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Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +00001//===---------- SplitKit.cpp - Toolkit for splitting live ranges ----------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file contains the SplitAnalysis class as well as mutator functions for
11// live range splitting.
12//
13//===----------------------------------------------------------------------===//
14
Jakob Stoklund Olesen376dcbd2010-11-03 20:39:23 +000015#define DEBUG_TYPE "regalloc"
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000016#include "SplitKit.h"
Jakob Stoklund Olesena17768f2010-10-14 23:49:52 +000017#include "LiveRangeEdit.h"
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +000018#include "VirtRegMap.h"
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +000019#include "llvm/ADT/Statistic.h"
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000020#include "llvm/CodeGen/LiveIntervalAnalysis.h"
Jakob Stoklund Olesend68f4582010-10-28 20:34:50 +000021#include "llvm/CodeGen/MachineDominators.h"
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +000022#include "llvm/CodeGen/MachineInstrBuilder.h"
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000023#include "llvm/CodeGen/MachineRegisterInfo.h"
24#include "llvm/Support/Debug.h"
25#include "llvm/Support/raw_ostream.h"
Jakob Stoklund Olesen6a0dc072010-07-20 21:46:58 +000026#include "llvm/Target/TargetInstrInfo.h"
27#include "llvm/Target/TargetMachine.h"
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000028
29using namespace llvm;
30
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +000031STATISTIC(NumFinished, "Number of splits finished");
32STATISTIC(NumSimple, "Number of splits that were simple");
Jakob Stoklund Olesene9bd4ea2011-05-05 17:22:53 +000033STATISTIC(NumCopies, "Number of copies inserted for splitting");
34STATISTIC(NumRemats, "Number of rematerialized defs for splitting");
Jakob Stoklund Olesenbdda37d2011-05-10 17:37:41 +000035STATISTIC(NumRepairs, "Number of invalid live ranges repaired");
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +000036
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000037//===----------------------------------------------------------------------===//
38// Split Analysis
39//===----------------------------------------------------------------------===//
40
Jakob Stoklund Olesen1b847de2011-02-19 00:53:42 +000041SplitAnalysis::SplitAnalysis(const VirtRegMap &vrm,
Jakob Stoklund Olesenf2c6e362010-07-20 23:50:15 +000042 const LiveIntervals &lis,
43 const MachineLoopInfo &mli)
Jakob Stoklund Olesen1b847de2011-02-19 00:53:42 +000044 : MF(vrm.getMachineFunction()),
45 VRM(vrm),
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +000046 LIS(lis),
47 Loops(mli),
Jakob Stoklund Olesen1b847de2011-02-19 00:53:42 +000048 TII(*MF.getTarget().getInstrInfo()),
Jakob Stoklund Olesen1a774452011-04-05 04:20:27 +000049 CurLI(0),
50 LastSplitPoint(MF.getNumBlockIDs()) {}
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000051
52void SplitAnalysis::clear() {
Jakob Stoklund Olesenb5fa9332011-01-18 21:13:27 +000053 UseSlots.clear();
Jakob Stoklund Olesendb529a82011-04-06 03:57:00 +000054 UseBlocks.clear();
55 ThroughBlocks.clear();
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +000056 CurLI = 0;
Jakob Stoklund Olesen7d6b6a02011-05-03 20:42:13 +000057 DidRepairRange = false;
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +000058}
59
Jakob Stoklund Olesen1a774452011-04-05 04:20:27 +000060SlotIndex SplitAnalysis::computeLastSplitPoint(unsigned Num) {
61 const MachineBasicBlock *MBB = MF.getBlockNumbered(Num);
62 const MachineBasicBlock *LPad = MBB->getLandingPadSuccessor();
63 std::pair<SlotIndex, SlotIndex> &LSP = LastSplitPoint[Num];
64
65 // Compute split points on the first call. The pair is independent of the
66 // current live interval.
67 if (!LSP.first.isValid()) {
68 MachineBasicBlock::const_iterator FirstTerm = MBB->getFirstTerminator();
69 if (FirstTerm == MBB->end())
70 LSP.first = LIS.getMBBEndIdx(MBB);
71 else
72 LSP.first = LIS.getInstructionIndex(FirstTerm);
73
74 // If there is a landing pad successor, also find the call instruction.
75 if (!LPad)
76 return LSP.first;
77 // There may not be a call instruction (?) in which case we ignore LPad.
78 LSP.second = LSP.first;
Jakob Stoklund Olesen1e0bd632011-06-28 01:18:58 +000079 for (MachineBasicBlock::const_iterator I = MBB->end(), E = MBB->begin();
80 I != E;) {
81 --I;
Jakob Stoklund Olesen1a774452011-04-05 04:20:27 +000082 if (I->getDesc().isCall()) {
83 LSP.second = LIS.getInstructionIndex(I);
84 break;
85 }
Jakob Stoklund Olesen1e0bd632011-06-28 01:18:58 +000086 }
Jakob Stoklund Olesen1a774452011-04-05 04:20:27 +000087 }
88
89 // If CurLI is live into a landing pad successor, move the last split point
90 // back to the call that may throw.
Jakob Stoklund Olesen71d9e652011-04-05 23:43:16 +000091 if (LPad && LSP.second.isValid() && LIS.isLiveInToMBB(*CurLI, LPad))
Jakob Stoklund Olesen1a774452011-04-05 04:20:27 +000092 return LSP.second;
93 else
94 return LSP.first;
Jakob Stoklund Olesen6a0dc072010-07-20 21:46:58 +000095}
96
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +000097/// analyzeUses - Count instructions, basic blocks, and loops using CurLI.
Jakob Stoklund Olesenabff2802010-07-20 16:12:37 +000098void SplitAnalysis::analyzeUses() {
Jakob Stoklund Olesena2948ef2011-04-05 15:18:18 +000099 assert(UseSlots.empty() && "Call clear first");
100
101 // First get all the defs from the interval values. This provides the correct
102 // slots for early clobbers.
103 for (LiveInterval::const_vni_iterator I = CurLI->vni_begin(),
104 E = CurLI->vni_end(); I != E; ++I)
105 if (!(*I)->isPHIDef() && !(*I)->isUnused())
106 UseSlots.push_back((*I)->def);
107
108 // Get use slots form the use-def chain.
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000109 const MachineRegisterInfo &MRI = MF.getRegInfo();
Jakob Stoklund Olesena2948ef2011-04-05 15:18:18 +0000110 for (MachineRegisterInfo::use_nodbg_iterator
111 I = MRI.use_nodbg_begin(CurLI->reg), E = MRI.use_nodbg_end(); I != E;
112 ++I)
113 if (!I.getOperand().isUndef())
114 UseSlots.push_back(LIS.getInstructionIndex(&*I).getDefIndex());
115
Jakob Stoklund Olesenb5fa9332011-01-18 21:13:27 +0000116 array_pod_sort(UseSlots.begin(), UseSlots.end());
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000117
Jakob Stoklund Olesena2948ef2011-04-05 15:18:18 +0000118 // Remove duplicates, keeping the smaller slot for each instruction.
119 // That is what we want for early clobbers.
120 UseSlots.erase(std::unique(UseSlots.begin(), UseSlots.end(),
121 SlotIndex::isSameInstr),
122 UseSlots.end());
123
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000124 // Compute per-live block info.
125 if (!calcLiveBlockInfo()) {
126 // FIXME: calcLiveBlockInfo found inconsistencies in the live range.
Rafael Espindola5b220212011-06-26 22:34:10 +0000127 // I am looking at you, RegisterCoalescer!
Jakob Stoklund Olesen7d6b6a02011-05-03 20:42:13 +0000128 DidRepairRange = true;
Jakob Stoklund Olesenbdda37d2011-05-10 17:37:41 +0000129 ++NumRepairs;
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000130 DEBUG(dbgs() << "*** Fixing inconsistent live interval! ***\n");
131 const_cast<LiveIntervals&>(LIS)
132 .shrinkToUses(const_cast<LiveInterval*>(CurLI));
Jakob Stoklund Olesendb529a82011-04-06 03:57:00 +0000133 UseBlocks.clear();
134 ThroughBlocks.clear();
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000135 bool fixed = calcLiveBlockInfo();
136 (void)fixed;
137 assert(fixed && "Couldn't fix broken live interval");
138 }
139
Jakob Stoklund Olesenef1f5cc2011-03-27 22:49:23 +0000140 DEBUG(dbgs() << "Analyze counted "
Jakob Stoklund Olesendb529a82011-04-06 03:57:00 +0000141 << UseSlots.size() << " instrs in "
142 << UseBlocks.size() << " blocks, through "
Jakob Stoklund Olesenf4afdfc2011-04-09 02:59:09 +0000143 << NumThroughBlocks << " blocks.\n");
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +0000144}
145
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000146/// calcLiveBlockInfo - Fill the LiveBlocks array with information about blocks
147/// where CurLI is live.
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000148bool SplitAnalysis::calcLiveBlockInfo() {
Jakob Stoklund Olesenf4afdfc2011-04-09 02:59:09 +0000149 ThroughBlocks.resize(MF.getNumBlockIDs());
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000150 NumThroughBlocks = NumGapBlocks = 0;
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000151 if (CurLI->empty())
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000152 return true;
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000153
154 LiveInterval::const_iterator LVI = CurLI->begin();
155 LiveInterval::const_iterator LVE = CurLI->end();
156
157 SmallVectorImpl<SlotIndex>::const_iterator UseI, UseE;
158 UseI = UseSlots.begin();
159 UseE = UseSlots.end();
160
161 // Loop over basic blocks where CurLI is live.
