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Hal Finkel99f823f2012-06-08 15:38:21 +00001//===-- PPCCTRLoops.cpp - Identify and generate CTR loops -----------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This pass identifies loops where we can generate the PPC branch instructions
11// that decrement and test the count register (CTR) (bdnz and friends).
Hal Finkel99f823f2012-06-08 15:38:21 +000012//
13// The pattern that defines the induction variable can changed depending on
14// prior optimizations. For example, the IndVarSimplify phase run by 'opt'
15// normalizes induction variables, and the Loop Strength Reduction pass
16// run by 'llc' may also make changes to the induction variable.
Hal Finkel99f823f2012-06-08 15:38:21 +000017//
18// Criteria for CTR loops:
19// - Countable loops (w/ ind. var for a trip count)
Hal Finkel99f823f2012-06-08 15:38:21 +000020// - Try inner-most loops first
21// - No nested CTR loops.
22// - No function calls in loops.
23//
Hal Finkel99f823f2012-06-08 15:38:21 +000024//===----------------------------------------------------------------------===//
25
26#define DEBUG_TYPE "ctrloops"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000027
28#include "llvm/Transforms/Scalar.h"
Hal Finkel99f823f2012-06-08 15:38:21 +000029#include "llvm/ADT/Statistic.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000030#include "llvm/ADT/STLExtras.h"
31#include "llvm/Analysis/Dominators.h"
32#include "llvm/Analysis/LoopInfo.h"
33#include "llvm/Analysis/ScalarEvolutionExpander.h"
Chandler Carruth0b8c9a82013-01-02 11:36:10 +000034#include "llvm/IR/Constants.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000035#include "llvm/IR/DerivedTypes.h"
Hal Finkelbf0bc3b2013-05-18 09:20:39 +000036#include "llvm/IR/InlineAsm.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000037#include "llvm/IR/Instructions.h"
38#include "llvm/IR/IntrinsicInst.h"
39#include "llvm/IR/Module.h"
Chandler Carruthd04a8d42012-12-03 16:50:05 +000040#include "llvm/PassSupport.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000041#include "llvm/Support/CommandLine.h"
Hal Finkel99f823f2012-06-08 15:38:21 +000042#include "llvm/Support/Debug.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000043#include "llvm/Support/ValueHandle.h"
Hal Finkel99f823f2012-06-08 15:38:21 +000044#include "llvm/Support/raw_ostream.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000045#include "llvm/Transforms/Utils/BasicBlockUtils.h"
46#include "llvm/Transforms/Utils/Local.h"
Hal Finkel4e6b24f2013-05-20 20:46:30 +000047#include "llvm/Transforms/Utils/LoopUtils.h"
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000048#include "llvm/Target/TargetLibraryInfo.h"
49#include "PPCTargetMachine.h"
50#include "PPC.h"
51
Hal Finkele50c8c12013-05-20 16:08:17 +000052#ifndef NDEBUG
53#include "llvm/CodeGen/MachineDominators.h"
54#include "llvm/CodeGen/MachineFunction.h"
55#include "llvm/CodeGen/MachineFunctionPass.h"
56#include "llvm/CodeGen/MachineRegisterInfo.h"
57#endif
58
Hal Finkel99f823f2012-06-08 15:38:21 +000059#include <algorithm>
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000060#include <vector>
Hal Finkel99f823f2012-06-08 15:38:21 +000061
62using namespace llvm;
63
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000064#ifndef NDEBUG
65static cl::opt<int> CTRLoopLimit("ppc-max-ctrloop", cl::Hidden, cl::init(-1));
66#endif
67
Hal Finkel99f823f2012-06-08 15:38:21 +000068STATISTIC(NumCTRLoops, "Number of loops converted to CTR loops");
69
Krzysztof Parzyszek96848df2013-02-13 17:40:07 +000070namespace llvm {
71 void initializePPCCTRLoopsPass(PassRegistry&);
Hal Finkele50c8c12013-05-20 16:08:17 +000072#ifndef NDEBUG
73 void initializePPCCTRLoopsVerifyPass(PassRegistry&);
74#endif
