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Chris Lattner21ab22e2004-07-31 10:01:27 +00001//===-- BranchFolding.cpp - Fold machine code branch instructions ---------===//
Misha Brukmanedf128a2005-04-21 22:36:52 +00002//
Chris Lattner21ab22e2004-07-31 10:01:27 +00003// The LLVM Compiler Infrastructure
4//
5// This file was developed by the LLVM research group and is distributed under
6// the University of Illinois Open Source License. See LICENSE.TXT for details.
Misha Brukmanedf128a2005-04-21 22:36:52 +00007//
Chris Lattner21ab22e2004-07-31 10:01:27 +00008//===----------------------------------------------------------------------===//
9//
10// This pass forwards branches to unconditional branches to make them branch
11// directly to the target block. This pass often results in dead MBB's, which
12// it then removes.
13//
14// Note that this pass must be run after register allocation, it cannot handle
15// SSA form.
16//
17//===----------------------------------------------------------------------===//
18
Chris Lattnerf10a56a2006-11-18 21:56:39 +000019#define DEBUG_TYPE "branchfolding"
Chris Lattner21ab22e2004-07-31 10:01:27 +000020#include "llvm/CodeGen/Passes.h"
Jim Laskey44c3b9f2007-01-26 21:22:28 +000021#include "llvm/CodeGen/MachineModuleInfo.h"
Chris Lattner21ab22e2004-07-31 10:01:27 +000022#include "llvm/CodeGen/MachineFunctionPass.h"
Chris Lattnerc50ffcb2006-10-17 17:13:52 +000023#include "llvm/CodeGen/MachineJumpTableInfo.h"
Dale Johannesen69cb9b72007-03-20 21:35:06 +000024#include "llvm/CodeGen/RegisterScavenging.h"
Chris Lattner21ab22e2004-07-31 10:01:27 +000025#include "llvm/Target/TargetInstrInfo.h"
26#include "llvm/Target/TargetMachine.h"
Dale Johannesen69cb9b72007-03-20 21:35:06 +000027#include "llvm/Target/MRegisterInfo.h"
Chris Lattner12143052006-10-21 00:47:49 +000028#include "llvm/Support/CommandLine.h"
Chris Lattnerf10a56a2006-11-18 21:56:39 +000029#include "llvm/Support/Debug.h"
Chris Lattner12143052006-10-21 00:47:49 +000030#include "llvm/ADT/Statistic.h"
Reid Spencer551ccae2004-09-01 22:55:40 +000031#include "llvm/ADT/STLExtras.h"
Jeff Cohend41b30d2006-11-05 19:31:28 +000032#include <algorithm>
Chris Lattner21ab22e2004-07-31 10:01:27 +000033using namespace llvm;
34
Chris Lattnercd3245a2006-12-19 22:41:21 +000035STATISTIC(NumDeadBlocks, "Number of dead blocks removed");
36STATISTIC(NumBranchOpts, "Number of branches optimized");
37STATISTIC(NumTailMerge , "Number of block tails merged");
Dale Johannesen81da02b2007-05-22 17:14:46 +000038static cl::opt<cl::boolOrDefault> FlagEnableTailMerge("enable-tail-merge",
39 cl::init(cl::BOU_UNSET), cl::Hidden);
Chris Lattner21ab22e2004-07-31 10:01:27 +000040namespace {
Dale Johannesen1a90a5a2007-06-08 01:08:52 +000041 // Throttle for huge numbers of predecessors (compile speed problems)
42 cl::opt<unsigned>
43 TailMergeThreshold("tail-merge-threshold",
44 cl::desc("Max number of predecessors to consider tail merging"),
45 cl::init(100), cl::Hidden);
46
Chris Lattner21ab22e2004-07-31 10:01:27 +000047 struct BranchFolder : public MachineFunctionPass {
Devang Patel19974732007-05-03 01:11:54 +000048 static char ID;
Dale Johannesen81da02b2007-05-22 17:14:46 +000049 BranchFolder(bool defaultEnableTailMerge) :
50 MachineFunctionPass((intptr_t)&ID) {
51 switch (FlagEnableTailMerge) {
52 case cl::BOU_UNSET: EnableTailMerge = defaultEnableTailMerge; break;
53 case cl::BOU_TRUE: EnableTailMerge = true; break;
54 case cl::BOU_FALSE: EnableTailMerge = false; break;
55 }
56 }
Devang Patel794fd752007-05-01 21:15:47 +000057
Chris Lattner21ab22e2004-07-31 10:01:27 +000058 virtual bool runOnMachineFunction(MachineFunction &MF);
Chris Lattner7821a8a2006-10-14 00:21:48 +000059 virtual const char *getPassName() const { return "Control Flow Optimizer"; }
60 const TargetInstrInfo *TII;
Jim Laskey44c3b9f2007-01-26 21:22:28 +000061 MachineModuleInfo *MMI;
Chris Lattner7821a8a2006-10-14 00:21:48 +000062 bool MadeChange;
Chris Lattner21ab22e2004-07-31 10:01:27 +000063 private:
Chris Lattner12143052006-10-21 00:47:49 +000064 // Tail Merging.
Dale Johannesen81da02b2007-05-22 17:14:46 +000065 bool EnableTailMerge;
Chris Lattner12143052006-10-21 00:47:49 +000066 bool TailMergeBlocks(MachineFunction &MF);
Dale Johannesen7d33b4c2007-05-07 20:57:21 +000067 bool TryMergeBlocks(MachineBasicBlock* SuccBB,
68 MachineBasicBlock* PredBB);
Chris Lattner12143052006-10-21 00:47:49 +000069 void ReplaceTailWithBranchTo(MachineBasicBlock::iterator OldInst,
70 MachineBasicBlock *NewDest);
Chris Lattner1d08d832006-11-01 01:16:12 +000071 MachineBasicBlock *SplitMBBAt(MachineBasicBlock &CurMBB,
72 MachineBasicBlock::iterator BBI1);
Dale Johannesen69cb9b72007-03-20 21:35:06 +000073
Dale Johannesen7d33b4c2007-05-07 20:57:21 +000074 std::vector<std::pair<unsigned,MachineBasicBlock*> > MergePotentials;
Dale Johannesen69cb9b72007-03-20 21:35:06 +000075 const MRegisterInfo *RegInfo;
76 RegScavenger *RS;
Chris Lattner12143052006-10-21 00:47:49 +000077 // Branch optzn.
78 bool OptimizeBranches(MachineFunction &MF);
Chris Lattner7d097842006-10-24 01:12:32 +000079 void OptimizeBlock(MachineBasicBlock *MBB);
Chris Lattner683747a2006-10-17 23:17:27 +000080 void RemoveDeadBlock(MachineBasicBlock *MBB);
Chris Lattner6b0e3f82006-10-29 21:05:41 +000081
82 bool CanFallThrough(MachineBasicBlock *CurBB);
83 bool CanFallThrough(MachineBasicBlock *CurBB, bool BranchUnAnalyzable,
84 MachineBasicBlock *TBB, MachineBasicBlock *FBB,
85 const std::vector<MachineOperand> &Cond);
Chris Lattner21ab22e2004-07-31 10:01:27 +000086 };
Devang Patel19974732007-05-03 01:11:54 +000087 char BranchFolder::ID = 0;
Chris Lattner21ab22e2004-07-31 10:01:27 +000088}
89
Dale Johannesen81da02b2007-05-22 17:14:46 +000090FunctionPass *llvm::createBranchFoldingPass(bool DefaultEnableTailMerge) {
91 return new BranchFolder(DefaultEnableTailMerge); }
Chris Lattner21ab22e2004-07-31 10:01:27 +000092
Chris Lattnerc50ffcb2006-10-17 17:13:52 +000093/// RemoveDeadBlock - Remove the specified dead machine basic block from the
94/// function, updating the CFG.
Chris Lattner683747a2006-10-17 23:17:27 +000095void BranchFolder::RemoveDeadBlock(MachineBasicBlock *MBB) {
Jim Laskey033c9712007-02-22 16:39:03 +000096 assert(MBB->pred_empty() && "MBB must be dead!");
Jim Laskey02b3f5e2007-02-21 22:42:20 +000097 DOUT << "\nRemoving MBB: " << *MBB;
Chris Lattner683747a2006-10-17 23:17:27 +000098
Chris Lattnerc50ffcb2006-10-17 17:13:52 +000099 MachineFunction *MF = MBB->getParent();
100 // drop all successors.
