == I->start) {
612 OutIt->end = I->end;
Chris Lattner34434e92006-08-29 23:18:15 +0000613 } else {
Matthias Braund7df9352013-10-10 21:28:47 +0000614 // Didn't merge. Move OutIt to the next segment,
Lang Hames3a20bc32012-02-02 05:37:34 +0000615 ++OutIt;
616 OutIt->valno = nextValNo;
617 if (OutIt != I) {
Chris Lattner34434e92006-08-29 23:18:15 +0000618 OutIt->start = I->start;
619 OutIt->end = I->end;
620 }
Chris Lattner34434e92006-08-29 23:18:15 +0000621 }
622 }
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000623 // If we merge some segments, chop off the end.
Lang Hames3a20bc32012-02-02 05:37:34 +0000624 ++OutIt;
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000625 segments.erase(OutIt, end());
Chris Lattner34434e92006-08-29 23:18:15 +0000626 }
Evan Cheng05cc4862007-08-11 00:59:19 +0000627
Jakob Stoklund Olesen1744fd82013-02-20 23:51:10 +0000628 // Rewrite Other values before changing the VNInfo ids.
629 // This can leave Other in an invalid state because we're not coalescing
630 // touching segments that now have identical values. That's OK since Other is
631 // not supposed to be valid after calling join();
Matthias Braun96761952014-12-10 23:07:54 +0000632 for (Segment &S : Other.segments)
633 S.valno = NewVNInfo[RHSValNoAssignments[S.valno->id]];
Evan Cheng1ad4a612007-08-29 20:45:00 +0000634
635 // Update val# info. Renumber them and make sure they all belong to this
Matthias Braund7df9352013-10-10 21:28:47 +0000636 // LiveRange now. Also remove dead val#'s.
Evan Chengdb53aef2007-09-05 21:46:51 +0000637 unsigned NumValNos = 0;
638 for (unsigned i = 0; i < NumNewVals; ++i) {
Evan Cheng1ad4a612007-08-29 20:45:00 +0000639 VNInfo *VNI = NewVNInfo[i];
Evan Chengdb53aef2007-09-05 21:46:51 +0000640 if (VNI) {
Evan Cheng7e099942009-04-28 06:24:09 +0000641 if (NumValNos >= NumVals)
Evan Chengdb53aef2007-09-05 21:46:51 +0000642 valnos.push_back(VNI);
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000643 else
Evan Chengdb53aef2007-09-05 21:46:51 +0000644 valnos[NumValNos] = VNI;
645 VNI->id = NumValNos++; // Renumber val#.
Evan Cheng2089a212007-09-01 02:03:17 +0000646 }
647 }
Evan Cheng2089a212007-09-01 02:03:17 +0000648 if (NumNewVals < NumVals)
649 valnos.resize(NumNewVals); // shrinkify
Evan Cheng05cc4862007-08-11 00:59:19 +0000650
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000651 // Okay, now insert the RHS live segments into the LHS.
Jakob Stoklund Olesen623d8322013-02-20 18:18:15 +0000652 LiveRangeUpdater Updater(this);
Matthias Braun96761952014-12-10 23:07:54 +0000653 for (Segment &S : Other.segments)
654 Updater.add(S);
Chandler Carruthe18614d2012-07-10 05:16:17 +0000655}
656
Matthias Braund7df9352013-10-10 21:28:47 +0000657/// Merge all of the segments in RHS into this live range as the specified
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000658/// value number. The segments in RHS are allowed to overlap with segments in
Matthias Braund7df9352013-10-10 21:28:47 +0000659/// the current range, but only if the overlapping segments have the
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000660/// specified value number.
Matthias Braund7df9352013-10-10 21:28:47 +0000661void LiveRange::MergeSegmentsInAsValue(const LiveRange &RHS,
662 VNInfo *LHSValNo) {
Jakob Stoklund Olesen623d8322013-02-20 18:18:15 +0000663 LiveRangeUpdater Updater(this);
Matthias Braun96761952014-12-10 23:07:54 +0000664 for (const Segment &S : RHS.segments)
665 Updater.add(S.start, S.end, LHSValNo);
Chris Lattner5a56d302006-09-02 05:26:59 +0000666}
667
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000668/// MergeValueInAsValue - Merge all of the live segments of a specific val#
Matthias Braund7df9352013-10-10 21:28:47 +0000669/// in RHS into this live range as the specified value number.
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000670/// The segments in RHS are allowed to overlap with segments in the
Matthias Braund7df9352013-10-10 21:28:47 +0000671/// current range, it will replace the value numbers of the overlaped
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000672/// segments with the specified value number.
Matthias Braund7df9352013-10-10 21:28:47 +0000673void LiveRange::MergeValueInAsValue(const LiveRange &RHS,
674 const VNInfo *RHSValNo,
675 VNInfo *LHSValNo) {
Jakob Stoklund Olesen623d8322013-02-20 18:18:15 +0000676 LiveRangeUpdater Updater(this);
Matthias Braun96761952014-12-10 23:07:54 +0000677 for (const Segment &S : RHS.segments)
678 if (S.valno == RHSValNo)
679 Updater.add(S.start, S.end, LHSValNo);
Evan Chengaa2d6ef2007-10-12 08:50:34 +0000680}
681
Chris Lattnerbdf12102006-08-24 22:43:55 +0000682/// MergeValueNumberInto - This method is called when two value nubmers
683/// are found to be equivalent. This eliminates V1, replacing all
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000684/// segments with the V1 value number with the V2 value number. This can
Chris Lattnerbdf12102006-08-24 22:43:55 +0000685/// cause merging of V1/V2 values numbers and compaction of the value space.
Matthias Braund7df9352013-10-10 21:28:47 +0000686VNInfo *LiveRange::MergeValueNumberInto(VNInfo *V1, VNInfo *V2) {
Chris Lattnerbdf12102006-08-24 22:43:55 +0000687 assert(V1 != V2 && "Identical value#'s are always equivalent!");
688
689 // This code actually merges the (numerically) larger value number into the
690 // smaller value number, which is likely to allow us to compactify the value
691 // space. The only thing we have to be careful of is to preserve the
692 // instruction that defines the result value.
693
694 // Make sure V2 is smaller than V1.
Evan Cheng1ad4a612007-08-29 20:45:00 +0000695 if (V1->id < V2->id) {
Lang Hames3b90d972009-08-10 23:43:28 +0000696 V1->copyFrom(*V2);
Chris Lattnerbdf12102006-08-24 22:43:55 +0000697 std::swap(V1, V2);
698 }
699
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000700 // Merge V1 segments into V2.
Chris Lattnerbdf12102006-08-24 22:43:55 +0000701 for (iterator I = begin(); I != end(); ) {
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000702 iterator S = I++;
703 if (S->valno != V1) continue; // Not a V1 Segment.
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000704
Chris Lattnerbdf12102006-08-24 22:43:55 +0000705 // Okay, we found a V1 live range. If it had a previous, touching, V2 live
706 // range, extend it.
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000707 if (S != begin()) {
708 iterator Prev = S-1;
709 if (Prev->valno == V2 && Prev->end == S->start) {
710 Prev->end = S->end;
Chris Lattnerbdf12102006-08-24 22:43:55 +0000711
712 // Erase this live-range.