Krzysztof Parzyszek96848df2013-02-13 17:40:07 +000075}
76
Hal Finkel99f823f2012-06-08 15:38:21 +000077namespace {
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000078 struct PPCCTRLoops : public FunctionPass {
79
80#ifndef NDEBUG
81 static int Counter;
82#endif
Hal Finkel99f823f2012-06-08 15:38:21 +000083
84 public:
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000085 static char ID;
Hal Finkel99f823f2012-06-08 15:38:21 +000086
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000087 PPCCTRLoops() : FunctionPass(ID), TM(0) {
88 initializePPCCTRLoopsPass(*PassRegistry::getPassRegistry());
89 }
90 PPCCTRLoops(PPCTargetMachine &TM) : FunctionPass(ID), TM(&TM) {
Krzysztof Parzyszek96848df2013-02-13 17:40:07 +000091 initializePPCCTRLoopsPass(*PassRegistry::getPassRegistry());
92 }
Hal Finkel99f823f2012-06-08 15:38:21 +000093
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000094 virtual bool runOnFunction(Function &F);
Hal Finkel99f823f2012-06-08 15:38:21 +000095
96 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
Hal Finkelb1fd3cd2013-05-15 21:37:41 +000097 AU.addRequired<LoopInfo>();
98 AU.addPreserved<LoopInfo>();
99 AU.addRequired<DominatorTree>();
100 AU.addPreserved<DominatorTree>();
101 AU.addRequired<ScalarEvolution>();
Hal Finkel99f823f2012-06-08 15:38:21 +0000102 }
103
104 private:
Hal Finkelc4824542013-05-16 19:58:38 +0000105 bool mightUseCTR(const Triple &TT, BasicBlock *BB);
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000106 bool convertToCTRLoop(Loop *L);
Hal Finkel08f92c92013-05-20 16:47:10 +0000107
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000108 private:
109 PPCTargetMachine *TM;
110 LoopInfo *LI;
111 ScalarEvolution *SE;
112 DataLayout *TD;
113 DominatorTree *DT;
114 const TargetLibraryInfo *LibInfo;
Hal Finkel99f823f2012-06-08 15:38:21 +0000115 };
116
117 char PPCCTRLoops::ID = 0;
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000118#ifndef NDEBUG
119 int PPCCTRLoops::Counter = 0;
120#endif
Hal Finkele50c8c12013-05-20 16:08:17 +0000121
122#ifndef NDEBUG
123 struct PPCCTRLoopsVerify : public MachineFunctionPass {
124 public:
125 static char ID;
126
127 PPCCTRLoopsVerify() : MachineFunctionPass(ID) {
128 initializePPCCTRLoopsVerifyPass(*PassRegistry::getPassRegistry());
129 }
130
131 virtual void getAnalysisUsage(AnalysisUsage &AU) const {
132 AU.addRequired<MachineDominatorTree>();
133 MachineFunctionPass::getAnalysisUsage(AU);
134 }
135
136 virtual bool runOnMachineFunction(MachineFunction &MF);
137
138 private:
139 MachineDominatorTree *MDT;
140 };
141
142 char PPCCTRLoopsVerify::ID = 0;
143#endif // NDEBUG
Hal Finkel99f823f2012-06-08 15:38:21 +0000144} // end anonymous namespace
145
Krzysztof Parzyszek96848df2013-02-13 17:40:07 +0000146INITIALIZE_PASS_BEGIN(PPCCTRLoops, "ppc-ctr-loops", "PowerPC CTR Loops",
147 false, false)
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000148INITIALIZE_PASS_DEPENDENCY(DominatorTree)
149INITIALIZE_PASS_DEPENDENCY(LoopInfo)
150INITIALIZE_PASS_DEPENDENCY(ScalarEvolution)
Krzysztof Parzyszek96848df2013-02-13 17:40:07 +0000151INITIALIZE_PASS_END(PPCCTRLoops, "ppc-ctr-loops", "PowerPC CTR Loops",
152 false, false)
Hal Finkel99f823f2012-06-08 15:38:21 +0000153
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000154FunctionPass *llvm::createPPCCTRLoops(PPCTargetMachine &TM) {
155 return new PPCCTRLoops(TM);
Hal Finkel99f823f2012-06-08 15:38:21 +0000156}
157
Hal Finkele50c8c12013-05-20 16:08:17 +0000158#ifndef NDEBUG
159INITIALIZE_PASS_BEGIN(PPCCTRLoopsVerify, "ppc-ctr-loops-verify",
160 "PowerPC CTR Loops Verify", false, false)
161INITIALIZE_PASS_DEPENDENCY(MachineDominatorTree)
162INITIALIZE_PASS_END(PPCCTRLoopsVerify, "ppc-ctr-loops-verify",
163 "PowerPC CTR Loops Verify", false, false)
164
