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Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +00001//===-- RegAllocLinearScan.cpp - Linear Scan register allocator -----------===//
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 a linear scan register allocator.
11//
12//===----------------------------------------------------------------------===//
Alkis Evlogimenos0d6c5b62004-02-24 08:58:30 +000013
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000014#define DEBUG_TYPE "regalloc"
Chris Lattner3c3fe462005-09-21 04:19:09 +000015#include "llvm/CodeGen/LiveIntervalAnalysis.h"
Chris Lattnerb9805782005-08-23 22:27:31 +000016#include "PhysRegTracker.h"
17#include "VirtRegMap.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000018#include "llvm/Function.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000019#include "llvm/CodeGen/MachineFunctionPass.h"
20#include "llvm/CodeGen/MachineInstr.h"
21#include "llvm/CodeGen/Passes.h"
Jim Laskeyeb577ba2006-08-02 12:30:23 +000022#include "llvm/CodeGen/RegAllocRegistry.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000023#include "llvm/CodeGen/SSARegMap.h"
24#include "llvm/Target/MRegisterInfo.h"
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000025#include "llvm/Target/TargetMachine.h"
Chris Lattnerb9805782005-08-23 22:27:31 +000026#include "llvm/ADT/EquivalenceClasses.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000027#include "llvm/ADT/Statistic.h"
28#include "llvm/ADT/STLExtras.h"
Chris Lattnerb9805782005-08-23 22:27:31 +000029#include "llvm/Support/Debug.h"
Chris Lattnera4f0b3a2006-08-27 12:54:02 +000030#include "llvm/Support/Compiler.h"
Alkis Evlogimenos843b1602004-02-15 10:24:21 +000031#include <algorithm>
Alkis Evlogimenos26f5a692004-05-30 07:24:39 +000032#include <set>
Alkis Evlogimenos53eb3732004-07-22 08:14:44 +000033#include <queue>
Duraid Madina30059612005-12-28 04:55:42 +000034#include <memory>
Jeff Cohen97af7512006-12-02 02:22:01 +000035#include <cmath>
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000036using namespace llvm;
37
Chris Lattnercd3245a2006-12-19 22:41:21 +000038STATISTIC(NumIters , "Number of iterations performed");
39STATISTIC(NumBacktracks, "Number of times we had to backtrack");
40
41static RegisterRegAlloc
42linearscanRegAlloc("linearscan", " linear scan register allocator",
43 createLinearScanRegisterAllocator);
44
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000045namespace {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000046 static unsigned numIterations = 0;
47 static unsigned numIntervals = 0;
Alkis Evlogimenosc1560952004-07-04 17:23:35 +000048
Chris Lattnerf8c68f62006-06-28 22:17:39 +000049 struct VISIBILITY_HIDDEN RA : public MachineFunctionPass {
Chris Lattnercbb56252004-11-18 02:42:27 +000050 typedef std::pair<LiveInterval*, LiveInterval::iterator> IntervalPtr;
51 typedef std::vector<IntervalPtr> IntervalPtrs;
52 private:
Chris Lattnerb9805782005-08-23 22:27:31 +000053 /// RelatedRegClasses - This structure is built the first time a function is
54 /// compiled, and keeps track of which register classes have registers that
55 /// belong to multiple classes or have aliases that are in other classes.
56 EquivalenceClasses<const TargetRegisterClass*> RelatedRegClasses;
57 std::map<unsigned, const TargetRegisterClass*> OneClassForEachPhysReg;
58
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000059 MachineFunction* mf_;
60 const TargetMachine* tm_;
61 const MRegisterInfo* mri_;
62 LiveIntervals* li_;
Chris Lattnerb0f31bf2005-01-23 22:45:13 +000063 bool *PhysRegsUsed;
Chris Lattnercbb56252004-11-18 02:42:27 +000064
65 /// handled_ - Intervals are added to the handled_ set in the order of their
66 /// start value. This is uses for backtracking.
67 std::vector<LiveInterval*> handled_;
68
69 /// fixed_ - Intervals that correspond to machine registers.
70 ///
71 IntervalPtrs fixed_;
72
73 /// active_ - Intervals that are currently being processed, and which have a
74 /// live range active for the current point.
75 IntervalPtrs active_;
76
77 /// inactive_ - Intervals that are currently being processed, but which have
78 /// a hold at the current point.
79 IntervalPtrs inactive_;
80
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000081 typedef std::priority_queue<LiveInterval*,
Chris Lattnercbb56252004-11-18 02:42:27 +000082 std::vector<LiveInterval*>,
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000083 greater_ptr<LiveInterval> > IntervalHeap;
84 IntervalHeap unhandled_;
85 std::auto_ptr<PhysRegTracker> prt_;
86 std::auto_ptr<VirtRegMap> vrm_;
87 std::auto_ptr<Spiller> spiller_;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +000088
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000089 public:
90 virtual const char* getPassName() const {
91 return "Linear Scan Register Allocator";
92 }
93
94 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +000095 AU.addRequired<LiveIntervals>();
96 MachineFunctionPass::getAnalysisUsage(AU);
97 }
98
99 /// runOnMachineFunction - register allocate the whole function
100 bool runOnMachineFunction(MachineFunction&);
101
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000102 private:
103 /// linearScan - the linear scan algorithm
104 void linearScan();
105
Chris Lattnercbb56252004-11-18 02:42:27 +0000106 /// initIntervalSets - initialize the interval sets.
107 ///
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000108 void initIntervalSets();
109
Chris Lattnercbb56252004-11-18 02:42:27 +0000110 /// processActiveIntervals - expire old intervals and move non-overlapping
111 /// ones to the inactive list.
