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Tom Stellard75aadc22012-12-11 21:25:42 +00001//===-- AMDILCFGStructurizer.cpp - CFG Structurizer -----------------------===//
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/// \file
9//==-----------------------------------------------------------------------===//
10
Tom Stellarda6c6e1b2013-06-07 20:37:48 +000011#include "AMDGPU.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000012#include "AMDGPUInstrInfo.h"
Vincent Lejeune960a6222013-07-19 21:45:06 +000013#include "R600InstrInfo.h"
Eric Christopherd9134482014-08-04 21:25:23 +000014#include "AMDGPUSubtarget.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000015#include "llvm/ADT/DepthFirstIterator.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000016#include "llvm/ADT/SCCIterator.h"
17#include "llvm/ADT/SmallVector.h"
18#include "llvm/ADT/Statistic.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000019#include "llvm/CodeGen/MachineDominators.h"
20#include "llvm/CodeGen/MachineFunction.h"
21#include "llvm/CodeGen/MachineFunctionAnalysis.h"
22#include "llvm/CodeGen/MachineFunctionPass.h"
23#include "llvm/CodeGen/MachineInstrBuilder.h"
24#include "llvm/CodeGen/MachineJumpTableInfo.h"
25#include "llvm/CodeGen/MachineLoopInfo.h"
Chandler Carruthbe810232013-01-02 10:22:59 +000026#include "llvm/CodeGen/MachinePostDominators.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000027#include "llvm/CodeGen/MachineRegisterInfo.h"
Chandler Carruth5ad5f152014-01-13 09:26:24 +000028#include "llvm/IR/Dominators.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000029#include "llvm/Support/Debug.h"
30#include "llvm/Support/raw_ostream.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000031#include "llvm/Target/TargetInstrInfo.h"
Tom Stellarda6c6e1b2013-06-07 20:37:48 +000032#include "llvm/Target/TargetMachine.h"
Tom Stellard75aadc22012-12-11 21:25:42 +000033
34using namespace llvm;
35
Chandler Carruth84e68b22014-04-22 02:41:26 +000036#define DEBUG_TYPE "structcfg"
37
Tom Stellarda6c6e1b2013-06-07 20:37:48 +000038#define DEFAULT_VEC_SLOTS 8
39
Tom Stellard75aadc22012-12-11 21:25:42 +000040// TODO: move-begin.
41
42//===----------------------------------------------------------------------===//
43//
44// Statistics for CFGStructurizer.
45//
46//===----------------------------------------------------------------------===//
47
48STATISTIC(numSerialPatternMatch, "CFGStructurizer number of serial pattern "
49 "matched");
50STATISTIC(numIfPatternMatch, "CFGStructurizer number of if pattern "
51 "matched");
Tom Stellard75aadc22012-12-11 21:25:42 +000052STATISTIC(numLoopcontPatternMatch, "CFGStructurizer number of loop-continue "
53 "pattern matched");
Tom Stellard75aadc22012-12-11 21:25:42 +000054STATISTIC(numClonedBlock, "CFGStructurizer cloned blocks");
55STATISTIC(numClonedInstr, "CFGStructurizer cloned instructions");
56
Tom Stellardf2ba9722013-12-11 17:51:47 +000057namespace llvm {
58 void initializeAMDGPUCFGStructurizerPass(PassRegistry&);
59}
60
Tom Stellard75aadc22012-12-11 21:25:42 +000061//===----------------------------------------------------------------------===//
62//
63// Miscellaneous utility for CFGStructurizer.
64//
65//===----------------------------------------------------------------------===//
Benjamin Kramer635e3682013-05-23 15:43:05 +000066namespace {
Tom Stellard75aadc22012-12-11 21:25:42 +000067#define SHOWNEWINSTR(i) \
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +000068 DEBUG(dbgs() << "New instr: " << *i << "\n");
Tom Stellard75aadc22012-12-11 21:25:42 +000069
70#define SHOWNEWBLK(b, msg) \
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +000071DEBUG( \
72 dbgs() << msg << "BB" << b->getNumber() << "size " << b->size(); \
73 dbgs() << "\n"; \
74);
Tom Stellard75aadc22012-12-11 21:25:42 +000075
76#define SHOWBLK_DETAIL(b, msg) \
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +000077DEBUG( \
Tom Stellard75aadc22012-12-11 21:25:42 +000078 if (b) { \
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +000079 dbgs() << msg << "BB" << b->getNumber() << "size " << b->size(); \
80 b->print(dbgs()); \
81 dbgs() << "\n"; \
Tom Stellard75aadc22012-12-11 21:25:42 +000082 } \
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +000083);
Tom Stellard75aadc22012-12-11 21:25:42 +000084
85#define INVALIDSCCNUM -1
Tom Stellard75aadc22012-12-11 21:25:42 +000086
87template<class NodeT>
Craig Topperb94011f2013-07-14 04:42:23 +000088void ReverseVector(SmallVectorImpl<NodeT *> &Src) {
Tom Stellard75aadc22012-12-11 21:25:42 +000089 size_t sz = Src.size();
90 for (size_t i = 0; i < sz/2; ++i) {
91 NodeT *t = Src[i];
92 Src[i] = Src[sz - i - 1];
93 Src[sz - i - 1] = t;
94 }
95}
96
Benjamin Kramer635e3682013-05-23 15:43:05 +000097} // end anonymous namespace
Tom Stellard75aadc22012-12-11 21:25:42 +000098
99//===----------------------------------------------------------------------===//
100//
101// supporting data structure for CFGStructurizer
102//
103//===----------------------------------------------------------------------===//
104
Tom Stellard75aadc22012-12-11 21:25:42 +0000105
Vincent Lejeune960a6222013-07-19 21:45:06 +0000106namespace {
107
Tom Stellard75aadc22012-12-11 21:25:42 +0000108class BlockInformation {
109public:
Vincent Lejeune960a6222013-07-19 21:45:06 +0000110 bool IsRetired;
111 int SccNum;
112 BlockInformation() : IsRetired(false), SccNum(INVALIDSCCNUM) {}
Tom Stellard75aadc22012-12-11 21:25:42 +0000113};
114
Benjamin Kramer635e3682013-05-23 15:43:05 +0000115} // end anonymous namespace
Tom Stellard75aadc22012-12-11 21:25:42 +0000116
117//===----------------------------------------------------------------------===//
118//
119// CFGStructurizer
120//
121//===----------------------------------------------------------------------===//
122
Benjamin Kramer635e3682013-05-23 15:43:05 +0000123namespace {
Vincent Lejeune960a6222013-07-19 21:45:06 +0000124class AMDGPUCFGStructurizer : public MachineFunctionPass {
Tom Stellard75aadc22012-12-11 21:25:42 +0000125public:
Vincent Lejeune960a6222013-07-19 21:45:06 +0000126 typedef SmallVector<MachineBasicBlock *, 32> MBBVector;
127 typedef std::map<MachineBasicBlock *, BlockInformation *> MBBInfoMap;
128 typedef std::map<MachineLoop *, MachineBasicBlock *> LoopLandInfoMap;
129
130 enum PathToKind {
Tom Stellard75aadc22012-12-11 21:25:42 +0000131 Not_SinglePath = 0,
132 SinglePath_InPath = 1,
133 SinglePath_NotInPath = 2
Vincent Lejeune960a6222013-07-19 21:45:06 +0000134 };
Tom Stellard75aadc22012-12-11 21:25:42 +0000135
Vincent Lejeune960a6222013-07-19 21:45:06 +0000136 static char ID;
Tom Stellard75aadc22012-12-11 21:25:42 +0000137
Tom Stellardf2ba9722013-12-11 17:51:47 +0000138 AMDGPUCFGStructurizer() :
Craig Topper062a2ba2014-04-25 05:30:21 +0000139 MachineFunctionPass(ID), TII(nullptr), TRI(nullptr) {
Tom Stellardf2ba9722013-12-11 17:51:47 +0000140 initializeAMDGPUCFGStructurizerPass(*PassRegistry::getPassRegistry());
141 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000142
Craig Topper5656db42014-04-29 07:57:24 +0000143 const char *getPassName() const override {
Tom Stellardf2ba9722013-12-11 17:51:47 +0000144 return "AMDGPU Control Flow Graph structurizer Pass";
Vincent Lejeune960a6222013-07-19 21:45:06 +0000145 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000146
Craig Topper5656db42014-04-29 07:57:24 +0000147 void getAnalysisUsage(AnalysisUsage &AU) const override {
Vincent Lejeune960a6222013-07-19 21:45:06 +0000148 AU.addPreserved<MachineFunctionAnalysis>();
149 AU.addRequired<MachineFunctionAnalysis>();
150 AU.addRequired<MachineDominatorTree>();
151 AU.addRequired<MachinePostDominatorTree>();
152 AU.addRequired<MachineLoopInfo>();
153 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000154
155 /// Perform the CFG structurization
Vincent Lejeune960a6222013-07-19 21:45:06 +0000156 bool run();
Tom Stellard75aadc22012-12-11 21:25:42 +0000157
158 /// Perform the CFG preparation
Vincent Lejeune960a6222013-07-19 21:45:06 +0000159 /// This step will remove every unconditionnal/dead jump instructions and make
160 /// sure all loops have an exit block
161 bool prepare();
Tom Stellard75aadc22012-12-11 21:25:42 +0000162
Craig Topper5656db42014-04-29 07:57:24 +0000163 bool runOnMachineFunction(MachineFunction &MF) override {
Eric Christopherfc6de422014-08-05 02:39:49 +0000164 TII = static_cast<const R600InstrInfo *>(MF.getSubtarget().getInstrInfo());
Tom Stellardf2ba9722013-12-11 17:51:47 +0000165 TRI = &TII->getRegisterInfo();
Vincent Lejeune960a6222013-07-19 21:45:06 +0000166 DEBUG(MF.dump(););
167 OrderedBlks.clear();
168 FuncRep = &MF;
169 MLI = &getAnalysis<MachineLoopInfo>();
170 DEBUG(dbgs() << "LoopInfo:\n"; PrintLoopinfo(*MLI););
171 MDT = &getAnalysis<MachineDominatorTree>();
Craig Toppere73658d2014-04-28 04:05:08 +0000172 DEBUG(MDT->print(dbgs(), (const llvm::Module*)nullptr););
Vincent Lejeune960a6222013-07-19 21:45:06 +0000173 PDT = &getAnalysis<MachinePostDominatorTree>();
174 DEBUG(PDT->print(dbgs()););
175 prepare();
176 run();
177 DEBUG(MF.dump(););
178 return true;
179 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000180
Vincent Lejeune960a6222013-07-19 21:45:06 +0000181protected:
Vincent Lejeune960a6222013-07-19 21:45:06 +0000182 MachineDominatorTree *MDT;
183 MachinePostDominatorTree *PDT;
184 MachineLoopInfo *MLI;
185 const R600InstrInfo *TII;
Tom Stellard75aadc22012-12-11 21:25:42 +0000186 const AMDGPURegisterInfo *TRI;
187
Vincent Lejeune960a6222013-07-19 21:45:06 +0000188 // PRINT FUNCTIONS
189 /// Print the ordered Blocks.
190 void printOrderedBlocks() const {
191 size_t i = 0;
192 for (MBBVector::const_iterator iterBlk = OrderedBlks.begin(),
193 iterBlkEnd = OrderedBlks.end(); iterBlk != iterBlkEnd; ++iterBlk, ++i) {
194 dbgs() << "BB" << (*iterBlk)->getNumber();
195 dbgs() << "(" << getSCCNum(*iterBlk) << "," << (*iterBlk)->size() << ")";
196 if (i != 0 && i % 10 == 0) {
197 dbgs() << "\n";
198 } else {
199 dbgs() << " ";
200 }
201 }
202 }
203 static void PrintLoopinfo(const MachineLoopInfo &LoopInfo) {
204 for (MachineLoop::iterator iter = LoopInfo.begin(),
205 iterEnd = LoopInfo.end(); iter != iterEnd; ++iter) {
206 (*iter)->print(dbgs(), 0);
207 }
208 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000209
Vincent Lejeune960a6222013-07-19 21:45:06 +0000210 // UTILITY FUNCTIONS
211 int getSCCNum(MachineBasicBlock *MBB) const;
212 MachineBasicBlock *getLoopLandInfo(MachineLoop *LoopRep) const;
213 bool hasBackEdge(MachineBasicBlock *MBB) const;
214 static unsigned getLoopDepth(MachineLoop *LoopRep);
215 bool isRetiredBlock(MachineBasicBlock *MBB) const;
216 bool isActiveLoophead(MachineBasicBlock *MBB) const;
217 PathToKind singlePathTo(MachineBasicBlock *SrcMBB, MachineBasicBlock *DstMBB,
218 bool AllowSideEntry = true) const;
219 int countActiveBlock(MBBVector::const_iterator It,
220 MBBVector::const_iterator E) const;
221 bool needMigrateBlock(MachineBasicBlock *MBB) const;
222
223 // Utility Functions
224 void reversePredicateSetter(MachineBasicBlock::iterator I);
225 /// Compute the reversed DFS post order of Blocks
226 void orderBlocks(MachineFunction *MF);
227
Alp Tokercb402912014-01-24 17:20:08 +0000228 // Function originally from CFGStructTraits
Vincent Lejeune960a6222013-07-19 21:45:06 +0000229 void insertInstrEnd(MachineBasicBlock *MBB, int NewOpcode,
230 DebugLoc DL = DebugLoc());
231 MachineInstr *insertInstrBefore(MachineBasicBlock *MBB, int NewOpcode,
232 DebugLoc DL = DebugLoc());
233 MachineInstr *insertInstrBefore(MachineBasicBlock::iterator I, int NewOpcode);
234 void insertCondBranchBefore(MachineBasicBlock::iterator I, int NewOpcode,
235 DebugLoc DL);
236 void insertCondBranchBefore(MachineBasicBlock *MBB,
237 MachineBasicBlock::iterator I, int NewOpcode, int RegNum,
238 DebugLoc DL);
239 void insertCondBranchEnd(MachineBasicBlock *MBB, int NewOpcode, int RegNum);
240 static int getBranchNzeroOpcode(int OldOpcode);
241 static int getBranchZeroOpcode(int OldOpcode);
242 static int getContinueNzeroOpcode(int OldOpcode);
243 static int getContinueZeroOpcode(int OldOpcode);
244 static MachineBasicBlock *getTrueBranch(MachineInstr *MI);
245 static void setTrueBranch(MachineInstr *MI, MachineBasicBlock *MBB);
246 static MachineBasicBlock *getFalseBranch(MachineBasicBlock *MBB,
247 MachineInstr *MI);
248 static bool isCondBranch(MachineInstr *MI);
249 static bool isUncondBranch(MachineInstr *MI);
250 static DebugLoc getLastDebugLocInBB(MachineBasicBlock *MBB);
251 static MachineInstr *getNormalBlockBranchInstr(MachineBasicBlock *MBB);
252 /// The correct naming for this is getPossibleLoopendBlockBranchInstr.
