110e730a2SDan Gohman //===- WebAssemblyTargetMachine.cpp - Define TargetMachine for WebAssembly -==// 210e730a2SDan Gohman // 32946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 42946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information. 52946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 610e730a2SDan Gohman // 710e730a2SDan Gohman //===----------------------------------------------------------------------===// 810e730a2SDan Gohman /// 910e730a2SDan Gohman /// \file 105f8f34e4SAdrian Prantl /// This file defines the WebAssembly-specific subclass of TargetMachine. 1110e730a2SDan Gohman /// 1210e730a2SDan Gohman //===----------------------------------------------------------------------===// 1310e730a2SDan Gohman 1410e730a2SDan Gohman #include "WebAssemblyTargetMachine.h" 156bda14b3SChandler Carruth #include "MCTargetDesc/WebAssemblyMCTargetDesc.h" 16c6c42137SRichard Trieu #include "TargetInfo/WebAssemblyTargetInfo.h" 176bda14b3SChandler Carruth #include "WebAssembly.h" 1852221d56SHeejin Ahn #include "WebAssemblyMachineFunctionInfo.h" 195bf22fc8SDan Gohman #include "WebAssemblyTargetObjectFile.h" 2010e730a2SDan Gohman #include "WebAssemblyTargetTransformInfo.h" 2152221d56SHeejin Ahn #include "llvm/CodeGen/MIRParser/MIParser.h" 2210e730a2SDan Gohman #include "llvm/CodeGen/MachineFunctionPass.h" 2310e730a2SDan Gohman #include "llvm/CodeGen/Passes.h" 2410e730a2SDan Gohman #include "llvm/CodeGen/RegAllocRegistry.h" 2531d19d43SMatthias Braun #include "llvm/CodeGen/TargetPassConfig.h" 2610e730a2SDan Gohman #include "llvm/IR/Function.h" 2710e730a2SDan Gohman #include "llvm/Support/TargetRegistry.h" 2810e730a2SDan Gohman #include "llvm/Target/TargetOptions.h" 2903855df1SJF Bastien #include "llvm/Transforms/Scalar.h" 303f34e1b8SThomas Lively #include "llvm/Transforms/Scalar/LowerAtomic.h" 31a373d18eSDavid Blaikie #include "llvm/Transforms/Utils.h" 3210e730a2SDan Gohman using namespace llvm; 3310e730a2SDan Gohman 3410e730a2SDan Gohman #define DEBUG_TYPE "wasm" 3510e730a2SDan Gohman 36f41f67d3SDerek Schuff // Emscripten's asm.js-style exception handling 373bba91f6SHeejin Ahn cl::opt<bool> EnableEmException( 3853b9af02SDerek Schuff "enable-emscripten-cxx-exceptions", 39f41f67d3SDerek Schuff cl::desc("WebAssembly Emscripten-style exception handling"), 40f41f67d3SDerek Schuff cl::init(false)); 41f41f67d3SDerek Schuff 42ccdceda1SDerek Schuff // Emscripten's asm.js-style setjmp/longjmp handling 433bba91f6SHeejin Ahn cl::opt<bool> EnableEmSjLj( 44ccdceda1SDerek Schuff "enable-emscripten-sjlj", 45ccdceda1SDerek Schuff cl::desc("WebAssembly Emscripten-style setjmp/longjmp handling"), 46ccdceda1SDerek Schuff cl::init(false)); 47ccdceda1SDerek Schuff 482b7fe086SWouter van Oortmerssen // A command-line option to keep implicit locals 492b7fe086SWouter van Oortmerssen // for the purpose of testing with lit/llc ONLY. 502b7fe086SWouter van Oortmerssen // This produces output which is not valid WebAssembly, and is not supported 512b7fe086SWouter van Oortmerssen // by assemblers/disassemblers and other MC based tools. 522b7fe086SWouter van Oortmerssen static cl::opt<bool> WasmDisableExplicitLocals( 532b7fe086SWouter van Oortmerssen "wasm-disable-explicit-locals", cl::Hidden, 542b7fe086SWouter van Oortmerssen cl::desc("WebAssembly: output implicit locals in" 552b7fe086SWouter van Oortmerssen " instruction output for test purposes only."), 562b7fe086SWouter van Oortmerssen cl::init(false)); 572b7fe086SWouter van Oortmerssen 580dbcb363STom Stellard extern "C" LLVM_EXTERNAL_VISIBILITY void LLVMInitializeWebAssemblyTarget() { 5910e730a2SDan Gohman // Register the target. 