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Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +00001//===-- LiveIntervals.cpp - Live Interval Analysis ------------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
7//
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"
19#include "llvm/CodeGen/LiveIntervals.h"
20#include "llvm/Function.h"
21#include "llvm/CodeGen/LiveVariables.h"
22#include "llvm/CodeGen/MachineFrameInfo.h"
23#include "llvm/CodeGen/MachineFunctionPass.h"
24#include "llvm/CodeGen/MachineInstr.h"
25#include "llvm/CodeGen/Passes.h"
26#include "llvm/CodeGen/SSARegMap.h"
Alkis Evlogimenosa71e05a2003-12-18 13:15:02 +000027#include "llvm/CodeGen/TwoAddressInstructionPass.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000028#include "llvm/Target/MRegisterInfo.h"
29#include "llvm/Target/TargetInstrInfo.h"
30#include "llvm/Target/TargetMachine.h"
31#include "llvm/Target/TargetRegInfo.h"
32#include "llvm/Support/CFG.h"
33#include "Support/Debug.h"
34#include "Support/DepthFirstIterator.h"
35#include "Support/Statistic.h"
36#include <iostream>
37
38using namespace llvm;
39
40namespace {
41 RegisterAnalysis<LiveIntervals> X("liveintervals",
42 "Live Interval Analysis");
43
44 Statistic<> numIntervals("liveintervals", "Number of intervals");
45};
46
47void LiveIntervals::getAnalysisUsage(AnalysisUsage &AU) const
48{
Alkis Evlogimenosf6f91bf2003-12-15 04:55:38 +000049 AU.addPreserved<LiveVariables>();
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000050 AU.addRequired<LiveVariables>();
Alkis Evlogimenosf6f91bf2003-12-15 04:55:38 +000051 AU.addPreservedID(PHIEliminationID);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000052 AU.addRequiredID(PHIEliminationID);
Alkis Evlogimenosa71e05a2003-12-18 13:15:02 +000053 AU.addRequired<TwoAddressInstructionPass>();
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000054 MachineFunctionPass::getAnalysisUsage(AU);
55}
56
57/// runOnMachineFunction - Register allocate the whole function
58///
59bool LiveIntervals::runOnMachineFunction(MachineFunction &fn) {
60 DEBUG(std::cerr << "Machine Function\n");
61 mf_ = &fn;
62 tm_ = &fn.getTarget();
63 mri_ = tm_->getRegisterInfo();
64 lv_ = &getAnalysis<LiveVariables>();
65 allocatableRegisters_.clear();
66 mbbi2mbbMap_.clear();
67 mi2iMap_.clear();
68 r2iMap_.clear();
69 r2iMap_.clear();
70 intervals_.clear();
71
72 // mark allocatable registers
73 allocatableRegisters_.resize(MRegisterInfo::FirstVirtualRegister);
74 // Loop over all of the register classes...
75 for (MRegisterInfo::regclass_iterator
76 rci = mri_->regclass_begin(), rce = mri_->regclass_end();
77 rci != rce; ++rci) {
78 // Loop over all of the allocatable registers in the function...
79 for (TargetRegisterClass::iterator
80 i = (*rci)->allocation_order_begin(*mf_),
81 e = (*rci)->allocation_order_end(*mf_); i != e; ++i) {
82 allocatableRegisters_[*i] = true; // The reg is allocatable!
83 }
84 }
85
86 // number MachineInstrs
87 unsigned miIndex = 0;
88 for (MachineFunction::iterator mbb = mf_->begin(), mbbEnd = mf_->end();
89 mbb != mbbEnd; ++mbb) {
90 const std::pair<MachineBasicBlock*, unsigned>& entry =
91 lv_->getMachineBasicBlockInfo(&*mbb);
92 bool inserted = mbbi2mbbMap_.insert(std::make_pair(entry.second,
93 entry.first)).second;
94 assert(inserted && "multiple index -> MachineBasicBlock");
95
96 for (MachineBasicBlock::iterator mi = mbb->begin(), miEnd = mbb->end();
97 mi != miEnd; ++mi) {
98 inserted = mi2iMap_.insert(std::make_pair(*mi, miIndex)).second;
99 assert(inserted && "multiple MachineInstr -> index mappings");
100 ++miIndex;
101 }
102 }
103
104 computeIntervals();
105
106 return true;
107}
108
109void LiveIntervals::printRegName(unsigned reg) const
110{
111 if (reg < MRegisterInfo::FirstVirtualRegister)
112 std::cerr << mri_->getName(reg);
113 else
114 std::cerr << '%' << reg;
115}
116
117void LiveIntervals::handleVirtualRegisterDef(MachineBasicBlock* mbb,
118 MachineBasicBlock::iterator mi,
119 unsigned reg)
120{
121 DEBUG(std::cerr << "\t\t\tregister: ";printRegName(reg); std::cerr << '\n');
122
123 unsigned instrIndex = getInstructionIndex(*mi);
124
125 LiveVariables::VarInfo& vi = lv_->getVarInfo(reg);
126
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000127 Interval* interval = 0;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000128 Reg2IntervalMap::iterator r2iit = r2iMap_.find(reg);