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000713 segments.erase(S);
Chris Lattnerbdf12102006-08-24 22:43:55 +0000714 I = Prev+1;
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000715 S = Prev;
Chris Lattnerbdf12102006-08-24 22:43:55 +0000716 }
717 }
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000718
Chris Lattnerbdf12102006-08-24 22:43:55 +0000719 // Okay, now we have a V1 or V2 live range that is maximally merged forward.
720 // Ensure that it is a V2 live-range.
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000721 S->valno = V2;
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000722
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000723 // If we can merge it into later V2 segments, do so now. We ignore any
724 // following V1 segments, as they will be merged in subsequent iterations
Chris Lattnerbdf12102006-08-24 22:43:55 +0000725 // of the loop.
726 if (I != end()) {
Matthias Braun13ddb7c2013-10-10 21:28:43 +0000727 if (I->start == S->end && I->valno == V2) {
728 S->end = I->end;
729 segments.erase(I);
730 I = S+1;
Chris Lattnerbdf12102006-08-24 22:43:55 +0000731 }
732 }
733 }
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000734
Lang Hames2e3f20b2010-07-26 01:49:41 +0000735 // Now that V1 is dead, remove it.
736 markValNoForDeletion(V1);
Jakob Stoklund Olesen073cd802010-08-12 20:01:23 +0000737
Owen Anderson4eda2cb2009-02-02 22:42:01 +0000738 return V2;
Chris Lattnerbdf12102006-08-24 22:43:55 +0000739}
740
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000741void LiveRange::flushSegmentSet() {
742 assert(segmentSet != nullptr && "segment set must have been created");
743 assert(
744 segments.empty() &&
745 "segment set can be used only initially before switching to the array");
746 segments.append(segmentSet->begin(), segmentSet->end());
Quentin Colombeta8cb36e2015-02-06 18:42:41 +0000747 segmentSet = nullptr;
748 verify();
749}
750
Matthias Braun7dc96de2015-02-06 17:28:47 +0000751void LiveInterval::freeSubRange(SubRange *S) {
752 S->~SubRange();
753 // Memory was allocated with BumpPtr allocator and is not freed here.
754}
755
Matthias Braun2079aa92014-12-10 01:12:40 +0000756void LiveInterval::removeEmptySubRanges() {
757 SubRange **NextPtr = &SubRanges;
758 SubRange *I = *NextPtr;
759 while (I != nullptr) {
760 if (!I->empty()) {
761 NextPtr = &I->Next;
762 I = *NextPtr;
763 continue;
764 }
765 // Skip empty subranges until we find the first nonempty one.
766 do {
Matthias Braun7dc96de2015-02-06 17:28:47 +0000767 SubRange *Next = I->Next;
768 freeSubRange(I);
769 I = Next;
Matthias Braun2079aa92014-12-10 01:12:40 +0000770 } while (I != nullptr && I->empty());
771 *NextPtr = I;
772 }
773}
774
Matthias Braun7dc96de2015-02-06 17:28:47 +0000775void LiveInterval::clearSubRanges() {
776 for (SubRange *I = SubRanges, *Next; I != nullptr; I = Next) {
777 Next = I->Next;
778 freeSubRange(I);
779 }
780 SubRanges = nullptr;
781}
782
Matthias Braundbcca0d2014-12-24 02:11:51 +0000783/// Helper function for constructMainRangeFromSubranges(): Search the CFG
784/// backwards until we find a place covered by a LiveRange segment that actually
785/// has a valno set.
786static VNInfo *searchForVNI(const SlotIndexes &Indexes, LiveRange &LR,
787 const MachineBasicBlock *MBB,
788 SmallPtrSetImpl<const MachineBasicBlock*> &Visited) {
789 // We start the search at the end of MBB.
790 SlotIndex EndIdx = Indexes.getMBBEndIdx(MBB);
791 // In our use case we can't live the area covered by the live segments without
792 // finding an actual VNI def.
793 LiveRange::iterator I = LR.find(EndIdx.getPrevSlot());
794 assert(I != LR.end());
795 LiveRange::Segment &S = *I;
796 if (S.valno != nullptr)
797 return S.valno;
798
799 VNInfo *VNI = nullptr;
800 // Continue at predecessors (we could even go to idom with domtree available).
801 for (const MachineBasicBlock *Pred : MBB->predecessors()) {
802 // Avoid going in circles.
Matthias Braun4fe686a2015-01-07 23:35:11 +0000803 if (!Visited.insert(Pred).second)
Matthias Braundbcca0d2014-12-24 02:11:51 +0000804 continue;
Matthias Braundbcca0d2014-12-24 02:11:51 +0000805
806 VNI = searchForVNI(Indexes, LR, Pred, Visited);
807 if (VNI != nullptr) {
808 S.valno = VNI;
809 break;
810 }
811 }
812
813 return VNI;
814}
815
Matthias Braun4fe686a2015-01-07 23:35:11 +0000816static void determineMissingVNIs(const SlotIndexes &Indexes, LiveInterval &LI) {
817 SmallPtrSet<const MachineBasicBlock*, 5> Visited;
Matthias Braun4fe686a2015-01-07 23:35:11 +0000818
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000819 LiveRange::iterator OutIt;
820 VNInfo *PrevValNo = nullptr;
821 for (LiveRange::iterator I = LI.begin(), E = LI.end(); I != E; ++I) {
822 LiveRange::Segment &S = *I;
823 // Determine final VNI if necessary.
824 if (S.valno == nullptr) {
825 // This can only happen at the begin of a basic block.
826 assert(S.start.isBlock() && "valno should only be missing at block begin");
827
828 Visited.clear();
829 const MachineBasicBlock *MBB = Indexes.getMBBFromIndex(S.start);
830 for (const MachineBasicBlock *Pred : MBB->predecessors()) {
831 VNInfo *VNI = searchForVNI(Indexes, LI, Pred, Visited);
832 if (VNI != nullptr) {
833 S.valno = VNI;
834 break;
835 }
Matthias Braun4fe686a2015-01-07 23:35:11 +0000836 }
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000837 assert(S.valno != nullptr && "could not determine valno");
Matthias Braun4fe686a2015-01-07 23:35:11 +0000838 }
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000839 // Merge with previous segment if it has the same VNI.
840 if (PrevValNo == S.valno && OutIt->end == S.start) {
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000841 OutIt->end = S.end;
842 } else {
843 // Didn't merge. Move OutIt to next segment.
844 if (PrevValNo == nullptr)
845 OutIt = LI.begin();
846 else
847 ++OutIt;
848
849 if (OutIt != I)
850 *OutIt = *I;
851 PrevValNo = S.valno;
852 }
Matthias Braun4fe686a2015-01-07 23:35:11 +0000853 }
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000854 // If we merged some segments chop off the end.
855 ++OutIt;
856 LI.segments.erase(OutIt, LI.end());
Matthias Braun4fe686a2015-01-07 23:35:11 +0000857}
858
Matthias Braundbcca0d2014-12-24 02:11:51 +0000859void LiveInterval::constructMainRangeFromSubranges(
860 const SlotIndexes &Indexes, VNInfo::Allocator &VNIAllocator) {
861 // The basic observations on which this algorithm is based:
862 // - Each Def/ValNo in a subrange must have a corresponding def on the main
863 // range, but not further defs/valnos are necessary.