162 MachineFunction::iterator MFI = LIS.getMBBFromIndex(LVI->start);
163 for (;;) {
164 BlockInfo BI;
165 BI.MBB = MFI;
Jakob Stoklund Olesen6c8afd72011-04-04 15:32:15 +0000166 SlotIndex Start, Stop;
167 tie(Start, Stop) = LIS.getSlotIndexes()->getMBBRange(BI.MBB);
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000168
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000169 // If the block contains no uses, the range must be live through. At one
Rafael Espindola5b220212011-06-26 22:34:10 +0000170 // point, RegisterCoalescer could create dangling ranges that ended
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000171 // mid-block.
172 if (UseI == UseE || *UseI >= Stop) {
173 ++NumThroughBlocks;
174 ThroughBlocks.set(BI.MBB->getNumber());
175 // The range shouldn't end mid-block if there are no uses. This shouldn't
176 // happen.
177 if (LVI->end < Stop)
178 return false;
179 } else {
180 // This block has uses. Find the first and last uses in the block.
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +0000181 BI.FirstInstr = *UseI;
182 assert(BI.FirstInstr >= Start);
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000183 do ++UseI;
Jakob Stoklund Olesen6c8afd72011-04-04 15:32:15 +0000184 while (UseI != UseE && *UseI < Stop);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +0000185 BI.LastInstr = UseI[-1];
186 assert(BI.LastInstr < Stop);
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000187
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000188 // LVI is the first live segment overlapping MBB.
189 BI.LiveIn = LVI->start <= Start;
Jakob Stoklund Olesen626d6fb2011-05-29 21:24:39 +0000190
Jakob Stoklund Olesen77ee1142011-08-02 22:37:22 +0000191 // When not live in, the first use should be a def.
192 if (!BI.LiveIn) {
193 assert(LVI->start == LVI->valno->def && "Dangling LiveRange start");
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +0000194 assert(LVI->start == BI.FirstInstr && "First instr should be a def");
195 BI.FirstDef = BI.FirstInstr;
Jakob Stoklund Olesen77ee1142011-08-02 22:37:22 +0000196 }
197
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000198 // Look for gaps in the live range.
199 BI.LiveOut = true;
200 while (LVI->end < Stop) {
201 SlotIndex LastStop = LVI->end;
202 if (++LVI == LVE || LVI->start >= Stop) {
203 BI.LiveOut = false;
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +0000204 BI.LastInstr = LastStop;
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000205 break;
206 }
Jakob Stoklund Olesen77ee1142011-08-02 22:37:22 +0000207
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000208 if (LastStop < LVI->start) {
209 // There is a gap in the live range. Create duplicate entries for the
210 // live-in snippet and the live-out snippet.
211 ++NumGapBlocks;
212
213 // Push the Live-in part.
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000214 BI.LiveOut = false;
215 UseBlocks.push_back(BI);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +0000216 UseBlocks.back().LastInstr = LastStop;
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000217
218 // Set up BI for the live-out part.
219 BI.LiveIn = false;
220 BI.LiveOut = true;
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +0000221 BI.FirstInstr = BI.FirstDef = LVI->start;
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000222 }
Jakob Stoklund Olesen77ee1142011-08-02 22:37:22 +0000223
224 // A LiveRange that starts in the middle of the block must be a def.
225 assert(LVI->start == LVI->valno->def && "Dangling LiveRange start");
226 if (!BI.FirstDef)
227 BI.FirstDef = LVI->start;
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000228 }
229
Jakob Stoklund Olesen626d6fb2011-05-29 21:24:39 +0000230 UseBlocks.push_back(BI);
Jakob Stoklund Olesen626d6fb2011-05-29 21:24:39 +0000231
Jakob Stoklund Olesena2e79ef2011-05-30 01:33:26 +0000232 // LVI is now at LVE or LVI->end >= Stop.
233 if (LVI == LVE)
234 break;
235 }
Jakob Stoklund Olesen626d6fb2011-05-29 21:24:39 +0000236
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000237 // Live segment ends exactly at Stop. Move to the next segment.
Jakob Stoklund Olesen6c8afd72011-04-04 15:32:15 +0000238 if (LVI->end == Stop && ++LVI == LVE)
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000239 break;
240
241 // Pick the next basic block.
Jakob Stoklund Olesen6c8afd72011-04-04 15:32:15 +0000242 if (LVI->start < Stop)
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000243 ++MFI;
244 else
245 MFI = LIS.getMBBFromIndex(LVI->start);
246 }
Jakob Stoklund Olesenb2abfa02011-05-28 02:32:57 +0000247
248 assert(getNumLiveBlocks() == countLiveBlocks(CurLI) && "Bad block count");
Jakob Stoklund Olesen2b0f9e72011-03-05 18:33:49 +0000249 return true;
Jakob Stoklund Olesenf0ac26c2011-02-09 22:50:26 +0000250}
251
Jakob Stoklund Olesen9f4b8932011-04-26 22:33:12 +0000252unsigned SplitAnalysis::countLiveBlocks(const LiveInterval *cli) const {
253 if (cli->empty())
254 return 0;
255 LiveInterval *li = const_cast<LiveInterval*>(cli);
256 LiveInterval::iterator LVI = li->begin();
257 LiveInterval::iterator LVE = li->end();
258 unsigned Count = 0;
259
260 // Loop over basic blocks where li is live.
261 MachineFunction::const_iterator MFI = LIS.getMBBFromIndex(LVI->start);
262 SlotIndex Stop = LIS.getMBBEndIdx(MFI);
263 for (;;) {
264 ++Count;
265 LVI = li->advanceTo(LVI, Stop);
266 if (LVI == LVE)
267 return Count;
268 do {
269 ++MFI;
270 Stop = LIS.getMBBEndIdx(MFI);
271 } while (Stop <= LVI->start);
272 }
273}
274
Jakob Stoklund Olesen06c0f252011-02-21 23:09:46 +0000275bool SplitAnalysis::isOriginalEndpoint(SlotIndex Idx) const {
276 unsigned OrigReg = VRM.getOriginal(CurLI->reg);
277 const LiveInterval &Orig = LIS.getInterval(OrigReg);
278 assert(!Orig.empty() && "Splitting empty interval?");
279 LiveInterval::const_iterator I = Orig.find(Idx);
280
281 // Range containing Idx should begin at Idx.
282 if (I != Orig.end() && I->start <= Idx)
283 return I->start == Idx;
284
285 // Range does not contain Idx, previous must end at Idx.
286 return I != Orig.begin() && (--I)->end == Idx;
287}
288
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +0000289void SplitAnalysis::analyze(const LiveInterval *li) {
290 clear();
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000291 CurLI = li;
Jakob Stoklund Olesenabff2802010-07-20 16:12:37 +0000292 analyzeUses();
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +0000293}
294
Jakob Stoklund Olesen697483a2010-12-15 17:49:52 +0000295
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000296//===----------------------------------------------------------------------===//
297// Split Editor
298//===----------------------------------------------------------------------===//
299
300/// Create a new SplitEditor for editing the LiveInterval analyzed by SA.
Jakob Stoklund Olesend68f4582010-10-28 20:34:50 +0000301SplitEditor::SplitEditor(SplitAnalysis &sa,
302 LiveIntervals &lis,
303 VirtRegMap &vrm,
Jakob Stoklund Olesenbece06f2011-03-03 01:29:13 +0000304 MachineDominatorTree &mdt)
Jakob Stoklund Olesen0eeca442011-02-19 00:42:33 +0000305 : SA(sa), LIS(lis), VRM(vrm),
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000306 MRI(vrm.getMachineFunction().getRegInfo()),
Eric Christopher0f438112011-02-03 06:18:29 +0000307 MDT(mdt),
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000308 TII(*vrm.getMachineFunction().getTarget().getInstrInfo()),
309 TRI(*vrm.getMachineFunction().getTarget().getRegisterInfo()),
Jakob Stoklund Olesenbece06f2011-03-03 01:29:13 +0000310 Edit(0),
Eric Christopher0f438112011-02-03 06:18:29 +0000311 OpenIdx(0),
Jakob Stoklund Olesen708d06f2011-09-12 16:49:21 +0000312 SpillMode(SM_Partition),
Eric Christopher0f438112011-02-03 06:18:29 +0000313 RegAssign(Allocator)
Jakob Stoklund Olesenbece06f2011-03-03 01:29:13 +0000314{}
315
Jakob Stoklund Olesen708d06f2011-09-12 16:49:21 +0000316void SplitEditor::reset(LiveRangeEdit &LRE, ComplementSpillMode SM) {
317 Edit = &LRE;
318 SpillMode = SM;
Jakob Stoklund Olesenbece06f2011-03-03 01:29:13 +0000319 OpenIdx = 0;
320 RegAssign.clear();
321 Values.clear();
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000322
323 // We don't need to clear LiveOutCache, only LiveOutSeen entries are read.
324 LiveOutSeen.clear();
Jakob Stoklund Olesenbece06f2011-03-03 01:29:13 +0000325
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000326 // We don't need an AliasAnalysis since we will only be performing
327 // cheap-as-a-copy remats anyway.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000328 Edit->anyRematerializable(LIS, TII, 0);
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000329}
330
Eric Christopher0f438112011-02-03 06:18:29 +0000331void SplitEditor::dump() const {
332 if (RegAssign.empty()) {
333 dbgs() << " empty\n";
334 return;
335 }
336
337 for (RegAssignMap::const_iterator I = RegAssign.begin(); I.valid(); ++I)
338 dbgs() << " [" << I.start() << ';' << I.stop() << "):" << I.value();
339 dbgs() << '\n';
Jakob Stoklund Olesen5fa42a42010-09-21 22:32:21 +0000340}
341
Jakob Stoklund Olesen670ccd12011-03-01 23:14:53 +0000342VNInfo *SplitEditor::defValue(unsigned RegIdx,
343 const VNInfo *ParentVNI,
344 SlotIndex Idx) {
345 assert(ParentVNI && "Mapping NULL value");
346 assert(Idx.isValid() && "Invalid SlotIndex");
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000347 assert(Edit->getParent().getVNInfoAt(Idx) == ParentVNI && "Bad Parent VNI");
348 LiveInterval *LI = Edit->get(RegIdx);
Jakob Stoklund Olesen670ccd12011-03-01 23:14:53 +0000349
350 // Create a new value.
