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Chris Lattnera3b8b5c2004-07-23 17:56:30 +00001//===-- LiveIntervalAnalysis.cpp - Live Interval Analysis -----------------===//
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file implements the LiveInterval analysis pass which is used
11// by the Linear Scan Register allocator. This pass linearizes the
12// basic blocks of the function in DFS order and uses the
13// LiveVariables pass to conservatively compute live intervals for
14// each virtual and physical register.
15//
16//===----------------------------------------------------------------------===//
17
18#define DEBUG_TYPE "liveintervals"
Chris Lattner3c3fe462005-09-21 04:19:09 +000019#include "llvm/CodeGen/LiveIntervalAnalysis.h"
Misha Brukman08a6c762004-09-03 18:25:53 +000020#include "VirtRegMap.h"
Chris Lattner015959e2004-05-01 21:24:39 +000021#include "llvm/Value.h"
Dan Gohman6d69ba82008-07-25 00:02:30 +000022#include "llvm/Analysis/AliasAnalysis.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000023#include "llvm/CodeGen/LiveVariables.h"
24#include "llvm/CodeGen/MachineFrameInfo.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000025#include "llvm/CodeGen/MachineInstr.h"
Evan Cheng2578ba22009-07-01 01:59:31 +000026#include "llvm/CodeGen/MachineInstrBuilder.h"
Evan Cheng22f07ff2007-12-11 02:09:15 +000027#include "llvm/CodeGen/MachineLoopInfo.h"
Dan Gohmanc76909a2009-09-25 20:36:54 +000028#include "llvm/CodeGen/MachineMemOperand.h"
Chris Lattner84bc5422007-12-31 04:13:23 +000029#include "llvm/CodeGen/MachineRegisterInfo.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000030#include "llvm/CodeGen/Passes.h"
Lang Hames233a60e2009-11-03 23:52:08 +000031#include "llvm/CodeGen/ProcessImplicitDefs.h"
Dan Gohman6f0d0242008-02-10 18:45:23 +000032#include "llvm/Target/TargetRegisterInfo.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000033#include "llvm/Target/TargetInstrInfo.h"
34#include "llvm/Target/TargetMachine.h"
Owen Anderson95dad832008-10-07 20:22:28 +000035#include "llvm/Target/TargetOptions.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000036#include "llvm/Support/CommandLine.h"
37#include "llvm/Support/Debug.h"
Torok Edwin7d696d82009-07-11 13:10:19 +000038#include "llvm/Support/ErrorHandling.h"
39#include "llvm/Support/raw_ostream.h"
Evan Cheng2578ba22009-07-01 01:59:31 +000040#include "llvm/ADT/DepthFirstIterator.h"
41#include "llvm/ADT/SmallSet.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000042#include "llvm/ADT/Statistic.h"
43#include "llvm/ADT/STLExtras.h"
Alkis Evlogimenos20aa4742004-09-03 18:19:51 +000044#include <algorithm>
Lang Hamesf41538d2009-06-02 16:53:25 +000045#include <limits>
Jeff Cohen97af7512006-12-02 02:22:01 +000046#include <cmath>
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000047using namespace llvm;
48
Dan Gohman844731a2008-05-13 00:00:25 +000049// Hidden options for help debugging.
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +000050static cl::opt<bool> DisableReMat("disable-rematerialization",
Dan Gohman844731a2008-05-13 00:00:25 +000051 cl::init(false), cl::Hidden);
Evan Cheng81a03822007-11-17 00:40:40 +000052
Evan Cheng752195e2009-09-14 21:33:42 +000053STATISTIC(numIntervals , "Number of original intervals");
54STATISTIC(numFolds , "Number of loads/stores folded into instructions");
55STATISTIC(numSplits , "Number of intervals split");
Chris Lattnercd3245a2006-12-19 22:41:21 +000056
Devang Patel19974732007-05-03 01:11:54 +000057char LiveIntervals::ID = 0;
Owen Anderson2ab36d32010-10-12 19:48:12 +000058INITIALIZE_PASS_BEGIN(LiveIntervals, "liveintervals",
59 "Live Interval Analysis", false, false)
60INITIALIZE_PASS_DEPENDENCY(LiveVariables)
61INITIALIZE_PASS_DEPENDENCY(MachineLoopInfo)
62INITIALIZE_PASS_DEPENDENCY(PHIElimination)
63INITIALIZE_PASS_DEPENDENCY(TwoAddressInstructionPass)
64INITIALIZE_PASS_DEPENDENCY(ProcessImplicitDefs)
65INITIALIZE_PASS_DEPENDENCY(SlotIndexes)
66INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
67INITIALIZE_PASS_END(LiveIntervals, "liveintervals",
Owen Andersonce665bd2010-10-07 22:25:06 +000068 "Live Interval Analysis", false, false)
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000069
Chris Lattnerf7da2c72006-08-24 22:43:55 +000070void LiveIntervals::getAnalysisUsage(AnalysisUsage &AU) const {
Dan Gohman845012e2009-07-31 23:37:33 +000071 AU.setPreservesCFG();
Dan Gohman6d69ba82008-07-25 00:02:30 +000072 AU.addRequired<AliasAnalysis>();
73 AU.addPreserved<AliasAnalysis>();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000074 AU.addRequired<LiveVariables>();
Evan Cheng148341c2010-08-17 21:00:37 +000075 AU.addPreserved<LiveVariables>();
76 AU.addRequired<MachineLoopInfo>();
77 AU.addPreserved<MachineLoopInfo>();
Bill Wendling67d65bb2008-01-04 20:54:55 +000078 AU.addPreservedID(MachineDominatorsID);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +000079
Owen Anderson95dad832008-10-07 20:22:28 +000080 if (!StrongPHIElim) {
81 AU.addPreservedID(PHIEliminationID);
82 AU.addRequiredID(PHIEliminationID);
83 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +000084
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000085 AU.addRequiredID(TwoAddressInstructionPassID);
Lang Hames233a60e2009-11-03 23:52:08 +000086 AU.addPreserved<ProcessImplicitDefs>();
87 AU.addRequired<ProcessImplicitDefs>();
88 AU.addPreserved<SlotIndexes>();
89 AU.addRequiredTransitive<SlotIndexes>();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000090 MachineFunctionPass::getAnalysisUsage(AU);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000091}
92
Chris Lattnerf7da2c72006-08-24 22:43:55 +000093void LiveIntervals::releaseMemory() {
Owen Anderson03857b22008-08-13 21:49:13 +000094 // Free the live intervals themselves.
Owen Anderson20e28392008-08-13 22:08:30 +000095 for (DenseMap<unsigned, LiveInterval*>::iterator I = r2iMap_.begin(),
Bob Wilsond6a6b3b2010-03-24 20:25:25 +000096 E = r2iMap_.end(); I != E; ++I)
Owen Anderson03857b22008-08-13 21:49:13 +000097 delete I->second;
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +000098
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000099 r2iMap_.clear();
Lang Hamesffd13262009-07-09 03:57:02 +0000100
Benjamin Kramerce9a20b2010-06-26 11:30:59 +0000101 // Release VNInfo memory regions, VNInfo objects don't need to be dtor'd.
102 VNInfoAllocator.Reset();
Evan Cheng752195e2009-09-14 21:33:42 +0000103 while (!CloneMIs.empty()) {
104 MachineInstr *MI = CloneMIs.back();
105 CloneMIs.pop_back();
Evan Cheng1ed99222008-07-19 00:37:25 +0000106 mf_->DeleteMachineInstr(MI);
107 }
Alkis Evlogimenos08cec002004-01-31 19:59:32 +0000108}
109
Owen Anderson80b3ce62008-05-28 20:54:50 +0000110/// runOnMachineFunction - Register allocate the whole function
111///
112bool LiveIntervals::runOnMachineFunction(MachineFunction &fn) {
113 mf_ = &fn;
114 mri_ = &mf_->getRegInfo();
115 tm_ = &fn.getTarget();
116 tri_ = tm_->getRegisterInfo();
117 tii_ = tm_->getInstrInfo();
Dan Gohman6d69ba82008-07-25 00:02:30 +0000118 aa_ = &getAnalysis<AliasAnalysis>();
Owen Anderson80b3ce62008-05-28 20:54:50 +0000119 lv_ = &getAnalysis<LiveVariables>();
Lang Hames233a60e2009-11-03 23:52:08 +0000120 indexes_ = &getAnalysis<SlotIndexes>();
Owen Anderson80b3ce62008-05-28 20:54:50 +0000121 allocatableRegs_ = tri_->getAllocatableSet(fn);
122
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000123 computeIntervals();
Alkis Evlogimenos843b1602004-02-15 10:24:21 +0000124
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000125 numIntervals += getNumIntervals();
126
Chris Lattner70ca3582004-09-30 15:59:17 +0000127 DEBUG(dump());
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000128 return true;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000129}
130
Chris Lattner70ca3582004-09-30 15:59:17 +0000131/// print - Implement the dump method.
Chris Lattner45cfe542009-08-23 06:03:38 +0000132void LiveIntervals::print(raw_ostream &OS, const Module* ) const {
Chris Lattner705e07f2009-08-23 03:41:05 +0000133 OS << "********** INTERVALS **********\n";
Chris Lattner8e7a7092005-07-27 23:03:38 +0000134 for (const_iterator I = begin(), E = end(); I != E; ++I) {
Chris Lattner705e07f2009-08-23 03:41:05 +0000135 I->second->print(OS, tri_);
136 OS << "\n";
Chris Lattner8e7a7092005-07-27 23:03:38 +0000137 }
Chris Lattner70ca3582004-09-30 15:59:17 +0000138
Evan Cheng752195e2009-09-14 21:33:42 +0000139 printInstrs(OS);
140}
141
142void LiveIntervals::printInstrs(raw_ostream &OS) const {
Chris Lattner705e07f2009-08-23 03:41:05 +0000143 OS << "********** MACHINEINSTRS **********\n";
Jakob Stoklund Olesenf4a1e1a2010-10-26 20:21:46 +0000144 mf_->print(OS, indexes_);
Chris Lattner70ca3582004-09-30 15:59:17 +0000145}
146
Evan Cheng752195e2009-09-14 21:33:42 +0000147void LiveIntervals::dumpInstrs() const {
David Greene8a342292010-01-04 22:49:02 +0000148 printInstrs(dbgs());
Evan Cheng752195e2009-09-14 21:33:42 +0000149}
150
Jakob Stoklund Olesencf970362009-12-10 17:48:32 +0000151bool LiveIntervals::conflictsWithPhysReg(const LiveInterval &li,
152 VirtRegMap &vrm, unsigned reg) {
153 // We don't handle fancy stuff crossing basic block boundaries
154 if (li.ranges.size() != 1)
155 return true;
156 const LiveRange &range = li.ranges.front();
157 SlotIndex idx = range.start.getBaseIndex();
158 SlotIndex end = range.end.getPrevSlot().getBaseIndex().getNextIndex();
Jakob Stoklund Olesenf4811a92009-12-03 20:49:10 +0000159
Jakob Stoklund Olesencf970362009-12-10 17:48:32 +0000160 // Skip deleted instructions
161 MachineInstr *firstMI = getInstructionFromIndex(idx);
162 while (!firstMI && idx != end) {
163 idx = idx.getNextIndex();
164 firstMI = getInstructionFromIndex(idx);
165 }
166 if (!firstMI)
167 return false;
168
169 // Find last instruction in range
170 SlotIndex lastIdx = end.getPrevIndex();
171 MachineInstr *lastMI = getInstructionFromIndex(lastIdx);
172 while (!lastMI && lastIdx != idx) {
173 lastIdx = lastIdx.getPrevIndex();
174 lastMI = getInstructionFromIndex(lastIdx);
175 }
176 if (!lastMI)
177 return false;
178
179 // Range cannot cross basic block boundaries or terminators
180 MachineBasicBlock *MBB = firstMI->getParent();
181 if (MBB != lastMI->getParent() || lastMI->getDesc().isTerminator())
182 return true;
183
184 MachineBasicBlock::const_iterator E = lastMI;
185 ++E;
186 for (MachineBasicBlock::const_iterator I = firstMI; I != E; ++I) {
187 const MachineInstr &MI = *I;
188
189 // Allow copies to and from li.reg
Jakob Stoklund Olesen8ea32402010-07-09 20:55:49 +0000190 if (MI.isCopy())
191 if (MI.getOperand(0).getReg() == li.reg ||
192 MI.getOperand(1).getReg() == li.reg)
193 continue;
Jakob Stoklund Olesencf970362009-12-10 17:48:32 +0000194
195 // Check for operands using reg
196 for (unsigned i = 0, e = MI.getNumOperands(); i != e; ++i) {
197 const MachineOperand& mop = MI.getOperand(i);
198 if (!mop.isReg())
199 continue;
200 unsigned PhysReg = mop.getReg();
201 if (PhysReg == 0 || PhysReg == li.reg)
202 continue;
203 if (TargetRegisterInfo::isVirtualRegister(PhysReg)) {
204 if (!vrm.hasPhys(PhysReg))
Bill Wendlingdc492e02009-12-05 07:30:23 +0000205 continue;
Jakob Stoklund Olesencf970362009-12-10 17:48:32 +0000206 PhysReg = vrm.getPhys(PhysReg);
Evan Chengc92da382007-11-03 07:20:12 +0000207 }
Jakob Stoklund Olesencf970362009-12-10 17:48:32 +0000208 if (PhysReg && tri_->regsOverlap(PhysReg, reg))
209 return true;
Evan Chengc92da382007-11-03 07:20:12 +0000210 }
211 }
212
Jakob Stoklund Olesencf970362009-12-10 17:48:32 +0000213 // No conflicts found.
Evan Chengc92da382007-11-03 07:20:12 +0000214 return false;
215}
216
Jakob Stoklund Olesena24986d2010-06-24 18:15:01 +0000217bool LiveIntervals::conflictsWithAliasRef(LiveInterval &li, unsigned Reg,
Evan Cheng8f90b6e2009-01-07 02:08:57 +0000218 SmallPtrSet<MachineInstr*,32> &JoinedCopies) {
219 for (LiveInterval::Ranges::const_iterator
220 I = li.ranges.begin(), E = li.ranges.end(); I != E; ++I) {
Lang Hames233a60e2009-11-03 23:52:08 +0000221 for (SlotIndex index = I->start.getBaseIndex(),
222 end = I->end.getPrevSlot().getBaseIndex().getNextIndex();
223 index != end;
224 index = index.getNextIndex()) {
Jakob Stoklund Olesenf4811a92009-12-03 20:49:10 +0000225 MachineInstr *MI = getInstructionFromIndex(index);
226 if (!MI)
227 continue; // skip deleted instructions
Evan Cheng8f90b6e2009-01-07 02:08:57 +0000228
229 if (JoinedCopies.count(MI))
230 continue;
231 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
232 MachineOperand& MO = MI->getOperand(i);
233 if (!MO.isReg())
234 continue;
Jakob Stoklund Olesenb8ac3b02010-06-24 00:52:22 +0000235 unsigned PhysReg = MO.getReg();
Jakob Stoklund Olesena24986d2010-06-24 18:15:01 +0000236 if (PhysReg == 0 || PhysReg == Reg ||
237 TargetRegisterInfo::isVirtualRegister(PhysReg))
Jakob Stoklund Olesenb8ac3b02010-06-24 00:52:22 +0000238 continue;
Jakob Stoklund Olesena24986d2010-06-24 18:15:01 +0000239 if (tri_->regsOverlap(Reg, PhysReg))
Evan Cheng8f90b6e2009-01-07 02:08:57 +0000240 return true;
241 }
242 }
243 }
244
245 return false;
246}
247
Evan Chengafff40a2010-05-04 20:26:52 +0000248static
Evan Cheng37499432010-05-05 18:27:40 +0000249bool MultipleDefsBySameMI(const MachineInstr &MI, unsigned MOIdx) {
Evan Chengafff40a2010-05-04 20:26:52 +0000250 unsigned Reg = MI.getOperand(MOIdx).getReg();
251 for (unsigned i = MOIdx+1, e = MI.getNumOperands(); i < e; ++i) {
252 const MachineOperand &MO = MI.getOperand(i);
253 if (!MO.isReg())
254 continue;
255 if (MO.getReg() == Reg && MO.isDef()) {
256 assert(MI.getOperand(MOIdx).getSubReg() != MO.getSubReg() &&
257 MI.getOperand(MOIdx).getSubReg() &&
Jakob Stoklund Olesened2185e2010-07-06 23:26:25 +0000258 (MO.getSubReg() || MO.isImplicit()));
Evan Chengafff40a2010-05-04 20:26:52 +0000259 return true;
260 }
261 }
262 return false;
263}
264
Evan Cheng37499432010-05-05 18:27:40 +0000265/// isPartialRedef - Return true if the specified def at the specific index is
266/// partially re-defining the specified live interval. A common case of this is
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000267/// a definition of the sub-register.
Evan Cheng37499432010-05-05 18:27:40 +0000268bool LiveIntervals::isPartialRedef(SlotIndex MIIdx, MachineOperand &MO,
269 LiveInterval &interval) {
270 if (!MO.getSubReg() || MO.isEarlyClobber())
271 return false;
272
273 SlotIndex RedefIndex = MIIdx.getDefIndex();
274 const LiveRange *OldLR =
275 interval.getLiveRangeContaining(RedefIndex.getUseIndex());
Lang Hames6e2968c2010-09-25 12:04:16 +0000276 MachineInstr *DefMI = getInstructionFromIndex(OldLR->valno->def);
277 if (DefMI != 0) {
Evan Cheng37499432010-05-05 18:27:40 +0000278 return DefMI->findRegisterDefOperandIdx(interval.reg) != -1;
279 }
280 return false;
281}
282
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000283void LiveIntervals::handleVirtualRegisterDef(MachineBasicBlock *mbb,
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000284 MachineBasicBlock::iterator mi,
Lang Hames233a60e2009-11-03 23:52:08 +0000285 SlotIndex MIIdx,
Lang Hames86511252009-09-04 20:41:11 +0000286 MachineOperand& MO,
Evan Chengef0732d2008-07-10 07:35:43 +0000287 unsigned MOIdx,
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000288 LiveInterval &interval) {
Jakob Stoklund Olesen43142682011-01-09 03:05:53 +0000289 DEBUG(dbgs() << "\t\tregister: " << PrintReg(interval.reg, tri_));
Evan Cheng419852c2008-04-03 16:39:43 +0000290
Alkis Evlogimenos70651572004-08-04 09:46:56 +0000291 // Virtual registers may be defined multiple times (due to phi
292 // elimination and 2-addr elimination). Much of what we do only has to be
293 // done once for the vreg. We use an empty interval to detect the first
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000294 // time we see a vreg.