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000129 if (r2iit == r2iMap_.end()) {
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000130 // add new interval
131 intervals_.push_back(Interval(reg));
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000132 // update interval index for this register
133 r2iMap_[reg] = intervals_.size() - 1;
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000134 interval = &intervals_.back();
135 }
136 else {
137 interval = &intervals_[r2iit->second];
138 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000139
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000140 for (MbbIndex2MbbMap::iterator
141 it = mbbi2mbbMap_.begin(), itEnd = mbbi2mbbMap_.end();
142 it != itEnd; ++it) {
143 unsigned liveBlockIndex = it->first;
144 MachineBasicBlock* liveBlock = it->second;
145 if (liveBlockIndex < vi.AliveBlocks.size() &&
146 vi.AliveBlocks[liveBlockIndex]) {
147 unsigned start = getInstructionIndex(liveBlock->front());
148 unsigned end = getInstructionIndex(liveBlock->back()) + 1;
149 interval->addRange(start, end);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000150 }
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000151 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000152
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000153 bool killedInDefiningBasicBlock = false;
154 for (int i = 0, e = vi.Kills.size(); i != e; ++i) {
155 MachineBasicBlock* killerBlock = vi.Kills[i].first;
156 MachineInstr* killerInstr = vi.Kills[i].second;
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000157 unsigned start = (mbb == killerBlock ?
158 instrIndex :
159 getInstructionIndex(killerBlock->front()));
160 unsigned end = getInstructionIndex(killerInstr) + 1;
Alkis Evlogimenos43f692f2003-12-18 08:53:43 +0000161 if (start < end) {
162 killedInDefiningBasicBlock |= mbb == killerBlock;
163 interval->addRange(start, end);
164 }
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000165 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000166
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000167 if (!killedInDefiningBasicBlock) {
168 unsigned end = getInstructionIndex(mbb->back()) + 1;
169 interval->addRange(instrIndex, end);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000170 }
171}
172
173void LiveIntervals::handlePhysicalRegisterDef(MachineBasicBlock* mbb,
174 MachineBasicBlock::iterator mi,
175 unsigned reg)
176{
177 DEBUG(std::cerr << "\t\t\tregister: ";printRegName(reg); std::cerr << '\n');
Alkis Evlogimenos4c214d22003-12-13 11:11:02 +0000178 if (!lv_->getAllocatablePhysicalRegisters()[reg]) {
179 DEBUG(std::cerr << "\t\t\t\tnon allocatable register: ignoring\n");
180 return;
181 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000182
183 unsigned start = getInstructionIndex(*mi);
184 unsigned end = start;
185
186 for (MachineBasicBlock::iterator e = mbb->end(); mi != e; ++mi) {
187 for (LiveVariables::killed_iterator
188 ki = lv_->dead_begin(*mi),
189 ke = lv_->dead_end(*mi);
190 ki != ke; ++ki) {
191 if (reg == ki->second) {
192 end = getInstructionIndex(ki->first) + 1;
193 goto exit;
194 }
195 }
196
197 for (LiveVariables::killed_iterator
198 ki = lv_->killed_begin(*mi),
199 ke = lv_->killed_end(*mi);
200 ki != ke; ++ki) {
201 if (reg == ki->second) {
202 end = getInstructionIndex(ki->first) + 1;
203 goto exit;
204 }
205 }
206 }
207exit:
208 assert(start < end && "did not find end of interval?");
209
210 Reg2IntervalMap::iterator r2iit = r2iMap_.find(reg);
211 if (r2iit != r2iMap_.end()) {
212 unsigned ii = r2iit->second;
213 Interval& interval = intervals_[ii];
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000214 interval.addRange(start, end);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000215 }
216 else {
217 intervals_.push_back(Interval(reg));
218 Interval& interval = intervals_.back();
219 // update interval index for this register
220 r2iMap_[reg] = intervals_.size() - 1;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000221 interval.addRange(start, end);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000222 }
223}
224
225void LiveIntervals::handleRegisterDef(MachineBasicBlock* mbb,
226 MachineBasicBlock::iterator mi,
227 unsigned reg)
228{
229 if (reg < MRegisterInfo::FirstVirtualRegister) {