351 VNInfo *VNI = LI->getNextValue(Idx, 0, LIS.getVNInfoAllocator());
352
Jakob Stoklund Olesen670ccd12011-03-01 23:14:53 +0000353 // Use insert for lookup, so we can add missing values with a second lookup.
354 std::pair<ValueMap::iterator, bool> InsP =
355 Values.insert(std::make_pair(std::make_pair(RegIdx, ParentVNI->id), VNI));
356
357 // This was the first time (RegIdx, ParentVNI) was mapped.
358 // Keep it as a simple def without any liveness.
359 if (InsP.second)
360 return VNI;
361
362 // If the previous value was a simple mapping, add liveness for it now.
363 if (VNInfo *OldVNI = InsP.first->second) {
364 SlotIndex Def = OldVNI->def;
365 LI->addRange(LiveRange(Def, Def.getNextSlot(), OldVNI));
366 // No longer a simple mapping.
367 InsP.first->second = 0;
368 }
369
370 // This is a complex mapping, add liveness for VNI
371 SlotIndex Def = VNI->def;
372 LI->addRange(LiveRange(Def, Def.getNextSlot(), VNI));
373
374 return VNI;
375}
376
377void SplitEditor::markComplexMapped(unsigned RegIdx, const VNInfo *ParentVNI) {
378 assert(ParentVNI && "Mapping NULL value");
379 VNInfo *&VNI = Values[std::make_pair(RegIdx, ParentVNI->id)];
380
381 // ParentVNI was either unmapped or already complex mapped. Either way.
382 if (!VNI)
383 return;
384
385 // This was previously a single mapping. Make sure the old def is represented
386 // by a trivial live range.
387 SlotIndex Def = VNI->def;
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000388 Edit->get(RegIdx)->addRange(LiveRange(Def, Def.getNextSlot(), VNI));
Jakob Stoklund Olesen670ccd12011-03-01 23:14:53 +0000389 VNI = 0;
390}
391
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000392// extendRange - Extend the live range to reach Idx.
393// Potentially create phi-def values.
394void SplitEditor::extendRange(unsigned RegIdx, SlotIndex Idx) {
395 assert(Idx.isValid() && "Invalid SlotIndex");
396 MachineBasicBlock *IdxMBB = LIS.getMBBFromIndex(Idx);
397 assert(IdxMBB && "No MBB at Idx");
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000398 LiveInterval *LI = Edit->get(RegIdx);
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000399
400 // Is there a def in the same MBB we can extend?
401 if (LI->extendInBlock(LIS.getMBBStartIdx(IdxMBB), Idx))
402 return;
403
404 // Now for the fun part. We know that ParentVNI potentially has multiple defs,
405 // and we may need to create even more phi-defs to preserve VNInfo SSA form.
406 // Perform a search for all predecessor blocks where we know the dominating
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000407 // VNInfo.
408 VNInfo *VNI = findReachingDefs(LI, IdxMBB, Idx.getNextSlot());
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000409
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000410 // When there were multiple different values, we may need new PHIs.
411 if (!VNI)
412 return updateSSA();
413
414 // Poor man's SSA update for the single-value case.
415 LiveOutPair LOP(VNI, MDT[LIS.getMBBFromIndex(VNI->def)]);
416 for (SmallVectorImpl<LiveInBlock>::iterator I = LiveInBlocks.begin(),
417 E = LiveInBlocks.end(); I != E; ++I) {
418 MachineBasicBlock *MBB = I->DomNode->getBlock();
419 SlotIndex Start = LIS.getMBBStartIdx(MBB);
420 if (I->Kill.isValid())
421 LI->addRange(LiveRange(Start, I->Kill, VNI));
422 else {
423 LiveOutCache[MBB] = LOP;
424 LI->addRange(LiveRange(Start, LIS.getMBBEndIdx(MBB), VNI));
425 }
426 }
427}
428
429/// findReachingDefs - Search the CFG for known live-out values.
430/// Add required live-in blocks to LiveInBlocks.
431VNInfo *SplitEditor::findReachingDefs(LiveInterval *LI,
432 MachineBasicBlock *KillMBB,
433 SlotIndex Kill) {
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000434 // Initialize the live-out cache the first time it is needed.
435 if (LiveOutSeen.empty()) {
436 unsigned N = VRM.getMachineFunction().getNumBlockIDs();
437 LiveOutSeen.resize(N);
438 LiveOutCache.resize(N);
439 }
440
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000441 // Blocks where LI should be live-in.
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000442 SmallVector<MachineBasicBlock*, 16> WorkList(1, KillMBB);
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000443
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000444 // Remember if we have seen more than one value.
445 bool UniqueVNI = true;
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000446 VNInfo *TheVNI = 0;
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000447
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000448 // Using LiveOutCache as a visited set, perform a BFS for all reaching defs.
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000449 for (unsigned i = 0; i != WorkList.size(); ++i) {
450 MachineBasicBlock *MBB = WorkList[i];
Jakob Stoklund Olesen7cec1792011-03-18 03:06:02 +0000451 assert(!MBB->pred_empty() && "Value live-in to entry block?");
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000452 for (MachineBasicBlock::pred_iterator PI = MBB->pred_begin(),
453 PE = MBB->pred_end(); PI != PE; ++PI) {
454 MachineBasicBlock *Pred = *PI;
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000455 LiveOutPair &LOP = LiveOutCache[Pred];
456
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000457 // Is this a known live-out block?
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000458 if (LiveOutSeen.test(Pred->getNumber())) {
459 if (VNInfo *VNI = LOP.first) {
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000460 if (TheVNI && TheVNI != VNI)
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000461 UniqueVNI = false;
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000462 TheVNI = VNI;
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000463 }
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000464 continue;
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000465 }
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000466
467 // First time. LOP is garbage and must be cleared below.
468 LiveOutSeen.set(Pred->getNumber());
469
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000470 // Does Pred provide a live-out value?
471 SlotIndex Start, Last;
472 tie(Start, Last) = LIS.getSlotIndexes()->getMBBRange(Pred);
473 Last = Last.getPrevSlot();
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000474 VNInfo *VNI = LI->extendInBlock(Start, Last);
475 LOP.first = VNI;
476 if (VNI) {
477 LOP.second = MDT[LIS.getMBBFromIndex(VNI->def)];
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000478 if (TheVNI && TheVNI != VNI)
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000479 UniqueVNI = false;
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000480 TheVNI = VNI;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000481 continue;
482 }
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000483 LOP.second = 0;
484
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000485 // No, we need a live-in value for Pred as well
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000486 if (Pred != KillMBB)
487 WorkList.push_back(Pred);
Jakob Stoklund Olesen87017682011-03-03 01:29:10 +0000488 else
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000489 // Loopback to KillMBB, so value is really live through.
490 Kill = SlotIndex();
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000491 }
492 }
493
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000494 // Transfer WorkList to LiveInBlocks in reverse order.
495 // This ordering works best with updateSSA().
496 LiveInBlocks.clear();
497 LiveInBlocks.reserve(WorkList.size());
498 while(!WorkList.empty())
499 LiveInBlocks.push_back(MDT[WorkList.pop_back_val()]);
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000500
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000501 // The kill block may not be live-through.
502 assert(LiveInBlocks.back().DomNode->getBlock() == KillMBB);
503 LiveInBlocks.back().Kill = Kill;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000504
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000505 return UniqueVNI ? TheVNI : 0;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000506}
507
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000508void SplitEditor::updateSSA() {
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000509 // This is essentially the same iterative algorithm that SSAUpdater uses,
510 // except we already have a dominator tree, so we don't have to recompute it.
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000511 unsigned Changes;
512 do {
513 Changes = 0;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000514 // Propagate live-out values down the dominator tree, inserting phi-defs
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000515 // when necessary.
516 for (SmallVectorImpl<LiveInBlock>::iterator I = LiveInBlocks.begin(),
517 E = LiveInBlocks.end(); I != E; ++I) {
518 MachineDomTreeNode *Node = I->DomNode;
519 // Skip block if the live-in value has already been determined.
520 if (!Node)
521 continue;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000522 MachineBasicBlock *MBB = Node->getBlock();
523 MachineDomTreeNode *IDom = Node->getIDom();
524 LiveOutPair IDomValue;
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000525
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000526 // We need a live-in value to a block with no immediate dominator?
527 // This is probably an unreachable block that has survived somehow.
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000528 bool needPHI = !IDom || !LiveOutSeen.test(IDom->getBlock()->getNumber());
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000529
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000530 // IDom dominates all of our predecessors, but it may not be their
531 // immediate dominator. Check if any of them have live-out values that are
532 // properly dominated by IDom. If so, we need a phi-def here.
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000533 if (!needPHI) {
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000534 IDomValue = LiveOutCache[IDom->getBlock()];
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000535 for (MachineBasicBlock::pred_iterator PI = MBB->pred_begin(),
536 PE = MBB->pred_end(); PI != PE; ++PI) {
537 LiveOutPair Value = LiveOutCache[*PI];
538 if (!Value.first || Value.first == IDomValue.first)
539 continue;
540 // This predecessor is carrying something other than IDomValue.