864 // - If any of the subranges is live at a point the main liverange has to be
865 // live too, conversily if no subrange is live the main range mustn't be
866 // live either.
Matt Arsenault50f0a422015-09-24 22:36:49 +0000867 // We do this by scanning through all the subranges simultaneously creating new
Matthias Braundbcca0d2014-12-24 02:11:51 +0000868 // segments in the main range as segments start/ends come up in the subranges.
Matthias Braun4fe686a2015-01-07 23:35:11 +0000869 assert(hasSubRanges() && "expected subranges to be present");
Matthias Braundbcca0d2014-12-24 02:11:51 +0000870 assert(segments.empty() && valnos.empty() && "expected empty main range");
871
872 // Collect subrange, iterator pairs for the walk and determine first and last
873 // SlotIndex involved.
874 SmallVector<std::pair<const SubRange*, const_iterator>, 4> SRs;
875 SlotIndex First;
876 SlotIndex Last;
877 for (const SubRange &SR : subranges()) {
878 if (SR.empty())
879 continue;
880 SRs.push_back(std::make_pair(&SR, SR.begin()));
881 if (!First.isValid() || SR.segments.front().start < First)
882 First = SR.segments.front().start;
883 if (!Last.isValid() || SR.segments.back().end > Last)
884 Last = SR.segments.back().end;
885 }
886
Matthias Braundbcca0d2014-12-24 02:11:51 +0000887 // Walk over all subranges simultaneously.
888 Segment CurrentSegment;
889 bool ConstructingSegment = false;
890 bool NeedVNIFixup = false;
Matthias Braune6a24852015-09-25 21:51:14 +0000891 LaneBitmask ActiveMask = 0;
Matthias Braundbcca0d2014-12-24 02:11:51 +0000892 SlotIndex Pos = First;
893 while (true) {
894 SlotIndex NextPos = Last;
895 enum {
896 NOTHING,
897 BEGIN_SEGMENT,
898 END_SEGMENT,
899 } Event = NOTHING;
Matthias Braun4fe686a2015-01-07 23:35:11 +0000900 // Which subregister lanes are affected by the current event.
Matthias Braune6a24852015-09-25 21:51:14 +0000901 LaneBitmask EventMask = 0;
Matthias Braun4fe686a2015-01-07 23:35:11 +0000902 // Whether a BEGIN_SEGMENT is also a valno definition point.
Matthias Braundbcca0d2014-12-24 02:11:51 +0000903 bool IsDef = false;
904 // Find the next begin or end of a subrange segment. Combine masks if we
905 // have multiple begins/ends at the same position. Ends take precedence over
906 // Begins.
907 for (auto &SRP : SRs) {
908 const SubRange &SR = *SRP.first;
909 const_iterator &I = SRP.second;
Matthias Braun4fe686a2015-01-07 23:35:11 +0000910 // Advance iterator of subrange to a segment involving Pos; the earlier
911 // segments are already merged at this point.
Matthias Braundbcca0d2014-12-24 02:11:51 +0000912 while (I != SR.end() &&
913 (I->end < Pos ||
914 (I->end == Pos && (ActiveMask & SR.LaneMask) == 0)))
915 ++I;
916 if (I == SR.end())
917 continue;
918 if ((ActiveMask & SR.LaneMask) == 0 &&
919 Pos <= I->start && I->start <= NextPos) {
Matthias Braun4fe686a2015-01-07 23:35:11 +0000920 // Merge multiple begins at the same position.
Matthias Braundbcca0d2014-12-24 02:11:51 +0000921 if (I->start == NextPos && Event == BEGIN_SEGMENT) {
922 EventMask |= SR.LaneMask;
923 IsDef |= I->valno->def == I->start;
924 } else if (I->start < NextPos || Event != END_SEGMENT) {
925 Event = BEGIN_SEGMENT;
926 NextPos = I->start;
927 EventMask = SR.LaneMask;
928 IsDef = I->valno->def == I->start;
929 }
930 }
931 if ((ActiveMask & SR.LaneMask) != 0 &&
932 Pos <= I->end && I->end <= NextPos) {
933 // Merge multiple ends at the same position.
934 if (I->end == NextPos && Event == END_SEGMENT)
935 EventMask |= SR.LaneMask;
936 else {
937 Event = END_SEGMENT;
938 NextPos = I->end;
939 EventMask = SR.LaneMask;
940 }
941 }
942 }
943
Matthias Braundbcca0d2014-12-24 02:11:51 +0000944 // Advance scan position.
945 Pos = NextPos;
946 if (Event == BEGIN_SEGMENT) {
947 if (ConstructingSegment && IsDef) {
948 // Finish previous segment because we have to start a new one.
949 CurrentSegment.end = Pos;
950 append(CurrentSegment);
951 ConstructingSegment = false;
952 }
953
954 // Start a new segment if necessary.
955 if (!ConstructingSegment) {
956 // Determine value number for the segment.
957 VNInfo *VNI;
958 if (IsDef) {
959 VNI = getNextValue(Pos, VNIAllocator);
960 } else {
961 // We have to reuse an existing value number, if we are lucky
962 // then we already passed one of the predecessor blocks and determined
963 // its value number (with blocks in reverse postorder this would be
964 // always true but we have no such guarantee).
965 assert(Pos.isBlock());
966 const MachineBasicBlock *MBB = Indexes.getMBBFromIndex(Pos);
967 // See if any of the predecessor blocks has a lower number and a VNI
968 for (const MachineBasicBlock *Pred : MBB->predecessors()) {
969 SlotIndex PredEnd = Indexes.getMBBEndIdx(Pred);
970 VNI = getVNInfoBefore(PredEnd);
971 if (VNI != nullptr)
972 break;
973 }
974 // Def will come later: We have to do an extra fixup pass.
975 if (VNI == nullptr)
976 NeedVNIFixup = true;
977 }
978
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000979 // In rare cases we can produce adjacent segments with the same value
980 // number (if they come from different subranges, but happen to have
981 // the same defining instruction). VNIFixup will fix those cases.
982 if (!empty() && segments.back().end == Pos &&
Matthias Braun9b921022015-04-08 02:10:01 +0000983 segments.back().valno == VNI)
Matthias Braun1e61bbf2015-04-08 01:41:10 +0000984 NeedVNIFixup = true;
Matthias Braundbcca0d2014-12-24 02:11:51 +0000985 CurrentSegment.start = Pos;
986 CurrentSegment.valno = VNI;
987 ConstructingSegment = true;
988 }
989 ActiveMask |= EventMask;
990 } else if (Event == END_SEGMENT) {
991 assert(ConstructingSegment);
992 // Finish segment if no lane is active anymore.
993 ActiveMask &= ~EventMask;
994 if (ActiveMask == 0) {
995 CurrentSegment.end = Pos;
996 append(CurrentSegment);
997 ConstructingSegment = false;
998 }
999 } else {
1000 // We reached the end of the last subranges and can stop.
1001 assert(Event == NOTHING);
1002 break;
1003 }
1004 }
1005
1006 // We might not be able to assign new valnos for all segments if the basic
1007 // block containing the definition comes after a segment using the valno.
1008 // Do a fixup pass for this uncommon case.
