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This CL 1. Creates Utils/ directory under lib/Target/WebAssembly 2. Moves existing WebAssemblyUtilities.cpp|h into the Utils/ directory 3. Creates Utils/WebAssemblyTypeUtilities.cpp|h and put type declarataions and type conversion functions scattered in various places into this single place. It has been suggested several times that it is not easy to share utility functions between subdirectories (AsmParser, DIsassembler, MCTargetDesc, ...). Sometimes we ended up [[ https://reviews.llvm.org/D92840#2478863 | duplicating ]] the same function because of this. There are already other targets doing this: AArch64, AMDGPU, and ARM have Utils/ subdirectory under their target directory. This extracts the utility functions into a single directory Utils/ and make them sharable among all passes in WebAssembly/ and its subdirectories. Also I believe gathering all type-related conversion functionalities into a single place makes it more usable. (Actually I was working on another CL that uses various type conversion functions scattered in multiple places, which became the motivation for this CL.) Reviewed By: dschuff, aardappel Differential Revision: https://reviews.llvm.org/D100995
549 lines
20 KiB
C++
549 lines
20 KiB
C++
//===-- WebAssemblyAsmPrinter.cpp - WebAssembly LLVM assembly writer ------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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///
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/// \file
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/// This file contains a printer that converts from our internal
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/// representation of machine-dependent LLVM code to the WebAssembly assembly
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/// language.
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///
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//===----------------------------------------------------------------------===//
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#include "WebAssemblyAsmPrinter.h"
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#include "MCTargetDesc/WebAssemblyMCTargetDesc.h"
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#include "MCTargetDesc/WebAssemblyTargetStreamer.h"
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#include "TargetInfo/WebAssemblyTargetInfo.h"
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#include "Utils/WebAssemblyTypeUtilities.h"
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#include "Utils/WebAssemblyUtilities.h"
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#include "WebAssembly.h"
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#include "WebAssemblyMCInstLower.h"
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#include "WebAssemblyMachineFunctionInfo.h"
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#include "WebAssemblyRegisterInfo.h"
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#include "WebAssemblyTargetMachine.h"
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#include "llvm/ADT/SmallSet.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/BinaryFormat/Wasm.h"
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#include "llvm/CodeGen/Analysis.h"
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#include "llvm/CodeGen/AsmPrinter.h"
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#include "llvm/CodeGen/MachineConstantPool.h"
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#include "llvm/CodeGen/MachineInstr.h"
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#include "llvm/CodeGen/MachineModuleInfoImpls.h"
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#include "llvm/IR/DataLayout.h"
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#include "llvm/IR/DebugInfoMetadata.h"
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#include "llvm/IR/GlobalVariable.h"
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#include "llvm/IR/Metadata.h"
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#include "llvm/MC/MCContext.h"
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#include "llvm/MC/MCSectionWasm.h"
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#include "llvm/MC/MCStreamer.h"
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#include "llvm/MC/MCSymbol.h"
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#include "llvm/MC/MCSymbolWasm.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/TargetRegistry.h"
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#include "llvm/Support/raw_ostream.h"
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using namespace llvm;
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#define DEBUG_TYPE "asm-printer"
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extern cl::opt<bool> WasmKeepRegisters;
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extern cl::opt<bool> EnableEmException;
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extern cl::opt<bool> EnableEmSjLj;
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//===----------------------------------------------------------------------===//
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// Helpers.
