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Tobias Grosserf96b0062010-07-22 07:46:31 +00001//===- RegionInfo.cpp - SESE region detection analysis --------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9// Detects single entry single exit regions in the control flow graph.
10//===----------------------------------------------------------------------===//
11
12#include "llvm/Analysis/RegionInfo.h"
13#include "llvm/Analysis/RegionIterator.h"
14
15#include "llvm/ADT/PostOrderIterator.h"
16#include "llvm/ADT/Statistic.h"
17#include "llvm/Support/CommandLine.h"
18#include "llvm/Support/ErrorHandling.h"
19#include "llvm/Support/raw_ostream.h"
Tobias Grosser082d5872010-07-27 04:17:13 +000020#include "llvm/Analysis/LoopInfo.h"
Tobias Grosserf96b0062010-07-22 07:46:31 +000021
22#define DEBUG_TYPE "region"
23#include "llvm/Support/Debug.h"
24
25#include <set>
26#include <algorithm>
27
28using namespace llvm;
29
30// Always verify if expensive checking is enabled.
31#ifdef XDEBUG
Dan Gohman811edc12010-08-02 18:50:06 +000032static bool VerifyRegionInfo = true;
Tobias Grosserf96b0062010-07-22 07:46:31 +000033#else
Dan Gohman811edc12010-08-02 18:50:06 +000034static bool VerifyRegionInfo = false;
Tobias Grosserf96b0062010-07-22 07:46:31 +000035#endif
36
37static cl::opt<bool,true>
38VerifyRegionInfoX("verify-region-info", cl::location(VerifyRegionInfo),
39 cl::desc("Verify region info (time consuming)"));
40
41STATISTIC(numRegions, "The # of regions");
42STATISTIC(numSimpleRegions, "The # of simple regions");
43
44//===----------------------------------------------------------------------===//
45/// PrintStyle - Print region in difference ways.
46enum PrintStyle { PrintNone, PrintBB, PrintRN };
47
48cl::opt<enum PrintStyle> printStyle("print-region-style", cl::Hidden,
49 cl::desc("style of printing regions"),
50 cl::values(
51 clEnumValN(PrintNone, "none", "print no details"),
52 clEnumValN(PrintBB, "bb", "print regions in detail with block_iterator"),
53 clEnumValN(PrintRN, "rn", "print regions in detail with element_iterator"),
54 clEnumValEnd));
55//===----------------------------------------------------------------------===//
56/// Region Implementation
57Region::Region(BasicBlock *Entry, BasicBlock *Exit, RegionInfo* RInfo,
58 DominatorTree *dt, Region *Parent)
59 : RegionNode(Parent, Entry, 1), RI(RInfo), DT(dt), exit(Exit) {}
60
61Region::~Region() {
Daniel Dunbar329878f2010-07-28 20:28:50 +000062 // Free the cached nodes.
63 for (BBNodeMapT::iterator it = BBNodeMap.begin(),
64 ie = BBNodeMap.end(); it != ie; ++it)
65 delete it->second;
66
Tobias Grosserf96b0062010-07-22 07:46:31 +000067 // Only clean the cache for this Region. Caches of child Regions will be
68 // cleaned when the child Regions are deleted.
69 BBNodeMap.clear();
70
71 for (iterator I = begin(), E = end(); I != E; ++I)
72 delete *I;
73}
74
Tobias Grosser4bcc0222010-10-13 05:54:10 +000075void Region::replaceEntry(BasicBlock *BB) {
76 entry.setPointer(BB);
77}
78
79void Region::replaceExit(BasicBlock *BB) {
80 assert(exit && "No exit to replace!");
81 exit = BB;
82}
83
Tobias Grosserf96b0062010-07-22 07:46:31 +000084bool Region::contains(const BasicBlock *B) const {
85 BasicBlock *BB = const_cast<BasicBlock*>(B);
86
87 assert(DT->getNode(BB) && "BB not part of the dominance tree");
88
89 BasicBlock *entry = getEntry(), *exit = getExit();
90
91 // Toplevel region.
92 if (!exit)
93 return true;
94
95 return (DT->dominates(entry, BB)
96 && !(DT->dominates(exit, BB) && DT->dominates(entry, exit)));
97}
98
Tobias Grosser082d5872010-07-27 04:17:13 +000099bool Region::contains(const Loop *L) const {
100 // BBs that are not part of any loop are element of the Loop
101 // described by the NULL pointer. This loop is not part of any region,
102 // except if the region describes the whole function.