Evan Chengd129d732009-07-17 19:43:40 +0000295 LiveVariables::VarInfo& vi = lv_->getVarInfo(interval.reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000296 if (interval.empty()) {
297 // Get the Idx of the defining instructions.
Lang Hames233a60e2009-11-03 23:52:08 +0000298 SlotIndex defIndex = MIIdx.getDefIndex();
Dale Johannesen39faac22009-09-20 00:36:41 +0000299 // Earlyclobbers move back one, so that they overlap the live range
300 // of inputs.
Dale Johannesen86b49f82008-09-24 01:07:17 +0000301 if (MO.isEarlyClobber())
Lang Hames233a60e2009-11-03 23:52:08 +0000302 defIndex = MIIdx.getUseIndex();
Jakob Stoklund Olesen63e6a482010-05-21 16:32:16 +0000303
304 // Make sure the first definition is not a partial redefinition. Add an
305 // <imp-def> of the full register.
306 if (MO.getSubReg())
307 mi->addRegisterDefined(interval.reg);
308
Evan Chengc8d044e2008-02-15 18:24:29 +0000309 MachineInstr *CopyMI = NULL;
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000310 if (mi->isCopyLike()) {
Evan Chengc8d044e2008-02-15 18:24:29 +0000311 CopyMI = mi;
Jakob Stoklund Olesen0465bcf2010-06-18 22:29:44 +0000312 }
313
Lang Hames6e2968c2010-09-25 12:04:16 +0000314 VNInfo *ValNo = interval.getNextValue(defIndex, CopyMI, VNInfoAllocator);
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000315 assert(ValNo->id == 0 && "First value in interval is not 0?");
Chris Lattner7ac2d312004-07-24 02:59:07 +0000316
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000317 // Loop over all of the blocks that the vreg is defined in. There are
318 // two cases we have to handle here. The most common case is a vreg
319 // whose lifetime is contained within a basic block. In this case there
320 // will be a single kill, in MBB, which comes after the definition.
321 if (vi.Kills.size() == 1 && vi.Kills[0]->getParent() == mbb) {
322 // FIXME: what about dead vars?
Lang Hames233a60e2009-11-03 23:52:08 +0000323 SlotIndex killIdx;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000324 if (vi.Kills[0] != mi)
Lang Hames233a60e2009-11-03 23:52:08 +0000325 killIdx = getInstructionIndex(vi.Kills[0]).getDefIndex();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000326 else
Lang Hames233a60e2009-11-03 23:52:08 +0000327 killIdx = defIndex.getStoreIndex();
Chris Lattner6097d132004-07-19 02:15:56 +0000328
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000329 // If the kill happens after the definition, we have an intra-block
330 // live range.
331 if (killIdx > defIndex) {
Jeffrey Yasskin493a3d02009-05-26 18:27:15 +0000332 assert(vi.AliveBlocks.empty() &&
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000333 "Shouldn't be alive across any blocks!");
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000334 LiveRange LR(defIndex, killIdx, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000335 interval.addRange(LR);
David Greene8a342292010-01-04 22:49:02 +0000336 DEBUG(dbgs() << " +" << LR << "\n");
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000337 return;
338 }
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000339 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000340
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000341 // The other case we handle is when a virtual register lives to the end
342 // of the defining block, potentially live across some blocks, then is
343 // live into some number of blocks, but gets killed. Start by adding a
344 // range that goes from this definition to the end of the defining block.
Lang Hames74ab5ee2009-12-22 00:11:50 +0000345 LiveRange NewLR(defIndex, getMBBEndIdx(mbb), ValNo);
David Greene8a342292010-01-04 22:49:02 +0000346 DEBUG(dbgs() << " +" << NewLR);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000347 interval.addRange(NewLR);
348
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000349 bool PHIJoin = lv_->isPHIJoin(interval.reg);
350
351 if (PHIJoin) {
352 // A phi join register is killed at the end of the MBB and revived as a new
353 // valno in the killing blocks.
354 assert(vi.AliveBlocks.empty() && "Phi join can't pass through blocks");
355 DEBUG(dbgs() << " phi-join");
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000356 ValNo->setHasPHIKill(true);
357 } else {
358 // Iterate over all of the blocks that the variable is completely
359 // live in, adding [insrtIndex(begin), instrIndex(end)+4) to the
360 // live interval.
361 for (SparseBitVector<>::iterator I = vi.AliveBlocks.begin(),
362 E = vi.AliveBlocks.end(); I != E; ++I) {
363 MachineBasicBlock *aliveBlock = mf_->getBlockNumbered(*I);
364 LiveRange LR(getMBBStartIdx(aliveBlock), getMBBEndIdx(aliveBlock), ValNo);
365 interval.addRange(LR);
366 DEBUG(dbgs() << " +" << LR);
367 }
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000368 }
369
370 // Finally, this virtual register is live from the start of any killing
371 // block to the 'use' slot of the killing instruction.
372 for (unsigned i = 0, e = vi.Kills.size(); i != e; ++i) {
373 MachineInstr *Kill = vi.Kills[i];
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000374 SlotIndex Start = getMBBStartIdx(Kill->getParent());
375 SlotIndex killIdx = getInstructionIndex(Kill).getDefIndex();
376
377 // Create interval with one of a NEW value number. Note that this value
378 // number isn't actually defined by an instruction, weird huh? :)
379 if (PHIJoin) {
Lang Hames6e2968c2010-09-25 12:04:16 +0000380 assert(getInstructionFromIndex(Start) == 0 &&
381 "PHI def index points at actual instruction.");
382 ValNo = interval.getNextValue(Start, 0, VNInfoAllocator);
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000383 ValNo->setIsPHIDef(true);
384 }
385 LiveRange LR(Start, killIdx, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000386 interval.addRange(LR);
David Greene8a342292010-01-04 22:49:02 +0000387 DEBUG(dbgs() << " +" << LR);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000388 }
389
390 } else {
Evan Cheng37499432010-05-05 18:27:40 +0000391 if (MultipleDefsBySameMI(*mi, MOIdx))
Nick Lewycky761fd4c2010-05-20 03:30:09 +0000392 // Multiple defs of the same virtual register by the same instruction.
393 // e.g. %reg1031:5<def>, %reg1031:6<def> = VLD1q16 %reg1024<kill>, ...
Evan Chengafff40a2010-05-04 20:26:52 +0000394 // This is likely due to elimination of REG_SEQUENCE instructions. Return
395 // here since there is nothing to do.
396 return;
397
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000398 // If this is the second time we see a virtual register definition, it
399 // must be due to phi elimination or two addr elimination. If this is
Evan Chengbf105c82006-11-03 03:04:46 +0000400 // the result of two address elimination, then the vreg is one of the
401 // def-and-use register operand.
Evan Cheng37499432010-05-05 18:27:40 +0000402
403 // It may also be partial redef like this:
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000404 // 80 %reg1041:6<def> = VSHRNv4i16 %reg1034<kill>, 12, pred:14, pred:%reg0
405 // 120 %reg1041:5<def> = VSHRNv4i16 %reg1039<kill>, 12, pred:14, pred:%reg0
Evan Cheng37499432010-05-05 18:27:40 +0000406 bool PartReDef = isPartialRedef(MIIdx, MO, interval);
407 if (PartReDef || mi->isRegTiedToUseOperand(MOIdx)) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000408 // If this is a two-address definition, then we have already processed
409 // the live range. The only problem is that we didn't realize there
410 // are actually two values in the live interval. Because of this we
411 // need to take the LiveRegion that defines this register and split it
412 // into two values.
Lang Hames233a60e2009-11-03 23:52:08 +0000413 SlotIndex RedefIndex = MIIdx.getDefIndex();
Evan Chengfb112882009-03-23 08:01:15 +0000414 if (MO.isEarlyClobber())
Lang Hames233a60e2009-11-03 23:52:08 +0000415 RedefIndex = MIIdx.getUseIndex();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000416
Lang Hames35f291d2009-09-12 03:34:03 +0000417 const LiveRange *OldLR =
Lang Hames233a60e2009-11-03 23:52:08 +0000418 interval.getLiveRangeContaining(RedefIndex.getUseIndex());
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000419 VNInfo *OldValNo = OldLR->valno;
Jakob Stoklund Olesenc66d0f22010-06-16 21:29:40 +0000420 SlotIndex DefIndex = OldValNo->def.getDefIndex();
Evan Cheng4f8ff162007-08-11 00:59:19 +0000421
Jakob Stoklund Olesenc66d0f22010-06-16 21:29:40 +0000422 // Delete the previous value, which should be short and continuous,
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000423 // because the 2-addr copy must be in the same MBB as the redef.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000424 interval.removeRange(DefIndex, RedefIndex);
Alkis Evlogimenos70651572004-08-04 09:46:56 +0000425
Chris Lattner91725b72006-08-31 05:54:43 +0000426 // The new value number (#1) is defined by the instruction we claimed
427 // defined value #0.
Lang Hames6e2968c2010-09-25 12:04:16 +0000428 VNInfo *ValNo = interval.createValueCopy(OldValNo, VNInfoAllocator);
Lang Hames857c4e02009-06-17 21:01:20 +0000429
Chris Lattner91725b72006-08-31 05:54:43 +0000430 // Value#0 is now defined by the 2-addr instruction.
Evan Chengc8d044e2008-02-15 18:24:29 +0000431 OldValNo->def = RedefIndex;
Evan Chengad6c5a22010-05-17 01:47:47 +0000432 OldValNo->setCopy(0);
433
434 // A re-def may be a copy. e.g. %reg1030:6<def> = VMOVD %reg1026, ...
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000435 if (PartReDef && mi->isCopyLike())
Evan Chengad6c5a22010-05-17 01:47:47 +0000436 OldValNo->setCopy(&*mi);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000437
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000438 // Add the new live interval which replaces the range for the input copy.
439 LiveRange LR(DefIndex, RedefIndex, ValNo);
David Greene8a342292010-01-04 22:49:02 +0000440 DEBUG(dbgs() << " replace range with " << LR);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000441 interval.addRange(LR);
442
443 // If this redefinition is dead, we need to add a dummy unit live
444 // range covering the def slot.
Owen Anderson6b098de2008-06-25 23:39:39 +0000445 if (MO.isDead())
Lang Hames233a60e2009-11-03 23:52:08 +0000446 interval.addRange(LiveRange(RedefIndex, RedefIndex.getStoreIndex(),
447 OldValNo));
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000448
Bill Wendling8e6179f2009-08-22 20:18:03 +0000449 DEBUG({
David Greene8a342292010-01-04 22:49:02 +0000450 dbgs() << " RESULT: ";
451 interval.print(dbgs(), tri_);
Bill Wendling8e6179f2009-08-22 20:18:03 +0000452 });
Evan Cheng37499432010-05-05 18:27:40 +0000453 } else if (lv_->isPHIJoin(interval.reg)) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000454 // In the case of PHI elimination, each variable definition is only
455 // live until the end of the block. We've already taken care of the
456 // rest of the live range.
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000457
Lang Hames233a60e2009-11-03 23:52:08 +0000458 SlotIndex defIndex = MIIdx.getDefIndex();
Evan Chengfb112882009-03-23 08:01:15 +0000459 if (MO.isEarlyClobber())
Lang Hames233a60e2009-11-03 23:52:08 +0000460 defIndex = MIIdx.getUseIndex();
Evan Cheng752195e2009-09-14 21:33:42 +0000461
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000462 VNInfo *ValNo;
Evan Chengc8d044e2008-02-15 18:24:29 +0000463 MachineInstr *CopyMI = NULL;
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000464 if (mi->isCopyLike())
Evan Chengc8d044e2008-02-15 18:24:29 +0000465 CopyMI = mi;
Lang Hames6e2968c2010-09-25 12:04:16 +0000466 ValNo = interval.getNextValue(defIndex, CopyMI, VNInfoAllocator);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000467
Lang Hames74ab5ee2009-12-22 00:11:50 +0000468 SlotIndex killIndex = getMBBEndIdx(mbb);
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000469 LiveRange LR(defIndex, killIndex, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000470 interval.addRange(LR);
Lang Hames857c4e02009-06-17 21:01:20 +0000471 ValNo->setHasPHIKill(true);
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000472 DEBUG(dbgs() << " phi-join +" << LR);
Evan Cheng37499432010-05-05 18:27:40 +0000473 } else {
474 llvm_unreachable("Multiply defined register");
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000475 }
476 }
477
David Greene8a342292010-01-04 22:49:02 +0000478 DEBUG(dbgs() << '\n');
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000479}
480
Chris Lattnerf35fef72004-07-23 21:24:19 +0000481void LiveIntervals::handlePhysicalRegisterDef(MachineBasicBlock *MBB,
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000482 MachineBasicBlock::iterator mi,
Lang Hames233a60e2009-11-03 23:52:08 +0000483 SlotIndex MIIdx,
Owen Anderson6b098de2008-06-25 23:39:39 +0000484 MachineOperand& MO,
Chris Lattner91725b72006-08-31 05:54:43 +0000485 LiveInterval &interval,
Evan Chengc8d044e2008-02-15 18:24:29 +0000486 MachineInstr *CopyMI) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000487 // A physical register cannot be live across basic block, so its
488 // lifetime must end somewhere in its defining basic block.
Jakob Stoklund Olesen43142682011-01-09 03:05:53 +0000489 DEBUG(dbgs() << "\t\tregister: " << PrintReg(interval.reg, tri_));
Alkis Evlogimenos02ba13c2004-01-31 23:13:30 +0000490
Lang Hames233a60e2009-11-03 23:52:08 +0000491 SlotIndex baseIndex = MIIdx;
492 SlotIndex start = baseIndex.getDefIndex();
Dale Johannesen86b49f82008-09-24 01:07:17 +0000493 // Earlyclobbers move back one.
494 if (MO.isEarlyClobber())
Lang Hames233a60e2009-11-03 23:52:08 +0000495 start = MIIdx.getUseIndex();
496 SlotIndex end = start;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000497
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000498 // If it is not used after definition, it is considered dead at
499 // the instruction defining it. Hence its interval is:
500 // [defSlot(def), defSlot(def)+1)
Dale Johannesen39faac22009-09-20 00:36:41 +0000501 // For earlyclobbers, the defSlot was pushed back one; the extra
502 // advance below compensates.
Owen Anderson6b098de2008-06-25 23:39:39 +0000503 if (MO.isDead()) {
David Greene8a342292010-01-04 22:49:02 +0000504 DEBUG(dbgs() << " dead");
Lang Hames233a60e2009-11-03 23:52:08 +0000505 end = start.getStoreIndex();
Chris Lattnerab4b66d2005-08-23 22:51:41 +0000506 goto exit;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000507 }
508
509 // If it is not dead on definition, it must be killed by a
510 // subsequent instruction. Hence its interval is:
511 // [defSlot(def), useSlot(kill)+1)
Lang Hames233a60e2009-11-03 23:52:08 +0000512 baseIndex = baseIndex.getNextIndex();
Chris Lattner5ab6f5f2005-09-02 00:20:32 +0000513 while (++mi != MBB->end()) {
Lang Hames233a60e2009-11-03 23:52:08 +0000514
Dale Johannesenbd635202010-02-10 00:55:42 +0000515 if (mi->isDebugValue())
516 continue;
Lang Hames233a60e2009-11-03 23:52:08 +0000517 if (getInstructionFromIndex(baseIndex) == 0)
518 baseIndex = indexes_->getNextNonNullIndex(baseIndex);
519
Evan Cheng6130f662008-03-05 00:59:57 +0000520 if (mi->killsRegister(interval.reg, tri_)) {
David Greene8a342292010-01-04 22:49:02 +0000521 DEBUG(dbgs() << " killed");
Lang Hames233a60e2009-11-03 23:52:08 +0000522 end = baseIndex.getDefIndex();
Chris Lattnerab4b66d2005-08-23 22:51:41 +0000523 goto exit;
Evan Chengc45288e2009-04-27 20:42:46 +0000524 } else {
Evan Cheng1015ba72010-05-21 20:53:24 +0000525 int DefIdx = mi->findRegisterDefOperandIdx(interval.reg,false,false,tri_);
Evan Chengc45288e2009-04-27 20:42:46 +0000526 if (DefIdx != -1) {
527 if (mi->isRegTiedToUseOperand(DefIdx)) {
528 // Two-address instruction.
Lang Hames233a60e2009-11-03 23:52:08 +0000529 end = baseIndex.getDefIndex();
Evan Chengc45288e2009-04-27 20:42:46 +0000530 } else {
531 // Another instruction redefines the register before it is ever read.
Dale Johannesenbd635202010-02-10 00:55:42 +0000532 // Then the register is essentially dead at the instruction that
533 // defines it. Hence its interval is:
Evan Chengc45288e2009-04-27 20:42:46 +0000534 // [defSlot(def), defSlot(def)+1)
David Greene8a342292010-01-04 22:49:02 +0000535 DEBUG(dbgs() << " dead");
Lang Hames233a60e2009-11-03 23:52:08 +0000536 end = start.getStoreIndex();
Evan Chengc45288e2009-04-27 20:42:46 +0000537 }
538 goto exit;
539 }
Alkis Evlogimenosaf254732004-01-13 22:26:14 +0000540 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000541
Lang Hames233a60e2009-11-03 23:52:08 +0000542 baseIndex = baseIndex.getNextIndex();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000543 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000544
Chris Lattner5ab6f5f2005-09-02 00:20:32 +0000545 // The only case we should have a dead physreg here without a killing or
546 // instruction where we know it's dead is if it is live-in to the function
Evan Chengd521bc92009-04-27 17:36:47 +0000547 // and never used. Another possible case is the implicit use of the
548 // physical register has been deleted by two-address pass.