112 void processActiveIntervals(unsigned CurPoint);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000113
Chris Lattnercbb56252004-11-18 02:42:27 +0000114 /// processInactiveIntervals - expire old intervals and move overlapping
115 /// ones to the active list.
116 void processInactiveIntervals(unsigned CurPoint);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000117
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000118 /// assignRegOrStackSlotAtInterval - assign a register if one
119 /// is available, or spill.
120 void assignRegOrStackSlotAtInterval(LiveInterval* cur);
121
122 ///
123 /// register handling helpers
124 ///
125
Chris Lattnercbb56252004-11-18 02:42:27 +0000126 /// getFreePhysReg - return a free physical register for this virtual
127 /// register interval if we have one, otherwise return 0.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000128 unsigned getFreePhysReg(LiveInterval* cur);
129
130 /// assignVirt2StackSlot - assigns this virtual register to a
131 /// stack slot. returns the stack slot
132 int assignVirt2StackSlot(unsigned virtReg);
133
Chris Lattnerb9805782005-08-23 22:27:31 +0000134 void ComputeRelatedRegClasses();
135
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000136 template <typename ItTy>
137 void printIntervals(const char* const str, ItTy i, ItTy e) const {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000138 if (str) DOUT << str << " intervals:\n";
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000139 for (; i != e; ++i) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000140 DOUT << "\t" << *i->first << " -> ";
Chris Lattnercbb56252004-11-18 02:42:27 +0000141 unsigned reg = i->first->reg;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000142 if (MRegisterInfo::isVirtualRegister(reg)) {
143 reg = vrm_->getPhys(reg);
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000144 }
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000145 DOUT << mri_->getName(reg) << '\n';
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000146 }
147 }
148 };
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000149}
150
Chris Lattnerb9805782005-08-23 22:27:31 +0000151void RA::ComputeRelatedRegClasses() {
152 const MRegisterInfo &MRI = *mri_;
153
154 // First pass, add all reg classes to the union, and determine at least one
155 // reg class that each register is in.
156 bool HasAliases = false;
157 for (MRegisterInfo::regclass_iterator RCI = MRI.regclass_begin(),
158 E = MRI.regclass_end(); RCI != E; ++RCI) {
159 RelatedRegClasses.insert(*RCI);
160 for (TargetRegisterClass::iterator I = (*RCI)->begin(), E = (*RCI)->end();
161 I != E; ++I) {
162 HasAliases = HasAliases || *MRI.getAliasSet(*I) != 0;
163
164 const TargetRegisterClass *&PRC = OneClassForEachPhysReg[*I];
165 if (PRC) {
166 // Already processed this register. Just make sure we know that
167 // multiple register classes share a register.
168 RelatedRegClasses.unionSets(PRC, *RCI);
169 } else {
170 PRC = *RCI;
171 }
172 }
173 }
174
175 // Second pass, now that we know conservatively what register classes each reg
176 // belongs to, add info about aliases. We don't need to do this for targets
177 // without register aliases.
178 if (HasAliases)
179 for (std::map<unsigned, const TargetRegisterClass*>::iterator
180 I = OneClassForEachPhysReg.begin(), E = OneClassForEachPhysReg.end();
181 I != E; ++I)
182 for (const unsigned *AS = MRI.getAliasSet(I->first); *AS; ++AS)
183 RelatedRegClasses.unionSets(I->second, OneClassForEachPhysReg[*AS]);
184}
185
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000186bool RA::runOnMachineFunction(MachineFunction &fn) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000187 mf_ = &fn;
188 tm_ = &fn.getTarget();
189 mri_ = tm_->getRegisterInfo();
190 li_ = &getAnalysis<LiveIntervals>();
Chris Lattnerf348e3a2004-11-18 04:33:31 +0000191
Chris Lattnerb9805782005-08-23 22:27:31 +0000192 // If this is the first function compiled, compute the related reg classes.
193 if (RelatedRegClasses.empty())
194 ComputeRelatedRegClasses();
195
Chris Lattnerb0f31bf2005-01-23 22:45:13 +0000196 PhysRegsUsed = new bool[mri_->getNumRegs()];
197 std::fill(PhysRegsUsed, PhysRegsUsed+mri_->getNumRegs(), false);
198 fn.setUsedPhysRegs(PhysRegsUsed);
199
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000200 if (!prt_.get()) prt_.reset(new PhysRegTracker(*mri_));
201 vrm_.reset(new VirtRegMap(*mf_));
202 if (!spiller_.get()) spiller_.reset(createSpiller());
Alkis Evlogimenos169cfd02003-12-21 05:43:40 +0000203
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000204 initIntervalSets();
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000205
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000206 linearScan();
Alkis Evlogimenos0d6c5b62004-02-24 08:58:30 +0000207
Chris Lattnerb0f31bf2005-01-23 22:45:13 +0000208 // Rewrite spill code and update the PhysRegsUsed set.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000209 spiller_->runOnMachineFunction(*mf_, *vrm_);
Alkis Evlogimenos0d6c5b62004-02-24 08:58:30 +0000210
Chris Lattner510a3ea2004-09-30 02:02:33 +0000211 vrm_.reset(); // Free the VirtRegMap
Chris Lattnercbb56252004-11-18 02:42:27 +0000212
213
214 while (!unhandled_.empty()) unhandled_.pop();
215 fixed_.clear();
216 active_.clear();
217 inactive_.clear();
218 handled_.clear();
219
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000220 return true;
Alkis Evlogimenos0d6c5b62004-02-24 08:58:30 +0000221}
222
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000223/// initIntervalSets - initialize the interval sets.