230 if (allocatableRegisters_[reg]) {
231 handlePhysicalRegisterDef(mbb, mi, reg);
232 }
233 }
234 else {
235 handleVirtualRegisterDef(mbb, mi, reg);
236 }
237}
238
239unsigned LiveIntervals::getInstructionIndex(MachineInstr* instr) const
240{
241 assert(mi2iMap_.find(instr) != mi2iMap_.end() &&
242 "instruction not assigned a number");
243 return mi2iMap_.find(instr)->second;
244}
245
246/// computeIntervals - computes the live intervals for virtual
247/// registers. for some ordering of the machine instructions [1,N] a
248/// live interval is an interval [i, j] where 1 <= i <= j <= N for
249/// which a variable is live
250void LiveIntervals::computeIntervals()
251{
252 DEBUG(std::cerr << "computing live intervals:\n");
253
254 for (MbbIndex2MbbMap::iterator
255 it = mbbi2mbbMap_.begin(), itEnd = mbbi2mbbMap_.end();
256 it != itEnd; ++it) {
257 MachineBasicBlock* mbb = it->second;
258 DEBUG(std::cerr << "machine basic block: "
259 << mbb->getBasicBlock()->getName() << "\n");
260 for (MachineBasicBlock::iterator mi = mbb->begin(), miEnd = mbb->end();
261 mi != miEnd; ++mi) {
262 MachineInstr* instr = *mi;
263 const TargetInstrDescriptor& tid =
264 tm_->getInstrInfo().get(instr->getOpcode());
265 DEBUG(std::cerr << "\t\tinstruction["
266 << getInstructionIndex(instr) << "]: ";
267 instr->print(std::cerr, *tm_););
268
269 // handle implicit defs
270 for (const unsigned* id = tid.ImplicitDefs; *id; ++id) {
271 unsigned physReg = *id;
272 handlePhysicalRegisterDef(mbb, mi, physReg);
273 }
274
275 // handle explicit defs
276 for (int i = instr->getNumOperands() - 1; i >= 0; --i) {
277 MachineOperand& mop = instr->getOperand(i);
278
Alkis Evlogimenos9435eda2003-12-13 05:26:39 +0000279 if (!mop.isRegister())
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000280 continue;
281
Alkis Evlogimenos4d7af652003-12-14 13:24:17 +0000282 if (mop.isDef()) {
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000283 unsigned reg = mop.getAllocatedRegNum();
Alkis Evlogimenos9435eda2003-12-13 05:26:39 +0000284 if (reg < MRegisterInfo::FirstVirtualRegister)
285 handlePhysicalRegisterDef(mbb, mi, reg);
286 else
287 handleVirtualRegisterDef(mbb, mi, reg);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000288 }
289 }
290 }
291 }
292
Alkis Evlogimenos91ceae62003-12-05 10:32:01 +0000293 std::sort(intervals_.begin(), intervals_.end(), StartPointComp());
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000294 DEBUG(std::copy(intervals_.begin(), intervals_.end(),
295 std::ostream_iterator<Interval>(std::cerr, "\n")));
296}
Alkis Evlogimenosb27ef242003-12-05 10:38:28 +0000297
Alkis Evlogimenosdd2cc652003-12-18 08:48:48 +0000298void LiveIntervals::Interval::addRange(unsigned start, unsigned end)
299{
300 DEBUG(std::cerr << "\t\t\t\tadding range: [" << start <<','<< end << "]\n");
301 //assert(start < end && "invalid range?");
302 Range range = std::make_pair(start, end);
303 Ranges::iterator it =
304 ranges.insert(std::upper_bound(ranges.begin(), ranges.end(), range),
305 range);
306
307 DEBUG(std::cerr << "\t\t\t\tbefore merge forward: " << *this << '\n');
308 mergeRangesForward(it);
309 DEBUG(std::cerr << "\t\t\t\tbefore merge backward: " << *this << '\n');
310 mergeRangesBackward(it);
311 DEBUG(std::cerr << "\t\t\t\tafter merging: " << *this << '\n');
312}
313
314void LiveIntervals::Interval::mergeRangesForward(Ranges::iterator it)
315{
316 for (Ranges::iterator next = it + 1;
317 next != ranges.end() && it->second >= next->first; ) {
318 it->second = std::max(it->second, next->second);
319 next = ranges.erase(next);
320 }
321}
322
323void LiveIntervals::Interval::mergeRangesBackward(Ranges::iterator it)
324{
325 for (Ranges::iterator prev = it - 1;
326 it != ranges.begin() && it->first <= prev->second; ) {
327 it->first = std::min(it->first, prev->first);
328 it->second = std::max(it->second, prev->second);
329 it = ranges.erase(prev);
330 prev = it - 1;
331 }
332}
333
Alkis Evlogimenosb27ef242003-12-05 10:38:28 +0000334std::ostream& llvm::operator<<(std::ostream& os,
335 const LiveIntervals::Interval& li)
336{
337 os << "%reg" << li.reg << " = ";
338 for (LiveIntervals::Interval::Ranges::const_iterator
339 i = li.ranges.begin(), e = li.ranges.end(); i != e; ++i) {
340 os << "[" << i->first << "," << i->second << "]";
341 }
342 return os;
343}