60f42454b9SMehdi Amini RegisterTargetMachine<WebAssemblyTargetMachine> X( 61f42454b9SMehdi Amini getTheWebAssemblyTarget32()); 62f42454b9SMehdi Amini RegisterTargetMachine<WebAssemblyTargetMachine> Y( 63f42454b9SMehdi Amini getTheWebAssemblyTarget64()); 64f41f67d3SDerek Schuff 6540926451SJacob Gravelle // Register backend passes 6640926451SJacob Gravelle auto &PR = *PassRegistry::getPassRegistry(); 6792617559SSam Clegg initializeWebAssemblyAddMissingPrototypesPass(PR); 6840926451SJacob Gravelle initializeWebAssemblyLowerEmscriptenEHSjLjPass(PR); 6940926451SJacob Gravelle initializeLowerGlobalDtorsPass(PR); 7040926451SJacob Gravelle initializeFixFunctionBitcastsPass(PR); 7140926451SJacob Gravelle initializeOptimizeReturnedPass(PR); 7240926451SJacob Gravelle initializeWebAssemblyArgumentMovePass(PR); 7340926451SJacob Gravelle initializeWebAssemblySetP2AlignOperandsPass(PR); 7440926451SJacob Gravelle initializeWebAssemblyReplacePhysRegsPass(PR); 7540926451SJacob Gravelle initializeWebAssemblyPrepareForLiveIntervalsPass(PR); 7640926451SJacob Gravelle initializeWebAssemblyOptimizeLiveIntervalsPass(PR); 77321d5220SHeejin Ahn initializeWebAssemblyMemIntrinsicResultsPass(PR); 7840926451SJacob Gravelle initializeWebAssemblyRegStackifyPass(PR); 7940926451SJacob Gravelle initializeWebAssemblyRegColoringPass(PR); 80*a64ebb86SHeejin Ahn initializeWebAssemblyNullifyDebugValueListsPass(PR); 8140926451SJacob Gravelle initializeWebAssemblyFixIrreducibleControlFlowPass(PR); 824934f76bSHeejin Ahn initializeWebAssemblyLateEHPreparePass(PR); 8304c48949SHeejin Ahn initializeWebAssemblyExceptionInfoPass(PR); 8440926451SJacob Gravelle initializeWebAssemblyCFGSortPass(PR); 8540926451SJacob Gravelle initializeWebAssemblyCFGStackifyPass(PR); 86e9fd9073SHeejin Ahn initializeWebAssemblyExplicitLocalsPass(PR); 8740926451SJacob Gravelle initializeWebAssemblyLowerBrUnlessPass(PR); 8840926451SJacob Gravelle initializeWebAssemblyRegNumberingPass(PR); 892b7fe086SWouter van Oortmerssen initializeWebAssemblyDebugFixupPass(PR); 9040926451SJacob Gravelle initializeWebAssemblyPeepholePass(PR); 9110e730a2SDan Gohman } 9210e730a2SDan Gohman 9310e730a2SDan Gohman //===----------------------------------------------------------------------===// 9410e730a2SDan Gohman // WebAssembly Lowering public interface. 9510e730a2SDan Gohman //===----------------------------------------------------------------------===// 9610e730a2SDan Gohman 9753572d04SDan Gohman static Reloc::Model getEffectiveRelocModel(Optional<Reloc::Model> RM, 9853572d04SDan Gohman const Triple &TT) { 9974f5fd4eSSam Clegg if (!RM.hasValue()) { 10074f5fd4eSSam Clegg // Default to static relocation model. This should always be more optimial 10174f5fd4eSSam Clegg // than PIC since the static linker can determine all global addresses and 10274f5fd4eSSam Clegg // assume direct function calls. 10374f5fd4eSSam Clegg return Reloc::Static; 10474f5fd4eSSam Clegg } 10553572d04SDan Gohman 10653572d04SDan Gohman if (!TT.isOSEmscripten()) { 10753572d04SDan Gohman // Relocation modes other than static are currently implemented in a way 10853572d04SDan Gohman // that only works for Emscripten, so disable them if we aren't targeting 10953572d04SDan Gohman // Emscripten. 11053572d04SDan Gohman return Reloc::Static; 11153572d04SDan Gohman } 11253572d04SDan Gohman 11341133a3eSDan Gohman return *RM; 11441133a3eSDan Gohman } 11541133a3eSDan Gohman 11610e730a2SDan Gohman /// Create an WebAssembly architecture model. 11710e730a2SDan Gohman /// 11810e730a2SDan Gohman WebAssemblyTargetMachine::WebAssemblyTargetMachine( 11910e730a2SDan Gohman const Target &T, const Triple &TT, StringRef CPU, StringRef FS, 12041133a3eSDan Gohman const TargetOptions &Options, Optional<Reloc::Model> RM, 121314ed201SDaniel Jasper Optional<CodeModel::Model> CM, CodeGenOpt::Level OL, bool JIT) 122bb8507e6SMatthias Braun : LLVMTargetMachine(T, 123d7086af2SPaulo Matos TT.isArch64Bit() 124d7086af2SPaulo Matos ? "e-m:e-p:64:64-i64:64-n32:64-S128-ni:1" 125d7086af2SPaulo Matos : "e-m:e-p:32:32-i64:64-n32:64-S128-ni:1", 12653572d04SDan Gohman TT, CPU, FS, Options, getEffectiveRelocModel(RM, TT), 