101 while (!MBB->succ_empty())
102 MBB->removeSuccessor(MBB->succ_end()-1);
Chris Lattner683747a2006-10-17 23:17:27 +0000103
Jim Laskey1ee29252007-01-26 14:34:52 +0000104 // If there is DWARF info to active, check to see if there are any LABEL
Jim Laskey44c3b9f2007-01-26 21:22:28 +0000105 // records in the basic block. If so, unregister them from MachineModuleInfo.
106 if (MMI && !MBB->empty()) {
Chris Lattner683747a2006-10-17 23:17:27 +0000107 for (MachineBasicBlock::iterator I = MBB->begin(), E = MBB->end();
108 I != E; ++I) {
Jim Laskey1ee29252007-01-26 14:34:52 +0000109 if ((unsigned)I->getOpcode() == TargetInstrInfo::LABEL) {
Chris Lattner683747a2006-10-17 23:17:27 +0000110 // The label ID # is always operand #0, an immediate.
Jim Laskey44c3b9f2007-01-26 21:22:28 +0000111 MMI->InvalidateLabel(I->getOperand(0).getImm());
Chris Lattner683747a2006-10-17 23:17:27 +0000112 }
113 }
114 }
115
Chris Lattnerc50ffcb2006-10-17 17:13:52 +0000116 // Remove the block.
117 MF->getBasicBlockList().erase(MBB);
118}
119
Chris Lattner21ab22e2004-07-31 10:01:27 +0000120bool BranchFolder::runOnMachineFunction(MachineFunction &MF) {
Chris Lattner7821a8a2006-10-14 00:21:48 +0000121 TII = MF.getTarget().getInstrInfo();
122 if (!TII) return false;
123
Dale Johannesen14ba0cc2007-05-15 21:19:17 +0000124 // Fix CFG. The later algorithms expect it to be right.
125 bool EverMadeChange = false;
126 for (MachineFunction::iterator I = MF.begin(), E = MF.end(); I != E; I++) {
127 MachineBasicBlock *MBB = I, *TBB = 0, *FBB = 0;
128 std::vector<MachineOperand> Cond;
129 if (!TII->AnalyzeBranch(*MBB, TBB, FBB, Cond))
Evan Cheng2bdb7d02007-06-18 22:43:58 +0000130 EverMadeChange |= MBB->CorrectExtraCFGEdges(TBB, FBB, !Cond.empty());
Dale Johannesen14ba0cc2007-05-15 21:19:17 +0000131 }
132
Dale Johannesen69cb9b72007-03-20 21:35:06 +0000133 RegInfo = MF.getTarget().getRegisterInfo();
134 RS = RegInfo->requiresRegisterScavenging(MF) ? new RegScavenger() : NULL;
135
Jim Laskey44c3b9f2007-01-26 21:22:28 +0000136 MMI = getAnalysisToUpdate<MachineModuleInfo>();
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000137
Chris Lattner12143052006-10-21 00:47:49 +0000138 bool MadeChangeThisIteration = true;
139 while (MadeChangeThisIteration) {
140 MadeChangeThisIteration = false;
141 MadeChangeThisIteration |= TailMergeBlocks(MF);
142 MadeChangeThisIteration |= OptimizeBranches(MF);
143 EverMadeChange |= MadeChangeThisIteration;
Chris Lattner21ab22e2004-07-31 10:01:27 +0000144 }
145
Chris Lattner6acfe122006-10-28 18:34:47 +0000146 // See if any jump tables have become mergable or dead as the code generator
147 // did its thing.
148 MachineJumpTableInfo *JTI = MF.getJumpTableInfo();
149 const std::vector<MachineJumpTableEntry> &JTs = JTI->getJumpTables();
150 if (!JTs.empty()) {
151 // Figure out how these jump tables should be merged.
152 std::vector<unsigned> JTMapping;
153 JTMapping.reserve(JTs.size());
154
155 // We always keep the 0th jump table.
156 JTMapping.push_back(0);
157
158 // Scan the jump tables, seeing if there are any duplicates. Note that this
159 // is N^2, which should be fixed someday.
160 for (unsigned i = 1, e = JTs.size(); i != e; ++i)
161 JTMapping.push_back(JTI->getJumpTableIndex(JTs[i].MBBs));
162
163 // If a jump table was merge with another one, walk the function rewriting
164 // references to jump tables to reference the new JT ID's. Keep track of
165 // whether we see a jump table idx, if not, we can delete the JT.
166 std::vector<bool> JTIsLive;
167 JTIsLive.resize(JTs.size());
168 for (MachineFunction::iterator BB = MF.begin(), E = MF.end();
169 BB != E; ++BB) {
170 for (MachineBasicBlock::iterator I = BB->begin(), E = BB->end();
171 I != E; ++I)
172 for (unsigned op = 0, e = I->getNumOperands(); op != e; ++op) {
173 MachineOperand &Op = I->getOperand(op);
174 if (!Op.isJumpTableIndex()) continue;
175 unsigned NewIdx = JTMapping[Op.getJumpTableIndex()];
176 Op.setJumpTableIndex(NewIdx);
177
178 // Remember that this JT is live.
179 JTIsLive[NewIdx] = true;
180 }
181 }
182
183 // Finally, remove dead jump tables. This happens either because the
184 // indirect jump was unreachable (and thus deleted) or because the jump
185 // table was merged with some other one.
186 for (unsigned i = 0, e = JTIsLive.size(); i != e; ++i)
187 if (!JTIsLive[i]) {
188 JTI->RemoveJumpTable(i);
189 EverMadeChange = true;
190 }
191 }
192
Dale Johannesen69cb9b72007-03-20 21:35:06 +0000193 delete RS;
Chris Lattner21ab22e2004-07-31 10:01:27 +0000194 return EverMadeChange;
195}
196
Chris Lattner12143052006-10-21 00:47:49 +0000197//===----------------------------------------------------------------------===//
198// Tail Merging of Blocks
199//===----------------------------------------------------------------------===//
200
201/// HashMachineInstr - Compute a hash value for MI and its operands.
202static unsigned HashMachineInstr(const MachineInstr *MI) {
203 unsigned Hash = MI->getOpcode();
204 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
205 const MachineOperand &Op = MI->getOperand(i);
206
207 // Merge in bits from the operand if easy.
208 unsigned OperandHash = 0;
209 switch (Op.getType()) {
210 case MachineOperand::MO_Register: OperandHash = Op.getReg(); break;
211 case MachineOperand::MO_Immediate: OperandHash = Op.getImm(); break;
212 case MachineOperand::MO_MachineBasicBlock:
213 OperandHash = Op.getMachineBasicBlock()->getNumber();
214 break;
215 case MachineOperand::MO_FrameIndex: OperandHash = Op.getFrameIndex(); break;
216 case MachineOperand::MO_ConstantPoolIndex:
217 OperandHash = Op.getConstantPoolIndex();
218 break;
219 case MachineOperand::MO_JumpTableIndex:
220 OperandHash = Op.getJumpTableIndex();
221 break;
222 case MachineOperand::MO_GlobalAddress:
223 case MachineOperand::MO_ExternalSymbol:
224 // Global address / external symbol are too hard, don't bother, but do
225 // pull in the offset.
226 OperandHash = Op.getOffset();
227 break;
228 default: break;
229 }
230
231 Hash += ((OperandHash << 3) | Op.getType()) << (i&31);
232 }
233 return Hash;
234}
235
Dale Johannesen7aea8322007-05-23 21:07:20 +0000236/// HashEndOfMBB - Hash the last few instructions in the MBB. For blocks
237/// with no successors, we hash two instructions, because cross-jumping
238/// only saves code when at least two instructions are removed (since a
239/// branch must be inserted). For blocks with a successor, one of the
240/// two blocks to be tail-merged will end with a branch already, so
241/// it gains to cross-jump even for one instruction.
242
243static unsigned HashEndOfMBB(const MachineBasicBlock *MBB,
244 unsigned minCommonTailLength) {
Chris Lattner12143052006-10-21 00:47:49 +0000245 MachineBasicBlock::const_iterator I = MBB->end();
246 if (I == MBB->begin())
247 return 0; // Empty MBB.