541 // It could be because IDomValue hasn't propagated yet, or it could be
542 // because MBB is in the dominance frontier of that value.
543 if (MDT.dominates(IDom, Value.second)) {
544 needPHI = true;
545 break;
546 }
547 }
548 }
549
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000550 // The value may be live-through even if Kill is set, as can happen when
551 // we are called from extendRange. In that case LiveOutSeen is true, and
552 // LiveOutCache indicates a foreign or missing value.
553 LiveOutPair &LOP = LiveOutCache[MBB];
554
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000555 // Create a phi-def if required.
556 if (needPHI) {
557 ++Changes;
558 SlotIndex Start = LIS.getMBBStartIdx(MBB);
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000559 unsigned RegIdx = RegAssign.lookup(Start);
560 LiveInterval *LI = Edit->get(RegIdx);
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000561 VNInfo *VNI = LI->getNextValue(Start, 0, LIS.getVNInfoAllocator());
562 VNI->setIsPHIDef(true);
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000563 I->Value = VNI;
564 // This block is done, we know the final value.
565 I->DomNode = 0;
566 if (I->Kill.isValid())
567 LI->addRange(LiveRange(Start, I->Kill, VNI));
568 else {
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000569 LI->addRange(LiveRange(Start, LIS.getMBBEndIdx(MBB), VNI));
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000570 LOP = LiveOutPair(VNI, Node);
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000571 }
572 } else if (IDomValue.first) {
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000573 // No phi-def here. Remember incoming value.
574 I->Value = IDomValue.first;
575 if (I->Kill.isValid())
576 continue;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000577 // Propagate IDomValue if needed:
578 // MBB is live-out and doesn't define its own value.
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000579 if (LOP.second != Node && LOP.first != IDomValue.first) {
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000580 ++Changes;
Jakob Stoklund Olesen13ba2da2011-03-04 00:15:36 +0000581 LOP = IDomValue;
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000582 }
583 }
584 }
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000585 } while (Changes);
586
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000587 // The values in LiveInBlocks are now accurate. No more phi-defs are needed
588 // for these blocks, so we can color the live ranges.
589 for (SmallVectorImpl<LiveInBlock>::iterator I = LiveInBlocks.begin(),
590 E = LiveInBlocks.end(); I != E; ++I) {
591 if (!I->DomNode)
592 continue;
593 assert(I->Value && "No live-in value found");
594 MachineBasicBlock *MBB = I->DomNode->getBlock();
595 SlotIndex Start = LIS.getMBBStartIdx(MBB);
596 unsigned RegIdx = RegAssign.lookup(Start);
597 LiveInterval *LI = Edit->get(RegIdx);
598 LI->addRange(LiveRange(Start, I->Kill.isValid() ?
599 I->Kill : LIS.getMBBEndIdx(MBB), I->Value));
600 }
Jakob Stoklund Olesen1c38ba62011-03-02 01:59:34 +0000601}
602
Eric Christopher0f438112011-02-03 06:18:29 +0000603VNInfo *SplitEditor::defFromParent(unsigned RegIdx,
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000604 VNInfo *ParentVNI,
605 SlotIndex UseIdx,
606 MachineBasicBlock &MBB,
607 MachineBasicBlock::iterator I) {
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000608 MachineInstr *CopyMI = 0;
609 SlotIndex Def;
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000610 LiveInterval *LI = Edit->get(RegIdx);
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000611
Jakob Stoklund Olesenbb30dd42011-05-02 05:29:58 +0000612 // We may be trying to avoid interference that ends at a deleted instruction,
613 // so always begin RegIdx 0 early and all others late.
614 bool Late = RegIdx != 0;
615
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000616 // Attempt cheap-as-a-copy rematerialization.
617 LiveRangeEdit::Remat RM(ParentVNI);
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000618 if (Edit->canRematerializeAt(RM, UseIdx, true, LIS)) {
Jakob Stoklund Olesenbb30dd42011-05-02 05:29:58 +0000619 Def = Edit->rematerializeAt(MBB, I, LI->reg, RM, LIS, TII, TRI, Late);
Jakob Stoklund Olesene9bd4ea2011-05-05 17:22:53 +0000620 ++NumRemats;
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000621 } else {
622 // Can't remat, just insert a copy from parent.
Eric Christopher0f438112011-02-03 06:18:29 +0000623 CopyMI = BuildMI(MBB, I, DebugLoc(), TII.get(TargetOpcode::COPY), LI->reg)
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000624 .addReg(Edit->getReg());
Jakob Stoklund Olesenbb30dd42011-05-02 05:29:58 +0000625 Def = LIS.getSlotIndexes()->insertMachineInstrInMaps(CopyMI, Late)
626 .getDefIndex();
Jakob Stoklund Olesene9bd4ea2011-05-05 17:22:53 +0000627 ++NumCopies;
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000628 }
629
Jakob Stoklund Olesen670ccd12011-03-01 23:14:53 +0000630 // Define the value in Reg.
631 VNInfo *VNI = defValue(RegIdx, ParentVNI, Def);
632 VNI->setCopy(CopyMI);
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000633 return VNI;
634}
635
Jakob Stoklund Olesen7536f722010-08-04 22:08:39 +0000636/// Create a new virtual register and live interval.
Jakob Stoklund Olesene1b43c32011-04-12 18:11:31 +0000637unsigned SplitEditor::openIntv() {
Eric Christopher0f438112011-02-03 06:18:29 +0000638 // Create the complement as index 0.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000639 if (Edit->empty())
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +0000640 Edit->create(LIS, VRM);
Eric Christopher0f438112011-02-03 06:18:29 +0000641
642 // Create the open interval.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000643 OpenIdx = Edit->size();
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +0000644 Edit->create(LIS, VRM);
Jakob Stoklund Olesene1b43c32011-04-12 18:11:31 +0000645 return OpenIdx;
646}
647
648void SplitEditor::selectIntv(unsigned Idx) {
649 assert(Idx != 0 && "Cannot select the complement interval");
650 assert(Idx < Edit->size() && "Can only select previously opened interval");
Jakob Stoklund Olesen87360f72011-06-30 01:30:39 +0000651 DEBUG(dbgs() << " selectIntv " << OpenIdx << " -> " << Idx << '\n');
Jakob Stoklund Olesene1b43c32011-04-12 18:11:31 +0000652 OpenIdx = Idx;
Jakob Stoklund Olesen7536f722010-08-04 22:08:39 +0000653}
654
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000655SlotIndex SplitEditor::enterIntvBefore(SlotIndex Idx) {
Eric Christopher0f438112011-02-03 06:18:29 +0000656 assert(OpenIdx && "openIntv not called before enterIntvBefore");
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000657 DEBUG(dbgs() << " enterIntvBefore " << Idx);
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000658 Idx = Idx.getBaseIndex();
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000659 VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Idx);
Jakob Stoklund Olesenf6a129a2010-09-16 00:01:36 +0000660 if (!ParentVNI) {
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000661 DEBUG(dbgs() << ": not live\n");
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000662 return Idx;
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +0000663 }
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000664 DEBUG(dbgs() << ": valno " << ParentVNI->id << '\n');
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000665 MachineInstr *MI = LIS.getInstructionFromIndex(Idx);
Jakob Stoklund Olesenf6a129a2010-09-16 00:01:36 +0000666 assert(MI && "enterIntvBefore called with invalid index");
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000667
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000668 VNInfo *VNI = defFromParent(OpenIdx, ParentVNI, Idx, *MI->getParent(), MI);
669 return VNI->def;
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +0000670}
671
Jakob Stoklund Olesen87360f72011-06-30 01:30:39 +0000672SlotIndex SplitEditor::enterIntvAfter(SlotIndex Idx) {
673 assert(OpenIdx && "openIntv not called before enterIntvAfter");
674 DEBUG(dbgs() << " enterIntvAfter " << Idx);
675 Idx = Idx.getBoundaryIndex();
676 VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Idx);
677 if (!ParentVNI) {
678 DEBUG(dbgs() << ": not live\n");
679 return Idx;
680 }
681 DEBUG(dbgs() << ": valno " << ParentVNI->id << '\n');
682 MachineInstr *MI = LIS.getInstructionFromIndex(Idx);
683 assert(MI && "enterIntvAfter called with invalid index");
684
685 VNInfo *VNI = defFromParent(OpenIdx, ParentVNI, Idx, *MI->getParent(),
686 llvm::next(MachineBasicBlock::iterator(MI)));
687 return VNI->def;
688}
689
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000690SlotIndex SplitEditor::enterIntvAtEnd(MachineBasicBlock &MBB) {
Eric Christopher0f438112011-02-03 06:18:29 +0000691 assert(OpenIdx && "openIntv not called before enterIntvAtEnd");
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000692 SlotIndex End = LIS.getMBBEndIdx(&MBB);
693 SlotIndex Last = End.getPrevSlot();
694 DEBUG(dbgs() << " enterIntvAtEnd BB#" << MBB.getNumber() << ", " << Last);
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000695 VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Last);
Jakob Stoklund Olesenf6a129a2010-09-16 00:01:36 +0000696 if (!ParentVNI) {
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000697 DEBUG(dbgs() << ": not live\n");
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000698 return End;
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000699 }
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000700 DEBUG(dbgs() << ": valno " << ParentVNI->id);
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000701 VNInfo *VNI = defFromParent(OpenIdx, ParentVNI, Last, MBB,
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000702 LIS.getLastSplitPoint(Edit->getParent(), &MBB));
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000703 RegAssign.insert(VNI->def, End, OpenIdx);
Eric Christopher0f438112011-02-03 06:18:29 +0000704 DEBUG(dump());
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000705 return VNI->def;
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000706}
707
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000708/// useIntv - indicate that all instructions in MBB should use OpenLI.