103 if (L == 0)
104 return getExit() == 0;
105
106 if (!contains(L->getHeader()))
107 return false;
108
109 SmallVector<BasicBlock *, 8> ExitingBlocks;
110 L->getExitingBlocks(ExitingBlocks);
111
112 for (SmallVectorImpl<BasicBlock*>::iterator BI = ExitingBlocks.begin(),
113 BE = ExitingBlocks.end(); BI != BE; ++BI)
114 if (!contains(*BI))
115 return false;
116
117 return true;
118}
119
120Loop *Region::outermostLoopInRegion(Loop *L) const {
121 if (!contains(L))
122 return 0;
123
124 while (L && contains(L->getParentLoop())) {
125 L = L->getParentLoop();
126 }
127
128 return L;
129}
130
131Loop *Region::outermostLoopInRegion(LoopInfo *LI, BasicBlock* BB) const {
132 assert(LI && BB && "LI and BB cannot be null!");
133 Loop *L = LI->getLoopFor(BB);
134 return outermostLoopInRegion(L);
135}
136
Tobias Grosserf96b0062010-07-22 07:46:31 +0000137bool Region::isSimple() const {
138 bool isSimple = true;
139 bool found = false;
140
141 BasicBlock *entry = getEntry(), *exit = getExit();
142
143 // TopLevelRegion
144 if (!exit)
145 return false;
146
147 for (pred_iterator PI = pred_begin(entry), PE = pred_end(entry); PI != PE;
Tobias Grosser73362c82010-08-10 09:54:35 +0000148 ++PI) {
149 BasicBlock *Pred = *PI;
150 if (DT->getNode(Pred) && !contains(Pred)) {
Tobias Grosserf96b0062010-07-22 07:46:31 +0000151 if (found) {
152 isSimple = false;
153 break;
154 }
155 found = true;
156 }
Tobias Grosser73362c82010-08-10 09:54:35 +0000157 }
Tobias Grosserf96b0062010-07-22 07:46:31 +0000158
159 found = false;
160
161 for (pred_iterator PI = pred_begin(exit), PE = pred_end(exit); PI != PE;
162 ++PI)
163 if (contains(*PI)) {
164 if (found) {
165 isSimple = false;
166 break;
167 }
168 found = true;
169 }
170
171 return isSimple;
172}
173
Tobias Grosser082d5872010-07-27 04:17:13 +0000174std::string Region::getNameStr() const {
175 std::string exitName;
176 std::string entryName;
177
178 if (getEntry()->getName().empty()) {
179 raw_string_ostream OS(entryName);
180
181 WriteAsOperand(OS, getEntry(), false);
182 entryName = OS.str();
183 } else
184 entryName = getEntry()->getNameStr();
185
186 if (getExit()) {
187 if (getExit()->getName().empty()) {
188 raw_string_ostream OS(exitName);
189
190 WriteAsOperand(OS, getExit(), false);
191 exitName = OS.str();
192 } else
193 exitName = getExit()->getNameStr();
194 } else
195 exitName = "<Function Return>";
196
197 return entryName + " => " + exitName;
198}
199
Tobias Grosserf96b0062010-07-22 07:46:31 +0000200void Region::verifyBBInRegion(BasicBlock *BB) const {
201 if (!contains(BB))
202 llvm_unreachable("Broken region found!");
203
204 BasicBlock *entry = getEntry(), *exit = getExit();
205
206 for (succ_iterator SI = succ_begin(BB), SE = succ_end(BB); SI != SE; ++SI)
207 if (!contains(*SI) && exit != *SI)
208 llvm_unreachable("Broken region found!");
209
210 if (entry != BB)
211 for (pred_iterator SI = pred_begin(BB), SE = pred_end(BB); SI != SE; ++SI)
212 if (!contains(*SI))
213 llvm_unreachable("Broken region found!");
214}
215
216void Region::verifyWalk(BasicBlock *BB, std::set<BasicBlock*> *visited) const {
217 BasicBlock *exit = getExit();
218
219 visited->insert(BB);
220
221 verifyBBInRegion(BB);
222
223 for (succ_iterator SI = succ_begin(BB), SE = succ_end(BB); SI != SE; ++SI)
224 if (*SI != exit && visited->find(*SI) == visited->end())
225 verifyWalk(*SI, visited);
226}
227
228void Region::verifyRegion() const {
229 // Only do verification when user wants to, otherwise this expensive
230 // check will be invoked by PassManager.
