//===-- Passes.h - Target independent code generation passes ----*- C++ -*-===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // // This file defines interfaces to access the target independent code generation // passes provided by the LLVM backend. // //===----------------------------------------------------------------------===// #ifndef LLVM_CODEGEN_PASSES_H #define LLVM_CODEGEN_PASSES_H #include "llvm/CodeGen/RegAllocCommon.h" #include "llvm/Support/CodeGen.h" #include "llvm/Support/Compiler.h" #include "llvm/Support/Discriminator.h" #include #include namespace llvm { class FunctionPass; class MachineFunction; class MachineFunctionPass; class ModulePass; class Pass; class TargetMachine; class raw_ostream; enum class RunOutliner; template class IntrusiveRefCntPtr; namespace vfs { class FileSystem; } // namespace vfs } // namespace llvm // List of target independent CodeGen pass IDs. namespace llvm { /// AtomicExpandPass - At IR level this pass replace atomic instructions with /// __atomic_* library calls, or target specific instruction which implement the /// same semantics in a way which better fits the target backend. LLVM_ABI FunctionPass *createAtomicExpandLegacyPass(); /// createUnreachableBlockEliminationPass - The LLVM code generator does not /// work well with unreachable basic blocks (what live ranges make sense for a /// block that cannot be reached?). As such, a code generator should either /// not instruction select unreachable blocks, or run this pass as its /// last LLVM modifying pass to clean up blocks that are not reachable from /// the entry block. LLVM_ABI FunctionPass *createUnreachableBlockEliminationPass(); /// createGCEmptyBasicblocksPass - Empty basic blocks (basic blocks without /// real code) appear as the result of optimization passes removing /// instructions. These blocks confuscate profile analysis (e.g., basic block /// sections) since they will share the address of their fallthrough blocks. /// This pass garbage-collects such basic blocks. LLVM_ABI MachineFunctionPass *createGCEmptyBasicBlocksLegacyPass(); /// createBasicBlockSections Pass - This pass assigns sections to machine /// basic blocks and is enabled with -fbasic-block-sections. LLVM_ABI MachineFunctionPass *createBasicBlockSectionsPass(); LLVM_ABI MachineFunctionPass *createBasicBlockPathCloningPass(); /// createBasicBlockMatchingAndInferencePass - This pass enables matching /// and inference when using propeller. LLVM_ABI MachineFunctionPass *createBasicBlockMatchingAndInferencePass(); LLVM_ABI MachineFunctionPass *createInsertCodePrefetchPass(); /// createMachineBlockHashInfoPass - This pass computes basic block hashes. LLVM_ABI MachineFunctionPass *createMachineBlockHashInfoPass(); /// createMachineFunctionSplitterPass - This pass splits machine functions /// using profile information. LLVM_ABI MachineFunctionPass *createMachineFunctionSplitterPass(); /// createStaticDataSplitterPass - This is a machine-function pass that /// categorizes static data hotness using profile information. LLVM_ABI MachineFunctionPass *createStaticDataSplitterPass(); /// createStaticDataAnnotatorPASS - This is a module pass that reads from /// StaticDataProfileInfoWrapperPass and annotates the section prefix of /// global variables. LLVM_ABI ModulePass *createStaticDataAnnotatorPass(); /// MachineFunctionPrinter pass - This pass prints out the machine function to /// the given stream as a debugging tool. LLVM_ABI MachineFunctionPass * createMachineFunctionPrinterPass(raw_ostream &OS, const std::string &Banner = ""); /// MIR2VecVocabPrinter pass - This pass prints out the MIR2Vec vocabulary /// contents to the given stream as a debugging tool. LLVM_ABI MachineFunctionPass * createMIR2VecVocabPrinterLegacyPass(raw_ostream &OS); /// MIR2VecPrinter pass - This pass prints out the MIR2Vec embeddings for /// machine functions, basic blocks and instructions. LLVM_ABI MachineFunctionPass *createMIR2VecPrinterLegacyPass(raw_ostream &OS); /// StackFramePrinter pass - This pass prints out the machine function's /// stack frame to the given stream as a debugging tool. LLVM_ABI MachineFunctionPass *createStackFrameLayoutAnalysisPass(); /// MIRPrinting pass - this pass prints out the LLVM IR into the given stream /// using the MIR serialization format. LLVM_ABI MachineFunctionPass *createPrintMIRPass(raw_ostream &OS); /// This pass resets a MachineFunction when it has the FailedISel property /// as if it was just created. /// If EmitFallbackDiag is true, the pass will emit a /// DiagnosticInfoISelFallback for every MachineFunction it resets. /// If AbortOnFailedISel is true, abort compilation instead of resetting. LLVM_ABI MachineFunctionPass * createResetMachineFunctionPass(bool EmitFallbackDiag, bool AbortOnFailedISel); /// createCodeGenPrepareLegacyPass - Transform the code to expose more pattern /// matching during instruction selection. LLVM_ABI FunctionPass *createCodeGenPrepareLegacyPass(); /// This pass implements generation of target-specific intrinsics to support /// handling of complex number arithmetic LLVM_ABI FunctionPass *createComplexDeinterleavingPass(const TargetMachine *TM); /// AtomicExpandID -- Lowers atomic operations in terms of either cmpxchg /// load-linked/store-conditional loops. LLVM_ABI extern char &AtomicExpandID; /// MachineLoopInfo - This pass is a loop analysis pass. LLVM_ABI extern char &MachineLoopInfoID; /// MachineDominators - This pass is a machine dominators analysis pass. LLVM_ABI extern char &MachineDominatorsID; /// MachineDominanaceFrontier - This pass is a machine dominators analysis. LLVM_ABI extern char &MachineDominanceFrontierID; /// MachineRegionInfo - This pass computes SESE regions for machine functions. LLVM_ABI extern char &MachineRegionInfoPassID; /// EdgeBundles analysis - Bundle machine CFG edges. LLVM_ABI extern char &EdgeBundlesWrapperLegacyID; /// LiveVariables pass - This pass computes the set of blocks in which each /// variable is life and sets machine operand kill flags. LLVM_ABI extern char &LiveVariablesID; /// PHIElimination - This pass eliminates machine instruction PHI nodes /// by inserting copy instructions. This destroys SSA information, but is the /// desired input for some register allocators. This pass is "required" by /// these register allocator like this: AU.addRequiredID(PHIEliminationID); LLVM_ABI extern char &PHIEliminationID; /// LiveIntervals - This analysis keeps track of the live ranges of virtual /// and physical registers. LLVM_ABI extern char &LiveIntervalsID; /// LiveStacks pass. An analysis keeping track of the liveness of stack slots. LLVM_ABI extern char &LiveStacksID; /// TwoAddressInstruction - This pass reduces two-address instructions to /// use two operands. This destroys SSA information but it is desired by /// register allocators. LLVM_ABI extern char &TwoAddressInstructionPassID; /// ProcessImpicitDefs pass - This pass removes IMPLICIT_DEFs. LLVM_ABI extern char &ProcessImplicitDefsID; /// RegisterCoalescer - This pass merges live ranges to eliminate copies. LLVM_ABI extern char &RegisterCoalescerID; /// MachineScheduler - This pass schedules machine instructions. LLVM_ABI extern char &MachineSchedulerID; /// PostMachineScheduler - This pass schedules machine instructions postRA. LLVM_ABI extern char &PostMachineSchedulerID; /// SpillPlacement analysis. Suggest optimal placement of spill code between /// basic blocks. LLVM_ABI extern char &SpillPlacementID; /// ShrinkWrap pass. Look for the best place to insert save and restore // instruction and update the MachineFunctionInfo with that information. LLVM_ABI extern char &ShrinkWrapID; /// LiveRangeShrink pass. Move instruction close to its definition to shrink /// the definition's live range. LLVM_ABI extern char &LiveRangeShrinkID; /// Greedy register allocator. LLVM_ABI extern char &RAGreedyLegacyID; /// Basic register allocator. LLVM_ABI extern char &RABasicID; /// VirtRegRewriter pass. Rewrite virtual registers to physical registers as /// assigned in VirtRegMap. LLVM_ABI extern char &VirtRegRewriterID; LLVM_ABI FunctionPass *createVirtRegRewriter(bool ClearVirtRegs = true); /// UnreachableMachineBlockElimination - This pass removes unreachable /// machine basic blocks. LLVM_ABI extern char &UnreachableMachineBlockElimID; /// DeadMachineInstructionElim - This pass removes dead machine instructions. LLVM_ABI extern char &DeadMachineInstructionElimID; /// This pass adds dead/undef flags after analyzing subregister lanes. LLVM_ABI extern char &DetectDeadLanesID; /// This pass perform post-ra machine sink for COPY instructions. LLVM_ABI extern char &PostRAMachineSinkingID; /// This pass adds flow sensitive discriminators. LLVM_ABI extern char &MIRAddFSDiscriminatorsID; /// This pass reads flow sensitive profile. LLVM_ABI extern char &MIRProfileLoaderPassID; // This pass gives undef values a Pseudo Instruction definition for // Instructions to ensure early-clobber is followed when using the greedy // register allocator. LLVM_ABI extern char &InitUndefID; /// FastRegisterAllocation Pass - This pass register allocates as fast as /// possible. It is best suited for debug code where live ranges are short. /// LLVM_ABI FunctionPass *createFastRegisterAllocator(); LLVM_ABI FunctionPass *createFastRegisterAllocator(RegAllocFilterFunc F, bool ClearVirtRegs); /// BasicRegisterAllocation Pass - This pass implements a degenerate global /// register allocator using the basic regalloc framework. /// LLVM_ABI FunctionPass *createBasicRegisterAllocator(); LLVM_ABI FunctionPass *createBasicRegisterAllocator(RegAllocFilterFunc F); /// Greedy register allocation pass - This pass implements a global register /// allocator for optimized builds. /// LLVM_ABI FunctionPass *createGreedyRegisterAllocator(); LLVM_ABI FunctionPass *createGreedyRegisterAllocator(RegAllocFilterFunc F); /// PBQPRegisterAllocation Pass - This pass implements the Partitioned Boolean /// Quadratic Prograaming (PBQP) based register allocator. /// LLVM_ABI FunctionPass *createDefaultPBQPRegisterAllocator(); /// PrologEpilogCodeInserter - This pass inserts prolog and epilog code, /// and eliminates abstract frame references. LLVM_ABI extern char &PrologEpilogCodeInserterID; LLVM_ABI MachineFunctionPass *createPrologEpilogInserterPass(); /// ExpandPostRAPseudos - This pass expands pseudo instructions after /// register allocation. LLVM_ABI extern char &ExpandPostRAPseudosID; /// PostRAHazardRecognizer - This pass runs the post-ra hazard /// recognizer. LLVM_ABI extern char &PostRAHazardRecognizerID; /// PostRAScheduler - This pass performs post register allocation /// scheduling. LLVM_ABI extern char &PostRASchedulerID; /// BranchFolding - This pass performs machine code CFG based /// optimizations to delete branches to branches, eliminate branches to /// successor blocks (creating fall throughs), and eliminating branches over /// branches. LLVM_ABI extern char &BranchFolderPassID; /// BranchRelaxation - This pass replaces branches that need to jump further /// than is supported by a branch instruction. LLVM_ABI extern char &BranchRelaxationPassID; /// MachineFunctionPrinterPass - This pass prints out MachineInstr's. LLVM_ABI extern char &MachineFunctionPrinterPassID; /// MIRPrintingPass - this pass prints out the LLVM IR using the MIR /// serialization format. LLVM_ABI extern char &MIRPrintingPassID; /// TailDuplicate - Duplicate blocks with unconditional branches /// into tails of their predecessors. LLVM_ABI extern char &TailDuplicateLegacyID; /// Duplicate blocks with unconditional branches into tails of their /// predecessors. Variant that works before register allocation. LLVM_ABI extern char &EarlyTailDuplicateLegacyID; /// MachineTraceMetrics - This pass computes critical path and CPU resource /// usage in an ensemble of traces. LLVM_ABI extern char &MachineTraceMetricsID; /// EarlyIfConverter - This pass performs if-conversion on SSA form by /// inserting cmov instructions. LLVM_ABI extern char &EarlyIfConverterLegacyID; /// EarlyIfPredicator - This pass performs if-conversion on SSA form by /// predicating if/else block and insert select at the join point. LLVM_ABI extern char &EarlyIfPredicatorID; /// This pass performs instruction combining using trace metrics to estimate /// critical-path and resource depth. LLVM_ABI extern char &MachineCombinerID; /// StackSlotColoring - This pass performs stack coloring and merging. /// It merges disjoint