blob: efe838186bdf6435139c7bced6f23d7429f35a1b [file] [log] [blame]
Owen Anderson0bda0e82007-10-31 03:37:57 +00001//===- StrongPhiElimination.cpp - Eliminate PHI nodes by inserting copies -===//
2//
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.
Owen Anderson0bda0e82007-10-31 03:37:57 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This pass eliminates machine instruction PHI nodes by inserting copy
11// instructions, using an intelligent copy-folding technique based on
12// dominator information. This is technique is derived from:
13//
14// Budimlic, et al. Fast copy coalescing and live-range identification.
15// In Proceedings of the ACM SIGPLAN 2002 Conference on Programming Language
16// Design and Implementation (Berlin, Germany, June 17 - 19, 2002).
17// PLDI '02. ACM, New York, NY, 25-32.
18// DOI= http://doi.acm.org/10.1145/512529.512534
19//
20//===----------------------------------------------------------------------===//
21
22#define DEBUG_TYPE "strongphielim"
23#include "llvm/CodeGen/Passes.h"
Owen Anderson83430bc2007-11-04 22:33:26 +000024#include "llvm/CodeGen/LiveVariables.h"
Owen Anderson0bda0e82007-10-31 03:37:57 +000025#include "llvm/CodeGen/MachineDominators.h"
26#include "llvm/CodeGen/MachineFunctionPass.h"
27#include "llvm/CodeGen/MachineInstr.h"
Owen Anderson0d893b42008-01-08 05:16:15 +000028#include "llvm/CodeGen/MachineRegisterInfo.h"
Owen Anderson0bda0e82007-10-31 03:37:57 +000029#include "llvm/Target/TargetInstrInfo.h"
30#include "llvm/Target/TargetMachine.h"
Owen Andersonefbcebc2007-12-23 15:37:26 +000031#include "llvm/ADT/DepthFirstIterator.h"
Owen Anderson0bda0e82007-10-31 03:37:57 +000032#include "llvm/ADT/Statistic.h"
33#include "llvm/Support/Compiler.h"
34using namespace llvm;
35
36
37namespace {
38 struct VISIBILITY_HIDDEN StrongPHIElimination : public MachineFunctionPass {
39 static char ID; // Pass identification, replacement for typeid
40 StrongPHIElimination() : MachineFunctionPass((intptr_t)&ID) {}
41
Owen Andersonafc6de02007-12-10 08:07:09 +000042 DenseMap<MachineBasicBlock*,
Owen Andersonefbcebc2007-12-23 15:37:26 +000043 std::map<unsigned, unsigned> > Waiting;
44
45 std::map<unsigned, std::vector<unsigned> > Stacks;
46 std::set<unsigned> UsedByAnother;
Owen Anderson0c5714b2008-01-08 21:54:52 +000047 std::map<unsigned, std::set<unsigned> > RenameSets;
Owen Andersonafc6de02007-12-10 08:07:09 +000048
Owen Andersona4ad2e72007-11-06 04:49:43 +000049 bool runOnMachineFunction(MachineFunction &Fn);
50
Owen Anderson0bda0e82007-10-31 03:37:57 +000051 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
52 AU.addRequired<MachineDominatorTree>();
Owen Andersona4ad2e72007-11-06 04:49:43 +000053 AU.addRequired<LiveVariables>();
Owen Anderson0bda0e82007-10-31 03:37:57 +000054 MachineFunctionPass::getAnalysisUsage(AU);
55 }
56
57 virtual void releaseMemory() {
58 preorder.clear();
59 maxpreorder.clear();
Owen Andersona4ad2e72007-11-06 04:49:43 +000060
Owen Andersonefbcebc2007-12-23 15:37:26 +000061 Waiting.clear();
Owen Anderson0bda0e82007-10-31 03:37:57 +000062 }
63
64 private:
Owen Anderson83430bc2007-11-04 22:33:26 +000065 struct DomForestNode {
66 private:
67 std::vector<DomForestNode*> children;
Owen Andersonee49b532007-11-06 05:22:43 +000068 unsigned reg;
Owen Anderson83430bc2007-11-04 22:33:26 +000069
70 void addChild(DomForestNode* DFN) { children.push_back(DFN); }
71
72 public:
73 typedef std::vector<DomForestNode*>::iterator iterator;
74
Owen Andersonee49b532007-11-06 05:22:43 +000075 DomForestNode(unsigned r, DomForestNode* parent) : reg(r) {
Owen Anderson83430bc2007-11-04 22:33:26 +000076 if (parent)
77 parent->addChild(this);
78 }
79
Owen Andersona4ad2e72007-11-06 04:49:43 +000080 ~DomForestNode() {
81 for (iterator I = begin(), E = end(); I != E; ++I)
82 delete *I;
83 }
Owen Anderson83430bc2007-11-04 22:33:26 +000084