Lang Hames233a60e2009-11-03 23:52:08 +0000549 end = start.getStoreIndex();
Alkis Evlogimenos02ba13c2004-01-31 23:13:30 +0000550
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000551exit:
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000552 assert(start < end && "did not find end of interval?");
Chris Lattnerf768bba2005-03-09 23:05:19 +0000553
Evan Cheng24a3cc42007-04-25 07:30:23 +0000554 // Already exists? Extend old live interval.
Jakob Stoklund Olesen31cc3ec2010-10-11 21:45:03 +0000555 VNInfo *ValNo = interval.getVNInfoAt(start);
556 bool Extend = ValNo != 0;
557 if (!Extend)
558 ValNo = interval.getNextValue(start, CopyMI, VNInfoAllocator);
559 if (Extend && MO.isEarlyClobber())
Lang Hames857c4e02009-06-17 21:01:20 +0000560 ValNo->setHasRedefByEC(true);
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000561 LiveRange LR(start, end, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000562 interval.addRange(LR);
David Greene8a342292010-01-04 22:49:02 +0000563 DEBUG(dbgs() << " +" << LR << '\n');
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000564}
565
Chris Lattnerf35fef72004-07-23 21:24:19 +0000566void LiveIntervals::handleRegisterDef(MachineBasicBlock *MBB,
567 MachineBasicBlock::iterator MI,
Lang Hames233a60e2009-11-03 23:52:08 +0000568 SlotIndex MIIdx,
Evan Chengef0732d2008-07-10 07:35:43 +0000569 MachineOperand& MO,
570 unsigned MOIdx) {
Owen Anderson6b098de2008-06-25 23:39:39 +0000571 if (TargetRegisterInfo::isVirtualRegister(MO.getReg()))
Evan Chengef0732d2008-07-10 07:35:43 +0000572 handleVirtualRegisterDef(MBB, MI, MIIdx, MO, MOIdx,
Owen Anderson6b098de2008-06-25 23:39:39 +0000573 getOrCreateInterval(MO.getReg()));
574 else if (allocatableRegs_[MO.getReg()]) {
Evan Chengc8d044e2008-02-15 18:24:29 +0000575 MachineInstr *CopyMI = NULL;
Jakob Stoklund Olesen04c528a2010-07-16 04:45:42 +0000576 if (MI->isCopyLike())
Evan Chengc8d044e2008-02-15 18:24:29 +0000577 CopyMI = MI;
Evan Chengc45288e2009-04-27 20:42:46 +0000578 handlePhysicalRegisterDef(MBB, MI, MIIdx, MO,
Owen Anderson6b098de2008-06-25 23:39:39 +0000579 getOrCreateInterval(MO.getReg()), CopyMI);
Evan Cheng24a3cc42007-04-25 07:30:23 +0000580 // Def of a register also defines its sub-registers.
Owen Anderson6b098de2008-06-25 23:39:39 +0000581 for (const unsigned* AS = tri_->getSubRegisters(MO.getReg()); *AS; ++AS)
Evan Cheng6130f662008-03-05 00:59:57 +0000582 // If MI also modifies the sub-register explicitly, avoid processing it
583 // more than once. Do not pass in TRI here so it checks for exact match.
Evan Cheng1015ba72010-05-21 20:53:24 +0000584 if (!MI->definesRegister(*AS))
Evan Chengc45288e2009-04-27 20:42:46 +0000585 handlePhysicalRegisterDef(MBB, MI, MIIdx, MO,
Owen Anderson6b098de2008-06-25 23:39:39 +0000586 getOrCreateInterval(*AS), 0);
Chris Lattnerf35fef72004-07-23 21:24:19 +0000587 }
Alkis Evlogimenos4d46e1e2004-01-31 14:37:41 +0000588}
589
Evan Chengb371f452007-02-19 21:49:54 +0000590void LiveIntervals::handleLiveInRegister(MachineBasicBlock *MBB,
Lang Hames233a60e2009-11-03 23:52:08 +0000591 SlotIndex MIIdx,
Evan Cheng24a3cc42007-04-25 07:30:23 +0000592 LiveInterval &interval, bool isAlias) {
Jakob Stoklund Olesen43142682011-01-09 03:05:53 +0000593 DEBUG(dbgs() << "\t\tlivein register: " << PrintReg(interval.reg, tri_));
Evan Chengb371f452007-02-19 21:49:54 +0000594
595 // Look for kills, if it reaches a def before it's killed, then it shouldn't
596 // be considered a livein.
597 MachineBasicBlock::iterator mi = MBB->begin();
Evan Cheng4507f082010-03-16 21:51:27 +0000598 MachineBasicBlock::iterator E = MBB->end();
599 // Skip over DBG_VALUE at the start of the MBB.
600 if (mi != E && mi->isDebugValue()) {
601 while (++mi != E && mi->isDebugValue())
602 ;
603 if (mi == E)
604 // MBB is empty except for DBG_VALUE's.
605 return;
606 }
607
Lang Hames233a60e2009-11-03 23:52:08 +0000608 SlotIndex baseIndex = MIIdx;
609 SlotIndex start = baseIndex;
610 if (getInstructionFromIndex(baseIndex) == 0)
611 baseIndex = indexes_->getNextNonNullIndex(baseIndex);
612
613 SlotIndex end = baseIndex;
Evan Cheng0076c612009-03-05 03:34:26 +0000614 bool SeenDefUse = false;
Evan Chengb371f452007-02-19 21:49:54 +0000615
Dale Johannesenbd635202010-02-10 00:55:42 +0000616 while (mi != E) {
Dale Johannesen1d0aeab2010-02-10 01:31:26 +0000617 if (mi->killsRegister(interval.reg, tri_)) {
618 DEBUG(dbgs() << " killed");
619 end = baseIndex.getDefIndex();
620 SeenDefUse = true;
621 break;
Evan Cheng1015ba72010-05-21 20:53:24 +0000622 } else if (mi->definesRegister(interval.reg, tri_)) {
Dale Johannesen1d0aeab2010-02-10 01:31:26 +0000623 // Another instruction redefines the register before it is ever read.
624 // Then the register is essentially dead at the instruction that defines
625 // it. Hence its interval is:
626 // [defSlot(def), defSlot(def)+1)
627 DEBUG(dbgs() << " dead");
628 end = start.getStoreIndex();
629 SeenDefUse = true;
630 break;
631 }
632
Evan Cheng4507f082010-03-16 21:51:27 +0000633 while (++mi != E && mi->isDebugValue())
634 // Skip over DBG_VALUE.
635 ;
636 if (mi != E)
Lang Hames233a60e2009-11-03 23:52:08 +0000637 baseIndex = indexes_->getNextNonNullIndex(baseIndex);
Evan Chengb371f452007-02-19 21:49:54 +0000638 }
639
Evan Cheng75611fb2007-06-27 01:16:36 +0000640 // Live-in register might not be used at all.
Evan Cheng0076c612009-03-05 03:34:26 +0000641 if (!SeenDefUse) {
Evan Cheng292da942007-06-27 18:47:28 +0000642 if (isAlias) {
David Greene8a342292010-01-04 22:49:02 +0000643 DEBUG(dbgs() << " dead");
Lang Hames233a60e2009-11-03 23:52:08 +0000644 end = MIIdx.getStoreIndex();
Evan Cheng292da942007-06-27 18:47:28 +0000645 } else {
David Greene8a342292010-01-04 22:49:02 +0000646 DEBUG(dbgs() << " live through");
Evan Cheng292da942007-06-27 18:47:28 +0000647 end = baseIndex;
648 }
Evan Cheng24a3cc42007-04-25 07:30:23 +0000649 }
650
Lang Hames6e2968c2010-09-25 12:04:16 +0000651 SlotIndex defIdx = getMBBStartIdx(MBB);
652 assert(getInstructionFromIndex(defIdx) == 0 &&
653 "PHI def index points at actual instruction.");
Lang Hames10382fb2009-06-19 02:17:53 +0000654 VNInfo *vni =
Lang Hames6e2968c2010-09-25 12:04:16 +0000655 interval.getNextValue(defIdx, 0, VNInfoAllocator);
Lang Hamesd21c3162009-06-18 22:01:47 +0000656 vni->setIsPHIDef(true);
657 LiveRange LR(start, end, vni);
Jakob Stoklund Olesen3de23e62009-11-07 01:58:40 +0000658
Jim Laskey9b25b8c2007-02-21 22:41:17 +0000659 interval.addRange(LR);
David Greene8a342292010-01-04 22:49:02 +0000660 DEBUG(dbgs() << " +" << LR << '\n');
Evan Chengb371f452007-02-19 21:49:54 +0000661}
662
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000663/// computeIntervals - computes the live intervals for virtual
Alkis Evlogimenos4d46e1e2004-01-31 14:37:41 +0000664/// registers. for some ordering of the machine instructions [1,N] a
Alkis Evlogimenos08cec002004-01-31 19:59:32 +0000665/// live interval is an interval [i, j) where 1 <= i <= j < N for
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000666/// which a variable is live
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000667void LiveIntervals::computeIntervals() {
David Greene8a342292010-01-04 22:49:02 +0000668 DEBUG(dbgs() << "********** COMPUTING LIVE INTERVALS **********\n"
Bill Wendling8e6179f2009-08-22 20:18:03 +0000669 << "********** Function: "
670 << ((Value*)mf_->getFunction())->getName() << '\n');
Evan Chengd129d732009-07-17 19:43:40 +0000671
672 SmallVector<unsigned, 8> UndefUses;
Chris Lattner428b92e2006-09-15 03:57:23 +0000673 for (MachineFunction::iterator MBBI = mf_->begin(), E = mf_->end();
674 MBBI != E; ++MBBI) {
675 MachineBasicBlock *MBB = MBBI;
Evan Cheng00a99a32010-02-06 09:07:11 +0000676 if (MBB->empty())
677 continue;
678
Owen Anderson134eb732008-09-21 20:43:24 +0000679 // Track the index of the current machine instr.
Lang Hames233a60e2009-11-03 23:52:08 +0000680 SlotIndex MIIndex = getMBBStartIdx(MBB);
Bob Wilsonad98f792010-05-03 21:38:11 +0000681 DEBUG(dbgs() << "BB#" << MBB->getNumber()
682 << ":\t\t# derived from " << MBB->getName() << "\n");
Alkis Evlogimenos6b4edba2003-12-21 20:19:10 +0000683
Dan Gohmancb406c22007-10-03 19:26:29 +0000684 // Create intervals for live-ins to this BB first.
Dan Gohman81bf03e2010-04-13 16:57:55 +0000685 for (MachineBasicBlock::livein_iterator LI = MBB->livein_begin(),
Dan Gohmancb406c22007-10-03 19:26:29 +0000686 LE = MBB->livein_end(); LI != LE; ++LI) {
687 handleLiveInRegister(MBB, MIIndex, getOrCreateInterval(*LI));
688 // Multiple live-ins can alias the same register.
Dan Gohman6f0d0242008-02-10 18:45:23 +0000689 for (const unsigned* AS = tri_->getSubRegisters(*LI); *AS; ++AS)
Dan Gohmancb406c22007-10-03 19:26:29 +0000690 if (!hasInterval(*AS))
691 handleLiveInRegister(MBB, MIIndex, getOrCreateInterval(*AS),
692 true);
Chris Lattnerdffb2e82006-09-04 18:27:40 +0000693 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000694
Owen Anderson99500ae2008-09-15 22:00:38 +0000695 // Skip over empty initial indices.
Lang Hames233a60e2009-11-03 23:52:08 +0000696 if (getInstructionFromIndex(MIIndex) == 0)
697 MIIndex = indexes_->getNextNonNullIndex(MIIndex);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000698
Dale Johannesen1caedd02010-01-22 22:38:21 +0000699 for (MachineBasicBlock::iterator MI = MBB->begin(), miEnd = MBB->end();
700 MI != miEnd; ++MI) {
David Greene8a342292010-01-04 22:49:02 +0000701 DEBUG(dbgs() << MIIndex << "\t" << *MI);
Chris Lattner518bb532010-02-09 19:54:29 +0000702 if (MI->isDebugValue())
Dale Johannesen1caedd02010-01-22 22:38:21 +0000703 continue;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000704
Evan Cheng438f7bc2006-11-10 08:43:01 +0000705 // Handle defs.
Chris Lattner428b92e2006-09-15 03:57:23 +0000706 for (int i = MI->getNumOperands() - 1; i >= 0; --i) {
707 MachineOperand &MO = MI->getOperand(i);
Evan Chengd129d732009-07-17 19:43:40 +0000708 if (!MO.isReg() || !MO.getReg())
709 continue;
710
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000711 // handle register defs - build intervals
Evan Chengd129d732009-07-17 19:43:40 +0000712 if (MO.isDef())
Evan Chengef0732d2008-07-10 07:35:43 +0000713 handleRegisterDef(MBB, MI, MIIndex, MO, i);
Evan Chengd129d732009-07-17 19:43:40 +0000714 else if (MO.isUndef())
715 UndefUses.push_back(MO.getReg());
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000716 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000717
Lang Hames233a60e2009-11-03 23:52:08 +0000718 // Move to the next instr slot.
719 MIIndex = indexes_->getNextNonNullIndex(MIIndex);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000720 }
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000721 }
Evan Chengd129d732009-07-17 19:43:40 +0000722
723 // Create empty intervals for registers defined by implicit_def's (except
724 // for those implicit_def that define values which are liveout of their
725 // blocks.
726 for (unsigned i = 0, e = UndefUses.size(); i != e; ++i) {
727 unsigned UndefReg = UndefUses[i];
728 (void)getOrCreateInterval(UndefReg);
729 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000730}
Alkis Evlogimenosb27ef242003-12-05 10:38:28 +0000731
Owen Anderson03857b22008-08-13 21:49:13 +0000732LiveInterval* LiveIntervals::createInterval(unsigned reg) {
Evan Cheng0a1fcce2009-02-08 11:04:35 +0000733 float Weight = TargetRegisterInfo::isPhysicalRegister(reg) ? HUGE_VALF : 0.0F;
Owen Anderson03857b22008-08-13 21:49:13 +0000734 return new LiveInterval(reg, Weight);
Alkis Evlogimenos9a8b4902004-04-09 18:07:57 +0000735}
Evan Chengf2fbca62007-11-12 06:35:08 +0000736
Evan Cheng0a1fcce2009-02-08 11:04:35 +0000737/// dupInterval - Duplicate a live interval. The caller is responsible for
738/// managing the allocated memory.
739LiveInterval* LiveIntervals::dupInterval(LiveInterval *li) {
740 LiveInterval *NewLI = createInterval(li->reg);
Evan Cheng90f95f82009-06-14 20:22:55 +0000741 NewLI->Copy(*li, mri_, getVNInfoAllocator());
Evan Cheng0a1fcce2009-02-08 11:04:35 +0000742 return NewLI;
743}
744
Evan Chengf2fbca62007-11-12 06:35:08 +0000745//===----------------------------------------------------------------------===//
746// Register allocator hooks.
747//
748
Evan Chengd70dbb52008-02-22 09:24:50 +0000749/// getReMatImplicitUse - If the remat definition MI has one (for now, we only
750/// allow one) virtual register operand, then its uses are implicitly using
751/// the register. Returns the virtual register.
752unsigned LiveIntervals::getReMatImplicitUse(const LiveInterval &li,
753 MachineInstr *MI) const {
754 unsigned RegOp = 0;
755 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
756 MachineOperand &MO = MI->getOperand(i);
Dan Gohmand735b802008-10-03 15:45:36 +0000757 if (!MO.isReg() || !MO.isUse())
Evan Chengd70dbb52008-02-22 09:24:50 +0000758 continue;
759 unsigned Reg = MO.getReg();
760 if (Reg == 0 || Reg == li.reg)
761 continue;
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000762
Chris Lattner1873d0c2009-06-27 04:06:41 +0000763 if (TargetRegisterInfo::isPhysicalRegister(Reg) &&
764 !allocatableRegs_[Reg])
765 continue;
Evan Chengd70dbb52008-02-22 09:24:50 +0000766 // FIXME: For now, only remat MI with at most one register operand.
767 assert(!RegOp &&
768 "Can't rematerialize instruction with multiple register operand!");
769 RegOp = MO.getReg();
Dan Gohman6d69ba82008-07-25 00:02:30 +0000770#ifndef NDEBUG
Evan Chengd70dbb52008-02-22 09:24:50 +0000771 break;
Dan Gohman6d69ba82008-07-25 00:02:30 +0000772#endif
Evan Chengd70dbb52008-02-22 09:24:50 +0000773 }
774 return RegOp;
775}
776
777/// isValNoAvailableAt - Return true if the val# of the specified interval
778/// which reaches the given instruction also reaches the specified use index.
779bool LiveIntervals::isValNoAvailableAt(const LiveInterval &li, MachineInstr *MI,
Lang Hames233a60e2009-11-03 23:52:08 +0000780 SlotIndex UseIdx) const {
Jakob Stoklund Olesen31cc3ec2010-10-11 21:45:03 +0000781 VNInfo *UValNo = li.getVNInfoAt(UseIdx);
782 return UValNo && UValNo == li.getVNInfoAt(getInstructionIndex(MI));
Evan Chengd70dbb52008-02-22 09:24:50 +0000783}
784
Evan Chengf2fbca62007-11-12 06:35:08 +0000785/// isReMaterializable - Returns true if the definition MI of the specified
786/// val# of the specified interval is re-materializable.