127ca29c271SDavid Green getEffectiveCodeModel(CM, CodeModel::Large), OL), 128cf2a9e28SSam Clegg TLOF(new WebAssemblyTargetObjectFile()) { 129e040533eSDan Gohman // WebAssembly type-checks instructions, but a noreturn function with a return 130ffa143ceSDerek Schuff // type that doesn't match the context will cause a check failure. So we lower 131ffa143ceSDerek Schuff // LLVM 'unreachable' to ISD::TRAP and then lower that to WebAssembly's 132e040533eSDan Gohman // 'unreachable' instructions which is meant for that case. 133ffa143ceSDerek Schuff this->Options.TrapUnreachable = true; 134ffa143ceSDerek Schuff 135d934cb88SDan Gohman // WebAssembly treats each function as an independent unit. Force 136d934cb88SDan Gohman // -ffunction-sections, effectively, so that we can emit them independently. 137d934cb88SDan Gohman this->Options.FunctionSections = true; 138d934cb88SDan Gohman this->Options.DataSections = true; 139d934cb88SDan Gohman this->Options.UniqueSectionNames = true; 140d934cb88SDan Gohman 14110e730a2SDan Gohman initAsmInfo(); 14210e730a2SDan Gohman 143d85ab7fcSDan Gohman // Note that we don't use setRequiresStructuredCFG(true). It disables 144d85ab7fcSDan Gohman // optimizations than we're ok with, and want, such as critical edge 145d85ab7fcSDan Gohman // splitting and tail merging. 14610e730a2SDan Gohman } 14710e730a2SDan Gohman 14818c56a07SHeejin Ahn WebAssemblyTargetMachine::~WebAssemblyTargetMachine() = default; // anchor. 14910e730a2SDan Gohman 15089fe083cSThomas Lively const WebAssemblySubtarget *WebAssemblyTargetMachine::getSubtargetImpl() const { 15189fe083cSThomas Lively return getSubtargetImpl(std::string(getTargetCPU()), 15289fe083cSThomas Lively std::string(getTargetFeatureString())); 15389fe083cSThomas Lively } 15489fe083cSThomas Lively 15510e730a2SDan Gohman const WebAssemblySubtarget * 156f3b4f990SThomas Lively WebAssemblyTargetMachine::getSubtargetImpl(std::string CPU, 157f3b4f990SThomas Lively std::string FS) const { 158f3b4f990SThomas Lively auto &I = SubtargetMap[CPU + FS]; 159f3b4f990SThomas Lively if (!I) { 1600eaee545SJonas Devlieghere I = std::make_unique<WebAssemblySubtarget>(TargetTriple, CPU, FS, *this); 161f3b4f990SThomas Lively } 162f3b4f990SThomas Lively return I.get(); 163f3b4f990SThomas Lively } 164f3b4f990SThomas Lively 165f3b4f990SThomas Lively const WebAssemblySubtarget * 16610e730a2SDan Gohman WebAssemblyTargetMachine::getSubtargetImpl(const Function &F) const { 16710e730a2SDan Gohman Attribute CPUAttr = F.getFnAttribute("target-cpu"); 16810e730a2SDan Gohman Attribute FSAttr = F.getFnAttribute("target-features"); 16910e730a2SDan Gohman 170aab90384SCraig Topper std::string CPU = 171aab90384SCraig Topper CPUAttr.isValid() ? CPUAttr.getValueAsString().str() : TargetCPU; 172aab90384SCraig Topper std::string FS = 173aab90384SCraig Topper FSAttr.isValid() ? FSAttr.getValueAsString().str() : TargetFS; 17410e730a2SDan Gohman 17510e730a2SDan Gohman // This needs to be done before we create a new subtarget since any 17610e730a2SDan Gohman // creation will depend on the TM and the code generation flags on the 17710e730a2SDan Gohman // function that reside in TargetOptions. 17810e730a2SDan Gohman resetTargetOptions(F); 179f3b4f990SThomas Lively 180f3b4f990SThomas Lively return getSubtargetImpl(CPU, FS); 18110e730a2SDan Gohman } 18210e730a2SDan Gohman 18310e730a2SDan Gohman namespace { 1843f34e1b8SThomas Lively 1853f34e1b8SThomas Lively class CoalesceFeaturesAndStripAtomics final : public ModulePass { 1863f34e1b8SThomas Lively // Take the union of all features used in the module and use it for each 1873f34e1b8SThomas Lively // function individually, since having multiple feature sets in one module 1883f34e1b8SThomas Lively // currently does not make sense for WebAssembly. If atomics are not enabled, 1893f34e1b8SThomas Lively // also strip atomic operations and thread local storage. 