248
249 --I;
250 unsigned Hash = HashMachineInstr(I);
251
Dale Johannesen7aea8322007-05-23 21:07:20 +0000252 if (I == MBB->begin() || minCommonTailLength == 1)
Chris Lattner12143052006-10-21 00:47:49 +0000253 return Hash; // Single instr MBB.
254
255 --I;
256 // Hash in the second-to-last instruction.
257 Hash ^= HashMachineInstr(I) << 2;
258 return Hash;
259}
260
261/// ComputeCommonTailLength - Given two machine basic blocks, compute the number
262/// of instructions they actually have in common together at their end. Return
263/// iterators for the first shared instruction in each block.
264static unsigned ComputeCommonTailLength(MachineBasicBlock *MBB1,
265 MachineBasicBlock *MBB2,
266 MachineBasicBlock::iterator &I1,
267 MachineBasicBlock::iterator &I2) {
268 I1 = MBB1->end();
269 I2 = MBB2->end();
270
271 unsigned TailLen = 0;
272 while (I1 != MBB1->begin() && I2 != MBB2->begin()) {
273 --I1; --I2;
274 if (!I1->isIdenticalTo(I2)) {
275 ++I1; ++I2;
276 break;
277 }
278 ++TailLen;
279 }
280 return TailLen;
281}
282
283/// ReplaceTailWithBranchTo - Delete the instruction OldInst and everything
Chris Lattner386e2902006-10-21 05:08:28 +0000284/// after it, replacing it with an unconditional branch to NewDest. This
285/// returns true if OldInst's block is modified, false if NewDest is modified.
Chris Lattner12143052006-10-21 00:47:49 +0000286void BranchFolder::ReplaceTailWithBranchTo(MachineBasicBlock::iterator OldInst,
287 MachineBasicBlock *NewDest) {
288 MachineBasicBlock *OldBB = OldInst->getParent();
289
290 // Remove all the old successors of OldBB from the CFG.
291 while (!OldBB->succ_empty())
292 OldBB->removeSuccessor(OldBB->succ_begin());
293
294 // Remove all the dead instructions from the end of OldBB.
295 OldBB->erase(OldInst, OldBB->end());
296
Chris Lattner386e2902006-10-21 05:08:28 +0000297 // If OldBB isn't immediately before OldBB, insert a branch to it.
298 if (++MachineFunction::iterator(OldBB) != MachineFunction::iterator(NewDest))
299 TII->InsertBranch(*OldBB, NewDest, 0, std::vector<MachineOperand>());
Chris Lattner12143052006-10-21 00:47:49 +0000300 OldBB->addSuccessor(NewDest);
301 ++NumTailMerge;
302}
303
Chris Lattner1d08d832006-11-01 01:16:12 +0000304/// SplitMBBAt - Given a machine basic block and an iterator into it, split the
305/// MBB so that the part before the iterator falls into the part starting at the
306/// iterator. This returns the new MBB.
307MachineBasicBlock *BranchFolder::SplitMBBAt(MachineBasicBlock &CurMBB,
308 MachineBasicBlock::iterator BBI1) {
309 // Create the fall-through block.
310 MachineFunction::iterator MBBI = &CurMBB;
311 MachineBasicBlock *NewMBB = new MachineBasicBlock(CurMBB.getBasicBlock());
312 CurMBB.getParent()->getBasicBlockList().insert(++MBBI, NewMBB);
313
314 // Move all the successors of this block to the specified block.
315 while (!CurMBB.succ_empty()) {
316 MachineBasicBlock *S = *(CurMBB.succ_end()-1);
317 NewMBB->addSuccessor(S);
318 CurMBB.removeSuccessor(S);
319 }
320
321 // Add an edge from CurMBB to NewMBB for the fall-through.
322 CurMBB.addSuccessor(NewMBB);
323
324 // Splice the code over.
325 NewMBB->splice(NewMBB->end(), &CurMBB, BBI1, CurMBB.end());
Dale Johannesen69cb9b72007-03-20 21:35:06 +0000326
327 // For targets that use the register scavenger, we must maintain LiveIns.
328 if (RS) {
329 RS->enterBasicBlock(&CurMBB);
330 if (!CurMBB.empty())
331 RS->forward(prior(CurMBB.end()));
332 BitVector RegsLiveAtExit(RegInfo->getNumRegs());
333 RS->getRegsUsed(RegsLiveAtExit, false);
334 for (unsigned int i=0, e=RegInfo->getNumRegs(); i!=e; i++)
335 if (RegsLiveAtExit[i])
336 NewMBB->addLiveIn(i);
337 }
338
Chris Lattner1d08d832006-11-01 01:16:12 +0000339 return NewMBB;
340}
341
Chris Lattnerd4bf3c22006-11-01 19:36:29 +0000342/// EstimateRuntime - Make a rough estimate for how long it will take to run
343/// the specified code.
344static unsigned EstimateRuntime(MachineBasicBlock::iterator I,
345 MachineBasicBlock::iterator E,
346 const TargetInstrInfo *TII) {
347 unsigned Time = 0;
348 for (; I != E; ++I) {
349 const TargetInstrDescriptor &TID = TII->get(I->getOpcode());
350 if (TID.Flags & M_CALL_FLAG)
351 Time += 10;
352 else if (TID.Flags & (M_LOAD_FLAG|M_STORE_FLAG))
353 Time += 2;
354 else
355 ++Time;
356 }
357 return Time;
358}
359
360/// ShouldSplitFirstBlock - We need to either split MBB1 at MBB1I or MBB2 at
361/// MBB2I and then insert an unconditional branch in the other block. Determine
362/// which is the best to split
363static bool ShouldSplitFirstBlock(MachineBasicBlock *MBB1,
364 MachineBasicBlock::iterator MBB1I,
365 MachineBasicBlock *MBB2,
366 MachineBasicBlock::iterator MBB2I,
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000367 const TargetInstrInfo *TII,
368 MachineBasicBlock *PredBB) {
Dale Johannesen54f4a672007-05-10 23:59:23 +0000369 // If one block is the entry block, split the other one; we can't generate
370 // a branch to the entry block, as its label is not emitted.
371 MachineBasicBlock *Entry = MBB1->getParent()->begin();
372 if (MBB1 == Entry)
373 return false;
374 if (MBB2 == Entry)
375 return true;
376
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000377 // If one block falls through into the common successor, choose that
378 // one to split; it is one instruction less to do that.
379 if (PredBB) {
380 if (MBB1 == PredBB)
381 return true;
382 else if (MBB2 == PredBB)
383 return false;
384 }
Chris Lattnerd4bf3c22006-11-01 19:36:29 +0000385 // TODO: if we had some notion of which block was hotter, we could split
386 // the hot block, so it is the fall-through. Since we don't have profile info
387 // make a decision based on which will hurt most to split.
388 unsigned MBB1Time = EstimateRuntime(MBB1->begin(), MBB1I, TII);
389 unsigned MBB2Time = EstimateRuntime(MBB2->begin(), MBB2I, TII);
390
391 // If the MBB1 prefix takes "less time" to run than the MBB2 prefix, split the
392 // MBB1 block so it falls through. This will penalize the MBB2 path, but will
393 // have a lower overall impact on the program execution.
394 return MBB1Time < MBB2Time;
395}
396
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000397// CurMBB needs to add an unconditional branch to SuccMBB (we removed these
398// branches temporarily for tail merging). In the case where CurMBB ends
399// with a conditional branch to the next block, optimize by reversing the
400// test and conditionally branching to SuccMBB instead.