165FunctionPass *llvm::createPPCCTRLoopsVerify() {
166 return new PPCCTRLoopsVerify();
167}
168#endif // NDEBUG
169
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000170bool PPCCTRLoops::runOnFunction(Function &F) {
171 LI = &getAnalysis<LoopInfo>();
172 SE = &getAnalysis<ScalarEvolution>();
173 DT = &getAnalysis<DominatorTree>();
174 TD = getAnalysisIfAvailable<DataLayout>();
175 LibInfo = getAnalysisIfAvailable<TargetLibraryInfo>();
Hal Finkel99f823f2012-06-08 15:38:21 +0000176
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000177 bool MadeChange = false;
Hal Finkel99f823f2012-06-08 15:38:21 +0000178
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000179 for (LoopInfo::iterator I = LI->begin(), E = LI->end();
Hal Finkel99f823f2012-06-08 15:38:21 +0000180 I != E; ++I) {
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000181 Loop *L = *I;
182 if (!L->getParentLoop())
183 MadeChange |= convertToCTRLoop(L);
Hal Finkel99f823f2012-06-08 15:38:21 +0000184 }
185
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000186 return MadeChange;
Hal Finkel99f823f2012-06-08 15:38:21 +0000187}
188
Hal Finkelc4824542013-05-16 19:58:38 +0000189bool PPCCTRLoops::mightUseCTR(const Triple &TT, BasicBlock *BB) {
190 for (BasicBlock::iterator J = BB->begin(), JE = BB->end();
191 J != JE; ++J) {
192 if (CallInst *CI = dyn_cast<CallInst>(J)) {
Hal Finkelbf0bc3b2013-05-18 09:20:39 +0000193 if (InlineAsm *IA = dyn_cast<InlineAsm>(CI->getCalledValue())) {
194 // Inline ASM is okay, unless it clobbers the ctr register.
195 InlineAsm::ConstraintInfoVector CIV = IA->ParseConstraints();
196 for (unsigned i = 0, ie = CIV.size(); i < ie; ++i) {
197 InlineAsm::ConstraintInfo &C = CIV[i];
198 if (C.Type != InlineAsm::isInput)
199 for (unsigned j = 0, je = C.Codes.size(); j < je; ++j)
200 if (StringRef(C.Codes[j]).equals_lower("{ctr}"))
201 return true;
202 }
203
204 continue;
205 }
206
Hal Finkelc4824542013-05-16 19:58:38 +0000207 if (!TM)
208 return true;
209 const TargetLowering *TLI = TM->getTargetLowering();
210
211 if (Function *F = CI->getCalledFunction()) {
212 // Most intrinsics don't become function calls, but some might.
213 // sin, cos, exp and log are always calls.
214 unsigned Opcode;
215 if (F->getIntrinsicID() != Intrinsic::not_intrinsic) {
216 switch (F->getIntrinsicID()) {
217 default: continue;
218
219// VisualStudio defines setjmp as _setjmp
220#if defined(_MSC_VER) && defined(setjmp) && \
221 !defined(setjmp_undefined_for_msvc)
222# pragma push_macro("setjmp")
223# undef setjmp
224# define setjmp_undefined_for_msvc
225#endif
226
227 case Intrinsic::setjmp:
228
229#if defined(_MSC_VER) && defined(setjmp_undefined_for_msvc)
230 // let's return it to _setjmp state
231# pragma pop_macro("setjmp")
232# undef setjmp_undefined_for_msvc
233#endif
234
235 case Intrinsic::longjmp:
236 case Intrinsic::memcpy:
237 case Intrinsic::memmove:
238 case Intrinsic::memset:
239 case Intrinsic::powi:
240 case Intrinsic::log:
241 case Intrinsic::log2:
242 case Intrinsic::log10:
243 case Intrinsic::exp:
244 case Intrinsic::exp2:
245 case Intrinsic::pow:
246 case Intrinsic::sin:
247 case Intrinsic::cos:
248 return true;
249 case Intrinsic::sqrt: Opcode = ISD::FSQRT; break;
250 case Intrinsic::floor: Opcode = ISD::FFLOOR; break;
251 case Intrinsic::ceil: Opcode = ISD::FCEIL; break;
252 case Intrinsic::trunc: Opcode = ISD::FTRUNC; break;
253 case Intrinsic::rint: Opcode = ISD::FRINT; break;
254 case Intrinsic::nearbyint: Opcode = ISD::FNEARBYINT; break;
255 }
256 }
257
258 // PowerPC does not use [US]DIVREM or other library calls for
259 // operations on regular types which are not otherwise library calls
260 // (i.e. soft float or atomics). If adapting for targets that do,
261 // additional care is required here.