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//===----------------------------------------------------------------------===//
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MVT WebAssemblyAsmPrinter::getRegType(unsigned RegNo) const {
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const TargetRegisterInfo *TRI = Subtarget->getRegisterInfo();
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const TargetRegisterClass *TRC = MRI->getRegClass(RegNo);
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for (MVT T : {MVT::i32, MVT::i64, MVT::f32, MVT::f64, MVT::v16i8, MVT::v8i16,
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MVT::v4i32, MVT::v2i64, MVT::v4f32, MVT::v2f64})
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if (TRI->isTypeLegalForClass(*TRC, T))
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return T;
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LLVM_DEBUG(errs() << "Unknown type for register number: " << RegNo);
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llvm_unreachable("Unknown register type");
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return MVT::Other;
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}
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std::string WebAssemblyAsmPrinter::regToString(const MachineOperand &MO) {
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Register RegNo = MO.getReg();
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assert(Register::isVirtualRegister(RegNo) &&
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"Unlowered physical register encountered during assembly printing");
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assert(!MFI->isVRegStackified(RegNo));
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unsigned WAReg = MFI->getWAReg(RegNo);
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assert(WAReg != WebAssemblyFunctionInfo::UnusedReg);
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return '$' + utostr(WAReg);
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}
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WebAssemblyTargetStreamer *WebAssemblyAsmPrinter::getTargetStreamer() {
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MCTargetStreamer *TS = OutStreamer->getTargetStreamer();
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return static_cast<WebAssemblyTargetStreamer *>(TS);
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}
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// Emscripten exception handling helpers
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//
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// This converts invoke names generated by LowerEmscriptenEHSjLj to real names
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// that are expected by JavaScript glue code. The invoke names generated by
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// Emscripten JS glue code are based on their argument and return types; for
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// example, for a function that takes an i32 and returns nothing, it is
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// 'invoke_vi'. But the format of invoke generated by LowerEmscriptenEHSjLj pass
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// contains a mangled string generated from their IR types, for example,
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// "__invoke_void_%struct.mystruct*_int", because final wasm types are not
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// available in the IR pass. So we convert those names to the form that
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// Emscripten JS code expects.
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//
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// Refer to LowerEmscriptenEHSjLj pass for more details.
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// Returns true if the given function name is an invoke name generated by
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// LowerEmscriptenEHSjLj pass.
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static bool isEmscriptenInvokeName(StringRef Name) {
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if (Name.front() == '"' && Name.back() == '"')
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Name = Name.substr(1, Name.size() - 2);
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return Name.startswith("__invoke_");
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}
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// Returns a character that represents the given wasm value type in invoke
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// signatures.
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static char getInvokeSig(wasm::ValType VT) {
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switch (VT) {
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case wasm::ValType::I32:
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return 'i';
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case wasm::ValType::I64:
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return 'j';
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case wasm::ValType::F32:
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return 'f';
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case wasm::ValType::F64:
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return 'd';
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case wasm::ValType::V128:
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return 'V';
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case wasm::ValType::FUNCREF:
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return 'F';
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case wasm::ValType::EXTERNREF:
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return 'X';
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}
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llvm_unreachable("Unhandled wasm::ValType enum");
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}
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// Given the wasm signature, generate the invoke name in the format JS glue code
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// expects.
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static std::string getEmscriptenInvokeSymbolName(wasm::WasmSignature *Sig) {
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assert(Sig->Returns.size() <= 1);
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std::string Ret = "invoke_";
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if (!Sig->Returns.empty())
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for (auto VT : Sig->Returns)
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Ret += getInvokeSig(VT);
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else
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Ret += 'v';
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// Invokes' first argument is a pointer to the original function, so skip it
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for (unsigned I = 1, E = Sig->Params.size(); I < E; I++)
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Ret += getInvokeSig(Sig->Params[I]);
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return Ret;
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}
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//===----------------------------------------------------------------------===//
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// WebAssemblyAsmPrinter Implementation.
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//===----------------------------------------------------------------------===//
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MCSymbolWasm *WebAssemblyAsmPrinter::getMCSymbolForFunction(
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const Function *F, bool EnableEmEH, wasm::WasmSignature *Sig,
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bool &InvokeDetected) {
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MCSymbolWasm *WasmSym = nullptr;
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if (EnableEmEH && isEmscriptenInvokeName(F->getName())) {
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assert(Sig);
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InvokeDetected = true;
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if (Sig->Returns.size() > 1) {
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std::string Msg =
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"Emscripten EH/SjLj does not support multivalue returns: " +
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std::string(F->getName()) + ": " +
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WebAssembly::signatureToString(Sig);
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report_fatal_error(Msg);
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}
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WasmSym = cast<MCSymbolWasm>(
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GetExternalSymbolSymbol(getEmscriptenInvokeSymbolName(Sig)));
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} else {
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WasmSym = cast<MCSymbolWasm>(getSymbol(F));
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}
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return WasmSym;
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}
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void WebAssemblyAsmPrinter::emitEndOfAsmFile(Module &M) {
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for (auto &It : OutContext.getSymbols()) {
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// Emit .globaltype, .eventtype, or .tabletype declarations.