401
402static void FixTail(MachineBasicBlock* CurMBB, MachineBasicBlock *SuccBB,
403 const TargetInstrInfo *TII) {
404 MachineFunction *MF = CurMBB->getParent();
405 MachineFunction::iterator I = next(MachineFunction::iterator(CurMBB));
406 MachineBasicBlock *TBB = 0, *FBB = 0;
407 std::vector<MachineOperand> Cond;
408 if (I != MF->end() &&
409 !TII->AnalyzeBranch(*CurMBB, TBB, FBB, Cond)) {
410 MachineBasicBlock *NextBB = I;
411 if (TBB == NextBB && Cond.size() && !FBB) {
412 if (!TII->ReverseBranchCondition(Cond)) {
413 TII->RemoveBranch(*CurMBB);
414 TII->InsertBranch(*CurMBB, SuccBB, NULL, Cond);
415 return;
416 }
417 }
418 }
419 TII->InsertBranch(*CurMBB, SuccBB, NULL, std::vector<MachineOperand>());
420}
421
Dale Johannesen44008c52007-05-30 00:32:01 +0000422static bool MergeCompare(const std::pair<unsigned,MachineBasicBlock*> &p,
423 const std::pair<unsigned,MachineBasicBlock*> &q) {
Dale Johannesen95ef4062007-05-29 23:47:50 +0000424 if (p.first < q.first)
425 return true;
426 else if (p.first > q.first)
427 return false;
428 else if (p.second->getNumber() < q.second->getNumber())
429 return true;
430 else if (p.second->getNumber() > q.second->getNumber())
431 return false;
432 else
433 assert(0 && "Predecessor appears twice");
434}
435
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000436// See if any of the blocks in MergePotentials (which all have a common single
437// successor, or all have no successor) can be tail-merged. If there is a
438// successor, any blocks in MergePotentials that are not tail-merged and
439// are not immediately before Succ must have an unconditional branch to
440// Succ added (but the predecessor/successor lists need no adjustment).
441// The lone predecessor of Succ that falls through into Succ,
442// if any, is given in PredBB.
443
444bool BranchFolder::TryMergeBlocks(MachineBasicBlock *SuccBB,
445 MachineBasicBlock* PredBB) {
Dale Johannesen7aea8322007-05-23 21:07:20 +0000446 unsigned minCommonTailLength = (SuccBB ? 1 : 2);
Chris Lattner12143052006-10-21 00:47:49 +0000447 MadeChange = false;
448
Chris Lattner12143052006-10-21 00:47:49 +0000449 // Sort by hash value so that blocks with identical end sequences sort
450 // together.
Dale Johannesen95ef4062007-05-29 23:47:50 +0000451 std::stable_sort(MergePotentials.begin(), MergePotentials.end(), MergeCompare);
Chris Lattner12143052006-10-21 00:47:49 +0000452
453 // Walk through equivalence sets looking for actual exact matches.
454 while (MergePotentials.size() > 1) {
455 unsigned CurHash = (MergePotentials.end()-1)->first;
456 unsigned PrevHash = (MergePotentials.end()-2)->first;
457 MachineBasicBlock *CurMBB = (MergePotentials.end()-1)->second;
458
459 // If there is nothing that matches the hash of the current basic block,
460 // give up.
461 if (CurHash != PrevHash) {
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000462 if (SuccBB && CurMBB != PredBB)
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000463 FixTail(CurMBB, SuccBB, TII);
Chris Lattner12143052006-10-21 00:47:49 +0000464 MergePotentials.pop_back();
465 continue;
466 }
467
Dale Johannesena5a21172007-06-01 23:02:45 +0000468 // Look through all the pairs of blocks that have the same hash as this
469 // one, and find the pair that has the largest number of instructions in
470 // common.
471 // Since instructions may get combined later (e.g. single stores into
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000472 // store multiple) this measure is not particularly accurate.
Dale Johannesena5a21172007-06-01 23:02:45 +0000473 MachineBasicBlock::iterator BBI1, BBI2;
Dale Johannesen7aea8322007-05-23 21:07:20 +0000474
Dale Johannesena5a21172007-06-01 23:02:45 +0000475 unsigned FoundI = ~0U, FoundJ = ~0U;
Dale Johannesen7aea8322007-05-23 21:07:20 +0000476 unsigned maxCommonTailLength = 0U;
Dale Johannesena5a21172007-06-01 23:02:45 +0000477 for (int i = MergePotentials.size()-1;
Dale Johannesen7aea8322007-05-23 21:07:20 +0000478 i != -1 && MergePotentials[i].first == CurHash; --i) {
Dale Johannesena5a21172007-06-01 23:02:45 +0000479 for (int j = i-1;
480 j != -1 && MergePotentials[j].first == CurHash; --j) {
481 MachineBasicBlock::iterator TrialBBI1, TrialBBI2;
482 unsigned CommonTailLen = ComputeCommonTailLength(
483 MergePotentials[i].second,
484 MergePotentials[j].second,
485 TrialBBI1, TrialBBI2);
486 if (CommonTailLen >= minCommonTailLength &&
487 CommonTailLen > maxCommonTailLength) {
488 FoundI = i;
489 FoundJ = j;
490 maxCommonTailLength = CommonTailLen;
491 BBI1 = TrialBBI1;
492 BBI2 = TrialBBI2;
493 }
Chris Lattner12143052006-10-21 00:47:49 +0000494 }
Dale Johannesena5a21172007-06-01 23:02:45 +0000495 }
Dale Johannesen7aea8322007-05-23 21:07:20 +0000496
Dale Johannesena5a21172007-06-01 23:02:45 +0000497 // If we didn't find any pair that has at least minCommonTailLength
498 // instructions in common, bail out. All entries with this
499 // hash code can go away now.
500 if (FoundI == ~0U) {
501 for (int i = MergePotentials.size()-1;
502 i != -1 && MergePotentials[i].first == CurHash; --i) {
503 // Put the unconditional branch back, if we need one.
504 CurMBB = MergePotentials[i].second;
505 if (SuccBB && CurMBB != PredBB)
506 FixTail(CurMBB, SuccBB, TII);
507 MergePotentials.pop_back();
508 }
Dale Johannesen7aea8322007-05-23 21:07:20 +0000509 continue;
Chris Lattner12143052006-10-21 00:47:49 +0000510 }
Chris Lattner1d08d832006-11-01 01:16:12 +0000511
Dale Johannesena5a21172007-06-01 23:02:45 +0000512 // Otherwise, move the block(s) to the right position(s). So that
513 // BBI1/2 will be valid, the last must be I and the next-to-last J.
514 if (FoundI != MergePotentials.size()-1)
515 std::swap(MergePotentials[FoundI], *(MergePotentials.end()-1));
516 if (FoundJ != MergePotentials.size()-2)
517 std::swap(MergePotentials[FoundJ], *(MergePotentials.end()-2));
518
519 CurMBB = (MergePotentials.end()-1)->second;
Chris Lattner12143052006-10-21 00:47:49 +0000520 MachineBasicBlock *MBB2 = (MergePotentials.end()-2)->second;
Chris Lattner1d08d832006-11-01 01:16:12 +0000521
522 // If neither block is the entire common tail, split the tail of one block
Dale Johannesen54f4a672007-05-10 23:59:23 +0000523 // to make it redundant with the other tail. Also, we cannot jump to the
524 // entry block, so if one block is the entry block, split the other one.
525 MachineBasicBlock *Entry = CurMBB->getParent()->begin();
526 if (CurMBB->begin() == BBI1 && CurMBB != Entry)
527 ; // CurMBB is common tail
528 else if (MBB2->begin() == BBI2 && MBB2 != Entry)
529 ; // MBB2 is common tail
530 else {
Chris Lattner1d08d832006-11-01 01:16:12 +0000531 if (0) { // Enable this to disable partial tail merges.
532 MergePotentials.pop_back();
533 continue;
534 }
Chris Lattnerd4bf3c22006-11-01 19:36:29 +0000535
536 // Decide whether we want to split CurMBB or MBB2.
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000537 if (ShouldSplitFirstBlock(CurMBB, BBI1, MBB2, BBI2, TII, PredBB)) {
Chris Lattnerd4bf3c22006-11-01 19:36:29 +0000538 CurMBB = SplitMBBAt(*CurMBB, BBI1);
539 BBI1 = CurMBB->begin();
540 MergePotentials.back().second = CurMBB;
541 } else {
542 MBB2 = SplitMBBAt(*MBB2, BBI2);
543 BBI2 = MBB2->begin();
544 (MergePotentials.end()-2)->second = MBB2;
545 }
Chris Lattner1d08d832006-11-01 01:16:12 +0000546 }
547
Dale Johannesen54f4a672007-05-10 23:59:23 +0000548 if (MBB2->begin() == BBI2 && MBB2 != Entry) {
Chris Lattner12143052006-10-21 00:47:49 +0000549 // Hack the end off CurMBB, making it jump to MBBI@ instead.
