1 //===- PassManagerBuilder.cpp - Build Standard Pass -----------------------===// 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 file defines the PassManagerBuilder class, which is used to set up a 11 // "standard" optimization sequence suitable for languages like C and C++. 12 // 13 //===----------------------------------------------------------------------===// 14 15 16 #include "llvm/Transforms/IPO/PassManagerBuilder.h" 17 #include "llvm-c/Transforms/PassManagerBuilder.h" 18 #include "llvm/ADT/SmallVector.h" 19 #include "llvm/Analysis/Passes.h" 20 #include "llvm/IR/DataLayout.h" 21 #include "llvm/IR/Verifier.h" 22 #include "llvm/IR/LegacyPassManager.h" 23 #include "llvm/Support/CommandLine.h" 24 #include "llvm/Support/ManagedStatic.h" 25 #include "llvm/Analysis/TargetLibraryInfo.h" 26 #include "llvm/Target/TargetMachine.h" 27 #include "llvm/Transforms/IPO.h" 28 #include "llvm/Transforms/Scalar.h" 29 #include "llvm/Transforms/Vectorize.h" 30 31 using namespace llvm; 32 33 static cl::opt<bool> 34 RunLoopVectorization("vectorize-loops", cl::Hidden, 35 cl::desc("Run the Loop vectorization passes")); 36 37 static cl::opt<bool> 38 RunSLPVectorization("vectorize-slp", cl::Hidden, 39 cl::desc("Run the SLP vectorization passes")); 40 41 static cl::opt<bool> 42 RunBBVectorization("vectorize-slp-aggressive", cl::Hidden, 43 cl::desc("Run the BB vectorization passes")); 44 45 static cl::opt<bool> 46 UseGVNAfterVectorization("use-gvn-after-vectorization", 47 cl::init(false), cl::Hidden, 48 cl::desc("Run GVN instead of Early CSE after vectorization passes")); 49 50 static cl::opt<bool> ExtraVectorizerPasses( 51 "extra-vectorizer-passes", cl::init(false), cl::Hidden, 52 cl::desc("Run cleanup optimization passes after vectorization.")); 53 54 static cl::opt<bool> UseNewSROA("use-new-sroa", 55 cl::init(true), cl::Hidden, 56 cl::desc("Enable the new, experimental SROA pass")); 57 58 static cl::opt<bool> 59 RunLoopRerolling("reroll-loops", cl::Hidden, 60 cl::desc("Run the loop rerolling pass")); 61 62 static cl::opt<bool> 63 RunFloat2Int("float-to-int", cl::Hidden, cl::init(true), 64 cl::desc("Run the float2int (float demotion) pass")); 65 66 static cl::opt<bool> RunLoadCombine("combine-loads", cl::init(false), 67 cl::Hidden, 68 cl::desc("Run the load combining pass")); 69 70 static cl::opt<bool> 71 RunSLPAfterLoopVectorization("run-slp-after-loop-vectorization", 72 cl::init(true), cl::Hidden, 73 cl::desc("Run the SLP vectorizer (and BB vectorizer) after the Loop " 74 "vectorizer instead of before")); 75 76 static cl::opt<bool> UseCFLAA("use-cfl-aa", 77 cl::init(false), cl::Hidden, 78 cl::desc("Enable the new, experimental CFL alias analysis")); 79 80 static cl::opt<bool> 81 EnableMLSM("mlsm", cl::init(true), cl::Hidden, 82 cl::desc("Enable motion of merged load and store")); 83 84 static cl::opt<bool> EnableLoopInterchange( 85 "enable-loopinterchange", cl::init(false), cl::Hidden, 86 cl::desc("Enable the new, experimental LoopInterchange Pass")); 87 88 PassManagerBuilder::PassManagerBuilder() { 89 OptLevel = 2; 90 SizeLevel = 0; 91 LibraryInfo = nullptr; 92 Inliner = nullptr; 93 DisableTailCalls = false; 94 DisableUnitAtATime = false; 95 DisableUnrollLoops = false; 96 BBVectorize = RunBBVectorization; 97 SLPVectorize = RunSLPVectorization; 98 