231 if (!VerifyRegionInfo) return;
232
233 std::set<BasicBlock*> visited;
234 verifyWalk(getEntry(), &visited);
235}
236
237void Region::verifyRegionNest() const {
238 for (Region::const_iterator RI = begin(), RE = end(); RI != RE; ++RI)
239 (*RI)->verifyRegionNest();
240
241 verifyRegion();
242}
243
244Region::block_iterator Region::block_begin() {
245 return GraphTraits<FlatIt<Region*> >::nodes_begin(this);
246}
247
248Region::block_iterator Region::block_end() {
249 return GraphTraits<FlatIt<Region*> >::nodes_end(this);
250}
251
252Region::const_block_iterator Region::block_begin() const {
253 return GraphTraits<FlatIt<const Region*> >::nodes_begin(this);
254}
255
256Region::const_block_iterator Region::block_end() const {
257 return GraphTraits<FlatIt<const Region*> >::nodes_end(this);
258}
259
260Region::element_iterator Region::element_begin() {
261 return GraphTraits<Region*>::nodes_begin(this);
262}
263
264Region::element_iterator Region::element_end() {
265 return GraphTraits<Region*>::nodes_end(this);
266}
267
268Region::const_element_iterator Region::element_begin() const {
269 return GraphTraits<const Region*>::nodes_begin(this);
270}
271
272Region::const_element_iterator Region::element_end() const {
273 return GraphTraits<const Region*>::nodes_end(this);
274}
275
276Region* Region::getSubRegionNode(BasicBlock *BB) const {
277 Region *R = RI->getRegionFor(BB);
278
279 if (!R || R == this)
280 return 0;
281
282 // If we pass the BB out of this region, that means our code is broken.
283 assert(contains(R) && "BB not in current region!");
284
285 while (contains(R->getParent()) && R->getParent() != this)
286 R = R->getParent();
287
288 if (R->getEntry() != BB)
289 return 0;
290
291 return R;
292}
293
294RegionNode* Region::getBBNode(BasicBlock *BB) const {
295 assert(contains(BB) && "Can get BB node out of this region!");
296
297 BBNodeMapT::const_iterator at = BBNodeMap.find(BB);
298
299 if (at != BBNodeMap.end())
300 return at->second;
301
302 RegionNode *NewNode = new RegionNode(const_cast<Region*>(this), BB);
303 BBNodeMap.insert(std::make_pair(BB, NewNode));
304 return NewNode;
305}
306
307RegionNode* Region::getNode(BasicBlock *BB) const {
308 assert(contains(BB) && "Can get BB node out of this region!");
309 if (Region* Child = getSubRegionNode(BB))
310 return Child->getNode();
311
312 return getBBNode(BB);
313}
314
315void Region::transferChildrenTo(Region *To) {
316 for (iterator I = begin(), E = end(); I != E; ++I) {
317 (*I)->parent = To;
318 To->children.push_back(*I);
319 }
320 children.clear();
321}
322
Tobias Grosser96493902010-10-13 05:54:09 +0000323void Region::addSubRegion(Region *SubRegion, bool moveChildren) {
Tobias Grosserf96b0062010-07-22 07:46:31 +0000324 assert(SubRegion->parent == 0 && "SubRegion already has a parent!");
Tobias Grosser96493902010-10-13 05:54:09 +0000325 assert(std::find(begin(), end(), SubRegion) == children.end()
326 && "Subregion already exists!");
327
Tobias Grosserf96b0062010-07-22 07:46:31 +0000328 SubRegion->parent = this;
Tobias Grosserf96b0062010-07-22 07:46:31 +0000329 children.push_back(SubRegion);
Tobias Grosser96493902010-10-13 05:54:09 +0000330
331 if (!moveChildren)
332 return;
333
334 assert(SubRegion->children.size() == 0
335 && "SubRegions that contain children are not supported");
336
337 for (element_iterator I = element_begin(), E = element_end(); I != E; ++I)
338 if (!(*I)->isSubRegion()) {
339 BasicBlock *BB = (*I)->getNodeAs<BasicBlock>();
340
341 if (SubRegion->contains(BB))