550 ReplaceTailWithBranchTo(BBI1, MBB2);
551 // This modifies CurMBB, so remove it from the worklist.
552 MergePotentials.pop_back();
Chris Lattner1d08d832006-11-01 01:16:12 +0000553 } else {
Dale Johannesen54f4a672007-05-10 23:59:23 +0000554 assert(CurMBB->begin() == BBI1 && CurMBB != Entry &&
555 "Didn't split block correctly?");
Chris Lattner1d08d832006-11-01 01:16:12 +0000556 // Hack the end off MBB2, making it jump to CurMBB instead.
557 ReplaceTailWithBranchTo(BBI2, CurMBB);
558 // This modifies MBB2, so remove it from the worklist.
559 MergePotentials.erase(MergePotentials.end()-2);
Chris Lattner12143052006-10-21 00:47:49 +0000560 }
Chris Lattner1d08d832006-11-01 01:16:12 +0000561 MadeChange = true;
Chris Lattner12143052006-10-21 00:47:49 +0000562 }
Chris Lattner12143052006-10-21 00:47:49 +0000563 return MadeChange;
564}
565
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000566bool BranchFolder::TailMergeBlocks(MachineFunction &MF) {
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000567
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000568 if (!EnableTailMerge) return false;
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000569
570 MadeChange = false;
571
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000572 // First find blocks with no successors.
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000573 MergePotentials.clear();
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000574 for (MachineFunction::iterator I = MF.begin(), E = MF.end(); I != E; ++I) {
575 if (I->succ_empty())
Dale Johannesen7aea8322007-05-23 21:07:20 +0000576 MergePotentials.push_back(std::make_pair(HashEndOfMBB(I, 2U), I));
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000577 }
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000578 // See if we can do any tail merging on those.
Dale Johannesen1a90a5a2007-06-08 01:08:52 +0000579 if (MergePotentials.size() < TailMergeThreshold)
Dale Johannesen53af4c02007-06-08 00:34:27 +0000580 MadeChange |= TryMergeBlocks(NULL, NULL);
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000581
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000582 // Look at blocks (IBB) with multiple predecessors (PBB).
583 // We change each predecessor to a canonical form, by
584 // (1) temporarily removing any unconditional branch from the predecessor
585 // to IBB, and
586 // (2) alter conditional branches so they branch to the other block
587 // not IBB; this may require adding back an unconditional branch to IBB
588 // later, where there wasn't one coming in. E.g.
589 // Bcc IBB
590 // fallthrough to QBB
591 // here becomes
592 // Bncc QBB
593 // with a conceptual B to IBB after that, which never actually exists.
594 // With those changes, we see whether the predecessors' tails match,
595 // and merge them if so. We change things out of canonical form and
596 // back to the way they were later in the process. (OptimizeBranches
597 // would undo some of this, but we can't use it, because we'd get into
598 // a compile-time infinite loop repeatedly doing and undoing the same
599 // transformations.)
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000600
601 for (MachineFunction::iterator I = MF.begin(), E = MF.end(); I != E; ++I) {
Dale Johannesen1a90a5a2007-06-08 01:08:52 +0000602 if (!I->succ_empty() && I->pred_size() >= 2 &&
603 I->pred_size() < TailMergeThreshold) {
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000604 MachineBasicBlock *IBB = I;
605 MachineBasicBlock *PredBB = prior(I);
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000606 MergePotentials.clear();
Dale Johannesen1a90a5a2007-06-08 01:08:52 +0000607 for (MachineBasicBlock::pred_iterator P = I->pred_begin(),
608 E2 = I->pred_end();
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000609 P != E2; ++P) {
610 MachineBasicBlock* PBB = *P;
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000611 // Skip blocks that loop to themselves, can't tail merge these.
612 if (PBB==IBB)
613 continue;
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000614 MachineBasicBlock *TBB = 0, *FBB = 0;
615 std::vector<MachineOperand> Cond;
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000616 if (!TII->AnalyzeBranch(*PBB, TBB, FBB, Cond)) {
617 // Failing case: IBB is the target of a cbr, and
618 // we cannot reverse the branch.
619 std::vector<MachineOperand> NewCond(Cond);
620 if (Cond.size() && TBB==IBB) {
621 if (TII->ReverseBranchCondition(NewCond))
622 continue;
623 // This is the QBB case described above
624 if (!FBB)
625 FBB = next(MachineFunction::iterator(PBB));
626 }
Dale Johannesenfe7e3972007-06-04 23:52:54 +0000627 // Failing case: the only way IBB can be reached from PBB is via
628 // exception handling. Happens for landing pads. Would be nice
629 // to have a bit in the edge so we didn't have to do all this.
630 if (IBB->isLandingPad()) {
631 MachineFunction::iterator IP = PBB; IP++;
632 MachineBasicBlock* PredNextBB = NULL;
633 if (IP!=MF.end())
634 PredNextBB = IP;
635 if (TBB==NULL) {
636 if (IBB!=PredNextBB) // fallthrough
637 continue;
638 } else if (FBB) {
639 if (TBB!=IBB && FBB!=IBB) // cbr then ubr
640 continue;
641 } else if (Cond.size() == 0) {
642 if (TBB!=IBB) // ubr
643 continue;
644 } else {
645 if (TBB!=IBB && IBB!=PredNextBB) // cbr
646 continue;
647 }
648 }
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000649 // Remove the unconditional branch at the end, if any.
650 if (TBB && (Cond.size()==0 || FBB)) {
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000651 TII->RemoveBranch(*PBB);
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000652 if (Cond.size())
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000653 // reinsert conditional branch only, for now
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000654 TII->InsertBranch(*PBB, (TBB==IBB) ? FBB : TBB, 0, NewCond);
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000655 }
Dale Johannesen7aea8322007-05-23 21:07:20 +0000656 MergePotentials.push_back(std::make_pair(HashEndOfMBB(PBB, 1U), *P));
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000657 }
658 }
659 if (MergePotentials.size() >= 2)
660 MadeChange |= TryMergeBlocks(I, PredBB);
661 // Reinsert an unconditional branch if needed.
662 // The 1 below can be either an original single predecessor, or a result
663 // of removing blocks in TryMergeBlocks.
Dale Johannesen1cf08c12007-05-18 01:28:58 +0000664 PredBB = prior(I); // this may have been changed in TryMergeBlocks
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000665 if (MergePotentials.size()==1 &&
666 (MergePotentials.begin())->second != PredBB)
Dale Johannesen76b38fc2007-05-10 01:01:49 +0000667 FixTail((MergePotentials.begin())->second, I, TII);
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000668 }
669 }
Dale Johannesen7d33b4c2007-05-07 20:57:21 +0000670 return MadeChange;
671}
Chris Lattner12143052006-10-21 00:47:49 +0000672
673//===----------------------------------------------------------------------===//
674// Branch Optimization
675//===----------------------------------------------------------------------===//
676
677bool BranchFolder::OptimizeBranches(MachineFunction &MF) {
678 MadeChange = false;
679
Dale Johannesen6b896ce2007-02-17 00:44:34 +0000680 // Make sure blocks are numbered in order
681 MF.RenumberBlocks();
682
Chris Lattner12143052006-10-21 00:47:49 +0000683 for (MachineFunction::iterator I = ++MF.begin(), E = MF.end(); I != E; ) {
684 MachineBasicBlock *MBB = I++;
685 OptimizeBlock(MBB);
686
687 // If it is dead, remove it.
Jim Laskey033c9712007-02-22 16:39:03 +0000688 if (MBB->pred_empty()) {
Chris Lattner12143052006-10-21 00:47:49 +0000689 RemoveDeadBlock(MBB);
690 MadeChange = true;
691 ++NumDeadBlocks;
692 }
693 }
694 return MadeChange;
695}
696
697
Chris Lattner6b0e3f82006-10-29 21:05:41 +0000698/// CanFallThrough - Return true if the specified block (with the specified
699/// branch condition) can implicitly transfer control to the block after it by
700/// falling off the end of it. This should return false if it can reach the
701/// block after it, but it uses an explicit branch to do so (e.g. a table jump).