Andrew Trickf4baeaf2010-11-10 19:18:47 +0000787bool
788LiveIntervals::isReMaterializable(const LiveInterval &li,
789 const VNInfo *ValNo, MachineInstr *MI,
790 const SmallVectorImpl<LiveInterval*> &SpillIs,
791 bool &isLoad) {
Evan Chengf2fbca62007-11-12 06:35:08 +0000792 if (DisableReMat)
793 return false;
794
Dan Gohmana70dca12009-10-09 23:27:56 +0000795 if (!tii_->isTriviallyReMaterializable(MI, aa_))
796 return false;
Evan Chengdd3465e2008-02-23 01:44:27 +0000797
Dan Gohmana70dca12009-10-09 23:27:56 +0000798 // Target-specific code can mark an instruction as being rematerializable
799 // if it has one virtual reg use, though it had better be something like
800 // a PIC base register which is likely to be live everywhere.
Dan Gohman6d69ba82008-07-25 00:02:30 +0000801 unsigned ImpUse = getReMatImplicitUse(li, MI);
802 if (ImpUse) {
803 const LiveInterval &ImpLi = getInterval(ImpUse);
Evan Cheng28a1e482010-03-30 05:49:07 +0000804 for (MachineRegisterInfo::use_nodbg_iterator
805 ri = mri_->use_nodbg_begin(li.reg), re = mri_->use_nodbg_end();
806 ri != re; ++ri) {
Dan Gohman6d69ba82008-07-25 00:02:30 +0000807 MachineInstr *UseMI = &*ri;
Lang Hames233a60e2009-11-03 23:52:08 +0000808 SlotIndex UseIdx = getInstructionIndex(UseMI);
Jakob Stoklund Olesen31cc3ec2010-10-11 21:45:03 +0000809 if (li.getVNInfoAt(UseIdx) != ValNo)
Dan Gohman6d69ba82008-07-25 00:02:30 +0000810 continue;
811 if (!isValNoAvailableAt(ImpLi, MI, UseIdx))
812 return false;
813 }
Evan Chengdc377862008-09-30 15:44:16 +0000814
815 // If a register operand of the re-materialized instruction is going to
816 // be spilled next, then it's not legal to re-materialize this instruction.
817 for (unsigned i = 0, e = SpillIs.size(); i != e; ++i)
818 if (ImpUse == SpillIs[i]->reg)
819 return false;
Dan Gohman6d69ba82008-07-25 00:02:30 +0000820 }
821 return true;
Evan Cheng5ef3a042007-12-06 00:01:56 +0000822}
823
Evan Cheng06587492008-10-24 02:05:00 +0000824/// isReMaterializable - Returns true if the definition MI of the specified
825/// val# of the specified interval is re-materializable.
826bool LiveIntervals::isReMaterializable(const LiveInterval &li,
827 const VNInfo *ValNo, MachineInstr *MI) {
828 SmallVector<LiveInterval*, 4> Dummy1;
829 bool Dummy2;
830 return isReMaterializable(li, ValNo, MI, Dummy1, Dummy2);
831}
832
Evan Cheng5ef3a042007-12-06 00:01:56 +0000833/// isReMaterializable - Returns true if every definition of MI of every
834/// val# of the specified interval is re-materializable.
Andrew Trickf4baeaf2010-11-10 19:18:47 +0000835bool
836LiveIntervals::isReMaterializable(const LiveInterval &li,
837 const SmallVectorImpl<LiveInterval*> &SpillIs,
838 bool &isLoad) {
Evan Cheng5ef3a042007-12-06 00:01:56 +0000839 isLoad = false;
840 for (LiveInterval::const_vni_iterator i = li.vni_begin(), e = li.vni_end();
841 i != e; ++i) {
842 const VNInfo *VNI = *i;
Lang Hames857c4e02009-06-17 21:01:20 +0000843 if (VNI->isUnused())
Evan Cheng5ef3a042007-12-06 00:01:56 +0000844 continue; // Dead val#.
845 // Is the def for the val# rematerializable?
Lang Hames857c4e02009-06-17 21:01:20 +0000846 MachineInstr *ReMatDefMI = getInstructionFromIndex(VNI->def);
Lang Hames6e2968c2010-09-25 12:04:16 +0000847 if (!ReMatDefMI)
848 return false;
Evan Cheng5ef3a042007-12-06 00:01:56 +0000849 bool DefIsLoad = false;
Evan Chengd70dbb52008-02-22 09:24:50 +0000850 if (!ReMatDefMI ||
Evan Chengdc377862008-09-30 15:44:16 +0000851 !isReMaterializable(li, VNI, ReMatDefMI, SpillIs, DefIsLoad))
Evan Cheng5ef3a042007-12-06 00:01:56 +0000852 return false;
853 isLoad |= DefIsLoad;
Evan Chengf2fbca62007-11-12 06:35:08 +0000854 }
855 return true;
856}
857
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000858/// FilterFoldedOps - Filter out two-address use operands. Return
859/// true if it finds any issue with the operands that ought to prevent
860/// folding.
861static bool FilterFoldedOps(MachineInstr *MI,
862 SmallVector<unsigned, 2> &Ops,
863 unsigned &MRInfo,
864 SmallVector<unsigned, 2> &FoldOps) {
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000865 MRInfo = 0;
Evan Chengaee4af62007-12-02 08:30:39 +0000866 for (unsigned i = 0, e = Ops.size(); i != e; ++i) {
867 unsigned OpIdx = Ops[i];
Evan Chengd70dbb52008-02-22 09:24:50 +0000868 MachineOperand &MO = MI->getOperand(OpIdx);
Evan Chengaee4af62007-12-02 08:30:39 +0000869 // FIXME: fold subreg use.
Evan Chengd70dbb52008-02-22 09:24:50 +0000870 if (MO.getSubReg())
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000871 return true;
Evan Chengd70dbb52008-02-22 09:24:50 +0000872 if (MO.isDef())
Evan Chengaee4af62007-12-02 08:30:39 +0000873 MRInfo |= (unsigned)VirtRegMap::isMod;
874 else {
875 // Filter out two-address use operand(s).
Evan Chenga24752f2009-03-19 20:30:06 +0000876 if (MI->isRegTiedToDefOperand(OpIdx)) {
Evan Chengaee4af62007-12-02 08:30:39 +0000877 MRInfo = VirtRegMap::isModRef;
878 continue;
879 }
880 MRInfo |= (unsigned)VirtRegMap::isRef;
881 }
882 FoldOps.push_back(OpIdx);
Evan Chenge62f97c2007-12-01 02:07:52 +0000883 }
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000884 return false;
885}
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000886
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000887
888/// tryFoldMemoryOperand - Attempts to fold either a spill / restore from
889/// slot / to reg or any rematerialized load into ith operand of specified
890/// MI. If it is successul, MI is updated with the newly created MI and
891/// returns true.
892bool LiveIntervals::tryFoldMemoryOperand(MachineInstr* &MI,
893 VirtRegMap &vrm, MachineInstr *DefMI,
Lang Hames233a60e2009-11-03 23:52:08 +0000894 SlotIndex InstrIdx,
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000895 SmallVector<unsigned, 2> &Ops,
896 bool isSS, int Slot, unsigned Reg) {
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000897 // If it is an implicit def instruction, just delete it.
Chris Lattner518bb532010-02-09 19:54:29 +0000898 if (MI->isImplicitDef()) {
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000899 RemoveMachineInstrFromMaps(MI);
900 vrm.RemoveMachineInstrFromMaps(MI);
901 MI->eraseFromParent();
902 ++numFolds;
903 return true;
904 }
905
906 // Filter the list of operand indexes that are to be folded. Abort if
907 // any operand will prevent folding.
908 unsigned MRInfo = 0;
909 SmallVector<unsigned, 2> FoldOps;
910 if (FilterFoldedOps(MI, Ops, MRInfo, FoldOps))
911 return false;
Evan Chenge62f97c2007-12-01 02:07:52 +0000912
Evan Cheng427f4c12008-03-31 23:19:51 +0000913 // The only time it's safe to fold into a two address instruction is when
914 // it's folding reload and spill from / into a spill stack slot.
915 if (DefMI && (MRInfo & VirtRegMap::isMod))
Evan Cheng249ded32008-02-23 03:38:34 +0000916 return false;
917
Jakob Stoklund Olesene05442d2010-07-09 17:29:08 +0000918 MachineInstr *fmi = isSS ? tii_->foldMemoryOperand(MI, FoldOps, Slot)
919 : tii_->foldMemoryOperand(MI, FoldOps, DefMI);
Evan Chengf2fbca62007-11-12 06:35:08 +0000920 if (fmi) {
Evan Chengd3653122008-02-27 03:04:06 +0000921 // Remember this instruction uses the spill slot.
922 if (isSS) vrm.addSpillSlotUse(Slot, fmi);
923
Evan Chengf2fbca62007-11-12 06:35:08 +0000924 // Attempt to fold the memory reference into the instruction. If
925 // we can do this, we don't need to insert spill code.
Evan Cheng84802932008-01-10 08:24:38 +0000926 if (isSS && !mf_->getFrameInfo()->isImmutableObjectIndex(Slot))
Evan Chengaee4af62007-12-02 08:30:39 +0000927 vrm.virtFolded(Reg, MI, fmi, (VirtRegMap::ModRef)MRInfo);
Evan Cheng81a03822007-11-17 00:40:40 +0000928 vrm.transferSpillPts(MI, fmi);
Evan Cheng0cbb1162007-11-29 01:06:25 +0000929 vrm.transferRestorePts(MI, fmi);
Evan Chengc1f53c72008-03-11 21:34:46 +0000930 vrm.transferEmergencySpills(MI, fmi);
Lang Hames233a60e2009-11-03 23:52:08 +0000931 ReplaceMachineInstrInMaps(MI, fmi);
Jakob Stoklund Olesene05442d2010-07-09 17:29:08 +0000932 MI->eraseFromParent();
933 MI = fmi;
Evan Cheng0cbb1162007-11-29 01:06:25 +0000934 ++numFolds;
Evan Chengf2fbca62007-11-12 06:35:08 +0000935 return true;
936 }
937 return false;
938}
939
Evan Cheng018f9b02007-12-05 03:22:34 +0000940/// canFoldMemoryOperand - Returns true if the specified load / store
941/// folding is possible.
942bool LiveIntervals::canFoldMemoryOperand(MachineInstr *MI,
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000943 SmallVector<unsigned, 2> &Ops,
Evan Cheng3c75ba82008-04-01 21:37:32 +0000944 bool ReMat) const {
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000945 // Filter the list of operand indexes that are to be folded. Abort if
946 // any operand will prevent folding.
947 unsigned MRInfo = 0;
Evan Cheng018f9b02007-12-05 03:22:34 +0000948 SmallVector<unsigned, 2> FoldOps;
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000949 if (FilterFoldedOps(MI, Ops, MRInfo, FoldOps))
950 return false;
Evan Cheng018f9b02007-12-05 03:22:34 +0000951
Evan Cheng3c75ba82008-04-01 21:37:32 +0000952 // It's only legal to remat for a use, not a def.
953 if (ReMat && (MRInfo & VirtRegMap::isMod))
Evan Cheng79a0c1e2008-02-25 08:50:41 +0000954 return false;
Evan Cheng018f9b02007-12-05 03:22:34 +0000955
Evan Chengd70dbb52008-02-22 09:24:50 +0000956 return tii_->canFoldMemoryOperand(MI, FoldOps);
957}
958
Evan Cheng81a03822007-11-17 00:40:40 +0000959bool LiveIntervals::intervalIsInOneMBB(const LiveInterval &li) const {
Lang Hames233a60e2009-11-03 23:52:08 +0000960 LiveInterval::Ranges::const_iterator itr = li.ranges.begin();
961
962 MachineBasicBlock *mbb = indexes_->getMBBCoveringRange(itr->start, itr->end);
963
964 if (mbb == 0)
965 return false;
966
967 for (++itr; itr != li.ranges.end(); ++itr) {
968 MachineBasicBlock *mbb2 =
969 indexes_->getMBBCoveringRange(itr->start, itr->end);
970
971 if (mbb2 != mbb)
Evan Cheng81a03822007-11-17 00:40:40 +0000972 return false;
973 }
Lang Hames233a60e2009-11-03 23:52:08 +0000974
Evan Cheng81a03822007-11-17 00:40:40 +0000975 return true;
976}
977
Evan Chengd70dbb52008-02-22 09:24:50 +0000978/// rewriteImplicitOps - Rewrite implicit use operands of MI (i.e. uses of
979/// interval on to-be re-materialized operands of MI) with new register.
980void LiveIntervals::rewriteImplicitOps(const LiveInterval &li,
981 MachineInstr *MI, unsigned NewVReg,
982 VirtRegMap &vrm) {
983 // There is an implicit use. That means one of the other operand is
984 // being remat'ed and the remat'ed instruction has li.reg as an
985 // use operand. Make sure we rewrite that as well.
986 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
987 MachineOperand &MO = MI->getOperand(i);
Dan Gohmand735b802008-10-03 15:45:36 +0000988 if (!MO.isReg())
Evan Chengd70dbb52008-02-22 09:24:50 +0000989 continue;
990 unsigned Reg = MO.getReg();
Jakob Stoklund Olesenc9df0252011-01-10 02:58:51 +0000991 if (!TargetRegisterInfo::isVirtualRegister(Reg))
Evan Chengd70dbb52008-02-22 09:24:50 +0000992 continue;
993 if (!vrm.isReMaterialized(Reg))
994 continue;
995 MachineInstr *ReMatMI = vrm.getReMaterializedMI(Reg);
Evan Cheng6130f662008-03-05 00:59:57 +0000996 MachineOperand *UseMO = ReMatMI->findRegisterUseOperand(li.reg);
997 if (UseMO)
998 UseMO->setReg(NewVReg);
Evan Chengd70dbb52008-02-22 09:24:50 +0000999 }
1000}
1001
Evan Chengf2fbca62007-11-12 06:35:08 +00001002/// rewriteInstructionForSpills, rewriteInstructionsForSpills - Helper functions
1003/// for addIntervalsForSpills to rewrite uses / defs for the given live range.
Evan Cheng018f9b02007-12-05 03:22:34 +00001004bool LiveIntervals::
Evan Chengd70dbb52008-02-22 09:24:50 +00001005rewriteInstructionForSpills(const LiveInterval &li, const VNInfo *VNI,
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001006 bool TrySplit, SlotIndex index, SlotIndex end,
Lang Hames86511252009-09-04 20:41:11 +00001007 MachineInstr *MI,
Evan Cheng81a03822007-11-17 00:40:40 +00001008 MachineInstr *ReMatOrigDefMI, MachineInstr *ReMatDefMI,
Evan Chengf2fbca62007-11-12 06:35:08 +00001009 unsigned Slot, int LdSlot,
1010 bool isLoad, bool isLoadSS, bool DefIsReMat, bool CanDelete,
Evan Chengd70dbb52008-02-22 09:24:50 +00001011 VirtRegMap &vrm,
Evan Chengf2fbca62007-11-12 06:35:08 +00001012 const TargetRegisterClass* rc,
1013 SmallVector<int, 4> &ReMatIds,
Evan Cheng22f07ff2007-12-11 02:09:15 +00001014 const MachineLoopInfo *loopInfo,
Evan Cheng313d4b82008-02-23 00:33:04 +00001015 unsigned &NewVReg, unsigned ImpUse, bool &HasDef, bool &HasUse,
Owen Anderson28998312008-08-13 22:28:50 +00001016 DenseMap<unsigned,unsigned> &MBBVRegsMap,
Evan Chengc781a242009-05-03 18:32:42 +00001017 std::vector<LiveInterval*> &NewLIs) {
Evan Cheng018f9b02007-12-05 03:22:34 +00001018 bool CanFold = false;
Evan Chengf2fbca62007-11-12 06:35:08 +00001019 RestartInstruction:
1020 for (unsigned i = 0; i != MI->getNumOperands(); ++i) {
1021 MachineOperand& mop = MI->getOperand(i);
Dan Gohmand735b802008-10-03 15:45:36 +00001022 if (!mop.isReg())
Evan Chengf2fbca62007-11-12 06:35:08 +00001023 continue;
1024 unsigned Reg = mop.getReg();
Jakob Stoklund Olesenc9df0252011-01-10 02:58:51 +00001025 if (!TargetRegisterInfo::isVirtualRegister(Reg))
Evan Chengf2fbca62007-11-12 06:35:08 +00001026 continue;
Evan Chengf2fbca62007-11-12 06:35:08 +00001027 if (Reg != li.reg)
1028 continue;
1029
1030 bool TryFold = !DefIsReMat;
Evan Chengcb3c3302007-11-29 23:02:50 +00001031 bool FoldSS = true; // Default behavior unless it's a remat.
Evan Chengf2fbca62007-11-12 06:35:08 +00001032 int FoldSlot = Slot;
1033 if (DefIsReMat) {
1034 // If this is the rematerializable definition MI itself and
1035 // all of its uses are rematerialized, simply delete it.
Evan Cheng81a03822007-11-17 00:40:40 +00001036 if (MI == ReMatOrigDefMI && CanDelete) {
Dale Johannesenbd635202010-02-10 00:55:42 +00001037 DEBUG(dbgs() << "\t\t\t\tErasing re-materializable def: "
Evan Cheng28a1e482010-03-30 05:49:07 +00001038 << *MI << '\n');
Evan Chengf2fbca62007-11-12 06:35:08 +00001039 RemoveMachineInstrFromMaps(MI);
Evan Chengcada2452007-11-28 01:28:46 +00001040 vrm.RemoveMachineInstrFromMaps(MI);
Evan Chengf2fbca62007-11-12 06:35:08 +00001041 MI->eraseFromParent();
1042 break;
1043 }
1044
1045 // If def for this use can't be rematerialized, then try folding.
Evan Cheng0cbb1162007-11-29 01:06:25 +00001046 // If def is rematerializable and it's a load, also try folding.
Evan Chengcb3c3302007-11-29 23:02:50 +00001047 TryFold = !ReMatDefMI || (ReMatDefMI && (MI == ReMatOrigDefMI || isLoad));
Evan Chengf2fbca62007-11-12 06:35:08 +00001048 if (isLoad) {
1049 // Try fold loads (from stack slot, constant pool, etc.) into uses.