Owen Andersonee49b532007-11-06 05:22:43 +000085 inline unsigned getReg() { return reg; }
Owen Andersona4ad2e72007-11-06 04:49:43 +000086
87 inline DomForestNode::iterator begin() { return children.begin(); }
88 inline DomForestNode::iterator end() { return children.end(); }
Owen Anderson83430bc2007-11-04 22:33:26 +000089 };
90
Owen Anderson0bda0e82007-10-31 03:37:57 +000091 DenseMap<MachineBasicBlock*, unsigned> preorder;
92 DenseMap<MachineBasicBlock*, unsigned> maxpreorder;
93
Owen Andersona4ad2e72007-11-06 04:49:43 +000094
Owen Anderson0bda0e82007-10-31 03:37:57 +000095 void computeDFS(MachineFunction& MF);
Owen Anderson60a877d2007-11-07 05:17:15 +000096 void processBlock(MachineBasicBlock* MBB);
Owen Anderson83430bc2007-11-04 22:33:26 +000097
Owen Andersonee49b532007-11-06 05:22:43 +000098 std::vector<DomForestNode*> computeDomForest(std::set<unsigned>& instrs);
Owen Andersond525f662007-12-11 20:12:11 +000099 void processPHIUnion(MachineInstr* Inst,
100 std::set<unsigned>& PHIUnion,
Owen Anderson62d67dd2007-12-13 05:53:03 +0000101 std::vector<StrongPHIElimination::DomForestNode*>& DF,
102 std::vector<std::pair<unsigned, unsigned> >& locals);
Owen Andersonf1519e82007-12-24 22:12:23 +0000103 void ScheduleCopies(MachineBasicBlock* MBB, std::set<unsigned>& pushed);
Owen Anderson719fef62008-01-09 10:32:30 +0000104 void InsertCopies(MachineBasicBlock* MBB, std::set<MachineBasicBlock*>& v);
Owen Anderson0bda0e82007-10-31 03:37:57 +0000105 };
106
107 char StrongPHIElimination::ID = 0;
108 RegisterPass<StrongPHIElimination> X("strong-phi-node-elimination",
109 "Eliminate PHI nodes for register allocation, intelligently");
110}
111
112const PassInfo *llvm::StrongPHIEliminationID = X.getPassInfo();
113
114/// computeDFS - Computes the DFS-in and DFS-out numbers of the dominator tree
115/// of the given MachineFunction. These numbers are then used in other parts
116/// of the PHI elimination process.
117void StrongPHIElimination::computeDFS(MachineFunction& MF) {
118 SmallPtrSet<MachineDomTreeNode*, 8> frontier;
119 SmallPtrSet<MachineDomTreeNode*, 8> visited;
120
121 unsigned time = 0;
122
123 MachineDominatorTree& DT = getAnalysis<MachineDominatorTree>();
124
125 MachineDomTreeNode* node = DT.getRootNode();
126
127 std::vector<MachineDomTreeNode*> worklist;
128 worklist.push_back(node);
129
130 while (!worklist.empty()) {
131 MachineDomTreeNode* currNode = worklist.back();
132
133 if (!frontier.count(currNode)) {
134 frontier.insert(currNode);
135 ++time;
136 preorder.insert(std::make_pair(currNode->getBlock(), time));
137 }
138
139 bool inserted = false;
140 for (MachineDomTreeNode::iterator I = node->begin(), E = node->end();
141 I != E; ++I)
142 if (!frontier.count(*I) && !visited.count(*I)) {
143 worklist.push_back(*I);
144 inserted = true;
145 break;
146 }
147
148 if (!inserted) {
149 frontier.erase(currNode);
150 visited.insert(currNode);
151 maxpreorder.insert(std::make_pair(currNode->getBlock(), time));
152
153 worklist.pop_back();
154 }
155 }
Duncan Sands1bd32712007-10-31 08:49:24 +0000156}
Owen Anderson83430bc2007-11-04 22:33:26 +0000157
Owen Anderson8b96b9f2007-11-06 05:26:02 +0000158/// PreorderSorter - a helper class that is used to sort registers
159/// according to the preorder number of their defining blocks
Owen Anderson83430bc2007-11-04 22:33:26 +0000160class PreorderSorter {
161private:
162 DenseMap<MachineBasicBlock*, unsigned>& preorder;
Owen Andersonee49b532007-11-06 05:22:43 +0000163 LiveVariables& LV;
Owen Anderson83430bc2007-11-04 22:33:26 +0000164
165public:
Owen Andersonee49b532007-11-06 05:22:43 +0000166 PreorderSorter(DenseMap<MachineBasicBlock*, unsigned>& p,
167 LiveVariables& L) : preorder(p), LV(L) { }
Owen Anderson83430bc2007-11-04 22:33:26 +0000168
Owen Andersonee49b532007-11-06 05:22:43 +0000169 bool operator()(unsigned A, unsigned B) {