Jakob Stoklund Olesen7536f722010-08-04 22:08:39 +0000709void SplitEditor::useIntv(const MachineBasicBlock &MBB) {
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000710 useIntv(LIS.getMBBStartIdx(&MBB), LIS.getMBBEndIdx(&MBB));
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000711}
712
Jakob Stoklund Olesen7536f722010-08-04 22:08:39 +0000713void SplitEditor::useIntv(SlotIndex Start, SlotIndex End) {
Eric Christopher0f438112011-02-03 06:18:29 +0000714 assert(OpenIdx && "openIntv not called before useIntv");
715 DEBUG(dbgs() << " useIntv [" << Start << ';' << End << "):");
716 RegAssign.insert(Start, End, OpenIdx);
717 DEBUG(dump());
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000718}
719
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000720SlotIndex SplitEditor::leaveIntvAfter(SlotIndex Idx) {
Eric Christopher0f438112011-02-03 06:18:29 +0000721 assert(OpenIdx && "openIntv not called before leaveIntvAfter");
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000722 DEBUG(dbgs() << " leaveIntvAfter " << Idx);
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +0000723
Jakob Stoklund Olesenf6a129a2010-09-16 00:01:36 +0000724 // The interval must be live beyond the instruction at Idx.
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000725 Idx = Idx.getBoundaryIndex();
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000726 VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Idx);
Jakob Stoklund Olesenf6a129a2010-09-16 00:01:36 +0000727 if (!ParentVNI) {
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000728 DEBUG(dbgs() << ": not live\n");
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000729 return Idx.getNextSlot();
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +0000730 }
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000731 DEBUG(dbgs() << ": valno " << ParentVNI->id << '\n');
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +0000732
Jakob Stoklund Olesen01cb34b2011-02-08 18:50:18 +0000733 MachineInstr *MI = LIS.getInstructionFromIndex(Idx);
734 assert(MI && "No instruction at index");
735 VNInfo *VNI = defFromParent(0, ParentVNI, Idx, *MI->getParent(),
736 llvm::next(MachineBasicBlock::iterator(MI)));
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000737 return VNI->def;
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +0000738}
739
Jakob Stoklund Olesen9b057772011-02-09 23:30:25 +0000740SlotIndex SplitEditor::leaveIntvBefore(SlotIndex Idx) {
741 assert(OpenIdx && "openIntv not called before leaveIntvBefore");
742 DEBUG(dbgs() << " leaveIntvBefore " << Idx);
743
744 // The interval must be live into the instruction at Idx.
Jakob Stoklund Olesenfc479332011-07-18 18:47:13 +0000745 Idx = Idx.getBaseIndex();
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000746 VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Idx);
Jakob Stoklund Olesen9b057772011-02-09 23:30:25 +0000747 if (!ParentVNI) {
748 DEBUG(dbgs() << ": not live\n");
749 return Idx.getNextSlot();
750 }
751 DEBUG(dbgs() << ": valno " << ParentVNI->id << '\n');
752
753 MachineInstr *MI = LIS.getInstructionFromIndex(Idx);
754 assert(MI && "No instruction at index");
755 VNInfo *VNI = defFromParent(0, ParentVNI, Idx, *MI->getParent(), MI);
756 return VNI->def;
757}
758
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000759SlotIndex SplitEditor::leaveIntvAtTop(MachineBasicBlock &MBB) {
Eric Christopher0f438112011-02-03 06:18:29 +0000760 assert(OpenIdx && "openIntv not called before leaveIntvAtTop");
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000761 SlotIndex Start = LIS.getMBBStartIdx(&MBB);
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000762 DEBUG(dbgs() << " leaveIntvAtTop BB#" << MBB.getNumber() << ", " << Start);
Jakob Stoklund Olesen7536f722010-08-04 22:08:39 +0000763
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000764 VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Start);
Jakob Stoklund Olesenf6a129a2010-09-16 00:01:36 +0000765 if (!ParentVNI) {
Jakob Stoklund Olesen9b24afe2010-10-07 17:56:35 +0000766 DEBUG(dbgs() << ": not live\n");
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000767 return Start;
Jakob Stoklund Olesen7536f722010-08-04 22:08:39 +0000768 }
769
Eric Christopher0f438112011-02-03 06:18:29 +0000770 VNInfo *VNI = defFromParent(0, ParentVNI, Start, MBB,
Jakob Stoklund Olesencfa71342010-11-10 19:31:50 +0000771 MBB.SkipPHIsAndLabels(MBB.begin()));
Eric Christopher0f438112011-02-03 06:18:29 +0000772 RegAssign.insert(Start, VNI->def, OpenIdx);
773 DEBUG(dump());
Jakob Stoklund Olesen207c8682011-02-03 17:04:16 +0000774 return VNI->def;
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +0000775}
776
Jakob Stoklund Olesen5c716bd2011-02-08 18:50:21 +0000777void SplitEditor::overlapIntv(SlotIndex Start, SlotIndex End) {
778 assert(OpenIdx && "openIntv not called before overlapIntv");
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000779 const VNInfo *ParentVNI = Edit->getParent().getVNInfoAt(Start);
780 assert(ParentVNI == Edit->getParent().getVNInfoAt(End.getPrevSlot()) &&
Jakob Stoklund Olesen5c716bd2011-02-08 18:50:21 +0000781 "Parent changes value in extended range");
Jakob Stoklund Olesen5c716bd2011-02-08 18:50:21 +0000782 assert(LIS.getMBBFromIndex(Start) == LIS.getMBBFromIndex(End) &&
783 "Range cannot span basic blocks");
784
Jakob Stoklund Olesend3fdaeb2011-03-02 00:49:28 +0000785 // The complement interval will be extended as needed by extendRange().
Jakob Stoklund Olesenb3dd8262011-04-05 23:43:14 +0000786 if (ParentVNI)
787 markComplexMapped(0, ParentVNI);
Jakob Stoklund Olesen5c716bd2011-02-08 18:50:21 +0000788 DEBUG(dbgs() << " overlapIntv [" << Start << ';' << End << "):");
789 RegAssign.insert(Start, End, OpenIdx);
790 DEBUG(dump());
791}
792
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000793/// transferValues - Transfer all possible values to the new live ranges.
794/// Values that were rematerialized are left alone, they need extendRange().
795bool SplitEditor::transferValues() {
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000796 bool Skipped = false;
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000797 LiveInBlocks.clear();
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000798 RegAssignMap::const_iterator AssignI = RegAssign.begin();
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000799 for (LiveInterval::const_iterator ParentI = Edit->getParent().begin(),
800 ParentE = Edit->getParent().end(); ParentI != ParentE; ++ParentI) {
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000801 DEBUG(dbgs() << " blit " << *ParentI << ':');
802 VNInfo *ParentVNI = ParentI->valno;
803 // RegAssign has holes where RegIdx 0 should be used.
804 SlotIndex Start = ParentI->start;
805 AssignI.advanceTo(Start);
806 do {
807 unsigned RegIdx;
808 SlotIndex End = ParentI->end;
809 if (!AssignI.valid()) {
810 RegIdx = 0;
811 } else if (AssignI.start() <= Start) {
812 RegIdx = AssignI.value();
813 if (AssignI.stop() < End) {
814 End = AssignI.stop();
815 ++AssignI;
816 }
817 } else {
818 RegIdx = 0;
819 End = std::min(End, AssignI.start());
820 }
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000821
822 // The interval [Start;End) is continuously mapped to RegIdx, ParentVNI.
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000823 DEBUG(dbgs() << " [" << Start << ';' << End << ")=" << RegIdx);
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000824 LiveInterval *LI = Edit->get(RegIdx);
825
826 // Check for a simply defined value that can be blitted directly.
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000827 if (VNInfo *VNI = Values.lookup(std::make_pair(RegIdx, ParentVNI->id))) {
828 DEBUG(dbgs() << ':' << VNI->id);
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000829 LI->addRange(LiveRange(Start, End, VNI));
830 Start = End;
831 continue;
832 }
833
834 // Skip rematerialized values, we need to use extendRange() and
835 // extendPHIKillRanges() to completely recompute the live ranges.
836 if (Edit->didRematerialize(ParentVNI)) {
837 DEBUG(dbgs() << "(remat)");
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000838 Skipped = true;
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000839 Start = End;
840 continue;
841 }
842
843 // Initialize the live-out cache the first time it is needed.
844 if (LiveOutSeen.empty()) {
845 unsigned N = VRM.getMachineFunction().getNumBlockIDs();
846 LiveOutSeen.resize(N);
847 LiveOutCache.resize(N);
848 }
849
850 // This value has multiple defs in RegIdx, but it wasn't rematerialized,
851 // so the live range is accurate. Add live-in blocks in [Start;End) to the
852 // LiveInBlocks.
853 MachineFunction::iterator MBB = LIS.getMBBFromIndex(Start);
854 SlotIndex BlockStart, BlockEnd;
855 tie(BlockStart, BlockEnd) = LIS.getSlotIndexes()->getMBBRange(MBB);
856
857 // The first block may be live-in, or it may have its own def.
858 if (Start != BlockStart) {
859 VNInfo *VNI = LI->extendInBlock(BlockStart,
860 std::min(BlockEnd, End).getPrevSlot());
861 assert(VNI && "Missing def for complex mapped value");
862 DEBUG(dbgs() << ':' << VNI->id << "*BB#" << MBB->getNumber());
863 // MBB has its own def. Is it also live-out?
864 if (BlockEnd <= End) {
865 LiveOutSeen.set(MBB->getNumber());
866 LiveOutCache[MBB] = LiveOutPair(VNI, MDT[MBB]);
867 }
868 // Skip to the next block for live-in.