1050 FoldSS = isLoadSS;
1051 FoldSlot = LdSlot;
1052 }
1053 }
1054
Evan Chengf2fbca62007-11-12 06:35:08 +00001055 // Scan all of the operands of this instruction rewriting operands
1056 // to use NewVReg instead of li.reg as appropriate. We do this for
1057 // two reasons:
1058 //
1059 // 1. If the instr reads the same spilled vreg multiple times, we
1060 // want to reuse the NewVReg.
1061 // 2. If the instr is a two-addr instruction, we are required to
1062 // keep the src/dst regs pinned.
1063 //
1064 // Keep track of whether we replace a use and/or def so that we can
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001065 // create the spill interval with the appropriate range.
Evan Chengaee4af62007-12-02 08:30:39 +00001066 SmallVector<unsigned, 2> Ops;
Jakob Stoklund Olesenead06be2010-06-03 00:07:47 +00001067 tie(HasUse, HasDef) = MI->readsWritesVirtualRegister(Reg, &Ops);
Evan Chengf2fbca62007-11-12 06:35:08 +00001068
David Greene26b86a02008-10-27 17:38:59 +00001069 // Create a new virtual register for the spill interval.
1070 // Create the new register now so we can map the fold instruction
1071 // to the new register so when it is unfolded we get the correct
1072 // answer.
1073 bool CreatedNewVReg = false;
1074 if (NewVReg == 0) {
1075 NewVReg = mri_->createVirtualRegister(rc);
1076 vrm.grow();
1077 CreatedNewVReg = true;
Jakob Stoklund Olesence7a6632009-11-30 22:55:54 +00001078
1079 // The new virtual register should get the same allocation hints as the
1080 // old one.
1081 std::pair<unsigned, unsigned> Hint = mri_->getRegAllocationHint(Reg);
1082 if (Hint.first || Hint.second)
1083 mri_->setRegAllocationHint(NewVReg, Hint.first, Hint.second);
David Greene26b86a02008-10-27 17:38:59 +00001084 }
1085
Evan Cheng9c3c2212008-06-06 07:54:39 +00001086 if (!TryFold)
1087 CanFold = false;
1088 else {
Evan Cheng018f9b02007-12-05 03:22:34 +00001089 // Do not fold load / store here if we are splitting. We'll find an
1090 // optimal point to insert a load / store later.
1091 if (!TrySplit) {
1092 if (tryFoldMemoryOperand(MI, vrm, ReMatDefMI, index,
David Greene26b86a02008-10-27 17:38:59 +00001093 Ops, FoldSS, FoldSlot, NewVReg)) {
Evan Cheng018f9b02007-12-05 03:22:34 +00001094 // Folding the load/store can completely change the instruction in
1095 // unpredictable ways, rescan it from the beginning.
David Greene26b86a02008-10-27 17:38:59 +00001096
1097 if (FoldSS) {
1098 // We need to give the new vreg the same stack slot as the
1099 // spilled interval.
1100 vrm.assignVirt2StackSlot(NewVReg, FoldSlot);
1101 }
1102
Evan Cheng018f9b02007-12-05 03:22:34 +00001103 HasUse = false;
1104 HasDef = false;
1105 CanFold = false;
Evan Chengc781a242009-05-03 18:32:42 +00001106 if (isNotInMIMap(MI))
Evan Cheng7e073ba2008-04-09 20:57:25 +00001107 break;
Evan Cheng018f9b02007-12-05 03:22:34 +00001108 goto RestartInstruction;
1109 }
1110 } else {
Evan Cheng9c3c2212008-06-06 07:54:39 +00001111 // We'll try to fold it later if it's profitable.
Evan Cheng3c75ba82008-04-01 21:37:32 +00001112 CanFold = canFoldMemoryOperand(MI, Ops, DefIsReMat);
Evan Cheng018f9b02007-12-05 03:22:34 +00001113 }
Evan Cheng9c3c2212008-06-06 07:54:39 +00001114 }
Evan Chengcddbb832007-11-30 21:23:43 +00001115
Evan Chengcddbb832007-11-30 21:23:43 +00001116 mop.setReg(NewVReg);
Evan Chengd70dbb52008-02-22 09:24:50 +00001117 if (mop.isImplicit())
1118 rewriteImplicitOps(li, MI, NewVReg, vrm);
Evan Chengcddbb832007-11-30 21:23:43 +00001119
1120 // Reuse NewVReg for other reads.
Jakob Stoklund Olesen7c2e4a82010-11-16 00:40:59 +00001121 bool HasEarlyClobber = false;
Evan Chengd70dbb52008-02-22 09:24:50 +00001122 for (unsigned j = 0, e = Ops.size(); j != e; ++j) {
1123 MachineOperand &mopj = MI->getOperand(Ops[j]);
1124 mopj.setReg(NewVReg);
1125 if (mopj.isImplicit())
1126 rewriteImplicitOps(li, MI, NewVReg, vrm);
Jakob Stoklund Olesen7c2e4a82010-11-16 00:40:59 +00001127 if (mopj.isEarlyClobber())
1128 HasEarlyClobber = true;
Evan Chengd70dbb52008-02-22 09:24:50 +00001129 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001130
Evan Cheng81a03822007-11-17 00:40:40 +00001131 if (CreatedNewVReg) {
1132 if (DefIsReMat) {
Evan Cheng37844532009-07-16 09:20:10 +00001133 vrm.setVirtIsReMaterialized(NewVReg, ReMatDefMI);
Evan Chengd70dbb52008-02-22 09:24:50 +00001134 if (ReMatIds[VNI->id] == VirtRegMap::MAX_STACK_SLOT) {
Evan Cheng81a03822007-11-17 00:40:40 +00001135 // Each valnum may have its own remat id.
Evan Chengd70dbb52008-02-22 09:24:50 +00001136 ReMatIds[VNI->id] = vrm.assignVirtReMatId(NewVReg);
Evan Cheng81a03822007-11-17 00:40:40 +00001137 } else {
Evan Chengd70dbb52008-02-22 09:24:50 +00001138 vrm.assignVirtReMatId(NewVReg, ReMatIds[VNI->id]);
Evan Cheng81a03822007-11-17 00:40:40 +00001139 }
1140 if (!CanDelete || (HasUse && HasDef)) {
1141 // If this is a two-addr instruction then its use operands are
1142 // rematerializable but its def is not. It should be assigned a
1143 // stack slot.
1144 vrm.assignVirt2StackSlot(NewVReg, Slot);
1145 }
Evan Chengf2fbca62007-11-12 06:35:08 +00001146 } else {
Evan Chengf2fbca62007-11-12 06:35:08 +00001147 vrm.assignVirt2StackSlot(NewVReg, Slot);
1148 }
Evan Chengcb3c3302007-11-29 23:02:50 +00001149 } else if (HasUse && HasDef &&
1150 vrm.getStackSlot(NewVReg) == VirtRegMap::NO_STACK_SLOT) {
1151 // If this interval hasn't been assigned a stack slot (because earlier
1152 // def is a deleted remat def), do it now.
1153 assert(Slot != VirtRegMap::NO_STACK_SLOT);
1154 vrm.assignVirt2StackSlot(NewVReg, Slot);
Evan Chengf2fbca62007-11-12 06:35:08 +00001155 }
1156
Evan Cheng313d4b82008-02-23 00:33:04 +00001157 // Re-matting an instruction with virtual register use. Add the
1158 // register as an implicit use on the use MI.
1159 if (DefIsReMat && ImpUse)
1160 MI->addOperand(MachineOperand::CreateReg(ImpUse, false, true));
1161
Evan Cheng5b69eba2009-04-21 22:46:52 +00001162 // Create a new register interval for this spill / remat.
Evan Chengf2fbca62007-11-12 06:35:08 +00001163 LiveInterval &nI = getOrCreateInterval(NewVReg);
Evan Cheng81a03822007-11-17 00:40:40 +00001164 if (CreatedNewVReg) {
1165 NewLIs.push_back(&nI);
Evan Cheng1953d0c2007-11-29 10:12:14 +00001166 MBBVRegsMap.insert(std::make_pair(MI->getParent()->getNumber(), NewVReg));
Evan Cheng81a03822007-11-17 00:40:40 +00001167 if (TrySplit)
1168 vrm.setIsSplitFromReg(NewVReg, li.reg);
1169 }
Evan Chengf2fbca62007-11-12 06:35:08 +00001170
1171 if (HasUse) {
Evan Cheng81a03822007-11-17 00:40:40 +00001172 if (CreatedNewVReg) {
Lang Hames233a60e2009-11-03 23:52:08 +00001173 LiveRange LR(index.getLoadIndex(), index.getDefIndex(),
Lang Hames6e2968c2010-09-25 12:04:16 +00001174 nI.getNextValue(SlotIndex(), 0, VNInfoAllocator));
David Greene8a342292010-01-04 22:49:02 +00001175 DEBUG(dbgs() << " +" << LR);
Evan Cheng81a03822007-11-17 00:40:40 +00001176 nI.addRange(LR);
1177 } else {
1178 // Extend the split live interval to this def / use.
Lang Hames233a60e2009-11-03 23:52:08 +00001179 SlotIndex End = index.getDefIndex();
Evan Cheng81a03822007-11-17 00:40:40 +00001180 LiveRange LR(nI.ranges[nI.ranges.size()-1].end, End,
1181 nI.getValNumInfo(nI.getNumValNums()-1));
David Greene8a342292010-01-04 22:49:02 +00001182 DEBUG(dbgs() << " +" << LR);
Evan Cheng81a03822007-11-17 00:40:40 +00001183 nI.addRange(LR);
1184 }
Evan Chengf2fbca62007-11-12 06:35:08 +00001185 }
1186 if (HasDef) {
Jakob Stoklund Olesen7c2e4a82010-11-16 00:40:59 +00001187 // An early clobber starts at the use slot, except for an early clobber
1188 // tied to a use operand (yes, that is a thing).
1189 LiveRange LR(HasEarlyClobber && !HasUse ?
1190 index.getUseIndex() : index.getDefIndex(),
1191 index.getStoreIndex(),
Lang Hames6e2968c2010-09-25 12:04:16 +00001192 nI.getNextValue(SlotIndex(), 0, VNInfoAllocator));
David Greene8a342292010-01-04 22:49:02 +00001193 DEBUG(dbgs() << " +" << LR);
Evan Chengf2fbca62007-11-12 06:35:08 +00001194 nI.addRange(LR);
1195 }
Evan Cheng81a03822007-11-17 00:40:40 +00001196
Bill Wendling8e6179f2009-08-22 20:18:03 +00001197 DEBUG({
David Greene8a342292010-01-04 22:49:02 +00001198 dbgs() << "\t\t\t\tAdded new interval: ";
1199 nI.print(dbgs(), tri_);
1200 dbgs() << '\n';
Bill Wendling8e6179f2009-08-22 20:18:03 +00001201 });
Evan Chengf2fbca62007-11-12 06:35:08 +00001202 }
Evan Cheng018f9b02007-12-05 03:22:34 +00001203 return CanFold;
Evan Chengf2fbca62007-11-12 06:35:08 +00001204}
Evan Cheng81a03822007-11-17 00:40:40 +00001205bool LiveIntervals::anyKillInMBBAfterIdx(const LiveInterval &li,
Evan Cheng0cbb1162007-11-29 01:06:25 +00001206 const VNInfo *VNI,
Lang Hames86511252009-09-04 20:41:11 +00001207 MachineBasicBlock *MBB,
Lang Hames233a60e2009-11-03 23:52:08 +00001208 SlotIndex Idx) const {
Jakob Stoklund Olesen15a57142010-06-25 22:53:05 +00001209 return li.killedInRange(Idx.getNextSlot(), getMBBEndIdx(MBB));
Evan Cheng81a03822007-11-17 00:40:40 +00001210}
1211
Evan Cheng063284c2008-02-21 00:34:19 +00001212/// RewriteInfo - Keep track of machine instrs that will be rewritten
1213/// during spilling.
Dan Gohman844731a2008-05-13 00:00:25 +00001214namespace {
1215 struct RewriteInfo {
Lang Hames233a60e2009-11-03 23:52:08 +00001216 SlotIndex Index;
Dan Gohman844731a2008-05-13 00:00:25 +00001217 MachineInstr *MI;
Jakob Stoklund Olesenead06be2010-06-03 00:07:47 +00001218 RewriteInfo(SlotIndex i, MachineInstr *mi) : Index(i), MI(mi) {}
Dan Gohman844731a2008-05-13 00:00:25 +00001219 };
Evan Cheng063284c2008-02-21 00:34:19 +00001220
Dan Gohman844731a2008-05-13 00:00:25 +00001221 struct RewriteInfoCompare {
1222 bool operator()(const RewriteInfo &LHS, const RewriteInfo &RHS) const {
1223 return LHS.Index < RHS.Index;
1224 }
1225 };
1226}
Evan Cheng063284c2008-02-21 00:34:19 +00001227
Evan Chengf2fbca62007-11-12 06:35:08 +00001228void LiveIntervals::
Evan Cheng81a03822007-11-17 00:40:40 +00001229rewriteInstructionsForSpills(const LiveInterval &li, bool TrySplit,
Evan Chengf2fbca62007-11-12 06:35:08 +00001230 LiveInterval::Ranges::const_iterator &I,
Evan Cheng81a03822007-11-17 00:40:40 +00001231 MachineInstr *ReMatOrigDefMI, MachineInstr *ReMatDefMI,
Evan Chengf2fbca62007-11-12 06:35:08 +00001232 unsigned Slot, int LdSlot,
1233 bool isLoad, bool isLoadSS, bool DefIsReMat, bool CanDelete,
Evan Chengd70dbb52008-02-22 09:24:50 +00001234 VirtRegMap &vrm,
Evan Chengf2fbca62007-11-12 06:35:08 +00001235 const TargetRegisterClass* rc,
1236 SmallVector<int, 4> &ReMatIds,
Evan Cheng22f07ff2007-12-11 02:09:15 +00001237 const MachineLoopInfo *loopInfo,
Evan Cheng81a03822007-11-17 00:40:40 +00001238 BitVector &SpillMBBs,
Owen Anderson28998312008-08-13 22:28:50 +00001239 DenseMap<unsigned, std::vector<SRInfo> > &SpillIdxes,
Evan Cheng0cbb1162007-11-29 01:06:25 +00001240 BitVector &RestoreMBBs,
Owen Anderson28998312008-08-13 22:28:50 +00001241 DenseMap<unsigned, std::vector<SRInfo> > &RestoreIdxes,
1242 DenseMap<unsigned,unsigned> &MBBVRegsMap,
Evan Chengc781a242009-05-03 18:32:42 +00001243 std::vector<LiveInterval*> &NewLIs) {
Evan Cheng018f9b02007-12-05 03:22:34 +00001244 bool AllCanFold = true;
Evan Cheng81a03822007-11-17 00:40:40 +00001245 unsigned NewVReg = 0;
Lang Hames233a60e2009-11-03 23:52:08 +00001246 SlotIndex start = I->start.getBaseIndex();
1247 SlotIndex end = I->end.getPrevSlot().getBaseIndex().getNextIndex();
Evan Chengf2fbca62007-11-12 06:35:08 +00001248
Evan Cheng063284c2008-02-21 00:34:19 +00001249 // First collect all the def / use in this live range that will be rewritten.
Evan Cheng7e073ba2008-04-09 20:57:25 +00001250 // Make sure they are sorted according to instruction index.
Evan Cheng063284c2008-02-21 00:34:19 +00001251 std::vector<RewriteInfo> RewriteMIs;
Evan Chengd70dbb52008-02-22 09:24:50 +00001252 for (MachineRegisterInfo::reg_iterator ri = mri_->reg_begin(li.reg),
1253 re = mri_->reg_end(); ri != re; ) {
Evan Cheng419852c2008-04-03 16:39:43 +00001254 MachineInstr *MI = &*ri;
Evan Cheng063284c2008-02-21 00:34:19 +00001255 MachineOperand &O = ri.getOperand();
1256 ++ri;
Dale Johannesenbd635202010-02-10 00:55:42 +00001257 if (MI->isDebugValue()) {
Evan Cheng962021b2010-04-26 07:38:55 +00001258 // Modify DBG_VALUE now that the value is in a spill slot.
Evan Cheng6691a892010-04-28 23:52:26 +00001259 if (Slot != VirtRegMap::MAX_STACK_SLOT || isLoadSS) {
Evan Cheng6fa76362010-04-26 18:37:21 +00001260 uint64_t Offset = MI->getOperand(1).getImm();
1261 const MDNode *MDPtr = MI->getOperand(2).getMetadata();
1262 DebugLoc DL = MI->getDebugLoc();
Evan Cheng6691a892010-04-28 23:52:26 +00001263 int FI = isLoadSS ? LdSlot : (int)Slot;
1264 if (MachineInstr *NewDV = tii_->emitFrameIndexDebugValue(*mf_, FI,
Evan Cheng6fa76362010-04-26 18:37:21 +00001265 Offset, MDPtr, DL)) {
1266 DEBUG(dbgs() << "Modifying debug info due to spill:" << "\t" << *MI);
1267 ReplaceMachineInstrInMaps(MI, NewDV);
1268 MachineBasicBlock *MBB = MI->getParent();
1269 MBB->insert(MBB->erase(MI), NewDV);
1270 continue;
1271 }
Evan Cheng962021b2010-04-26 07:38:55 +00001272 }
Evan Cheng6fa76362010-04-26 18:37:21 +00001273
1274 DEBUG(dbgs() << "Removing debug info due to spill:" << "\t" << *MI);
1275 RemoveMachineInstrFromMaps(MI);
1276 vrm.RemoveMachineInstrFromMaps(MI);
1277 MI->eraseFromParent();
Dale Johannesenbd635202010-02-10 00:55:42 +00001278 continue;
1279 }
Jakob Stoklund Olesen63e6a482010-05-21 16:32:16 +00001280 assert(!(O.isImplicit() && O.isUse()) &&
1281 "Spilling register that's used as implicit use?");
Lang Hames233a60e2009-11-03 23:52:08 +00001282 SlotIndex index = getInstructionIndex(MI);
Evan Cheng063284c2008-02-21 00:34:19 +00001283 if (index < start || index >= end)
1284 continue;
Evan Chengd129d732009-07-17 19:43:40 +00001285
1286 if (O.isUndef())
Evan Cheng79a796c2008-07-12 01:56:02 +00001287 // Must be defined by an implicit def. It should not be spilled. Note,
1288 // this is for correctness reason. e.g.