702///
703/// True is a conservative answer.
704///
705bool BranchFolder::CanFallThrough(MachineBasicBlock *CurBB,
706 bool BranchUnAnalyzable,
707 MachineBasicBlock *TBB, MachineBasicBlock *FBB,
708 const std::vector<MachineOperand> &Cond) {
709 MachineFunction::iterator Fallthrough = CurBB;
710 ++Fallthrough;
711 // If FallthroughBlock is off the end of the function, it can't fall through.
712 if (Fallthrough == CurBB->getParent()->end())
713 return false;
714
715 // If FallthroughBlock isn't a successor of CurBB, no fallthrough is possible.
716 if (!CurBB->isSuccessor(Fallthrough))
717 return false;
718
719 // If we couldn't analyze the branch, assume it could fall through.
720 if (BranchUnAnalyzable) return true;
721
Chris Lattner7d097842006-10-24 01:12:32 +0000722 // If there is no branch, control always falls through.
723 if (TBB == 0) return true;
724
725 // If there is some explicit branch to the fallthrough block, it can obviously
726 // reach, even though the branch should get folded to fall through implicitly.
Chris Lattner6b0e3f82006-10-29 21:05:41 +0000727 if (MachineFunction::iterator(TBB) == Fallthrough ||
728 MachineFunction::iterator(FBB) == Fallthrough)
Chris Lattner7d097842006-10-24 01:12:32 +0000729 return true;
730
731 // If it's an unconditional branch to some block not the fall through, it
732 // doesn't fall through.
733 if (Cond.empty()) return false;
734
735 // Otherwise, if it is conditional and has no explicit false block, it falls
736 // through.
Chris Lattnerc2e91e32006-10-25 22:21:37 +0000737 return FBB == 0;
Chris Lattner7d097842006-10-24 01:12:32 +0000738}
739
Chris Lattner6b0e3f82006-10-29 21:05:41 +0000740/// CanFallThrough - Return true if the specified can implicitly transfer
741/// control to the block after it by falling off the end of it. This should
742/// return false if it can reach the block after it, but it uses an explicit
743/// branch to do so (e.g. a table jump).
744///
745/// True is a conservative answer.
746///
747bool BranchFolder::CanFallThrough(MachineBasicBlock *CurBB) {
748 MachineBasicBlock *TBB = 0, *FBB = 0;
749 std::vector<MachineOperand> Cond;
750 bool CurUnAnalyzable = TII->AnalyzeBranch(*CurBB, TBB, FBB, Cond);
751 return CanFallThrough(CurBB, CurUnAnalyzable, TBB, FBB, Cond);
752}
753
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000754/// IsBetterFallthrough - Return true if it would be clearly better to
755/// fall-through to MBB1 than to fall through into MBB2. This has to return
756/// a strict ordering, returning true for both (MBB1,MBB2) and (MBB2,MBB1) will
757/// result in infinite loops.
758static bool IsBetterFallthrough(MachineBasicBlock *MBB1,
759 MachineBasicBlock *MBB2,
760 const TargetInstrInfo &TII) {
Chris Lattner154e1042006-11-18 21:30:35 +0000761 // Right now, we use a simple heuristic. If MBB2 ends with a call, and
762 // MBB1 doesn't, we prefer to fall through into MBB1. This allows us to
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000763 // optimize branches that branch to either a return block or an assert block
764 // into a fallthrough to the return.
765 if (MBB1->empty() || MBB2->empty()) return false;
766
767 MachineInstr *MBB1I = --MBB1->end();
768 MachineInstr *MBB2I = --MBB2->end();
Chris Lattner154e1042006-11-18 21:30:35 +0000769 return TII.isCall(MBB2I->getOpcode()) && !TII.isCall(MBB1I->getOpcode());
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000770}
771
Chris Lattner7821a8a2006-10-14 00:21:48 +0000772/// OptimizeBlock - Analyze and optimize control flow related to the specified
773/// block. This is never called on the entry block.
Chris Lattner7d097842006-10-24 01:12:32 +0000774void BranchFolder::OptimizeBlock(MachineBasicBlock *MBB) {
775 MachineFunction::iterator FallThrough = MBB;
776 ++FallThrough;
777
Chris Lattnereb15eee2006-10-13 20:43:10 +0000778 // If this block is empty, make everyone use its fall-through, not the block
Dale Johannesena52dd152007-05-31 21:54:00 +0000779 // explicitly. Landing pads should not do this since the landing-pad table
780 // points to this block.
781 if (MBB->empty() && !MBB->isLandingPad()) {
Chris Lattner386e2902006-10-21 05:08:28 +0000782 // Dead block? Leave for cleanup later.
Jim Laskey033c9712007-02-22 16:39:03 +0000783 if (MBB->pred_empty()) return;
Chris Lattner7821a8a2006-10-14 00:21:48 +0000784
Chris Lattnerc50ffcb2006-10-17 17:13:52 +0000785 if (FallThrough == MBB->getParent()->end()) {
786 // TODO: Simplify preds to not branch here if possible!
787 } else {
788 // Rewrite all predecessors of the old block to go to the fallthrough
789 // instead.
Jim Laskey033c9712007-02-22 16:39:03 +0000790 while (!MBB->pred_empty()) {
Chris Lattner7821a8a2006-10-14 00:21:48 +0000791 MachineBasicBlock *Pred = *(MBB->pred_end()-1);
Evan Cheng0370fad2007-06-04 06:44:01 +0000792 Pred->ReplaceUsesOfBlockWith(MBB, FallThrough);
Chris Lattner7821a8a2006-10-14 00:21:48 +0000793 }
Chris Lattnerc50ffcb2006-10-17 17:13:52 +0000794
795 // If MBB was the target of a jump table, update jump tables to go to the
796 // fallthrough instead.
Chris Lattner6acfe122006-10-28 18:34:47 +0000797 MBB->getParent()->getJumpTableInfo()->
798 ReplaceMBBInJumpTables(MBB, FallThrough);
Chris Lattner7821a8a2006-10-14 00:21:48 +0000799 MadeChange = true;
Chris Lattner21ab22e2004-07-31 10:01:27 +0000800 }
Chris Lattner7821a8a2006-10-14 00:21:48 +0000801 return;
Chris Lattner21ab22e2004-07-31 10:01:27 +0000802 }
803
Chris Lattner7821a8a2006-10-14 00:21:48 +0000804 // Check to see if we can simplify the terminator of the block before this
805 // one.
Chris Lattner7d097842006-10-24 01:12:32 +0000806 MachineBasicBlock &PrevBB = *prior(MachineFunction::iterator(MBB));
Chris Lattnerffddf6b2006-10-17 18:16:40 +0000807
Chris Lattner7821a8a2006-10-14 00:21:48 +0000808 MachineBasicBlock *PriorTBB = 0, *PriorFBB = 0;
809 std::vector<MachineOperand> PriorCond;
Chris Lattner6b0e3f82006-10-29 21:05:41 +0000810 bool PriorUnAnalyzable =
811 TII->AnalyzeBranch(PrevBB, PriorTBB, PriorFBB, PriorCond);
Chris Lattner386e2902006-10-21 05:08:28 +0000812 if (!PriorUnAnalyzable) {
813 // If the CFG for the prior block has extra edges, remove them.
Evan Cheng2bdb7d02007-06-18 22:43:58 +0000814 MadeChange |= PrevBB.CorrectExtraCFGEdges(PriorTBB, PriorFBB,
815 !PriorCond.empty());
Chris Lattner386e2902006-10-21 05:08:28 +0000816
Chris Lattner7821a8a2006-10-14 00:21:48 +0000817 // If the previous branch is conditional and both conditions go to the same
Chris Lattner2d47bd92006-10-21 05:43:30 +0000818 // destination, remove the branch, replacing it with an unconditional one or
819 // a fall-through.