224///
225void RA::initIntervalSets()
226{
227 assert(unhandled_.empty() && fixed_.empty() &&
228 active_.empty() && inactive_.empty() &&
229 "interval sets should be empty on initialization");
230
231 for (LiveIntervals::iterator i = li_->begin(), e = li_->end(); i != e; ++i) {
Chris Lattnerb0f31bf2005-01-23 22:45:13 +0000232 if (MRegisterInfo::isPhysicalRegister(i->second.reg)) {
233 PhysRegsUsed[i->second.reg] = true;
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000234 fixed_.push_back(std::make_pair(&i->second, i->second.begin()));
Chris Lattnerb0f31bf2005-01-23 22:45:13 +0000235 } else
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000236 unhandled_.push(&i->second);
237 }
238}
239
Alkis Evlogimenos0d6c5b62004-02-24 08:58:30 +0000240void RA::linearScan()
241{
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000242 // linear scan algorithm
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000243 DOUT << "********** LINEAR SCAN **********\n";
244 DOUT << "********** Function: " << mf_->getFunction()->getName() << '\n';
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000245
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000246 // DEBUG(printIntervals("unhandled", unhandled_.begin(), unhandled_.end()));
247 DEBUG(printIntervals("fixed", fixed_.begin(), fixed_.end()));
248 DEBUG(printIntervals("active", active_.begin(), active_.end()));
249 DEBUG(printIntervals("inactive", inactive_.begin(), inactive_.end()));
250
251 while (!unhandled_.empty()) {
252 // pick the interval with the earliest start point
253 LiveInterval* cur = unhandled_.top();
254 unhandled_.pop();
255 ++numIterations;
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000256 DOUT << "\n*** CURRENT ***: " << *cur << '\n';
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000257
Chris Lattnercbb56252004-11-18 02:42:27 +0000258 processActiveIntervals(cur->beginNumber());
259 processInactiveIntervals(cur->beginNumber());
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000260
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000261 assert(MRegisterInfo::isVirtualRegister(cur->reg) &&
262 "Can only allocate virtual registers!");
Misha Brukmanedf128a2005-04-21 22:36:52 +0000263
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000264 // Allocating a virtual register. try to find a free
265 // physical register or spill an interval (possibly this one) in order to
266 // assign it one.
267 assignRegOrStackSlotAtInterval(cur);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000268
Alkis Evlogimenos39a0d5c2004-02-20 06:15:40 +0000269 DEBUG(printIntervals("active", active_.begin(), active_.end()));
270 DEBUG(printIntervals("inactive", inactive_.begin(), inactive_.end()));
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000271 }
272 numIntervals += li_->getNumIntervals();
Chris Lattner4c7e2272006-12-06 01:48:55 +0000273 NumIters += numIterations;
Alkis Evlogimenos7d629b52004-01-07 09:20:58 +0000274
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000275 // expire any remaining active intervals
276 for (IntervalPtrs::reverse_iterator
277 i = active_.rbegin(); i != active_.rend(); ) {
Chris Lattnercbb56252004-11-18 02:42:27 +0000278 unsigned reg = i->first->reg;
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000279 DOUT << "\tinterval " << *i->first << " expired\n";
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000280 assert(MRegisterInfo::isVirtualRegister(reg) &&
281 "Can only allocate virtual registers!");
282 reg = vrm_->getPhys(reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000283 prt_->delRegUse(reg);
284 i = IntervalPtrs::reverse_iterator(active_.erase(i.base()-1));
285 }
Alkis Evlogimenos7d629b52004-01-07 09:20:58 +0000286
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000287 // expire any remaining inactive intervals
288 for (IntervalPtrs::reverse_iterator
289 i = inactive_.rbegin(); i != inactive_.rend(); ) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000290 DOUT << "\tinterval " << *i->first << " expired\n";
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000291 i = IntervalPtrs::reverse_iterator(inactive_.erase(i.base()-1));
292 }
Alkis Evlogimenosb7be1152004-01-13 20:42:08 +0000293
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000294 DOUT << *vrm_;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000295}
296
Chris Lattnercbb56252004-11-18 02:42:27 +0000297/// processActiveIntervals - expire old intervals and move non-overlapping ones
298/// to the inactive list.
299void RA::processActiveIntervals(unsigned CurPoint)
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000300{
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000301 DOUT << "\tprocessing active intervals:\n";
Chris Lattner23b71c12004-11-18 01:29:39 +0000302
Chris Lattnercbb56252004-11-18 02:42:27 +0000303 for (unsigned i = 0, e = active_.size(); i != e; ++i) {
304 LiveInterval *Interval = active_[i].first;
305 LiveInterval::iterator IntervalPos = active_[i].second;
306 unsigned reg = Interval->reg;
Alkis Evlogimenosed543732004-09-01 22:52:29 +0000307
Chris Lattnercbb56252004-11-18 02:42:27 +0000308 IntervalPos = Interval->advanceTo(IntervalPos, CurPoint);
309
310 if (IntervalPos == Interval->end()) { // Remove expired intervals.
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000311 DOUT << "\t\tinterval " << *Interval << " expired\n";
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000312 assert(MRegisterInfo::isVirtualRegister(reg) &&
313 "Can only allocate virtual registers!");
314 reg = vrm_->getPhys(reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000315 prt_->delRegUse(reg);
Chris Lattnercbb56252004-11-18 02:42:27 +0000316
317 // Pop off the end of the list.
318 active_[i] = active_.back();
319 active_.pop_back();
320 --i; --e;
Misha Brukmanedf128a2005-04-21 22:36:52 +0000321
Chris Lattnercbb56252004-11-18 02:42:27 +0000322 } else if (IntervalPos->start > CurPoint) {
323 // Move inactive intervals to inactive list.