1289 // 8 %reg1024<def> = IMPLICIT_DEF
1290 // 12 %reg1024<def> = INSERT_SUBREG %reg1024<kill>, %reg1025, 2
1291 // The live range [12, 14) are not part of the r1024 live interval since
1292 // it's defined by an implicit def. It will not conflicts with live
1293 // interval of r1025. Now suppose both registers are spilled, you can
Evan Chengb9890ae2008-07-12 02:22:07 +00001294 // easily see a situation where both registers are reloaded before
Evan Cheng79a796c2008-07-12 01:56:02 +00001295 // the INSERT_SUBREG and both target registers that would overlap.
1296 continue;
Jakob Stoklund Olesenead06be2010-06-03 00:07:47 +00001297 RewriteMIs.push_back(RewriteInfo(index, MI));
Evan Cheng063284c2008-02-21 00:34:19 +00001298 }
1299 std::sort(RewriteMIs.begin(), RewriteMIs.end(), RewriteInfoCompare());
1300
Evan Cheng313d4b82008-02-23 00:33:04 +00001301 unsigned ImpUse = DefIsReMat ? getReMatImplicitUse(li, ReMatDefMI) : 0;
Evan Cheng063284c2008-02-21 00:34:19 +00001302 // Now rewrite the defs and uses.
1303 for (unsigned i = 0, e = RewriteMIs.size(); i != e; ) {
1304 RewriteInfo &rwi = RewriteMIs[i];
1305 ++i;
Lang Hames233a60e2009-11-03 23:52:08 +00001306 SlotIndex index = rwi.Index;
Evan Cheng063284c2008-02-21 00:34:19 +00001307 MachineInstr *MI = rwi.MI;
1308 // If MI def and/or use the same register multiple times, then there
1309 // are multiple entries.
1310 while (i != e && RewriteMIs[i].MI == MI) {
1311 assert(RewriteMIs[i].Index == index);
Evan Cheng063284c2008-02-21 00:34:19 +00001312 ++i;
1313 }
Evan Cheng81a03822007-11-17 00:40:40 +00001314 MachineBasicBlock *MBB = MI->getParent();
Evan Cheng313d4b82008-02-23 00:33:04 +00001315
Evan Cheng0a891ed2008-05-23 23:00:04 +00001316 if (ImpUse && MI != ReMatDefMI) {
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001317 // Re-matting an instruction with virtual register use. Prevent interval
1318 // from being spilled.
1319 getInterval(ImpUse).markNotSpillable();
Evan Cheng313d4b82008-02-23 00:33:04 +00001320 }
1321
Evan Cheng063284c2008-02-21 00:34:19 +00001322 unsigned MBBId = MBB->getNumber();
Evan Cheng018f9b02007-12-05 03:22:34 +00001323 unsigned ThisVReg = 0;
Evan Cheng70306f82007-12-03 09:58:48 +00001324 if (TrySplit) {
Owen Anderson28998312008-08-13 22:28:50 +00001325 DenseMap<unsigned,unsigned>::iterator NVI = MBBVRegsMap.find(MBBId);
Evan Cheng1953d0c2007-11-29 10:12:14 +00001326 if (NVI != MBBVRegsMap.end()) {
Evan Cheng018f9b02007-12-05 03:22:34 +00001327 ThisVReg = NVI->second;
Evan Cheng1953d0c2007-11-29 10:12:14 +00001328 // One common case:
1329 // x = use
1330 // ...
1331 // ...
1332 // def = ...
1333 // = use
1334 // It's better to start a new interval to avoid artifically
1335 // extend the new interval.
Jakob Stoklund Olesenead06be2010-06-03 00:07:47 +00001336 if (MI->readsWritesVirtualRegister(li.reg) ==
1337 std::make_pair(false,true)) {
Evan Cheng1953d0c2007-11-29 10:12:14 +00001338 MBBVRegsMap.erase(MBB->getNumber());
Evan Cheng018f9b02007-12-05 03:22:34 +00001339 ThisVReg = 0;
Evan Cheng1953d0c2007-11-29 10:12:14 +00001340 }
1341 }
Evan Chengcada2452007-11-28 01:28:46 +00001342 }
Evan Cheng018f9b02007-12-05 03:22:34 +00001343
1344 bool IsNew = ThisVReg == 0;
1345 if (IsNew) {
1346 // This ends the previous live interval. If all of its def / use
1347 // can be folded, give it a low spill weight.
1348 if (NewVReg && TrySplit && AllCanFold) {
1349 LiveInterval &nI = getOrCreateInterval(NewVReg);
1350 nI.weight /= 10.0F;
1351 }
1352 AllCanFold = true;
1353 }
1354 NewVReg = ThisVReg;
1355
Evan Cheng81a03822007-11-17 00:40:40 +00001356 bool HasDef = false;
1357 bool HasUse = false;
Evan Chengd70dbb52008-02-22 09:24:50 +00001358 bool CanFold = rewriteInstructionForSpills(li, I->valno, TrySplit,
Evan Cheng9c3c2212008-06-06 07:54:39 +00001359 index, end, MI, ReMatOrigDefMI, ReMatDefMI,
1360 Slot, LdSlot, isLoad, isLoadSS, DefIsReMat,
1361 CanDelete, vrm, rc, ReMatIds, loopInfo, NewVReg,
Evan Chengc781a242009-05-03 18:32:42 +00001362 ImpUse, HasDef, HasUse, MBBVRegsMap, NewLIs);
Evan Cheng81a03822007-11-17 00:40:40 +00001363 if (!HasDef && !HasUse)
1364 continue;
1365
Evan Cheng018f9b02007-12-05 03:22:34 +00001366 AllCanFold &= CanFold;
1367
Evan Cheng81a03822007-11-17 00:40:40 +00001368 // Update weight of spill interval.
1369 LiveInterval &nI = getOrCreateInterval(NewVReg);
Evan Cheng70306f82007-12-03 09:58:48 +00001370 if (!TrySplit) {
Evan Cheng81a03822007-11-17 00:40:40 +00001371 // The spill weight is now infinity as it cannot be spilled again.
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001372 nI.markNotSpillable();
Evan Cheng0cbb1162007-11-29 01:06:25 +00001373 continue;
Evan Cheng81a03822007-11-17 00:40:40 +00001374 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001375
1376 // Keep track of the last def and first use in each MBB.
Evan Cheng0cbb1162007-11-29 01:06:25 +00001377 if (HasDef) {
1378 if (MI != ReMatOrigDefMI || !CanDelete) {
Evan Cheng0cbb1162007-11-29 01:06:25 +00001379 bool HasKill = false;
1380 if (!HasUse)
Lang Hames233a60e2009-11-03 23:52:08 +00001381 HasKill = anyKillInMBBAfterIdx(li, I->valno, MBB, index.getDefIndex());
Evan Cheng0cbb1162007-11-29 01:06:25 +00001382 else {
Evan Cheng1953d0c2007-11-29 10:12:14 +00001383 // If this is a two-address code, then this index starts a new VNInfo.
Lang Hames233a60e2009-11-03 23:52:08 +00001384 const VNInfo *VNI = li.findDefinedVNInfoForRegInt(index.getDefIndex());
Evan Cheng0cbb1162007-11-29 01:06:25 +00001385 if (VNI)
Lang Hames233a60e2009-11-03 23:52:08 +00001386 HasKill = anyKillInMBBAfterIdx(li, VNI, MBB, index.getDefIndex());
Evan Cheng0cbb1162007-11-29 01:06:25 +00001387 }
Owen Anderson28998312008-08-13 22:28:50 +00001388 DenseMap<unsigned, std::vector<SRInfo> >::iterator SII =
Evan Chenge3110d02007-12-01 04:42:39 +00001389 SpillIdxes.find(MBBId);
Evan Cheng0cbb1162007-11-29 01:06:25 +00001390 if (!HasKill) {
Evan Cheng1953d0c2007-11-29 10:12:14 +00001391 if (SII == SpillIdxes.end()) {
1392 std::vector<SRInfo> S;
1393 S.push_back(SRInfo(index, NewVReg, true));
1394 SpillIdxes.insert(std::make_pair(MBBId, S));
1395 } else if (SII->second.back().vreg != NewVReg) {
1396 SII->second.push_back(SRInfo(index, NewVReg, true));
Lang Hames86511252009-09-04 20:41:11 +00001397 } else if (index > SII->second.back().index) {
Evan Cheng0cbb1162007-11-29 01:06:25 +00001398 // If there is an earlier def and this is a two-address
1399 // instruction, then it's not possible to fold the store (which
1400 // would also fold the load).
Evan Cheng1953d0c2007-11-29 10:12:14 +00001401 SRInfo &Info = SII->second.back();
1402 Info.index = index;
1403 Info.canFold = !HasUse;
Evan Cheng0cbb1162007-11-29 01:06:25 +00001404 }
1405 SpillMBBs.set(MBBId);
Evan Chenge3110d02007-12-01 04:42:39 +00001406 } else if (SII != SpillIdxes.end() &&
1407 SII->second.back().vreg == NewVReg &&
Lang Hames86511252009-09-04 20:41:11 +00001408 index > SII->second.back().index) {
Evan Chenge3110d02007-12-01 04:42:39 +00001409 // There is an earlier def that's not killed (must be two-address).
1410 // The spill is no longer needed.
1411 SII->second.pop_back();
1412 if (SII->second.empty()) {
1413 SpillIdxes.erase(MBBId);
1414 SpillMBBs.reset(MBBId);
1415 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001416 }
1417 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001418 }
1419
1420 if (HasUse) {
Owen Anderson28998312008-08-13 22:28:50 +00001421 DenseMap<unsigned, std::vector<SRInfo> >::iterator SII =
Evan Cheng0cbb1162007-11-29 01:06:25 +00001422 SpillIdxes.find(MBBId);
Evan Cheng1953d0c2007-11-29 10:12:14 +00001423 if (SII != SpillIdxes.end() &&
1424 SII->second.back().vreg == NewVReg &&
Lang Hames86511252009-09-04 20:41:11 +00001425 index > SII->second.back().index)
Evan Cheng0cbb1162007-11-29 01:06:25 +00001426 // Use(s) following the last def, it's not safe to fold the spill.
Evan Cheng1953d0c2007-11-29 10:12:14 +00001427 SII->second.back().canFold = false;
Owen Anderson28998312008-08-13 22:28:50 +00001428 DenseMap<unsigned, std::vector<SRInfo> >::iterator RII =
Evan Cheng0cbb1162007-11-29 01:06:25 +00001429 RestoreIdxes.find(MBBId);
Evan Cheng1953d0c2007-11-29 10:12:14 +00001430 if (RII != RestoreIdxes.end() && RII->second.back().vreg == NewVReg)
Evan Cheng0cbb1162007-11-29 01:06:25 +00001431 // If we are splitting live intervals, only fold if it's the first
1432 // use and there isn't another use later in the MBB.
Evan Cheng1953d0c2007-11-29 10:12:14 +00001433 RII->second.back().canFold = false;
Evan Cheng0cbb1162007-11-29 01:06:25 +00001434 else if (IsNew) {
1435 // Only need a reload if there isn't an earlier def / use.
Evan Cheng1953d0c2007-11-29 10:12:14 +00001436 if (RII == RestoreIdxes.end()) {
1437 std::vector<SRInfo> Infos;
1438 Infos.push_back(SRInfo(index, NewVReg, true));
1439 RestoreIdxes.insert(std::make_pair(MBBId, Infos));
1440 } else {
1441 RII->second.push_back(SRInfo(index, NewVReg, true));
1442 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001443 RestoreMBBs.set(MBBId);
1444 }
1445 }
1446
1447 // Update spill weight.
Evan Cheng22f07ff2007-12-11 02:09:15 +00001448 unsigned loopDepth = loopInfo->getLoopDepth(MBB);
Evan Chengc3417602008-06-21 06:45:54 +00001449 nI.weight += getSpillWeight(HasDef, HasUse, loopDepth);
Evan Chengf2fbca62007-11-12 06:35:08 +00001450 }
Evan Cheng018f9b02007-12-05 03:22:34 +00001451
1452 if (NewVReg && TrySplit && AllCanFold) {
1453 // If all of its def / use can be folded, give it a low spill weight.
1454 LiveInterval &nI = getOrCreateInterval(NewVReg);
1455 nI.weight /= 10.0F;
1456 }
Evan Chengf2fbca62007-11-12 06:35:08 +00001457}
1458
Lang Hames233a60e2009-11-03 23:52:08 +00001459bool LiveIntervals::alsoFoldARestore(int Id, SlotIndex index,
Lang Hames86511252009-09-04 20:41:11 +00001460 unsigned vr, BitVector &RestoreMBBs,
Owen Anderson28998312008-08-13 22:28:50 +00001461 DenseMap<unsigned,std::vector<SRInfo> > &RestoreIdxes) {
Evan Cheng1953d0c2007-11-29 10:12:14 +00001462 if (!RestoreMBBs[Id])
1463 return false;
1464 std::vector<SRInfo> &Restores = RestoreIdxes[Id];
1465 for (unsigned i = 0, e = Restores.size(); i != e; ++i)
1466 if (Restores[i].index == index &&
1467 Restores[i].vreg == vr &&
1468 Restores[i].canFold)
1469 return true;
1470 return false;
1471}
1472
Lang Hames233a60e2009-11-03 23:52:08 +00001473void LiveIntervals::eraseRestoreInfo(int Id, SlotIndex index,
Lang Hames86511252009-09-04 20:41:11 +00001474 unsigned vr, BitVector &RestoreMBBs,
Owen Anderson28998312008-08-13 22:28:50 +00001475 DenseMap<unsigned,std::vector<SRInfo> > &RestoreIdxes) {
Evan Cheng1953d0c2007-11-29 10:12:14 +00001476 if (!RestoreMBBs[Id])
1477 return;
1478 std::vector<SRInfo> &Restores = RestoreIdxes[Id];
1479 for (unsigned i = 0, e = Restores.size(); i != e; ++i)
1480 if (Restores[i].index == index && Restores[i].vreg)
Lang Hames233a60e2009-11-03 23:52:08 +00001481 Restores[i].index = SlotIndex();
Evan Cheng1953d0c2007-11-29 10:12:14 +00001482}
Evan Cheng81a03822007-11-17 00:40:40 +00001483
Evan Cheng4cce6b42008-04-11 17:53:36 +00001484/// handleSpilledImpDefs - Remove IMPLICIT_DEF instructions which are being
1485/// spilled and create empty intervals for their uses.
1486void
1487LiveIntervals::handleSpilledImpDefs(const LiveInterval &li, VirtRegMap &vrm,
1488 const TargetRegisterClass* rc,
1489 std::vector<LiveInterval*> &NewLIs) {
Evan Cheng419852c2008-04-03 16:39:43 +00001490 for (MachineRegisterInfo::reg_iterator ri = mri_->reg_begin(li.reg),
1491 re = mri_->reg_end(); ri != re; ) {
Evan Cheng4cce6b42008-04-11 17:53:36 +00001492 MachineOperand &O = ri.getOperand();
Evan Cheng419852c2008-04-03 16:39:43 +00001493 MachineInstr *MI = &*ri;
1494 ++ri;
Evan Cheng28a1e482010-03-30 05:49:07 +00001495 if (MI->isDebugValue()) {
1496 // Remove debug info for now.
1497 O.setReg(0U);
1498 DEBUG(dbgs() << "Removing debug info due to spill:" << "\t" << *MI);
1499 continue;
1500 }
Evan Cheng4cce6b42008-04-11 17:53:36 +00001501 if (O.isDef()) {
Chris Lattner518bb532010-02-09 19:54:29 +00001502 assert(MI->isImplicitDef() &&
Evan Cheng4cce6b42008-04-11 17:53:36 +00001503 "Register def was not rewritten?");
1504 RemoveMachineInstrFromMaps(MI);
1505 vrm.RemoveMachineInstrFromMaps(MI);
1506 MI->eraseFromParent();
1507 } else {
1508 // This must be an use of an implicit_def so it's not part of the live
1509 // interval. Create a new empty live interval for it.
1510 // FIXME: Can we simply erase some of the instructions? e.g. Stores?
1511 unsigned NewVReg = mri_->createVirtualRegister(rc);
1512 vrm.grow();
1513 vrm.setIsImplicitlyDefined(NewVReg);
1514 NewLIs.push_back(&getOrCreateInterval(NewVReg));
1515 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
1516 MachineOperand &MO = MI->getOperand(i);
Evan Cheng4784f1f2009-06-30 08:49:04 +00001517 if (MO.isReg() && MO.getReg() == li.reg) {
Evan Cheng4cce6b42008-04-11 17:53:36 +00001518 MO.setReg(NewVReg);
Evan Cheng4784f1f2009-06-30 08:49:04 +00001519 MO.setIsUndef();
Evan Cheng4784f1f2009-06-30 08:49:04 +00001520 }
Evan Cheng4cce6b42008-04-11 17:53:36 +00001521 }
1522 }
Evan Cheng419852c2008-04-03 16:39:43 +00001523 }
1524}
1525
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001526float
1527LiveIntervals::getSpillWeight(bool isDef, bool isUse, unsigned loopDepth) {
1528 // Limit the loop depth ridiculousness.
1529 if (loopDepth > 200)
1530 loopDepth = 200;
1531
1532 // The loop depth is used to roughly estimate the number of times the
1533 // instruction is executed. Something like 10^d is simple, but will quickly
1534 // overflow a float. This expression behaves like 10^d for small d, but is
1535 // more tempered for large d. At d=200 we get 6.7e33 which leaves a bit of
1536 // headroom before overflow.