19039b5367cSDerek Schuff static char ID; 1913f34e1b8SThomas Lively WebAssemblyTargetMachine *WasmTM; 19239b5367cSDerek Schuff 19339b5367cSDerek Schuff public: 1943f34e1b8SThomas Lively CoalesceFeaturesAndStripAtomics(WebAssemblyTargetMachine *WasmTM) 1953f34e1b8SThomas Lively : ModulePass(ID), WasmTM(WasmTM) {} 1963f34e1b8SThomas Lively 19739b5367cSDerek Schuff bool runOnModule(Module &M) override { 1983f34e1b8SThomas Lively FeatureBitset Features = coalesceFeatures(M); 1993f34e1b8SThomas Lively 2003f34e1b8SThomas Lively std::string FeatureStr = getFeatureString(Features); 20189fe083cSThomas Lively WasmTM->setTargetFeatureString(FeatureStr); 2023f34e1b8SThomas Lively for (auto &F : M) 2033f34e1b8SThomas Lively replaceFeatures(F, FeatureStr); 2043f34e1b8SThomas Lively 20542bba4b8SGuanzhong Chen bool StrippedAtomics = false; 20642bba4b8SGuanzhong Chen bool StrippedTLS = false; 2073f34e1b8SThomas Lively 20842bba4b8SGuanzhong Chen if (!Features[WebAssembly::FeatureAtomics]) 20942bba4b8SGuanzhong Chen StrippedAtomics = stripAtomics(M); 21042bba4b8SGuanzhong Chen 21142bba4b8SGuanzhong Chen if (!Features[WebAssembly::FeatureBulkMemory]) 21242bba4b8SGuanzhong Chen StrippedTLS = stripThreadLocals(M); 21342bba4b8SGuanzhong Chen 21442bba4b8SGuanzhong Chen if (StrippedAtomics && !StrippedTLS) 21542bba4b8SGuanzhong Chen stripThreadLocals(M); 21642bba4b8SGuanzhong Chen else if (StrippedTLS && !StrippedAtomics) 21742bba4b8SGuanzhong Chen stripAtomics(M); 21842bba4b8SGuanzhong Chen 21942bba4b8SGuanzhong Chen recordFeatures(M, Features, StrippedAtomics || StrippedTLS); 2203f34e1b8SThomas Lively 2213f34e1b8SThomas Lively // Conservatively assume we have made some change 22239b5367cSDerek Schuff return true; 22339b5367cSDerek Schuff } 2243f34e1b8SThomas Lively 2253f34e1b8SThomas Lively private: 2263f34e1b8SThomas Lively FeatureBitset coalesceFeatures(const Module &M) { 2273f34e1b8SThomas Lively FeatureBitset Features = 2283f34e1b8SThomas Lively WasmTM 229adcd0268SBenjamin Kramer ->getSubtargetImpl(std::string(WasmTM->getTargetCPU()), 230adcd0268SBenjamin Kramer std::string(WasmTM->getTargetFeatureString())) 2313f34e1b8SThomas Lively ->getFeatureBits(); 2323f34e1b8SThomas Lively for (auto &F : M) 2333f34e1b8SThomas Lively Features |= WasmTM->getSubtargetImpl(F)->getFeatureBits(); 2343f34e1b8SThomas Lively return Features; 2353f34e1b8SThomas Lively } 2363f34e1b8SThomas Lively 2373f34e1b8SThomas Lively std::string getFeatureString(const FeatureBitset &Features) { 2383f34e1b8SThomas Lively std::string Ret; 2393f34e1b8SThomas Lively for (const SubtargetFeatureKV &KV : WebAssemblyFeatureKV) { 2403f34e1b8SThomas Lively if (Features[KV.Value]) 2413f34e1b8SThomas Lively Ret += (StringRef("+") + KV.Key + ",").str(); 2423f34e1b8SThomas Lively } 2433f34e1b8SThomas Lively return Ret; 2443f34e1b8SThomas Lively } 2453f34e1b8SThomas Lively 2463f34e1b8SThomas Lively void replaceFeatures(Function &F, const std::string &Features) { 2473f34e1b8SThomas Lively F.removeFnAttr("target-features"); 2483f34e1b8SThomas Lively F.removeFnAttr("target-cpu"); 2493f34e1b8SThomas Lively F.addFnAttr("target-features", Features); 2503f34e1b8SThomas Lively } 2513f34e1b8SThomas Lively 2523f34e1b8SThomas Lively bool stripAtomics(Module &M) { 2533f34e1b8SThomas Lively // Detect whether any atomics will be lowered, since there is no way to tell 2543f34e1b8SThomas Lively // whether the LowerAtomic pass lowers e.g. stores. 