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auto Sym = cast<MCSymbolWasm>(It.getValue());
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if (Sym->getType() == wasm::WASM_SYMBOL_TYPE_GLOBAL)
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getTargetStreamer()->emitGlobalType(Sym);
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else if (Sym->getType() == wasm::WASM_SYMBOL_TYPE_EVENT)
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getTargetStreamer()->emitEventType(Sym);
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else if (Sym->getType() == wasm::WASM_SYMBOL_TYPE_TABLE)
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getTargetStreamer()->emitTableType(Sym);
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}
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DenseSet<MCSymbol *> InvokeSymbols;
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bool HasAddressTakenFunction = false;
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for (const auto &F : M) {
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if (F.isIntrinsic())
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continue;
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if (F.hasAddressTaken())
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HasAddressTakenFunction = true;
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// Emit function type info for all undefined functions
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if (F.isDeclarationForLinker()) {
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SmallVector<MVT, 4> Results;
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SmallVector<MVT, 4> Params;
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computeSignatureVTs(F.getFunctionType(), &F, F, TM, Params, Results);
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// At this point these MCSymbols may or may not have been created already
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// and thus also contain a signature, but we need to get the signature
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// anyway here in case it is an invoke that has not yet been created. We
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// will discard it later if it turns out not to be necessary.
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auto Signature = signatureFromMVTs(Results, Params);
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bool InvokeDetected = false;
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auto *Sym = getMCSymbolForFunction(&F, EnableEmException || EnableEmSjLj,
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Signature.get(), InvokeDetected);
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// Multiple functions can be mapped to the same invoke symbol. For
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// example, two IR functions '__invoke_void_i8*' and '__invoke_void_i32'
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// are both mapped to '__invoke_vi'. We keep them in a set once we emit an
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// Emscripten EH symbol so we don't emit the same symbol twice.
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if (InvokeDetected && !InvokeSymbols.insert(Sym).second)
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continue;
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Sym->setType(wasm::WASM_SYMBOL_TYPE_FUNCTION);
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if (!Sym->getSignature()) {
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Sym->setSignature(Signature.get());
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addSignature(std::move(Signature));
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} else {
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// This symbol has already been created and had a signature. Discard it.
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Signature.reset();
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}
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getTargetStreamer()->emitFunctionType(Sym);
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if (F.hasFnAttribute("wasm-import-module")) {
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StringRef Name =
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F.getFnAttribute("wasm-import-module").getValueAsString();
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Sym->setImportModule(storeName(Name));
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getTargetStreamer()->emitImportModule(Sym, Name);
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}
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if (F.hasFnAttribute("wasm-import-name")) {
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// If this is a converted Emscripten EH/SjLj symbol, we shouldn't use
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// the original function name but the converted symbol name.
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StringRef Name =
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InvokeDetected
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? Sym->getName()
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: F.getFnAttribute("wasm-import-name").getValueAsString();
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Sym->setImportName(storeName(Name));
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getTargetStreamer()->emitImportName(Sym, Name);
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}
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}
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if (F.hasFnAttribute("wasm-export-name")) {
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auto *Sym = cast<MCSymbolWasm>(getSymbol(&F));
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StringRef Name = F.getFnAttribute("wasm-export-name").getValueAsString();
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Sym->setExportName(storeName(Name));
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getTargetStreamer()->emitExportName(Sym, Name);
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}
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}
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// When a function's address is taken, a TABLE_INDEX relocation is emitted
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// against the function symbol at the use site. However the relocation
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// doesn't explicitly refer to the table. In the future we may want to
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// define a new kind of reloc against both the function and the table, so
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// that the linker can see that the function symbol keeps the table alive,
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// but for now manually mark the table as live.
