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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
Jakob Stoklund Olesen4281e202012-01-07 07:39:47 +000018#define DEBUG_TYPE "regalloc"
Chris Lattner3c3fe462005-09-21 04:19:09 +000019#include "llvm/CodeGen/LiveIntervalAnalysis.h"
Chris Lattner015959e2004-05-01 21:24:39 +000020#include "llvm/Value.h"
Dan Gohman6d69ba82008-07-25 00:02:30 +000021#include "llvm/Analysis/AliasAnalysis.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000022#include "llvm/CodeGen/LiveVariables.h"
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +000023#include "llvm/CodeGen/MachineDominators.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000024#include "llvm/CodeGen/MachineInstr.h"
Chris Lattner84bc5422007-12-31 04:13:23 +000025#include "llvm/CodeGen/MachineRegisterInfo.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000026#include "llvm/CodeGen/Passes.h"
Dan Gohman6f0d0242008-02-10 18:45:23 +000027#include "llvm/Target/TargetRegisterInfo.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000028#include "llvm/Target/TargetInstrInfo.h"
29#include "llvm/Target/TargetMachine.h"
Jakob Stoklund Olesen3dfa38a2012-07-27 20:58:46 +000030#include "llvm/Support/CommandLine.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000031#include "llvm/Support/Debug.h"
Torok Edwin7d696d82009-07-11 13:10:19 +000032#include "llvm/Support/ErrorHandling.h"
33#include "llvm/Support/raw_ostream.h"
Andrew Trickd35576b2012-02-13 20:44:42 +000034#include "llvm/ADT/DenseSet.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000035#include "llvm/ADT/STLExtras.h"
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +000036#include "LiveRangeCalc.h"
Jakob Stoklund Olesene617ccb2012-09-06 18:15:18 +000037#include "VirtRegMap.h"
Alkis Evlogimenos20aa4742004-09-03 18:19:51 +000038#include <algorithm>
Lang Hamesf41538d2009-06-02 16:53:25 +000039#include <limits>
Jeff Cohen97af7512006-12-02 02:22:01 +000040#include <cmath>
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000041using namespace llvm;
42
Jakob Stoklund Olesen3dfa38a2012-07-27 20:58:46 +000043// Switch to the new experimental algorithm for computing live intervals.
44static cl::opt<bool>
45NewLiveIntervals("new-live-intervals", cl::Hidden,
46 cl::desc("Use new algorithm forcomputing live intervals"));
47
Devang Patel19974732007-05-03 01:11:54 +000048char LiveIntervals::ID = 0;
Jakob Stoklund Olesendcc44362012-08-03 22:12:54 +000049char &llvm::LiveIntervalsID = LiveIntervals::ID;
Owen Anderson2ab36d32010-10-12 19:48:12 +000050INITIALIZE_PASS_BEGIN(LiveIntervals, "liveintervals",
51 "Live Interval Analysis", false, false)
Andrew Trick8dd26252012-02-10 04:10:36 +000052INITIALIZE_AG_DEPENDENCY(AliasAnalysis)
Owen Anderson2ab36d32010-10-12 19:48:12 +000053INITIALIZE_PASS_DEPENDENCY(LiveVariables)
Andrew Trick8dd26252012-02-10 04:10:36 +000054INITIALIZE_PASS_DEPENDENCY(MachineDominatorTree)
Owen Anderson2ab36d32010-10-12 19:48:12 +000055INITIALIZE_PASS_DEPENDENCY(SlotIndexes)
Owen Anderson2ab36d32010-10-12 19:48:12 +000056INITIALIZE_PASS_END(LiveIntervals, "liveintervals",
Owen Andersonce665bd2010-10-07 22:25:06 +000057 "Live Interval Analysis", false, false)
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000058
Chris Lattnerf7da2c72006-08-24 22:43:55 +000059void LiveIntervals::getAnalysisUsage(AnalysisUsage &AU) const {
Dan Gohman845012e2009-07-31 23:37:33 +000060 AU.setPreservesCFG();
Dan Gohman6d69ba82008-07-25 00:02:30 +000061 AU.addRequired<AliasAnalysis>();
62 AU.addPreserved<AliasAnalysis>();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000063 AU.addRequired<LiveVariables>();
Evan Cheng148341c2010-08-17 21:00:37 +000064 AU.addPreserved<LiveVariables>();
Andrew Trickd35576b2012-02-13 20:44:42 +000065 AU.addPreservedID(MachineLoopInfoID);
Jakob Stoklund Olesenc4118452012-06-20 23:31:34 +000066 AU.addRequiredTransitiveID(MachineDominatorsID);
Bill Wendling67d65bb2008-01-04 20:54:55 +000067 AU.addPreservedID(MachineDominatorsID);
Lang Hames233a60e2009-11-03 23:52:08 +000068 AU.addPreserved<SlotIndexes>();
69 AU.addRequiredTransitive<SlotIndexes>();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000070 MachineFunctionPass::getAnalysisUsage(AU);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000071}
72
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +000073LiveIntervals::LiveIntervals() : MachineFunctionPass(ID),
74 DomTree(0), LRCalc(0) {
75 initializeLiveIntervalsPass(*PassRegistry::getPassRegistry());
76}
77
78LiveIntervals::~LiveIntervals() {
79 delete LRCalc;
80}
81
Chris Lattnerf7da2c72006-08-24 22:43:55 +000082void LiveIntervals::releaseMemory() {
Owen Anderson03857b22008-08-13 21:49:13 +000083 // Free the live intervals themselves.
Jakob Stoklund Olesen7fa67842012-06-22 20:37:52 +000084 for (unsigned i = 0, e = VirtRegIntervals.size(); i != e; ++i)
85 delete VirtRegIntervals[TargetRegisterInfo::index2VirtReg(i)];
86 VirtRegIntervals.clear();
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +000087 RegMaskSlots.clear();
88 RegMaskBits.clear();
Jakob Stoklund Olesen34e85d02012-02-10 01:26:29 +000089 RegMaskBlocks.clear();
Lang Hamesffd13262009-07-09 03:57:02 +000090
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +000091 for (unsigned i = 0, e = RegUnitIntervals.size(); i != e; ++i)
92 delete RegUnitIntervals[i];
93 RegUnitIntervals.clear();
94
Benjamin Kramerce9a20b2010-06-26 11:30:59 +000095 // Release VNInfo memory regions, VNInfo objects don't need to be dtor'd.
96 VNInfoAllocator.Reset();
Alkis Evlogimenos08cec002004-01-31 19:59:32 +000097}
98
Owen Anderson80b3ce62008-05-28 20:54:50 +000099/// runOnMachineFunction - Register allocate the whole function
100///
101bool LiveIntervals::runOnMachineFunction(MachineFunction &fn) {
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000102 MF = &fn;
103 MRI = &MF->getRegInfo();
104 TM = &fn.getTarget();
105 TRI = TM->getRegisterInfo();
106 TII = TM->getInstrInfo();
107 AA = &getAnalysis<AliasAnalysis>();
108 LV = &getAnalysis<LiveVariables>();
109 Indexes = &getAnalysis<SlotIndexes>();
Jakob Stoklund Olesenc4118452012-06-20 23:31:34 +0000110 DomTree = &getAnalysis<MachineDominatorTree>();
111 if (!LRCalc)
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +0000112 LRCalc = new LiveRangeCalc();
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000113 AllocatableRegs = TRI->getAllocatableSet(fn);
114 ReservedRegs = TRI->getReservedRegs(fn);
Owen Anderson80b3ce62008-05-28 20:54:50 +0000115
Jakob Stoklund Olesen3dfa38a2012-07-27 20:58:46 +0000116 // Allocate space for all virtual registers.
117 VirtRegIntervals.resize(MRI->getNumVirtRegs());
118
119 if (NewLiveIntervals) {
120 // This is the new way of computing live intervals.
121 // It is independent of LiveVariables, and it can run at any time.
Jakob Stoklund Olesenc16bf792012-07-27 21:56:39 +0000122 computeVirtRegs();
123 computeRegMasks();
Jakob Stoklund Olesen3dfa38a2012-07-27 20:58:46 +0000124 } else {
125 // This is the old way of computing live intervals.
126 // It depends on LiveVariables.
127 computeIntervals();
128 }
Jakob Stoklund Olesenc4118452012-06-20 23:31:34 +0000129 computeLiveInRegUnits();
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +0000130
Chris Lattner70ca3582004-09-30 15:59:17 +0000131 DEBUG(dump());
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000132 return true;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000133}
134
Chris Lattner70ca3582004-09-30 15:59:17 +0000135/// print - Implement the dump method.
Chris Lattner45cfe542009-08-23 06:03:38 +0000136void LiveIntervals::print(raw_ostream &OS, const Module* ) const {
Chris Lattner705e07f2009-08-23 03:41:05 +0000137 OS << "********** INTERVALS **********\n";
Jakob Stoklund Olesenf658af52012-02-14 23:46:21 +0000138
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +0000139 // Dump the regunits.
140 for (unsigned i = 0, e = RegUnitIntervals.size(); i != e; ++i)
141 if (LiveInterval *LI = RegUnitIntervals[i])
142 OS << PrintRegUnit(i, TRI) << " = " << *LI << '\n';
143
Jakob Stoklund Olesenf658af52012-02-14 23:46:21 +0000144 // Dump the virtregs.