Chris Lattner7821a8a2006-10-14 00:21:48 +0000820 if (PriorTBB && PriorTBB == PriorFBB) {
Chris Lattner386e2902006-10-21 05:08:28 +0000821 TII->RemoveBranch(PrevBB);
Chris Lattner7821a8a2006-10-14 00:21:48 +0000822 PriorCond.clear();
Chris Lattner7d097842006-10-24 01:12:32 +0000823 if (PriorTBB != MBB)
Chris Lattner386e2902006-10-21 05:08:28 +0000824 TII->InsertBranch(PrevBB, PriorTBB, 0, PriorCond);
Chris Lattner7821a8a2006-10-14 00:21:48 +0000825 MadeChange = true;
Chris Lattner12143052006-10-21 00:47:49 +0000826 ++NumBranchOpts;
Chris Lattner7821a8a2006-10-14 00:21:48 +0000827 return OptimizeBlock(MBB);
828 }
829
830 // If the previous branch *only* branches to *this* block (conditional or
831 // not) remove the branch.
Chris Lattner7d097842006-10-24 01:12:32 +0000832 if (PriorTBB == MBB && PriorFBB == 0) {
Chris Lattner386e2902006-10-21 05:08:28 +0000833 TII->RemoveBranch(PrevBB);
Chris Lattner7821a8a2006-10-14 00:21:48 +0000834 MadeChange = true;
Chris Lattner12143052006-10-21 00:47:49 +0000835 ++NumBranchOpts;
Chris Lattner7821a8a2006-10-14 00:21:48 +0000836 return OptimizeBlock(MBB);
837 }
Chris Lattner2d47bd92006-10-21 05:43:30 +0000838
839 // If the prior block branches somewhere else on the condition and here if
840 // the condition is false, remove the uncond second branch.
Chris Lattner7d097842006-10-24 01:12:32 +0000841 if (PriorFBB == MBB) {
Chris Lattner2d47bd92006-10-21 05:43:30 +0000842 TII->RemoveBranch(PrevBB);
843 TII->InsertBranch(PrevBB, PriorTBB, 0, PriorCond);
844 MadeChange = true;
845 ++NumBranchOpts;
846 return OptimizeBlock(MBB);
847 }
Chris Lattnera2d79952006-10-21 05:54:00 +0000848
849 // If the prior block branches here on true and somewhere else on false, and
850 // if the branch condition is reversible, reverse the branch to create a
851 // fall-through.
Chris Lattner7d097842006-10-24 01:12:32 +0000852 if (PriorTBB == MBB) {
Chris Lattnera2d79952006-10-21 05:54:00 +0000853 std::vector<MachineOperand> NewPriorCond(PriorCond);
854 if (!TII->ReverseBranchCondition(NewPriorCond)) {
855 TII->RemoveBranch(PrevBB);
856 TII->InsertBranch(PrevBB, PriorFBB, 0, NewPriorCond);
857 MadeChange = true;
858 ++NumBranchOpts;
859 return OptimizeBlock(MBB);
860 }
861 }
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000862
Chris Lattner154e1042006-11-18 21:30:35 +0000863 // If this block doesn't fall through (e.g. it ends with an uncond branch or
864 // has no successors) and if the pred falls through into this block, and if
865 // it would otherwise fall through into the block after this, move this
866 // block to the end of the function.
867 //
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000868 // We consider it more likely that execution will stay in the function (e.g.
869 // due to loops) than it is to exit it. This asserts in loops etc, moving
870 // the assert condition out of the loop body.
Chris Lattner154e1042006-11-18 21:30:35 +0000871 if (!PriorCond.empty() && PriorFBB == 0 &&
872 MachineFunction::iterator(PriorTBB) == FallThrough &&
873 !CanFallThrough(MBB)) {
Chris Lattnerf10a56a2006-11-18 21:56:39 +0000874 bool DoTransform = true;
875
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000876 // We have to be careful that the succs of PredBB aren't both no-successor
877 // blocks. If neither have successors and if PredBB is the second from
878 // last block in the function, we'd just keep swapping the two blocks for
879 // last. Only do the swap if one is clearly better to fall through than
880 // the other.
Chris Lattnerf10a56a2006-11-18 21:56:39 +0000881 if (FallThrough == --MBB->getParent()->end() &&
882 !IsBetterFallthrough(PriorTBB, MBB, *TII))
883 DoTransform = false;
884
885 // We don't want to do this transformation if we have control flow like:
886 // br cond BB2
887 // BB1:
888 // ..
889 // jmp BBX
890 // BB2:
891 // ..
892 // ret
893 //
894 // In this case, we could actually be moving the return block *into* a
895 // loop!
Chris Lattner4b105912006-11-18 22:25:39 +0000896 if (DoTransform && !MBB->succ_empty() &&
897 (!CanFallThrough(PriorTBB) || PriorTBB->empty()))
Chris Lattnerf10a56a2006-11-18 21:56:39 +0000898 DoTransform = false;
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000899
Chris Lattnerf10a56a2006-11-18 21:56:39 +0000900
901 if (DoTransform) {
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000902 // Reverse the branch so we will fall through on the previous true cond.
903 std::vector<MachineOperand> NewPriorCond(PriorCond);
904 if (!TII->ReverseBranchCondition(NewPriorCond)) {
Chris Lattnerf10a56a2006-11-18 21:56:39 +0000905 DOUT << "\nMoving MBB: " << *MBB;
906 DOUT << "To make fallthrough to: " << *PriorTBB << "\n";
907
Chris Lattnera7bef4a2006-11-18 20:47:54 +0000908 TII->RemoveBranch(PrevBB);
909 TII->InsertBranch(PrevBB, MBB, 0, NewPriorCond);
910
911 // Move this block to the end of the function.
912 MBB->moveAfter(--MBB->getParent()->end());
913 MadeChange = true;
914 ++NumBranchOpts;
915 return;
916 }
917 }
918 }
Chris Lattner7821a8a2006-10-14 00:21:48 +0000919 }
Chris Lattner7821a8a2006-10-14 00:21:48 +0000920
Chris Lattner386e2902006-10-21 05:08:28 +0000921 // Analyze the branch in the current block.
922 MachineBasicBlock *CurTBB = 0, *CurFBB = 0;
923 std::vector<MachineOperand> CurCond;
Chris Lattner6b0e3f82006-10-29 21:05:41 +0000924 bool CurUnAnalyzable = TII->AnalyzeBranch(*MBB, CurTBB, CurFBB, CurCond);
925 if (!CurUnAnalyzable) {
Chris Lattner386e2902006-10-21 05:08:28 +0000926 // If the CFG for the prior block has extra edges, remove them.
Evan Cheng2bdb7d02007-06-18 22:43:58 +0000927 MadeChange |= MBB->CorrectExtraCFGEdges(CurTBB, CurFBB, !CurCond.empty());
Chris Lattnereb15eee2006-10-13 20:43:10 +0000928
Chris Lattner5d056952006-11-08 01:03:21 +0000929 // If this is a two-way branch, and the FBB branches to this block, reverse
930 // the condition so the single-basic-block loop is faster. Instead of:
931 // Loop: xxx; jcc Out; jmp Loop
932 // we want:
933 // Loop: xxx; jncc Loop; jmp Out
934 if (CurTBB && CurFBB && CurFBB == MBB && CurTBB != MBB) {
935 std::vector<MachineOperand> NewCond(CurCond);
936 if (!TII->ReverseBranchCondition(NewCond)) {
937 TII->RemoveBranch(*MBB);
938 TII->InsertBranch(*MBB, CurFBB, CurTBB, NewCond);
939 MadeChange = true;
940 ++NumBranchOpts;
941 return OptimizeBlock(MBB);
942 }
943 }
944
945
Chris Lattner386e2902006-10-21 05:08:28 +0000946 // If this branch is the only thing in its block, see if we can forward
947 // other blocks across it.
948 if (CurTBB && CurCond.empty() && CurFBB == 0 &&
Chris Lattner7d097842006-10-24 01:12:32 +0000949 TII->isBranch(MBB->begin()->getOpcode()) && CurTBB != MBB) {
Chris Lattner386e2902006-10-21 05:08:28 +0000950 // This block may contain just an unconditional branch. Because there can
951 // be 'non-branch terminators' in the block, try removing the branch and
952 // then seeing if the block is empty.
953 TII->RemoveBranch(*MBB);
954
955 // If this block is just an unconditional branch to CurTBB, we can
956 // usually completely eliminate the block. The only case we cannot
957 // completely eliminate the block is when the block before this one
958 // falls through into MBB and we can't understand the prior block's branch
959 // condition.