253 ///
254 /// BB with backward-edge could have move instructions after the branch
255 /// instruction. Such move instruction "belong to" the loop backward-edge.
256 MachineInstr *getLoopendBlockBranchInstr(MachineBasicBlock *MBB);
257 static MachineInstr *getReturnInstr(MachineBasicBlock *MBB);
258 static MachineInstr *getContinueInstr(MachineBasicBlock *MBB);
Vincent Lejeune960a6222013-07-19 21:45:06 +0000259 static bool isReturnBlock(MachineBasicBlock *MBB);
260 static void cloneSuccessorList(MachineBasicBlock *DstMBB,
261 MachineBasicBlock *SrcMBB) ;
262 static MachineBasicBlock *clone(MachineBasicBlock *MBB);
263 /// MachineBasicBlock::ReplaceUsesOfBlockWith doesn't serve the purpose
264 /// because the AMDGPU instruction is not recognized as terminator fix this
265 /// and retire this routine
266 void replaceInstrUseOfBlockWith(MachineBasicBlock *SrcMBB,
267 MachineBasicBlock *OldMBB, MachineBasicBlock *NewBlk);
268 static void wrapup(MachineBasicBlock *MBB);
269
270
271 int patternMatch(MachineBasicBlock *MBB);
272 int patternMatchGroup(MachineBasicBlock *MBB);
273 int serialPatternMatch(MachineBasicBlock *MBB);
274 int ifPatternMatch(MachineBasicBlock *MBB);
275 int loopendPatternMatch();
276 int mergeLoop(MachineLoop *LoopRep);
277 int loopcontPatternMatch(MachineLoop *LoopRep, MachineBasicBlock *LoopHeader);
278
279 void handleLoopcontBlock(MachineBasicBlock *ContingMBB,
280 MachineLoop *ContingLoop, MachineBasicBlock *ContMBB,
281 MachineLoop *ContLoop);
282 /// return true iff src1Blk->succ_size() == 0 && src1Blk and src2Blk are in
283 /// the same loop with LoopLandInfo without explicitly keeping track of
284 /// loopContBlks and loopBreakBlks, this is a method to get the information.
285 bool isSameloopDetachedContbreak(MachineBasicBlock *Src1MBB,
286 MachineBasicBlock *Src2MBB);
287 int handleJumpintoIf(MachineBasicBlock *HeadMBB,
288 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB);
289 int handleJumpintoIfImp(MachineBasicBlock *HeadMBB,
290 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB);
291 int improveSimpleJumpintoIf(MachineBasicBlock *HeadMBB,
292 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB,
293 MachineBasicBlock **LandMBBPtr);
294 void showImproveSimpleJumpintoIf(MachineBasicBlock *HeadMBB,
295 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB,
296 MachineBasicBlock *LandMBB, bool Detail = false);
297 int cloneOnSideEntryTo(MachineBasicBlock *PreMBB,
298 MachineBasicBlock *SrcMBB, MachineBasicBlock *DstMBB);
299 void mergeSerialBlock(MachineBasicBlock *DstMBB,
300 MachineBasicBlock *SrcMBB);
301
302 void mergeIfthenelseBlock(MachineInstr *BranchMI,
303 MachineBasicBlock *MBB, MachineBasicBlock *TrueMBB,
304 MachineBasicBlock *FalseMBB, MachineBasicBlock *LandMBB);
305 void mergeLooplandBlock(MachineBasicBlock *DstMBB,
306 MachineBasicBlock *LandMBB);
307 void mergeLoopbreakBlock(MachineBasicBlock *ExitingMBB,
308 MachineBasicBlock *LandMBB);
309 void settleLoopcontBlock(MachineBasicBlock *ContingMBB,
310 MachineBasicBlock *ContMBB);
311 /// normalizeInfiniteLoopExit change
312 /// B1:
313 /// uncond_br LoopHeader
314 ///
315 /// to
316 /// B1:
317 /// cond_br 1 LoopHeader dummyExit
318 /// and return the newly added dummy exit block
319 MachineBasicBlock *normalizeInfiniteLoopExit(MachineLoop *LoopRep);
320 void removeUnconditionalBranch(MachineBasicBlock *MBB);
321 /// Remove duplicate branches instructions in a block.
322 /// For instance
323 /// B0:
324 /// cond_br X B1 B2
325 /// cond_br X B1 B2
326 /// is transformed to
327 /// B0:
328 /// cond_br X B1 B2
329 void removeRedundantConditionalBranch(MachineBasicBlock *MBB);
330 void addDummyExitBlock(SmallVectorImpl<MachineBasicBlock *> &RetMBB);
331 void removeSuccessor(MachineBasicBlock *MBB);
332 MachineBasicBlock *cloneBlockForPredecessor(MachineBasicBlock *MBB,
333 MachineBasicBlock *PredMBB);
334 void migrateInstruction(MachineBasicBlock *SrcMBB,
335 MachineBasicBlock *DstMBB, MachineBasicBlock::iterator I);
336 void recordSccnum(MachineBasicBlock *MBB, int SCCNum);
337 void retireBlock(MachineBasicBlock *MBB);
Craig Topper062a2ba2014-04-25 05:30:21 +0000338 void setLoopLandBlock(MachineLoop *LoopRep, MachineBasicBlock *MBB = nullptr);
Vincent Lejeune960a6222013-07-19 21:45:06 +0000339
340 MachineBasicBlock *findNearestCommonPostDom(std::set<MachineBasicBlock *>&);
Sylvestre Ledru469de192014-08-11 18:04:46 +0000341 /// This is work around solution for findNearestCommonDominator not available
Vincent Lejeune960a6222013-07-19 21:45:06 +0000342 /// to post dom a proper fix should go to Dominators.h.
343 MachineBasicBlock *findNearestCommonPostDom(MachineBasicBlock *MBB1,
344 MachineBasicBlock *MBB2);
345
346private:
347 MBBInfoMap BlockInfoMap;
348 LoopLandInfoMap LLInfoMap;
349 std::map<MachineLoop *, bool> Visited;
350 MachineFunction *FuncRep;
351 SmallVector<MachineBasicBlock *, DEFAULT_VEC_SLOTS> OrderedBlks;
352};
353
354int AMDGPUCFGStructurizer::getSCCNum(MachineBasicBlock *MBB) const {
355 MBBInfoMap::const_iterator It = BlockInfoMap.find(MBB);
356 if (It == BlockInfoMap.end())
357 return INVALIDSCCNUM;
358 return (*It).second->SccNum;
Tom Stellard75aadc22012-12-11 21:25:42 +0000359}
360
Vincent Lejeune960a6222013-07-19 21:45:06 +0000361MachineBasicBlock *AMDGPUCFGStructurizer::getLoopLandInfo(MachineLoop *LoopRep)
362 const {
363 LoopLandInfoMap::const_iterator It = LLInfoMap.find(LoopRep);
364 if (It == LLInfoMap.end())
Craig Topper062a2ba2014-04-25 05:30:21 +0000365 return nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000366 return (*It).second;
367}
368
369bool AMDGPUCFGStructurizer::hasBackEdge(MachineBasicBlock *MBB) const {
370 MachineLoop *LoopRep = MLI->getLoopFor(MBB);
371 if (!LoopRep)
372 return false;
373 MachineBasicBlock *LoopHeader = LoopRep->getHeader();
374 return MBB->isSuccessor(LoopHeader);
375}
376
377unsigned AMDGPUCFGStructurizer::getLoopDepth(MachineLoop *LoopRep) {
378 return LoopRep ? LoopRep->getLoopDepth() : 0;
379}
380
381bool AMDGPUCFGStructurizer::isRetiredBlock(MachineBasicBlock *MBB) const {
382 MBBInfoMap::const_iterator It = BlockInfoMap.find(MBB);
383 if (It == BlockInfoMap.end())
384 return false;
385 return (*It).second->IsRetired;
386}
387
388bool AMDGPUCFGStructurizer::isActiveLoophead(MachineBasicBlock *MBB) const {
389 MachineLoop *LoopRep = MLI->getLoopFor(MBB);
390 while (LoopRep && LoopRep->getHeader() == MBB) {
391 MachineBasicBlock *LoopLand = getLoopLandInfo(LoopRep);
392 if(!LoopLand)
393 return true;
394 if (!isRetiredBlock(LoopLand))
395 return true;
396 LoopRep = LoopRep->getParentLoop();
397 }
398 return false;
399}
400AMDGPUCFGStructurizer::PathToKind AMDGPUCFGStructurizer::singlePathTo(
401 MachineBasicBlock *SrcMBB, MachineBasicBlock *DstMBB,
402 bool AllowSideEntry) const {
403 assert(DstMBB);
404 if (SrcMBB == DstMBB)
405 return SinglePath_InPath;
406 while (SrcMBB && SrcMBB->succ_size() == 1) {
407 SrcMBB = *SrcMBB->succ_begin();
408 if (SrcMBB == DstMBB)
409 return SinglePath_InPath;
410 if (!AllowSideEntry && SrcMBB->pred_size() > 1)
411 return Not_SinglePath;
412 }
413 if (SrcMBB && SrcMBB->succ_size()==0)
414 return SinglePath_NotInPath;
415 return Not_SinglePath;
416}
417
418int AMDGPUCFGStructurizer::countActiveBlock(MBBVector::const_iterator It,
419 MBBVector::const_iterator E) const {
420 int Count = 0;
421 while (It != E) {
422 if (!isRetiredBlock(*It))
423 ++Count;
424 ++It;
425 }
426 return Count;
427}
428
429bool AMDGPUCFGStructurizer::needMigrateBlock(MachineBasicBlock *MBB) const {
430 unsigned BlockSizeThreshold = 30;
431 unsigned CloneInstrThreshold = 100;
432 bool MultiplePreds = MBB && (MBB->pred_size() > 1);
433
434 if(!MultiplePreds)
435 return false;
436 unsigned BlkSize = MBB->size();
437 return ((BlkSize > BlockSizeThreshold) &&
438 (BlkSize * (MBB->pred_size() - 1) > CloneInstrThreshold));
439}
440
441void AMDGPUCFGStructurizer::reversePredicateSetter(
442 MachineBasicBlock::iterator I) {
443 while (I--) {
444 if (I->getOpcode() == AMDGPU::PRED_X) {
445 switch (static_cast<MachineInstr *>(I)->getOperand(2).getImm()) {
446 case OPCODE_IS_ZERO_INT:
447 static_cast<MachineInstr *>(I)->getOperand(2)
448 .setImm(OPCODE_IS_NOT_ZERO_INT);
449 return;
450 case OPCODE_IS_NOT_ZERO_INT:
451 static_cast<MachineInstr *>(I)->getOperand(2)
452 .setImm(OPCODE_IS_ZERO_INT);
453 return;
454 case OPCODE_IS_ZERO:
455 static_cast<MachineInstr *>(I)->getOperand(2)
456 .setImm(OPCODE_IS_NOT_ZERO);
457 return;
458 case OPCODE_IS_NOT_ZERO:
459 static_cast<MachineInstr *>(I)->getOperand(2)
460 .setImm(OPCODE_IS_ZERO);
461 return;
462 default:
463 llvm_unreachable("PRED_X Opcode invalid!");
464 }
465 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000466 }
467}
468
Vincent Lejeune960a6222013-07-19 21:45:06 +0000469void AMDGPUCFGStructurizer::insertInstrEnd(MachineBasicBlock *MBB,
470 int NewOpcode, DebugLoc DL) {
471 MachineInstr *MI = MBB->getParent()
472 ->CreateMachineInstr(TII->get(NewOpcode), DL);
473 MBB->push_back(MI);
474 //assume the instruction doesn't take any reg operand ...
475 SHOWNEWINSTR(MI);
476}
Tom Stellard75aadc22012-12-11 21:25:42 +0000477
Vincent Lejeune960a6222013-07-19 21:45:06 +0000478MachineInstr *AMDGPUCFGStructurizer::insertInstrBefore(MachineBasicBlock *MBB,
479 int NewOpcode, DebugLoc DL) {
480 MachineInstr *MI =
481 MBB->getParent()->CreateMachineInstr(TII->get(NewOpcode), DL);
482 if (MBB->begin() != MBB->end())
483 MBB->insert(MBB->begin(), MI);
484 else
485 MBB->push_back(MI);
486 SHOWNEWINSTR(MI);
487 return MI;
488}
489
490MachineInstr *AMDGPUCFGStructurizer::insertInstrBefore(
491 MachineBasicBlock::iterator I, int NewOpcode) {
492 MachineInstr *OldMI = &(*I);
493 MachineBasicBlock *MBB = OldMI->getParent();
494 MachineInstr *NewMBB =
495 MBB->getParent()->CreateMachineInstr(TII->get(NewOpcode), DebugLoc());
496 MBB->insert(I, NewMBB);
497 //assume the instruction doesn't take any reg operand ...