Jakob Stoklund Olesen7fa67842012-06-22 20:37:52 +0000145 for (unsigned i = 0, e = MRI->getNumVirtRegs(); i != e; ++i) {
146 unsigned Reg = TargetRegisterInfo::index2VirtReg(i);
147 if (hasInterval(Reg))
148 OS << PrintReg(Reg) << " = " << getInterval(Reg) << '\n';
149 }
Chris Lattner70ca3582004-09-30 15:59:17 +0000150
Evan Cheng752195e2009-09-14 21:33:42 +0000151 printInstrs(OS);
152}
153
154void LiveIntervals::printInstrs(raw_ostream &OS) const {
Chris Lattner705e07f2009-08-23 03:41:05 +0000155 OS << "********** MACHINEINSTRS **********\n";
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000156 MF->print(OS, Indexes);
Chris Lattner70ca3582004-09-30 15:59:17 +0000157}
158
Manman Renb720be62012-09-11 22:23:19 +0000159#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Evan Cheng752195e2009-09-14 21:33:42 +0000160void LiveIntervals::dumpInstrs() const {
David Greene8a342292010-01-04 22:49:02 +0000161 printInstrs(dbgs());
Evan Cheng752195e2009-09-14 21:33:42 +0000162}
Manman Ren77e300e2012-09-06 19:06:06 +0000163#endif
Evan Cheng752195e2009-09-14 21:33:42 +0000164
Evan Chengafff40a2010-05-04 20:26:52 +0000165static
Evan Cheng37499432010-05-05 18:27:40 +0000166bool MultipleDefsBySameMI(const MachineInstr &MI, unsigned MOIdx) {
Evan Chengafff40a2010-05-04 20:26:52 +0000167 unsigned Reg = MI.getOperand(MOIdx).getReg();
168 for (unsigned i = MOIdx+1, e = MI.getNumOperands(); i < e; ++i) {
169 const MachineOperand &MO = MI.getOperand(i);
170 if (!MO.isReg())
171 continue;
172 if (MO.getReg() == Reg && MO.isDef()) {
173 assert(MI.getOperand(MOIdx).getSubReg() != MO.getSubReg() &&
174 MI.getOperand(MOIdx).getSubReg() &&
Jakob Stoklund Olesened2185e2010-07-06 23:26:25 +0000175 (MO.getSubReg() || MO.isImplicit()));
Evan Chengafff40a2010-05-04 20:26:52 +0000176 return true;
177 }
178 }
179 return false;
180}
181
Evan Cheng37499432010-05-05 18:27:40 +0000182/// isPartialRedef - Return true if the specified def at the specific index is
183/// partially re-defining the specified live interval. A common case of this is
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000184/// a definition of the sub-register.
Evan Cheng37499432010-05-05 18:27:40 +0000185bool LiveIntervals::isPartialRedef(SlotIndex MIIdx, MachineOperand &MO,
186 LiveInterval &interval) {
187 if (!MO.getSubReg() || MO.isEarlyClobber())
188 return false;
189
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000190 SlotIndex RedefIndex = MIIdx.getRegSlot();
Evan Cheng37499432010-05-05 18:27:40 +0000191 const LiveRange *OldLR =
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000192 interval.getLiveRangeContaining(RedefIndex.getRegSlot(true));
Lang Hames6e2968c2010-09-25 12:04:16 +0000193 MachineInstr *DefMI = getInstructionFromIndex(OldLR->valno->def);
194 if (DefMI != 0) {
Evan Cheng37499432010-05-05 18:27:40 +0000195 return DefMI->findRegisterDefOperandIdx(interval.reg) != -1;
196 }
197 return false;
198}
199
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000200void LiveIntervals::handleVirtualRegisterDef(MachineBasicBlock *mbb,
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000201 MachineBasicBlock::iterator mi,
Lang Hames233a60e2009-11-03 23:52:08 +0000202 SlotIndex MIIdx,
Lang Hames86511252009-09-04 20:41:11 +0000203 MachineOperand& MO,
Evan Chengef0732d2008-07-10 07:35:43 +0000204 unsigned MOIdx,
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000205 LiveInterval &interval) {
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000206 DEBUG(dbgs() << "\t\tregister: " << PrintReg(interval.reg, TRI));
Evan Cheng419852c2008-04-03 16:39:43 +0000207
Alkis Evlogimenos70651572004-08-04 09:46:56 +0000208 // Virtual registers may be defined multiple times (due to phi
209 // elimination and 2-addr elimination). Much of what we do only has to be
210 // done once for the vreg. We use an empty interval to detect the first
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000211 // time we see a vreg.
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000212 LiveVariables::VarInfo& vi = LV->getVarInfo(interval.reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000213 if (interval.empty()) {
214 // Get the Idx of the defining instructions.
Jakob Stoklund Olesend14614e2011-11-13 22:05:42 +0000215 SlotIndex defIndex = MIIdx.getRegSlot(MO.isEarlyClobber());
Jakob Stoklund Olesen63e6a482010-05-21 16:32:16 +0000216
Jakob Stoklund Olesen92b7df02012-03-04 19:19:10 +0000217 // Make sure the first definition is not a partial redefinition.
218 assert(!MO.readsReg() && "First def cannot also read virtual register "
219 "missing <undef> flag?");
Jakob Stoklund Olesen63e6a482010-05-21 16:32:16 +0000220
Jakob Stoklund Olesen3b1088a2012-02-04 05:20:49 +0000221 VNInfo *ValNo = interval.getNextValue(defIndex, VNInfoAllocator);
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000222 assert(ValNo->id == 0 && "First value in interval is not 0?");
Chris Lattner7ac2d312004-07-24 02:59:07 +0000223
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000224 // Loop over all of the blocks that the vreg is defined in. There are
225 // two cases we have to handle here. The most common case is a vreg
226 // whose lifetime is contained within a basic block. In this case there
227 // will be a single kill, in MBB, which comes after the definition.
228 if (vi.Kills.size() == 1 && vi.Kills[0]->getParent() == mbb) {
229 // FIXME: what about dead vars?
Lang Hames233a60e2009-11-03 23:52:08 +0000230 SlotIndex killIdx;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000231 if (vi.Kills[0] != mi)
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000232 killIdx = getInstructionIndex(vi.Kills[0]).getRegSlot();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000233 else
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000234 killIdx = defIndex.getDeadSlot();
Chris Lattner6097d132004-07-19 02:15:56 +0000235
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000236 // If the kill happens after the definition, we have an intra-block
237 // live range.
238 if (killIdx > defIndex) {
Jeffrey Yasskin493a3d02009-05-26 18:27:15 +0000239 assert(vi.AliveBlocks.empty() &&
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000240 "Shouldn't be alive across any blocks!");
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000241 LiveRange LR(defIndex, killIdx, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000242 interval.addRange(LR);
David Greene8a342292010-01-04 22:49:02 +0000243 DEBUG(dbgs() << " +" << LR << "\n");
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000244 return;
245 }
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000246 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000247
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000248 // The other case we handle is when a virtual register lives to the end
249 // of the defining block, potentially live across some blocks, then is
250 // live into some number of blocks, but gets killed. Start by adding a
251 // range that goes from this definition to the end of the defining block.
Lang Hames74ab5ee2009-12-22 00:11:50 +0000252 LiveRange NewLR(defIndex, getMBBEndIdx(mbb), ValNo);
David Greene8a342292010-01-04 22:49:02 +0000253 DEBUG(dbgs() << " +" << NewLR);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000254 interval.addRange(NewLR);
255
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000256 bool PHIJoin = LV->isPHIJoin(interval.reg);
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000257
258 if (PHIJoin) {
Jakob Stoklund Olesenfa8becb2012-06-19 22:50:53 +0000259 // A phi join register is killed at the end of the MBB and revived as a
260 // new valno in the killing blocks.
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000261 assert(vi.AliveBlocks.empty() && "Phi join can't pass through blocks");
262 DEBUG(dbgs() << " phi-join");
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000263 } else {
264 // Iterate over all of the blocks that the variable is completely
265 // live in, adding [insrtIndex(begin), instrIndex(end)+4) to the
266 // live interval.
267 for (SparseBitVector<>::iterator I = vi.AliveBlocks.begin(),
268 E = vi.AliveBlocks.end(); I != E; ++I) {
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000269 MachineBasicBlock *aliveBlock = MF->getBlockNumbered(*I);
Jakob Stoklund Olesenfa8becb2012-06-19 22:50:53 +0000270 LiveRange LR(getMBBStartIdx(aliveBlock), getMBBEndIdx(aliveBlock),
271 ValNo);
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000272 interval.addRange(LR);
273 DEBUG(dbgs() << " +" << LR);
274 }
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000275 }
276
277 // Finally, this virtual register is live from the start of any killing
278 // block to the 'use' slot of the killing instruction.
279 for (unsigned i = 0, e = vi.Kills.size(); i != e; ++i) {
280 MachineInstr *Kill = vi.Kills[i];
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000281 SlotIndex Start = getMBBStartIdx(Kill->getParent());
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000282 SlotIndex killIdx = getInstructionIndex(Kill).getRegSlot();
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000283
284 // Create interval with one of a NEW value number. Note that this value
285 // number isn't actually defined by an instruction, weird huh? :)
286 if (PHIJoin) {
Lang Hames6e2968c2010-09-25 12:04:16 +0000287 assert(getInstructionFromIndex(Start) == 0 &&
288 "PHI def index points at actual instruction.");
Jakob Stoklund Olesen3b1088a2012-02-04 05:20:49 +0000289 ValNo = interval.getNextValue(Start, VNInfoAllocator);
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000290 }
291 LiveRange LR(Start, killIdx, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000292 interval.addRange(LR);
David Greene8a342292010-01-04 22:49:02 +0000293 DEBUG(dbgs() << " +" << LR);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000294 }
295
296 } else {
Evan Cheng37499432010-05-05 18:27:40 +0000297 if (MultipleDefsBySameMI(*mi, MOIdx))
Nick Lewycky761fd4c2010-05-20 03:30:09 +0000298 // Multiple defs of the same virtual register by the same instruction.
299 // e.g. %reg1031:5<def>, %reg1031:6<def> = VLD1q16 %reg1024<kill>, ...
Evan Chengafff40a2010-05-04 20:26:52 +0000300 // This is likely due to elimination of REG_SEQUENCE instructions. Return
301 // here since there is nothing to do.
302 return;
303
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000304 // If this is the second time we see a virtual register definition, it
305 // must be due to phi elimination or two addr elimination. If this is
Evan Chengbf105c82006-11-03 03:04:46 +0000306 // the result of two address elimination, then the vreg is one of the
307 // def-and-use register operand.