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000324 DOUT << "\t\tinterval " << *Interval << " inactive\n";
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000325 assert(MRegisterInfo::isVirtualRegister(reg) &&
326 "Can only allocate virtual registers!");
327 reg = vrm_->getPhys(reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000328 prt_->delRegUse(reg);
Chris Lattnercbb56252004-11-18 02:42:27 +0000329 // add to inactive.
330 inactive_.push_back(std::make_pair(Interval, IntervalPos));
331
332 // Pop off the end of the list.
333 active_[i] = active_.back();
334 active_.pop_back();
335 --i; --e;
336 } else {
337 // Otherwise, just update the iterator position.
338 active_[i].second = IntervalPos;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000339 }
340 }
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000341}
342
Chris Lattnercbb56252004-11-18 02:42:27 +0000343/// processInactiveIntervals - expire old intervals and move overlapping
344/// ones to the active list.
345void RA::processInactiveIntervals(unsigned CurPoint)
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000346{
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000347 DOUT << "\tprocessing inactive intervals:\n";
Chris Lattner365b95f2004-11-18 04:13:02 +0000348
Chris Lattnercbb56252004-11-18 02:42:27 +0000349 for (unsigned i = 0, e = inactive_.size(); i != e; ++i) {
350 LiveInterval *Interval = inactive_[i].first;
351 LiveInterval::iterator IntervalPos = inactive_[i].second;
352 unsigned reg = Interval->reg;
Chris Lattner23b71c12004-11-18 01:29:39 +0000353
Chris Lattnercbb56252004-11-18 02:42:27 +0000354 IntervalPos = Interval->advanceTo(IntervalPos, CurPoint);
Misha Brukmanedf128a2005-04-21 22:36:52 +0000355
Chris Lattnercbb56252004-11-18 02:42:27 +0000356 if (IntervalPos == Interval->end()) { // remove expired intervals.
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000357 DOUT << "\t\tinterval " << *Interval << " expired\n";
Alkis Evlogimenos169cfd02003-12-21 05:43:40 +0000358
Chris Lattnercbb56252004-11-18 02:42:27 +0000359 // Pop off the end of the list.
360 inactive_[i] = inactive_.back();
361 inactive_.pop_back();
362 --i; --e;
363 } else if (IntervalPos->start <= CurPoint) {
364 // move re-activated intervals in active list
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000365 DOUT << "\t\tinterval " << *Interval << " active\n";
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000366 assert(MRegisterInfo::isVirtualRegister(reg) &&
367 "Can only allocate virtual registers!");
368 reg = vrm_->getPhys(reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000369 prt_->addRegUse(reg);
370 // add to active
Chris Lattnercbb56252004-11-18 02:42:27 +0000371 active_.push_back(std::make_pair(Interval, IntervalPos));
372
373 // Pop off the end of the list.
374 inactive_[i] = inactive_.back();
375 inactive_.pop_back();
376 --i; --e;
377 } else {
378 // Otherwise, just update the iterator position.
379 inactive_[i].second = IntervalPos;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000380 }
381 }
Alkis Evlogimenos169cfd02003-12-21 05:43:40 +0000382}
383
Chris Lattnercbb56252004-11-18 02:42:27 +0000384/// updateSpillWeights - updates the spill weights of the specifed physical
385/// register and its weight.
Misha Brukmanedf128a2005-04-21 22:36:52 +0000386static void updateSpillWeights(std::vector<float> &Weights,
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000387 unsigned reg, float weight,
388 const MRegisterInfo *MRI) {
389 Weights[reg] += weight;
390 for (const unsigned* as = MRI->getAliasSet(reg); *as; ++as)
391 Weights[*as] += weight;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000392}
393
Chris Lattnercbb56252004-11-18 02:42:27 +0000394static RA::IntervalPtrs::iterator FindIntervalInVector(RA::IntervalPtrs &IP,
395 LiveInterval *LI) {
396 for (RA::IntervalPtrs::iterator I = IP.begin(), E = IP.end(); I != E; ++I)
397 if (I->first == LI) return I;
398 return IP.end();
399}
400
Chris Lattner19828d42004-11-18 03:49:30 +0000401static void RevertVectorIteratorsTo(RA::IntervalPtrs &V, unsigned Point) {
402 for (unsigned i = 0, e = V.size(); i != e; ++i) {
403 RA::IntervalPtr &IP = V[i];
404 LiveInterval::iterator I = std::upper_bound(IP.first->begin(),
405 IP.second, Point);
406 if (I != IP.first->begin()) --I;
407 IP.second = I;
408 }
409}
Chris Lattnercbb56252004-11-18 02:42:27 +0000410
Chris Lattnercbb56252004-11-18 02:42:27 +0000411/// assignRegOrStackSlotAtInterval - assign a register if one is available, or
412/// spill.