498 SHOWNEWINSTR(NewMBB);
499 return NewMBB;
500}
501
502void AMDGPUCFGStructurizer::insertCondBranchBefore(
503 MachineBasicBlock::iterator I, int NewOpcode, DebugLoc DL) {
504 MachineInstr *OldMI = &(*I);
505 MachineBasicBlock *MBB = OldMI->getParent();
506 MachineFunction *MF = MBB->getParent();
507 MachineInstr *NewMI = MF->CreateMachineInstr(TII->get(NewOpcode), DL);
508 MBB->insert(I, NewMI);
509 MachineInstrBuilder MIB(*MF, NewMI);
510 MIB.addReg(OldMI->getOperand(1).getReg(), false);
511 SHOWNEWINSTR(NewMI);
512 //erase later oldInstr->eraseFromParent();
513}
514
515void AMDGPUCFGStructurizer::insertCondBranchBefore(MachineBasicBlock *blk,
516 MachineBasicBlock::iterator I, int NewOpcode, int RegNum,
517 DebugLoc DL) {
518 MachineFunction *MF = blk->getParent();
519 MachineInstr *NewInstr = MF->CreateMachineInstr(TII->get(NewOpcode), DL);
520 //insert before
521 blk->insert(I, NewInstr);
522 MachineInstrBuilder(*MF, NewInstr).addReg(RegNum, false);
523 SHOWNEWINSTR(NewInstr);
524}
525
526void AMDGPUCFGStructurizer::insertCondBranchEnd(MachineBasicBlock *MBB,
527 int NewOpcode, int RegNum) {
528 MachineFunction *MF = MBB->getParent();
529 MachineInstr *NewInstr =
530 MF->CreateMachineInstr(TII->get(NewOpcode), DebugLoc());
531 MBB->push_back(NewInstr);
532 MachineInstrBuilder(*MF, NewInstr).addReg(RegNum, false);
533 SHOWNEWINSTR(NewInstr);
534}
535
536int AMDGPUCFGStructurizer::getBranchNzeroOpcode(int OldOpcode) {
537 switch(OldOpcode) {
538 case AMDGPU::JUMP_COND:
539 case AMDGPU::JUMP: return AMDGPU::IF_PREDICATE_SET;
540 case AMDGPU::BRANCH_COND_i32:
541 case AMDGPU::BRANCH_COND_f32: return AMDGPU::IF_LOGICALNZ_f32;
542 default: llvm_unreachable("internal error");
543 }
544 return -1;
545}
546
547int AMDGPUCFGStructurizer::getBranchZeroOpcode(int OldOpcode) {
548 switch(OldOpcode) {
549 case AMDGPU::JUMP_COND:
550 case AMDGPU::JUMP: return AMDGPU::IF_PREDICATE_SET;
551 case AMDGPU::BRANCH_COND_i32:
552 case AMDGPU::BRANCH_COND_f32: return AMDGPU::IF_LOGICALZ_f32;
553 default: llvm_unreachable("internal error");
554 }
555 return -1;
556}
557
558int AMDGPUCFGStructurizer::getContinueNzeroOpcode(int OldOpcode) {
559 switch(OldOpcode) {
560 case AMDGPU::JUMP_COND:
561 case AMDGPU::JUMP: return AMDGPU::CONTINUE_LOGICALNZ_i32;
562 default: llvm_unreachable("internal error");
563 };
564 return -1;
565}
566
567int AMDGPUCFGStructurizer::getContinueZeroOpcode(int OldOpcode) {
568 switch(OldOpcode) {
569 case AMDGPU::JUMP_COND:
570 case AMDGPU::JUMP: return AMDGPU::CONTINUE_LOGICALZ_i32;
571 default: llvm_unreachable("internal error");
572 }
573 return -1;
574}
575
576MachineBasicBlock *AMDGPUCFGStructurizer::getTrueBranch(MachineInstr *MI) {
577 return MI->getOperand(0).getMBB();
578}
579
580void AMDGPUCFGStructurizer::setTrueBranch(MachineInstr *MI,
581 MachineBasicBlock *MBB) {
582 MI->getOperand(0).setMBB(MBB);
583}
584
585MachineBasicBlock *
586AMDGPUCFGStructurizer::getFalseBranch(MachineBasicBlock *MBB,
587 MachineInstr *MI) {
588 assert(MBB->succ_size() == 2);
589 MachineBasicBlock *TrueBranch = getTrueBranch(MI);
590 MachineBasicBlock::succ_iterator It = MBB->succ_begin();
591 MachineBasicBlock::succ_iterator Next = It;
592 ++Next;
593 return (*It == TrueBranch) ? *Next : *It;
594}
595
596bool AMDGPUCFGStructurizer::isCondBranch(MachineInstr *MI) {
597 switch (MI->getOpcode()) {
598 case AMDGPU::JUMP_COND:
599 case AMDGPU::BRANCH_COND_i32:
600 case AMDGPU::BRANCH_COND_f32: return true;
601 default:
602 return false;
603 }
604 return false;
605}
606
607bool AMDGPUCFGStructurizer::isUncondBranch(MachineInstr *MI) {
608 switch (MI->getOpcode()) {
609 case AMDGPU::JUMP:
610 case AMDGPU::BRANCH:
611 return true;
612 default:
613 return false;
614 }
615 return false;
616}
617
618DebugLoc AMDGPUCFGStructurizer::getLastDebugLocInBB(MachineBasicBlock *MBB) {
619 //get DebugLoc from the first MachineBasicBlock instruction with debug info
620 DebugLoc DL;
621 for (MachineBasicBlock::iterator It = MBB->begin(); It != MBB->end();
622 ++It) {
623 MachineInstr *instr = &(*It);
624 if (instr->getDebugLoc().isUnknown() == false)
625 DL = instr->getDebugLoc();
626 }
627 return DL;
628}
629
630MachineInstr *AMDGPUCFGStructurizer::getNormalBlockBranchInstr(
631 MachineBasicBlock *MBB) {
632 MachineBasicBlock::reverse_iterator It = MBB->rbegin();
633 MachineInstr *MI = &*It;
634 if (MI && (isCondBranch(MI) || isUncondBranch(MI)))
635 return MI;
Craig Topper062a2ba2014-04-25 05:30:21 +0000636 return nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000637}
638
639MachineInstr *AMDGPUCFGStructurizer::getLoopendBlockBranchInstr(
640 MachineBasicBlock *MBB) {
641 for (MachineBasicBlock::reverse_iterator It = MBB->rbegin(), E = MBB->rend();
642 It != E; ++It) {
643 // FIXME: Simplify
644 MachineInstr *MI = &*It;
645 if (MI) {
646 if (isCondBranch(MI) || isUncondBranch(MI))
647 return MI;
648 else if (!TII->isMov(MI->getOpcode()))
649 break;
650 }
651 }
Craig Topper062a2ba2014-04-25 05:30:21 +0000652 return nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000653}
654
655MachineInstr *AMDGPUCFGStructurizer::getReturnInstr(MachineBasicBlock *MBB) {
656 MachineBasicBlock::reverse_iterator It = MBB->rbegin();
657 if (It != MBB->rend()) {
658 MachineInstr *instr = &(*It);
659 if (instr->getOpcode() == AMDGPU::RETURN)
660 return instr;
661 }
Craig Topper062a2ba2014-04-25 05:30:21 +0000662 return nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000663}
664
665MachineInstr *AMDGPUCFGStructurizer::getContinueInstr(MachineBasicBlock *MBB) {
666 MachineBasicBlock::reverse_iterator It = MBB->rbegin();
667 if (It != MBB->rend()) {
668 MachineInstr *MI = &(*It);
669 if (MI->getOpcode() == AMDGPU::CONTINUE)
670 return MI;
671 }
Craig Topper062a2ba2014-04-25 05:30:21 +0000672 return nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000673}
674
Vincent Lejeune960a6222013-07-19 21:45:06 +0000675bool AMDGPUCFGStructurizer::isReturnBlock(MachineBasicBlock *MBB) {
676 MachineInstr *MI = getReturnInstr(MBB);
677 bool IsReturn = (MBB->succ_size() == 0);
678 if (MI)
679 assert(IsReturn);
680 else if (IsReturn)
681 DEBUG(
682 dbgs() << "BB" << MBB->getNumber()
683 <<" is return block without RETURN instr\n";);
684 return IsReturn;
685}
686
687void AMDGPUCFGStructurizer::cloneSuccessorList(MachineBasicBlock *DstMBB,
688 MachineBasicBlock *SrcMBB) {
689 for (MachineBasicBlock::succ_iterator It = SrcMBB->succ_begin(),
690 iterEnd = SrcMBB->succ_end(); It != iterEnd; ++It)
691 DstMBB->addSuccessor(*It); // *iter's predecessor is also taken care of
692}
693
694MachineBasicBlock *AMDGPUCFGStructurizer::clone(MachineBasicBlock *MBB) {
695 MachineFunction *Func = MBB->getParent();
696 MachineBasicBlock *NewMBB = Func->CreateMachineBasicBlock();
697 Func->push_back(NewMBB); //insert to function
698 for (MachineBasicBlock::iterator It = MBB->begin(), E = MBB->end();
699 It != E; ++It) {
700 MachineInstr *MI = Func->CloneMachineInstr(It);
701 NewMBB->push_back(MI);
702 }
703 return NewMBB;
704}
705
706void AMDGPUCFGStructurizer::replaceInstrUseOfBlockWith(
707 MachineBasicBlock *SrcMBB, MachineBasicBlock *OldMBB,
708 MachineBasicBlock *NewBlk) {
709 MachineInstr *BranchMI = getLoopendBlockBranchInstr(SrcMBB);
710 if (BranchMI && isCondBranch(BranchMI) &&
711 getTrueBranch(BranchMI) == OldMBB)
712 setTrueBranch(BranchMI, NewBlk);
713}
714
715void AMDGPUCFGStructurizer::wrapup(MachineBasicBlock *MBB) {
716 assert((!MBB->getParent()->getJumpTableInfo()
717 || MBB->getParent()->getJumpTableInfo()->isEmpty())
718 && "found a jump table");
719
720 //collect continue right before endloop
721 SmallVector<MachineInstr *, DEFAULT_VEC_SLOTS> ContInstr;
722 MachineBasicBlock::iterator Pre = MBB->begin();
723 MachineBasicBlock::iterator E = MBB->end();
724 MachineBasicBlock::iterator It = Pre;
725 while (It != E) {
726 if (Pre->getOpcode() == AMDGPU::CONTINUE
727 && It->getOpcode() == AMDGPU::ENDLOOP)
728 ContInstr.push_back(Pre);
729 Pre = It;
730 ++It;
731 }
732
733 //delete continue right before endloop
734 for (unsigned i = 0; i < ContInstr.size(); ++i)
735 ContInstr[i]->eraseFromParent();
736
737 // TODO to fix up jump table so later phase won't be confused. if
738 // (jumpTableInfo->isEmpty() == false) { need to clean the jump table, but
739 // there isn't such an interface yet. alternatively, replace all the other
740 // blocks in the jump table with the entryBlk //}
741
742}
743
744
745bool AMDGPUCFGStructurizer::prepare() {
746 bool Changed = false;
Tom Stellard75aadc22012-12-11 21:25:42 +0000747
748 //FIXME: if not reducible flow graph, make it so ???
749
Vincent Lejeune960a6222013-07-19 21:45:06 +0000750 DEBUG(dbgs() << "AMDGPUCFGStructurizer::prepare\n";);
Tom Stellard75aadc22012-12-11 21:25:42 +0000751
Vincent Lejeune960a6222013-07-19 21:45:06 +0000752 orderBlocks(FuncRep);
Tom Stellard75aadc22012-12-11 21:25:42 +0000753
Vincent Lejeune960a6222013-07-19 21:45:06 +0000754 SmallVector<MachineBasicBlock *, DEFAULT_VEC_SLOTS> RetBlks;
Tom Stellard75aadc22012-12-11 21:25:42 +0000755
Vincent Lejeune960a6222013-07-19 21:45:06 +0000756 // Add an ExitBlk to loop that don't have one
757 for (MachineLoopInfo::iterator It = MLI->begin(),
758 E = MLI->end(); It != E; ++It) {
759 MachineLoop *LoopRep = (*It);
760 MBBVector ExitingMBBs;
761 LoopRep->getExitingBlocks(ExitingMBBs);
Tom Stellard75aadc22012-12-11 21:25:42 +0000762
Vincent Lejeune960a6222013-07-19 21:45:06 +0000763 if (ExitingMBBs.size() == 0) {
764 MachineBasicBlock* DummyExitBlk = normalizeInfiniteLoopExit(LoopRep);
765 if (DummyExitBlk)
766 RetBlks.push_back(DummyExitBlk);
Tom Stellard75aadc22012-12-11 21:25:42 +0000767 }
768 }
769
770 // Remove unconditional branch instr.
771 // Add dummy exit block iff there are multiple returns.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000772 for (SmallVectorImpl<MachineBasicBlock *>::const_iterator
773 It = OrderedBlks.begin(), E = OrderedBlks.end(); It != E; ++It) {
774 MachineBasicBlock *MBB = *It;
775 removeUnconditionalBranch(MBB);
776 removeRedundantConditionalBranch(MBB);
777 if (isReturnBlock(MBB)) {
778 RetBlks.push_back(MBB);
Tom Stellard75aadc22012-12-11 21:25:42 +0000779 }
Vincent Lejeune960a6222013-07-19 21:45:06 +0000780 assert(MBB->succ_size() <= 2);
Tom Stellard75aadc22012-12-11 21:25:42 +0000781 }
782
Vincent Lejeune960a6222013-07-19 21:45:06 +0000783 if (RetBlks.size() >= 2) {
784 addDummyExitBlock(RetBlks);
785 Changed = true;
786 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000787
Vincent Lejeune960a6222013-07-19 21:45:06 +0000788 return Changed;
789}
790
791bool AMDGPUCFGStructurizer::run() {
Tom Stellard75aadc22012-12-11 21:25:42 +0000792
793 //Assume reducible CFG...
Matt Arsenaultdb8b1d52014-03-24 20:29:02 +0000794 DEBUG(dbgs() << "AMDGPUCFGStructurizer::run\n");
Tom Stellard75aadc22012-12-11 21:25:42 +0000795
Tom Stellard75aadc22012-12-11 21:25:42 +0000796#ifdef STRESSTEST
797 //Use the worse block ordering to test the algorithm.