Evan Cheng37499432010-05-05 18:27:40 +0000308
309 // It may also be partial redef like this:
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000310 // 80 %reg1041:6<def> = VSHRNv4i16 %reg1034<kill>, 12, pred:14, pred:%reg0
311 // 120 %reg1041:5<def> = VSHRNv4i16 %reg1039<kill>, 12, pred:14, pred:%reg0
Evan Cheng37499432010-05-05 18:27:40 +0000312 bool PartReDef = isPartialRedef(MIIdx, MO, interval);
313 if (PartReDef || mi->isRegTiedToUseOperand(MOIdx)) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000314 // If this is a two-address definition, then we have already processed
315 // the live range. The only problem is that we didn't realize there
316 // are actually two values in the live interval. Because of this we
317 // need to take the LiveRegion that defines this register and split it
318 // into two values.
Jakob Stoklund Olesend14614e2011-11-13 22:05:42 +0000319 SlotIndex RedefIndex = MIIdx.getRegSlot(MO.isEarlyClobber());
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000320
Lang Hames35f291d2009-09-12 03:34:03 +0000321 const LiveRange *OldLR =
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000322 interval.getLiveRangeContaining(RedefIndex.getRegSlot(true));
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000323 VNInfo *OldValNo = OldLR->valno;
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000324 SlotIndex DefIndex = OldValNo->def.getRegSlot();
Evan Cheng4f8ff162007-08-11 00:59:19 +0000325
Jakob Stoklund Olesenc66d0f22010-06-16 21:29:40 +0000326 // Delete the previous value, which should be short and continuous,
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000327 // because the 2-addr copy must be in the same MBB as the redef.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000328 interval.removeRange(DefIndex, RedefIndex);
Alkis Evlogimenos70651572004-08-04 09:46:56 +0000329
Chris Lattner91725b72006-08-31 05:54:43 +0000330 // The new value number (#1) is defined by the instruction we claimed
331 // defined value #0.
Lang Hames6e2968c2010-09-25 12:04:16 +0000332 VNInfo *ValNo = interval.createValueCopy(OldValNo, VNInfoAllocator);
Lang Hames857c4e02009-06-17 21:01:20 +0000333
Chris Lattner91725b72006-08-31 05:54:43 +0000334 // Value#0 is now defined by the 2-addr instruction.
Jakob Stoklund Olesen3b1088a2012-02-04 05:20:49 +0000335 OldValNo->def = RedefIndex;
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000336
Chris Lattnerbe4f88a2006-08-22 18:19:46 +0000337 // Add the new live interval which replaces the range for the input copy.
338 LiveRange LR(DefIndex, RedefIndex, ValNo);
David Greene8a342292010-01-04 22:49:02 +0000339 DEBUG(dbgs() << " replace range with " << LR);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000340 interval.addRange(LR);
341
342 // If this redefinition is dead, we need to add a dummy unit live
343 // range covering the def slot.
Owen Anderson6b098de2008-06-25 23:39:39 +0000344 if (MO.isDead())
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000345 interval.addRange(LiveRange(RedefIndex, RedefIndex.getDeadSlot(),
Lang Hames233a60e2009-11-03 23:52:08 +0000346 OldValNo));
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000347
Jakob Stoklund Olesenb77ec7d2012-06-05 22:51:54 +0000348 DEBUG(dbgs() << " RESULT: " << interval);
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000349 } else if (LV->isPHIJoin(interval.reg)) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000350 // In the case of PHI elimination, each variable definition is only
351 // live until the end of the block. We've already taken care of the
352 // rest of the live range.
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000353
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000354 SlotIndex defIndex = MIIdx.getRegSlot();
Evan Chengfb112882009-03-23 08:01:15 +0000355 if (MO.isEarlyClobber())
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000356 defIndex = MIIdx.getRegSlot(true);
Evan Cheng752195e2009-09-14 21:33:42 +0000357
Jakob Stoklund Olesen3b1088a2012-02-04 05:20:49 +0000358 VNInfo *ValNo = interval.getNextValue(defIndex, VNInfoAllocator);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000359
Lang Hames74ab5ee2009-12-22 00:11:50 +0000360 SlotIndex killIndex = getMBBEndIdx(mbb);
Evan Cheng7ecb38b2007-08-29 20:45:00 +0000361 LiveRange LR(defIndex, killIndex, ValNo);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000362 interval.addRange(LR);
Jakob Stoklund Olesendcfe5f32010-02-23 22:43:58 +0000363 DEBUG(dbgs() << " phi-join +" << LR);
Evan Cheng37499432010-05-05 18:27:40 +0000364 } else {
365 llvm_unreachable("Multiply defined register");
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000366 }
367 }
368
David Greene8a342292010-01-04 22:49:02 +0000369 DEBUG(dbgs() << '\n');
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000370}
371
Chris Lattnerf35fef72004-07-23 21:24:19 +0000372void LiveIntervals::handleRegisterDef(MachineBasicBlock *MBB,
373 MachineBasicBlock::iterator MI,
Lang Hames233a60e2009-11-03 23:52:08 +0000374 SlotIndex MIIdx,
Evan Chengef0732d2008-07-10 07:35:43 +0000375 MachineOperand& MO,
376 unsigned MOIdx) {
Owen Anderson6b098de2008-06-25 23:39:39 +0000377 if (TargetRegisterInfo::isVirtualRegister(MO.getReg()))
Evan Chengef0732d2008-07-10 07:35:43 +0000378 handleVirtualRegisterDef(MBB, MI, MIIdx, MO, MOIdx,
Owen Anderson6b098de2008-06-25 23:39:39 +0000379 getOrCreateInterval(MO.getReg()));
Evan Chengb371f452007-02-19 21:49:54 +0000380}
381
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000382/// computeIntervals - computes the live intervals for virtual
Alkis Evlogimenos4d46e1e2004-01-31 14:37:41 +0000383/// registers. for some ordering of the machine instructions [1,N] a
Alkis Evlogimenos08cec002004-01-31 19:59:32 +0000384/// live interval is an interval [i, j) where 1 <= i <= j < N for
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000385/// which a variable is live
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000386void LiveIntervals::computeIntervals() {
David Greene8a342292010-01-04 22:49:02 +0000387 DEBUG(dbgs() << "********** COMPUTING LIVE INTERVALS **********\n"
David Blaikie986d76d2012-08-22 17:18:53 +0000388 << "********** Function: " << MF->getName() << '\n');
Evan Chengd129d732009-07-17 19:43:40 +0000389
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000390 RegMaskBlocks.resize(MF->getNumBlockIDs());
Jakob Stoklund Olesen34e85d02012-02-10 01:26:29 +0000391
Evan Chengd129d732009-07-17 19:43:40 +0000392 SmallVector<unsigned, 8> UndefUses;
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000393 for (MachineFunction::iterator MBBI = MF->begin(), E = MF->end();
Chris Lattner428b92e2006-09-15 03:57:23 +0000394 MBBI != E; ++MBBI) {
395 MachineBasicBlock *MBB = MBBI;
Jakob Stoklund Olesen34e85d02012-02-10 01:26:29 +0000396 RegMaskBlocks[MBB->getNumber()].first = RegMaskSlots.size();
397
Evan Cheng00a99a32010-02-06 09:07:11 +0000398 if (MBB->empty())
399 continue;
400
Owen Anderson134eb732008-09-21 20:43:24 +0000401 // Track the index of the current machine instr.
Lang Hames233a60e2009-11-03 23:52:08 +0000402 SlotIndex MIIndex = getMBBStartIdx(MBB);
Bob Wilsonad98f792010-05-03 21:38:11 +0000403 DEBUG(dbgs() << "BB#" << MBB->getNumber()
404 << ":\t\t# derived from " << MBB->getName() << "\n");
Alkis Evlogimenos6b4edba2003-12-21 20:19:10 +0000405
Owen Anderson99500ae2008-09-15 22:00:38 +0000406 // Skip over empty initial indices.
Lang Hames233a60e2009-11-03 23:52:08 +0000407 if (getInstructionFromIndex(MIIndex) == 0)
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000408 MIIndex = Indexes->getNextNonNullIndex(MIIndex);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000409
Dale Johannesen1caedd02010-01-22 22:38:21 +0000410 for (MachineBasicBlock::iterator MI = MBB->begin(), miEnd = MBB->end();
411 MI != miEnd; ++MI) {
David Greene8a342292010-01-04 22:49:02 +0000412 DEBUG(dbgs() << MIIndex << "\t" << *MI);
Chris Lattner518bb532010-02-09 19:54:29 +0000413 if (MI->isDebugValue())
Dale Johannesen1caedd02010-01-22 22:38:21 +0000414 continue;
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000415 assert(Indexes->getInstructionFromIndex(MIIndex) == MI &&
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000416 "Lost SlotIndex synchronization");
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000417
Evan Cheng438f7bc2006-11-10 08:43:01 +0000418 // Handle defs.
Chris Lattner428b92e2006-09-15 03:57:23 +0000419 for (int i = MI->getNumOperands() - 1; i >= 0; --i) {
420 MachineOperand &MO = MI->getOperand(i);
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000421
422 // Collect register masks.
423 if (MO.isRegMask()) {
424 RegMaskSlots.push_back(MIIndex.getRegSlot());
425 RegMaskBits.push_back(MO.getRegMask());
426 continue;
427 }
428
Jakob Stoklund Olesen27b76692012-06-22 18:20:50 +0000429 if (!MO.isReg() || !TargetRegisterInfo::isVirtualRegister(MO.getReg()))
Evan Chengd129d732009-07-17 19:43:40 +0000430 continue;
431
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000432 // handle register defs - build intervals
Evan Chengd129d732009-07-17 19:43:40 +0000433 if (MO.isDef())
Evan Chengef0732d2008-07-10 07:35:43 +0000434 handleRegisterDef(MBB, MI, MIIndex, MO, i);
Evan Chengd129d732009-07-17 19:43:40 +0000435 else if (MO.isUndef())
436 UndefUses.push_back(MO.getReg());
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000437 }
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000438
Lang Hames233a60e2009-11-03 23:52:08 +0000439 // Move to the next instr slot.