2553f34e1b8SThomas Lively bool Stripped = false; 2563f34e1b8SThomas Lively for (auto &F : M) { 2573f34e1b8SThomas Lively for (auto &B : F) { 2583f34e1b8SThomas Lively for (auto &I : B) { 2593f34e1b8SThomas Lively if (I.isAtomic()) { 2603f34e1b8SThomas Lively Stripped = true; 2613f34e1b8SThomas Lively goto done; 2623f34e1b8SThomas Lively } 2633f34e1b8SThomas Lively } 2643f34e1b8SThomas Lively } 2653f34e1b8SThomas Lively } 2663f34e1b8SThomas Lively 2673f34e1b8SThomas Lively done: 2683f34e1b8SThomas Lively if (!Stripped) 2693f34e1b8SThomas Lively return false; 2703f34e1b8SThomas Lively 2713f34e1b8SThomas Lively LowerAtomicPass Lowerer; 2723f34e1b8SThomas Lively FunctionAnalysisManager FAM; 2733f34e1b8SThomas Lively for (auto &F : M) 2743f34e1b8SThomas Lively Lowerer.run(F, FAM); 2753f34e1b8SThomas Lively 2763f34e1b8SThomas Lively return true; 2773f34e1b8SThomas Lively } 2783f34e1b8SThomas Lively 2793f34e1b8SThomas Lively bool stripThreadLocals(Module &M) { 2803f34e1b8SThomas Lively bool Stripped = false; 2813f34e1b8SThomas Lively for (auto &GV : M.globals()) { 282a28a4662SSam Clegg if (GV.isThreadLocal()) { 2833f34e1b8SThomas Lively Stripped = true; 284a28a4662SSam Clegg GV.setThreadLocal(false); 2853f34e1b8SThomas Lively } 2863f34e1b8SThomas Lively } 2873f34e1b8SThomas Lively return Stripped; 2883f34e1b8SThomas Lively } 2893f34e1b8SThomas Lively 2903f34e1b8SThomas Lively void recordFeatures(Module &M, const FeatureBitset &Features, bool Stripped) { 2913f34e1b8SThomas Lively for (const SubtargetFeatureKV &KV : WebAssemblyFeatureKV) { 292a1ae9566SThomas Lively if (Features[KV.Value]) { 293a1ae9566SThomas Lively // Mark features as used 2943f34e1b8SThomas Lively std::string MDKey = (StringRef("wasm-feature-") + KV.Key).str(); 2953f34e1b8SThomas Lively M.addModuleFlag(Module::ModFlagBehavior::Error, MDKey, 2963f34e1b8SThomas Lively wasm::WASM_FEATURE_PREFIX_USED); 2973f34e1b8SThomas Lively } 2983f34e1b8SThomas Lively } 299a1ae9566SThomas Lively // Code compiled without atomics or bulk-memory may have had its atomics or 300a1ae9566SThomas Lively // thread-local data lowered to nonatomic operations or non-thread-local 301a1ae9566SThomas Lively // data. In that case, we mark the pseudo-feature "shared-mem" as disallowed 302a1ae9566SThomas Lively // to tell the linker that it would be unsafe to allow this code ot be used 303a1ae9566SThomas Lively // in a module with shared memory. 304a1ae9566SThomas Lively if (Stripped) { 305a1ae9566SThomas Lively M.addModuleFlag(Module::ModFlagBehavior::Error, "wasm-feature-shared-mem", 306a1ae9566SThomas Lively wasm::WASM_FEATURE_PREFIX_DISALLOWED); 307a1ae9566SThomas Lively } 3083f34e1b8SThomas Lively } 30939b5367cSDerek Schuff }; 3103f34e1b8SThomas Lively char CoalesceFeaturesAndStripAtomics::ID = 0; 31139b5367cSDerek Schuff 31210e730a2SDan Gohman /// WebAssembly Code Generator Pass Configuration Options. 31310e730a2SDan Gohman class WebAssemblyPassConfig final : public TargetPassConfig { 31410e730a2SDan Gohman public: 3155e394c3dSMatthias Braun WebAssemblyPassConfig(WebAssemblyTargetMachine &TM, PassManagerBase &PM) 31610e730a2SDan Gohman : TargetPassConfig(TM, PM) {} 31710e730a2SDan Gohman 31810e730a2SDan Gohman WebAssemblyTargetMachine &getWebAssemblyTargetMachine() const { 31910e730a2SDan Gohman return getTM<WebAssemblyTargetMachine>(); 32010e730a2SDan Gohman } 32110e730a2SDan Gohman 32210e730a2SDan Gohman FunctionPass *createTargetRegisterAllocator(bool) override; 32310e730a2SDan Gohman 32410e730a2SDan Gohman void addIRPasses() override; 32510e730a2SDan Gohman bool addInstSelector() override; 32610e730a2SDan Gohman void addPostRegAlloc() override; 327ad154c83SDerek Schuff bool addGCPasses() override { return false; } 32810e730a2SDan Gohman void addPreEmitPass() override; 329cf55a657SMatt Arsenault 330cf55a657SMatt Arsenault // No reg alloc 331c9122ddeSMatt Arsenault bool addRegAssignAndRewriteFast() override { return false; } 332cf55a657SMatt Arsenault 333cf55a657SMatt Arsenault // No reg alloc 334c9122ddeSMatt Arsenault bool addRegAssignAndRewriteOptimized() override { return false; } 33510e730a2SDan Gohman }; 33610e730a2SDan Gohman } // end anonymous namespace 33710e730a2SDan Gohman 33826d11ca4SSanjoy Das TargetTransformInfo 33926d11ca4SSanjoy Das