798 ReverseVector(orderedBlks);
799#endif
800
Vincent Lejeune960a6222013-07-19 21:45:06 +0000801 DEBUG(dbgs() << "Ordered blocks:\n"; printOrderedBlocks(););
802 int NumIter = 0;
803 bool Finish = false;
804 MachineBasicBlock *MBB;
805 bool MakeProgress = false;
806 int NumRemainedBlk = countActiveBlock(OrderedBlks.begin(),
807 OrderedBlks.end());
Tom Stellard75aadc22012-12-11 21:25:42 +0000808
809 do {
Vincent Lejeune960a6222013-07-19 21:45:06 +0000810 ++NumIter;
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000811 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000812 dbgs() << "numIter = " << NumIter
813 << ", numRemaintedBlk = " << NumRemainedBlk << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000814 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000815
Vincent Lejeune960a6222013-07-19 21:45:06 +0000816 SmallVectorImpl<MachineBasicBlock *>::const_iterator It =
817 OrderedBlks.begin();
818 SmallVectorImpl<MachineBasicBlock *>::const_iterator E =
819 OrderedBlks.end();
Tom Stellard75aadc22012-12-11 21:25:42 +0000820
Vincent Lejeune960a6222013-07-19 21:45:06 +0000821 SmallVectorImpl<MachineBasicBlock *>::const_iterator SccBeginIter =
822 It;
Craig Topper062a2ba2014-04-25 05:30:21 +0000823 MachineBasicBlock *SccBeginMBB = nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000824 int SccNumBlk = 0; // The number of active blocks, init to a
Tom Stellard75aadc22012-12-11 21:25:42 +0000825 // maximum possible number.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000826 int SccNumIter; // Number of iteration in this SCC.
Tom Stellard75aadc22012-12-11 21:25:42 +0000827
Vincent Lejeune960a6222013-07-19 21:45:06 +0000828 while (It != E) {
829 MBB = *It;
Tom Stellard75aadc22012-12-11 21:25:42 +0000830
Vincent Lejeune960a6222013-07-19 21:45:06 +0000831 if (!SccBeginMBB) {
832 SccBeginIter = It;
833 SccBeginMBB = MBB;
834 SccNumIter = 0;
835 SccNumBlk = NumRemainedBlk; // Init to maximum possible number.
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000836 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000837 dbgs() << "start processing SCC" << getSCCNum(SccBeginMBB);
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000838 dbgs() << "\n";
839 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000840 }
841
Vincent Lejeune960a6222013-07-19 21:45:06 +0000842 if (!isRetiredBlock(MBB))
843 patternMatch(MBB);
Tom Stellard75aadc22012-12-11 21:25:42 +0000844
Vincent Lejeune960a6222013-07-19 21:45:06 +0000845 ++It;
Tom Stellard75aadc22012-12-11 21:25:42 +0000846
Vincent Lejeune960a6222013-07-19 21:45:06 +0000847 bool ContNextScc = true;
848 if (It == E
849 || getSCCNum(SccBeginMBB) != getSCCNum(*It)) {
Tom Stellard75aadc22012-12-11 21:25:42 +0000850 // Just finish one scc.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000851 ++SccNumIter;
852 int sccRemainedNumBlk = countActiveBlock(SccBeginIter, It);
853 if (sccRemainedNumBlk != 1 && sccRemainedNumBlk >= SccNumBlk) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000854 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000855 dbgs() << "Can't reduce SCC " << getSCCNum(MBB)
856 << ", sccNumIter = " << SccNumIter;
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000857 dbgs() << "doesn't make any progress\n";
858 );
Vincent Lejeune960a6222013-07-19 21:45:06 +0000859 ContNextScc = true;
860 } else if (sccRemainedNumBlk != 1 && sccRemainedNumBlk < SccNumBlk) {
861 SccNumBlk = sccRemainedNumBlk;
862 It = SccBeginIter;
863 ContNextScc = false;
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000864 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000865 dbgs() << "repeat processing SCC" << getSCCNum(MBB)
Matt Arsenaultdb8b1d52014-03-24 20:29:02 +0000866 << "sccNumIter = " << SccNumIter << '\n';
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000867 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000868 } else {
869 // Finish the current scc.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000870 ContNextScc = true;
Tom Stellard75aadc22012-12-11 21:25:42 +0000871 }
872 } else {
873 // Continue on next component in the current scc.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000874 ContNextScc = false;
Tom Stellard75aadc22012-12-11 21:25:42 +0000875 }
876
Vincent Lejeune960a6222013-07-19 21:45:06 +0000877 if (ContNextScc)
Craig Topper062a2ba2014-04-25 05:30:21 +0000878 SccBeginMBB = nullptr;
Tom Stellard75aadc22012-12-11 21:25:42 +0000879 } //while, "one iteration" over the function.
880
Vincent Lejeune960a6222013-07-19 21:45:06 +0000881 MachineBasicBlock *EntryMBB =
882 GraphTraits<MachineFunction *>::nodes_begin(FuncRep);
883 if (EntryMBB->succ_size() == 0) {
884 Finish = true;
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000885 DEBUG(
886 dbgs() << "Reduce to one block\n";
887 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000888 } else {
Vincent Lejeune960a6222013-07-19 21:45:06 +0000889 int NewnumRemainedBlk
890 = countActiveBlock(OrderedBlks.begin(), OrderedBlks.end());
Tom Stellard75aadc22012-12-11 21:25:42 +0000891 // consider cloned blocks ??
Vincent Lejeune960a6222013-07-19 21:45:06 +0000892 if (NewnumRemainedBlk == 1 || NewnumRemainedBlk < NumRemainedBlk) {
893 MakeProgress = true;
894 NumRemainedBlk = NewnumRemainedBlk;
Tom Stellard75aadc22012-12-11 21:25:42 +0000895 } else {
Vincent Lejeune960a6222013-07-19 21:45:06 +0000896 MakeProgress = false;
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000897 DEBUG(
898 dbgs() << "No progress\n";
899 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000900 }
901 }
Vincent Lejeune960a6222013-07-19 21:45:06 +0000902 } while (!Finish && MakeProgress);
Tom Stellard75aadc22012-12-11 21:25:42 +0000903
904 // Misc wrap up to maintain the consistency of the Function representation.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000905 wrapup(GraphTraits<MachineFunction *>::nodes_begin(FuncRep));
Tom Stellard75aadc22012-12-11 21:25:42 +0000906
907 // Detach retired Block, release memory.
Vincent Lejeune960a6222013-07-19 21:45:06 +0000908 for (MBBInfoMap::iterator It = BlockInfoMap.begin(), E = BlockInfoMap.end();
909 It != E; ++It) {
910 if ((*It).second && (*It).second->IsRetired) {
911 assert(((*It).first)->getNumber() != -1);
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000912 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000913 dbgs() << "Erase BB" << ((*It).first)->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000914 );
Vincent Lejeune960a6222013-07-19 21:45:06 +0000915 (*It).first->eraseFromParent(); //Remove from the parent Function.
Tom Stellard75aadc22012-12-11 21:25:42 +0000916 }
Vincent Lejeune960a6222013-07-19 21:45:06 +0000917 delete (*It).second;
Tom Stellard75aadc22012-12-11 21:25:42 +0000918 }
Vincent Lejeune960a6222013-07-19 21:45:06 +0000919 BlockInfoMap.clear();
920 LLInfoMap.clear();
Tom Stellard75aadc22012-12-11 21:25:42 +0000921
Matt Arsenaultdb8b1d52014-03-24 20:29:02 +0000922 if (!Finish) {
923 DEBUG(FuncRep->viewCFG());
924 llvm_unreachable("IRREDUCIBLE_CFG");
925 }
Tom Stellard75aadc22012-12-11 21:25:42 +0000926
927 return true;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000928}
Tom Stellard75aadc22012-12-11 21:25:42 +0000929
Tom Stellard75aadc22012-12-11 21:25:42 +0000930
Vincent Lejeune960a6222013-07-19 21:45:06 +0000931
932void AMDGPUCFGStructurizer::orderBlocks(MachineFunction *MF) {
933 int SccNum = 0;
934 MachineBasicBlock *MBB;
Duncan P. N. Exon Smith8e661ef2014-02-04 19:19:07 +0000935 for (scc_iterator<MachineFunction *> It = scc_begin(MF); !It.isAtEnd();
936 ++It, ++SccNum) {
Duncan P. N. Exon Smithd2b2fac2014-04-25 18:24:50 +0000937 const std::vector<MachineBasicBlock *> &SccNext = *It;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000938 for (std::vector<MachineBasicBlock *>::const_iterator
939 blockIter = SccNext.begin(), blockEnd = SccNext.end();
Tom Stellard75aadc22012-12-11 21:25:42 +0000940 blockIter != blockEnd; ++blockIter) {
Vincent Lejeune960a6222013-07-19 21:45:06 +0000941 MBB = *blockIter;
942 OrderedBlks.push_back(MBB);
943 recordSccnum(MBB, SccNum);
Tom Stellard75aadc22012-12-11 21:25:42 +0000944 }
945 }
946
947 //walk through all the block in func to check for unreachable
Vincent Lejeune960a6222013-07-19 21:45:06 +0000948 typedef GraphTraits<MachineFunction *> GTM;
949 MachineFunction::iterator It = GTM::nodes_begin(MF), E = GTM::nodes_end(MF);
950 for (; It != E; ++It) {
951 MachineBasicBlock *MBB = &(*It);
952 SccNum = getSCCNum(MBB);
953 if (SccNum == INVALIDSCCNUM)
954 dbgs() << "unreachable block BB" << MBB->getNumber() << "\n";
Tom Stellard75aadc22012-12-11 21:25:42 +0000955 }
Vincent Lejeune960a6222013-07-19 21:45:06 +0000956}
Tom Stellard75aadc22012-12-11 21:25:42 +0000957
Vincent Lejeune960a6222013-07-19 21:45:06 +0000958int AMDGPUCFGStructurizer::patternMatch(MachineBasicBlock *MBB) {
959 int NumMatch = 0;
960 int CurMatch;
Tom Stellard75aadc22012-12-11 21:25:42 +0000961
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000962 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000963 dbgs() << "Begin patternMatch BB" << MBB->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000964 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000965
Vincent Lejeune960a6222013-07-19 21:45:06 +0000966 while ((CurMatch = patternMatchGroup(MBB)) > 0)
967 NumMatch += CurMatch;
Tom Stellard75aadc22012-12-11 21:25:42 +0000968
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000969 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +0000970 dbgs() << "End patternMatch BB" << MBB->getNumber()
971 << ", numMatch = " << NumMatch << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +0000972 );
Tom Stellard75aadc22012-12-11 21:25:42 +0000973
Vincent Lejeune960a6222013-07-19 21:45:06 +0000974 return NumMatch;
975}
Tom Stellard75aadc22012-12-11 21:25:42 +0000976
Vincent Lejeune960a6222013-07-19 21:45:06 +0000977int AMDGPUCFGStructurizer::patternMatchGroup(MachineBasicBlock *MBB) {
978 int NumMatch = 0;
979 NumMatch += loopendPatternMatch();
980 NumMatch += serialPatternMatch(MBB);
981 NumMatch += ifPatternMatch(MBB);
982 return NumMatch;
983}
Tom Stellard75aadc22012-12-11 21:25:42 +0000984
Vincent Lejeune960a6222013-07-19 21:45:06 +0000985
986int AMDGPUCFGStructurizer::serialPatternMatch(MachineBasicBlock *MBB) {
987 if (MBB->succ_size() != 1)
Tom Stellard75aadc22012-12-11 21:25:42 +0000988 return 0;
Tom Stellard75aadc22012-12-11 21:25:42 +0000989
Vincent Lejeune960a6222013-07-19 21:45:06 +0000990 MachineBasicBlock *childBlk = *MBB->succ_begin();
991 if (childBlk->pred_size() != 1 || isActiveLoophead(childBlk))
Tom Stellard75aadc22012-12-11 21:25:42 +0000992 return 0;
Tom Stellard75aadc22012-12-11 21:25:42 +0000993
Vincent Lejeune960a6222013-07-19 21:45:06 +0000994 mergeSerialBlock(MBB, childBlk);
Tom Stellard75aadc22012-12-11 21:25:42 +0000995 ++numSerialPatternMatch;
996 return 1;
Vincent Lejeune960a6222013-07-19 21:45:06 +0000997}
Tom Stellard75aadc22012-12-11 21:25:42 +0000998
Vincent Lejeune960a6222013-07-19 21:45:06 +0000999int AMDGPUCFGStructurizer::ifPatternMatch(MachineBasicBlock *MBB) {
Tom Stellard75aadc22012-12-11 21:25:42 +00001000 //two edges
Vincent Lejeune960a6222013-07-19 21:45:06 +00001001 if (MBB->succ_size() != 2)
Tom Stellard75aadc22012-12-11 21:25:42 +00001002 return 0;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001003 if (hasBackEdge(MBB))
Tom Stellard75aadc22012-12-11 21:25:42 +00001004 return 0;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001005 MachineInstr *BranchMI = getNormalBlockBranchInstr(MBB);
1006 if (!BranchMI)
Tom Stellard75aadc22012-12-11 21:25:42 +00001007 return 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001008
Vincent Lejeune960a6222013-07-19 21:45:06 +00001009 assert(isCondBranch(BranchMI));
Tom Stellard827ec9b2013-11-18 19:43:38 +00001010 int NumMatch = 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001011
Vincent Lejeune960a6222013-07-19 21:45:06 +00001012 MachineBasicBlock *TrueMBB = getTrueBranch(BranchMI);
Tom Stellard827ec9b2013-11-18 19:43:38 +00001013 NumMatch += serialPatternMatch(TrueMBB);
1014 NumMatch += ifPatternMatch(TrueMBB);
Vincent Lejeune960a6222013-07-19 21:45:06 +00001015 MachineBasicBlock *FalseMBB = getFalseBranch(MBB, BranchMI);
Tom Stellard827ec9b2013-11-18 19:43:38 +00001016 NumMatch += serialPatternMatch(FalseMBB);
1017 NumMatch += ifPatternMatch(FalseMBB);
Vincent Lejeune960a6222013-07-19 21:45:06 +00001018 MachineBasicBlock *LandBlk;
1019 int Cloned = 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001020
Vincent Lejeune960a6222013-07-19 21:45:06 +00001021 assert (!TrueMBB->succ_empty() || !FalseMBB->succ_empty());
Tom Stellard75aadc22012-12-11 21:25:42 +00001022 // TODO: Simplify
Vincent Lejeune960a6222013-07-19 21:45:06 +00001023 if (TrueMBB->succ_size() == 1 && FalseMBB->succ_size() == 1
1024 && *TrueMBB->succ_begin() == *FalseMBB->succ_begin()) {
1025 // Diamond pattern
1026 LandBlk = *TrueMBB->succ_begin();
1027 } else if (TrueMBB->succ_size() == 1 && *TrueMBB->succ_begin() == FalseMBB) {
1028 // Triangle pattern, false is empty
1029 LandBlk = FalseMBB;
Craig Topper062a2ba2014-04-25 05:30:21 +00001030 FalseMBB = nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001031 } else if (FalseMBB->succ_size() == 1
1032 && *FalseMBB->succ_begin() == TrueMBB) {
1033 // Triangle pattern, true is empty
Vincent Lejeune8b8a7b52013-07-19 21:45:15 +00001034 // We reverse the predicate to make a triangle, empty false pattern;
1035 std::swap(TrueMBB, FalseMBB);
1036 reversePredicateSetter(MBB->end());
1037 LandBlk = FalseMBB;
Craig Topper062a2ba2014-04-25 05:30:21 +00001038 FalseMBB = nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001039 } else if (FalseMBB->succ_size() == 1
1040 && isSameloopDetachedContbreak(TrueMBB, FalseMBB)) {
1041 LandBlk = *FalseMBB->succ_begin();
1042 } else if (TrueMBB->succ_size() == 1
1043 && isSameloopDetachedContbreak(FalseMBB, TrueMBB)) {
1044 LandBlk = *TrueMBB->succ_begin();
Tom Stellard75aadc22012-12-11 21:25:42 +00001045 } else {
Tom Stellard827ec9b2013-11-18 19:43:38 +00001046 return NumMatch + handleJumpintoIf(MBB, TrueMBB, FalseMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001047 }
1048
1049 // improveSimpleJumpinfoIf can handle the case where landBlk == NULL but the
1050 // new BB created for landBlk==NULL may introduce new challenge to the
1051 // reduction process.