Matthias Braun4fe686a2015-01-07 23:35:11 +00001009 if (NeedVNIFixup)
1010 determineMissingVNIs(Indexes, *this);
Matthias Braundbcca0d2014-12-24 02:11:51 +00001011
Matthias Braun4fe686a2015-01-07 23:35:11 +00001012 assert(ActiveMask == 0 && !ConstructingSegment && "all segments ended");
Matthias Braundbcca0d2014-12-24 02:11:51 +00001013 verify();
1014}
1015
Evan Cheng57b52142007-04-17 20:25:11 +00001016unsigned LiveInterval::getSize() const {
1017 unsigned Sum = 0;
Matthias Braun96761952014-12-10 23:07:54 +00001018 for (const Segment &S : segments)
1019 Sum += S.start.distance(S.end);
Evan Cheng57b52142007-04-17 20:25:11 +00001020 return Sum;
1021}
1022
Matthias Braund7df9352013-10-10 21:28:47 +00001023raw_ostream& llvm::operator<<(raw_ostream& os, const LiveRange::Segment &S) {
Matthias Braun13ddb7c2013-10-10 21:28:43 +00001024 return os << '[' << S.start << ',' << S.end << ':' << S.valno->id << ")";
Daniel Dunbar796e43e2009-07-24 10:36:58 +00001025}
Chris Lattner78f62e32004-07-23 17:49:16 +00001026
Manman Ren19f49ac2012-09-11 22:23:19 +00001027#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Yaron Kereneb2a2542016-01-29 20:50:44 +00001028LLVM_DUMP_METHOD void LiveRange::Segment::dump() const {
David Greenec2155322010-01-04 22:41:43 +00001029 dbgs() << *this << "\n";
Chris Lattner038747f2004-07-24 02:52:23 +00001030}
Manman Ren742534c2012-09-06 19:06:06 +00001031#endif
Chris Lattner038747f2004-07-24 02:52:23 +00001032
Matthias Braund7df9352013-10-10 21:28:47 +00001033void LiveRange::print(raw_ostream &OS) const {
Chris Lattnerc08d7862005-05-14 05:34:15 +00001034 if (empty())
Jakob Stoklund Olesenf3f7d6f2012-06-05 22:51:54 +00001035 OS << "EMPTY";
Chris Lattnerc08d7862005-05-14 05:34:15 +00001036 else {
Matthias Braun96761952014-12-10 23:07:54 +00001037 for (const Segment &S : segments) {
1038 OS << S;
1039 assert(S.valno == getValNumInfo(S.valno->id) && "Bad VNInfo");
Jakob Stoklund Olesen731ea712010-06-23 15:34:36 +00001040 }
Chris Lattnerc08d7862005-05-14 05:34:15 +00001041 }
Jakob Stoklund Olesen55d738e22010-06-25 22:53:05 +00001042
Chris Lattner2e9f1bc2006-08-22 18:19:46 +00001043 // Print value number info.
Chris Lattner34434e92006-08-29 23:18:15 +00001044 if (getNumValNums()) {
Chris Lattner2e9f1bc2006-08-22 18:19:46 +00001045 OS << " ";
Evan Chenga5b10b32007-08-28 08:28:51 +00001046 unsigned vnum = 0;
1047 for (const_vni_iterator i = vni_begin(), e = vni_end(); i != e;
1048 ++i, ++vnum) {
Evan Cheng1ad4a612007-08-29 20:45:00 +00001049 const VNInfo *vni = *i;
Evan Chenga5b10b32007-08-28 08:28:51 +00001050 if (vnum) OS << " ";
1051 OS << vnum << "@";
Lang Hames16cab192009-06-17 21:01:20 +00001052 if (vni->isUnused()) {
Evan Chenga8c2f382007-08-08 03:00:28 +00001053 OS << "x";
Chris Lattner2e9f1bc2006-08-22 18:19:46 +00001054 } else {
Lang Hames56495682010-09-25 12:04:16 +00001055 OS << vni->def;
Jakob Stoklund Olesen9a414902010-10-05 18:48:57 +00001056 if (vni->isPHIDef())
Jakob Stoklund Olesen9f565e12012-08-03 20:19:44 +00001057 OS << "-phi";
Evan Cheng0d0fee22007-08-07 23:49:57 +00001058 }
Chris Lattner2e9f1bc2006-08-22 18:19:46 +00001059 }
1060 }
Chris Lattner78f62e32004-07-23 17:49:16 +00001061}
Chris Lattner038747f2004-07-24 02:52:23 +00001062
Matthias Braunf6fe6bf2013-10-10 21:29:05 +00001063void LiveInterval::print(raw_ostream &OS) const {
1064 OS << PrintReg(reg) << ' ';
1065 super::print(OS);
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001066 // Print subranges
Matthias Braun09afa1e2014-12-11 00:59:06 +00001067 for (const SubRange &SR : subranges()) {
Matthias Braunc804cdb2015-09-25 21:51:24 +00001068 OS << " L" << PrintLaneMask(SR.LaneMask) << ' ' << SR;
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001069 }
Matthias Braunf6fe6bf2013-10-10 21:29:05 +00001070}
1071
Manman Ren19f49ac2012-09-11 22:23:19 +00001072#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Yaron Kereneb2a2542016-01-29 20:50:44 +00001073LLVM_DUMP_METHOD void LiveRange::dump() const {
David Greenec2155322010-01-04 22:41:43 +00001074 dbgs() << *this << "\n";
Chris Lattner038747f2004-07-24 02:52:23 +00001075}
Matthias Braunf6fe6bf2013-10-10 21:29:05 +00001076
Yaron Kereneb2a2542016-01-29 20:50:44 +00001077LLVM_DUMP_METHOD void LiveInterval::dump() const {
Matthias Braunf6fe6bf2013-10-10 21:29:05 +00001078 dbgs() << *this << "\n";
1079}
Manman Ren742534c2012-09-06 19:06:06 +00001080#endif
Jeff Cohenb82309f2006-12-15 22:57:14 +00001081
Chandler Carruthac766b92012-07-10 05:06:03 +00001082#ifndef NDEBUG
Matthias Braund7df9352013-10-10 21:28:47 +00001083void LiveRange::verify() const {
Chandler Carruthac766b92012-07-10 05:06:03 +00001084 for (const_iterator I = begin(), E = end(); I != E; ++I) {
1085 assert(I->start.isValid());
1086 assert(I->end.isValid());
1087 assert(I->start < I->end);
Craig Topperc0196b12014-04-14 00:51:57 +00001088 assert(I->valno != nullptr);
Matthias Braund7df9352013-10-10 21:28:47 +00001089 assert(I->valno->id < valnos.size());
Chandler Carruthac766b92012-07-10 05:06:03 +00001090 assert(I->valno == valnos[I->valno->id]);
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001091 if (std::next(I) != E) {
1092 assert(I->end <= std::next(I)->start);
1093 if (I->end == std::next(I)->start)
1094 assert(I->valno != std::next(I)->valno);
Chandler Carruthac766b92012-07-10 05:06:03 +00001095 }
1096 }
1097}
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001098
1099void LiveInterval::verify(const MachineRegisterInfo *MRI) const {
1100 super::verify();
1101
1102 // Make sure SubRanges are fine and LaneMasks are disjunct.