Owen Anderson83430bc2007-11-04 22:33:26 +0000170 if (A == B)
171 return false;
172
Owen Andersonee49b532007-11-06 05:22:43 +0000173 MachineBasicBlock* ABlock = LV.getVarInfo(A).DefInst->getParent();
174 MachineBasicBlock* BBlock = LV.getVarInfo(A).DefInst->getParent();
175
176 if (preorder[ABlock] < preorder[BBlock])
Owen Anderson83430bc2007-11-04 22:33:26 +0000177 return true;
Owen Andersonee49b532007-11-06 05:22:43 +0000178 else if (preorder[ABlock] > preorder[BBlock])
Owen Anderson83430bc2007-11-04 22:33:26 +0000179 return false;
180
Owen Andersonee49b532007-11-06 05:22:43 +0000181 return false;
Owen Anderson83430bc2007-11-04 22:33:26 +0000182 }
183};
184
Owen Anderson8b96b9f2007-11-06 05:26:02 +0000185/// computeDomForest - compute the subforest of the DomTree corresponding
186/// to the defining blocks of the registers in question
Owen Anderson83430bc2007-11-04 22:33:26 +0000187std::vector<StrongPHIElimination::DomForestNode*>
Owen Andersonee49b532007-11-06 05:22:43 +0000188StrongPHIElimination::computeDomForest(std::set<unsigned>& regs) {
189 LiveVariables& LV = getAnalysis<LiveVariables>();
190
Owen Anderson83430bc2007-11-04 22:33:26 +0000191 DomForestNode* VirtualRoot = new DomForestNode(0, 0);
192 maxpreorder.insert(std::make_pair((MachineBasicBlock*)0, ~0UL));
193
Owen Andersonee49b532007-11-06 05:22:43 +0000194 std::vector<unsigned> worklist;
195 worklist.reserve(regs.size());
196 for (std::set<unsigned>::iterator I = regs.begin(), E = regs.end();
197 I != E; ++I)
Owen Anderson83430bc2007-11-04 22:33:26 +0000198 worklist.push_back(*I);
Owen Andersonee49b532007-11-06 05:22:43 +0000199
200 PreorderSorter PS(preorder, LV);
Owen Anderson83430bc2007-11-04 22:33:26 +0000201 std::sort(worklist.begin(), worklist.end(), PS);
202
203 DomForestNode* CurrentParent = VirtualRoot;
204 std::vector<DomForestNode*> stack;
205 stack.push_back(VirtualRoot);
206
Owen Andersonee49b532007-11-06 05:22:43 +0000207 for (std::vector<unsigned>::iterator I = worklist.begin(), E = worklist.end();
208 I != E; ++I) {
209 unsigned pre = preorder[LV.getVarInfo(*I).DefInst->getParent()];
Owen Andersoncb7d9492008-01-09 06:19:05 +0000210 MachineBasicBlock* parentBlock = CurrentParent->getReg() ?
211 LV.getVarInfo(CurrentParent->getReg()).DefInst->getParent() :
212 0;
Owen Andersonee49b532007-11-06 05:22:43 +0000213
214 while (pre > maxpreorder[parentBlock]) {
Owen Anderson83430bc2007-11-04 22:33:26 +0000215 stack.pop_back();
216 CurrentParent = stack.back();
Owen Andersonee49b532007-11-06 05:22:43 +0000217
Owen Anderson864e3a32008-01-09 10:41:39 +0000218 parentBlock = CurrentParent->getReg() ?
219 LV.getVarInfo(CurrentParent->getReg()).DefInst->getParent() :
220 0;
Owen Anderson83430bc2007-11-04 22:33:26 +0000221 }
222
223 DomForestNode* child = new DomForestNode(*I, CurrentParent);
224 stack.push_back(child);
225 CurrentParent = child;
226 }
227
228 std::vector<DomForestNode*> ret;
229 ret.insert(ret.end(), VirtualRoot->begin(), VirtualRoot->end());
230 return ret;
231}
Owen Andersona4ad2e72007-11-06 04:49:43 +0000232
Owen Anderson60a877d2007-11-07 05:17:15 +0000233/// isLiveIn - helper method that determines, from a VarInfo, if a register
234/// is live into a block
Owen Anderson9e549202008-01-07 21:30:40 +0000235static bool isLiveIn(LiveVariables::VarInfo& V, MachineBasicBlock* MBB) {
Owen Anderson60a877d2007-11-07 05:17:15 +0000236 if (V.AliveBlocks.test(MBB->getNumber()))
237 return true;
Owen Andersonee49b532007-11-06 05:22:43 +0000238
Owen Anderson14b3fb72007-11-08 01:32:45 +0000239 if (V.DefInst->getParent() != MBB &&
240 V.UsedBlocks.test(MBB->getNumber()))
241 return true;
Owen Anderson60a877d2007-11-07 05:17:15 +0000242
243 return false;
244}
245
246/// isLiveOut - help method that determines, from a VarInfo, if a register is
247/// live out of a block.