Chris Lattner87565c12010-05-15 17:10:24 +00001537 float lc = std::pow(1 + (100.0f / (loopDepth+10)), (float)loopDepth);
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001538
1539 return (isDef + isUse) * lc;
1540}
1541
Jakob Stoklund Olesen352d3522010-02-18 21:33:05 +00001542void
1543LiveIntervals::normalizeSpillWeights(std::vector<LiveInterval*> &NewLIs) {
1544 for (unsigned i = 0, e = NewLIs.size(); i != e; ++i)
1545 normalizeSpillWeight(*NewLIs[i]);
1546}
1547
Evan Chengf2fbca62007-11-12 06:35:08 +00001548std::vector<LiveInterval*> LiveIntervals::
Evan Cheng81a03822007-11-17 00:40:40 +00001549addIntervalsForSpills(const LiveInterval &li,
Andrew Trickf4baeaf2010-11-10 19:18:47 +00001550 const SmallVectorImpl<LiveInterval*> &SpillIs,
Evan Chengc781a242009-05-03 18:32:42 +00001551 const MachineLoopInfo *loopInfo, VirtRegMap &vrm) {
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001552 assert(li.isSpillable() && "attempt to spill already spilled interval!");
Evan Chengf2fbca62007-11-12 06:35:08 +00001553
Bill Wendling8e6179f2009-08-22 20:18:03 +00001554 DEBUG({
David Greene8a342292010-01-04 22:49:02 +00001555 dbgs() << "\t\t\t\tadding intervals for spills for interval: ";
1556 li.print(dbgs(), tri_);
1557 dbgs() << '\n';
Bill Wendling8e6179f2009-08-22 20:18:03 +00001558 });
Evan Chengf2fbca62007-11-12 06:35:08 +00001559
Evan Cheng72eeb942008-12-05 17:00:16 +00001560 // Each bit specify whether a spill is required in the MBB.
Evan Cheng81a03822007-11-17 00:40:40 +00001561 BitVector SpillMBBs(mf_->getNumBlockIDs());
Owen Anderson28998312008-08-13 22:28:50 +00001562 DenseMap<unsigned, std::vector<SRInfo> > SpillIdxes;
Evan Cheng0cbb1162007-11-29 01:06:25 +00001563 BitVector RestoreMBBs(mf_->getNumBlockIDs());
Owen Anderson28998312008-08-13 22:28:50 +00001564 DenseMap<unsigned, std::vector<SRInfo> > RestoreIdxes;
1565 DenseMap<unsigned,unsigned> MBBVRegsMap;
Evan Chengf2fbca62007-11-12 06:35:08 +00001566 std::vector<LiveInterval*> NewLIs;
Evan Chengd70dbb52008-02-22 09:24:50 +00001567 const TargetRegisterClass* rc = mri_->getRegClass(li.reg);
Evan Chengf2fbca62007-11-12 06:35:08 +00001568
1569 unsigned NumValNums = li.getNumValNums();
1570 SmallVector<MachineInstr*, 4> ReMatDefs;
1571 ReMatDefs.resize(NumValNums, NULL);
1572 SmallVector<MachineInstr*, 4> ReMatOrigDefs;
1573 ReMatOrigDefs.resize(NumValNums, NULL);
1574 SmallVector<int, 4> ReMatIds;
1575 ReMatIds.resize(NumValNums, VirtRegMap::MAX_STACK_SLOT);
1576 BitVector ReMatDelete(NumValNums);
1577 unsigned Slot = VirtRegMap::MAX_STACK_SLOT;
1578
Evan Cheng81a03822007-11-17 00:40:40 +00001579 // Spilling a split live interval. It cannot be split any further. Also,
1580 // it's also guaranteed to be a single val# / range interval.
1581 if (vrm.getPreSplitReg(li.reg)) {
1582 vrm.setIsSplitFromReg(li.reg, 0);
Evan Chengd120ffd2007-12-05 10:24:35 +00001583 // Unset the split kill marker on the last use.
Lang Hames233a60e2009-11-03 23:52:08 +00001584 SlotIndex KillIdx = vrm.getKillPoint(li.reg);
1585 if (KillIdx != SlotIndex()) {
Evan Chengd120ffd2007-12-05 10:24:35 +00001586 MachineInstr *KillMI = getInstructionFromIndex(KillIdx);
1587 assert(KillMI && "Last use disappeared?");
1588 int KillOp = KillMI->findRegisterUseOperandIdx(li.reg, true);
1589 assert(KillOp != -1 && "Last use disappeared?");
Chris Lattnerf7382302007-12-30 21:56:09 +00001590 KillMI->getOperand(KillOp).setIsKill(false);
Evan Chengd120ffd2007-12-05 10:24:35 +00001591 }
Evan Chengadf85902007-12-05 09:51:10 +00001592 vrm.removeKillPoint(li.reg);
Evan Cheng81a03822007-11-17 00:40:40 +00001593 bool DefIsReMat = vrm.isReMaterialized(li.reg);
1594 Slot = vrm.getStackSlot(li.reg);
1595 assert(Slot != VirtRegMap::MAX_STACK_SLOT);
1596 MachineInstr *ReMatDefMI = DefIsReMat ?
1597 vrm.getReMaterializedMI(li.reg) : NULL;
1598 int LdSlot = 0;
1599 bool isLoadSS = DefIsReMat && tii_->isLoadFromStackSlot(ReMatDefMI, LdSlot);
1600 bool isLoad = isLoadSS ||
Dan Gohman15511cf2008-12-03 18:15:48 +00001601 (DefIsReMat && (ReMatDefMI->getDesc().canFoldAsLoad()));
Evan Cheng81a03822007-11-17 00:40:40 +00001602 bool IsFirstRange = true;
1603 for (LiveInterval::Ranges::const_iterator
1604 I = li.ranges.begin(), E = li.ranges.end(); I != E; ++I) {
1605 // If this is a split live interval with multiple ranges, it means there
1606 // are two-address instructions that re-defined the value. Only the
1607 // first def can be rematerialized!
1608 if (IsFirstRange) {
Evan Chengcb3c3302007-11-29 23:02:50 +00001609 // Note ReMatOrigDefMI has already been deleted.
Evan Cheng81a03822007-11-17 00:40:40 +00001610 rewriteInstructionsForSpills(li, false, I, NULL, ReMatDefMI,
1611 Slot, LdSlot, isLoad, isLoadSS, DefIsReMat,
Evan Chengd70dbb52008-02-22 09:24:50 +00001612 false, vrm, rc, ReMatIds, loopInfo,
Evan Cheng0cbb1162007-11-29 01:06:25 +00001613 SpillMBBs, SpillIdxes, RestoreMBBs, RestoreIdxes,
Evan Chengc781a242009-05-03 18:32:42 +00001614 MBBVRegsMap, NewLIs);
Evan Cheng81a03822007-11-17 00:40:40 +00001615 } else {
1616 rewriteInstructionsForSpills(li, false, I, NULL, 0,
1617 Slot, 0, false, false, false,
Evan Chengd70dbb52008-02-22 09:24:50 +00001618 false, vrm, rc, ReMatIds, loopInfo,
Evan Cheng0cbb1162007-11-29 01:06:25 +00001619 SpillMBBs, SpillIdxes, RestoreMBBs, RestoreIdxes,
Evan Chengc781a242009-05-03 18:32:42 +00001620 MBBVRegsMap, NewLIs);
Evan Cheng81a03822007-11-17 00:40:40 +00001621 }
1622 IsFirstRange = false;
1623 }
Evan Cheng419852c2008-04-03 16:39:43 +00001624
Evan Cheng4cce6b42008-04-11 17:53:36 +00001625 handleSpilledImpDefs(li, vrm, rc, NewLIs);
Jakob Stoklund Olesen352d3522010-02-18 21:33:05 +00001626 normalizeSpillWeights(NewLIs);
Evan Cheng81a03822007-11-17 00:40:40 +00001627 return NewLIs;
1628 }
1629
Evan Cheng752195e2009-09-14 21:33:42 +00001630 bool TrySplit = !intervalIsInOneMBB(li);
Evan Cheng0cbb1162007-11-29 01:06:25 +00001631 if (TrySplit)
1632 ++numSplits;
Evan Chengf2fbca62007-11-12 06:35:08 +00001633 bool NeedStackSlot = false;
1634 for (LiveInterval::const_vni_iterator i = li.vni_begin(), e = li.vni_end();
1635 i != e; ++i) {
1636 const VNInfo *VNI = *i;
1637 unsigned VN = VNI->id;
Lang Hames857c4e02009-06-17 21:01:20 +00001638 if (VNI->isUnused())
Evan Chengf2fbca62007-11-12 06:35:08 +00001639 continue; // Dead val#.
1640 // Is the def for the val# rematerializable?
Lang Hames6e2968c2010-09-25 12:04:16 +00001641 MachineInstr *ReMatDefMI = getInstructionFromIndex(VNI->def);
Evan Cheng5ef3a042007-12-06 00:01:56 +00001642 bool dummy;
Evan Chengdc377862008-09-30 15:44:16 +00001643 if (ReMatDefMI && isReMaterializable(li, VNI, ReMatDefMI, SpillIs, dummy)) {
Evan Chengf2fbca62007-11-12 06:35:08 +00001644 // Remember how to remat the def of this val#.
Evan Cheng81a03822007-11-17 00:40:40 +00001645 ReMatOrigDefs[VN] = ReMatDefMI;
Dan Gohman2c3f7ae2008-07-17 23:49:46 +00001646 // Original def may be modified so we have to make a copy here.
Evan Cheng1ed99222008-07-19 00:37:25 +00001647 MachineInstr *Clone = mf_->CloneMachineInstr(ReMatDefMI);
Evan Cheng752195e2009-09-14 21:33:42 +00001648 CloneMIs.push_back(Clone);
Evan Cheng1ed99222008-07-19 00:37:25 +00001649 ReMatDefs[VN] = Clone;
Evan Chengf2fbca62007-11-12 06:35:08 +00001650
1651 bool CanDelete = true;
Lang Hames857c4e02009-06-17 21:01:20 +00001652 if (VNI->hasPHIKill()) {
Evan Chengc3fc7d92007-11-29 09:49:23 +00001653 // A kill is a phi node, not all of its uses can be rematerialized.
Evan Chengf2fbca62007-11-12 06:35:08 +00001654 // It must not be deleted.
Evan Chengc3fc7d92007-11-29 09:49:23 +00001655 CanDelete = false;
1656 // Need a stack slot if there is any live range where uses cannot be
1657 // rematerialized.
1658 NeedStackSlot = true;
Evan Chengf2fbca62007-11-12 06:35:08 +00001659 }
Evan Chengf2fbca62007-11-12 06:35:08 +00001660 if (CanDelete)
1661 ReMatDelete.set(VN);
1662 } else {
1663 // Need a stack slot if there is any live range where uses cannot be
1664 // rematerialized.
1665 NeedStackSlot = true;
1666 }
1667 }
1668
1669 // One stack slot per live interval.
Owen Andersonb98bbb72009-03-26 18:53:38 +00001670 if (NeedStackSlot && vrm.getPreSplitReg(li.reg) == 0) {
1671 if (vrm.getStackSlot(li.reg) == VirtRegMap::NO_STACK_SLOT)
1672 Slot = vrm.assignVirt2StackSlot(li.reg);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001673
Owen Andersonb98bbb72009-03-26 18:53:38 +00001674 // This case only occurs when the prealloc splitter has already assigned
1675 // a stack slot to this vreg.
1676 else
1677 Slot = vrm.getStackSlot(li.reg);
1678 }
Evan Chengf2fbca62007-11-12 06:35:08 +00001679
1680 // Create new intervals and rewrite defs and uses.
1681 for (LiveInterval::Ranges::const_iterator
1682 I = li.ranges.begin(), E = li.ranges.end(); I != E; ++I) {
Evan Cheng81a03822007-11-17 00:40:40 +00001683 MachineInstr *ReMatDefMI = ReMatDefs[I->valno->id];
1684 MachineInstr *ReMatOrigDefMI = ReMatOrigDefs[I->valno->id];
1685 bool DefIsReMat = ReMatDefMI != NULL;
Evan Chengf2fbca62007-11-12 06:35:08 +00001686 bool CanDelete = ReMatDelete[I->valno->id];
1687 int LdSlot = 0;
Evan Cheng81a03822007-11-17 00:40:40 +00001688 bool isLoadSS = DefIsReMat && tii_->isLoadFromStackSlot(ReMatDefMI, LdSlot);
Evan Chengf2fbca62007-11-12 06:35:08 +00001689 bool isLoad = isLoadSS ||
Dan Gohman15511cf2008-12-03 18:15:48 +00001690 (DefIsReMat && ReMatDefMI->getDesc().canFoldAsLoad());
Evan Cheng81a03822007-11-17 00:40:40 +00001691 rewriteInstructionsForSpills(li, TrySplit, I, ReMatOrigDefMI, ReMatDefMI,
Evan Cheng0cbb1162007-11-29 01:06:25 +00001692 Slot, LdSlot, isLoad, isLoadSS, DefIsReMat,
Evan Chengd70dbb52008-02-22 09:24:50 +00001693 CanDelete, vrm, rc, ReMatIds, loopInfo,
Evan Cheng0cbb1162007-11-29 01:06:25 +00001694 SpillMBBs, SpillIdxes, RestoreMBBs, RestoreIdxes,
Evan Chengc781a242009-05-03 18:32:42 +00001695 MBBVRegsMap, NewLIs);
Evan Chengf2fbca62007-11-12 06:35:08 +00001696 }
1697
Evan Cheng0cbb1162007-11-29 01:06:25 +00001698 // Insert spills / restores if we are splitting.
Evan Cheng419852c2008-04-03 16:39:43 +00001699 if (!TrySplit) {
Evan Cheng4cce6b42008-04-11 17:53:36 +00001700 handleSpilledImpDefs(li, vrm, rc, NewLIs);
Jakob Stoklund Olesen352d3522010-02-18 21:33:05 +00001701 normalizeSpillWeights(NewLIs);
Evan Cheng1953d0c2007-11-29 10:12:14 +00001702 return NewLIs;
Evan Cheng419852c2008-04-03 16:39:43 +00001703 }
Evan Cheng1953d0c2007-11-29 10:12:14 +00001704
Evan Chengb50bb8c2007-12-05 08:16:32 +00001705 SmallPtrSet<LiveInterval*, 4> AddedKill;
Evan Chengaee4af62007-12-02 08:30:39 +00001706 SmallVector<unsigned, 2> Ops;
Evan Cheng1953d0c2007-11-29 10:12:14 +00001707 if (NeedStackSlot) {
1708 int Id = SpillMBBs.find_first();
1709 while (Id != -1) {
1710 std::vector<SRInfo> &spills = SpillIdxes[Id];
1711 for (unsigned i = 0, e = spills.size(); i != e; ++i) {
Lang Hames233a60e2009-11-03 23:52:08 +00001712 SlotIndex index = spills[i].index;
Evan Cheng1953d0c2007-11-29 10:12:14 +00001713 unsigned VReg = spills[i].vreg;
Evan Cheng597d10d2007-12-04 00:32:23 +00001714 LiveInterval &nI = getOrCreateInterval(VReg);
Evan Cheng0cbb1162007-11-29 01:06:25 +00001715 bool isReMat = vrm.isReMaterialized(VReg);
1716 MachineInstr *MI = getInstructionFromIndex(index);
Evan Chengaee4af62007-12-02 08:30:39 +00001717 bool CanFold = false;
1718 bool FoundUse = false;
1719 Ops.clear();
Evan Chengcddbb832007-11-30 21:23:43 +00001720 if (spills[i].canFold) {
Evan Chengaee4af62007-12-02 08:30:39 +00001721 CanFold = true;
Evan Cheng0cbb1162007-11-29 01:06:25 +00001722 for (unsigned j = 0, ee = MI->getNumOperands(); j != ee; ++j) {
1723 MachineOperand &MO = MI->getOperand(j);
Dan Gohmand735b802008-10-03 15:45:36 +00001724 if (!MO.isReg() || MO.getReg() != VReg)
Evan Cheng0cbb1162007-11-29 01:06:25 +00001725 continue;
Evan Chengaee4af62007-12-02 08:30:39 +00001726
1727 Ops.push_back(j);
1728 if (MO.isDef())
Evan Chengcddbb832007-11-30 21:23:43 +00001729 continue;
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001730 if (isReMat ||
Evan Chengaee4af62007-12-02 08:30:39 +00001731 (!FoundUse && !alsoFoldARestore(Id, index, VReg,
1732 RestoreMBBs, RestoreIdxes))) {
1733 // MI has two-address uses of the same register. If the use
1734 // isn't the first and only use in the BB, then we can't fold
1735 // it. FIXME: Move this to rewriteInstructionsForSpills.
1736 CanFold = false;
Evan Chengcddbb832007-11-30 21:23:43 +00001737 break;
1738 }
Evan Chengaee4af62007-12-02 08:30:39 +00001739 FoundUse = true;
Evan Cheng0cbb1162007-11-29 01:06:25 +00001740 }
1741 }
1742 // Fold the store into the def if possible.
Evan Chengcddbb832007-11-30 21:23:43 +00001743 bool Folded = false;
Evan Chengaee4af62007-12-02 08:30:39 +00001744 if (CanFold && !Ops.empty()) {
1745 if (tryFoldMemoryOperand(MI, vrm, NULL, index, Ops, true, Slot,VReg)){
Evan Chengcddbb832007-11-30 21:23:43 +00001746 Folded = true;
Sebastian Redl48fe6352009-03-19 23:26:52 +00001747 if (FoundUse) {
Evan Chengaee4af62007-12-02 08:30:39 +00001748 // Also folded uses, do not issue a load.