LoopVectorize = RunLoopVectorization; 99 RerollLoops = RunLoopRerolling; 100 LoadCombine = RunLoadCombine; 101 DisableGVNLoadPRE = false; 102 VerifyInput = false; 103 VerifyOutput = false; 104 MergeFunctions = false; 105 } 106 107 PassManagerBuilder::~PassManagerBuilder() { 108 delete LibraryInfo; 109 delete Inliner; 110 } 111 112 /// Set of global extensions, automatically added as part of the standard set. 113 static ManagedStatic<SmallVector<std::pair<PassManagerBuilder::ExtensionPointTy, 114 PassManagerBuilder::ExtensionFn>, 8> > GlobalExtensions; 115 116 void PassManagerBuilder::addGlobalExtension( 117 PassManagerBuilder::ExtensionPointTy Ty, 118 PassManagerBuilder::ExtensionFn Fn) { 119 GlobalExtensions->push_back(std::make_pair(Ty, Fn)); 120 } 121 122 void PassManagerBuilder::addExtension(ExtensionPointTy Ty, ExtensionFn Fn) { 123 Extensions.push_back(std::make_pair(Ty, Fn)); 124 } 125 126 void PassManagerBuilder::addExtensionsToPM(ExtensionPointTy ETy, 127 legacy::PassManagerBase &PM) const { 128 for (unsigned i = 0, e = GlobalExtensions->size(); i != e; ++i) 129 if ((*GlobalExtensions)[i].first == ETy) 130 (*GlobalExtensions)[i].second(*this, PM); 131 for (unsigned i = 0, e = Extensions.size(); i != e; ++i) 132 if (Extensions[i].first == ETy) 133 Extensions[i].second(*this, PM); 134 } 135 136 void PassManagerBuilder::addInitialAliasAnalysisPasses( 137 legacy::PassManagerBase &PM) const { 138 // Add TypeBasedAliasAnalysis before BasicAliasAnalysis so that 139 // BasicAliasAnalysis wins if they disagree. This is intended to help 140 // support "obvious" type-punning idioms. 141 if (UseCFLAA) 142 PM.add(createCFLAliasAnalysisPass()); 143 PM.add(createTypeBasedAliasAnalysisPass()); 144 PM.add(createScopedNoAliasAAPass()); 145 PM.add(createBasicAliasAnalysisPass()); 146 } 147 148 void PassManagerBuilder::populateFunctionPassManager( 149 legacy::FunctionPassManager &FPM) { 150 addExtensionsToPM(EP_EarlyAsPossible, FPM); 151 152 // Add LibraryInfo if we have some. 153 if (LibraryInfo) 154 FPM.add(new TargetLibraryInfoWrapperPass(*LibraryInfo)); 155 156 if (OptLevel == 0) return; 157 158 addInitialAliasAnalysisPasses(FPM); 159 160 FPM.add(createCFGSimplificationPass()); 161 if (UseNewSROA) 162 FPM.add(createSROAPass()); 163 else 164 FPM.add(createScalarReplAggregatesPass()); 165 FPM.add(createEarlyCSEPass()); 166 FPM.add(createLowerExpectIntrinsicPass()); 167 } 168 169 void PassManagerBuilder::populateModulePassManager( 170 legacy::PassManagerBase &MPM) { 171 // If all optimizations are disabled, just run the always-inline pass and, 172 // if enabled, the function merging pass. 173 if (OptLevel == 0) { 174 if (Inliner) { 175 MPM.add(Inliner); 176 Inliner = nullptr; 177 } 178 179 // FIXME: The BarrierNoopPass is a HACK! The inliner pass above implicitly 180 // creates a CGSCC pass manager, but we don't want to add extensions into 181 // that pass manager. To prevent this we insert a no-op module pass to reset 182 // the pass manager to get the same behavior as EP_OptimizerLast in non-O0 183 // builds. The function merging pass is 184 if (MergeFunctions) 185 MPM.add(createMergeFunctionsPass()); 186 else if (!GlobalExtensions->empty() || !Extensions.empty()) 187 MPM.add(createBarrierNoopPass()); 188 189 addExtensionsToPM(EP_EnabledOnOptLevel0, MPM); 