262
263 LibFunc::Func Func;
264 if (!F->hasLocalLinkage() && F->hasName() && LibInfo &&
265 LibInfo->getLibFunc(F->getName(), Func) &&
266 LibInfo->hasOptimizedCodeGen(Func)) {
267 // Non-read-only functions are never treated as intrinsics.
268 if (!CI->onlyReadsMemory())
269 return true;
270
271 // Conversion happens only for FP calls.
272 if (!CI->getArgOperand(0)->getType()->isFloatingPointTy())
273 return true;
274
275 switch (Func) {
276 default: return true;
277 case LibFunc::copysign:
278 case LibFunc::copysignf:
279 case LibFunc::copysignl:
280 continue; // ISD::FCOPYSIGN is never a library call.
281 case LibFunc::fabs:
282 case LibFunc::fabsf:
283 case LibFunc::fabsl:
284 continue; // ISD::FABS is never a library call.
285 case LibFunc::sqrt:
286 case LibFunc::sqrtf:
287 case LibFunc::sqrtl:
288 Opcode = ISD::FSQRT; break;
289 case LibFunc::floor:
290 case LibFunc::floorf:
291 case LibFunc::floorl:
292 Opcode = ISD::FFLOOR; break;
293 case LibFunc::nearbyint:
294 case LibFunc::nearbyintf:
295 case LibFunc::nearbyintl:
296 Opcode = ISD::FNEARBYINT; break;
297 case LibFunc::ceil:
298 case LibFunc::ceilf:
299 case LibFunc::ceill:
300 Opcode = ISD::FCEIL; break;
301 case LibFunc::rint:
302 case LibFunc::rintf:
303 case LibFunc::rintl:
304 Opcode = ISD::FRINT; break;
305 case LibFunc::trunc:
306 case LibFunc::truncf:
307 case LibFunc::truncl:
308 Opcode = ISD::FTRUNC; break;
309 }
310
311 MVT VTy =
312 TLI->getSimpleValueType(CI->getArgOperand(0)->getType(), true);
313 if (VTy == MVT::Other)
314 return true;
315
316 if (TLI->isOperationLegalOrCustom(Opcode, VTy))
317 continue;
318 else if (VTy.isVector() &&
319 TLI->isOperationLegalOrCustom(Opcode, VTy.getScalarType()))
320 continue;
321
322 return true;
323 }
324 }
325
326 return true;
327 } else if (isa<BinaryOperator>(J) &&
328 J->getType()->getScalarType()->isPPC_FP128Ty()) {
329 // Most operations on ppc_f128 values become calls.
330 return true;
331 } else if (isa<UIToFPInst>(J) || isa<SIToFPInst>(J) ||
332 isa<FPToUIInst>(J) || isa<FPToSIInst>(J)) {
333 CastInst *CI = cast<CastInst>(J);
334 if (CI->getSrcTy()->getScalarType()->isPPC_FP128Ty() ||
335 CI->getDestTy()->getScalarType()->isPPC_FP128Ty() ||
336 (TT.isArch32Bit() &&
337 (CI->getSrcTy()->getScalarType()->isIntegerTy(64) ||
338 CI->getDestTy()->getScalarType()->isIntegerTy(64))
339 ))
340 return true;
341 } else if (isa<IndirectBrInst>(J) || isa<InvokeInst>(J)) {
342 // On PowerPC, indirect jumps use the counter register.