Owen Anderson9e549202008-01-07 21:30:40 +0000248static bool isLiveOut(LiveVariables::VarInfo& V, MachineBasicBlock* MBB) {
Owen Anderson14b3fb72007-11-08 01:32:45 +0000249 if (MBB == V.DefInst->getParent() ||
250 V.UsedBlocks.test(MBB->getNumber())) {
251 for (std::vector<MachineInstr*>::iterator I = V.Kills.begin(),
252 E = V.Kills.end(); I != E; ++I)
253 if ((*I)->getParent() == MBB)
254 return false;
255
Owen Anderson60a877d2007-11-07 05:17:15 +0000256 return true;
Owen Anderson14b3fb72007-11-08 01:32:45 +0000257 }
Owen Anderson60a877d2007-11-07 05:17:15 +0000258
259 return false;
260}
261
Owen Anderson87a702b2007-12-16 05:44:27 +0000262/// isKillInst - helper method that determines, from a VarInfo, if an
263/// instruction kills a given register
Owen Anderson9e549202008-01-07 21:30:40 +0000264static bool isKillInst(LiveVariables::VarInfo& V, MachineInstr* MI) {
Owen Anderson87a702b2007-12-16 05:44:27 +0000265 return std::find(V.Kills.begin(), V.Kills.end(), MI) != V.Kills.end();
266}
267
268/// interferes - checks for local interferences by scanning a block. The only
269/// trick parameter is 'mode' which tells it the relationship of the two
270/// registers. 0 - defined in the same block, 1 - first properly dominates
271/// second, 2 - second properly dominates first
Owen Anderson0b4825c2008-01-07 21:32:09 +0000272static bool interferes(LiveVariables::VarInfo& First, LiveVariables::VarInfo& Second,
Owen Anderson87a702b2007-12-16 05:44:27 +0000273 MachineBasicBlock* scan, unsigned mode) {
274 MachineInstr* def = 0;
275 MachineInstr* kill = 0;
276
277 bool interference = false;
278
279 // Wallk the block, checking for interferences
280 for (MachineBasicBlock::iterator MBI = scan->begin(), MBE = scan->end();
281 MBI != MBE; ++MBI) {
282 MachineInstr* curr = MBI;
283
284 // Same defining block...
285 if (mode == 0) {
286 if (curr == First.DefInst) {
287 // If we find our first DefInst, save it
288 if (!def) {
289 def = curr;
290 // If there's already an unkilled DefInst, then
291 // this is an interference
292 } else if (!kill) {
293 interference = true;
294 break;
295 // If there's a DefInst followed by a KillInst, then
296 // they can't interfere
297 } else {
298 interference = false;
299 break;
300 }
301 // Symmetric with the above
302 } else if (curr == Second.DefInst ) {
303 if (!def) {
304 def = curr;
305 } else if (!kill) {
306 interference = true;
307 break;
308 } else {
309 interference = false;
310 break;
311 }
312 // Store KillInsts if they match up with the DefInst
313 } else if (isKillInst(First, curr)) {
314 if (def == First.DefInst) {
315 kill = curr;
316 } else if (isKillInst(Second, curr)) {
317 if (def == Second.DefInst) {
318 kill = curr;
319 }
320 }
321 }
322 // First properly dominates second...
323 } else if (mode == 1) {
324 if (curr == Second.DefInst) {
325 // DefInst of second without kill of first is an interference
326 if (!kill) {
327 interference = true;
328 break;
329 // DefInst after a kill is a non-interference
330 } else {
331 interference = false;
332 break;
333 }
334 // Save KillInsts of First
335 } else if (isKillInst(First, curr)) {
336 kill = curr;
337 }
338 // Symmetric with the above
339 } else if (mode == 2) {
340 if (curr == First.DefInst) {
341 if (!kill) {
342 interference = true;
343 break;
344 } else {
345 interference = false;
346 break;
347 }
348 } else if (isKillInst(Second, curr)) {
349 kill = curr;
350 }
351 }
352 }
353
354 return interference;
355}
356
Owen Anderson60a877d2007-11-07 05:17:15 +0000357/// processBlock - Eliminate PHIs in the given block
358void StrongPHIElimination::processBlock(MachineBasicBlock* MBB) {
359 LiveVariables& LV = getAnalysis<LiveVariables>();
360
361 // Holds names that have been added to a set in any PHI within this block
362 // before the current one.