allocas to reduce the stack size. LLVM_ABI extern char &StackColoringLegacyID; /// StackFramePrinter - This pass prints the stack frame layout and variable /// mappings. LLVM_ABI extern char &StackFrameLayoutAnalysisPassID; /// IfConverter - This pass performs machine code if conversion. LLVM_ABI extern char &IfConverterID; LLVM_ABI FunctionPass * createIfConverter(std::function Ftor); /// MachineBlockPlacement - This pass places basic blocks based on branch /// probabilities. LLVM_ABI extern char &MachineBlockPlacementID; /// MachineBlockPlacementStats - This pass collects statistics about the /// basic block placement using branch probabilities and block frequency /// information. LLVM_ABI extern char &MachineBlockPlacementStatsID; /// GCLowering Pass - Used by gc.root to perform its default lowering /// operations. LLVM_ABI FunctionPass *createGCLoweringPass(); /// GCLowering Pass - Used by gc.root to perform its default lowering /// operations. LLVM_ABI extern char &GCLoweringID; /// ShadowStackGCLowering - Implements the custom lowering mechanism /// used by the shadow stack GC. Only runs on functions which opt in to /// the shadow stack collector. LLVM_ABI FunctionPass *createShadowStackGCLoweringPass(); /// ShadowStackGCLowering - Implements the custom lowering mechanism /// used by the shadow stack GC. LLVM_ABI extern char &ShadowStackGCLoweringID; /// GCMachineCodeAnalysis - Target-independent pass to mark safe points /// in machine code. Must be added very late during code generation, just /// prior to output, and importantly after all CFG transformations (such as /// branch folding). LLVM_ABI extern char &GCMachineCodeAnalysisID; /// MachineCSE - This pass performs global CSE on machine instructions. LLVM_ABI extern char &MachineCSELegacyID; /// MIRCanonicalizer - This pass canonicalizes MIR by renaming vregs /// according to the semantics of the instruction as well as hoists /// code. LLVM_ABI extern char &MIRCanonicalizerID; /// ImplicitNullChecks - This pass folds null pointer checks into nearby /// memory operations. LLVM_ABI extern char &ImplicitNullChecksID; /// This pass performs loop invariant code motion on machine instructions. LLVM_ABI extern char &MachineLICMID; /// This pass performs loop invariant code motion on machine instructions. /// This variant works before register allocation. \see MachineLICMID. LLVM_ABI extern char &EarlyMachineLICMID; /// MachineSinking - This pass performs sinking on machine instructions. LLVM_ABI extern char &MachineSinkingLegacyID; /// MachineCopyPropagation - This pass performs copy propagation on /// machine instructions. LLVM_ABI extern char &MachineCopyPropagationID; LLVM_ABI MachineFunctionPass * createMachineCopyPropagationPass(bool UseCopyInstr); /// MachineLateInstrsCleanup - This pass removes redundant identical /// instructions after register allocation and rematerialization. LLVM_ABI extern char &MachineLateInstrsCleanupID; /// PeepholeOptimizer - This pass performs peephole optimizations - /// like extension and comparison eliminations. LLVM_ABI extern char &PeepholeOptimizerLegacyID; /// OptimizePHIs - This pass optimizes machine instruction PHIs /// to take advantage of opportunities created during DAG legalization. LLVM_ABI extern char &OptimizePHIsLegacyID; /// StackSlotColoring - This pass performs stack slot coloring. LLVM_ABI extern char &StackSlotColoringID; /// This pass lays out funclets contiguously. LLVM_ABI extern char &FuncletLayoutID; /// This pass inserts the XRay instrumentation sleds if they are supported by /// the target platform. LLVM_ABI extern char &XRayInstrumentationID; /// This pass inserts FEntry calls LLVM_ABI extern char &FEntryInserterID; /// This pass implements the "patchable-function" attribute. LLVM_ABI extern char &PatchableFunctionID; /// createStackProtectorPass - This pass adds stack protectors to functions. /// LLVM_ABI FunctionPass *createStackProtectorPass(); /// createMachineVerifierPass - This pass verifies cenerated machine code /// instructions for correctness. /// LLVM_ABI FunctionPass *createMachineVerifierPass(const std::string &Banner); /// createDwarfEHPass - This