342 RI->setRegionFor(BB, SubRegion);
343 }
344
345 std::vector<Region*> Keep;
346 for (iterator I = begin(), E = end(); I != E; ++I)
347 if (SubRegion->contains(*I) && *I != SubRegion) {
348 SubRegion->children.push_back(*I);
349 (*I)->parent = SubRegion;
350 } else
351 Keep.push_back(*I);
352
353 children.clear();
354 children.insert(children.begin(), Keep.begin(), Keep.end());
Tobias Grosserf96b0062010-07-22 07:46:31 +0000355}
356
357
358Region *Region::removeSubRegion(Region *Child) {
359 assert(Child->parent == this && "Child is not a child of this region!");
360 Child->parent = 0;
361 RegionSet::iterator I = std::find(children.begin(), children.end(), Child);
362 assert(I != children.end() && "Region does not exit. Unable to remove.");
363 children.erase(children.begin()+(I-begin()));
364 return Child;
365}
366
367unsigned Region::getDepth() const {
368 unsigned Depth = 0;
369
370 for (Region *R = parent; R != 0; R = R->parent)
371 ++Depth;
372
373 return Depth;
374}
375
376void Region::print(raw_ostream &OS, bool print_tree, unsigned level) const {
377 if (print_tree)
378 OS.indent(level*2) << "[" << level << "] " << getNameStr();
379 else
380 OS.indent(level*2) << getNameStr();
381
382 OS << "\n";
383
384
385 if (printStyle != PrintNone) {
386 OS.indent(level*2) << "{\n";
387 OS.indent(level*2 + 2);
388
389 if (printStyle == PrintBB) {
390 for (const_block_iterator I = block_begin(), E = block_end(); I!=E; ++I)
391 OS << **I << ", "; // TODO: remove the last ","
392 } else if (printStyle == PrintRN) {
393 for (const_element_iterator I = element_begin(), E = element_end(); I!=E; ++I)
394 OS << **I << ", "; // TODO: remove the last ",
395 }
396
397 OS << "\n";
398 }
399
400 if (print_tree)
401 for (const_iterator RI = begin(), RE = end(); RI != RE; ++RI)
402 (*RI)->print(OS, print_tree, level+1);
403
404 if (printStyle != PrintNone)
405 OS.indent(level*2) << "} \n";
406}
407
408void Region::dump() const {
409 print(dbgs(), true, getDepth());
410}
411
412void Region::clearNodeCache() {
Tobias Grosser67be08a2010-10-13 00:07:59 +0000413 // Free the cached nodes.
414 for (BBNodeMapT::iterator I = BBNodeMap.begin(),
415 IE = BBNodeMap.end(); I != IE; ++IE)
416 delete I->second;
417
Tobias Grosserf96b0062010-07-22 07:46:31 +0000418 BBNodeMap.clear();
419 for (Region::iterator RI = begin(), RE = end(); RI != RE; ++RI)
420 (*RI)->clearNodeCache();
421}
422
423//===----------------------------------------------------------------------===//
424// RegionInfo implementation
425//
426
427bool RegionInfo::isCommonDomFrontier(BasicBlock *BB, BasicBlock *entry,
428 BasicBlock *exit) const {
Gabor Greif3d8586e2010-07-22 11:07:46 +0000429 for (pred_iterator PI = pred_begin(BB), PE = pred_end(BB); PI != PE; ++PI) {
430 BasicBlock *P = *PI;
431 if (DT->dominates(entry, P) && !DT->dominates(exit, P))
Tobias Grosserf96b0062010-07-22 07:46:31 +0000432 return false;
Gabor Greif3d8586e2010-07-22 11:07:46 +0000433 }
Tobias Grosserf96b0062010-07-22 07:46:31 +0000434 return true;
435}
436
437bool RegionInfo::isRegion(BasicBlock *entry, BasicBlock *exit) const {
438 assert(entry && exit && "entry and exit must not be null!");
439 typedef DominanceFrontier::DomSetType DST;
440
Gabor Greif11aa60d2010-07-22 11:12:32 +0000441 DST *entrySuccs = &DF->find(entry)->second;
Tobias Grosserf96b0062010-07-22 07:46:31 +0000442
443 // Exit is the header of a loop that contains the entry. In this case,
444 // the dominance frontier must only contain the exit.