Chris Lattnercf420cc2006-10-28 17:32:47 +0000960 if (MBB->empty()) {
961 bool PredHasNoFallThrough = TII->BlockHasNoFallThrough(PrevBB);
962 if (PredHasNoFallThrough || !PriorUnAnalyzable ||
963 !PrevBB.isSuccessor(MBB)) {
964 // If the prior block falls through into us, turn it into an
965 // explicit branch to us to make updates simpler.
966 if (!PredHasNoFallThrough && PrevBB.isSuccessor(MBB) &&
967 PriorTBB != MBB && PriorFBB != MBB) {
968 if (PriorTBB == 0) {
Chris Lattner6acfe122006-10-28 18:34:47 +0000969 assert(PriorCond.empty() && PriorFBB == 0 &&
970 "Bad branch analysis");
Chris Lattnercf420cc2006-10-28 17:32:47 +0000971 PriorTBB = MBB;
972 } else {
973 assert(PriorFBB == 0 && "Machine CFG out of date!");
974 PriorFBB = MBB;
975 }
976 TII->RemoveBranch(PrevBB);
977 TII->InsertBranch(PrevBB, PriorTBB, PriorFBB, PriorCond);
Chris Lattner386e2902006-10-21 05:08:28 +0000978 }
Chris Lattner386e2902006-10-21 05:08:28 +0000979
Chris Lattnercf420cc2006-10-28 17:32:47 +0000980 // Iterate through all the predecessors, revectoring each in-turn.
981 MachineBasicBlock::pred_iterator PI = MBB->pred_begin();
982 bool DidChange = false;
983 bool HasBranchToSelf = false;
984 while (PI != MBB->pred_end()) {
985 if (*PI == MBB) {
986 // If this block has an uncond branch to itself, leave it.
987 ++PI;
988 HasBranchToSelf = true;
989 } else {
990 DidChange = true;
Evan Cheng0370fad2007-06-04 06:44:01 +0000991 (*PI)->ReplaceUsesOfBlockWith(MBB, CurTBB);
Chris Lattnercf420cc2006-10-28 17:32:47 +0000992 }
Chris Lattner4bc135e2006-10-21 06:11:43 +0000993 }
Chris Lattner386e2902006-10-21 05:08:28 +0000994
Chris Lattnercf420cc2006-10-28 17:32:47 +0000995 // Change any jumptables to go to the new MBB.
Chris Lattner6acfe122006-10-28 18:34:47 +0000996 MBB->getParent()->getJumpTableInfo()->
997 ReplaceMBBInJumpTables(MBB, CurTBB);
Chris Lattnercf420cc2006-10-28 17:32:47 +0000998 if (DidChange) {
999 ++NumBranchOpts;
1000 MadeChange = true;
1001 if (!HasBranchToSelf) return;
1002 }
Chris Lattner4bc135e2006-10-21 06:11:43 +00001003 }
Chris Lattnereb15eee2006-10-13 20:43:10 +00001004 }
Chris Lattnereb15eee2006-10-13 20:43:10 +00001005
Chris Lattner386e2902006-10-21 05:08:28 +00001006 // Add the branch back if the block is more than just an uncond branch.
1007 TII->InsertBranch(*MBB, CurTBB, 0, CurCond);
Chris Lattner21ab22e2004-07-31 10:01:27 +00001008 }
Chris Lattner6b0e3f82006-10-29 21:05:41 +00001009 }
1010
1011 // If the prior block doesn't fall through into this block, and if this
1012 // block doesn't fall through into some other block, see if we can find a
1013 // place to move this block where a fall-through will happen.
1014 if (!CanFallThrough(&PrevBB, PriorUnAnalyzable,
1015 PriorTBB, PriorFBB, PriorCond)) {
1016 // Now we know that there was no fall-through into this block, check to
1017 // see if it has a fall-through into its successor.
Dale Johannesen6b896ce2007-02-17 00:44:34 +00001018 bool CurFallsThru = CanFallThrough(MBB, CurUnAnalyzable, CurTBB, CurFBB,
Chris Lattner77edc4b2007-04-30 23:35:00 +00001019 CurCond);
Dale Johannesen6b896ce2007-02-17 00:44:34 +00001020
Jim Laskey02b3f5e2007-02-21 22:42:20 +00001021 if (!MBB->isLandingPad()) {
1022 // Check all the predecessors of this block. If one of them has no fall
1023 // throughs, move this block right after it.
1024 for (MachineBasicBlock::pred_iterator PI = MBB->pred_begin(),
1025 E = MBB->pred_end(); PI != E; ++PI) {
1026 // Analyze the branch at the end of the pred.
1027 MachineBasicBlock *PredBB = *PI;
1028 MachineFunction::iterator PredFallthrough = PredBB; ++PredFallthrough;
1029 if (PredBB != MBB && !CanFallThrough(PredBB)
Dale Johannesen76b38fc2007-05-10 01:01:49 +00001030 && (!CurFallsThru || !CurTBB || !CurFBB)
Jim Laskey02b3f5e2007-02-21 22:42:20 +00001031 && (!CurFallsThru || MBB->getNumber() >= PredBB->getNumber())) {
1032 // If the current block doesn't fall through, just move it.
1033 // If the current block can fall through and does not end with a
1034 // conditional branch, we need to append an unconditional jump to
1035 // the (current) next block. To avoid a possible compile-time
1036 // infinite loop, move blocks only backward in this case.
Dale Johannesen76b38fc2007-05-10 01:01:49 +00001037 // Also, if there are already 2 branches here, we cannot add a third;
1038 // this means we have the case
1039 // Bcc next
1040 // B elsewhere
1041 // next:
Jim Laskey02b3f5e2007-02-21 22:42:20 +00001042 if (CurFallsThru) {
1043 MachineBasicBlock *NextBB = next(MachineFunction::iterator(MBB));
1044 CurCond.clear();
1045 TII->InsertBranch(*MBB, NextBB, 0, CurCond);
1046 }
1047 MBB->moveAfter(PredBB);
1048 MadeChange = true;
1049 return OptimizeBlock(MBB);
Chris Lattner7d097842006-10-24 01:12:32 +00001050 }
1051 }
Dale Johannesen6b896ce2007-02-17 00:44:34 +00001052 }
Chris Lattner6b0e3f82006-10-29 21:05:41 +00001053
Dale Johannesen6b896ce2007-02-17 00:44:34 +00001054 if (!CurFallsThru) {
Chris Lattner6b0e3f82006-10-29 21:05:41 +00001055 // Check all successors to see if we can move this block before it.
1056 for (MachineBasicBlock::succ_iterator SI = MBB->succ_begin(),
1057 E = MBB->succ_end(); SI != E; ++SI) {
1058 // Analyze the branch at the end of the block before the succ.
1059 MachineBasicBlock *SuccBB = *SI;
1060 MachineFunction::iterator SuccPrev = SuccBB; --SuccPrev;
Chris Lattner6b0e3f82006-10-29 21:05:41 +00001061 std::vector<MachineOperand> SuccPrevCond;
Chris Lattner77edc4b2007-04-30 23:35:00 +00001062
1063 // If this block doesn't already fall-through to that successor, and if
1064 // the succ doesn't already have a block that can fall through into it,
1065 // and if the successor isn't an EH destination, we can arrange for the
1066 // fallthrough to happen.
1067 if (SuccBB != MBB && !CanFallThrough(SuccPrev) &&
1068 !SuccBB->isLandingPad()) {
Chris Lattner6b0e3f82006-10-29 21:05:41 +00001069 MBB->moveBefore(SuccBB);
1070 MadeChange = true;
1071 return OptimizeBlock(MBB);
1072 }
1073 }
1074
1075 // Okay, there is no really great place to put this block. If, however,
1076 // the block before this one would be a fall-through if this block were
1077 // removed, move this block to the end of the function.
1078 if (FallThrough != MBB->getParent()->end() &&
1079 PrevBB.isSuccessor(FallThrough)) {
1080 MBB->moveAfter(--MBB->getParent()->end());
1081 MadeChange = true;
1082 return;
1083 }
Chris Lattner7d097842006-10-24 01:12:32 +00001084 }
Chris Lattner21ab22e2004-07-31 10:01:27 +00001085 }
Chris Lattner21ab22e2004-07-31 10:01:27 +00001086}