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000440 MIIndex = Indexes->getNextNonNullIndex(MIIndex);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000441 }
Jakob Stoklund Olesen34e85d02012-02-10 01:26:29 +0000442
443 // Compute the number of register mask instructions in this block.
444 std::pair<unsigned, unsigned> &RMB = RegMaskBlocks[MBB->getNumber()];
Dmitri Gribenko2de05722012-09-10 21:26:47 +0000445 RMB.second = RegMaskSlots.size() - RMB.first;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000446 }
Evan Chengd129d732009-07-17 19:43:40 +0000447
448 // Create empty intervals for registers defined by implicit_def's (except
449 // for those implicit_def that define values which are liveout of their
450 // blocks.
451 for (unsigned i = 0, e = UndefUses.size(); i != e; ++i) {
452 unsigned UndefReg = UndefUses[i];
453 (void)getOrCreateInterval(UndefReg);
454 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000455}
Alkis Evlogimenosb27ef242003-12-05 10:38:28 +0000456
Owen Anderson03857b22008-08-13 21:49:13 +0000457LiveInterval* LiveIntervals::createInterval(unsigned reg) {
Evan Cheng0a1fcce2009-02-08 11:04:35 +0000458 float Weight = TargetRegisterInfo::isPhysicalRegister(reg) ? HUGE_VALF : 0.0F;
Owen Anderson03857b22008-08-13 21:49:13 +0000459 return new LiveInterval(reg, Weight);
Alkis Evlogimenos9a8b4902004-04-09 18:07:57 +0000460}
Evan Chengf2fbca62007-11-12 06:35:08 +0000461
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +0000462
Jakob Stoklund Olesen3dfa38a2012-07-27 20:58:46 +0000463/// computeVirtRegInterval - Compute the live interval of a virtual register,
464/// based on defs and uses.
465void LiveIntervals::computeVirtRegInterval(LiveInterval *LI) {
466 assert(LRCalc && "LRCalc not initialized.");
467 assert(LI->empty() && "Should only compute empty intervals.");
468 LRCalc->reset(MF, getSlotIndexes(), DomTree, &getVNInfoAllocator());
469 LRCalc->createDeadDefs(LI);
470 LRCalc->extendToUses(LI);
471}
472
Jakob Stoklund Olesenc16bf792012-07-27 21:56:39 +0000473void LiveIntervals::computeVirtRegs() {
474 for (unsigned i = 0, e = MRI->getNumVirtRegs(); i != e; ++i) {
475 unsigned Reg = TargetRegisterInfo::index2VirtReg(i);
476 if (MRI->reg_nodbg_empty(Reg))
477 continue;
478 LiveInterval *LI = createInterval(Reg);
479 VirtRegIntervals[Reg] = LI;
480 computeVirtRegInterval(LI);
481 }
482}
483
484void LiveIntervals::computeRegMasks() {
485 RegMaskBlocks.resize(MF->getNumBlockIDs());
486
487 // Find all instructions with regmask operands.
488 for (MachineFunction::iterator MBBI = MF->begin(), E = MF->end();
489 MBBI != E; ++MBBI) {
490 MachineBasicBlock *MBB = MBBI;
491 std::pair<unsigned, unsigned> &RMB = RegMaskBlocks[MBB->getNumber()];
492 RMB.first = RegMaskSlots.size();
493 for (MachineBasicBlock::iterator MI = MBB->begin(), ME = MBB->end();
494 MI != ME; ++MI)
495 for (MIOperands MO(MI); MO.isValid(); ++MO) {
496 if (!MO->isRegMask())
497 continue;
498 RegMaskSlots.push_back(Indexes->getInstructionIndex(MI).getRegSlot());
499 RegMaskBits.push_back(MO->getRegMask());
500 }
501 // Compute the number of register mask instructions in this block.
Dmitri Gribenko2de05722012-09-10 21:26:47 +0000502 RMB.second = RegMaskSlots.size() - RMB.first;
Jakob Stoklund Olesenc16bf792012-07-27 21:56:39 +0000503 }
504}
Jakob Stoklund Olesen3dfa38a2012-07-27 20:58:46 +0000505
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +0000506//===----------------------------------------------------------------------===//
507// Register Unit Liveness
508//===----------------------------------------------------------------------===//
509//
510// Fixed interference typically comes from ABI boundaries: Function arguments
511// and return values are passed in fixed registers, and so are exception
512// pointers entering landing pads. Certain instructions require values to be
513// present in specific registers. That is also represented through fixed
514// interference.
515//
516
517/// computeRegUnitInterval - Compute the live interval of a register unit, based
518/// on the uses and defs of aliasing registers. The interval should be empty,
519/// or contain only dead phi-defs from ABI blocks.
520void LiveIntervals::computeRegUnitInterval(LiveInterval *LI) {
521 unsigned Unit = LI->reg;
522
523 assert(LRCalc && "LRCalc not initialized.");
524 LRCalc->reset(MF, getSlotIndexes(), DomTree, &getVNInfoAllocator());
525
526 // The physregs aliasing Unit are the roots and their super-registers.
527 // Create all values as dead defs before extending to uses. Note that roots
528 // may share super-registers. That's OK because createDeadDefs() is
529 // idempotent. It is very rare for a register unit to have multiple roots, so
530 // uniquing super-registers is probably not worthwhile.
531 for (MCRegUnitRootIterator Roots(Unit, TRI); Roots.isValid(); ++Roots) {
532 unsigned Root = *Roots;
533 if (!MRI->reg_empty(Root))
534 LRCalc->createDeadDefs(LI, Root);
535 for (MCSuperRegIterator Supers(Root, TRI); Supers.isValid(); ++Supers) {
536 if (!MRI->reg_empty(*Supers))
537 LRCalc->createDeadDefs(LI, *Supers);
538 }
539 }
540
541 // Now extend LI to reach all uses.
542 // Ignore uses of reserved registers. We only track defs of those.
543 for (MCRegUnitRootIterator Roots(Unit, TRI); Roots.isValid(); ++Roots) {
544 unsigned Root = *Roots;
545 if (!isReserved(Root) && !MRI->reg_empty(Root))
546 LRCalc->extendToUses(LI, Root);
547 for (MCSuperRegIterator Supers(Root, TRI); Supers.isValid(); ++Supers) {
548 unsigned Reg = *Supers;
549 if (!isReserved(Reg) && !MRI->reg_empty(Reg))
550 LRCalc->extendToUses(LI, Reg);
551 }
552 }
553}
554
555
556/// computeLiveInRegUnits - Precompute the live ranges of any register units
557/// that are live-in to an ABI block somewhere. Register values can appear
558/// without a corresponding def when entering the entry block or a landing pad.
559///
560void LiveIntervals::computeLiveInRegUnits() {
561 RegUnitIntervals.resize(TRI->getNumRegUnits());
562 DEBUG(dbgs() << "Computing live-in reg-units in ABI blocks.\n");
563
564 // Keep track of the intervals allocated.
565 SmallVector<LiveInterval*, 8> NewIntvs;
566
567 // Check all basic blocks for live-ins.
568 for (MachineFunction::const_iterator MFI = MF->begin(), MFE = MF->end();
569 MFI != MFE; ++MFI) {
570 const MachineBasicBlock *MBB = MFI;
571
572 // We only care about ABI blocks: Entry + landing pads.
573 if ((MFI != MF->begin() && !MBB->isLandingPad()) || MBB->livein_empty())
574 continue;
575
576 // Create phi-defs at Begin for all live-in registers.
577 SlotIndex Begin = Indexes->getMBBStartIdx(MBB);
578 DEBUG(dbgs() << Begin << "\tBB#" << MBB->getNumber());
579 for (MachineBasicBlock::livein_iterator LII = MBB->livein_begin(),
580 LIE = MBB->livein_end(); LII != LIE; ++LII) {
581 for (MCRegUnitIterator Units(*LII, TRI); Units.isValid(); ++Units) {
582 unsigned Unit = *Units;
583 LiveInterval *Intv = RegUnitIntervals[Unit];
584 if (!Intv) {
585 Intv = RegUnitIntervals[Unit] = new LiveInterval(Unit, HUGE_VALF);
586 NewIntvs.push_back(Intv);
587 }
588 VNInfo *VNI = Intv->createDeadDef(Begin, getVNInfoAllocator());
Matt Beaumont-Gay05b46f02012-06-05 23:00:03 +0000589 (void)VNI;
Jakob Stoklund Olesen34c6f982012-06-05 22:02:15 +0000590 DEBUG(dbgs() << ' ' << PrintRegUnit(Unit, TRI) << '#' << VNI->id);
591 }
592 }
593 DEBUG(dbgs() << '\n');
594 }
595 DEBUG(dbgs() << "Created " << NewIntvs.size() << " new intervals.\n");
596
597 // Compute the 'normal' part of the intervals.
598 for (unsigned i = 0, e = NewIntvs.size(); i != e; ++i)
599 computeRegUnitInterval(NewIntvs[i]);
600}
601
602
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000603/// shrinkToUses - After removing some uses of a register, shrink its live
604/// range to just the remaining uses. This method does not compute reaching
605/// defs for new uses, and it doesn't remove dead defs.
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +0000606bool LiveIntervals::shrinkToUses(LiveInterval *li,
Jakob Stoklund Olesen0d8ccaa2011-03-07 23:29:10 +0000607 SmallVectorImpl<MachineInstr*> *dead) {
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000608 DEBUG(dbgs() << "Shrink: " << *li << '\n');
609 assert(TargetRegisterInfo::isVirtualRegister(li->reg)
Lang Hames567cdba2012-01-03 20:05:57 +0000610 && "Can only shrink virtual registers");
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000611 // Find all the values used, including PHI kills.