363 std::set<unsigned> ProcessedNames;
364
365 MachineBasicBlock::iterator P = MBB->begin();
Owen Anderson864e3a32008-01-09 10:41:39 +0000366 while (P != MBB->end() && P->getOpcode() == TargetInstrInfo::PHI) {
Owen Anderson60a877d2007-11-07 05:17:15 +0000367 LiveVariables::VarInfo& PHIInfo = LV.getVarInfo(P->getOperand(0).getReg());
368
Owen Andersonafc6de02007-12-10 08:07:09 +0000369 unsigned DestReg = P->getOperand(0).getReg();
370
Owen Anderson60a877d2007-11-07 05:17:15 +0000371 // Hold the names that are currently in the candidate set.
372 std::set<unsigned> PHIUnion;
373 std::set<MachineBasicBlock*> UnionedBlocks;
374
375 for (int i = P->getNumOperands() - 1; i >= 2; i-=2) {
376 unsigned SrcReg = P->getOperand(i-1).getReg();
377 LiveVariables::VarInfo& SrcInfo = LV.getVarInfo(SrcReg);
378
Owen Andersonafc6de02007-12-10 08:07:09 +0000379 // Check for trivial interferences
380 if (isLiveIn(SrcInfo, P->getParent()) ||
381 isLiveOut(PHIInfo, SrcInfo.DefInst->getParent()) ||
382 ( PHIInfo.DefInst->getOpcode() == TargetInstrInfo::PHI &&
383 isLiveIn(PHIInfo, SrcInfo.DefInst->getParent()) ) ||
384 ProcessedNames.count(SrcReg) ||
385 UnionedBlocks.count(SrcInfo.DefInst->getParent())) {
386
Owen Anderson60a877d2007-11-07 05:17:15 +0000387 // add a copy from a_i to p in Waiting[From[a_i]]
Chris Lattner8aa797a2007-12-30 23:10:15 +0000388 MachineBasicBlock* From = P->getOperand(i).getMBB();
Owen Andersonefbcebc2007-12-23 15:37:26 +0000389 Waiting[From].insert(std::make_pair(SrcReg, DestReg));
390 UsedByAnother.insert(SrcReg);
Owen Anderson60a877d2007-11-07 05:17:15 +0000391 } else {
392 PHIUnion.insert(SrcReg);
393 UnionedBlocks.insert(SrcInfo.DefInst->getParent());
Owen Anderson60a877d2007-11-07 05:17:15 +0000394 }
Owen Anderson60a877d2007-11-07 05:17:15 +0000395 }
396
Owen Anderson42f9e962007-11-13 20:13:24 +0000397 std::vector<StrongPHIElimination::DomForestNode*> DF =
398 computeDomForest(PHIUnion);
399
Owen Andersonafc6de02007-12-10 08:07:09 +0000400 // Walk DomForest to resolve interferences
Owen Anderson62d67dd2007-12-13 05:53:03 +0000401 std::vector<std::pair<unsigned, unsigned> > localInterferences;
402 processPHIUnion(P, PHIUnion, DF, localInterferences);
403
Owen Andersoncae8d8d2007-12-22 04:59:10 +0000404 // Check for local interferences
Owen Anderson87a702b2007-12-16 05:44:27 +0000405 for (std::vector<std::pair<unsigned, unsigned> >::iterator I =
406 localInterferences.begin(), E = localInterferences.end(); I != E; ++I) {
407 std::pair<unsigned, unsigned> p = *I;
408
409 LiveVariables::VarInfo& FirstInfo = LV.getVarInfo(p.first);
410 LiveVariables::VarInfo& SecondInfo = LV.getVarInfo(p.second);
411
412 MachineDominatorTree& MDT = getAnalysis<MachineDominatorTree>();
413
414 // Determine the block we need to scan and the relationship between
415 // the two registers
416 MachineBasicBlock* scan = 0;
417 unsigned mode = 0;
418 if (FirstInfo.DefInst->getParent() == SecondInfo.DefInst->getParent()) {
419 scan = FirstInfo.DefInst->getParent();
420 mode = 0; // Same block
421 } else if (MDT.dominates(FirstInfo.DefInst->getParent(),
422 SecondInfo.DefInst->getParent())) {
423 scan = SecondInfo.DefInst->getParent();
424 mode = 1; // First dominates second
425 } else {
426 scan = FirstInfo.DefInst->getParent();
427 mode = 2; // Second dominates first
428 }
429
430 // If there's an interference, we need to insert copies
431 if (interferes(FirstInfo, SecondInfo, scan, mode)) {
432 // Insert copies for First
433 for (int i = P->getNumOperands() - 1; i >= 2; i-=2) {
434 if (P->getOperand(i-1).getReg() == p.first) {
435 unsigned SrcReg = p.first;
436 MachineBasicBlock* From = P->getOperand(i).getMBB();
437
Owen Andersonefbcebc2007-12-23 15:37:26 +0000438 Waiting[From].insert(std::make_pair(SrcReg,