Matthias Braune6a24852015-09-25 21:51:14 +00001103 LaneBitmask Mask = 0;
1104 LaneBitmask MaxMask = MRI != nullptr ? MRI->getMaxLaneMaskForVReg(reg) : ~0u;
Matthias Braun09afa1e2014-12-11 00:59:06 +00001105 for (const SubRange &SR : subranges()) {
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001106 // Subrange lanemask should be disjunct to any previous subrange masks.
Matthias Braun09afa1e2014-12-11 00:59:06 +00001107 assert((Mask & SR.LaneMask) == 0);
1108 Mask |= SR.LaneMask;
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001109
1110 // subrange mask should not contained in maximum lane mask for the vreg.
1111 assert((Mask & ~MaxMask) == 0);
Matthias Braun0d4cebd2015-07-16 18:55:35 +00001112 // empty subranges must be removed.
1113 assert(!SR.empty());
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001114
Matthias Braun09afa1e2014-12-11 00:59:06 +00001115 SR.verify();
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001116 // Main liverange should cover subrange.
Matthias Braun09afa1e2014-12-11 00:59:06 +00001117 assert(covers(SR));
Matthias Braun3f1d8fd2014-12-10 01:12:10 +00001118 }
1119}
Chandler Carruthac766b92012-07-10 05:06:03 +00001120#endif
1121
Jeff Cohenb82309f2006-12-15 22:57:14 +00001122
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001123//===----------------------------------------------------------------------===//
1124// LiveRangeUpdater class
1125//===----------------------------------------------------------------------===//
1126//
1127// The LiveRangeUpdater class always maintains these invariants:
1128//
1129// - When LastStart is invalid, Spills is empty and the iterators are invalid.
1130// This is the initial state, and the state created by flush().
1131// In this state, isDirty() returns false.
1132//
1133// Otherwise, segments are kept in three separate areas:
1134//
Matthias Braund7df9352013-10-10 21:28:47 +00001135// 1. [begin; WriteI) at the front of LR.
1136// 2. [ReadI; end) at the back of LR.
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001137// 3. Spills.
1138//
Matthias Braund7df9352013-10-10 21:28:47 +00001139// - LR.begin() <= WriteI <= ReadI <= LR.end().
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001140// - Segments in all three areas are fully ordered and coalesced.
1141// - Segments in area 1 precede and can't coalesce with segments in area 2.
1142// - Segments in Spills precede and can't coalesce with segments in area 2.
1143// - No coalescing is possible between segments in Spills and segments in area
1144// 1, and there are no overlapping segments.
1145//
1146// The segments in Spills are not ordered with respect to the segments in area
1147// 1. They need to be merged.
1148//
1149// When they exist, Spills.back().start <= LastStart,
1150// and WriteI[-1].start <= LastStart.
1151
1152void LiveRangeUpdater::print(raw_ostream &OS) const {
1153 if (!isDirty()) {
Matthias Braund7df9352013-10-10 21:28:47 +00001154 if (LR)
1155 OS << "Clean updater: " << *LR << '\n';
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001156 else
1157 OS << "Null updater.\n";
1158 return;
1159 }
Matthias Braund7df9352013-10-10 21:28:47 +00001160 assert(LR && "Can't have null LR in dirty updater.");
1161 OS << " updater with gap = " << (ReadI - WriteI)
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001162 << ", last start = " << LastStart
1163 << ":\n Area 1:";
Matthias Braun96761952014-12-10 23:07:54 +00001164 for (const auto &S : make_range(LR->begin(), WriteI))
1165 OS << ' ' << S;
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001166 OS << "\n Spills:";
1167 for (unsigned I = 0, E = Spills.size(); I != E; ++I)
1168 OS << ' ' << Spills[I];
1169 OS << "\n Area 2:";
Matthias Braun96761952014-12-10 23:07:54 +00001170 for (const auto &S : make_range(ReadI, LR->end()))
1171 OS << ' ' << S;
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001172 OS << '\n';
1173}
1174
Yaron Kereneb2a2542016-01-29 20:50:44 +00001175LLVM_DUMP_METHOD void LiveRangeUpdater::dump() const {
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001176 print(errs());
1177}
1178
1179// Determine if A and B should be coalesced.
Matthias Braund7df9352013-10-10 21:28:47 +00001180static inline bool coalescable(const LiveRange::Segment &A,
1181 const LiveRange::Segment &B) {
Matthias Braun13ddb7c2013-10-10 21:28:43 +00001182 assert(A.start <= B.start && "Unordered live segments.");
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001183 if (A.end == B.start)
1184 return A.valno == B.valno;
1185 if (A.end < B.start)
1186 return false;
1187 assert(A.valno == B.valno && "Cannot overlap different values");
1188 return true;
1189}
1190
Matthias Braund7df9352013-10-10 21:28:47 +00001191void LiveRangeUpdater::add(LiveRange::Segment Seg) {
1192 assert(LR && "Cannot add to a null destination");
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001193
Quentin Colombeta8cb36e2015-02-06 18:42:41 +00001194 // Fall back to the regular add method if the live range
1195 // is using the segment set instead of the segment vector.
1196 if (LR->segmentSet != nullptr) {
1197 LR->addSegmentToSet(Seg);
1198 return;
1199 }
1200
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001201 // Flush the state if Start moves backwards.
1202 if (!LastStart.isValid() || LastStart > Seg.start) {
1203 if (isDirty())
1204 flush();
1205 // This brings us to an uninitialized state. Reinitialize.
1206 assert(Spills.empty() && "Leftover spilled segments");
Matthias Braund7df9352013-10-10 21:28:47 +00001207 WriteI = ReadI = LR->begin();
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001208 }
1209
1210 // Remember start for next time.
1211 LastStart = Seg.start;
1212
1213 // Advance ReadI until it ends after Seg.start.
Matthias Braund7df9352013-10-10 21:28:47 +00001214 LiveRange::iterator E = LR->end();
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001215 if (ReadI != E && ReadI->end <= Seg.start) {
1216 // First try to close the gap between WriteI and ReadI with spills.
1217 if (ReadI != WriteI)
1218 mergeSpills();
1219 // Then advance ReadI.
1220 if (ReadI == WriteI)
Matthias Braund7df9352013-10-10 21:28:47 +00001221 ReadI = WriteI = LR->find(Seg.start);
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001222 else
1223 while (ReadI != E && ReadI->end <= Seg.start)
1224 *WriteI++ = *ReadI++;
1225 }
1226
1227 assert(ReadI == E || ReadI->end > Seg.start);
1228
1229 // Check if the ReadI segment begins early.
1230 if (ReadI != E && ReadI->start <= Seg.start) {
1231 assert(ReadI->valno == Seg.valno && "Cannot overlap different values");
1232 // Bail if Seg is completely contained in ReadI.
1233 if (ReadI->end >= Seg.end)
1234 return;
1235 // Coalesce into Seg.
1236 Seg.start = ReadI->start;
1237 ++ReadI;
1238 }
1239
1240 // Coalesce as much as possible from ReadI into Seg.
1241 while (ReadI != E && coalescable(Seg, *ReadI)) {
1242 Seg.end = std::max(Seg.end, ReadI->end);
1243 ++ReadI;
1244 }
1245
1246 // Try coalescing Spills.back() into Seg.
1247 if (!Spills.empty() && coalescable(Spills.back(), Seg)) {
1248 Seg.start = Spills.back().start;
1249 Seg.end = std::max(Spills.back().end, Seg.end);
1250 Spills.pop_back();
1251 }
1252
1253 // Try coalescing Seg into WriteI[-1].