Alkis Evlogimenos53eb3732004-07-22 08:14:44 +0000413void RA::assignRegOrStackSlotAtInterval(LiveInterval* cur)
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000414{
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000415 DOUT << "\tallocating current interval: ";
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000416
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000417 PhysRegTracker backupPrt = *prt_;
Alkis Evlogimenos169cfd02003-12-21 05:43:40 +0000418
Chris Lattnera6c17502005-08-22 20:20:42 +0000419 std::vector<std::pair<unsigned, float> > SpillWeightsToAdd;
Chris Lattner365b95f2004-11-18 04:13:02 +0000420 unsigned StartPosition = cur->beginNumber();
Chris Lattnerb9805782005-08-23 22:27:31 +0000421 const TargetRegisterClass *RC = mf_->getSSARegMap()->getRegClass(cur->reg);
422 const TargetRegisterClass *RCLeader = RelatedRegClasses.getLeaderValue(RC);
423
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000424 // for every interval in inactive we overlap with, mark the
Chris Lattnera6c17502005-08-22 20:20:42 +0000425 // register as not free and update spill weights.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000426 for (IntervalPtrs::const_iterator i = inactive_.begin(),
427 e = inactive_.end(); i != e; ++i) {
Chris Lattnerb9805782005-08-23 22:27:31 +0000428 unsigned Reg = i->first->reg;
429 assert(MRegisterInfo::isVirtualRegister(Reg) &&
430 "Can only allocate virtual registers!");
431 const TargetRegisterClass *RegRC = mf_->getSSARegMap()->getRegClass(Reg);
432 // If this is not in a related reg class to the register we're allocating,
433 // don't check it.
434 if (RelatedRegClasses.getLeaderValue(RegRC) == RCLeader &&
435 cur->overlapsFrom(*i->first, i->second-1)) {
436 Reg = vrm_->getPhys(Reg);
437 prt_->addRegUse(Reg);
438 SpillWeightsToAdd.push_back(std::make_pair(Reg, i->first->weight));
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000439 }
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000440 }
Chris Lattnera411cbc2005-08-22 20:59:30 +0000441
442 // Speculatively check to see if we can get a register right now. If not,
443 // we know we won't be able to by adding more constraints. If so, we can
444 // check to see if it is valid. Doing an exhaustive search of the fixed_ list
445 // is very bad (it contains all callee clobbered registers for any functions
446 // with a call), so we want to avoid doing that if possible.
447 unsigned physReg = getFreePhysReg(cur);
448 if (physReg) {
449 // We got a register. However, if it's in the fixed_ list, we might
Chris Lattnere836ad62005-08-30 21:03:36 +0000450 // conflict with it. Check to see if we conflict with it or any of its
451 // aliases.
452 std::set<unsigned> RegAliases;
453 for (const unsigned *AS = mri_->getAliasSet(physReg); *AS; ++AS)
454 RegAliases.insert(*AS);
455
Chris Lattnera411cbc2005-08-22 20:59:30 +0000456 bool ConflictsWithFixed = false;
457 for (unsigned i = 0, e = fixed_.size(); i != e; ++i) {
Jim Laskeye719d9f2006-10-24 14:35:25 +0000458 IntervalPtr &IP = fixed_[i];
459 if (physReg == IP.first->reg || RegAliases.count(IP.first->reg)) {
Chris Lattnera411cbc2005-08-22 20:59:30 +0000460 // Okay, this reg is on the fixed list. Check to see if we actually
461 // conflict.
Chris Lattnera411cbc2005-08-22 20:59:30 +0000462 LiveInterval *I = IP.first;
463 if (I->endNumber() > StartPosition) {
464 LiveInterval::iterator II = I->advanceTo(IP.second, StartPosition);
465 IP.second = II;
466 if (II != I->begin() && II->start > StartPosition)
467 --II;
Chris Lattnere836ad62005-08-30 21:03:36 +0000468 if (cur->overlapsFrom(*I, II)) {
Chris Lattnera411cbc2005-08-22 20:59:30 +0000469 ConflictsWithFixed = true;
Chris Lattnere836ad62005-08-30 21:03:36 +0000470 break;
471 }
Chris Lattnera411cbc2005-08-22 20:59:30 +0000472 }
Chris Lattnerf348e3a2004-11-18 04:33:31 +0000473 }
Alkis Evlogimenos169cfd02003-12-21 05:43:40 +0000474 }
Chris Lattnera411cbc2005-08-22 20:59:30 +0000475
476 // Okay, the register picked by our speculative getFreePhysReg call turned
477 // out to be in use. Actually add all of the conflicting fixed registers to
478 // prt so we can do an accurate query.
479 if (ConflictsWithFixed) {
Chris Lattnerb9805782005-08-23 22:27:31 +0000480 // For every interval in fixed we overlap with, mark the register as not
481 // free and update spill weights.
Chris Lattnera411cbc2005-08-22 20:59:30 +0000482 for (unsigned i = 0, e = fixed_.size(); i != e; ++i) {
483 IntervalPtr &IP = fixed_[i];
484 LiveInterval *I = IP.first;
Chris Lattnerb9805782005-08-23 22:27:31 +0000485
486 const TargetRegisterClass *RegRC = OneClassForEachPhysReg[I->reg];
487 if (RelatedRegClasses.getLeaderValue(RegRC) == RCLeader &&
488 I->endNumber() > StartPosition) {
Chris Lattnera411cbc2005-08-22 20:59:30 +0000489 LiveInterval::iterator II = I->advanceTo(IP.second, StartPosition);
490 IP.second = II;
491 if (II != I->begin() && II->start > StartPosition)
492 --II;
493 if (cur->overlapsFrom(*I, II)) {
494 unsigned reg = I->reg;
495 prt_->addRegUse(reg);
496 SpillWeightsToAdd.push_back(std::make_pair(reg, I->weight));
497 }
498 }
499 }
Alkis Evlogimenos169cfd02003-12-21 05:43:40 +0000500
Chris Lattnera411cbc2005-08-22 20:59:30 +0000501 // Using the newly updated prt_ object, which includes conflicts in the
502 // future, see if there are any registers available.