612 SmallVector<std::pair<SlotIndex, VNInfo*>, 16> WorkList;
613
Jakob Stoklund Olesen031432f2011-09-15 15:24:16 +0000614 // Blocks that have already been added to WorkList as live-out.
615 SmallPtrSet<MachineBasicBlock*, 16> LiveOut;
616
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000617 // Visit all instructions reading li->reg.
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000618 for (MachineRegisterInfo::reg_iterator I = MRI->reg_begin(li->reg);
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000619 MachineInstr *UseMI = I.skipInstruction();) {
620 if (UseMI->isDebugValue() || !UseMI->readsVirtualRegister(li->reg))
621 continue;
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000622 SlotIndex Idx = getInstructionIndex(UseMI).getRegSlot();
Jakob Stoklund Olesen97769fc2012-05-20 02:54:52 +0000623 LiveRangeQuery LRQ(*li, Idx);
624 VNInfo *VNI = LRQ.valueIn();
Jakob Stoklund Olesen9ef931e2011-03-18 03:06:04 +0000625 if (!VNI) {
626 // This shouldn't happen: readsVirtualRegister returns true, but there is
627 // no live value. It is likely caused by a target getting <undef> flags
628 // wrong.
629 DEBUG(dbgs() << Idx << '\t' << *UseMI
630 << "Warning: Instr claims to read non-existent value in "
631 << *li << '\n');
632 continue;
633 }
Jakob Stoklund Olesenf054e192011-11-14 18:45:38 +0000634 // Special case: An early-clobber tied operand reads and writes the
Jakob Stoklund Olesen97769fc2012-05-20 02:54:52 +0000635 // register one slot early.
636 if (VNInfo *DefVNI = LRQ.valueDefined())
637 Idx = DefVNI->def;
638
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000639 WorkList.push_back(std::make_pair(Idx, VNI));
640 }
641
642 // Create a new live interval with only minimal live segments per def.
643 LiveInterval NewLI(li->reg, 0);
644 for (LiveInterval::vni_iterator I = li->vni_begin(), E = li->vni_end();
645 I != E; ++I) {
646 VNInfo *VNI = *I;
647 if (VNI->isUnused())
648 continue;
Jakob Stoklund Olesen1f81e312011-11-13 22:42:13 +0000649 NewLI.addRange(LiveRange(VNI->def, VNI->def.getDeadSlot(), VNI));
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000650 }
651
Jakob Stoklund Olesene0ab2452011-03-02 00:33:03 +0000652 // Keep track of the PHIs that are in use.
653 SmallPtrSet<VNInfo*, 8> UsedPHIs;
654
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000655 // Extend intervals to reach all uses in WorkList.
656 while (!WorkList.empty()) {
657 SlotIndex Idx = WorkList.back().first;
658 VNInfo *VNI = WorkList.back().second;
659 WorkList.pop_back();
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000660 const MachineBasicBlock *MBB = getMBBFromIndex(Idx.getPrevSlot());
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000661 SlotIndex BlockStart = getMBBStartIdx(MBB);
Jakob Stoklund Olesene0ab2452011-03-02 00:33:03 +0000662
663 // Extend the live range for VNI to be live at Idx.
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000664 if (VNInfo *ExtVNI = NewLI.extendInBlock(BlockStart, Idx)) {
Nick Lewycky4b11a702011-03-02 01:43:30 +0000665 (void)ExtVNI;
Jakob Stoklund Olesene0ab2452011-03-02 00:33:03 +0000666 assert(ExtVNI == VNI && "Unexpected existing value number");
667 // Is this a PHIDef we haven't seen before?
Jakob Stoklund Olesenc29d9b32011-03-03 00:20:51 +0000668 if (!VNI->isPHIDef() || VNI->def != BlockStart || !UsedPHIs.insert(VNI))
Jakob Stoklund Olesene0ab2452011-03-02 00:33:03 +0000669 continue;
670 // The PHI is live, make sure the predecessors are live-out.
671 for (MachineBasicBlock::const_pred_iterator PI = MBB->pred_begin(),
672 PE = MBB->pred_end(); PI != PE; ++PI) {
Jakob Stoklund Olesen031432f2011-09-15 15:24:16 +0000673 if (!LiveOut.insert(*PI))
674 continue;
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000675 SlotIndex Stop = getMBBEndIdx(*PI);
Jakob Stoklund Olesene0ab2452011-03-02 00:33:03 +0000676 // A predecessor is not required to have a live-out value for a PHI.
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000677 if (VNInfo *PVNI = li->getVNInfoBefore(Stop))
Jakob Stoklund Olesene0ab2452011-03-02 00:33:03 +0000678 WorkList.push_back(std::make_pair(Stop, PVNI));
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000679 }
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000680 continue;
681 }
682
683 // VNI is live-in to MBB.
684 DEBUG(dbgs() << " live-in at " << BlockStart << '\n');
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000685 NewLI.addRange(LiveRange(BlockStart, Idx, VNI));
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000686
687 // Make sure VNI is live-out from the predecessors.
688 for (MachineBasicBlock::const_pred_iterator PI = MBB->pred_begin(),
689 PE = MBB->pred_end(); PI != PE; ++PI) {
Jakob Stoklund Olesen031432f2011-09-15 15:24:16 +0000690 if (!LiveOut.insert(*PI))
691 continue;
Jakob Stoklund Olesen6c9cc212011-11-13 23:53:25 +0000692 SlotIndex Stop = getMBBEndIdx(*PI);
693 assert(li->getVNInfoBefore(Stop) == VNI &&
694 "Wrong value out of predecessor");
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000695 WorkList.push_back(std::make_pair(Stop, VNI));
696 }
697 }
698
699 // Handle dead values.
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +0000700 bool CanSeparate = false;
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000701 for (LiveInterval::vni_iterator I = li->vni_begin(), E = li->vni_end();
702 I != E; ++I) {
703 VNInfo *VNI = *I;
704 if (VNI->isUnused())
705 continue;
706 LiveInterval::iterator LII = NewLI.FindLiveRangeContaining(VNI->def);
707 assert(LII != NewLI.end() && "Missing live range for PHI");
Jakob Stoklund Olesen1f81e312011-11-13 22:42:13 +0000708 if (LII->end != VNI->def.getDeadSlot())
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000709 continue;
Jakob Stoklund Olesena4d34732011-03-02 00:33:01 +0000710 if (VNI->isPHIDef()) {
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000711 // This is a dead PHI. Remove it.
Jakob Stoklund Olesenb2beac22012-08-03 20:59:32 +0000712 VNI->markUnused();
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000713 NewLI.removeRange(*LII);
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +0000714 DEBUG(dbgs() << "Dead PHI at " << VNI->def << " may separate interval\n");
715 CanSeparate = true;
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000716 } else {
717 // This is a dead def. Make sure the instruction knows.
718 MachineInstr *MI = getInstructionFromIndex(VNI->def);
719 assert(MI && "No instruction defining live value");
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000720 MI->addRegisterDead(li->reg, TRI);
Jakob Stoklund Olesen0d8ccaa2011-03-07 23:29:10 +0000721 if (dead && MI->allDefsAreDead()) {
Jakob Stoklund Olesenc46570d2011-03-16 22:56:08 +0000722 DEBUG(dbgs() << "All defs dead: " << VNI->def << '\t' << *MI);
Jakob Stoklund Olesen0d8ccaa2011-03-07 23:29:10 +0000723 dead->push_back(MI);
724 }
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000725 }
726 }
727
728 // Move the trimmed ranges back.
729 li->ranges.swap(NewLI.ranges);
Jakob Stoklund Olesenc46570d2011-03-16 22:56:08 +0000730 DEBUG(dbgs() << "Shrunk: " << *li << '\n');
Jakob Stoklund Olesen6a3dbd32011-03-17 20:37:07 +0000731 return CanSeparate;
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000732}
733
Jakob Stoklund Olesen87f78642012-09-17 23:03:25 +0000734void LiveIntervals::extendToIndices(LiveInterval *LI,
735 ArrayRef<SlotIndex> Indices) {
736 assert(LRCalc && "LRCalc not initialized.");
737 LRCalc->reset(MF, getSlotIndexes(), DomTree, &getVNInfoAllocator());
738 for (unsigned i = 0, e = Indices.size(); i != e; ++i)
739 LRCalc->extend(LI, Indices[i]);
740}
741
742void LiveIntervals::pruneValue(LiveInterval *LI, SlotIndex Kill,
743 SmallVectorImpl<SlotIndex> *EndPoints) {
744 LiveRangeQuery LRQ(*LI, Kill);
Jakob Stoklund Olesen87f78642012-09-17 23:03:25 +0000745 VNInfo *VNI = LRQ.valueOut();
746 if (!VNI)
747 return;
748
749 MachineBasicBlock *KillMBB = Indexes->getMBBFromIndex(Kill);
750 SlotIndex MBBStart, MBBEnd;
751 tie(MBBStart, MBBEnd) = Indexes->getMBBRange(KillMBB);
752
753 // If VNI isn't live out from KillMBB, the value is trivially pruned.
754 if (LRQ.endPoint() < MBBEnd) {
755 LI->removeRange(Kill, LRQ.endPoint());
756 if (EndPoints) EndPoints->push_back(LRQ.endPoint());
757 return;
758 }
759
760 // VNI is live out of KillMBB.
761 LI->removeRange(Kill, MBBEnd);
762 if (EndPoints) EndPoints->push_back(MBBEnd);
763
Jakob Stoklund Olesenaf896902012-10-13 16:15:31 +0000764 // Find all blocks that are reachable from KillMBB without leaving VNI's live
765 // range. It is possible that KillMBB itself is reachable, so start a DFS
766 // from each successor.
767 typedef SmallPtrSet<MachineBasicBlock*, 9> VisitedTy;
768 VisitedTy Visited;
769 for (MachineBasicBlock::succ_iterator
770 SuccI = KillMBB->succ_begin(), SuccE = KillMBB->succ_end();
771 SuccI != SuccE; ++SuccI) {
772 for (df_ext_iterator<MachineBasicBlock*, VisitedTy>
773 I = df_ext_begin(*SuccI, Visited), E = df_ext_end(*SuccI, Visited);
774 I != E;) {
775 MachineBasicBlock *MBB = *I;
776
777 // Check if VNI is live in to MBB.