439 P->getOperand(0).getReg()));
440 UsedByAnother.insert(SrcReg);
441
Owen Anderson87a702b2007-12-16 05:44:27 +0000442 PHIUnion.erase(SrcReg);
443 }
444 }
445 }
446 }
Owen Anderson42f9e962007-11-13 20:13:24 +0000447
Owen Anderson0c5714b2008-01-08 21:54:52 +0000448 // Cache renaming information
449 RenameSets.insert(std::make_pair(P->getOperand(0).getReg(), PHIUnion));
Owen Andersoncae8d8d2007-12-22 04:59:10 +0000450
Owen Anderson42f9e962007-11-13 20:13:24 +0000451 ProcessedNames.insert(PHIUnion.begin(), PHIUnion.end());
Owen Anderson60a877d2007-11-07 05:17:15 +0000452 ++P;
453 }
Owen Andersonee49b532007-11-06 05:22:43 +0000454}
455
Owen Anderson965b4672007-12-16 04:07:23 +0000456/// processPHIUnion - Take a set of candidate registers to be coallesced when
457/// decomposing the PHI instruction. Use the DominanceForest to remove the ones
458/// that are known to interfere, and flag others that need to be checked for
459/// local interferences.
Owen Andersond525f662007-12-11 20:12:11 +0000460void StrongPHIElimination::processPHIUnion(MachineInstr* Inst,
461 std::set<unsigned>& PHIUnion,
Owen Anderson62d67dd2007-12-13 05:53:03 +0000462 std::vector<StrongPHIElimination::DomForestNode*>& DF,
463 std::vector<std::pair<unsigned, unsigned> >& locals) {
Owen Andersond525f662007-12-11 20:12:11 +0000464
465 std::vector<DomForestNode*> worklist(DF.begin(), DF.end());
466 SmallPtrSet<DomForestNode*, 4> visited;
467
468 LiveVariables& LV = getAnalysis<LiveVariables>();
469 unsigned DestReg = Inst->getOperand(0).getReg();
470
Owen Anderson965b4672007-12-16 04:07:23 +0000471 // DF walk on the DomForest
Owen Andersond525f662007-12-11 20:12:11 +0000472 while (!worklist.empty()) {
473 DomForestNode* DFNode = worklist.back();
474
475 LiveVariables::VarInfo& Info = LV.getVarInfo(DFNode->getReg());
476 visited.insert(DFNode);
477
478 bool inserted = false;
Owen Andersond525f662007-12-11 20:12:11 +0000479 for (DomForestNode::iterator CI = DFNode->begin(), CE = DFNode->end();
480 CI != CE; ++CI) {
481 DomForestNode* child = *CI;
482 LiveVariables::VarInfo& CInfo = LV.getVarInfo(child->getReg());
483
484 if (isLiveOut(Info, CInfo.DefInst->getParent())) {
Owen Andersond525f662007-12-11 20:12:11 +0000485 // Insert copies for parent
486 for (int i = Inst->getNumOperands() - 1; i >= 2; i-=2) {
487 if (Inst->getOperand(i-1).getReg() == DFNode->getReg()) {
Owen Andersoned2ffa22007-12-12 01:25:08 +0000488 unsigned SrcReg = DFNode->getReg();
Owen Andersond525f662007-12-11 20:12:11 +0000489 MachineBasicBlock* From = Inst->getOperand(i).getMBB();
490
Owen Andersonefbcebc2007-12-23 15:37:26 +0000491 Waiting[From].insert(std::make_pair(SrcReg, DestReg));
492 UsedByAnother.insert(SrcReg);
493
Owen Andersoned2ffa22007-12-12 01:25:08 +0000494 PHIUnion.erase(SrcReg);
Owen Andersond525f662007-12-11 20:12:11 +0000495 }
496 }
Owen Anderson4ba08ec2007-12-13 05:43:37 +0000497 } else if (isLiveIn(Info, CInfo.DefInst->getParent()) ||
498 Info.DefInst->getParent() == CInfo.DefInst->getParent()) {
Owen Anderson62d67dd2007-12-13 05:53:03 +0000499 // Add (p, c) to possible local interferences
500 locals.push_back(std::make_pair(DFNode->getReg(), child->getReg()));
Owen Andersond525f662007-12-11 20:12:11 +0000501 }
Owen Anderson965b4672007-12-16 04:07:23 +0000502
Owen Anderson4ba08ec2007-12-13 05:43:37 +0000503 if (!visited.count(child)) {
504 worklist.push_back(child);
505 inserted = true;
Owen Andersond525f662007-12-11 20:12:11 +0000506 }
507 }
508
509 if (!inserted) worklist.pop_back();
510 }
511}
512
Owen Andersonefbcebc2007-12-23 15:37:26 +0000513/// ScheduleCopies - Insert copies into predecessor blocks, scheduling
514/// them properly so as to avoid the 'lost copy' and the 'virtual swap'
515/// problems.