503 physReg = getFreePhysReg(cur);
504 }
505 }
506
Chris Lattnera6c17502005-08-22 20:20:42 +0000507 // Restore the physical register tracker, removing information about the
508 // future.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000509 *prt_ = backupPrt;
Chris Lattnera6c17502005-08-22 20:20:42 +0000510
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000511 // if we find a free register, we are done: assign this virtual to
512 // the free physical register and add this interval to the active
513 // list.
514 if (physReg) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000515 DOUT << mri_->getName(physReg) << '\n';
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000516 vrm_->assignVirt2Phys(cur->reg, physReg);
517 prt_->addRegUse(physReg);
Chris Lattnercbb56252004-11-18 02:42:27 +0000518 active_.push_back(std::make_pair(cur, cur->begin()));
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000519 handled_.push_back(cur);
520 return;
521 }
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000522 DOUT << "no free registers\n";
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000523
Chris Lattnera6c17502005-08-22 20:20:42 +0000524 // Compile the spill weights into an array that is better for scanning.
525 std::vector<float> SpillWeights(mri_->getNumRegs(), 0.0);
526 for (std::vector<std::pair<unsigned, float> >::iterator
527 I = SpillWeightsToAdd.begin(), E = SpillWeightsToAdd.end(); I != E; ++I)
528 updateSpillWeights(SpillWeights, I->first, I->second, mri_);
529
530 // for each interval in active, update spill weights.
531 for (IntervalPtrs::const_iterator i = active_.begin(), e = active_.end();
532 i != e; ++i) {
533 unsigned reg = i->first->reg;
534 assert(MRegisterInfo::isVirtualRegister(reg) &&
535 "Can only allocate virtual registers!");
536 reg = vrm_->getPhys(reg);
537 updateSpillWeights(SpillWeights, reg, i->first->weight, mri_);
538 }
539
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000540 DOUT << "\tassigning stack slot at interval "<< *cur << ":\n";
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000541
Chris Lattnerc8e2c552006-03-25 23:00:56 +0000542 // Find a register to spill.
Jim Laskey7902c752006-11-07 12:25:45 +0000543 float minWeight = HUGE_VALF;
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000544 unsigned minReg = 0;
Chris Lattnerb9805782005-08-23 22:27:31 +0000545 for (TargetRegisterClass::iterator i = RC->allocation_order_begin(*mf_),
546 e = RC->allocation_order_end(*mf_); i != e; ++i) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000547 unsigned reg = *i;
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000548 if (minWeight > SpillWeights[reg]) {
549 minWeight = SpillWeights[reg];
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000550 minReg = reg;
Alkis Evlogimenos3bf564a2003-12-23 18:00:33 +0000551 }
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000552 }
Chris Lattnerc8e2c552006-03-25 23:00:56 +0000553
554 // If we didn't find a register that is spillable, try aliases?
Evan Cheng3b6d56c2006-05-12 19:07:46 +0000555 if (!minReg) {
556 for (TargetRegisterClass::iterator i = RC->allocation_order_begin(*mf_),
557 e = RC->allocation_order_end(*mf_); i != e; ++i) {
558 unsigned reg = *i;
559 // No need to worry about if the alias register size < regsize of RC.
560 // We are going to spill all registers that alias it anyway.
561 for (const unsigned* as = mri_->getAliasSet(reg); *as; ++as) {
562 if (minWeight > SpillWeights[*as]) {
563 minWeight = SpillWeights[*as];
564 minReg = *as;
565 }
566 }
567 }
568
569 // All registers must have inf weight. Just grab one!
570 if (!minReg)
571 minReg = *RC->allocation_order_begin(*mf_);
572 }
Chris Lattnerc8e2c552006-03-25 23:00:56 +0000573
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000574 DOUT << "\t\tregister with min weight: "
575 << mri_->getName(minReg) << " (" << minWeight << ")\n";
Alkis Evlogimenos3bf564a2003-12-23 18:00:33 +0000576
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000577 // if the current has the minimum weight, we need to spill it and
578 // add any added intervals back to unhandled, and restart
579 // linearscan.
Jim Laskey7902c752006-11-07 12:25:45 +0000580 if (cur->weight != HUGE_VALF && cur->weight <= minWeight) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000581 DOUT << "\t\t\tspilling(c): " << *cur << '\n';
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000582 int slot = vrm_->assignVirt2StackSlot(cur->reg);
583 std::vector<LiveInterval*> added =
584 li_->addIntervalsForSpills(*cur, *vrm_, slot);
585 if (added.empty())
586 return; // Early exit if all spills were folded.
Alkis Evlogimenosf5eaf162004-02-06 18:08:18 +0000587
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000588 // Merge added with unhandled. Note that we know that
589 // addIntervalsForSpills returns intervals sorted by their starting
590 // point.
Alkis Evlogimenos53eb3732004-07-22 08:14:44 +0000591 for (unsigned i = 0, e = added.size(); i != e; ++i)
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000592 unhandled_.push(added[i]);
593 return;
594 }
595
Chris Lattner19828d42004-11-18 03:49:30 +0000596 ++NumBacktracks;
597
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000598 // push the current interval back to unhandled since we are going
599 // to re-run at least this iteration. Since we didn't modify it it
600 // should go back right in the front of the list
601 unhandled_.push(cur);
602
603 // otherwise we spill all intervals aliasing the register with
604 // minimum weight, rollback to the interval with the earliest
605 // start point and let the linear scan algorithm run again
606 std::vector<LiveInterval*> added;
607 assert(MRegisterInfo::isPhysicalRegister(minReg) &&
608 "did not choose a register to spill?");
609 std::vector<bool> toSpill(mri_->getNumRegs(), false);
Chris Lattner19828d42004-11-18 03:49:30 +0000610
611 // We are going to spill minReg and all its aliases.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000612 toSpill[minReg] = true;
613 for (const unsigned* as = mri_->getAliasSet(minReg); *as; ++as)
614 toSpill[*as] = true;
615
616 // the earliest start of a spilled interval indicates up to where
617 // in handled we need to roll back
Chris Lattner23b71c12004-11-18 01:29:39 +0000618 unsigned earliestStart = cur->beginNumber();
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000619
620 // set of spilled vregs (used later to rollback properly)
621 std::set<unsigned> spilled;
622
Chris Lattner19828d42004-11-18 03:49:30 +0000623 // spill live intervals of virtual regs mapped to the physical register we
624 // want to clear (and its aliases). We only spill those that overlap with the
625 // current interval as the rest do not affect its allocation. we also keep
626 // track of the earliest start of all spilled live intervals since this will
627 // mark our rollback point.