869 ++MBB;
870 BlockStart = BlockEnd;
871 }
872
873 // Handle the live-in blocks covered by [Start;End).
874 assert(Start <= BlockStart && "Expected live-in block");
875 while (BlockStart < End) {
876 DEBUG(dbgs() << ">BB#" << MBB->getNumber());
877 BlockEnd = LIS.getMBBEndIdx(MBB);
878 if (BlockStart == ParentVNI->def) {
879 // This block has the def of a parent PHI, so it isn't live-in.
880 assert(ParentVNI->isPHIDef() && "Non-phi defined at block start?");
881 VNInfo *VNI = LI->extendInBlock(BlockStart,
882 std::min(BlockEnd, End).getPrevSlot());
883 assert(VNI && "Missing def for complex mapped parent PHI");
884 if (End >= BlockEnd) {
885 // Live-out as well.
886 LiveOutSeen.set(MBB->getNumber());
887 LiveOutCache[MBB] = LiveOutPair(VNI, MDT[MBB]);
888 }
889 } else {
890 // This block needs a live-in value.
891 LiveInBlocks.push_back(MDT[MBB]);
892 // The last block covered may not be live-out.
893 if (End < BlockEnd)
894 LiveInBlocks.back().Kill = End;
895 else {
896 // Live-out, but we need updateSSA to tell us the value.
897 LiveOutSeen.set(MBB->getNumber());
Francois Pichetcbc5f402011-04-16 14:20:39 +0000898 LiveOutCache[MBB] = LiveOutPair((VNInfo*)0,
899 (MachineDomTreeNode*)0);
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000900 }
901 }
902 BlockStart = BlockEnd;
903 ++MBB;
904 }
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000905 Start = End;
906 } while (Start != ParentI->end);
907 DEBUG(dbgs() << '\n');
908 }
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +0000909
910 if (!LiveInBlocks.empty())
911 updateSSA();
912
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000913 return Skipped;
914}
915
Jakob Stoklund Olesene2dc0c92011-03-02 23:05:16 +0000916void SplitEditor::extendPHIKillRanges() {
917 // Extend live ranges to be live-out for successor PHI values.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000918 for (LiveInterval::const_vni_iterator I = Edit->getParent().vni_begin(),
919 E = Edit->getParent().vni_end(); I != E; ++I) {
Jakob Stoklund Olesene2dc0c92011-03-02 23:05:16 +0000920 const VNInfo *PHIVNI = *I;
921 if (PHIVNI->isUnused() || !PHIVNI->isPHIDef())
922 continue;
923 unsigned RegIdx = RegAssign.lookup(PHIVNI->def);
924 MachineBasicBlock *MBB = LIS.getMBBFromIndex(PHIVNI->def);
925 for (MachineBasicBlock::pred_iterator PI = MBB->pred_begin(),
926 PE = MBB->pred_end(); PI != PE; ++PI) {
927 SlotIndex End = LIS.getMBBEndIdx(*PI).getPrevSlot();
928 // The predecessor may not have a live-out value. That is OK, like an
929 // undef PHI operand.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000930 if (Edit->getParent().liveAt(End)) {
Jakob Stoklund Olesene2dc0c92011-03-02 23:05:16 +0000931 assert(RegAssign.lookup(End) == RegIdx &&
932 "Different register assignment in phi predecessor");
933 extendRange(RegIdx, End);
934 }
935 }
936 }
937}
938
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000939/// rewriteAssigned - Rewrite all uses of Edit->getReg().
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +0000940void SplitEditor::rewriteAssigned(bool ExtendRanges) {
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000941 for (MachineRegisterInfo::reg_iterator RI = MRI.reg_begin(Edit->getReg()),
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000942 RE = MRI.reg_end(); RI != RE;) {
Jakob Stoklund Olesen74669272010-10-08 23:42:21 +0000943 MachineOperand &MO = RI.getOperand();
944 MachineInstr *MI = MO.getParent();
945 ++RI;
Eric Christopher0f438112011-02-03 06:18:29 +0000946 // LiveDebugVariables should have handled all DBG_VALUE instructions.
Jakob Stoklund Olesen74669272010-10-08 23:42:21 +0000947 if (MI->isDebugValue()) {
948 DEBUG(dbgs() << "Zapping " << *MI);
Jakob Stoklund Olesen74669272010-10-08 23:42:21 +0000949 MO.setReg(0);
950 continue;
951 }
Jakob Stoklund Olesena372d162011-02-09 21:52:09 +0000952
Jakob Stoklund Olesenb09701d2011-07-24 20:23:50 +0000953 // <undef> operands don't really read the register, so it doesn't matter
954 // which register we choose. When the use operand is tied to a def, we must
955 // use the same register as the def, so just do that always.
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +0000956 SlotIndex Idx = LIS.getInstructionIndex(MI);
Jakob Stoklund Olesenb09701d2011-07-24 20:23:50 +0000957 if (MO.isDef() || MO.isUndef())
Jakob Stoklund Olesen7cec1792011-03-18 03:06:02 +0000958 Idx = MO.isEarlyClobber() ? Idx.getUseIndex() : Idx.getDefIndex();
Eric Christopher0f438112011-02-03 06:18:29 +0000959
960 // Rewrite to the mapped register at Idx.
961 unsigned RegIdx = RegAssign.lookup(Idx);
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +0000962 MO.setReg(Edit->get(RegIdx)->reg);
Eric Christopher0f438112011-02-03 06:18:29 +0000963 DEBUG(dbgs() << " rewr BB#" << MI->getParent()->getNumber() << '\t'
964 << Idx << ':' << RegIdx << '\t' << *MI);
965
Jakob Stoklund Olesen7cec1792011-03-18 03:06:02 +0000966 // Extend liveness to Idx if the instruction reads reg.
Jakob Stoklund Olesen81d686e2011-07-24 20:33:23 +0000967 if (!ExtendRanges || MO.isUndef())
Jakob Stoklund Olesen7cec1792011-03-18 03:06:02 +0000968 continue;
969
970 // Skip instructions that don't read Reg.
971 if (MO.isDef()) {
972 if (!MO.getSubReg() && !MO.isEarlyClobber())
973 continue;
974 // We may wan't to extend a live range for a partial redef, or for a use
975 // tied to an early clobber.
976 Idx = Idx.getPrevSlot();
977 if (!Edit->getParent().liveAt(Idx))
978 continue;
979 } else
980 Idx = Idx.getUseIndex();
981
982 extendRange(RegIdx, Idx);
Jakob Stoklund Olesen74669272010-10-08 23:42:21 +0000983 }
984}
985
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +0000986void SplitEditor::deleteRematVictims() {
987 SmallVector<MachineInstr*, 8> Dead;
Jakob Stoklund Olesen2dc455a2011-03-20 19:46:23 +0000988 for (LiveRangeEdit::iterator I = Edit->begin(), E = Edit->end(); I != E; ++I){
989 LiveInterval *LI = *I;
990 for (LiveInterval::const_iterator LII = LI->begin(), LIE = LI->end();
991 LII != LIE; ++LII) {
992 // Dead defs end at the store slot.
993 if (LII->end != LII->valno->def.getNextSlot())
994 continue;
995 MachineInstr *MI = LIS.getInstructionFromIndex(LII->valno->def);
996 assert(MI && "Missing instruction for dead def");
997 MI->addRegisterDead(LI->reg, &TRI);
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +0000998
Jakob Stoklund Olesen2dc455a2011-03-20 19:46:23 +0000999 if (!MI->allDefsAreDead())
1000 continue;
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +00001001
Jakob Stoklund Olesen2dc455a2011-03-20 19:46:23 +00001002 DEBUG(dbgs() << "All defs dead: " << *MI);
1003 Dead.push_back(MI);
1004 }
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +00001005 }
1006
1007 if (Dead.empty())
1008 return;
1009
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +00001010 Edit->eliminateDeadDefs(Dead, LIS, VRM, TII);
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +00001011}
1012
Jakob Stoklund Olesen59280462011-04-21 18:38:15 +00001013void SplitEditor::finish(SmallVectorImpl<unsigned> *LRMap) {
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +00001014 ++NumFinished;
Eric Christopher463a2972011-02-03 05:40:54 +00001015
Eric Christopher0f438112011-02-03 06:18:29 +00001016 // At this point, the live intervals in Edit contain VNInfos corresponding to
1017 // the inserted copies.
1018
1019 // Add the original defs from the parent interval.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +00001020 for (LiveInterval::const_vni_iterator I = Edit->getParent().vni_begin(),
1021 E = Edit->getParent().vni_end(); I != E; ++I) {
Eric Christopher0f438112011-02-03 06:18:29 +00001022 const VNInfo *ParentVNI = *I;
Jakob Stoklund Olesen9ecd1e72011-02-04 00:59:23 +00001023 if (ParentVNI->isUnused())
1024 continue;
Jakob Stoklund Olesen670ccd12011-03-01 23:14:53 +00001025 unsigned RegIdx = RegAssign.lookup(ParentVNI->def);
Jakob Stoklund Olesen29ef8752011-03-15 21:13:22 +00001026 VNInfo *VNI = defValue(RegIdx, ParentVNI, ParentVNI->def);
1027 VNI->setIsPHIDef(ParentVNI->isPHIDef());
1028 VNI->setCopy(ParentVNI->getCopy());
1029
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +00001030 // Mark rematted values as complex everywhere to force liveness computation.
1031 // The new live ranges may be truncated.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +00001032 if (Edit->didRematerialize(ParentVNI))
1033 for (unsigned i = 0, e = Edit->size(); i != e; ++i)
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +00001034 markComplexMapped(i, ParentVNI);
Eric Christopher0f438112011-02-03 06:18:29 +00001035 }
1036
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +00001037 // Transfer the simply mapped values, check if any are skipped.