343 return true;
344 } else if (SwitchInst *SI = dyn_cast<SwitchInst>(J)) {
345 if (!TM)
346 return true;
347 const TargetLowering *TLI = TM->getTargetLowering();
348
349 if (TLI->supportJumpTables() &&
350 SI->getNumCases()+1 >= (unsigned) TLI->getMinimumJumpTableEntries())
351 return true;
352 }
353 }
354
355 return false;
356}
357
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000358bool PPCCTRLoops::convertToCTRLoop(Loop *L) {
359 bool MadeChange = false;
Hal Finkel99f823f2012-06-08 15:38:21 +0000360
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000361 Triple TT = Triple(L->getHeader()->getParent()->getParent()->
362 getTargetTriple());
363 if (!TT.isArch32Bit() && !TT.isArch64Bit())
364 return MadeChange; // Unknown arch. type.
Hal Finkel99f823f2012-06-08 15:38:21 +0000365
Hal Finkel99f823f2012-06-08 15:38:21 +0000366 // Process nested loops first.
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000367 for (Loop::iterator I = L->begin(), E = L->end(); I != E; ++I) {
368 MadeChange |= convertToCTRLoop(*I);
Hal Finkel99f823f2012-06-08 15:38:21 +0000369 }
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000370
Hal Finkel99f823f2012-06-08 15:38:21 +0000371 // If a nested loop has been converted, then we can't convert this loop.
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000372 if (MadeChange)
373 return MadeChange;
Hal Finkel99f823f2012-06-08 15:38:21 +0000374
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000375#ifndef NDEBUG
376 // Stop trying after reaching the limit (if any).
377 int Limit = CTRLoopLimit;
378 if (Limit >= 0) {
379 if (Counter >= CTRLoopLimit)
Hal Finkel9887ec32013-03-18 17:40:44 +0000380 return false;
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000381 Counter++;
Hal Finkel9887ec32013-03-18 17:40:44 +0000382 }
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000383#endif
Hal Finkel9887ec32013-03-18 17:40:44 +0000384
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000385 // We don't want to spill/restore the counter register, and so we don't
386 // want to use the counter register if the loop contains calls.
387 for (Loop::block_iterator I = L->block_begin(), IE = L->block_end();
Hal Finkelc4824542013-05-16 19:58:38 +0000388 I != IE; ++I)
389 if (mightUseCTR(TT, *I))
390 return MadeChange;
Hal Finkel99f823f2012-06-08 15:38:21 +0000391
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000392 SmallVector<BasicBlock*, 4> ExitingBlocks;
393 L->getExitingBlocks(ExitingBlocks);
Hal Finkel99f823f2012-06-08 15:38:21 +0000394
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000395 BasicBlock *CountedExitBlock = 0;
396 const SCEV *ExitCount = 0;
397 BranchInst *CountedExitBranch = 0;
398 for (SmallVector<BasicBlock*, 4>::iterator I = ExitingBlocks.begin(),
399 IE = ExitingBlocks.end(); I != IE; ++I) {
400 const SCEV *EC = SE->getExitCount(L, *I);
401 DEBUG(dbgs() << "Exit Count for " << *L << " from block " <<
402 (*I)->getName() << ": " << *EC << "\n");
403 if (isa<SCEVCouldNotCompute>(EC))
404 continue;
405 if (const SCEVConstant *ConstEC = dyn_cast<SCEVConstant>(EC)) {
406 if (ConstEC->getValue()->isZero())
407 continue;
408 } else if (!SE->isLoopInvariant(EC, L))
409 continue;
Hal Finkel99f823f2012-06-08 15:38:21 +0000410
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000411 // We now have a loop-invariant count of loop iterations (which is not the
412 // constant zero) for which we know that this loop will not exit via this
413 // exisiting block.
Hal Finkel2741d2c2012-06-16 20:34:07 +0000414
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000415 // We need to make sure that this block will run on every loop iteration.
416 // For this to be true, we must dominate all blocks with backedges. Such
417 // blocks are in-loop predecessors to the header block.
418 bool NotAlways = false;
419 for (pred_iterator PI = pred_begin(L->getHeader()),
420 PIE = pred_end(L->getHeader()); PI != PIE; ++PI) {
421 if (!L->contains(*PI))
422 continue;
423
424 if (!DT->dominates(*I, *PI)) {
425 NotAlways = true;
426 break;
427 }
Hal Finkel99f823f2012-06-08 15:38:21 +0000428 }
Hal Finkel99f823f2012-06-08 15:38:21 +0000429
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000430 if (NotAlways)
431 continue;
Hal Finkel99f823f2012-06-08 15:38:21 +0000432
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000433 // Make sure this blocks ends with a conditional branch.