190 return; 191 } 192 193 // Add LibraryInfo if we have some. 194 if (LibraryInfo) 195 MPM.add(new TargetLibraryInfoWrapperPass(*LibraryInfo)); 196 197 addInitialAliasAnalysisPasses(MPM); 198 199 if (!DisableUnitAtATime) { 200 addExtensionsToPM(EP_ModuleOptimizerEarly, MPM); 201 202 MPM.add(createIPSCCPPass()); // IP SCCP 203 MPM.add(createGlobalOptimizerPass()); // Optimize out global vars 204 205 MPM.add(createDeadArgEliminationPass()); // Dead argument elimination 206 207 MPM.add(createInstructionCombiningPass());// Clean up after IPCP & DAE 208 addExtensionsToPM(EP_Peephole, MPM); 209 MPM.add(createCFGSimplificationPass()); // Clean up after IPCP & DAE 210 } 211 212 // Start of CallGraph SCC passes. 213 if (!DisableUnitAtATime) 214 MPM.add(createPruneEHPass()); // Remove dead EH info 215 if (Inliner) { 216 MPM.add(Inliner); 217 Inliner = nullptr; 218 } 219 if (!DisableUnitAtATime) 220 MPM.add(createFunctionAttrsPass()); // Set readonly/readnone attrs 221 if (OptLevel > 2) 222 MPM.add(createArgumentPromotionPass()); // Scalarize uninlined fn args 223 224 // Start of function pass. 225 // Break up aggregate allocas, using SSAUpdater. 226 if (UseNewSROA) 227 MPM.add(createSROAPass(/*RequiresDomTree*/ false)); 228 else 229 MPM.add(createScalarReplAggregatesPass(-1, false)); 230 MPM.add(createEarlyCSEPass()); // Catch trivial redundancies 231 MPM.add(createJumpThreadingPass()); // Thread jumps. 232 MPM.add(createCorrelatedValuePropagationPass()); // Propagate conditionals 233 MPM.add(createCFGSimplificationPass()); // Merge & remove BBs 234 MPM.add(createInstructionCombiningPass()); // Combine silly seq's 235 addExtensionsToPM(EP_Peephole, MPM); 236 237 if (!DisableTailCalls) 238 MPM.add(createTailCallEliminationPass()); // Eliminate tail calls 239 MPM.add(createCFGSimplificationPass()); // Merge & remove BBs 240 MPM.add(createReassociatePass()); // Reassociate expressions 241 // Rotate Loop - disable header duplication at -Oz 242 MPM.add(createLoopRotatePass(SizeLevel == 2 ? 0 : -1)); 243 MPM.add(createLICMPass()); // Hoist loop invariants 244 MPM.add(createLoopUnswitchPass(SizeLevel || OptLevel < 3)); 245 MPM.add(createInstructionCombiningPass()); 246 MPM.add(createIndVarSimplifyPass()); // Canonicalize indvars 247 MPM.add(createLoopIdiomPass()); // Recognize idioms like memset. 248 MPM.add(createLoopDeletionPass()); // Delete dead loops 249 if (EnableLoopInterchange) 250 MPM.add(createLoopInterchangePass()); // Interchange loops 251 252 if (!DisableUnrollLoops) 253 MPM.add(createSimpleLoopUnrollPass()); // Unroll small loops 254 addExtensionsToPM(EP_LoopOptimizerEnd, MPM); 255 256 if (OptLevel > 1) { 257 if (EnableMLSM) 258 MPM.add(createMergedLoadStoreMotionPass()); // Merge ld/st in diamonds 259 MPM.add(createGVNPass(DisableGVNLoadPRE)); // Remove redundancies 260 } 261 MPM.add(createMemCpyOptPass()); // Remove memcpy / form memset 262 MPM.add(createSCCPPass()); // Constant prop with SCCP 263 264 // Delete dead bit computations (instcombine runs after to fold away the dead 265 // computations, and then ADCE will run later to exploit any new DCE 266 // opportunities that creates). 