778 tie(MBBStart, MBBEnd) = Indexes->getMBBRange(MBB);
779 LiveRangeQuery LRQ(*LI, MBBStart);
780 if (LRQ.valueIn() != VNI) {
781 // This block isn't part of the VNI live range. Prune the search.
782 I.skipChildren();
783 continue;
784 }
785
786 // Prune the search if VNI is killed in MBB.
787 if (LRQ.endPoint() < MBBEnd) {
788 LI->removeRange(MBBStart, LRQ.endPoint());
789 if (EndPoints) EndPoints->push_back(LRQ.endPoint());
790 I.skipChildren();
791 continue;
792 }
793
794 // VNI is live through MBB.
795 LI->removeRange(MBBStart, MBBEnd);
796 if (EndPoints) EndPoints->push_back(MBBEnd);
Jakob Stoklund Olesen87f78642012-09-17 23:03:25 +0000797 ++I;
Jakob Stoklund Olesen87f78642012-09-17 23:03:25 +0000798 }
Jakob Stoklund Olesen87f78642012-09-17 23:03:25 +0000799 }
800}
Jakob Stoklund Olesen11513e52011-02-08 00:03:05 +0000801
Evan Chengf2fbca62007-11-12 06:35:08 +0000802//===----------------------------------------------------------------------===//
803// Register allocator hooks.
804//
805
Jakob Stoklund Olesene617ccb2012-09-06 18:15:18 +0000806void LiveIntervals::addKillFlags(const VirtRegMap *VRM) {
807 // Keep track of regunit ranges.
808 SmallVector<std::pair<LiveInterval*, LiveInterval::iterator>, 8> RU;
809
Jakob Stoklund Olesen12a7be92012-06-20 23:23:59 +0000810 for (unsigned i = 0, e = MRI->getNumVirtRegs(); i != e; ++i) {
811 unsigned Reg = TargetRegisterInfo::index2VirtReg(i);
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000812 if (MRI->reg_nodbg_empty(Reg))
Jakob Stoklund Olesen8a61da82011-02-08 21:13:03 +0000813 continue;
Jakob Stoklund Olesen12a7be92012-06-20 23:23:59 +0000814 LiveInterval *LI = &getInterval(Reg);
Jakob Stoklund Olesene617ccb2012-09-06 18:15:18 +0000815 if (LI->empty())
816 continue;
817
818 // Find the regunit intervals for the assigned register. They may overlap
819 // the virtual register live range, cancelling any kills.
820 RU.clear();
821 for (MCRegUnitIterator Units(VRM->getPhys(Reg), TRI); Units.isValid();
822 ++Units) {
823 LiveInterval *RUInt = &getRegUnit(*Units);
824 if (RUInt->empty())
825 continue;
826 RU.push_back(std::make_pair(RUInt, RUInt->find(LI->begin()->end)));
827 }
Jakob Stoklund Olesen8a61da82011-02-08 21:13:03 +0000828
829 // Every instruction that kills Reg corresponds to a live range end point.
830 for (LiveInterval::iterator RI = LI->begin(), RE = LI->end(); RI != RE;
831 ++RI) {
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000832 // A block index indicates an MBB edge.
833 if (RI->end.isBlock())
Jakob Stoklund Olesen8a61da82011-02-08 21:13:03 +0000834 continue;
835 MachineInstr *MI = getInstructionFromIndex(RI->end);
836 if (!MI)
837 continue;
Jakob Stoklund Olesene617ccb2012-09-06 18:15:18 +0000838
839 // Check if any of the reguints are live beyond the end of RI. That could
840 // happen when a physreg is defined as a copy of a virtreg:
841 //
842 // %EAX = COPY %vreg5
843 // FOO %vreg5 <--- MI, cancel kill because %EAX is live.
844 // BAR %EAX<kill>
845 //
846 // There should be no kill flag on FOO when %vreg5 is rewritten as %EAX.
847 bool CancelKill = false;
848 for (unsigned u = 0, e = RU.size(); u != e; ++u) {
849 LiveInterval *RInt = RU[u].first;
850 LiveInterval::iterator &I = RU[u].second;
851 if (I == RInt->end())
852 continue;
853 I = RInt->advanceTo(I, RI->end);
854 if (I == RInt->end() || I->start >= RI->end)
855 continue;
856 // I is overlapping RI.
857 CancelKill = true;
858 break;
859 }
860 if (CancelKill)
861 MI->clearRegisterKills(Reg, NULL);
862 else
863 MI->addRegisterKilled(Reg, NULL);
Jakob Stoklund Olesen8a61da82011-02-08 21:13:03 +0000864 }
865 }
866}
867
Jakob Stoklund Olesenebf27502012-02-10 01:23:55 +0000868MachineBasicBlock*
869LiveIntervals::intervalIsInOneMBB(const LiveInterval &LI) const {
870 // A local live range must be fully contained inside the block, meaning it is
871 // defined and killed at instructions, not at block boundaries. It is not
872 // live in or or out of any block.
873 //
874 // It is technically possible to have a PHI-defined live range identical to a
875 // single block, but we are going to return false in that case.
Lang Hames233a60e2009-11-03 23:52:08 +0000876
Jakob Stoklund Olesenebf27502012-02-10 01:23:55 +0000877 SlotIndex Start = LI.beginIndex();
878 if (Start.isBlock())
879 return NULL;
Lang Hames233a60e2009-11-03 23:52:08 +0000880
Jakob Stoklund Olesenebf27502012-02-10 01:23:55 +0000881 SlotIndex Stop = LI.endIndex();
882 if (Stop.isBlock())
883 return NULL;
Lang Hames233a60e2009-11-03 23:52:08 +0000884
Jakob Stoklund Olesenebf27502012-02-10 01:23:55 +0000885 // getMBBFromIndex doesn't need to search the MBB table when both indexes
886 // belong to proper instructions.
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000887 MachineBasicBlock *MBB1 = Indexes->getMBBFromIndex(Start);
888 MachineBasicBlock *MBB2 = Indexes->getMBBFromIndex(Stop);
Jakob Stoklund Olesenebf27502012-02-10 01:23:55 +0000889 return MBB1 == MBB2 ? MBB1 : NULL;
Evan Cheng81a03822007-11-17 00:40:40 +0000890}
891
Jakob Stoklund Olesen0ab71032012-08-03 20:10:24 +0000892bool
893LiveIntervals::hasPHIKill(const LiveInterval &LI, const VNInfo *VNI) const {
894 for (LiveInterval::const_vni_iterator I = LI.vni_begin(), E = LI.vni_end();
895 I != E; ++I) {
896 const VNInfo *PHI = *I;
897 if (PHI->isUnused() || !PHI->isPHIDef())
898 continue;
899 const MachineBasicBlock *PHIMBB = getMBBFromIndex(PHI->def);
900 // Conservatively return true instead of scanning huge predecessor lists.
901 if (PHIMBB->pred_size() > 100)
902 return true;
903 for (MachineBasicBlock::const_pred_iterator
904 PI = PHIMBB->pred_begin(), PE = PHIMBB->pred_end(); PI != PE; ++PI)
905 if (VNI == LI.getVNInfoBefore(Indexes->getMBBEndIdx(*PI)))
906 return true;
907 }
908 return false;
909}
910
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +0000911float
912LiveIntervals::getSpillWeight(bool isDef, bool isUse, unsigned loopDepth) {
913 // Limit the loop depth ridiculousness.
914 if (loopDepth > 200)
915 loopDepth = 200;
916
917 // The loop depth is used to roughly estimate the number of times the
918 // instruction is executed. Something like 10^d is simple, but will quickly
919 // overflow a float. This expression behaves like 10^d for small d, but is
920 // more tempered for large d. At d=200 we get 6.7e33 which leaves a bit of
921 // headroom before overflow.
NAKAMURA Takumidc5198b2011-03-31 12:11:33 +0000922 // By the way, powf() might be unavailable here. For consistency,
923 // We may take pow(double,double).
924 float lc = std::pow(1 + (100.0 / (loopDepth + 10)), (double)loopDepth);
Jakob Stoklund Olesene5d90412010-03-01 20:59:38 +0000925
926 return (isDef + isUse) * lc;
927}
928
Owen Andersonc4dc1322008-06-05 17:15:43 +0000929LiveRange LiveIntervals::addLiveRangeToEndOfBlock(unsigned reg,
Lang Hamesffd13262009-07-09 03:57:02 +0000930 MachineInstr* startInst) {
Owen Andersonc4dc1322008-06-05 17:15:43 +0000931 LiveInterval& Interval = getOrCreateInterval(reg);
932 VNInfo* VN = Interval.getNextValue(
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000933 SlotIndex(getInstructionIndex(startInst).getRegSlot()),
Jakob Stoklund Olesen3b1088a2012-02-04 05:20:49 +0000934 getVNInfoAllocator());
Lang Hames86511252009-09-04 20:41:11 +0000935 LiveRange LR(
Jakob Stoklund Olesen2debd482011-11-13 20:45:27 +0000936 SlotIndex(getInstructionIndex(startInst).getRegSlot()),
Lang Hames74ab5ee2009-12-22 00:11:50 +0000937 getMBBEndIdx(startInst->getParent()), VN);
Owen Andersonc4dc1322008-06-05 17:15:43 +0000938 Interval.addRange(LR);
Jakob Stoklund Olesen1b293202010-08-12 20:01:23 +0000939
Owen Andersonc4dc1322008-06-05 17:15:43 +0000940 return LR;
941}
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000942
943
944//===----------------------------------------------------------------------===//
945// Register mask functions
946//===----------------------------------------------------------------------===//
947
948bool LiveIntervals::checkRegMaskInterference(LiveInterval &LI,
949 BitVector &UsableRegs) {
950 if (LI.empty())
951 return false;
Jakob Stoklund Olesen9f10ac62012-02-10 01:31:31 +0000952 LiveInterval::iterator LiveI = LI.begin(), LiveE = LI.end();
953
954 // Use a smaller arrays for local live ranges.