WebAssemblyTargetMachine::getTargetTransformInfo(const Function &F) { 34010e730a2SDan Gohman return TargetTransformInfo(WebAssemblyTTIImpl(this, F)); 34110e730a2SDan Gohman } 34210e730a2SDan Gohman 34310e730a2SDan Gohman TargetPassConfig * 34410e730a2SDan Gohman WebAssemblyTargetMachine::createPassConfig(PassManagerBase &PM) { 3455e394c3dSMatthias Braun return new WebAssemblyPassConfig(*this, PM); 34610e730a2SDan Gohman } 34710e730a2SDan Gohman 34810e730a2SDan Gohman FunctionPass *WebAssemblyPassConfig::createTargetRegisterAllocator(bool) { 34910e730a2SDan Gohman return nullptr; // No reg alloc 35010e730a2SDan Gohman } 35110e730a2SDan Gohman 35210e730a2SDan Gohman //===----------------------------------------------------------------------===// 35310e730a2SDan Gohman // The following functions are called from lib/CodeGen/Passes.cpp to modify 35410e730a2SDan Gohman // the CodeGen pass sequence. 35510e730a2SDan Gohman //===----------------------------------------------------------------------===// 35610e730a2SDan Gohman 35710e730a2SDan Gohman void WebAssemblyPassConfig::addIRPasses() { 35889fe083cSThomas Lively // Lower atomics and TLS if necessary 35989fe083cSThomas Lively addPass(new CoalesceFeaturesAndStripAtomics(&getWebAssemblyTargetMachine())); 36089fe083cSThomas Lively 36189fe083cSThomas Lively // This is a no-op if atomics are not used in the module 36289fe083cSThomas Lively addPass(createAtomicExpandPass()); 36389fe083cSThomas Lively 36492617559SSam Clegg // Add signatures to prototype-less function declarations 36592617559SSam Clegg addPass(createWebAssemblyAddMissingPrototypes()); 36692617559SSam Clegg 367bafe6902SSam Clegg // Lower .llvm.global_dtors into .llvm_global_ctors with __cxa_atexit calls. 368bafe6902SSam Clegg addPass(createWebAssemblyLowerGlobalDtors()); 369bafe6902SSam Clegg 3701b637458SDan Gohman // Fix function bitcasts, as WebAssembly requires caller and callee signatures 3711b637458SDan Gohman // to match. 3721b637458SDan Gohman addPass(createWebAssemblyFixFunctionBitcasts()); 3731b637458SDan Gohman 37481719f85SDan Gohman // Optimize "returned" function attributes. 375b13c91f1SDan Gohman if (getOptLevel() != CodeGenOpt::None) 37681719f85SDan Gohman addPass(createWebAssemblyOptimizeReturned()); 37781719f85SDan Gohman 378c0f18172SHeejin Ahn // If exception handling is not enabled and setjmp/longjmp handling is 379c0f18172SHeejin Ahn // enabled, we lower invokes into calls and delete unreachable landingpad 380c0f18172SHeejin Ahn // blocks. Lowering invokes when there is no EH support is done in 381c0f18172SHeejin Ahn // TargetPassConfig::addPassesToHandleExceptions, but this runs after this 382c0f18172SHeejin Ahn // function and SjLj handling expects all invokes to be lowered before. 3839386bde1SHeejin Ahn if (!EnableEmException && 3849386bde1SHeejin Ahn TM->Options.ExceptionModel == ExceptionHandling::None) { 385c0f18172SHeejin Ahn addPass(createLowerInvokePass()); 386c0f18172SHeejin Ahn // The lower invoke pass may create unreachable code. Remove it in order not 387c0f18172SHeejin Ahn // to process dead blocks in setjmp/longjmp handling. 388c0f18172SHeejin Ahn addPass(createUnreachableBlockEliminationPass()); 389c0f18172SHeejin Ahn } 390c0f18172SHeejin Ahn 391c0f18172SHeejin Ahn // Handle exceptions and setjmp/longjmp if enabled. 392ccdceda1SDerek Schuff if (EnableEmException || EnableEmSjLj) 393ccdceda1SDerek Schuff addPass(createWebAssemblyLowerEmscriptenEHSjLj(EnableEmException, 394ccdceda1SDerek Schuff EnableEmSjLj)); 395f41f67d3SDerek Schuff 396ec4be576SDerek Schuff // Expand indirectbr instructions to switches. 