267 MPM.add(createBitTrackingDCEPass()); // Delete dead bit computations 268 269 // Run instcombine after redundancy elimination to exploit opportunities 270 // opened up by them. 271 MPM.add(createInstructionCombiningPass()); 272 addExtensionsToPM(EP_Peephole, MPM); 273 MPM.add(createJumpThreadingPass()); // Thread jumps 274 MPM.add(createCorrelatedValuePropagationPass()); 275 MPM.add(createDeadStoreEliminationPass()); // Delete dead stores 276 MPM.add(createLICMPass()); 277 278 addExtensionsToPM(EP_ScalarOptimizerLate, MPM); 279 280 if (RerollLoops) 281 MPM.add(createLoopRerollPass()); 282 if (!RunSLPAfterLoopVectorization) { 283 if (SLPVectorize) 284 MPM.add(createSLPVectorizerPass()); // Vectorize parallel scalar chains. 285 286 if (BBVectorize) { 287 MPM.add(createBBVectorizePass()); 288 MPM.add(createInstructionCombiningPass()); 289 addExtensionsToPM(EP_Peephole, MPM); 290 if (OptLevel > 1 && UseGVNAfterVectorization) 291 MPM.add(createGVNPass(DisableGVNLoadPRE)); // Remove redundancies 292 else 293 MPM.add(createEarlyCSEPass()); // Catch trivial redundancies 294 295 // BBVectorize may have significantly shortened a loop body; unroll again. 296 if (!DisableUnrollLoops) 297 MPM.add(createLoopUnrollPass()); 298 } 299 } 300 301 if (LoadCombine) 302 MPM.add(createLoadCombinePass()); 303 304 MPM.add(createAggressiveDCEPass()); // Delete dead instructions 305 MPM.add(createCFGSimplificationPass()); // Merge & remove BBs 306 MPM.add(createInstructionCombiningPass()); // Clean up after everything. 307 addExtensionsToPM(EP_Peephole, MPM); 308 309 // FIXME: This is a HACK! The inliner pass above implicitly creates a CGSCC 310 // pass manager that we are specifically trying to avoid. To prevent this 311 // we must insert a no-op module pass to reset the pass manager. 312 MPM.add(createBarrierNoopPass()); 313 314 if (RunFloat2Int) 315 MPM.add(createFloat2IntPass()); 316 317 // Re-rotate loops in all our loop nests. These may have fallout out of 318 // rotated form due to GVN or other transformations, and the vectorizer relies 319 // on the rotated form. 320 MPM.add(createLoopRotatePass()); 321 322 MPM.add(createLoopVectorizePass(DisableUnrollLoops, LoopVectorize)); 323 // FIXME: Because of #pragma vectorize enable, the passes below are always 324 // inserted in the pipeline, even when the vectorizer doesn't run (ex. when 325 // on -O1 and no #pragma is found). Would be good to have these two passes 326 // as function calls, so that we can only pass them when the vectorizer 327 // changed the code. 328 MPM.add(createInstructionCombiningPass()); 329 if (OptLevel > 1 && ExtraVectorizerPasses) { 330 // At higher optimization levels, try to clean up any runtime overlap and 331 // alignment checks inserted by the vectorizer. We want to track correllated 332 // runtime checks for two inner loops in the same outer loop, fold any 333 // common computations, hoist loop-invariant aspects out of any outer loop, 334 // and unswitch the runtime checks if possible. Once hoisted, we may have 335 // dead (or speculatable) control flows or more combining opportunities. 336 MPM.add(createEarlyCSEPass()); 337 MPM.add(createCorrelatedValuePropagationPass()); 338 MPM.add(createInstructionCombiningPass()); 339 MPM.add(createLICMPass()); 340 MPM.add(createLoopUnswitchPass(SizeLevel || OptLevel < 3)); 341 MPM.add(createCFGSimplificationPass()); 342 MPM.add(createInstructionCombiningPass()); 343 } 344 345 if (RunSLPAfterLoopVectorization) { 346 if (SLPVectorize) { 347 MPM.add(createSLPVectorizerPass()); // Vectorize parallel scalar chains. 