434 Instruction *TI = (*I)->getTerminator();
435 if (!TI)
436 continue;
437
438 if (BranchInst *BI = dyn_cast<BranchInst>(TI)) {
439 if (!BI->isConditional())
440 continue;
441
442 CountedExitBranch = BI;
443 } else
444 continue;
445
446 // Note that this block may not be the loop latch block, even if the loop
447 // has a latch block.
448 CountedExitBlock = *I;
449 ExitCount = EC;
450 break;
Hal Finkel99f823f2012-06-08 15:38:21 +0000451 }
452
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000453 if (!CountedExitBlock)
454 return MadeChange;
Hal Finkel99f823f2012-06-08 15:38:21 +0000455
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000456 BasicBlock *Preheader = L->getLoopPreheader();
Hal Finkelc4824542013-05-16 19:58:38 +0000457
458 // If we don't have a preheader, then insert one. If we already have a
459 // preheader, then we can use it (except if the preheader contains a use of
460 // the CTR register because some such uses might be reordered by the
461 // selection DAG after the mtctr instruction).
462 if (!Preheader || mightUseCTR(TT, Preheader))
Hal Finkel08f92c92013-05-20 16:47:10 +0000463 Preheader = InsertPreheaderForLoop(L, this);
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000464 if (!Preheader)
465 return MadeChange;
Hal Finkel99f823f2012-06-08 15:38:21 +0000466
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000467 DEBUG(dbgs() << "Preheader for exit count: " << Preheader->getName() << "\n");
Hal Finkel99f823f2012-06-08 15:38:21 +0000468
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000469 // Insert the count into the preheader and replace the condition used by the
470 // selected branch.
471 MadeChange = true;
Hal Finkel99f823f2012-06-08 15:38:21 +0000472
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000473 SCEVExpander SCEVE(*SE, "loopcnt");
474 LLVMContext &C = SE->getContext();
475 Type *CountType = TT.isArch64Bit() ? Type::getInt64Ty(C) :
476 Type::getInt32Ty(C);
477 if (!ExitCount->getType()->isPointerTy() &&
478 ExitCount->getType() != CountType)
479 ExitCount = SE->getZeroExtendExpr(ExitCount, CountType);
480 ExitCount = SE->getAddExpr(ExitCount,
481 SE->getConstant(CountType, 1));
482 Value *ECValue = SCEVE.expandCodeFor(ExitCount, CountType,
483 Preheader->getTerminator());
Hal Finkel99f823f2012-06-08 15:38:21 +0000484
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000485 IRBuilder<> CountBuilder(Preheader->getTerminator());
486 Module *M = Preheader->getParent()->getParent();
487 Value *MTCTRFunc = Intrinsic::getDeclaration(M, Intrinsic::ppc_mtctr,
488 CountType);
489 CountBuilder.CreateCall(MTCTRFunc, ECValue);
Hal Finkel99f823f2012-06-08 15:38:21 +0000490
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000491 IRBuilder<> CondBuilder(CountedExitBranch);
492 Value *DecFunc =
493 Intrinsic::getDeclaration(M, Intrinsic::ppc_is_decremented_ctr_nonzero);
494 Value *NewCond = CondBuilder.CreateCall(DecFunc);
495 Value *OldCond = CountedExitBranch->getCondition();
496 CountedExitBranch->setCondition(NewCond);
497
498 // The false branch must exit the loop.
499 if (!L->contains(CountedExitBranch->getSuccessor(0)))
500 CountedExitBranch->swapSuccessors();
501
502 // The old condition may be dead now, and may have even created a dead PHI
503 // (the original induction variable).