955 ArrayRef<SlotIndex> Slots;
956 ArrayRef<const uint32_t*> Bits;
957 if (MachineBasicBlock *MBB = intervalIsInOneMBB(LI)) {
958 Slots = getRegMaskSlotsInBlock(MBB->getNumber());
959 Bits = getRegMaskBitsInBlock(MBB->getNumber());
960 } else {
961 Slots = getRegMaskSlots();
962 Bits = getRegMaskBits();
963 }
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000964
965 // We are going to enumerate all the register mask slots contained in LI.
966 // Start with a binary search of RegMaskSlots to find a starting point.
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000967 ArrayRef<SlotIndex>::iterator SlotI =
968 std::lower_bound(Slots.begin(), Slots.end(), LiveI->start);
969 ArrayRef<SlotIndex>::iterator SlotE = Slots.end();
970
971 // No slots in range, LI begins after the last call.
972 if (SlotI == SlotE)
973 return false;
974
975 bool Found = false;
976 for (;;) {
977 assert(*SlotI >= LiveI->start);
978 // Loop over all slots overlapping this segment.
979 while (*SlotI < LiveI->end) {
980 // *SlotI overlaps LI. Collect mask bits.
981 if (!Found) {
982 // This is the first overlap. Initialize UsableRegs to all ones.
983 UsableRegs.clear();
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +0000984 UsableRegs.resize(TRI->getNumRegs(), true);
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000985 Found = true;
986 }
987 // Remove usable registers clobbered by this mask.
Jakob Stoklund Olesen9f10ac62012-02-10 01:31:31 +0000988 UsableRegs.clearBitsNotInMask(Bits[SlotI-Slots.begin()]);
Jakob Stoklund Olesen3fd3a842012-02-08 17:33:45 +0000989 if (++SlotI == SlotE)
990 return Found;
991 }
992 // *SlotI is beyond the current LI segment.
993 LiveI = LI.advanceTo(LiveI, *SlotI);
994 if (LiveI == LiveE)
995 return Found;
996 // Advance SlotI until it overlaps.
997 while (*SlotI < LiveI->start)
998 if (++SlotI == SlotE)
999 return Found;
1000 }
1001}
Lang Hames3dc7c512012-02-17 18:44:18 +00001002
1003//===----------------------------------------------------------------------===//
1004// IntervalUpdate class.
1005//===----------------------------------------------------------------------===//
1006
Lang Hamesfd6d3212012-02-21 00:00:36 +00001007// HMEditor is a toolkit used by handleMove to trim or extend live intervals.
Lang Hames3dc7c512012-02-17 18:44:18 +00001008class LiveIntervals::HMEditor {
1009private:
Lang Hamesecb50622012-02-17 23:43:40 +00001010 LiveIntervals& LIS;
1011 const MachineRegisterInfo& MRI;
1012 const TargetRegisterInfo& TRI;
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001013 SlotIndex OldIdx;
Lang Hamesecb50622012-02-17 23:43:40 +00001014 SlotIndex NewIdx;
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001015 SmallPtrSet<LiveInterval*, 8> Updated;
Lang Hames6aceab12012-02-19 07:13:05 +00001016
Lang Hames3dc7c512012-02-17 18:44:18 +00001017public:
Lang Hamesecb50622012-02-17 23:43:40 +00001018 HMEditor(LiveIntervals& LIS, const MachineRegisterInfo& MRI,
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001019 const TargetRegisterInfo& TRI,
1020 SlotIndex OldIdx, SlotIndex NewIdx)
1021 : LIS(LIS), MRI(MRI), TRI(TRI), OldIdx(OldIdx), NewIdx(NewIdx) {}
Lang Hames3dc7c512012-02-17 18:44:18 +00001022
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001023 /// Update all live ranges touched by MI, assuming a move from OldIdx to
1024 /// NewIdx.
1025 void updateAllRanges(MachineInstr *MI) {
1026 DEBUG(dbgs() << "handleMove " << OldIdx << " -> " << NewIdx << ": " << *MI);
1027 bool hasRegMask = false;
1028 for (MIOperands MO(MI); MO.isValid(); ++MO) {
1029 if (MO->isRegMask())
1030 hasRegMask = true;
1031 if (!MO->isReg())
Lang Hames4586d252012-02-21 22:29:38 +00001032 continue;
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001033 // Aggressively clear all kill flags.
1034 // They are reinserted by VirtRegRewriter.
1035 if (MO->isUse())
1036 MO->setIsKill(false);
1037
1038 unsigned Reg = MO->getReg();
1039 if (!Reg)
1040 continue;
1041 if (TargetRegisterInfo::isVirtualRegister(Reg)) {
1042 updateRange(LIS.getInterval(Reg));
1043 continue;
1044 }
1045
1046 // For physregs, only update the regunits that actually have a
1047 // precomputed live range.
1048 for (MCRegUnitIterator Units(Reg, &TRI); Units.isValid(); ++Units)
1049 if (LiveInterval *LI = LIS.getCachedRegUnit(*Units))
1050 updateRange(*LI);
Lang Hames4586d252012-02-21 22:29:38 +00001051 }
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001052 if (hasRegMask)
1053 updateRegMaskSlots();
Lang Hames6aceab12012-02-19 07:13:05 +00001054 }
1055
Lang Hames55fed622012-02-19 03:00:30 +00001056private:
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001057 /// Update a single live range, assuming an instruction has been moved from
1058 /// OldIdx to NewIdx.
1059 void updateRange(LiveInterval &LI) {
1060 if (!Updated.insert(&LI))
1061 return;
1062 DEBUG({
1063 dbgs() << " ";
1064 if (TargetRegisterInfo::isVirtualRegister(LI.reg))
1065 dbgs() << PrintReg(LI.reg);
Jakob Stoklund Olesenbf833f02012-06-19 23:50:18 +00001066 else
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001067 dbgs() << PrintRegUnit(LI.reg, &TRI);
1068 dbgs() << ":\t" << LI << '\n';
1069 });
1070 if (SlotIndex::isEarlierInstr(OldIdx, NewIdx))
1071 handleMoveDown(LI);
1072 else
1073 handleMoveUp(LI);
1074 DEBUG(dbgs() << " -->\t" << LI << '\n');
1075 LI.verify();
Lang Hames3dc7c512012-02-17 18:44:18 +00001076 }
1077
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001078 /// Update LI to reflect an instruction has been moved downwards from OldIdx
1079 /// to NewIdx.
1080 ///
1081 /// 1. Live def at OldIdx:
1082 /// Move def to NewIdx, assert endpoint after NewIdx.
1083 ///
1084 /// 2. Live def at OldIdx, killed at NewIdx:
1085 /// Change to dead def at NewIdx.
1086 /// (Happens when bundling def+kill together).
1087 ///
1088 /// 3. Dead def at OldIdx:
1089 /// Move def to NewIdx, possibly across another live value.
1090 ///
1091 /// 4. Def at OldIdx AND at NewIdx:
1092 /// Remove live range [OldIdx;NewIdx) and value defined at OldIdx.
1093 /// (Happens when bundling multiple defs together).
1094 ///
1095 /// 5. Value read at OldIdx, killed before NewIdx:
1096 /// Extend kill to NewIdx.
1097 ///
1098 void handleMoveDown(LiveInterval &LI) {
1099 // First look for a kill at OldIdx.
1100 LiveInterval::iterator I = LI.find(OldIdx.getBaseIndex());
1101 LiveInterval::iterator E = LI.end();
1102 // Is LI even live at OldIdx?
1103 if (I == E || SlotIndex::isEarlierInstr(OldIdx, I->start))
1104 return;
Lang Hames6aceab12012-02-19 07:13:05 +00001105
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001106 // Handle a live-in value.
1107 if (!SlotIndex::isSameInstr(I->start, OldIdx)) {
1108 bool isKill = SlotIndex::isSameInstr(OldIdx, I->end);
1109 // If the live-in value already extends to NewIdx, there is nothing to do.
1110 if (!SlotIndex::isEarlierInstr(I->end, NewIdx))
1111 return;
1112 // Aggressively remove all kill flags from the old kill point.
1113 // Kill flags shouldn't be used while live intervals exist, they will be
1114 // reinserted by VirtRegRewriter.
1115 if (MachineInstr *KillMI = LIS.getInstructionFromIndex(I->end))
1116 for (MIBundleOperands MO(KillMI); MO.isValid(); ++MO)
1117 if (MO->isReg() && MO->isUse())
1118 MO->setIsKill(false);
1119 // Adjust I->end to reach NewIdx. This may temporarily make LI invalid by
1120 // overlapping ranges. Case 5 above.
1121 I->end = NewIdx.getRegSlot(I->end.isEarlyClobber());
1122 // If this was a kill, there may also be a def. Otherwise we're done.
1123 if (!isKill)
1124 return;
1125 ++I;
Lang Hames6aceab12012-02-19 07:13:05 +00001126 }
1127
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001128 // Check for a def at OldIdx.
1129 if (I == E || !SlotIndex::isSameInstr(OldIdx, I->start))
1130 return;
1131 // We have a def at OldIdx.
1132 VNInfo *DefVNI = I->valno;
1133 assert(DefVNI->def == I->start && "Inconsistent def");
1134 DefVNI->def = NewIdx.getRegSlot(I->start.isEarlyClobber());
1135 // If the defined value extends beyond NewIdx, just move the def down.
1136 // This is case 1 above.
1137 if (SlotIndex::isEarlierInstr(NewIdx, I->end)) {
1138 I->start = DefVNI->def;
1139 return;
1140 }
1141 // The remaining possibilities are now:
1142 // 2. Live def at OldIdx, killed at NewIdx: isSameInstr(I->end, NewIdx).