Matthias Braund7df9352013-10-10 21:28:47 +00001254 if (WriteI != LR->begin() && coalescable(WriteI[-1], Seg)) {
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001255 WriteI[-1].end = std::max(WriteI[-1].end, Seg.end);
1256 return;
1257 }
1258
1259 // Seg doesn't coalesce with anything, and needs to be inserted somewhere.
1260 if (WriteI != ReadI) {
1261 *WriteI++ = Seg;
1262 return;
1263 }
1264
Matthias Braund7df9352013-10-10 21:28:47 +00001265 // Finally, append to LR or Spills.
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001266 if (WriteI == E) {
Matthias Braund7df9352013-10-10 21:28:47 +00001267 LR->segments.push_back(Seg);
1268 WriteI = ReadI = LR->end();
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001269 } else
1270 Spills.push_back(Seg);
1271}
1272
1273// Merge as many spilled segments as possible into the gap between WriteI
1274// and ReadI. Advance WriteI to reflect the inserted instructions.
1275void LiveRangeUpdater::mergeSpills() {
1276 // Perform a backwards merge of Spills and [SpillI;WriteI).
1277 size_t GapSize = ReadI - WriteI;
1278 size_t NumMoved = std::min(Spills.size(), GapSize);
Matthias Braund7df9352013-10-10 21:28:47 +00001279 LiveRange::iterator Src = WriteI;
1280 LiveRange::iterator Dst = Src + NumMoved;
1281 LiveRange::iterator SpillSrc = Spills.end();
1282 LiveRange::iterator B = LR->begin();
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001283
1284 // This is the new WriteI position after merging spills.
1285 WriteI = Dst;
1286
1287 // Now merge Src and Spills backwards.
1288 while (Src != Dst) {
1289 if (Src != B && Src[-1].start > SpillSrc[-1].start)
1290 *--Dst = *--Src;
1291 else
1292 *--Dst = *--SpillSrc;
1293 }
1294 assert(NumMoved == size_t(Spills.end() - SpillSrc));
1295 Spills.erase(SpillSrc, Spills.end());
1296}
1297
1298void LiveRangeUpdater::flush() {
1299 if (!isDirty())
1300 return;
1301 // Clear the dirty state.
1302 LastStart = SlotIndex();
1303
Matthias Braund7df9352013-10-10 21:28:47 +00001304 assert(LR && "Cannot add to a null destination");
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001305
1306 // Nothing to merge?
1307 if (Spills.empty()) {
Matthias Braund7df9352013-10-10 21:28:47 +00001308 LR->segments.erase(WriteI, ReadI);
1309 LR->verify();
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001310 return;
1311 }
1312
1313 // Resize the WriteI - ReadI gap to match Spills.
1314 size_t GapSize = ReadI - WriteI;
1315 if (GapSize < Spills.size()) {
1316 // The gap is too small. Make some room.
Matthias Braund7df9352013-10-10 21:28:47 +00001317 size_t WritePos = WriteI - LR->begin();
1318 LR->segments.insert(ReadI, Spills.size() - GapSize, LiveRange::Segment());
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001319 // This also invalidated ReadI, but it is recomputed below.
Matthias Braund7df9352013-10-10 21:28:47 +00001320 WriteI = LR->begin() + WritePos;
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001321 } else {
1322 // Shrink the gap if necessary.
Matthias Braund7df9352013-10-10 21:28:47 +00001323 LR->segments.erase(WriteI + Spills.size(), ReadI);
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001324 }
1325 ReadI = WriteI + Spills.size();
1326 mergeSpills();
Matthias Braund7df9352013-10-10 21:28:47 +00001327 LR->verify();
Jakob Stoklund Olesen521c7082013-02-20 18:18:12 +00001328}
1329
Matthias Braunbf47f632016-01-08 01:16:35 +00001330unsigned ConnectedVNInfoEqClasses::Classify(const LiveRange &LR) {
Jakob Stoklund Olesen05cae832010-10-08 21:19:28 +00001331 // Create initial equivalence classes.
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001332 EqClass.clear();
Matthias Braunbf47f632016-01-08 01:16:35 +00001333 EqClass.grow(LR.getNumValNums());
Jakob Stoklund Olesen05cae832010-10-08 21:19:28 +00001334
Craig Topperc0196b12014-04-14 00:51:57 +00001335 const VNInfo *used = nullptr, *unused = nullptr;
Jakob Stoklund Olesendff6a6e2010-10-29 17:37:29 +00001336
Jakob Stoklund Olesen05cae832010-10-08 21:19:28 +00001337 // Determine connections.
Matthias Braunbf47f632016-01-08 01:16:35 +00001338 for (const VNInfo *VNI : LR.valnos) {
Jakob Stoklund Olesendff6a6e2010-10-29 17:37:29 +00001339 // Group all unused values into one class.
1340 if (VNI->isUnused()) {
1341 if (unused)
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001342 EqClass.join(unused->id, VNI->id);
Jakob Stoklund Olesendff6a6e2010-10-29 17:37:29 +00001343 unused = VNI;
1344 continue;
1345 }
1346 used = VNI;
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001347 if (VNI->isPHIDef()) {
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001348 const MachineBasicBlock *MBB = LIS.getMBBFromIndex(VNI->def);
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001349 assert(MBB && "Phi-def has no defining MBB");
1350 // Connect to values live out of predecessors.
1351 for (MachineBasicBlock::const_pred_iterator PI = MBB->pred_begin(),
1352 PE = MBB->pred_end(); PI != PE; ++PI)
Matthias Braunbf47f632016-01-08 01:16:35 +00001353 if (const VNInfo *PVNI = LR.getVNInfoBefore(LIS.getMBBEndIdx(*PI)))
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001354 EqClass.join(VNI->id, PVNI->id);
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001355 } else {
1356 // Normal value defined by an instruction. Check for two-addr redef.
1357 // FIXME: This could be coincidental. Should we really check for a tied
1358 // operand constraint?
Jakob Stoklund Olesen4c278f82010-12-21 00:48:17 +00001359 // Note that VNI->def may be a use slot for an early clobber def.
Matthias Braunbf47f632016-01-08 01:16:35 +00001360 if (const VNInfo *UVNI = LR.getVNInfoBefore(VNI->def))
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001361 EqClass.join(VNI->id, UVNI->id);
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001362 }
1363 }
Jakob Stoklund Olesendff6a6e2010-10-29 17:37:29 +00001364
1365 // Lump all the unused values in with the last used value.
1366 if (used && unused)
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001367 EqClass.join(used->id, unused->id);
Jakob Stoklund Olesendff6a6e2010-10-29 17:37:29 +00001368
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001369 EqClass.compress();
1370 return EqClass.getNumClasses();
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001371}
1372
Matthias Braun5efe8712015-09-22 22:37:42 +00001373template<typename LiveRangeT, typename EqClassesT>
1374static void DistributeRange(LiveRangeT &LR, LiveRangeT *SplitLRs[],
1375 EqClassesT VNIClasses) {
1376 // Move segments to new intervals.