445 if (!DT->dominates(entry, exit)) {
446 for (DST::iterator SI = entrySuccs->begin(), SE = entrySuccs->end();
447 SI != SE; ++SI)
448 if (*SI != exit && *SI != entry)
449 return false;
450
451 return true;
452 }
453
Gabor Greif11aa60d2010-07-22 11:12:32 +0000454 DST *exitSuccs = &DF->find(exit)->second;
Tobias Grosserf96b0062010-07-22 07:46:31 +0000455
456 // Do not allow edges leaving the region.
457 for (DST::iterator SI = entrySuccs->begin(), SE = entrySuccs->end();
458 SI != SE; ++SI) {
459 if (*SI == exit || *SI == entry)
460 continue;
461 if (exitSuccs->find(*SI) == exitSuccs->end())
462 return false;
463 if (!isCommonDomFrontier(*SI, entry, exit))
464 return false;
465 }
466
467 // Do not allow edges pointing into the region.
468 for (DST::iterator SI = exitSuccs->begin(), SE = exitSuccs->end();
469 SI != SE; ++SI)
Dan Gohmana29dbd22010-07-26 17:34:05 +0000470 if (DT->properlyDominates(entry, *SI) && *SI != exit)
Tobias Grosserf96b0062010-07-22 07:46:31 +0000471 return false;
472
473
474 return true;
475}
476
477void RegionInfo::insertShortCut(BasicBlock *entry, BasicBlock *exit,
478 BBtoBBMap *ShortCut) const {
479 assert(entry && exit && "entry and exit must not be null!");
480
481 BBtoBBMap::iterator e = ShortCut->find(exit);
482
483 if (e == ShortCut->end())
484 // No further region at exit available.
485 (*ShortCut)[entry] = exit;
486 else {
487 // We found a region e that starts at exit. Therefore (entry, e->second)
488 // is also a region, that is larger than (entry, exit). Insert the
489 // larger one.
490 BasicBlock *BB = e->second;
491 (*ShortCut)[entry] = BB;
492 }
493}
494
495DomTreeNode* RegionInfo::getNextPostDom(DomTreeNode* N,
496 BBtoBBMap *ShortCut) const {
497 BBtoBBMap::iterator e = ShortCut->find(N->getBlock());
498
499 if (e == ShortCut->end())
500 return N->getIDom();
501
502 return PDT->getNode(e->second)->getIDom();
503}
504
505bool RegionInfo::isTrivialRegion(BasicBlock *entry, BasicBlock *exit) const {
506 assert(entry && exit && "entry and exit must not be null!");
507
508 unsigned num_successors = succ_end(entry) - succ_begin(entry);
509
510 if (num_successors <= 1 && exit == *(succ_begin(entry)))
511 return true;
512
513 return false;
514}
515
516void RegionInfo::updateStatistics(Region *R) {
517 ++numRegions;
518
519 // TODO: Slow. Should only be enabled if -stats is used.
520 if (R->isSimple()) ++numSimpleRegions;
521}
522
523Region *RegionInfo::createRegion(BasicBlock *entry, BasicBlock *exit) {
524 assert(entry && exit && "entry and exit must not be null!");
525
526 if (isTrivialRegion(entry, exit))
527 return 0;
528
529 Region *region = new Region(entry, exit, this, DT);
530 BBtoRegion.insert(std::make_pair(entry, region));
531
532 #ifdef XDEBUG
533 region->verifyRegion();
534 #else
535 DEBUG(region->verifyRegion());
536 #endif
537
538 updateStatistics(region);
539 return region;
540}
541
542void RegionInfo::findRegionsWithEntry(BasicBlock *entry, BBtoBBMap *ShortCut) {
543 assert(entry);
544
545 DomTreeNode *N = PDT->getNode(entry);
546
547 if (!N)
548 return;
549
550 Region *lastRegion= 0;
551 BasicBlock *lastExit = entry;
552
553 // As only a BasicBlock that postdominates entry can finish a region, walk the
554 // post dominance tree upwards.
555 while ((N = getNextPostDom(N, ShortCut))) {
556 BasicBlock *exit = N->getBlock();
557
558 if (!exit)
559 break;
560
561 if (isRegion(entry, exit)) {
562 Region *newRegion = createRegion(entry, exit);
563
564 if (lastRegion)
565 newRegion->addSubRegion(lastRegion);
566
567 lastRegion = newRegion;
568 lastExit = exit;
569 }
570
571 // This can never be a region, so stop the search.