348 if (OptLevel > 1 && ExtraVectorizerPasses) { 349 MPM.add(createEarlyCSEPass()); 350 } 351 } 352 353 if (BBVectorize) { 354 MPM.add(createBBVectorizePass()); 355 MPM.add(createInstructionCombiningPass()); 356 addExtensionsToPM(EP_Peephole, MPM); 357 if (OptLevel > 1 && UseGVNAfterVectorization) 358 MPM.add(createGVNPass(DisableGVNLoadPRE)); // Remove redundancies 359 else 360 MPM.add(createEarlyCSEPass()); // Catch trivial redundancies 361 362 // BBVectorize may have significantly shortened a loop body; unroll again. 363 if (!DisableUnrollLoops) 364 MPM.add(createLoopUnrollPass()); 365 } 366 } 367 368 addExtensionsToPM(EP_Peephole, MPM); 369 MPM.add(createCFGSimplificationPass()); 370 MPM.add(createInstructionCombiningPass()); 371 372 if (!DisableUnrollLoops) { 373 MPM.add(createLoopUnrollPass()); // Unroll small loops 374 375 // This is a barrier pass to avoid combine LICM pass and loop unroll pass 376 // within same loop pass manager. 377 MPM.add(createInstructionSimplifierPass()); 378 379 // Runtime unrolling will introduce runtime check in loop prologue. If the 380 // unrolled loop is a inner loop, then the prologue will be inside the 381 // outer loop. LICM pass can help to promote the runtime check out if the 382 // checked value is loop invariant. 383 MPM.add(createLICMPass()); 384 } 385 386 // After vectorization and unrolling, assume intrinsics may tell us more 387 // about pointer alignments. 388 MPM.add(createAlignmentFromAssumptionsPass()); 389 390 if (!DisableUnitAtATime) { 391 // FIXME: We shouldn't bother with this anymore. 392 MPM.add(createStripDeadPrototypesPass()); // Get rid of dead prototypes 393 394 // GlobalOpt already deletes dead functions and globals, at -O2 try a 395 // late pass of GlobalDCE. It is capable of deleting dead cycles. 396 if (OptLevel > 1) { 397 MPM.add(createGlobalDCEPass()); // Remove dead fns and globals. 398 MPM.add(createConstantMergePass()); // Merge dup global constants 399 } 400 } 401 402 if (MergeFunctions) 403 MPM.add(createMergeFunctionsPass()); 404 405 addExtensionsToPM(EP_OptimizerLast, MPM); 406 } 407 408 void PassManagerBuilder::addLTOOptimizationPasses(legacy::PassManagerBase &PM) { 409 // Provide AliasAnalysis services for optimizations. 410 addInitialAliasAnalysisPasses(PM); 411 412 // Propagate constants at call sites into the functions they call. This 413 // opens opportunities for globalopt (and inlining) by substituting function 414 // pointers passed as arguments to direct uses of functions. 415 PM.add(createIPSCCPPass()); 416 417 // Now that we internalized some globals, see if we can hack on them! 418 PM.add(createGlobalOptimizerPass()); 419 420 // Linking modules together can lead to duplicated global constants, only 421 // keep one copy of each constant. 422 PM.add(createConstantMergePass()); 423 424 // Remove unused arguments from functions. 