1038 bool Skipped = transferValues();
1039 if (Skipped)
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +00001040 extendPHIKillRanges();
1041 else
1042 ++NumSimple;
Eric Christopher0f438112011-02-03 06:18:29 +00001043
Jakob Stoklund Olesen46703532011-03-02 23:05:19 +00001044 // Rewrite virtual registers, possibly extending ranges.
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +00001045 rewriteAssigned(Skipped);
Eric Christopher0f438112011-02-03 06:18:29 +00001046
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +00001047 // Delete defs that were rematted everywhere.
Jakob Stoklund Olesen44b7ae22011-04-15 17:24:49 +00001048 if (Skipped)
Jakob Stoklund Olesen58817992011-03-08 22:46:11 +00001049 deleteRematVictims();
Jakob Stoklund Olesen5fa42a42010-09-21 22:32:21 +00001050
Jakob Stoklund Olesen0253df92010-10-07 23:34:34 +00001051 // Get rid of unused values and set phi-kill flags.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +00001052 for (LiveRangeEdit::iterator I = Edit->begin(), E = Edit->end(); I != E; ++I)
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +00001053 (*I)->RenumberValues(LIS);
Jakob Stoklund Olesen5fa42a42010-09-21 22:32:21 +00001054
Jakob Stoklund Olesen59280462011-04-21 18:38:15 +00001055 // Provide a reverse mapping from original indices to Edit ranges.
1056 if (LRMap) {
1057 LRMap->clear();
1058 for (unsigned i = 0, e = Edit->size(); i != e; ++i)
1059 LRMap->push_back(i);
1060 }
1061
Jakob Stoklund Olesen3a0e0712010-10-26 22:36:09 +00001062 // Now check if any registers were separated into multiple components.
Jakob Stoklund Olesen07862842011-01-26 00:50:53 +00001063 ConnectedVNInfoEqClasses ConEQ(LIS);
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +00001064 for (unsigned i = 0, e = Edit->size(); i != e; ++i) {
Jakob Stoklund Olesen3a0e0712010-10-26 22:36:09 +00001065 // Don't use iterators, they are invalidated by create() below.
Jakob Stoklund Olesena2cae582011-03-02 23:31:50 +00001066 LiveInterval *li = Edit->get(i);
Jakob Stoklund Olesen3a0e0712010-10-26 22:36:09 +00001067 unsigned NumComp = ConEQ.Classify(li);
1068 if (NumComp <= 1)
1069 continue;
1070 DEBUG(dbgs() << " " << NumComp << " components: " << *li << '\n');
1071 SmallVector<LiveInterval*, 8> dups;
1072 dups.push_back(li);
Matt Beaumont-Gayae5fbee2011-04-21 19:46:23 +00001073 for (unsigned j = 1; j != NumComp; ++j)
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +00001074 dups.push_back(&Edit->create(LIS, VRM));
Jakob Stoklund Olesen22542272011-03-17 00:23:45 +00001075 ConEQ.Distribute(&dups[0], MRI);
Jakob Stoklund Olesen59280462011-04-21 18:38:15 +00001076 // The new intervals all map back to i.
1077 if (LRMap)
1078 LRMap->resize(Edit->size(), i);
Jakob Stoklund Olesen3a0e0712010-10-26 22:36:09 +00001079 }
1080
Jakob Stoklund Olesen08e93b12010-08-10 17:07:22 +00001081 // Calculate spill weight and allocation hints for new intervals.
Jakob Stoklund Olesen6094bd82011-03-29 21:20:19 +00001082 Edit->calculateRegClassAndHint(VRM.getMachineFunction(), LIS, SA.Loops);
Jakob Stoklund Olesen59280462011-04-21 18:38:15 +00001083
1084 assert(!LRMap || LRMap->size() == Edit->size());
Jakob Stoklund Olesenf0179002010-07-26 23:44:11 +00001085}
1086
1087
Jakob Stoklund Olesen8ae02632010-07-20 15:41:07 +00001088//===----------------------------------------------------------------------===//
Jakob Stoklund Olesenf1b05f22010-08-12 17:07:14 +00001089// Single Block Splitting
1090//===----------------------------------------------------------------------===//
1091
Jakob Stoklund Olesen2d6d86b2011-08-05 22:20:45 +00001092bool SplitAnalysis::shouldSplitSingleBlock(const BlockInfo &BI,
1093 bool SingleInstrs) const {
1094 // Always split for multiple instructions.
1095 if (!BI.isOneInstr())
1096 return true;
1097 // Don't split for single instructions unless explicitly requested.
1098 if (!SingleInstrs)
1099 return false;
1100 // Splitting a live-through range always makes progress.
1101 if (BI.LiveIn && BI.LiveOut)
1102 return true;
1103 // No point in isolating a copy. It has no register class constraints.
1104 if (LIS.getInstructionFromIndex(BI.FirstInstr)->isCopyLike())
1105 return false;
1106 // Finally, don't isolate an end point that was created by earlier splits.
1107 return isOriginalEndpoint(BI.FirstInstr);
1108}
1109
Jakob Stoklund Olesenfd5c5132011-04-12 19:32:53 +00001110void SplitEditor::splitSingleBlock(const SplitAnalysis::BlockInfo &BI) {
1111 openIntv();
1112 SlotIndex LastSplitPoint = SA.getLastSplitPoint(BI.MBB->getNumber());
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001113 SlotIndex SegStart = enterIntvBefore(std::min(BI.FirstInstr,
Jakob Stoklund Olesenfd5c5132011-04-12 19:32:53 +00001114 LastSplitPoint));
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001115 if (!BI.LiveOut || BI.LastInstr < LastSplitPoint) {
1116 useIntv(SegStart, leaveIntvAfter(BI.LastInstr));
Jakob Stoklund Olesenfd5c5132011-04-12 19:32:53 +00001117 } else {
1118 // The last use is after the last valid split point.
1119 SlotIndex SegStop = leaveIntvBefore(LastSplitPoint);
1120 useIntv(SegStart, SegStop);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001121 overlapIntv(SegStop, BI.LastInstr);
Jakob Stoklund Olesenfd5c5132011-04-12 19:32:53 +00001122 }
Jakob Stoklund Olesenfd5c5132011-04-12 19:32:53 +00001123}
1124
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001125
1126//===----------------------------------------------------------------------===//
1127// Global Live Range Splitting Support
1128//===----------------------------------------------------------------------===//
1129
1130// These methods support a method of global live range splitting that uses a
1131// global algorithm to decide intervals for CFG edges. They will insert split
1132// points and color intervals in basic blocks while avoiding interference.
1133//
1134// Note that splitSingleBlock is also useful for blocks where both CFG edges
1135// are on the stack.
1136
1137void SplitEditor::splitLiveThroughBlock(unsigned MBBNum,
1138 unsigned IntvIn, SlotIndex LeaveBefore,
1139 unsigned IntvOut, SlotIndex EnterAfter){
1140 SlotIndex Start, Stop;
1141 tie(Start, Stop) = LIS.getSlotIndexes()->getMBBRange(MBBNum);
1142
1143 DEBUG(dbgs() << "BB#" << MBBNum << " [" << Start << ';' << Stop
1144 << ") intf " << LeaveBefore << '-' << EnterAfter
1145 << ", live-through " << IntvIn << " -> " << IntvOut);
1146
1147 assert((IntvIn || IntvOut) && "Use splitSingleBlock for isolated blocks");
1148
Jakob Stoklund Olesenfe9b2d12011-07-23 03:32:26 +00001149 assert((!LeaveBefore || LeaveBefore < Stop) && "Interference after block");
1150 assert((!IntvIn || !LeaveBefore || LeaveBefore > Start) && "Impossible intf");
1151 assert((!EnterAfter || EnterAfter >= Start) && "Interference before block");
1152
1153 MachineBasicBlock *MBB = VRM.getMachineFunction().getBlockNumbered(MBBNum);
1154
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001155 if (!IntvOut) {
1156 DEBUG(dbgs() << ", spill on entry.\n");
1157 //
1158 // <<<<<<<<< Possible LeaveBefore interference.
1159 // |-----------| Live through.
1160 // -____________ Spill on entry.
1161 //
1162 selectIntv(IntvIn);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001163 SlotIndex Idx = leaveIntvAtTop(*MBB);
1164 assert((!LeaveBefore || Idx <= LeaveBefore) && "Interference");
1165 (void)Idx;
1166 return;
1167 }
1168
1169 if (!IntvIn) {
1170 DEBUG(dbgs() << ", reload on exit.\n");
1171 //
1172 // >>>>>>> Possible EnterAfter interference.
1173 // |-----------| Live through.
1174 // ___________-- Reload on exit.
1175 //
1176 selectIntv(IntvOut);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001177 SlotIndex Idx = enterIntvAtEnd(*MBB);
1178 assert((!EnterAfter || Idx >= EnterAfter) && "Interference");
1179 (void)Idx;
1180 return;
1181 }
1182
1183 if (IntvIn == IntvOut && !LeaveBefore && !EnterAfter) {
1184 DEBUG(dbgs() << ", straight through.\n");
1185 //
1186 // |-----------| Live through.
1187 // ------------- Straight through, same intv, no interference.
1188 //
1189 selectIntv(IntvOut);
1190 useIntv(Start, Stop);
1191 return;
1192 }
1193
1194 // We cannot legally insert splits after LSP.