572 if (!DT->dominates(entry, exit))
573 break;
574 }
575
576 // Tried to create regions from entry to lastExit. Next time take a
577 // shortcut from entry to lastExit.
578 if (lastExit != entry)
579 insertShortCut(entry, lastExit, ShortCut);
580}
581
582void RegionInfo::scanForRegions(Function &F, BBtoBBMap *ShortCut) {
583 BasicBlock *entry = &(F.getEntryBlock());
584 DomTreeNode *N = DT->getNode(entry);
585
586 // Iterate over the dominance tree in post order to start with the small
587 // regions from the bottom of the dominance tree. If the small regions are
588 // detected first, detection of bigger regions is faster, as we can jump
589 // over the small regions.
590 for (po_iterator<DomTreeNode*> FI = po_begin(N), FE = po_end(N); FI != FE;
591 ++FI) {
Gabor Greiff95eef62010-07-22 13:49:27 +0000592 findRegionsWithEntry(FI->getBlock(), ShortCut);
Tobias Grosserf96b0062010-07-22 07:46:31 +0000593 }
594}
595
596Region *RegionInfo::getTopMostParent(Region *region) {
597 while (region->parent)
598 region = region->getParent();
599
600 return region;
601}
602
603void RegionInfo::buildRegionsTree(DomTreeNode *N, Region *region) {
604 BasicBlock *BB = N->getBlock();
605
606 // Passed region exit
607 while (BB == region->getExit())
608 region = region->getParent();
609
610 BBtoRegionMap::iterator it = BBtoRegion.find(BB);
611
612 // This basic block is a start block of a region. It is already in the
613 // BBtoRegion relation. Only the child basic blocks have to be updated.
614 if (it != BBtoRegion.end()) {
615 Region *newRegion = it->second;;
616 region->addSubRegion(getTopMostParent(newRegion));
617 region = newRegion;
618 } else {
619 BBtoRegion[BB] = region;
620 }
621
622 for (DomTreeNode::iterator CI = N->begin(), CE = N->end(); CI != CE; ++CI)
623 buildRegionsTree(*CI, region);
624}
625
626void RegionInfo::releaseMemory() {
627 BBtoRegion.clear();
628 if (TopLevelRegion)
629 delete TopLevelRegion;
630 TopLevelRegion = 0;
631}
632
Owen Anderson90c579d2010-08-06 18:33:48 +0000633RegionInfo::RegionInfo() : FunctionPass(ID) {
Tobias Grosserf96b0062010-07-22 07:46:31 +0000634 TopLevelRegion = 0;
635}
636
637RegionInfo::~RegionInfo() {
638 releaseMemory();
639}
640
641void RegionInfo::Calculate(Function &F) {
642 // ShortCut a function where for every BB the exit of the largest region
643 // starting with BB is stored. These regions can be threated as single BBS.
644 // This improves performance on linear CFGs.
645 BBtoBBMap ShortCut;
646
647 scanForRegions(F, &ShortCut);
648 BasicBlock *BB = &F.getEntryBlock();
649 buildRegionsTree(DT->getNode(BB), TopLevelRegion);
650}
651
652bool RegionInfo::runOnFunction(Function &F) {
653 releaseMemory();
654
655 DT = &getAnalysis<DominatorTree>();
656 PDT = &getAnalysis<PostDominatorTree>();
657 DF = &getAnalysis<DominanceFrontier>();
658
659 TopLevelRegion = new Region(&F.getEntryBlock(), 0, this, DT, 0);
660 updateStatistics(TopLevelRegion);
661
662 Calculate(F);
663
664 return false;
665}
666
667void RegionInfo::getAnalysisUsage(AnalysisUsage &AU) const {
668 AU.setPreservesAll();
669 AU.addRequiredTransitive<DominatorTree>();
670 AU.addRequired<PostDominatorTree>();
671 AU.addRequired<DominanceFrontier>();
672}
673
674void RegionInfo::print(raw_ostream &OS, const Module *) const {
675 OS << "Region tree:\n";
676 TopLevelRegion->print(OS, true, 0);
677 OS << "End region tree\n";
678}
679
680void RegionInfo::verifyAnalysis() const {
681 // Only do verification when user wants to, otherwise this expensive check
682 // will be invoked by PMDataManager::verifyPreservedAnalysis when
683 // a regionpass (marked PreservedAll) finish.