pass mulches exception handling code into a form /// adapted to code generation. Required if using dwarf exception handling. LLVM_ABI FunctionPass *createDwarfEHPass(CodeGenOptLevel OptLevel); /// createWinEHPass - Prepares personality functions used by MSVC on Windows, /// in addition to the Itanium LSDA based personalities. LLVM_ABI FunctionPass *createWinEHPass(bool DemoteCatchSwitchPHIOnly = false); /// createSjLjEHPreparePass - This pass adapts exception handling code to use /// the GCC-style builtin setjmp/longjmp (sjlj) to handling EH control flow. /// LLVM_ABI FunctionPass *createSjLjEHPreparePass(const TargetMachine *TM); /// createWasmEHPass - This pass adapts exception handling code to use /// WebAssembly's exception handling scheme. LLVM_ABI FunctionPass *createWasmEHPass(); /// LocalStackSlotAllocation - This pass assigns local frame indices to stack /// slots relative to one another and allocates base registers to access them /// when it is estimated by the target to be out of range of normal frame /// pointer or stack pointer index addressing. LLVM_ABI extern char &LocalStackSlotAllocationID; /// This pass expands pseudo-instructions, reserves registers and adjusts /// machine frame information. LLVM_ABI extern char &FinalizeISelID; /// UnpackMachineBundles - This pass unpack machine instruction bundles. LLVM_ABI extern char &UnpackMachineBundlesID; LLVM_ABI FunctionPass * createUnpackMachineBundles(std::function Ftor); /// StackMapLiveness - This pass analyses the register live-out set of /// stackmap/patchpoint intrinsics and attaches the calculated information to /// the intrinsic for later emission to the StackMap. LLVM_ABI extern char &StackMapLivenessID; // MachineSanitizerBinaryMetadata - appends/finalizes sanitizer binary // metadata after llvm SanitizerBinaryMetadata pass. LLVM_ABI extern char &MachineSanitizerBinaryMetadataID; /// RemoveLoadsIntoFakeUses pass. LLVM_ABI extern char &RemoveLoadsIntoFakeUsesID; /// RemoveRedundantDebugValues pass. LLVM_ABI extern char &RemoveRedundantDebugValuesID; /// MachineCFGPrinter pass. LLVM_ABI extern char &MachineCFGPrinterID; /// LiveDebugValues pass LLVM_ABI extern char &LiveDebugValuesID; /// InterleavedAccess Pass - This pass identifies and matches interleaved /// memory accesses to target specific intrinsics. /// LLVM_ABI FunctionPass *createInterleavedAccessPass(); /// InterleavedLoadCombines Pass - This pass identifies interleaved loads and /// combines them into wide loads detectable by InterleavedAccessPass /// LLVM_ABI FunctionPass *createInterleavedLoadCombinePass(); /// LowerEmuTLS - This pass generates __emutls_[vt].xyz variables for all /// TLS variables for the emulated TLS model. /// LLVM_ABI ModulePass *createLowerEmuTLSPass(); /// This pass lowers the \@llvm.load.relative and \@llvm.objc.* intrinsics to /// instructions. This is unsafe to do earlier because a pass may combine the /// constant initializer into the load, which may result in an overflowing /// evaluation. LLVM_ABI ModulePass *createPreISelIntrinsicLoweringPass(); /// GlobalMerge - This pass merges internal (by default) globals into structs /// to enable reuse of a base pointer by indexed addressing modes. /// It can also be configured to focus on size optimizations only. /// LLVM_ABI Pass * createGlobalMergePass(const TargetMachine *TM, unsigned MaximalOffset, bool OnlyOptimizeForSize = false, bool MergeExternalByDefault = false, bool MergeConstantByDefault = false, bool MergeConstAggressiveByDefault = false); /// This pass splits the stack into a safe stack and an unsafe stack to /// protect against stack-based overflow vulnerabilities. LLVM_ABI FunctionPass *createSafeStackPass(); /// This pass detects subregister lanes in a virtual register that are used /// independently of other lanes and splits them into separate virtual /// registers. LLVM_ABI extern char &RenameIndependentSubregsID; /// This pass is executed POST-RA to collect which physical registers are /// preserved by given machine function. LLVM_ABI FunctionPass *createRegUsageInfoCollector(); /// Return a MachineFunction pass that identifies call sites /// and