1377 LiveRange::iterator J = LR.begin(), E = LR.end();
1378 while (J != E && VNIClasses[J->valno->id] == 0)
1379 ++J;
1380 for (LiveRange::iterator I = J; I != E; ++I) {
1381 if (unsigned eq = VNIClasses[I->valno->id]) {
1382 assert((SplitLRs[eq-1]->empty() || SplitLRs[eq-1]->expiredAt(I->start)) &&
1383 "New intervals should be empty");
1384 SplitLRs[eq-1]->segments.push_back(*I);
1385 } else
1386 *J++ = *I;
1387 }
1388 LR.segments.erase(J, E);
1389
1390 // Transfer VNInfos to their new owners and renumber them.
1391 unsigned j = 0, e = LR.getNumValNums();
1392 while (j != e && VNIClasses[j] == 0)
1393 ++j;
1394 for (unsigned i = j; i != e; ++i) {
1395 VNInfo *VNI = LR.getValNumInfo(i);
1396 if (unsigned eq = VNIClasses[i]) {
1397 VNI->id = SplitLRs[eq-1]->getNumValNums();
1398 SplitLRs[eq-1]->valnos.push_back(VNI);
1399 } else {
1400 VNI->id = j;
1401 LR.valnos[j++] = VNI;
1402 }
1403 }
1404 LR.valnos.resize(j);
1405}
1406
Matthias Braund3dd1352015-09-22 03:44:41 +00001407void ConnectedVNInfoEqClasses::Distribute(LiveInterval &LI, LiveInterval *LIV[],
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001408 MachineRegisterInfo &MRI) {
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001409 // Rewrite instructions.
1410 for (MachineRegisterInfo::reg_iterator RI = MRI.reg_begin(LI.reg),
1411 RE = MRI.reg_end(); RI != RE;) {
Owen Anderson16c6bf42014-03-13 23:12:04 +00001412 MachineOperand &MO = *RI;
1413 MachineInstr *MI = RI->getParent();
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001414 ++RI;
Jakob Stoklund Olesen43711c52013-05-23 17:02:23 +00001415 // DBG_VALUE instructions don't have slot indexes, so get the index of the
1416 // instruction before them.
1417 // Normally, DBG_VALUE instructions are removed before this function is
1418 // called, but it is not a requirement.
1419 SlotIndex Idx;
1420 if (MI->isDebugValue())
1421 Idx = LIS.getSlotIndexes()->getIndexBefore(MI);
1422 else
1423 Idx = LIS.getInstructionIndex(MI);
Matthias Braun88dd0ab2013-10-10 21:28:52 +00001424 LiveQueryResult LRQ = LI.Query(Idx);
Jakob Stoklund Olesencef9a612012-07-25 17:15:15 +00001425 const VNInfo *VNI = MO.readsReg() ? LRQ.valueIn() : LRQ.valueDefined();
1426 // In the case of an <undef> use that isn't tied to any def, VNI will be
1427 // NULL. If the use is tied to a def, VNI will be the defined value.
Jakob Stoklund Olesen82d77e82012-05-19 05:25:50 +00001428 if (!VNI)
1429 continue;
Matthias Braund3dd1352015-09-22 03:44:41 +00001430 if (unsigned EqClass = getEqClass(VNI))
1431 MO.setReg(LIV[EqClass-1]->reg);
Jakob Stoklund Olesen315b42c2011-03-17 00:23:45 +00001432 }
1433
Matthias Braun5efe8712015-09-22 22:37:42 +00001434 // Distribute subregister liveranges.
1435 if (LI.hasSubRanges()) {
1436 unsigned NumComponents = EqClass.getNumClasses();
1437 SmallVector<unsigned, 8> VNIMapping;
1438 SmallVector<LiveInterval::SubRange*, 8> SubRanges;
1439 BumpPtrAllocator &Allocator = LIS.getVNInfoAllocator();
1440 for (LiveInterval::SubRange &SR : LI.subranges()) {
1441 // Create new subranges in the split intervals and construct a mapping
1442 // for the VNInfos in the subrange.
1443 unsigned NumValNos = SR.valnos.size();
1444 VNIMapping.clear();
1445 VNIMapping.reserve(NumValNos);
1446 SubRanges.clear();
1447 SubRanges.resize(NumComponents-1, nullptr);
1448 for (unsigned I = 0; I < NumValNos; ++I) {
1449 const VNInfo &VNI = *SR.valnos[I];
1450 const VNInfo *MainRangeVNI = LI.getVNInfoAt(VNI.def);
1451 assert(MainRangeVNI != nullptr
1452 && "SubRange def must have corresponding main range def");
1453 unsigned ComponentNum = getEqClass(MainRangeVNI);
1454 VNIMapping.push_back(ComponentNum);
1455 if (ComponentNum > 0 && SubRanges[ComponentNum-1] == nullptr) {
1456 SubRanges[ComponentNum-1]
1457 = LIV[ComponentNum-1]->createSubRange(Allocator, SR.LaneMask);
1458 }
1459 }
1460 DistributeRange(SR, SubRanges.data(), VNIMapping);
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001461 }
Matthias Braun5efe8712015-09-22 22:37:42 +00001462 LI.removeEmptySubRanges();
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001463 }
Matthias Braun5efe8712015-09-22 22:37:42 +00001464
1465 // Distribute main liverange.
1466 DistributeRange(LI, LIV, EqClass);
Jakob Stoklund Olesen0f1677e2010-10-07 23:34:34 +00001467}
Matthias Braun3907fde2016-01-20 00:23:21 +00001468
1469void ConnectedSubRegClasses::renameComponents(LiveInterval &LI) const {
1470 // Shortcut: We cannot have split components with a single definition.
1471 if (LI.valnos.size() < 2)
1472 return;
1473
1474 SmallVector<SubRangeInfo, 4> SubRangeInfos;
1475 IntEqClasses Classes;
1476 if (!findComponents(Classes, SubRangeInfos, LI))
1477 return;
1478
1479 // Create a new VReg for each class.
1480 unsigned Reg = LI.reg;
1481 const TargetRegisterClass *RegClass = MRI.getRegClass(Reg);
1482 SmallVector<LiveInterval*, 4> Intervals;
1483 Intervals.push_back(&LI);
1484 for (unsigned I = 1, NumClasses = Classes.getNumClasses(); I < NumClasses;
1485 ++I) {
1486 unsigned NewVReg = MRI.createVirtualRegister(RegClass);
1487 LiveInterval &NewLI = LIS.createEmptyInterval(NewVReg);
1488 Intervals.push_back(&NewLI);
1489 }
1490
1491 rewriteOperands(Classes, SubRangeInfos, Intervals);
1492 distribute(Classes, SubRangeInfos, Intervals);
1493 computeMainRangesFixFlags(Classes, SubRangeInfos, Intervals);
1494}
1495
1496bool ConnectedSubRegClasses::findComponents(IntEqClasses &Classes,
1497 SmallVectorImpl<ConnectedSubRegClasses::SubRangeInfo> &SubRangeInfos,
1498 LiveInterval &LI) const {
1499 // First step: Create connected components for the VNInfos inside the
1500 // subranges and count the global number of such components.