Vincent Lejeune960a6222013-07-19 21:45:06 +00001052 if (LandBlk &&
1053 ((TrueMBB && TrueMBB->pred_size() > 1)
1054 || (FalseMBB && FalseMBB->pred_size() > 1))) {
1055 Cloned += improveSimpleJumpintoIf(MBB, TrueMBB, FalseMBB, &LandBlk);
Tom Stellard75aadc22012-12-11 21:25:42 +00001056 }
1057
Vincent Lejeune960a6222013-07-19 21:45:06 +00001058 if (TrueMBB && TrueMBB->pred_size() > 1) {
1059 TrueMBB = cloneBlockForPredecessor(TrueMBB, MBB);
1060 ++Cloned;
Tom Stellard75aadc22012-12-11 21:25:42 +00001061 }
1062
Vincent Lejeune960a6222013-07-19 21:45:06 +00001063 if (FalseMBB && FalseMBB->pred_size() > 1) {
1064 FalseMBB = cloneBlockForPredecessor(FalseMBB, MBB);
1065 ++Cloned;
Tom Stellard75aadc22012-12-11 21:25:42 +00001066 }
1067
Vincent Lejeune960a6222013-07-19 21:45:06 +00001068 mergeIfthenelseBlock(BranchMI, MBB, TrueMBB, FalseMBB, LandBlk);
Tom Stellard75aadc22012-12-11 21:25:42 +00001069
1070 ++numIfPatternMatch;
1071
Vincent Lejeune960a6222013-07-19 21:45:06 +00001072 numClonedBlock += Cloned;
Tom Stellard75aadc22012-12-11 21:25:42 +00001073
Tom Stellard827ec9b2013-11-18 19:43:38 +00001074 return 1 + Cloned + NumMatch;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001075}
Tom Stellard75aadc22012-12-11 21:25:42 +00001076
Vincent Lejeune960a6222013-07-19 21:45:06 +00001077int AMDGPUCFGStructurizer::loopendPatternMatch() {
1078 std::vector<MachineLoop *> NestedLoops;
David Blaikieceec2bd2014-04-11 01:50:01 +00001079 for (MachineLoopInfo::iterator It = MLI->begin(), E = MLI->end(); It != E;
1080 ++It)
1081 for (MachineLoop *ML : depth_first(*It))
1082 NestedLoops.push_back(ML);
1083
Vincent Lejeune960a6222013-07-19 21:45:06 +00001084 if (NestedLoops.size() == 0)
Tom Stellard75aadc22012-12-11 21:25:42 +00001085 return 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001086
1087 // Process nested loop outside->inside, so "continue" to a outside loop won't
1088 // be mistaken as "break" of the current loop.
Vincent Lejeune960a6222013-07-19 21:45:06 +00001089 int Num = 0;
1090 for (std::vector<MachineLoop *>::reverse_iterator It = NestedLoops.rbegin(),
1091 E = NestedLoops.rend(); It != E; ++It) {
1092 MachineLoop *ExaminedLoop = *It;
1093 if (ExaminedLoop->getNumBlocks() == 0 || Visited[ExaminedLoop])
Tom Stellard75aadc22012-12-11 21:25:42 +00001094 continue;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001095 DEBUG(dbgs() << "Processing:\n"; ExaminedLoop->dump(););
1096 int NumBreak = mergeLoop(ExaminedLoop);
1097 if (NumBreak == -1)
Tom Stellard75aadc22012-12-11 21:25:42 +00001098 break;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001099 Num += NumBreak;
1100 }
1101 return Num;
1102}
Tom Stellard75aadc22012-12-11 21:25:42 +00001103
Vincent Lejeune960a6222013-07-19 21:45:06 +00001104int AMDGPUCFGStructurizer::mergeLoop(MachineLoop *LoopRep) {
1105 MachineBasicBlock *LoopHeader = LoopRep->getHeader();
1106 MBBVector ExitingMBBs;
1107 LoopRep->getExitingBlocks(ExitingMBBs);
1108 assert(!ExitingMBBs.empty() && "Infinite Loop not supported");
1109 DEBUG(dbgs() << "Loop has " << ExitingMBBs.size() << " exiting blocks\n";);
1110 // We assume a single ExitBlk
1111 MBBVector ExitBlks;
1112 LoopRep->getExitBlocks(ExitBlks);
1113 SmallPtrSet<MachineBasicBlock *, 2> ExitBlkSet;
1114 for (unsigned i = 0, e = ExitBlks.size(); i < e; ++i)
1115 ExitBlkSet.insert(ExitBlks[i]);
1116 assert(ExitBlkSet.size() == 1);
1117 MachineBasicBlock *ExitBlk = *ExitBlks.begin();
1118 assert(ExitBlk && "Loop has several exit block");
1119 MBBVector LatchBlks;
1120 typedef GraphTraits<Inverse<MachineBasicBlock*> > InvMBBTraits;
1121 InvMBBTraits::ChildIteratorType PI = InvMBBTraits::child_begin(LoopHeader),
1122 PE = InvMBBTraits::child_end(LoopHeader);
1123 for (; PI != PE; PI++) {
1124 if (LoopRep->contains(*PI))
1125 LatchBlks.push_back(*PI);
Tom Stellard75aadc22012-12-11 21:25:42 +00001126 }
1127
Vincent Lejeune960a6222013-07-19 21:45:06 +00001128 for (unsigned i = 0, e = ExitingMBBs.size(); i < e; ++i)
1129 mergeLoopbreakBlock(ExitingMBBs[i], ExitBlk);
1130 for (unsigned i = 0, e = LatchBlks.size(); i < e; ++i)
1131 settleLoopcontBlock(LatchBlks[i], LoopHeader);
1132 int Match = 0;
1133 do {
1134 Match = 0;
1135 Match += serialPatternMatch(LoopHeader);
1136 Match += ifPatternMatch(LoopHeader);
1137 } while (Match > 0);
1138 mergeLooplandBlock(LoopHeader, ExitBlk);
1139 MachineLoop *ParentLoop = LoopRep->getParentLoop();
1140 if (ParentLoop)
1141 MLI->changeLoopFor(LoopHeader, ParentLoop);
1142 else
1143 MLI->removeBlock(LoopHeader);
1144 Visited[LoopRep] = true;
1145 return 1;
1146}
Tom Stellard75aadc22012-12-11 21:25:42 +00001147
Vincent Lejeune960a6222013-07-19 21:45:06 +00001148int AMDGPUCFGStructurizer::loopcontPatternMatch(MachineLoop *LoopRep,
1149 MachineBasicBlock *LoopHeader) {
1150 int NumCont = 0;
1151 SmallVector<MachineBasicBlock *, DEFAULT_VEC_SLOTS> ContMBB;
1152 typedef GraphTraits<Inverse<MachineBasicBlock *> > GTIM;
1153 GTIM::ChildIteratorType It = GTIM::child_begin(LoopHeader),
1154 E = GTIM::child_end(LoopHeader);
1155 for (; It != E; ++It) {
1156 MachineBasicBlock *MBB = *It;
1157 if (LoopRep->contains(MBB)) {
1158 handleLoopcontBlock(MBB, MLI->getLoopFor(MBB),
1159 LoopHeader, LoopRep);
1160 ContMBB.push_back(MBB);
1161 ++NumCont;
Tom Stellard75aadc22012-12-11 21:25:42 +00001162 }
1163 }
1164
Vincent Lejeune960a6222013-07-19 21:45:06 +00001165 for (SmallVectorImpl<MachineBasicBlock *>::iterator It = ContMBB.begin(),
1166 E = ContMBB.end(); It != E; ++It) {
1167 (*It)->removeSuccessor(LoopHeader);
Tom Stellard75aadc22012-12-11 21:25:42 +00001168 }
1169
Vincent Lejeune960a6222013-07-19 21:45:06 +00001170 numLoopcontPatternMatch += NumCont;
Tom Stellard75aadc22012-12-11 21:25:42 +00001171
Vincent Lejeune960a6222013-07-19 21:45:06 +00001172 return NumCont;
1173}
Tom Stellard75aadc22012-12-11 21:25:42 +00001174
1175
Vincent Lejeune960a6222013-07-19 21:45:06 +00001176bool AMDGPUCFGStructurizer::isSameloopDetachedContbreak(
1177 MachineBasicBlock *Src1MBB, MachineBasicBlock *Src2MBB) {
1178 if (Src1MBB->succ_size() == 0) {
1179 MachineLoop *LoopRep = MLI->getLoopFor(Src1MBB);
1180 if (LoopRep&& LoopRep == MLI->getLoopFor(Src2MBB)) {
1181 MachineBasicBlock *&TheEntry = LLInfoMap[LoopRep];
1182 if (TheEntry) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001183 DEBUG(
1184 dbgs() << "isLoopContBreakBlock yes src1 = BB"
Vincent Lejeune960a6222013-07-19 21:45:06 +00001185 << Src1MBB->getNumber()
1186 << " src2 = BB" << Src2MBB->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001187 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001188 return true;
1189 }
1190 }
1191 }
1192 return false;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001193}
Tom Stellard75aadc22012-12-11 21:25:42 +00001194
Vincent Lejeune960a6222013-07-19 21:45:06 +00001195int AMDGPUCFGStructurizer::handleJumpintoIf(MachineBasicBlock *HeadMBB,
1196 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB) {
1197 int Num = handleJumpintoIfImp(HeadMBB, TrueMBB, FalseMBB);
1198 if (Num == 0) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001199 DEBUG(
1200 dbgs() << "handleJumpintoIf swap trueBlk and FalseBlk" << "\n";
1201 );
Vincent Lejeune960a6222013-07-19 21:45:06 +00001202 Num = handleJumpintoIfImp(HeadMBB, FalseMBB, TrueMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001203 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001204 return Num;
Tom Stellard75aadc22012-12-11 21:25:42 +00001205}
1206
Vincent Lejeune960a6222013-07-19 21:45:06 +00001207int AMDGPUCFGStructurizer::handleJumpintoIfImp(MachineBasicBlock *HeadMBB,
1208 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB) {
1209 int Num = 0;
1210 MachineBasicBlock *DownBlk;
Tom Stellard75aadc22012-12-11 21:25:42 +00001211
1212 //trueBlk could be the common post dominator
Vincent Lejeune960a6222013-07-19 21:45:06 +00001213 DownBlk = TrueMBB;
Tom Stellard75aadc22012-12-11 21:25:42 +00001214
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001215 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001216 dbgs() << "handleJumpintoIfImp head = BB" << HeadMBB->getNumber()
1217 << " true = BB" << TrueMBB->getNumber()
1218 << ", numSucc=" << TrueMBB->succ_size()
1219 << " false = BB" << FalseMBB->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001220 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001221
Vincent Lejeune960a6222013-07-19 21:45:06 +00001222 while (DownBlk) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001223 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001224 dbgs() << "check down = BB" << DownBlk->getNumber();
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001225 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001226
Vincent Lejeune960a6222013-07-19 21:45:06 +00001227 if (singlePathTo(FalseMBB, DownBlk) == SinglePath_InPath) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001228 DEBUG(
1229 dbgs() << " working\n";
1230 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001231
Vincent Lejeune960a6222013-07-19 21:45:06 +00001232 Num += cloneOnSideEntryTo(HeadMBB, TrueMBB, DownBlk);
1233 Num += cloneOnSideEntryTo(HeadMBB, FalseMBB, DownBlk);
Tom Stellard75aadc22012-12-11 21:25:42 +00001234
Vincent Lejeune960a6222013-07-19 21:45:06 +00001235 numClonedBlock += Num;
1236 Num += serialPatternMatch(*HeadMBB->succ_begin());
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001237 Num += serialPatternMatch(*std::next(HeadMBB->succ_begin()));
Vincent Lejeune960a6222013-07-19 21:45:06 +00001238 Num += ifPatternMatch(HeadMBB);
1239 assert(Num > 0);
Tom Stellard75aadc22012-12-11 21:25:42 +00001240
1241 break;
1242 }
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001243 DEBUG(
1244 dbgs() << " not working\n";
1245 );
Craig Topper062a2ba2014-04-25 05:30:21 +00001246 DownBlk = (DownBlk->succ_size() == 1) ? (*DownBlk->succ_begin()) : nullptr;
Tom Stellard75aadc22012-12-11 21:25:42 +00001247 } // walk down the postDomTree
1248
Vincent Lejeune960a6222013-07-19 21:45:06 +00001249 return Num;
1250}
Tom Stellard75aadc22012-12-11 21:25:42 +00001251
Vincent Lejeune960a6222013-07-19 21:45:06 +00001252void AMDGPUCFGStructurizer::showImproveSimpleJumpintoIf(
1253 MachineBasicBlock *HeadMBB, MachineBasicBlock *TrueMBB,
1254 MachineBasicBlock *FalseMBB, MachineBasicBlock *LandMBB, bool Detail) {
1255 dbgs() << "head = BB" << HeadMBB->getNumber()
1256 << " size = " << HeadMBB->size();
1257 if (Detail) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001258 dbgs() << "\n";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001259 HeadMBB->print(dbgs());
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001260 dbgs() << "\n";
Tom Stellard75aadc22012-12-11 21:25:42 +00001261 }
1262
Vincent Lejeune960a6222013-07-19 21:45:06 +00001263 if (TrueMBB) {
1264 dbgs() << ", true = BB" << TrueMBB->getNumber() << " size = "
1265 << TrueMBB->size() << " numPred = " << TrueMBB->pred_size();
1266 if (Detail) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001267 dbgs() << "\n";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001268 TrueMBB->print(dbgs());
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001269 dbgs() << "\n";
Tom Stellard75aadc22012-12-11 21:25:42 +00001270 }
1271 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001272 if (FalseMBB) {
1273 dbgs() << ", false = BB" << FalseMBB->getNumber() << " size = "
1274 << FalseMBB->size() << " numPred = " << FalseMBB->pred_size();
1275 if (Detail) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001276 dbgs() << "\n";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001277 FalseMBB->print(dbgs());
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001278 dbgs() << "\n";
Tom Stellard75aadc22012-12-11 21:25:42 +00001279 }
1280 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001281 if (LandMBB) {
1282 dbgs() << ", land = BB" << LandMBB->getNumber() << " size = "
1283 << LandMBB->size() << " numPred = " << LandMBB->pred_size();
1284 if (Detail) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001285 dbgs() << "\n";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001286 LandMBB->print(dbgs());
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001287 dbgs() << "\n";
Tom Stellard75aadc22012-12-11 21:25:42 +00001288 }
1289 }
1290
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001291 dbgs() << "\n";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001292}
Tom Stellard75aadc22012-12-11 21:25:42 +00001293
Vincent Lejeune960a6222013-07-19 21:45:06 +00001294int AMDGPUCFGStructurizer::improveSimpleJumpintoIf(MachineBasicBlock *HeadMBB,
1295 MachineBasicBlock *TrueMBB, MachineBasicBlock *FalseMBB,
1296 MachineBasicBlock **LandMBBPtr) {
1297 bool MigrateTrue = false;
1298 bool MigrateFalse = false;
Tom Stellard75aadc22012-12-11 21:25:42 +00001299
Vincent Lejeune960a6222013-07-19 21:45:06 +00001300 MachineBasicBlock *LandBlk = *LandMBBPtr;
Tom Stellard75aadc22012-12-11 21:25:42 +00001301
Vincent Lejeune960a6222013-07-19 21:45:06 +00001302 assert((!TrueMBB || TrueMBB->succ_size() <= 1)
1303 && (!FalseMBB || FalseMBB->succ_size() <= 1));
Tom Stellard75aadc22012-12-11 21:25:42 +00001304
Vincent Lejeune960a6222013-07-19 21:45:06 +00001305 if (TrueMBB == FalseMBB)
Tom Stellard75aadc22012-12-11 21:25:42 +00001306 return 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001307
Vincent Lejeune960a6222013-07-19 21:45:06 +00001308 MigrateTrue = needMigrateBlock(TrueMBB);
1309 MigrateFalse = needMigrateBlock(FalseMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001310
Vincent Lejeune960a6222013-07-19 21:45:06 +00001311 if (!MigrateTrue && !MigrateFalse)
Tom Stellard75aadc22012-12-11 21:25:42 +00001312 return 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001313
1314 // If we need to migrate either trueBlk and falseBlk, migrate the rest that
1315 // have more than one predecessors. without doing this, its predecessor
1316 // rather than headBlk will have undefined value in initReg.