504 RecursivelyDeleteTriviallyDeadInstructions(OldCond);
505 DeleteDeadPHIs(CountedExitBlock);
Hal Finkel99f823f2012-06-08 15:38:21 +0000506
507 ++NumCTRLoops;
Hal Finkelb1fd3cd2013-05-15 21:37:41 +0000508 return MadeChange;
509}
510
Hal Finkele50c8c12013-05-20 16:08:17 +0000511#ifndef NDEBUG
512static bool clobbersCTR(const MachineInstr *MI) {
513 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
514 const MachineOperand &MO = MI->getOperand(i);
515 if (MO.isReg()) {
516 if (MO.isDef() && (MO.getReg() == PPC::CTR || MO.getReg() == PPC::CTR8))
517 return true;
518 } else if (MO.isRegMask()) {
519 if (MO.clobbersPhysReg(PPC::CTR) || MO.clobbersPhysReg(PPC::CTR8))
520 return true;
521 }
522 }
523
524 return false;
525}
526
527static bool verifyCTRBranch(MachineBasicBlock *MBB,
528 MachineBasicBlock::iterator I) {
529 MachineBasicBlock::iterator BI = I;
530 SmallSet<MachineBasicBlock *, 16> Visited;
531 SmallVector<MachineBasicBlock *, 8> Preds;
532 bool CheckPreds;
533
534 if (I == MBB->begin()) {
535 Visited.insert(MBB);
536 goto queue_preds;
537 } else
538 --I;
539
540check_block:
541 Visited.insert(MBB);
542 if (I == MBB->end())
543 goto queue_preds;
544
545 CheckPreds = true;
546 for (MachineBasicBlock::iterator IE = MBB->begin();; --I) {
547 unsigned Opc = I->getOpcode();
Hal Finkel85c08b02013-05-20 16:08:37 +0000548 if (Opc == PPC::MTCTRloop || Opc == PPC::MTCTR8loop) {
Hal Finkele50c8c12013-05-20 16:08:17 +0000549 CheckPreds = false;
550 break;
551 }
552
553 if (I != BI && clobbersCTR(I)) {
554 DEBUG(dbgs() << "BB#" << MBB->getNumber() << " (" <<
555 MBB->getFullName() << ") instruction " << *I <<
556 " clobbers CTR, invalidating " << "BB#" <<
557 BI->getParent()->getNumber() << " (" <<
558 BI->getParent()->getFullName() << ") instruction " <<
559 *BI << "\n");
560 return false;
561 }
562
563 if (I == IE)
564 break;
565 }
566
567 if (!CheckPreds && Preds.empty())
568 return true;
569
570 if (CheckPreds) {
571queue_preds:
572 if (MachineFunction::iterator(MBB) == MBB->getParent()->begin()) {
573 DEBUG(dbgs() << "Unable to find a MTCTR instruction for BB#" <<
574 BI->getParent()->getNumber() << " (" <<
575 BI->getParent()->getFullName() << ") instruction " <<
576 *BI << "\n");
577 return false;
578 }
579
580 for (MachineBasicBlock::pred_iterator PI = MBB->pred_begin(),
581 PIE = MBB->pred_end(); PI != PIE; ++PI)
582 Preds.push_back(*PI);
583 }
584
585 do {
586 MBB = Preds.pop_back_val();
587 if (!Visited.count(MBB)) {
588 I = MBB->getLastNonDebugInstr();
589 goto check_block;
590 }
591 } while (!Preds.empty());
592
593 return true;
594}
595
596bool PPCCTRLoopsVerify::runOnMachineFunction(MachineFunction &MF) {
597 MDT = &getAnalysis<MachineDominatorTree>();
598
599 // Verify that all bdnz/bdz instructions are dominated by a loop mtctr before
600 // any other instructions that might clobber the ctr register.
601 for (MachineFunction::iterator I = MF.begin(), IE = MF.end();
602 I != IE; ++I) {
603 MachineBasicBlock *MBB = I;
604 if (!MDT->isReachableFromEntry(MBB))
605 continue;
606
607 for (MachineBasicBlock::iterator MII = MBB->getFirstTerminator(),
608 MIIE = MBB->end(); MII != MIIE; ++MII) {
609 unsigned Opc = MII->getOpcode();
610 if (Opc == PPC::BDNZ8 || Opc == PPC::BDNZ ||
611 Opc == PPC::BDZ8 || Opc == PPC::BDZ)
612 if (!verifyCTRBranch(MBB, MII))
613 llvm_unreachable("Invalid PPC CTR loop!");
614 }
615 }
616
617 return false;
618}
619#endif // NDEBUG
620