516///
517/// Based on "Practical Improvements to the Construction and Destruction
518/// of Static Single Assignment Form" by Briggs, et al.
Owen Andersonf1519e82007-12-24 22:12:23 +0000519void StrongPHIElimination::ScheduleCopies(MachineBasicBlock* MBB,
520 std::set<unsigned>& pushed) {
Owen Anderson0d893b42008-01-08 05:16:15 +0000521 // FIXME: This function needs to update LiveVariables
Owen Andersonefbcebc2007-12-23 15:37:26 +0000522 std::map<unsigned, unsigned>& copy_set= Waiting[MBB];
523
524 std::map<unsigned, unsigned> worklist;
525 std::map<unsigned, unsigned> map;
526
527 // Setup worklist of initial copies
528 for (std::map<unsigned, unsigned>::iterator I = copy_set.begin(),
529 E = copy_set.end(); I != E; ) {
530 map.insert(std::make_pair(I->first, I->first));
531 map.insert(std::make_pair(I->second, I->second));
532
533 if (!UsedByAnother.count(I->first)) {
534 worklist.insert(*I);
535
536 // Avoid iterator invalidation
537 unsigned first = I->first;
538 ++I;
539 copy_set.erase(first);
540 } else {
541 ++I;
542 }
543 }
544
545 LiveVariables& LV = getAnalysis<LiveVariables>();
Owen Anderson0d893b42008-01-08 05:16:15 +0000546 MachineFunction* MF = MBB->getParent();
547 const TargetInstrInfo *TII = MF->getTarget().getInstrInfo();
Owen Andersonefbcebc2007-12-23 15:37:26 +0000548
549 // Iterate over the worklist, inserting copies
550 while (!worklist.empty() || !copy_set.empty()) {
551 while (!worklist.empty()) {
552 std::pair<unsigned, unsigned> curr = *worklist.begin();
553 worklist.erase(curr.first);
554
Owen Anderson0d893b42008-01-08 05:16:15 +0000555 const TargetRegisterClass *RC = MF->getRegInfo().getRegClass(curr.first);
556
Owen Andersonefbcebc2007-12-23 15:37:26 +0000557 if (isLiveOut(LV.getVarInfo(curr.second), MBB)) {
Owen Anderson0d893b42008-01-08 05:16:15 +0000558 // Create a temporary
559 unsigned t = MF->getRegInfo().createVirtualRegister(RC);
560
561 // Insert copy from curr.second to a temporary at
562 // the Phi defining curr.second
563 LiveVariables::VarInfo VI = LV.getVarInfo(curr.second);
564 MachineBasicBlock::iterator PI = VI.DefInst;
565 TII->copyRegToReg(*VI.DefInst->getParent(), PI, t,
566 curr.second, RC, RC);
567
Owen Andersonefbcebc2007-12-23 15:37:26 +0000568 // Push temporary on Stacks
Owen Anderson0d893b42008-01-08 05:16:15 +0000569 Stacks[curr.second].push_back(t);
570
571 // Insert curr.second in pushed
572 pushed.insert(curr.second);
Owen Andersonefbcebc2007-12-23 15:37:26 +0000573 }
574
575 // Insert copy from map[curr.first] to curr.second
Owen Anderson0d893b42008-01-08 05:16:15 +0000576 TII->copyRegToReg(*MBB, MBB->end(), curr.second,
577 map[curr.first], RC, RC);
Owen Andersonefbcebc2007-12-23 15:37:26 +0000578 map[curr.first] = curr.second;
579
580 // If curr.first is a destination in copy_set...