397ec4be576SDerek Schuff addPass(createIndirectBrExpandPass()); 398ec4be576SDerek Schuff 39910e730a2SDan Gohman TargetPassConfig::addIRPasses(); 40010e730a2SDan Gohman } 40110e730a2SDan Gohman 40210e730a2SDan Gohman bool WebAssemblyPassConfig::addInstSelector() { 403b0921ca9SDan Gohman (void)TargetPassConfig::addInstSelector(); 40410e730a2SDan Gohman addPass( 40510e730a2SDan Gohman createWebAssemblyISelDag(getWebAssemblyTargetMachine(), getOptLevel())); 4061cf96c0cSDan Gohman // Run the argument-move pass immediately after the ScheduleDAG scheduler 4071cf96c0cSDan Gohman // so that we can fix up the ARGUMENT instructions before anything else 4081cf96c0cSDan Gohman // sees them in the wrong place. 4091cf96c0cSDan Gohman addPass(createWebAssemblyArgumentMove()); 410bb372243SDan Gohman // Set the p2align operands. This information is present during ISel, however 411bb372243SDan Gohman // it's inconvenient to collect. Collect it now, and update the immediate 412bb372243SDan Gohman // operands. 413bb372243SDan Gohman addPass(createWebAssemblySetP2AlignOperands()); 4147f50c15bSThomas Lively 4157f50c15bSThomas Lively // Eliminate range checks and add default targets to br_table instructions. 4167f50c15bSThomas Lively addPass(createWebAssemblyFixBrTableDefaults()); 4177f50c15bSThomas Lively 41810e730a2SDan Gohman return false; 41910e730a2SDan Gohman } 42010e730a2SDan Gohman 421600aee98SJF Bastien void WebAssemblyPassConfig::addPostRegAlloc() { 4229c54d3b4SDan Gohman // TODO: The following CodeGen passes don't currently support code containing 4239c54d3b4SDan Gohman // virtual registers. Consider removing their restrictions and re-enabling 4249c54d3b4SDan Gohman // them. 425ad154c83SDerek Schuff 4261eb47368SMatthias Braun // These functions all require the NoVRegs property. 427600aee98SJF Bastien disablePass(&MachineCopyPropagationID); 4287ab1b32bSJun Bum Lim disablePass(&PostRAMachineSinkingID); 429ecabac62SDerek Schuff disablePass(&PostRASchedulerID); 430ecabac62SDerek Schuff disablePass(&FuncletLayoutID); 431ecabac62SDerek Schuff disablePass(&StackMapLivenessID); 432ecabac62SDerek Schuff disablePass(&LiveDebugValuesID); 433fe71ec77SSanjoy Das disablePass(&PatchableFunctionID); 4347ab1b32bSJun Bum Lim disablePass(&ShrinkWrapID); 435950a13cfSDan Gohman 436ef9d6aeaSHeejin Ahn // This pass hurts code size for wasm because it can generate irreducible 437ef9d6aeaSHeejin Ahn // control flow. 438ef9d6aeaSHeejin Ahn disablePass(&MachineBlockPlacementID); 439ef9d6aeaSHeejin Ahn 440b0921ca9SDan Gohman TargetPassConfig::addPostRegAlloc(); 441600aee98SJF Bastien } 44210e730a2SDan Gohman 443950a13cfSDan Gohman void WebAssemblyPassConfig::addPreEmitPass() { 444b0921ca9SDan Gohman TargetPassConfig::addPreEmitPass(); 445b0921ca9SDan Gohman 446*a64ebb86SHeejin Ahn // Nullify DBG_VALUE_LISTs that we cannot handle. 447*a64ebb86SHeejin Ahn addPass(createWebAssemblyNullifyDebugValueLists()); 448*a64ebb86SHeejin Ahn 449e95056d6SHeejin Ahn // Eliminate multiple-entry loops. 450e95056d6SHeejin Ahn addPass(createWebAssemblyFixIrreducibleControlFlow()); 451e95056d6SHeejin Ahn 452e95056d6SHeejin Ahn // Do various transformations for exception handling. 453d6f48786SHeejin Ahn // Every CFG-changing optimizations should come before this. 4549e4eadebSHeejin Ahn if (TM->Options.ExceptionModel == ExceptionHandling::Wasm) 455e95056d6SHeejin Ahn addPass(createWebAssemblyLateEHPrepare()); 456e95056d6SHeejin Ahn 4570bb98650SHeejin Ahn // Now that we have a prologue and epilogue and all frame indices are 4580bb98650SHeejin Ahn // rewritten, eliminate SP and FP. This allows them to be stackified, 4590bb98650SHeejin Ahn // colored, and numbered with the rest of the registers. 4600bb98650SHeejin Ahn addPass(createWebAssemblyReplacePhysRegs()); 4610bb98650SHeejin Ahn 462d6f48786SHeejin Ahn // Preparations and optimizations related to register stackification. 4630cfb5f85SDan Gohman if (getOptLevel() != CodeGenOpt::None) { 4640cfb5f85SDan Gohman // LiveIntervals isn't commonly run this late. Re-establish preconditions. 