425 PM.add(createDeadArgEliminationPass()); 426 427 // Reduce the code after globalopt and ipsccp. Both can open up significant 428 // simplification opportunities, and both can propagate functions through 429 // function pointers. When this happens, we often have to resolve varargs 430 // calls, etc, so let instcombine do this. 431 PM.add(createInstructionCombiningPass()); 432 addExtensionsToPM(EP_Peephole, PM); 433 434 // Inline small functions 435 bool RunInliner = Inliner; 436 if (RunInliner) { 437 PM.add(Inliner); 438 Inliner = nullptr; 439 } 440 441 PM.add(createPruneEHPass()); // Remove dead EH info. 442 443 // Optimize globals again if we ran the inliner. 444 if (RunInliner) 445 PM.add(createGlobalOptimizerPass()); 446 PM.add(createGlobalDCEPass()); // Remove dead functions. 447 448 // If we didn't decide to inline a function, check to see if we can 449 // transform it to pass arguments by value instead of by reference. 450 PM.add(createArgumentPromotionPass()); 451 452 // The IPO passes may leave cruft around. Clean up after them. 453 PM.add(createInstructionCombiningPass()); 454 addExtensionsToPM(EP_Peephole, PM); 455 PM.add(createJumpThreadingPass()); 456 457 // Break up allocas 458 if (UseNewSROA) 459 PM.add(createSROAPass()); 460 else 461 PM.add(createScalarReplAggregatesPass()); 462 463 // Run a few AA driven optimizations here and now, to cleanup the code. 464 PM.add(createFunctionAttrsPass()); // Add nocapture. 465 PM.add(createGlobalsModRefPass()); // IP alias analysis. 466 467 PM.add(createLICMPass()); // Hoist loop invariants. 468 if (EnableMLSM) 469 PM.add(createMergedLoadStoreMotionPass()); // Merge ld/st in diamonds. 470 PM.add(createGVNPass(DisableGVNLoadPRE)); // Remove redundancies. 471 PM.add(createMemCpyOptPass()); // Remove dead memcpys. 472 473 // Nuke dead stores. 474 PM.add(createDeadStoreEliminationPass()); 475 476 // More loops are countable; try to optimize them. 477 PM.add(createIndVarSimplifyPass()); 478 PM.add(createLoopDeletionPass()); 479 if (EnableLoopInterchange) 480 PM.add(createLoopInterchangePass()); 481 482 PM.add(createLoopVectorizePass(true, LoopVectorize)); 483 484 // More scalar chains could be vectorized due to more alias information 485 if (RunSLPAfterLoopVectorization) 486 if (SLPVectorize) 487 PM.add(createSLPVectorizerPass()); // Vectorize parallel scalar chains. 488 489 // After vectorization, assume intrinsics may tell us more about pointer 490 // alignments. 491 PM.add(createAlignmentFromAssumptionsPass()); 492 493 if (LoadCombine) 494 PM.add(createLoadCombinePass()); 495 496 // Cleanup and simplify the code after the scalar optimizations. 497 PM.add(createInstructionCombiningPass()); 498 addExtensionsToPM(EP_Peephole, PM); 499 500 PM.add(createJumpThreadingPass()); 501 } 502 503 void PassManagerBuilder::addLateLTOOptimizationPasses( 504 legacy::PassManagerBase &PM) { 505 // Delete basic blocks, which optimization passes may have killed. 506 PM.add(createCFGSimplificationPass()); 507 508 // Now that we have optimized the program, discard unreachable functions. 509 PM.add(createGlobalDCEPass()); 510 511 // FIXME: this is profitable (for compiler time) to do at -O0 too, but 512 // currently it damages debug info. 513 if (MergeFunctions) 514 PM.add(createMergeFunctionsPass()); 515 } 516 517 void PassManagerBuilder::populateLTOPassManager(legacy::PassManagerBase &PM) { 518 if (LibraryInfo) 519 PM.add(new TargetLibraryInfoWrapperPass(*LibraryInfo)); 520 521 if (VerifyInput) 522 PM.add(createVerifierPass()); 523 524 if (OptLevel > 1) 525 addLTOOptimizationPasses(PM); 526 527 // Lower bit sets to globals. This pass supports Clang's control flow 528 // integrity mechanisms (-fsanitize=cfi*) and needs to run at link time if CFI 529 // is enabled. The pass does nothing if CFI is disabled. 