Vincent Lejeune960a6222013-07-19 21:45:06 +00001317 if (!MigrateTrue && TrueMBB && TrueMBB->pred_size() > 1)
1318 MigrateTrue = true;
1319 if (!MigrateFalse && FalseMBB && FalseMBB->pred_size() > 1)
1320 MigrateFalse = true;
Tom Stellard75aadc22012-12-11 21:25:42 +00001321
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001322 DEBUG(
1323 dbgs() << "before improveSimpleJumpintoIf: ";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001324 showImproveSimpleJumpintoIf(HeadMBB, TrueMBB, FalseMBB, LandBlk, 0);
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001325 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001326
1327 // org: headBlk => if () {trueBlk} else {falseBlk} => landBlk
1328 //
1329 // new: headBlk => if () {initReg = 1; org trueBlk branch} else
1330 // {initReg = 0; org falseBlk branch }
1331 // => landBlk => if (initReg) {org trueBlk} else {org falseBlk}
1332 // => org landBlk
1333 // if landBlk->pred_size() > 2, put the about if-else inside
1334 // if (initReg !=2) {...}
1335 //
1336 // add initReg = initVal to headBlk
1337
1338 const TargetRegisterClass * I32RC = TRI->getCFGStructurizerRegClass(MVT::i32);
Tom Stellardb34186a2013-10-16 17:06:02 +00001339 if (!MigrateTrue || !MigrateFalse) {
1340 // XXX: We have an opportunity here to optimize the "branch into if" case
1341 // here. Branch into if looks like this:
1342 // entry
Benjamin Kramera9fe95b2013-10-18 14:12:50 +00001343 // / |
Tom Stellardb34186a2013-10-16 17:06:02 +00001344 // diamond_head branch_from
1345 // / \ |
1346 // diamond_false diamond_true
1347 // \ /
1348 // done
1349 //
1350 // The diamond_head block begins the "if" and the diamond_true block
1351 // is the block being "branched into".
1352 //
1353 // If MigrateTrue is true, then TrueBB is the block being "branched into"
1354 // and if MigrateFalse is true, then FalseBB is the block being
1355 // "branched into"
1356 //
1357 // Here is the pseudo code for how I think the optimization should work:
1358 // 1. Insert MOV GPR0, 0 before the branch instruction in diamond_head.
1359 // 2. Insert MOV GPR0, 1 before the branch instruction in branch_from.
1360 // 3. Move the branch instruction from diamond_head into its own basic
1361 // block (new_block).
1362 // 4. Add an unconditional branch from diamond_head to new_block
1363 // 5. Replace the branch instruction in branch_from with an unconditional
1364 // branch to new_block. If branch_from has multiple predecessors, then
1365 // we need to replace the True/False block in the branch
1366 // instruction instead of replacing it.
1367 // 6. Change the condition of the branch instruction in new_block from
1368 // COND to (COND || GPR0)
1369 //
1370 // In order insert these MOV instruction, we will need to use the
1371 // RegisterScavenger. Usually liveness stops being tracked during
1372 // the late machine optimization passes, however if we implement
1373 // bool TargetRegisterInfo::requiresRegisterScavenging(
1374 // const MachineFunction &MF)
1375 // and have it return true, liveness will be tracked correctly
1376 // by generic optimization passes. We will also need to make sure that
1377 // all of our target-specific passes that run after regalloc and before
1378 // the CFGStructurizer track liveness and we will need to modify this pass
1379 // to correctly track liveness.
1380 //
1381 // After the above changes, the new CFG should look like this:
1382 // entry
Benjamin Kramera9fe95b2013-10-18 14:12:50 +00001383 // / |
Tom Stellardb34186a2013-10-16 17:06:02 +00001384 // diamond_head branch_from
1385 // \ /
1386 // new_block
Benjamin Kramera9fe95b2013-10-18 14:12:50 +00001387 // / |
Tom Stellardb34186a2013-10-16 17:06:02 +00001388 // diamond_false diamond_true
1389 // \ /
1390 // done
1391 //
1392 // Without this optimization, we are forced to duplicate the diamond_true
1393 // block and we will end up with a CFG like this:
1394 //
1395 // entry
Benjamin Kramera9fe95b2013-10-18 14:12:50 +00001396 // / |
Tom Stellardb34186a2013-10-16 17:06:02 +00001397 // diamond_head branch_from
1398 // / \ |
1399 // diamond_false diamond_true diamond_true (duplicate)
1400 // \ / |
1401 // done --------------------|
1402 //
1403 // Duplicating diamond_true can be very costly especially if it has a
1404 // lot of instructions.
1405 return 0;
1406 }
Tom Stellard75aadc22012-12-11 21:25:42 +00001407
Vincent Lejeune960a6222013-07-19 21:45:06 +00001408 int NumNewBlk = 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001409
Vincent Lejeune960a6222013-07-19 21:45:06 +00001410 bool LandBlkHasOtherPred = (LandBlk->pred_size() > 2);
Tom Stellard75aadc22012-12-11 21:25:42 +00001411
1412 //insert AMDGPU::ENDIF to avoid special case "input landBlk == NULL"
Vincent Lejeune960a6222013-07-19 21:45:06 +00001413 MachineBasicBlock::iterator I = insertInstrBefore(LandBlk, AMDGPU::ENDIF);
Tom Stellard75aadc22012-12-11 21:25:42 +00001414
Vincent Lejeune960a6222013-07-19 21:45:06 +00001415 if (LandBlkHasOtherPred) {
1416 llvm_unreachable("Extra register needed to handle CFG");
1417 unsigned CmpResReg =
1418 HeadMBB->getParent()->getRegInfo().createVirtualRegister(I32RC);
1419 llvm_unreachable("Extra compare instruction needed to handle CFG");
1420 insertCondBranchBefore(LandBlk, I, AMDGPU::IF_PREDICATE_SET,
1421 CmpResReg, DebugLoc());
Tom Stellard75aadc22012-12-11 21:25:42 +00001422 }
1423
Tom Stellard69f86d12013-10-16 17:05:56 +00001424 // XXX: We are running this after RA, so creating virtual registers will
1425 // cause an assertion failure in the PostRA scheduling pass.
1426 unsigned InitReg =
1427 HeadMBB->getParent()->getRegInfo().createVirtualRegister(I32RC);
Vincent Lejeune960a6222013-07-19 21:45:06 +00001428 insertCondBranchBefore(LandBlk, I, AMDGPU::IF_PREDICATE_SET, InitReg,
1429 DebugLoc());
Tom Stellard75aadc22012-12-11 21:25:42 +00001430
Vincent Lejeune960a6222013-07-19 21:45:06 +00001431 if (MigrateTrue) {
1432 migrateInstruction(TrueMBB, LandBlk, I);
Tom Stellard75aadc22012-12-11 21:25:42 +00001433 // need to uncondionally insert the assignment to ensure a path from its
1434 // predecessor rather than headBlk has valid value in initReg if
1435 // (initVal != 1).