4650cfb5f85SDan Gohman addPass(createWebAssemblyPrepareForLiveIntervals()); 4660cfb5f85SDan Gohman 4670cfb5f85SDan Gohman // Depend on LiveIntervals and perform some optimizations on it. 4680cfb5f85SDan Gohman addPass(createWebAssemblyOptimizeLiveIntervals()); 4690cfb5f85SDan Gohman 470321d5220SHeejin Ahn // Prepare memory intrinsic calls for register stackifying. 471321d5220SHeejin Ahn addPass(createWebAssemblyMemIntrinsicResults()); 4720cfb5f85SDan Gohman 473e040533eSDan Gohman // Mark registers as representing wasm's value stack. This is a key 4740cfb5f85SDan Gohman // code-compression technique in WebAssembly. We run this pass (and 475321d5220SHeejin Ahn // MemIntrinsicResults above) very late, so that it sees as much code as 476321d5220SHeejin Ahn // possible, including code emitted by PEI and expanded by late tail 477321d5220SHeejin Ahn // duplication. 4780cfb5f85SDan Gohman addPass(createWebAssemblyRegStackify()); 4790cfb5f85SDan Gohman 4800cfb5f85SDan Gohman // Run the register coloring pass to reduce the total number of registers. 4810cfb5f85SDan Gohman // This runs after stackification so that it doesn't consider registers 4820cfb5f85SDan Gohman // that become stackified. 4830cfb5f85SDan Gohman addPass(createWebAssemblyRegColoring()); 4840cfb5f85SDan Gohman } 4850cfb5f85SDan Gohman 486f52ee17aSDan Gohman // Sort the blocks of the CFG into topological order, a prerequisite for 487f52ee17aSDan Gohman // BLOCK and LOOP markers. 488f52ee17aSDan Gohman addPass(createWebAssemblyCFGSort()); 489f52ee17aSDan Gohman 490f52ee17aSDan Gohman // Insert BLOCK and LOOP markers. 491950a13cfSDan Gohman addPass(createWebAssemblyCFGStackify()); 4925941bde0SDan Gohman 493e9fd9073SHeejin Ahn // Insert explicit local.get and local.set operators. 4942b7fe086SWouter van Oortmerssen if (!WasmDisableExplicitLocals) 495e9fd9073SHeejin Ahn addPass(createWebAssemblyExplicitLocals()); 496e9fd9073SHeejin Ahn 497f0b165a7SDan Gohman // Lower br_unless into br_if. 498f0b165a7SDan Gohman addPass(createWebAssemblyLowerBrUnless()); 499f0b165a7SDan Gohman 5005941bde0SDan Gohman // Perform the very last peephole optimizations on the code. 501b13c91f1SDan Gohman if (getOptLevel() != CodeGenOpt::None) 50281719f85SDan Gohman addPass(createWebAssemblyPeephole()); 503b7c2400fSDan Gohman 504b7c2400fSDan Gohman // Create a mapping from LLVM CodeGen virtual registers to wasm registers. 505b7c2400fSDan Gohman addPass(createWebAssemblyRegNumbering()); 5062b7fe086SWouter van Oortmerssen 5072b7fe086SWouter van Oortmerssen // Fix debug_values whose defs have been stackified. 5082b7fe086SWouter van Oortmerssen if (!WasmDisableExplicitLocals) 5092b7fe086SWouter van Oortmerssen addPass(createWebAssemblyDebugFixup()); 510950a13cfSDan Gohman } 51152221d56SHeejin Ahn 51252221d56SHeejin Ahn yaml::MachineFunctionInfo * 51352221d56SHeejin Ahn WebAssemblyTargetMachine::createDefaultFuncInfoYAML() const { 51452221d56SHeejin Ahn return new yaml::WebAssemblyFunctionInfo(); 51552221d56SHeejin Ahn } 51652221d56SHeejin Ahn 51752221d56SHeejin Ahn yaml::MachineFunctionInfo *WebAssemblyTargetMachine::convertFuncInfoToYAML( 51852221d56SHeejin Ahn const MachineFunction &MF) const { 51952221d56SHeejin Ahn const auto *MFI = MF.getInfo<WebAssemblyFunctionInfo>(); 52052221d56SHeejin Ahn return new yaml::WebAssemblyFunctionInfo(*MFI); 52152221d56SHeejin Ahn } 52252221d56SHeejin Ahn 52352221d56SHeejin Ahn bool WebAssemblyTargetMachine::parseMachineFunctionInfo( 52452221d56SHeejin Ahn const yaml::MachineFunctionInfo &MFI, PerFunctionMIParsingState &PFS, 52552221d56SHeejin Ahn SMDiagnostic &Error, SMRange &SourceRange) const { 52652221d56SHeejin Ahn const auto &YamlMFI = 52752221d56SHeejin Ahn reinterpret_cast<const yaml::WebAssemblyFunctionInfo &>(MFI); 52852221d56SHeejin Ahn MachineFunction &MF = PFS.MF; 52952221d56SHeejin Ahn MF.getInfo<WebAssemblyFunctionInfo>()->initializeBaseYamlFields(YamlMFI); 53052221d56SHeejin Ahn return false; 53152221d56SHeejin Ahn } 532