530 PM.add(createLowerBitSetsPass()); 531 532 if (OptLevel != 0) 533 addLateLTOOptimizationPasses(PM); 534 535 if (VerifyOutput) 536 PM.add(createVerifierPass()); 537 } 538 539 inline PassManagerBuilder *unwrap(LLVMPassManagerBuilderRef P) { 540 return reinterpret_cast<PassManagerBuilder*>(P); 541 } 542 543 inline LLVMPassManagerBuilderRef wrap(PassManagerBuilder *P) { 544 return reinterpret_cast<LLVMPassManagerBuilderRef>(P); 545 } 546 547 LLVMPassManagerBuilderRef LLVMPassManagerBuilderCreate() { 548 PassManagerBuilder *PMB = new PassManagerBuilder(); 549 return wrap(PMB); 550 } 551 552 void LLVMPassManagerBuilderDispose(LLVMPassManagerBuilderRef PMB) { 553 PassManagerBuilder *Builder = unwrap(PMB); 554 delete Builder; 555 } 556 557 void 558 LLVMPassManagerBuilderSetOptLevel(LLVMPassManagerBuilderRef PMB, 559 unsigned OptLevel) { 560 PassManagerBuilder *Builder = unwrap(PMB); 561 Builder->OptLevel = OptLevel; 562 } 563 564 void 565 LLVMPassManagerBuilderSetSizeLevel(LLVMPassManagerBuilderRef PMB, 566 unsigned SizeLevel) { 567 PassManagerBuilder *Builder = unwrap(PMB); 568 Builder->SizeLevel = SizeLevel; 569 } 570 571 void 572 LLVMPassManagerBuilderSetDisableUnitAtATime(LLVMPassManagerBuilderRef PMB, 573 LLVMBool Value) { 574 PassManagerBuilder *Builder = unwrap(PMB); 575 Builder->DisableUnitAtATime = Value; 576 } 577 578 void 579 LLVMPassManagerBuilderSetDisableUnrollLoops(LLVMPassManagerBuilderRef PMB, 580 LLVMBool Value) { 581 PassManagerBuilder *Builder = unwrap(PMB); 582 Builder->DisableUnrollLoops = Value; 583 } 584 585 void 586 LLVMPassManagerBuilderSetDisableSimplifyLibCalls(LLVMPassManagerBuilderRef PMB, 587 LLVMBool Value) { 588 // NOTE: The simplify-libcalls pass has been removed. 589 } 590 591 void 592 LLVMPassManagerBuilderUseInlinerWithThreshold(LLVMPassManagerBuilderRef PMB, 593 unsigned Threshold) { 594 PassManagerBuilder *Builder = unwrap(PMB); 595 Builder->Inliner = createFunctionInliningPass(Threshold); 596 } 597 598 void 599 LLVMPassManagerBuilderPopulateFunctionPassManager(LLVMPassManagerBuilderRef PMB, 600 LLVMPassManagerRef PM) { 601 PassManagerBuilder *Builder = unwrap(PMB); 602 legacy::FunctionPassManager *FPM = unwrap<legacy::FunctionPassManager>(PM); 603 Builder->populateFunctionPassManager(*FPM); 604 } 605 606 void 607 LLVMPassManagerBuilderPopulateModulePassManager(LLVMPassManagerBuilderRef PMB, 608 LLVMPassManagerRef PM) { 609 PassManagerBuilder *Builder = unwrap(PMB); 610 legacy::PassManagerBase *MPM = unwrap(PM); 611 Builder->populateModulePassManager(*MPM); 612 } 613 614 void LLVMPassManagerBuilderPopulateLTOPassManager(LLVMPassManagerBuilderRef PMB, 615 LLVMPassManagerRef PM, 616 LLVMBool Internalize, 617 LLVMBool RunInliner) { 618 PassManagerBuilder *Builder = unwrap(PMB); 619 legacy::PassManagerBase *LPM = unwrap(PM); 620 621 // A small backwards compatibility hack. populateLTOPassManager used to take 622 // an RunInliner option. 623 if (RunInliner && !Builder->Inliner) 624 Builder->Inliner = createFunctionInliningPass(); 625 626 Builder->populateLTOPassManager(*LPM); 627 } 628