1501 unsigned NumComponents = 0;
1502 for (LiveInterval::SubRange &SR : LI.subranges()) {
1503 SubRangeInfos.push_back(SubRangeInfo(LIS, SR, NumComponents));
1504 ConnectedVNInfoEqClasses &ConEQ = SubRangeInfos.back().ConEQ;
1505
1506 unsigned NumSubComponents = ConEQ.Classify(SR);
1507 NumComponents += NumSubComponents;
1508 }
1509 // Shortcut: With only 1 subrange, the normal separate component tests are
1510 // enough and we do not need to perform the union-find on the subregister
1511 // segments.
1512 if (SubRangeInfos.size() < 2)
1513 return false;
1514
1515 // Next step: Build union-find structure over all subranges and merge classes
1516 // across subranges when they are affected by the same MachineOperand.
1517 const TargetRegisterInfo &TRI = *MRI.getTargetRegisterInfo();
1518 Classes.grow(NumComponents);
1519 unsigned Reg = LI.reg;
1520 for (const MachineOperand &MO : MRI.reg_nodbg_operands(Reg)) {
1521 if (!MO.isDef() && !MO.readsReg())
1522 continue;
1523 unsigned SubRegIdx = MO.getSubReg();
1524 LaneBitmask LaneMask = TRI.getSubRegIndexLaneMask(SubRegIdx);
1525 unsigned MergedID = ~0u;
1526 for (auto &SRInfo : SubRangeInfos) {
1527 const LiveInterval::SubRange &SR = *SRInfo.SR;
1528 if ((SR.LaneMask & LaneMask) == 0)
1529 continue;
1530 SlotIndex Pos = LIS.getInstructionIndex(MO.getParent());
1531 Pos = MO.isDef() ? Pos.getRegSlot(MO.isEarlyClobber())
1532 : Pos.getBaseIndex();
1533 const VNInfo *VNI = SR.getVNInfoAt(Pos);
1534 if (VNI == nullptr)
1535 continue;
1536
1537 // Map to local representant ID.
1538 unsigned LocalID = SRInfo.ConEQ.getEqClass(VNI);
1539 // Global ID
1540 unsigned ID = LocalID + SRInfo.Index;
1541 // Merge other sets
1542 MergedID = MergedID == ~0u ? ID : Classes.join(MergedID, ID);
1543 }
1544 }
1545
1546 // Early exit if we ended up with a single equivalence class.
1547 Classes.compress();
1548 unsigned NumClasses = Classes.getNumClasses();
1549 return NumClasses > 1;
1550}
1551
1552void ConnectedSubRegClasses::rewriteOperands(const IntEqClasses &Classes,
1553 const SmallVectorImpl<SubRangeInfo> &SubRangeInfos,
1554 const SmallVectorImpl<LiveInterval*> &Intervals) const {
1555 const TargetRegisterInfo &TRI = *MRI.getTargetRegisterInfo();
1556 unsigned Reg = Intervals[0]->reg;;
1557 for (MachineRegisterInfo::reg_nodbg_iterator I = MRI.reg_nodbg_begin(Reg),
1558 E = MRI.reg_nodbg_end(); I != E; ) {
1559 MachineOperand &MO = *I++;
1560 if (!MO.isDef() && !MO.readsReg())
1561 continue;
1562
1563 MachineInstr &MI = *MO.getParent();
1564
1565 SlotIndex Pos = LIS.getInstructionIndex(&MI);
1566 unsigned SubRegIdx = MO.getSubReg();
1567 LaneBitmask LaneMask = TRI.getSubRegIndexLaneMask(SubRegIdx);
1568
1569 unsigned ID = ~0u;
1570 for (auto &SRInfo : SubRangeInfos) {
1571 const LiveInterval::SubRange &SR = *SRInfo.SR;
1572 if ((SR.LaneMask & LaneMask) == 0)
1573 continue;
1574 LiveRange::const_iterator I = SR.find(Pos);
1575 if (I == SR.end())
1576 continue;
1577
1578 const VNInfo &VNI = *I->valno;
1579 // Map to local representant ID.
1580 unsigned LocalID = SRInfo.ConEQ.getEqClass(&VNI);
1581 // Global ID
1582 ID = Classes[LocalID + SRInfo.Index];
1583 break;
1584 }
1585
1586 unsigned VReg = Intervals[ID]->reg;
1587 MO.setReg(VReg);
1588 }
1589}
1590
1591void ConnectedSubRegClasses::distribute(const IntEqClasses &Classes,
1592 const SmallVectorImpl<SubRangeInfo> &SubRangeInfos,
1593 const SmallVectorImpl<LiveInterval*> &Intervals) const {
1594 unsigned NumClasses = Classes.getNumClasses();
1595 SmallVector<unsigned, 8> VNIMapping;
1596 SmallVector<LiveInterval::SubRange*, 8> SubRanges;
1597 BumpPtrAllocator &Allocator = LIS.getVNInfoAllocator();
1598 for (auto &SRInfo : SubRangeInfos) {
1599 LiveInterval::SubRange &SR = *SRInfo.SR;
1600 unsigned NumValNos = SR.valnos.size();
1601 VNIMapping.clear();
1602 VNIMapping.reserve(NumValNos);
1603 SubRanges.clear();
1604 SubRanges.resize(NumClasses-1, nullptr);
1605 for (unsigned I = 0; I < NumValNos; ++I) {
1606 const VNInfo &VNI = *SR.valnos[I];
1607 unsigned LocalID = SRInfo.ConEQ.getEqClass(&VNI);
1608 unsigned ID = Classes[LocalID + SRInfo.Index];
1609 VNIMapping.push_back(ID);
1610 if (ID > 0 && SubRanges[ID-1] == nullptr)
1611 SubRanges[ID-1] = Intervals[ID]->createSubRange(Allocator, SR.LaneMask);
1612 }
1613 DistributeRange(SR, SubRanges.data(), VNIMapping);
1614 }
1615}
1616
1617void ConnectedSubRegClasses::computeMainRangesFixFlags(
1618 const IntEqClasses &Classes,
1619 const SmallVectorImpl<SubRangeInfo> &SubRangeInfos,
1620 const SmallVectorImpl<LiveInterval*> &Intervals) const {
1621 BumpPtrAllocator &Allocator = LIS.getVNInfoAllocator();
1622 for (size_t I = 0, E = Intervals.size(); I < E; ++I) {
1623 LiveInterval *LI = Intervals[I];
1624 LI->removeEmptySubRanges();
1625 if (I == 0)
1626 LI->clear();
1627 LI->constructMainRangeFromSubranges(*LIS.getSlotIndexes(), Allocator);
1628
1629 for (MachineOperand &MO : MRI.reg_nodbg_operands(LI->reg)) {
1630 if (!MO.isDef())
1631 continue;
1632 unsigned SubRegIdx = MO.getSubReg();
1633 if (SubRegIdx == 0)
1634 continue;
1635 // After assigning the new vreg we may not have any other sublanes living
1636 // in and out of the instruction anymore. We need to add new dead and kill
1637 // flags in these cases.
1638 if (!MO.isUndef()) {
1639 SlotIndex Pos = LIS.getInstructionIndex(MO.getParent());
1640 if (!LI->liveAt(Pos.getBaseIndex()))
1641 MO.setIsUndef();
1642 }
1643 if (!MO.isDead()) {
1644 SlotIndex Pos = LIS.getInstructionIndex(MO.getParent());
1645 if (!LI->liveAt(Pos.getDeadSlot()))
1646 MO.setIsDead();
1647 }
1648 }
1649 }
1650}