628 for (IntervalPtrs::iterator i = active_.begin(); i != active_.end(); ++i) {
Chris Lattnercbb56252004-11-18 02:42:27 +0000629 unsigned reg = i->first->reg;
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000630 if (//MRegisterInfo::isVirtualRegister(reg) &&
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000631 toSpill[vrm_->getPhys(reg)] &&
Chris Lattner19828d42004-11-18 03:49:30 +0000632 cur->overlapsFrom(*i->first, i->second)) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000633 DOUT << "\t\t\tspilling(a): " << *i->first << '\n';
Chris Lattnercbb56252004-11-18 02:42:27 +0000634 earliestStart = std::min(earliestStart, i->first->beginNumber());
635 int slot = vrm_->assignVirt2StackSlot(i->first->reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000636 std::vector<LiveInterval*> newIs =
Chris Lattnercbb56252004-11-18 02:42:27 +0000637 li_->addIntervalsForSpills(*i->first, *vrm_, slot);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000638 std::copy(newIs.begin(), newIs.end(), std::back_inserter(added));
639 spilled.insert(reg);
640 }
641 }
Chris Lattner19828d42004-11-18 03:49:30 +0000642 for (IntervalPtrs::iterator i = inactive_.begin(); i != inactive_.end(); ++i){
Chris Lattnercbb56252004-11-18 02:42:27 +0000643 unsigned reg = i->first->reg;
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000644 if (//MRegisterInfo::isVirtualRegister(reg) &&
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000645 toSpill[vrm_->getPhys(reg)] &&
Chris Lattner19828d42004-11-18 03:49:30 +0000646 cur->overlapsFrom(*i->first, i->second-1)) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000647 DOUT << "\t\t\tspilling(i): " << *i->first << '\n';
Chris Lattnercbb56252004-11-18 02:42:27 +0000648 earliestStart = std::min(earliestStart, i->first->beginNumber());
649 int slot = vrm_->assignVirt2StackSlot(reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000650 std::vector<LiveInterval*> newIs =
Chris Lattnercbb56252004-11-18 02:42:27 +0000651 li_->addIntervalsForSpills(*i->first, *vrm_, slot);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000652 std::copy(newIs.begin(), newIs.end(), std::back_inserter(added));
653 spilled.insert(reg);
654 }
655 }
656
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000657 DOUT << "\t\trolling back to: " << earliestStart << '\n';
Chris Lattnercbb56252004-11-18 02:42:27 +0000658
659 // Scan handled in reverse order up to the earliest start of a
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000660 // spilled live interval and undo each one, restoring the state of
Chris Lattnercbb56252004-11-18 02:42:27 +0000661 // unhandled.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000662 while (!handled_.empty()) {
663 LiveInterval* i = handled_.back();
Chris Lattnercbb56252004-11-18 02:42:27 +0000664 // If this interval starts before t we are done.
Chris Lattner23b71c12004-11-18 01:29:39 +0000665 if (i->beginNumber() < earliestStart)
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000666 break;
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000667 DOUT << "\t\t\tundo changes for: " << *i << '\n';
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000668 handled_.pop_back();
Chris Lattnercbb56252004-11-18 02:42:27 +0000669
670 // When undoing a live interval allocation we must know if it is active or
671 // inactive to properly update the PhysRegTracker and the VirtRegMap.
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000672 IntervalPtrs::iterator it;
Chris Lattnercbb56252004-11-18 02:42:27 +0000673 if ((it = FindIntervalInVector(active_, i)) != active_.end()) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000674 active_.erase(it);
Chris Lattnerffab4222006-02-23 06:44:17 +0000675 assert(!MRegisterInfo::isPhysicalRegister(i->reg));
676 if (!spilled.count(i->reg))
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000677 unhandled_.push(i);
Chris Lattnerffab4222006-02-23 06:44:17 +0000678 prt_->delRegUse(vrm_->getPhys(i->reg));
679 vrm_->clearVirt(i->reg);
Chris Lattnercbb56252004-11-18 02:42:27 +0000680 } else if ((it = FindIntervalInVector(inactive_, i)) != inactive_.end()) {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000681 inactive_.erase(it);
Chris Lattnerffab4222006-02-23 06:44:17 +0000682 assert(!MRegisterInfo::isPhysicalRegister(i->reg));
683 if (!spilled.count(i->reg))
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000684 unhandled_.push(i);
Chris Lattnerffab4222006-02-23 06:44:17 +0000685 vrm_->clearVirt(i->reg);
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000686 } else {
687 assert(MRegisterInfo::isVirtualRegister(i->reg) &&
688 "Can only allocate virtual registers!");
689 vrm_->clearVirt(i->reg);
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000690 unhandled_.push(i);
691 }
692 }
693
Chris Lattner19828d42004-11-18 03:49:30 +0000694 // Rewind the iterators in the active, inactive, and fixed lists back to the
695 // point we reverted to.