1195 SlotIndex LSP = SA.getLastSplitPoint(MBBNum);
Jakob Stoklund Olesenfe9b2d12011-07-23 03:32:26 +00001196 assert((!IntvOut || !EnterAfter || EnterAfter < LSP) && "Impossible intf");
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001197
1198 if (IntvIn != IntvOut && (!LeaveBefore || !EnterAfter ||
1199 LeaveBefore.getBaseIndex() > EnterAfter.getBoundaryIndex())) {
1200 DEBUG(dbgs() << ", switch avoiding interference.\n");
1201 //
1202 // >>>> <<<< Non-overlapping EnterAfter/LeaveBefore interference.
1203 // |-----------| Live through.
1204 // ------======= Switch intervals between interference.
1205 //
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001206 selectIntv(IntvOut);
Jakob Stoklund Olesenfe9b2d12011-07-23 03:32:26 +00001207 SlotIndex Idx;
1208 if (LeaveBefore && LeaveBefore < LSP) {
1209 Idx = enterIntvBefore(LeaveBefore);
1210 useIntv(Idx, Stop);
1211 } else {
1212 Idx = enterIntvAtEnd(*MBB);
1213 }
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001214 selectIntv(IntvIn);
1215 useIntv(Start, Idx);
1216 assert((!LeaveBefore || Idx <= LeaveBefore) && "Interference");
1217 assert((!EnterAfter || Idx >= EnterAfter) && "Interference");
1218 return;
1219 }
1220
1221 DEBUG(dbgs() << ", create local intv for interference.\n");
1222 //
1223 // >>><><><><<<< Overlapping EnterAfter/LeaveBefore interference.
1224 // |-----------| Live through.
1225 // ==---------== Switch intervals before/after interference.
1226 //
1227 assert(LeaveBefore <= EnterAfter && "Missed case");
1228
1229 selectIntv(IntvOut);
1230 SlotIndex Idx = enterIntvAfter(EnterAfter);
1231 useIntv(Idx, Stop);
1232 assert((!EnterAfter || Idx >= EnterAfter) && "Interference");
1233
1234 selectIntv(IntvIn);
1235 Idx = leaveIntvBefore(LeaveBefore);
1236 useIntv(Start, Idx);
1237 assert((!LeaveBefore || Idx <= LeaveBefore) && "Interference");
1238}
1239
1240
1241void SplitEditor::splitRegInBlock(const SplitAnalysis::BlockInfo &BI,
1242 unsigned IntvIn, SlotIndex LeaveBefore) {
1243 SlotIndex Start, Stop;
1244 tie(Start, Stop) = LIS.getSlotIndexes()->getMBBRange(BI.MBB);
1245
1246 DEBUG(dbgs() << "BB#" << BI.MBB->getNumber() << " [" << Start << ';' << Stop
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001247 << "), uses " << BI.FirstInstr << '-' << BI.LastInstr
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001248 << ", reg-in " << IntvIn << ", leave before " << LeaveBefore
1249 << (BI.LiveOut ? ", stack-out" : ", killed in block"));
1250
1251 assert(IntvIn && "Must have register in");
1252 assert(BI.LiveIn && "Must be live-in");
1253 assert((!LeaveBefore || LeaveBefore > Start) && "Bad interference");
1254
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001255 if (!BI.LiveOut && (!LeaveBefore || LeaveBefore >= BI.LastInstr)) {
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001256 DEBUG(dbgs() << " before interference.\n");
1257 //
1258 // <<< Interference after kill.
1259 // |---o---x | Killed in block.
1260 // ========= Use IntvIn everywhere.
1261 //
1262 selectIntv(IntvIn);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001263 useIntv(Start, BI.LastInstr);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001264 return;
1265 }
1266
1267 SlotIndex LSP = SA.getLastSplitPoint(BI.MBB->getNumber());
1268
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001269 if (!LeaveBefore || LeaveBefore > BI.LastInstr.getBoundaryIndex()) {
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001270 //
1271 // <<< Possible interference after last use.
1272 // |---o---o---| Live-out on stack.
1273 // =========____ Leave IntvIn after last use.
1274 //
1275 // < Interference after last use.
1276 // |---o---o--o| Live-out on stack, late last use.
1277 // ============ Copy to stack after LSP, overlap IntvIn.
1278 // \_____ Stack interval is live-out.
1279 //
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001280 if (BI.LastInstr < LSP) {
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001281 DEBUG(dbgs() << ", spill after last use before interference.\n");
1282 selectIntv(IntvIn);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001283 SlotIndex Idx = leaveIntvAfter(BI.LastInstr);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001284 useIntv(Start, Idx);
1285 assert((!LeaveBefore || Idx <= LeaveBefore) && "Interference");
1286 } else {
1287 DEBUG(dbgs() << ", spill before last split point.\n");
1288 selectIntv(IntvIn);
Jakob Stoklund Olesenaf4e40c2011-07-16 00:13:30 +00001289 SlotIndex Idx = leaveIntvBefore(LSP);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001290 overlapIntv(Idx, BI.LastInstr);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001291 useIntv(Start, Idx);
1292 assert((!LeaveBefore || Idx <= LeaveBefore) && "Interference");
1293 }
1294 return;
1295 }
1296
1297 // The interference is overlapping somewhere we wanted to use IntvIn. That
1298 // means we need to create a local interval that can be allocated a
1299 // different register.
1300 unsigned LocalIntv = openIntv();
Matt Beaumont-Gayf9d7fb62011-07-16 04:18:47 +00001301 (void)LocalIntv;
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001302 DEBUG(dbgs() << ", creating local interval " << LocalIntv << ".\n");
1303
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001304 if (!BI.LiveOut || BI.LastInstr < LSP) {
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001305 //
1306 // <<<<<<< Interference overlapping uses.
1307 // |---o---o---| Live-out on stack.
1308 // =====----____ Leave IntvIn before interference, then spill.
1309 //
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001310 SlotIndex To = leaveIntvAfter(BI.LastInstr);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001311 SlotIndex From = enterIntvBefore(LeaveBefore);
1312 useIntv(From, To);
1313 selectIntv(IntvIn);
1314 useIntv(Start, From);
1315 assert((!LeaveBefore || From <= LeaveBefore) && "Interference");
1316 return;
1317 }
1318
1319 // <<<<<<< Interference overlapping uses.
1320 // |---o---o--o| Live-out on stack, late last use.
1321 // =====------- Copy to stack before LSP, overlap LocalIntv.
1322 // \_____ Stack interval is live-out.
1323 //
1324 SlotIndex To = leaveIntvBefore(LSP);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001325 overlapIntv(To, BI.LastInstr);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001326 SlotIndex From = enterIntvBefore(std::min(To, LeaveBefore));
1327 useIntv(From, To);
1328 selectIntv(IntvIn);
1329 useIntv(Start, From);
1330 assert((!LeaveBefore || From <= LeaveBefore) && "Interference");
1331}
1332
1333void SplitEditor::splitRegOutBlock(const SplitAnalysis::BlockInfo &BI,
1334 unsigned IntvOut, SlotIndex EnterAfter) {
1335 SlotIndex Start, Stop;
1336 tie(Start, Stop) = LIS.getSlotIndexes()->getMBBRange(BI.MBB);
1337
1338 DEBUG(dbgs() << "BB#" << BI.MBB->getNumber() << " [" << Start << ';' << Stop
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001339 << "), uses " << BI.FirstInstr << '-' << BI.LastInstr
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001340 << ", reg-out " << IntvOut << ", enter after " << EnterAfter
1341 << (BI.LiveIn ? ", stack-in" : ", defined in block"));
1342
1343 SlotIndex LSP = SA.getLastSplitPoint(BI.MBB->getNumber());
1344
1345 assert(IntvOut && "Must have register out");
1346 assert(BI.LiveOut && "Must be live-out");
1347 assert((!EnterAfter || EnterAfter < LSP) && "Bad interference");
1348
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001349 if (!BI.LiveIn && (!EnterAfter || EnterAfter <= BI.FirstInstr)) {
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001350 DEBUG(dbgs() << " after interference.\n");
1351 //
1352 // >>>> Interference before def.
1353 // | o---o---| Defined in block.
1354 // ========= Use IntvOut everywhere.
1355 //
1356 selectIntv(IntvOut);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001357 useIntv(BI.FirstInstr, Stop);
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001358 return;
1359 }
1360
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001361 if (!EnterAfter || EnterAfter < BI.FirstInstr.getBaseIndex()) {
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001362 DEBUG(dbgs() << ", reload after interference.\n");
1363 //
1364 // >>>> Interference before def.
1365 // |---o---o---| Live-through, stack-in.
1366 // ____========= Enter IntvOut before first use.
1367 //
1368 selectIntv(IntvOut);
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001369 SlotIndex Idx = enterIntvBefore(std::min(LSP, BI.FirstInstr));
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001370 useIntv(Idx, Stop);
1371 assert((!EnterAfter || Idx >= EnterAfter) && "Interference");
1372 return;
1373 }
1374
1375 // The interference is overlapping somewhere we wanted to use IntvOut. That
1376 // means we need to create a local interval that can be allocated a
1377 // different register.
1378 DEBUG(dbgs() << ", interference overlaps uses.\n");
1379 //
1380 // >>>>>>> Interference overlapping uses.
1381 // |---o---o---| Live-through, stack-in.
1382 // ____---====== Create local interval for interference range.
1383 //
1384 selectIntv(IntvOut);
1385 SlotIndex Idx = enterIntvAfter(EnterAfter);
1386 useIntv(Idx, Stop);
1387 assert((!EnterAfter || Idx >= EnterAfter) && "Interference");
1388
1389 openIntv();
Jakob Stoklund Olesenfe62d922011-08-02 22:54:14 +00001390 SlotIndex From = enterIntvBefore(std::min(Idx, BI.FirstInstr));
Jakob Stoklund Olesenb4ddedc2011-07-15 21:47:57 +00001391 useIntv(From, Idx);
1392}