1143 // 3. Dead def at OldIdx: I->end = OldIdx.getDeadSlot().
1144 // In either case, it is possible that there is an existing def at NewIdx.
1145 assert((I->end == OldIdx.getDeadSlot() ||
1146 SlotIndex::isSameInstr(I->end, NewIdx)) &&
1147 "Cannot move def below kill");
1148 LiveInterval::iterator NewI = LI.advanceTo(I, NewIdx.getRegSlot());
1149 if (NewI != E && SlotIndex::isSameInstr(NewI->start, NewIdx)) {
1150 // There is an existing def at NewIdx, case 4 above. The def at OldIdx is
1151 // coalesced into that value.
1152 assert(NewI->valno != DefVNI && "Multiple defs of value?");
1153 LI.removeValNo(DefVNI);
1154 return;
1155 }
1156 // There was no existing def at NewIdx. Turn *I into a dead def at NewIdx.
1157 // If the def at OldIdx was dead, we allow it to be moved across other LI
1158 // values. The new range should be placed immediately before NewI, move any
1159 // intermediate ranges up.
1160 assert(NewI != I && "Inconsistent iterators");
1161 std::copy(llvm::next(I), NewI, I);
1162 *llvm::prior(NewI) = LiveRange(DefVNI->def, NewIdx.getDeadSlot(), DefVNI);
1163 }
1164
1165 /// Update LI to reflect an instruction has been moved upwards from OldIdx
1166 /// to NewIdx.
1167 ///
1168 /// 1. Live def at OldIdx:
1169 /// Hoist def to NewIdx.
1170 ///
1171 /// 2. Dead def at OldIdx:
1172 /// Hoist def+end to NewIdx, possibly move across other values.
1173 ///
1174 /// 3. Dead def at OldIdx AND existing def at NewIdx:
1175 /// Remove value defined at OldIdx, coalescing it with existing value.
1176 ///
1177 /// 4. Live def at OldIdx AND existing def at NewIdx:
1178 /// Remove value defined at NewIdx, hoist OldIdx def to NewIdx.
1179 /// (Happens when bundling multiple defs together).
1180 ///
1181 /// 5. Value killed at OldIdx:
1182 /// Hoist kill to NewIdx, then scan for last kill between NewIdx and
1183 /// OldIdx.
1184 ///
1185 void handleMoveUp(LiveInterval &LI) {
1186 // First look for a kill at OldIdx.
1187 LiveInterval::iterator I = LI.find(OldIdx.getBaseIndex());
1188 LiveInterval::iterator E = LI.end();
1189 // Is LI even live at OldIdx?
1190 if (I == E || SlotIndex::isEarlierInstr(OldIdx, I->start))
1191 return;
1192
1193 // Handle a live-in value.
1194 if (!SlotIndex::isSameInstr(I->start, OldIdx)) {
1195 // If the live-in value isn't killed here, there is nothing to do.
1196 if (!SlotIndex::isSameInstr(OldIdx, I->end))
1197 return;
1198 // Adjust I->end to end at NewIdx. If we are hoisting a kill above
1199 // another use, we need to search for that use. Case 5 above.
1200 I->end = NewIdx.getRegSlot(I->end.isEarlyClobber());
1201 ++I;
1202 // If OldIdx also defines a value, there couldn't have been another use.
1203 if (I == E || !SlotIndex::isSameInstr(I->start, OldIdx)) {
1204 // No def, search for the new kill.
1205 // This can never be an early clobber kill since there is no def.
1206 llvm::prior(I)->end = findLastUseBefore(LI.reg).getRegSlot();
1207 return;
Lang Hames6aceab12012-02-19 07:13:05 +00001208 }
1209 }
1210
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001211 // Now deal with the def at OldIdx.
1212 assert(I != E && SlotIndex::isSameInstr(I->start, OldIdx) && "No def?");
1213 VNInfo *DefVNI = I->valno;
1214 assert(DefVNI->def == I->start && "Inconsistent def");
1215 DefVNI->def = NewIdx.getRegSlot(I->start.isEarlyClobber());
1216
1217 // Check for an existing def at NewIdx.
1218 LiveInterval::iterator NewI = LI.find(NewIdx.getRegSlot());
1219 if (SlotIndex::isSameInstr(NewI->start, NewIdx)) {
1220 assert(NewI->valno != DefVNI && "Same value defined more than once?");
1221 // There is an existing def at NewIdx.
1222 if (I->end.isDead()) {
1223 // Case 3: Remove the dead def at OldIdx.
1224 LI.removeValNo(DefVNI);
1225 return;
1226 }
1227 // Case 4: Replace def at NewIdx with live def at OldIdx.
1228 I->start = DefVNI->def;
1229 LI.removeValNo(NewI->valno);
1230 return;
Lang Hames6aceab12012-02-19 07:13:05 +00001231 }
1232
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001233 // There is no existing def at NewIdx. Hoist DefVNI.
1234 if (!I->end.isDead()) {
1235 // Leave the end point of a live def.
1236 I->start = DefVNI->def;
1237 return;
1238 }
1239
1240 // DefVNI is a dead def. It may have been moved across other values in LI,
1241 // so move I up to NewI. Slide [NewI;I) down one position.
1242 std::copy_backward(NewI, I, llvm::next(I));
1243 *NewI = LiveRange(DefVNI->def, NewIdx.getDeadSlot(), DefVNI);
Lang Hames6aceab12012-02-19 07:13:05 +00001244 }
1245
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001246 void updateRegMaskSlots() {
Lang Hamesecb50622012-02-17 23:43:40 +00001247 SmallVectorImpl<SlotIndex>::iterator RI =
1248 std::lower_bound(LIS.RegMaskSlots.begin(), LIS.RegMaskSlots.end(),
1249 OldIdx);
1250 assert(*RI == OldIdx && "No RegMask at OldIdx.");
1251 *RI = NewIdx;
1252 assert(*prior(RI) < *RI && *RI < *next(RI) &&
Lang Hamesfbc8dd32012-02-17 21:29:41 +00001253 "RegSlots out of order. Did you move one call across another?");
1254 }
Lang Hames55fed622012-02-19 03:00:30 +00001255
1256 // Return the last use of reg between NewIdx and OldIdx.
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001257 SlotIndex findLastUseBefore(unsigned Reg) {
Lang Hames55fed622012-02-19 03:00:30 +00001258 SlotIndex LastUse = NewIdx;
Lang Hames6d742cc2012-09-12 06:56:16 +00001259
1260 if (TargetRegisterInfo::isVirtualRegister(Reg)) {
1261 for (MachineRegisterInfo::use_nodbg_iterator
1262 UI = MRI.use_nodbg_begin(Reg),
1263 UE = MRI.use_nodbg_end();
1264 UI != UE; UI.skipInstruction()) {
1265 const MachineInstr* MI = &*UI;
1266 SlotIndex InstSlot = LIS.getSlotIndexes()->getInstructionIndex(MI);
1267 if (InstSlot > LastUse && InstSlot < OldIdx)
1268 LastUse = InstSlot;
1269 }
1270 } else {
1271 MachineInstr* MI = LIS.getSlotIndexes()->getInstructionFromIndex(NewIdx);
1272 MachineBasicBlock::iterator MII(MI);
1273 ++MII;
1274 MachineBasicBlock* MBB = MI->getParent();
1275 for (; MII != MBB->end() && LIS.getInstructionIndex(MII) < OldIdx; ++MII){
1276 for (MachineInstr::mop_iterator MOI = MII->operands_begin(),
1277 MOE = MII->operands_end();
1278 MOI != MOE; ++MOI) {
1279 const MachineOperand& mop = *MOI;
1280 if (!mop.isReg() || mop.getReg() == 0 ||
1281 TargetRegisterInfo::isVirtualRegister(mop.getReg()))
1282 continue;
1283
1284 if (TRI.hasRegUnit(mop.getReg(), Reg))
1285 LastUse = LIS.getInstructionIndex(MII);
1286 }
1287 }
Lang Hames55fed622012-02-19 03:00:30 +00001288 }
1289 return LastUse;
1290 }
Lang Hames3dc7c512012-02-17 18:44:18 +00001291};
1292
Lang Hamesecb50622012-02-17 23:43:40 +00001293void LiveIntervals::handleMove(MachineInstr* MI) {
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001294 assert(!MI->isBundled() && "Can't handle bundled instructions yet.");
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +00001295 SlotIndex OldIndex = Indexes->getInstructionIndex(MI);
1296 Indexes->removeMachineInstrFromMaps(MI);
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001297 SlotIndex NewIndex = Indexes->insertMachineInstrInMaps(MI);
Lang Hamesecb50622012-02-17 23:43:40 +00001298 assert(getMBBStartIdx(MI->getParent()) <= OldIndex &&
1299 OldIndex < getMBBEndIdx(MI->getParent()) &&
Lang Hames3dc7c512012-02-17 18:44:18 +00001300 "Cannot handle moves across basic block boundaries.");
Lang Hames3dc7c512012-02-17 18:44:18 +00001301
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001302 HMEditor HME(*this, *MRI, *TRI, OldIndex, NewIndex);
1303 HME.updateAllRanges(MI);
Lang Hames4586d252012-02-21 22:29:38 +00001304}
1305
Jakob Stoklund Olesenfa8becb2012-06-19 22:50:53 +00001306void LiveIntervals::handleMoveIntoBundle(MachineInstr* MI,
1307 MachineInstr* BundleStart) {
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001308 SlotIndex OldIndex = Indexes->getInstructionIndex(MI);
Jakob Stoklund Olesen15f1d8c2012-06-04 22:39:14 +00001309 SlotIndex NewIndex = Indexes->getInstructionIndex(BundleStart);
Jakob Stoklund Olesenad5e9692012-10-12 21:31:57 +00001310 HMEditor HME(*this, *MRI, *TRI, OldIndex, NewIndex);
1311 HME.updateAllRanges(MI);
Lang Hames3dc7c512012-02-17 18:44:18 +00001312}