581 for (std::map<unsigned, unsigned>::iterator I = copy_set.begin(),
582 E = copy_set.end(); I != E; )
583 if (curr.first == I->second) {
584 std::pair<unsigned, unsigned> temp = *I;
585
586 // Avoid iterator invalidation
587 ++I;
588 copy_set.erase(temp.first);
589 worklist.insert(temp);
590
591 break;
592 } else {
593 ++I;
594 }
595 }
596
597 if (!copy_set.empty()) {
598 std::pair<unsigned, unsigned> curr = *copy_set.begin();
599 copy_set.erase(curr.first);
600
Owen Anderson0d893b42008-01-08 05:16:15 +0000601 const TargetRegisterClass *RC = MF->getRegInfo().getRegClass(curr.first);
602
Owen Andersonefbcebc2007-12-23 15:37:26 +0000603 // Insert a copy from dest to a new temporary t at the end of b
Owen Anderson0d893b42008-01-08 05:16:15 +0000604 unsigned t = MF->getRegInfo().createVirtualRegister(RC);
605 TII->copyRegToReg(*MBB, MBB->end(), t,
606 curr.second, RC, RC);
607 map[curr.second] = t;
Owen Andersonefbcebc2007-12-23 15:37:26 +0000608
609 worklist.insert(curr);
610 }
611 }
612}
613
Owen Andersonf1519e82007-12-24 22:12:23 +0000614/// InsertCopies - insert copies into MBB and all of its successors
Owen Anderson719fef62008-01-09 10:32:30 +0000615void StrongPHIElimination::InsertCopies(MachineBasicBlock* MBB,
616 std::set<MachineBasicBlock*>& visited) {
617 visited.insert(MBB);
618
Owen Andersonf1519e82007-12-24 22:12:23 +0000619 std::set<unsigned> pushed;
620
621 // Rewrite register uses from Stacks
622 for (MachineBasicBlock::iterator I = MBB->begin(), E = MBB->end();
623 I != E; ++I)
624 for (unsigned i = 0; i < I->getNumOperands(); ++i)
625 if (I->getOperand(i).isRegister() &&
626 Stacks[I->getOperand(i).getReg()].size()) {
627 I->getOperand(i).setReg(Stacks[I->getOperand(i).getReg()].back());
628 }
629
630 // Schedule the copies for this block
631 ScheduleCopies(MBB, pushed);
632
633 // Recur to our successors
634 for (GraphTraits<MachineBasicBlock*>::ChildIteratorType I =
635 GraphTraits<MachineBasicBlock*>::child_begin(MBB), E =
636 GraphTraits<MachineBasicBlock*>::child_end(MBB); I != E; ++I)
Owen Anderson719fef62008-01-09 10:32:30 +0000637 if (!visited.count(*I))
638 InsertCopies(*I, visited);
Owen Andersonf1519e82007-12-24 22:12:23 +0000639
640 // As we exit this block, pop the names we pushed while processing it
641 for (std::set<unsigned>::iterator I = pushed.begin(),
642 E = pushed.end(); I != E; ++I)
643 Stacks[*I].pop_back();
644}
645
Owen Andersona4ad2e72007-11-06 04:49:43 +0000646bool StrongPHIElimination::runOnMachineFunction(MachineFunction &Fn) {
Owen Andersonefbcebc2007-12-23 15:37:26 +0000647 // Compute DFS numbers of each block
Owen Andersona4ad2e72007-11-06 04:49:43 +0000648 computeDFS(Fn);
649
Owen Andersonefbcebc2007-12-23 15:37:26 +0000650 // Determine which phi node operands need copies
Owen Anderson60a877d2007-11-07 05:17:15 +0000651 for (MachineFunction::iterator I = Fn.begin(), E = Fn.end(); I != E; ++I)
652 if (!I->empty() &&
653 I->begin()->getOpcode() == TargetInstrInfo::PHI)
654 processBlock(I);
Owen Andersona4ad2e72007-11-06 04:49:43 +0000655
Owen Andersonefbcebc2007-12-23 15:37:26 +0000656 // Insert copies
Owen Andersonf1519e82007-12-24 22:12:23 +0000657 // FIXME: This process should probably preserve LiveVariables
Owen Anderson719fef62008-01-09 10:32:30 +0000658 std::set<MachineBasicBlock*> visited;
659 InsertCopies(Fn.begin(), visited);
Owen Andersonefbcebc2007-12-23 15:37:26 +0000660
Owen Anderson0c5714b2008-01-08 21:54:52 +0000661 // Perform renaming
662 typedef std::map<unsigned, std::set<unsigned> > RenameSetType;
663 for (RenameSetType::iterator I = RenameSets.begin(), E = RenameSets.end();
664 I != E; ++I)
665 for (std::set<unsigned>::iterator SI = I->second.begin(),
666 SE = I->second.end(); SI != SE; ++SI)
667 Fn.getRegInfo().replaceRegWith(*SI, I->first);
668
669 // FIXME: Insert last-minute copies
670
671 // Remove PHIs
672 for (MachineFunction::iterator I = Fn.begin(), E = Fn.end(); I != E; ++I)
673 for (MachineBasicBlock::iterator BI = I->begin(), BE = I->end();
674 BI != BE; ++BI)
675 if (BI->getOpcode() == TargetInstrInfo::PHI)
676 BI->eraseFromParent();
Owen Andersoncae8d8d2007-12-22 04:59:10 +0000677
Owen Andersona4ad2e72007-11-06 04:49:43 +0000678 return false;
679}