1749 eraseRestoreInfo(Id, index, VReg, RestoreMBBs, RestoreIdxes);
Lang Hames233a60e2009-11-03 23:52:08 +00001750 nI.removeRange(index.getLoadIndex(), index.getDefIndex());
Evan Chengf38d14f2007-12-05 09:05:34 +00001751 }
Lang Hames233a60e2009-11-03 23:52:08 +00001752 nI.removeRange(index.getDefIndex(), index.getStoreIndex());
Evan Chengcddbb832007-11-30 21:23:43 +00001753 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001754 }
1755
Evan Cheng7e073ba2008-04-09 20:57:25 +00001756 // Otherwise tell the spiller to issue a spill.
Evan Chengb50bb8c2007-12-05 08:16:32 +00001757 if (!Folded) {
1758 LiveRange *LR = &nI.ranges[nI.ranges.size()-1];
Lang Hames233a60e2009-11-03 23:52:08 +00001759 bool isKill = LR->end == index.getStoreIndex();
Evan Chengb0a6f622008-05-20 08:10:37 +00001760 if (!MI->registerDefIsDead(nI.reg))
1761 // No need to spill a dead def.
1762 vrm.addSpillPoint(VReg, isKill, MI);
Evan Chengb50bb8c2007-12-05 08:16:32 +00001763 if (isKill)
1764 AddedKill.insert(&nI);
1765 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001766 }
Evan Cheng1953d0c2007-11-29 10:12:14 +00001767 Id = SpillMBBs.find_next(Id);
Evan Cheng0cbb1162007-11-29 01:06:25 +00001768 }
Evan Cheng1953d0c2007-11-29 10:12:14 +00001769 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001770
Evan Cheng1953d0c2007-11-29 10:12:14 +00001771 int Id = RestoreMBBs.find_first();
1772 while (Id != -1) {
1773 std::vector<SRInfo> &restores = RestoreIdxes[Id];
1774 for (unsigned i = 0, e = restores.size(); i != e; ++i) {
Lang Hames233a60e2009-11-03 23:52:08 +00001775 SlotIndex index = restores[i].index;
1776 if (index == SlotIndex())
Evan Cheng1953d0c2007-11-29 10:12:14 +00001777 continue;
1778 unsigned VReg = restores[i].vreg;
Evan Cheng597d10d2007-12-04 00:32:23 +00001779 LiveInterval &nI = getOrCreateInterval(VReg);
Evan Cheng9c3c2212008-06-06 07:54:39 +00001780 bool isReMat = vrm.isReMaterialized(VReg);
Evan Cheng81a03822007-11-17 00:40:40 +00001781 MachineInstr *MI = getInstructionFromIndex(index);
Evan Chengaee4af62007-12-02 08:30:39 +00001782 bool CanFold = false;
1783 Ops.clear();
Evan Chengcddbb832007-11-30 21:23:43 +00001784 if (restores[i].canFold) {
Evan Chengaee4af62007-12-02 08:30:39 +00001785 CanFold = true;
Evan Cheng81a03822007-11-17 00:40:40 +00001786 for (unsigned j = 0, ee = MI->getNumOperands(); j != ee; ++j) {
1787 MachineOperand &MO = MI->getOperand(j);
Dan Gohmand735b802008-10-03 15:45:36 +00001788 if (!MO.isReg() || MO.getReg() != VReg)
Evan Cheng81a03822007-11-17 00:40:40 +00001789 continue;
Evan Chengaee4af62007-12-02 08:30:39 +00001790
Evan Cheng0cbb1162007-11-29 01:06:25 +00001791 if (MO.isDef()) {
Evan Chengaee4af62007-12-02 08:30:39 +00001792 // If this restore were to be folded, it would have been folded
1793 // already.
1794 CanFold = false;
Evan Cheng81a03822007-11-17 00:40:40 +00001795 break;
1796 }
Evan Chengaee4af62007-12-02 08:30:39 +00001797 Ops.push_back(j);
Evan Cheng81a03822007-11-17 00:40:40 +00001798 }
1799 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001800
1801 // Fold the load into the use if possible.
Evan Chengcddbb832007-11-30 21:23:43 +00001802 bool Folded = false;
Evan Chengaee4af62007-12-02 08:30:39 +00001803 if (CanFold && !Ops.empty()) {
Evan Cheng9c3c2212008-06-06 07:54:39 +00001804 if (!isReMat)
Evan Chengaee4af62007-12-02 08:30:39 +00001805 Folded = tryFoldMemoryOperand(MI, vrm, NULL,index,Ops,true,Slot,VReg);
1806 else {
Evan Cheng0cbb1162007-11-29 01:06:25 +00001807 MachineInstr *ReMatDefMI = vrm.getReMaterializedMI(VReg);
1808 int LdSlot = 0;
1809 bool isLoadSS = tii_->isLoadFromStackSlot(ReMatDefMI, LdSlot);
1810 // If the rematerializable def is a load, also try to fold it.
Dan Gohman15511cf2008-12-03 18:15:48 +00001811 if (isLoadSS || ReMatDefMI->getDesc().canFoldAsLoad())
Evan Chengaee4af62007-12-02 08:30:39 +00001812 Folded = tryFoldMemoryOperand(MI, vrm, ReMatDefMI, index,
1813 Ops, isLoadSS, LdSlot, VReg);
Evan Cheng650d7f32008-12-05 17:41:31 +00001814 if (!Folded) {
1815 unsigned ImpUse = getReMatImplicitUse(li, ReMatDefMI);
1816 if (ImpUse) {
1817 // Re-matting an instruction with virtual register use. Add the
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001818 // register as an implicit use on the use MI and mark the register
1819 // interval as unspillable.
Evan Cheng650d7f32008-12-05 17:41:31 +00001820 LiveInterval &ImpLi = getInterval(ImpUse);
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +00001821 ImpLi.markNotSpillable();
Evan Cheng650d7f32008-12-05 17:41:31 +00001822 MI->addOperand(MachineOperand::CreateReg(ImpUse, false, true));
1823 }
Evan Chengd70dbb52008-02-22 09:24:50 +00001824 }
Evan Chengaee4af62007-12-02 08:30:39 +00001825 }
Evan Cheng0cbb1162007-11-29 01:06:25 +00001826 }
1827 // If folding is not possible / failed, then tell the spiller to issue a
1828 // load / rematerialization for us.
Evan Cheng597d10d2007-12-04 00:32:23 +00001829 if (Folded)
Lang Hames233a60e2009-11-03 23:52:08 +00001830 nI.removeRange(index.getLoadIndex(), index.getDefIndex());
Evan Chengb50bb8c2007-12-05 08:16:32 +00001831 else
Evan Cheng0cbb1162007-11-29 01:06:25 +00001832 vrm.addRestorePoint(VReg, MI);
Evan Cheng81a03822007-11-17 00:40:40 +00001833 }
Evan Cheng1953d0c2007-11-29 10:12:14 +00001834 Id = RestoreMBBs.find_next(Id);
Evan Cheng81a03822007-11-17 00:40:40 +00001835 }
1836
Evan Chengb50bb8c2007-12-05 08:16:32 +00001837 // Finalize intervals: add kills, finalize spill weights, and filter out
1838 // dead intervals.
Evan Cheng597d10d2007-12-04 00:32:23 +00001839 std::vector<LiveInterval*> RetNewLIs;
1840 for (unsigned i = 0, e = NewLIs.size(); i != e; ++i) {
1841 LiveInterval *LI = NewLIs[i];
1842 if (!LI->empty()) {
Evan Chengb50bb8c2007-12-05 08:16:32 +00001843 if (!AddedKill.count(LI)) {
1844 LiveRange *LR = &LI->ranges[LI->ranges.size()-1];
Lang Hames233a60e2009-11-03 23:52:08 +00001845 SlotIndex LastUseIdx = LR->end.getBaseIndex();
Evan Chengd120ffd2007-12-05 10:24:35 +00001846 MachineInstr *LastUse = getInstructionFromIndex(LastUseIdx);
Evan Cheng6130f662008-03-05 00:59:57 +00001847 int UseIdx = LastUse->findRegisterUseOperandIdx(LI->reg, false);
Evan Chengb50bb8c2007-12-05 08:16:32 +00001848 assert(UseIdx != -1);
Evan Chenga24752f2009-03-19 20:30:06 +00001849 if (!LastUse->isRegTiedToDefOperand(UseIdx)) {
Evan Chengb50bb8c2007-12-05 08:16:32 +00001850 LastUse->getOperand(UseIdx).setIsKill();
Evan Chengd120ffd2007-12-05 10:24:35 +00001851 vrm.addKillPoint(LI->reg, LastUseIdx);
Evan Chengadf85902007-12-05 09:51:10 +00001852 }
Evan Chengb50bb8c2007-12-05 08:16:32 +00001853 }
Evan Cheng597d10d2007-12-04 00:32:23 +00001854 RetNewLIs.push_back(LI);
1855 }
1856 }
Evan Cheng81a03822007-11-17 00:40:40 +00001857
Evan Cheng4cce6b42008-04-11 17:53:36 +00001858 handleSpilledImpDefs(li, vrm, rc, RetNewLIs);
Jakob Stoklund Olesen352d3522010-02-18 21:33:05 +00001859 normalizeSpillWeights(RetNewLIs);
Evan Cheng597d10d2007-12-04 00:32:23 +00001860 return RetNewLIs;
Evan Chengf2fbca62007-11-12 06:35:08 +00001861}
Evan Cheng676dd7c2008-03-11 07:19:34 +00001862
1863/// hasAllocatableSuperReg - Return true if the specified physical register has
1864/// any super register that's allocatable.
1865bool LiveIntervals::hasAllocatableSuperReg(unsigned Reg) const {
1866 for (const unsigned* AS = tri_->getSuperRegisters(Reg); *AS; ++AS)
1867 if (allocatableRegs_[*AS] && hasInterval(*AS))
1868 return true;
1869 return false;
1870}
1871
1872/// getRepresentativeReg - Find the largest super register of the specified
1873/// physical register.
1874unsigned LiveIntervals::getRepresentativeReg(unsigned Reg) const {
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001875 // Find the largest super-register that is allocatable.
Evan Cheng676dd7c2008-03-11 07:19:34 +00001876 unsigned BestReg = Reg;
1877 for (const unsigned* AS = tri_->getSuperRegisters(Reg); *AS; ++AS) {
1878 unsigned SuperReg = *AS;
1879 if (!hasAllocatableSuperReg(SuperReg) && hasInterval(SuperReg)) {
1880 BestReg = SuperReg;
1881 break;
1882 }
1883 }
1884 return BestReg;
1885}
1886
1887/// getNumConflictsWithPhysReg - Return the number of uses and defs of the
1888/// specified interval that conflicts with the specified physical register.
1889unsigned LiveIntervals::getNumConflictsWithPhysReg(const LiveInterval &li,
1890 unsigned PhysReg) const {
1891 unsigned NumConflicts = 0;
1892 const LiveInterval &pli = getInterval(getRepresentativeReg(PhysReg));
1893 for (MachineRegisterInfo::reg_iterator I = mri_->reg_begin(li.reg),
1894 E = mri_->reg_end(); I != E; ++I) {
1895 MachineOperand &O = I.getOperand();
1896 MachineInstr *MI = O.getParent();
Evan Cheng28a1e482010-03-30 05:49:07 +00001897 if (MI->isDebugValue())
1898 continue;
Lang Hames233a60e2009-11-03 23:52:08 +00001899 SlotIndex Index = getInstructionIndex(MI);
Evan Cheng676dd7c2008-03-11 07:19:34 +00001900 if (pli.liveAt(Index))
1901 ++NumConflicts;
1902 }
1903 return NumConflicts;
1904}
1905
1906/// spillPhysRegAroundRegDefsUses - Spill the specified physical register
Evan Cheng2824a652009-03-23 18:24:37 +00001907/// around all defs and uses of the specified interval. Return true if it
1908/// was able to cut its interval.
1909bool LiveIntervals::spillPhysRegAroundRegDefsUses(const LiveInterval &li,
Evan Cheng676dd7c2008-03-11 07:19:34 +00001910 unsigned PhysReg, VirtRegMap &vrm) {
1911 unsigned SpillReg = getRepresentativeReg(PhysReg);
1912
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001913 DEBUG(dbgs() << "spillPhysRegAroundRegDefsUses " << tri_->getName(PhysReg)
1914 << " represented by " << tri_->getName(SpillReg) << '\n');
1915
Evan Cheng676dd7c2008-03-11 07:19:34 +00001916 for (const unsigned *AS = tri_->getAliasSet(PhysReg); *AS; ++AS)
1917 // If there are registers which alias PhysReg, but which are not a
1918 // sub-register of the chosen representative super register. Assert
1919 // since we can't handle it yet.
Dan Gohman70f2f652009-04-13 15:22:29 +00001920 assert(*AS == SpillReg || !allocatableRegs_[*AS] || !hasInterval(*AS) ||
Evan Cheng676dd7c2008-03-11 07:19:34 +00001921 tri_->isSuperRegister(*AS, SpillReg));
1922
Evan Cheng2824a652009-03-23 18:24:37 +00001923 bool Cut = false;
Evan Cheng0222a8c2009-10-20 01:31:09 +00001924 SmallVector<unsigned, 4> PRegs;
1925 if (hasInterval(SpillReg))
1926 PRegs.push_back(SpillReg);
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001927 for (const unsigned *SR = tri_->getSubRegisters(SpillReg); *SR; ++SR)
1928 if (hasInterval(*SR))
1929 PRegs.push_back(*SR);
1930
1931 DEBUG({
1932 dbgs() << "Trying to spill:";
1933 for (unsigned i = 0, e = PRegs.size(); i != e; ++i)
1934 dbgs() << ' ' << tri_->getName(PRegs[i]);
1935 dbgs() << '\n';
1936 });
Evan Cheng0222a8c2009-10-20 01:31:09 +00001937
Evan Cheng676dd7c2008-03-11 07:19:34 +00001938 SmallPtrSet<MachineInstr*, 8> SeenMIs;
1939 for (MachineRegisterInfo::reg_iterator I = mri_->reg_begin(li.reg),
1940 E = mri_->reg_end(); I != E; ++I) {
1941 MachineOperand &O = I.getOperand();
1942 MachineInstr *MI = O.getParent();
Evan Cheng28a1e482010-03-30 05:49:07 +00001943 if (MI->isDebugValue() || SeenMIs.count(MI))
Evan Cheng676dd7c2008-03-11 07:19:34 +00001944 continue;
1945 SeenMIs.insert(MI);
Lang Hames233a60e2009-11-03 23:52:08 +00001946 SlotIndex Index = getInstructionIndex(MI);
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001947 bool LiveReg = false;
Evan Cheng0222a8c2009-10-20 01:31:09 +00001948 for (unsigned i = 0, e = PRegs.size(); i != e; ++i) {
1949 unsigned PReg = PRegs[i];
1950 LiveInterval &pli = getInterval(PReg);
1951 if (!pli.liveAt(Index))
1952 continue;
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001953 LiveReg = true;
Lang Hames233a60e2009-11-03 23:52:08 +00001954 SlotIndex StartIdx = Index.getLoadIndex();
1955 SlotIndex EndIdx = Index.getNextIndex().getBaseIndex();
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001956 if (!pli.isInOneLiveRange(StartIdx, EndIdx)) {
Torok Edwin7d696d82009-07-11 13:10:19 +00001957 std::string msg;
1958 raw_string_ostream Msg(msg);
1959 Msg << "Ran out of registers during register allocation!";
Chris Lattner518bb532010-02-09 19:54:29 +00001960 if (MI->isInlineAsm()) {
Torok Edwin7d696d82009-07-11 13:10:19 +00001961 Msg << "\nPlease check your inline asm statement for invalid "
Evan Cheng0222a8c2009-10-20 01:31:09 +00001962 << "constraints:\n";
Torok Edwin7d696d82009-07-11 13:10:19 +00001963 MI->print(Msg, tm_);
Evan Cheng5a3c6a82009-01-29 02:20:59 +00001964 }
Chris Lattner75361b62010-04-07 22:58:41 +00001965 report_fatal_error(Msg.str());
Evan Cheng5a3c6a82009-01-29 02:20:59 +00001966 }
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001967 pli.removeRange(StartIdx, EndIdx);
1968 LiveReg = true;
Evan Cheng676dd7c2008-03-11 07:19:34 +00001969 }
Jakob Stoklund Olesenf4840c02010-11-16 19:55:14 +00001970 if (!LiveReg)
1971 continue;
1972 DEBUG(dbgs() << "Emergency spill around " << Index << '\t' << *MI);
1973 vrm.addEmergencySpill(SpillReg, MI);
1974 Cut = true;
Evan Cheng676dd7c2008-03-11 07:19:34 +00001975 }
Evan Cheng2824a652009-03-23 18:24:37 +00001976 return Cut;
Evan Cheng676dd7c2008-03-11 07:19:34 +00001977}
Owen Andersonc4dc1322008-06-05 17:15:43 +00001978
1979LiveRange LiveIntervals::addLiveRangeToEndOfBlock(unsigned reg,
Lang Hamesffd13262009-07-09 03:57:02 +00001980 MachineInstr* startInst) {
Owen Andersonc4dc1322008-06-05 17:15:43 +00001981 LiveInterval& Interval = getOrCreateInterval(reg);
1982 VNInfo* VN = Interval.getNextValue(
Lang Hames233a60e2009-11-03 23:52:08 +00001983 SlotIndex(getInstructionIndex(startInst).getDefIndex()),
Lang Hames6e2968c2010-09-25 12:04:16 +00001984 startInst, getVNInfoAllocator());
Lang Hames857c4e02009-06-17 21:01:20 +00001985 VN->setHasPHIKill(true);
Lang Hames86511252009-09-04 20:41:11 +00001986 LiveRange LR(
Lang Hames233a60e2009-11-03 23:52:08 +00001987 SlotIndex(getInstructionIndex(startInst).getDefIndex()),
Lang Hames74ab5ee2009-12-22 00:11:50 +00001988 getMBBEndIdx(startInst->getParent()), VN);
Owen Andersonc4dc1322008-06-05 17:15:43 +00001989 Interval.addRange(LR);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +00001990
Owen Andersonc4dc1322008-06-05 17:15:43 +00001991 return LR;
1992}
David Greeneb5257662009-08-03 21:55:09 +00001993