Vincent Lejeune960a6222013-07-19 21:45:06 +00001436 llvm_unreachable("Extra register needed to handle CFG");
Tom Stellard75aadc22012-12-11 21:25:42 +00001437 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001438 insertInstrBefore(I, AMDGPU::ELSE);
Tom Stellard75aadc22012-12-11 21:25:42 +00001439
Vincent Lejeune960a6222013-07-19 21:45:06 +00001440 if (MigrateFalse) {
1441 migrateInstruction(FalseMBB, LandBlk, I);
Tom Stellard75aadc22012-12-11 21:25:42 +00001442 // need to uncondionally insert the assignment to ensure a path from its
1443 // predecessor rather than headBlk has valid value in initReg if
1444 // (initVal != 0)
Vincent Lejeune960a6222013-07-19 21:45:06 +00001445 llvm_unreachable("Extra register needed to handle CFG");
Tom Stellard75aadc22012-12-11 21:25:42 +00001446 }
1447
Vincent Lejeune960a6222013-07-19 21:45:06 +00001448 if (LandBlkHasOtherPred) {
Tom Stellard75aadc22012-12-11 21:25:42 +00001449 // add endif
Vincent Lejeune960a6222013-07-19 21:45:06 +00001450 insertInstrBefore(I, AMDGPU::ENDIF);
Tom Stellard75aadc22012-12-11 21:25:42 +00001451
1452 // put initReg = 2 to other predecessors of landBlk
Vincent Lejeune960a6222013-07-19 21:45:06 +00001453 for (MachineBasicBlock::pred_iterator PI = LandBlk->pred_begin(),
1454 PE = LandBlk->pred_end(); PI != PE; ++PI) {
1455 MachineBasicBlock *MBB = *PI;
1456 if (MBB != TrueMBB && MBB != FalseMBB)
1457 llvm_unreachable("Extra register needed to handle CFG");
1458 }
Tom Stellard75aadc22012-12-11 21:25:42 +00001459 }
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001460 DEBUG(
1461 dbgs() << "result from improveSimpleJumpintoIf: ";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001462 showImproveSimpleJumpintoIf(HeadMBB, TrueMBB, FalseMBB, LandBlk, 0);
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001463 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001464
1465 // update landBlk
Vincent Lejeune960a6222013-07-19 21:45:06 +00001466 *LandMBBPtr = LandBlk;
Tom Stellard75aadc22012-12-11 21:25:42 +00001467
Vincent Lejeune960a6222013-07-19 21:45:06 +00001468 return NumNewBlk;
1469}
Tom Stellard75aadc22012-12-11 21:25:42 +00001470
Vincent Lejeune960a6222013-07-19 21:45:06 +00001471void AMDGPUCFGStructurizer::handleLoopcontBlock(MachineBasicBlock *ContingMBB,
1472 MachineLoop *ContingLoop, MachineBasicBlock *ContMBB,
1473 MachineLoop *ContLoop) {
1474 DEBUG(dbgs() << "loopcontPattern cont = BB" << ContingMBB->getNumber()
1475 << " header = BB" << ContMBB->getNumber() << "\n";
1476 dbgs() << "Trying to continue loop-depth = "
1477 << getLoopDepth(ContLoop)
1478 << " from loop-depth = " << getLoopDepth(ContingLoop) << "\n";);
1479 settleLoopcontBlock(ContingMBB, ContMBB);
1480}
1481
1482void AMDGPUCFGStructurizer::mergeSerialBlock(MachineBasicBlock *DstMBB,
1483 MachineBasicBlock *SrcMBB) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001484 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001485 dbgs() << "serialPattern BB" << DstMBB->getNumber()
1486 << " <= BB" << SrcMBB->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001487 );
Vincent Lejeune960a6222013-07-19 21:45:06 +00001488 DstMBB->splice(DstMBB->end(), SrcMBB, SrcMBB->begin(), SrcMBB->end());
Tom Stellard75aadc22012-12-11 21:25:42 +00001489
Vincent Lejeune960a6222013-07-19 21:45:06 +00001490 DstMBB->removeSuccessor(SrcMBB);
1491 cloneSuccessorList(DstMBB, SrcMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001492
Vincent Lejeune960a6222013-07-19 21:45:06 +00001493 removeSuccessor(SrcMBB);
1494 MLI->removeBlock(SrcMBB);
1495 retireBlock(SrcMBB);
1496}
Tom Stellard75aadc22012-12-11 21:25:42 +00001497
Vincent Lejeune960a6222013-07-19 21:45:06 +00001498void AMDGPUCFGStructurizer::mergeIfthenelseBlock(MachineInstr *BranchMI,
1499 MachineBasicBlock *MBB, MachineBasicBlock *TrueMBB,
1500 MachineBasicBlock *FalseMBB, MachineBasicBlock *LandMBB) {
Vincent Lejeune8b8a7b52013-07-19 21:45:15 +00001501 assert (TrueMBB);
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001502 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001503 dbgs() << "ifPattern BB" << MBB->getNumber();
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001504 dbgs() << "{ ";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001505 if (TrueMBB) {
1506 dbgs() << "BB" << TrueMBB->getNumber();
Tom Stellard75aadc22012-12-11 21:25:42 +00001507 }
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001508 dbgs() << " } else ";
1509 dbgs() << "{ ";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001510 if (FalseMBB) {
1511 dbgs() << "BB" << FalseMBB->getNumber();
Tom Stellard75aadc22012-12-11 21:25:42 +00001512 }
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001513 dbgs() << " }\n ";
1514 dbgs() << "landBlock: ";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001515 if (!LandMBB) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001516 dbgs() << "NULL";
Tom Stellard75aadc22012-12-11 21:25:42 +00001517 } else {
Vincent Lejeune960a6222013-07-19 21:45:06 +00001518 dbgs() << "BB" << LandMBB->getNumber();
Tom Stellard75aadc22012-12-11 21:25:42 +00001519 }
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001520 dbgs() << "\n";
1521 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001522
Vincent Lejeune960a6222013-07-19 21:45:06 +00001523 int OldOpcode = BranchMI->getOpcode();
1524 DebugLoc BranchDL = BranchMI->getDebugLoc();
Tom Stellard75aadc22012-12-11 21:25:42 +00001525
1526// transform to
1527// if cond
1528// trueBlk
1529// else
1530// falseBlk
1531// endif
1532// landBlk
1533
Vincent Lejeune960a6222013-07-19 21:45:06 +00001534 MachineBasicBlock::iterator I = BranchMI;
1535 insertCondBranchBefore(I, getBranchNzeroOpcode(OldOpcode),
1536 BranchDL);
Tom Stellard75aadc22012-12-11 21:25:42 +00001537
Vincent Lejeune960a6222013-07-19 21:45:06 +00001538 if (TrueMBB) {
1539 MBB->splice(I, TrueMBB, TrueMBB->begin(), TrueMBB->end());
1540 MBB->removeSuccessor(TrueMBB);
1541 if (LandMBB && TrueMBB->succ_size()!=0)
1542 TrueMBB->removeSuccessor(LandMBB);
1543 retireBlock(TrueMBB);
1544 MLI->removeBlock(TrueMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001545 }
1546
Vincent Lejeune960a6222013-07-19 21:45:06 +00001547 if (FalseMBB) {
1548 insertInstrBefore(I, AMDGPU::ELSE);
1549 MBB->splice(I, FalseMBB, FalseMBB->begin(),
1550 FalseMBB->end());
1551 MBB->removeSuccessor(FalseMBB);
1552 if (LandMBB && FalseMBB->succ_size() != 0)
1553 FalseMBB->removeSuccessor(LandMBB);
1554 retireBlock(FalseMBB);
1555 MLI->removeBlock(FalseMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001556 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001557 insertInstrBefore(I, AMDGPU::ENDIF);
1558
1559 BranchMI->eraseFromParent();
1560
1561 if (LandMBB && TrueMBB && FalseMBB)
1562 MBB->addSuccessor(LandMBB);
1563
1564}
1565
1566void AMDGPUCFGStructurizer::mergeLooplandBlock(MachineBasicBlock *DstBlk,
1567 MachineBasicBlock *LandMBB) {
1568 DEBUG(dbgs() << "loopPattern header = BB" << DstBlk->getNumber()
1569 << " land = BB" << LandMBB->getNumber() << "\n";);
Tom Stellard75aadc22012-12-11 21:25:42 +00001570
Vincent Lejeune0c5ed2b2013-07-31 19:31:14 +00001571 insertInstrBefore(DstBlk, AMDGPU::WHILELOOP, DebugLoc());
1572 insertInstrEnd(DstBlk, AMDGPU::ENDLOOP, DebugLoc());
Vincent Lejeune960a6222013-07-19 21:45:06 +00001573 DstBlk->addSuccessor(LandMBB);
1574 DstBlk->removeSuccessor(DstBlk);
1575}
Tom Stellard75aadc22012-12-11 21:25:42 +00001576
Tom Stellard75aadc22012-12-11 21:25:42 +00001577
Vincent Lejeune960a6222013-07-19 21:45:06 +00001578void AMDGPUCFGStructurizer::mergeLoopbreakBlock(MachineBasicBlock *ExitingMBB,
1579 MachineBasicBlock *LandMBB) {
1580 DEBUG(dbgs() << "loopbreakPattern exiting = BB" << ExitingMBB->getNumber()
1581 << " land = BB" << LandMBB->getNumber() << "\n";);
1582 MachineInstr *BranchMI = getLoopendBlockBranchInstr(ExitingMBB);
1583 assert(BranchMI && isCondBranch(BranchMI));
1584 DebugLoc DL = BranchMI->getDebugLoc();
1585 MachineBasicBlock *TrueBranch = getTrueBranch(BranchMI);
1586 MachineBasicBlock::iterator I = BranchMI;
1587 if (TrueBranch != LandMBB)
1588 reversePredicateSetter(I);
Vincent Lejeune0c5ed2b2013-07-31 19:31:14 +00001589 insertCondBranchBefore(ExitingMBB, I, AMDGPU::IF_PREDICATE_SET, AMDGPU::PREDICATE_BIT, DL);
1590 insertInstrBefore(I, AMDGPU::BREAK);
1591 insertInstrBefore(I, AMDGPU::ENDIF);
Vincent Lejeune960a6222013-07-19 21:45:06 +00001592 //now branchInst can be erase safely
1593 BranchMI->eraseFromParent();
1594 //now take care of successors, retire blocks
1595 ExitingMBB->removeSuccessor(LandMBB);
1596}
Tom Stellard75aadc22012-12-11 21:25:42 +00001597
Vincent Lejeune960a6222013-07-19 21:45:06 +00001598void AMDGPUCFGStructurizer::settleLoopcontBlock(MachineBasicBlock *ContingMBB,
1599 MachineBasicBlock *ContMBB) {
1600 DEBUG(dbgs() << "settleLoopcontBlock conting = BB"
1601 << ContingMBB->getNumber()
1602 << ", cont = BB" << ContMBB->getNumber() << "\n";);
Tom Stellard75aadc22012-12-11 21:25:42 +00001603
Vincent Lejeune960a6222013-07-19 21:45:06 +00001604 MachineInstr *MI = getLoopendBlockBranchInstr(ContingMBB);
1605 if (MI) {
1606 assert(isCondBranch(MI));
1607 MachineBasicBlock::iterator I = MI;
1608 MachineBasicBlock *TrueBranch = getTrueBranch(MI);
1609 int OldOpcode = MI->getOpcode();
1610 DebugLoc DL = MI->getDebugLoc();
Tom Stellard75aadc22012-12-11 21:25:42 +00001611
Vincent Lejeune960a6222013-07-19 21:45:06 +00001612 bool UseContinueLogical = ((&*ContingMBB->rbegin()) == MI);
1613
1614 if (UseContinueLogical == false) {
1615 int BranchOpcode =
1616 TrueBranch == ContMBB ? getBranchNzeroOpcode(OldOpcode) :
1617 getBranchZeroOpcode(OldOpcode);
1618 insertCondBranchBefore(I, BranchOpcode, DL);
1619 // insertEnd to ensure phi-moves, if exist, go before the continue-instr.
1620 insertInstrEnd(ContingMBB, AMDGPU::CONTINUE, DL);
1621 insertInstrEnd(ContingMBB, AMDGPU::ENDIF, DL);
1622 } else {
1623 int BranchOpcode =
1624 TrueBranch == ContMBB ? getContinueNzeroOpcode(OldOpcode) :
1625 getContinueZeroOpcode(OldOpcode);
1626 insertCondBranchBefore(I, BranchOpcode, DL);
Tom Stellard75aadc22012-12-11 21:25:42 +00001627 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001628
1629 MI->eraseFromParent();
1630 } else {
1631 // if we've arrived here then we've already erased the branch instruction
1632 // travel back up the basic block to see the last reference of our debug
1633 // location we've just inserted that reference here so it should be
1634 // representative insertEnd to ensure phi-moves, if exist, go before the
1635 // continue-instr.
1636 insertInstrEnd(ContingMBB, AMDGPU::CONTINUE,
1637 getLastDebugLocInBB(ContingMBB));
Tom Stellard75aadc22012-12-11 21:25:42 +00001638 }
1639}
1640
Vincent Lejeune960a6222013-07-19 21:45:06 +00001641int AMDGPUCFGStructurizer::cloneOnSideEntryTo(MachineBasicBlock *PreMBB,
1642 MachineBasicBlock *SrcMBB, MachineBasicBlock *DstMBB) {
1643 int Cloned = 0;
1644 assert(PreMBB->isSuccessor(SrcMBB));
1645 while (SrcMBB && SrcMBB != DstMBB) {
1646 assert(SrcMBB->succ_size() == 1);
1647 if (SrcMBB->pred_size() > 1) {
1648 SrcMBB = cloneBlockForPredecessor(SrcMBB, PreMBB);
1649 ++Cloned;
Tom Stellard75aadc22012-12-11 21:25:42 +00001650 }
Tom Stellard75aadc22012-12-11 21:25:42 +00001651
Vincent Lejeune960a6222013-07-19 21:45:06 +00001652 PreMBB = SrcMBB;
1653 SrcMBB = *SrcMBB->succ_begin();
Tom Stellard75aadc22012-12-11 21:25:42 +00001654 }
1655
Vincent Lejeune960a6222013-07-19 21:45:06 +00001656 return Cloned;
1657}
Tom Stellard75aadc22012-12-11 21:25:42 +00001658
Vincent Lejeune960a6222013-07-19 21:45:06 +00001659MachineBasicBlock *
1660AMDGPUCFGStructurizer::cloneBlockForPredecessor(MachineBasicBlock *MBB,
1661 MachineBasicBlock *PredMBB) {
1662 assert(PredMBB->isSuccessor(MBB) &&
Tom Stellard75aadc22012-12-11 21:25:42 +00001663 "succBlk is not a prececessor of curBlk");
1664
Vincent Lejeune960a6222013-07-19 21:45:06 +00001665 MachineBasicBlock *CloneMBB = clone(MBB); //clone instructions
1666 replaceInstrUseOfBlockWith(PredMBB, MBB, CloneMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001667 //srcBlk, oldBlk, newBlk
1668
Vincent Lejeune960a6222013-07-19 21:45:06 +00001669 PredMBB->removeSuccessor(MBB);
1670 PredMBB->addSuccessor(CloneMBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001671
1672 // add all successor to cloneBlk
Vincent Lejeune960a6222013-07-19 21:45:06 +00001673 cloneSuccessorList(CloneMBB, MBB);
Tom Stellard75aadc22012-12-11 21:25:42 +00001674
Vincent Lejeune960a6222013-07-19 21:45:06 +00001675 numClonedInstr += MBB->size();
Tom Stellard75aadc22012-12-11 21:25:42 +00001676
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001677 DEBUG(
1678 dbgs() << "Cloned block: " << "BB"
Vincent Lejeune960a6222013-07-19 21:45:06 +00001679 << MBB->getNumber() << "size " << MBB->size() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001680 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001681
Vincent Lejeune960a6222013-07-19 21:45:06 +00001682 SHOWNEWBLK(CloneMBB, "result of Cloned block: ");
Tom Stellard75aadc22012-12-11 21:25:42 +00001683
Vincent Lejeune960a6222013-07-19 21:45:06 +00001684 return CloneMBB;
1685}
Tom Stellard75aadc22012-12-11 21:25:42 +00001686
Vincent Lejeune960a6222013-07-19 21:45:06 +00001687void AMDGPUCFGStructurizer::migrateInstruction(MachineBasicBlock *SrcMBB,
1688 MachineBasicBlock *DstMBB, MachineBasicBlock::iterator I) {
1689 MachineBasicBlock::iterator SpliceEnd;
Tom Stellard75aadc22012-12-11 21:25:42 +00001690 //look for the input branchinstr, not the AMDGPU branchinstr
Vincent Lejeune960a6222013-07-19 21:45:06 +00001691 MachineInstr *BranchMI = getNormalBlockBranchInstr(SrcMBB);
1692 if (!BranchMI) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001693 DEBUG(
1694 dbgs() << "migrateInstruction don't see branch instr\n" ;
1695 );
Vincent Lejeune960a6222013-07-19 21:45:06 +00001696 SpliceEnd = SrcMBB->end();
Tom Stellard75aadc22012-12-11 21:25:42 +00001697 } else {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001698 DEBUG(
1699 dbgs() << "migrateInstruction see branch instr\n" ;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001700 BranchMI->dump();
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001701 );
Vincent Lejeune960a6222013-07-19 21:45:06 +00001702 SpliceEnd = BranchMI;
Tom Stellard75aadc22012-12-11 21:25:42 +00001703 }
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001704 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001705 dbgs() << "migrateInstruction before splice dstSize = " << DstMBB->size()
1706 << "srcSize = " << SrcMBB->size() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001707 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001708
1709 //splice insert before insertPos
Vincent Lejeune960a6222013-07-19 21:45:06 +00001710 DstMBB->splice(I, SrcMBB, SrcMBB->begin(), SpliceEnd);
Tom Stellard75aadc22012-12-11 21:25:42 +00001711
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001712 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001713 dbgs() << "migrateInstruction after splice dstSize = " << DstMBB->size()
1714 << "srcSize = " << SrcMBB->size() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001715 );
Vincent Lejeune960a6222013-07-19 21:45:06 +00001716}
Tom Stellard75aadc22012-12-11 21:25:42 +00001717
Vincent Lejeune960a6222013-07-19 21:45:06 +00001718MachineBasicBlock *
1719AMDGPUCFGStructurizer::normalizeInfiniteLoopExit(MachineLoop* LoopRep) {
1720 MachineBasicBlock *LoopHeader = LoopRep->getHeader();
1721 MachineBasicBlock *LoopLatch = LoopRep->getLoopLatch();
Tom Stellard75aadc22012-12-11 21:25:42 +00001722 const TargetRegisterClass * I32RC = TRI->getCFGStructurizerRegClass(MVT::i32);
Tom Stellard75aadc22012-12-11 21:25:42 +00001723
Vincent Lejeune960a6222013-07-19 21:45:06 +00001724 if (!LoopHeader || !LoopLatch)
Craig Topper062a2ba2014-04-25 05:30:21 +00001725 return nullptr;
Vincent Lejeune960a6222013-07-19 21:45:06 +00001726 MachineInstr *BranchMI = getLoopendBlockBranchInstr(LoopLatch);
1727 // Is LoopRep an infinite loop ?