propagates register usage information of callee to caller /// if available with PysicalRegisterUsageInfo pass. LLVM_ABI FunctionPass *createRegUsageInfoPropPass(); /// This pass performs software pipelining on machine instructions. LLVM_ABI extern char &MachinePipelinerID; /// This pass frees the memory occupied by the MachineFunction. LLVM_ABI FunctionPass *createFreeMachineFunctionPass(); /// This pass performs merging similar functions globally. LLVM_ABI ModulePass *createGlobalMergeFuncPass(); /// This pass performs outlining on machine instructions directly before /// printing assembly. LLVM_ABI ModulePass *createMachineOutlinerPass(RunOutliner RunOutlinerMode); /// This pass expands the reduction intrinsics into sequences of shuffles. LLVM_ABI FunctionPass *createExpandReductionsPass(); // This pass replaces intrinsics operating on vector operands with calls to // the corresponding function in a vector library (e.g., SVML, libmvec). LLVM_ABI FunctionPass *createReplaceWithVeclibLegacyPass(); // Expands large div/rem instructions. LLVM_ABI FunctionPass *createExpandIRInstsPass(); // This pass expands memcmp() to load/stores. LLVM_ABI FunctionPass *createExpandMemCmpLegacyPass(); /// Creates Break False Dependencies pass. \see BreakFalseDeps.cpp LLVM_ABI FunctionPass *createBreakFalseDeps(); // This pass expands indirectbr instructions. LLVM_ABI FunctionPass *createIndirectBrExpandPass(); /// Creates CFI Fixup pass. \see CFIFixup.cpp LLVM_ABI FunctionPass *createCFIFixup(); /// Creates CFI Instruction Inserter pass. \see CFIInstrInserter.cpp LLVM_ABI FunctionPass *createCFIInstrInserter(); // Expands floating point instructions. FunctionPass *createExpandIRInstsPass(CodeGenOptLevel); /// Creates CFGuard longjmp target identification pass. /// \see CFGuardLongjmp.cpp LLVM_ABI FunctionPass *createCFGuardLongjmpPass(); /// Creates Windows EH Continuation Guard target identification pass. /// \see EHContGuardTargets.cpp LLVM_ABI FunctionPass *createEHContGuardTargetsPass(); /// Create Hardware Loop pass. \see HardwareLoops.cpp LLVM_ABI FunctionPass *createHardwareLoopsLegacyPass(); /// This pass inserts pseudo probe annotation for callsite profiling. LLVM_ABI FunctionPass *createPseudoProbeInserter(); /// Create IR Type Promotion pass. \see TypePromotion.cpp LLVM_ABI FunctionPass *createTypePromotionLegacyPass(); /// Add Flow Sensitive Discriminators. PassNum specifies the /// sequence number of this pass (starting from 1). LLVM_ABI FunctionPass * createMIRAddFSDiscriminatorsPass(sampleprof::FSDiscriminatorPass P); /// Read Flow Sensitive Profile. LLVM_ABI FunctionPass * createMIRProfileLoaderPass(std::string File, std::string RemappingFile, sampleprof::FSDiscriminatorPass P, IntrusiveRefCntPtr FS); /// Creates MIR Debugify pass. \see MachineDebugify.cpp LLVM_ABI ModulePass *createDebugifyMachineModulePass(); /// Creates MIR Strip Debug pass. \see MachineStripDebug.cpp /// If OnlyDebugified is true then it will only strip debug info if it was /// added by a Debugify pass. The module will be left unchanged if the debug /// info was generated by another source such as clang. LLVM_ABI ModulePass *createStripDebugMachineModulePass(bool OnlyDebugified); /// Creates MIR Check Debug pass. \see MachineCheckDebugify.cpp LLVM_ABI ModulePass *createCheckDebugMachineModulePass(); /// The pass fixups statepoint machine instruction to replace usage of /// caller saved registers with stack slots. LLVM_ABI extern char &FixupStatepointCallerSavedID; /// When learning an eviction policy, extract score(reward) information, /// otherwise this does nothing LLVM_ABI FunctionPass *createRegAllocScoringPass(); /// JMC instrument pass. LLVM_ABI ModulePass *createJMCInstrumenterPass(); /// This pass converts conditional moves to conditional jumps when profitable. LLVM_ABI FunctionPass *createSelectOptimizePass(); LLVM_ABI FunctionPass *createCallBrPass(); /// Creates Windows Secure Hot Patch pass. \see WindowsSecureHotPatching.cpp LLVM_ABI ModulePass *createWindowsSecureHotPatchingPass(); /// Lowers KCFI operand bundles for indirect calls. LLVM_ABI FunctionPass *createKCFIPass(); } // namespace llvm #endif