684 if (!VerifyRegionInfo) return;
685
686 TopLevelRegion->verifyRegionNest();
687}
688
689// Region pass manager support.
690Region *RegionInfo::getRegionFor(BasicBlock *BB) const {
691 BBtoRegionMap::const_iterator I=
692 BBtoRegion.find(BB);
693 return I != BBtoRegion.end() ? I->second : 0;
694}
695
Tobias Grosser9ee5c502010-10-13 05:54:07 +0000696void RegionInfo::setRegionFor(BasicBlock *BB, Region *R) {
697 BBtoRegion[BB] = R;
698}
699
Tobias Grosserf96b0062010-07-22 07:46:31 +0000700Region *RegionInfo::operator[](BasicBlock *BB) const {
701 return getRegionFor(BB);
702}
703
Tobias Grosser0e6fcf42010-07-27 08:39:43 +0000704BasicBlock *RegionInfo::getMaxRegionExit(BasicBlock *BB) const {
705 BasicBlock *Exit = NULL;
706
707 while (true) {
708 // Get largest region that starts at BB.
709 Region *R = getRegionFor(BB);
710 while (R && R->getParent() && R->getParent()->getEntry() == BB)
711 R = R->getParent();
712
713 // Get the single exit of BB.
714 if (R && R->getEntry() == BB)
715 Exit = R->getExit();
716 else if (++succ_begin(BB) == succ_end(BB))
717 Exit = *succ_begin(BB);
718 else // No single exit exists.
719 return Exit;
720
721 // Get largest region that starts at Exit.
722 Region *ExitR = getRegionFor(Exit);
723 while (ExitR && ExitR->getParent()
724 && ExitR->getParent()->getEntry() == Exit)
725 ExitR = ExitR->getParent();
726
727 for (pred_iterator PI = pred_begin(Exit), PE = pred_end(Exit); PI != PE;
728 ++PI)
729 if (!R->contains(*PI) && !ExitR->contains(*PI))
730 break;
731
732 // This stops infinite cycles.
733 if (DT->dominates(Exit, BB))
734 break;
735
736 BB = Exit;
737 }
738
739 return Exit;
740}
741
Tobias Grosserf96b0062010-07-22 07:46:31 +0000742Region*
743RegionInfo::getCommonRegion(Region *A, Region *B) const {
744 assert (A && B && "One of the Regions is NULL");
745
746 if (A->contains(B)) return A;
747
748 while (!B->contains(A))
749 B = B->getParent();
750
751 return B;
752}
753
754Region*
755RegionInfo::getCommonRegion(SmallVectorImpl<Region*> &Regions) const {
756 Region* ret = Regions.back();
757 Regions.pop_back();
758
759 for (SmallVectorImpl<Region*>::const_iterator I = Regions.begin(),
760 E = Regions.end(); I != E; ++I)
761 ret = getCommonRegion(ret, *I);
762
763 return ret;
764}
765
766Region*
767RegionInfo::getCommonRegion(SmallVectorImpl<BasicBlock*> &BBs) const {
768 Region* ret = getRegionFor(BBs.back());
769 BBs.pop_back();
770
771 for (SmallVectorImpl<BasicBlock*>::const_iterator I = BBs.begin(),
772 E = BBs.end(); I != E; ++I)
773 ret = getCommonRegion(ret, getRegionFor(*I));
774
775 return ret;
776}
777
778char RegionInfo::ID = 0;
Owen Anderson2ab36d32010-10-12 19:48:12 +0000779INITIALIZE_PASS_BEGIN(RegionInfo, "regions",
780 "Detect single entry single exit regions", true, true)
781INITIALIZE_PASS_DEPENDENCY(DominatorTree)
782INITIALIZE_PASS_DEPENDENCY(PostDominatorTree)
783INITIALIZE_PASS_DEPENDENCY(DominanceFrontier)
784INITIALIZE_PASS_END(RegionInfo, "regions",
Owen Andersonce665bd2010-10-07 22:25:06 +0000785 "Detect single entry single exit regions", true, true)
Tobias Grosserf96b0062010-07-22 07:46:31 +0000786
787// Create methods available outside of this file, to use them
788// "include/llvm/LinkAllPasses.h". Otherwise the pass would be deleted by
789// the link time optimization.
790
791namespace llvm {
792 FunctionPass *createRegionInfoPass() {
793 return new RegionInfo();
794 }
795}
796