1728 if (!BranchMI || !isUncondBranch(BranchMI))
Craig Topper062a2ba2014-04-25 05:30:21 +00001729 return nullptr;
Tom Stellard75aadc22012-12-11 21:25:42 +00001730
Vincent Lejeune960a6222013-07-19 21:45:06 +00001731 MachineBasicBlock *DummyExitBlk = FuncRep->CreateMachineBasicBlock();
1732 FuncRep->push_back(DummyExitBlk); //insert to function
1733 SHOWNEWBLK(DummyExitBlk, "DummyExitBlock to normalize infiniteLoop: ");
1734 DEBUG(dbgs() << "Old branch instr: " << *BranchMI << "\n";);
1735 MachineBasicBlock::iterator I = BranchMI;
1736 unsigned ImmReg = FuncRep->getRegInfo().createVirtualRegister(I32RC);
1737 llvm_unreachable("Extra register needed to handle CFG");
1738 MachineInstr *NewMI = insertInstrBefore(I, AMDGPU::BRANCH_COND_i32);
1739 MachineInstrBuilder MIB(*FuncRep, NewMI);
1740 MIB.addMBB(LoopHeader);
1741 MIB.addReg(ImmReg, false);
1742 SHOWNEWINSTR(NewMI);
1743 BranchMI->eraseFromParent();
1744 LoopLatch->addSuccessor(DummyExitBlk);
Tom Stellard75aadc22012-12-11 21:25:42 +00001745
Vincent Lejeune960a6222013-07-19 21:45:06 +00001746 return DummyExitBlk;
1747}
Tom Stellard75aadc22012-12-11 21:25:42 +00001748
Vincent Lejeune960a6222013-07-19 21:45:06 +00001749void AMDGPUCFGStructurizer::removeUnconditionalBranch(MachineBasicBlock *MBB) {
1750 MachineInstr *BranchMI;
Tom Stellard75aadc22012-12-11 21:25:42 +00001751
1752 // I saw two unconditional branch in one basic block in example
1753 // test_fc_do_while_or.c need to fix the upstream on this to remove the loop.
Vincent Lejeune960a6222013-07-19 21:45:06 +00001754 while ((BranchMI = getLoopendBlockBranchInstr(MBB))
1755 && isUncondBranch(BranchMI)) {
1756 DEBUG(dbgs() << "Removing uncond branch instr"; BranchMI->dump(););
1757 BranchMI->eraseFromParent();
Tom Stellard75aadc22012-12-11 21:25:42 +00001758 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001759}
Tom Stellard75aadc22012-12-11 21:25:42 +00001760
Vincent Lejeune960a6222013-07-19 21:45:06 +00001761void AMDGPUCFGStructurizer::removeRedundantConditionalBranch(
1762 MachineBasicBlock *MBB) {
1763 if (MBB->succ_size() != 2)
1764 return;
1765 MachineBasicBlock *MBB1 = *MBB->succ_begin();
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001766 MachineBasicBlock *MBB2 = *std::next(MBB->succ_begin());
Vincent Lejeune960a6222013-07-19 21:45:06 +00001767 if (MBB1 != MBB2)
1768 return;
Tom Stellard75aadc22012-12-11 21:25:42 +00001769
Vincent Lejeune960a6222013-07-19 21:45:06 +00001770 MachineInstr *BranchMI = getNormalBlockBranchInstr(MBB);
1771 assert(BranchMI && isCondBranch(BranchMI));
1772 DEBUG(dbgs() << "Removing unneeded cond branch instr"; BranchMI->dump(););
1773 BranchMI->eraseFromParent();
1774 SHOWNEWBLK(MBB1, "Removing redundant successor");
1775 MBB->removeSuccessor(MBB1);
1776}
Tom Stellard75aadc22012-12-11 21:25:42 +00001777
Vincent Lejeune960a6222013-07-19 21:45:06 +00001778void AMDGPUCFGStructurizer::addDummyExitBlock(
1779 SmallVectorImpl<MachineBasicBlock*> &RetMBB) {
1780 MachineBasicBlock *DummyExitBlk = FuncRep->CreateMachineBasicBlock();
1781 FuncRep->push_back(DummyExitBlk); //insert to function
1782 insertInstrEnd(DummyExitBlk, AMDGPU::RETURN);
Tom Stellard75aadc22012-12-11 21:25:42 +00001783
Vincent Lejeune960a6222013-07-19 21:45:06 +00001784 for (SmallVectorImpl<MachineBasicBlock *>::iterator It = RetMBB.begin(),
1785 E = RetMBB.end(); It != E; ++It) {
1786 MachineBasicBlock *MBB = *It;
1787 MachineInstr *MI = getReturnInstr(MBB);
1788 if (MI)
1789 MI->eraseFromParent();
1790 MBB->addSuccessor(DummyExitBlk);
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001791 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001792 dbgs() << "Add dummyExitBlock to BB" << MBB->getNumber()
Tom Stellard75aadc22012-12-11 21:25:42 +00001793 << " successors\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001794 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001795 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001796 SHOWNEWBLK(DummyExitBlk, "DummyExitBlock: ");
Tom Stellard75aadc22012-12-11 21:25:42 +00001797}
1798
Vincent Lejeune960a6222013-07-19 21:45:06 +00001799void AMDGPUCFGStructurizer::removeSuccessor(MachineBasicBlock *MBB) {
1800 while (MBB->succ_size())
1801 MBB->removeSuccessor(*MBB->succ_begin());
Tom Stellard75aadc22012-12-11 21:25:42 +00001802}
1803
Vincent Lejeune960a6222013-07-19 21:45:06 +00001804void AMDGPUCFGStructurizer::recordSccnum(MachineBasicBlock *MBB,
1805 int SccNum) {
1806 BlockInformation *&srcBlkInfo = BlockInfoMap[MBB];
1807 if (!srcBlkInfo)
1808 srcBlkInfo = new BlockInformation();
1809 srcBlkInfo->SccNum = SccNum;
Tom Stellard75aadc22012-12-11 21:25:42 +00001810}
1811
Vincent Lejeune960a6222013-07-19 21:45:06 +00001812void AMDGPUCFGStructurizer::retireBlock(MachineBasicBlock *MBB) {
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001813 DEBUG(
Vincent Lejeune960a6222013-07-19 21:45:06 +00001814 dbgs() << "Retiring BB" << MBB->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001815 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001816
Vincent Lejeune960a6222013-07-19 21:45:06 +00001817 BlockInformation *&SrcBlkInfo = BlockInfoMap[MBB];
Tom Stellard75aadc22012-12-11 21:25:42 +00001818
Vincent Lejeune960a6222013-07-19 21:45:06 +00001819 if (!SrcBlkInfo)
1820 SrcBlkInfo = new BlockInformation();
Tom Stellard75aadc22012-12-11 21:25:42 +00001821
Vincent Lejeune960a6222013-07-19 21:45:06 +00001822 SrcBlkInfo->IsRetired = true;
1823 assert(MBB->succ_size() == 0 && MBB->pred_size() == 0
Tom Stellard75aadc22012-12-11 21:25:42 +00001824 && "can't retire block yet");
1825}
1826
Vincent Lejeune960a6222013-07-19 21:45:06 +00001827void AMDGPUCFGStructurizer::setLoopLandBlock(MachineLoop *loopRep,
1828 MachineBasicBlock *MBB) {
1829 MachineBasicBlock *&TheEntry = LLInfoMap[loopRep];
1830 if (!MBB) {
1831 MBB = FuncRep->CreateMachineBasicBlock();
1832 FuncRep->push_back(MBB); //insert to function
1833 SHOWNEWBLK(MBB, "DummyLandingBlock for loop without break: ");
Tom Stellard75aadc22012-12-11 21:25:42 +00001834 }
Vincent Lejeune960a6222013-07-19 21:45:06 +00001835 TheEntry = MBB;
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001836 DEBUG(
1837 dbgs() << "setLoopLandBlock loop-header = BB"
Tom Stellard75aadc22012-12-11 21:25:42 +00001838 << loopRep->getHeader()->getNumber()
Vincent Lejeune960a6222013-07-19 21:45:06 +00001839 << " landing-block = BB" << MBB->getNumber() << "\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001840 );
Vincent Lejeune960a6222013-07-19 21:45:06 +00001841}
Tom Stellard75aadc22012-12-11 21:25:42 +00001842
Vincent Lejeune960a6222013-07-19 21:45:06 +00001843MachineBasicBlock *
1844AMDGPUCFGStructurizer::findNearestCommonPostDom(MachineBasicBlock *MBB1,
1845 MachineBasicBlock *MBB2) {
Tom Stellard75aadc22012-12-11 21:25:42 +00001846
Vincent Lejeune960a6222013-07-19 21:45:06 +00001847 if (PDT->dominates(MBB1, MBB2))
1848 return MBB1;
1849 if (PDT->dominates(MBB2, MBB1))
1850 return MBB2;
Tom Stellard75aadc22012-12-11 21:25:42 +00001851
Vincent Lejeune960a6222013-07-19 21:45:06 +00001852 MachineDomTreeNode *Node1 = PDT->getNode(MBB1);
1853 MachineDomTreeNode *Node2 = PDT->getNode(MBB2);
Tom Stellard75aadc22012-12-11 21:25:42 +00001854
1855 // Handle newly cloned node.
Vincent Lejeune960a6222013-07-19 21:45:06 +00001856 if (!Node1 && MBB1->succ_size() == 1)
1857 return findNearestCommonPostDom(*MBB1->succ_begin(), MBB2);
1858 if (!Node2 && MBB2->succ_size() == 1)
1859 return findNearestCommonPostDom(MBB1, *MBB2->succ_begin());
Tom Stellard75aadc22012-12-11 21:25:42 +00001860
Vincent Lejeune960a6222013-07-19 21:45:06 +00001861 if (!Node1 || !Node2)
Craig Topper062a2ba2014-04-25 05:30:21 +00001862 return nullptr;
Tom Stellard75aadc22012-12-11 21:25:42 +00001863
Vincent Lejeune960a6222013-07-19 21:45:06 +00001864 Node1 = Node1->getIDom();
1865 while (Node1) {
1866 if (PDT->dominates(Node1, Node2))
1867 return Node1->getBlock();
1868 Node1 = Node1->getIDom();
Tom Stellard75aadc22012-12-11 21:25:42 +00001869 }
1870
Craig Topper062a2ba2014-04-25 05:30:21 +00001871 return nullptr;
Tom Stellard75aadc22012-12-11 21:25:42 +00001872}
1873
Vincent Lejeune960a6222013-07-19 21:45:06 +00001874MachineBasicBlock *
1875AMDGPUCFGStructurizer::findNearestCommonPostDom(
1876 std::set<MachineBasicBlock *> &MBBs) {
1877 MachineBasicBlock *CommonDom;
1878 std::set<MachineBasicBlock *>::const_iterator It = MBBs.begin();
1879 std::set<MachineBasicBlock *>::const_iterator E = MBBs.end();
1880 for (CommonDom = *It; It != E && CommonDom; ++It) {
1881 MachineBasicBlock *MBB = *It;
1882 if (MBB != CommonDom)
1883 CommonDom = findNearestCommonPostDom(MBB, CommonDom);
Tom Stellard75aadc22012-12-11 21:25:42 +00001884 }
1885
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001886 DEBUG(
1887 dbgs() << "Common post dominator for exit blocks is ";
Vincent Lejeune960a6222013-07-19 21:45:06 +00001888 if (CommonDom)
1889 dbgs() << "BB" << CommonDom->getNumber() << "\n";
1890 else
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001891 dbgs() << "NULL\n";
Vincent Lejeunea8c38fe2013-07-19 21:44:56 +00001892 );
Tom Stellard75aadc22012-12-11 21:25:42 +00001893
Vincent Lejeune960a6222013-07-19 21:45:06 +00001894 return CommonDom;
1895}
1896
1897char AMDGPUCFGStructurizer::ID = 0;
Tom Stellard75aadc22012-12-11 21:25:42 +00001898
Benjamin Kramer635e3682013-05-23 15:43:05 +00001899} // end anonymous namespace
Tom Stellard75aadc22012-12-11 21:25:42 +00001900
Tom Stellard75aadc22012-12-11 21:25:42 +00001901
Tom Stellardf2ba9722013-12-11 17:51:47 +00001902INITIALIZE_PASS_BEGIN(AMDGPUCFGStructurizer, "amdgpustructurizer",
1903 "AMDGPU CFG Structurizer", false, false)
1904INITIALIZE_PASS_DEPENDENCY(MachineDominatorTree)
1905INITIALIZE_PASS_DEPENDENCY(MachinePostDominatorTree)
1906INITIALIZE_PASS_DEPENDENCY(MachineLoopInfo)
1907INITIALIZE_PASS_END(AMDGPUCFGStructurizer, "amdgpustructurizer",
1908 "AMDGPU CFG Structurizer", false, false)
1909
1910FunctionPass *llvm::createAMDGPUCFGStructurizerPass() {
1911 return new AMDGPUCFGStructurizer();
Tom Stellard75aadc22012-12-11 21:25:42 +00001912}