696 RevertVectorIteratorsTo(active_, earliestStart);
697 RevertVectorIteratorsTo(inactive_, earliestStart);
698 RevertVectorIteratorsTo(fixed_, earliestStart);
699
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000700 // scan the rest and undo each interval that expired after t and
701 // insert it in active (the next iteration of the algorithm will
702 // put it in inactive if required)
Chris Lattnercbb56252004-11-18 02:42:27 +0000703 for (unsigned i = 0, e = handled_.size(); i != e; ++i) {
704 LiveInterval *HI = handled_[i];
705 if (!HI->expiredAt(earliestStart) &&
706 HI->expiredAt(cur->beginNumber())) {
Bill Wendling54fcc7f2006-11-17 00:50:36 +0000707 DOUT << "\t\t\tundo changes for: " << *HI << '\n';
Chris Lattnercbb56252004-11-18 02:42:27 +0000708 active_.push_back(std::make_pair(HI, HI->begin()));
Chris Lattnerffab4222006-02-23 06:44:17 +0000709 assert(!MRegisterInfo::isPhysicalRegister(HI->reg));
710 prt_->addRegUse(vrm_->getPhys(HI->reg));
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000711 }
712 }
713
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000714 // merge added with unhandled
715 for (unsigned i = 0, e = added.size(); i != e; ++i)
716 unhandled_.push(added[i]);
Alkis Evlogimenos843b1602004-02-15 10:24:21 +0000717}
Alkis Evlogimenosf5eaf162004-02-06 18:08:18 +0000718
Chris Lattnercbb56252004-11-18 02:42:27 +0000719/// getFreePhysReg - return a free physical register for this virtual register
720/// interval if we have one, otherwise return 0.
Chris Lattnerffab4222006-02-23 06:44:17 +0000721unsigned RA::getFreePhysReg(LiveInterval *cur) {
Alkis Evlogimenos84f5bcb2004-09-02 21:23:32 +0000722 std::vector<unsigned> inactiveCounts(mri_->getNumRegs(), 0);
Chris Lattnerf8355d92005-08-22 16:55:22 +0000723 unsigned MaxInactiveCount = 0;
724
Chris Lattnerb9805782005-08-23 22:27:31 +0000725 const TargetRegisterClass *RC = mf_->getSSARegMap()->getRegClass(cur->reg);
726 const TargetRegisterClass *RCLeader = RelatedRegClasses.getLeaderValue(RC);
727
Alkis Evlogimenos84f5bcb2004-09-02 21:23:32 +0000728 for (IntervalPtrs::iterator i = inactive_.begin(), e = inactive_.end();
729 i != e; ++i) {
Chris Lattnercbb56252004-11-18 02:42:27 +0000730 unsigned reg = i->first->reg;
Chris Lattnerc8b9f332004-11-18 06:01:45 +0000731 assert(MRegisterInfo::isVirtualRegister(reg) &&
732 "Can only allocate virtual registers!");
Chris Lattnerb9805782005-08-23 22:27:31 +0000733
734 // If this is not in a related reg class to the register we're allocating,
735 // don't check it.
736 const TargetRegisterClass *RegRC = mf_->getSSARegMap()->getRegClass(reg);
737 if (RelatedRegClasses.getLeaderValue(RegRC) == RCLeader) {
738 reg = vrm_->getPhys(reg);
739 ++inactiveCounts[reg];
740 MaxInactiveCount = std::max(MaxInactiveCount, inactiveCounts[reg]);
741 }
Alkis Evlogimenos84f5bcb2004-09-02 21:23:32 +0000742 }
743
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000744 const TargetRegisterClass* rc = mf_->getSSARegMap()->getRegClass(cur->reg);
Alkis Evlogimenos26bfc082003-12-28 17:58:18 +0000745
Chris Lattnerf8355d92005-08-22 16:55:22 +0000746 unsigned FreeReg = 0;
747 unsigned FreeRegInactiveCount = 0;
748
749 // Scan for the first available register.
750 TargetRegisterClass::iterator I = rc->allocation_order_begin(*mf_);
751 TargetRegisterClass::iterator E = rc->allocation_order_end(*mf_);
752 for (; I != E; ++I)
753 if (prt_->isRegAvail(*I)) {
754 FreeReg = *I;
755 FreeRegInactiveCount = inactiveCounts[FreeReg];
756 break;
757 }
758
759 // If there are no free regs, or if this reg has the max inactive count,
760 // return this register.
761 if (FreeReg == 0 || FreeRegInactiveCount == MaxInactiveCount) return FreeReg;
762
763 // Continue scanning the registers, looking for the one with the highest
764 // inactive count. Alkis found that this reduced register pressure very
765 // slightly on X86 (in rev 1.94 of this file), though this should probably be
766 // reevaluated now.
767 for (; I != E; ++I) {
768 unsigned Reg = *I;
769 if (prt_->isRegAvail(Reg) && FreeRegInactiveCount < inactiveCounts[Reg]) {
770 FreeReg = Reg;
771 FreeRegInactiveCount = inactiveCounts[Reg];
772 if (FreeRegInactiveCount == MaxInactiveCount)
773 break; // We found the one with the max inactive count.
774 }
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000775 }
Chris Lattnerf8355d92005-08-22 16:55:22 +0000776
777 return FreeReg;
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000778}
779
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000780FunctionPass* llvm::createLinearScanRegisterAllocator() {
Alkis Evlogimenos1a8ea012004-08-04 09:46:26 +0000781 return new RA();
Alkis Evlogimenosff0cbe12003-11-20 03:32:25 +0000782}