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if (HasAddressTakenFunction) {
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MCSymbolWasm *FunctionTable =
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WebAssembly::getOrCreateFunctionTableSymbol(OutContext, Subtarget);
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OutStreamer->emitSymbolAttribute(FunctionTable, MCSA_NoDeadStrip);
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}
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for (const auto &G : M.globals()) {
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if (!G.hasInitializer() && G.hasExternalLinkage()) {
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if (G.getValueType()->isSized()) {
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uint16_t Size = M.getDataLayout().getTypeAllocSize(G.getValueType());
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OutStreamer->emitELFSize(getSymbol(&G),
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MCConstantExpr::create(Size, OutContext));
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}
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}
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}
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if (const NamedMDNode *Named = M.getNamedMetadata("wasm.custom_sections")) {
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for (const Metadata *MD : Named->operands()) {
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const auto *Tuple = dyn_cast<MDTuple>(MD);
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if (!Tuple || Tuple->getNumOperands() != 2)
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continue;
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const MDString *Name = dyn_cast<MDString>(Tuple->getOperand(0));
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const MDString *Contents = dyn_cast<MDString>(Tuple->getOperand(1));
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if (!Name || !Contents)
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continue;
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OutStreamer->PushSection();
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std::string SectionName = (".custom_section." + Name->getString()).str();
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MCSectionWasm *MySection =
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OutContext.getWasmSection(SectionName, SectionKind::getMetadata());
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OutStreamer->SwitchSection(MySection);
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OutStreamer->emitBytes(Contents->getString());
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OutStreamer->PopSection();
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}
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}
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EmitProducerInfo(M);
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EmitTargetFeatures(M);
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}
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void WebAssemblyAsmPrinter::EmitProducerInfo(Module &M) {
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llvm::SmallVector<std::pair<std::string, std::string>, 4> Languages;
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if (const NamedMDNode *Debug = M.getNamedMetadata("llvm.dbg.cu")) {
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llvm::SmallSet<StringRef, 4> SeenLanguages;
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for (size_t I = 0, E = Debug->getNumOperands(); I < E; ++I) {
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const auto *CU = cast<DICompileUnit>(Debug->getOperand(I));
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StringRef Language = dwarf::LanguageString(CU->getSourceLanguage());
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Language.consume_front("DW_LANG_");
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if (SeenLanguages.insert(Language).second)
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Languages.emplace_back(Language.str(), "");
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}
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}
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llvm::SmallVector<std::pair<std::string, std::string>, 4> Tools;
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if (const NamedMDNode *Ident = M.getNamedMetadata("llvm.ident")) {
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llvm::SmallSet<StringRef, 4> SeenTools;
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for (size_t I = 0, E = Ident->getNumOperands(); I < E; ++I) {
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const auto *S = cast<MDString>(Ident->getOperand(I)->getOperand(0));
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std::pair<StringRef, StringRef> Field = S->getString().split("version");
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StringRef Name = Field.first.trim();
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StringRef Version = Field.second.trim();
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if (SeenTools.insert(Name).second)
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Tools.emplace_back(Name.str(), Version.str());
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}
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}
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int FieldCount = int(!Languages.empty()) + int(!Tools.empty());
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if (FieldCount != 0) {
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MCSectionWasm *Producers = OutContext.getWasmSection(
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".custom_section.producers", SectionKind::getMetadata());
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OutStreamer->PushSection();
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OutStreamer->SwitchSection(Producers);
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OutStreamer->emitULEB128IntValue(FieldCount);
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for (auto &Producers : {std::make_pair("language", &Languages),
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std::make_pair("processed-by", &Tools)}) {
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if (Producers.second->empty())
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continue;
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OutStreamer->emitULEB128IntValue(strlen(Producers.first));
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OutStreamer->emitBytes(Producers.first);
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OutStreamer->emitULEB128IntValue(Producers.second->size());
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for (auto &Producer : *Producers.second) {
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OutStreamer->emitULEB128IntValue(Producer.first.size());
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OutStreamer->emitBytes(Producer.first);
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OutStreamer->emitULEB128IntValue(Producer.second.size());
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OutStreamer->emitBytes(Producer.second);
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}
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}
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OutStreamer->PopSection();
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}
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}
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void WebAssemblyAsmPrinter::EmitTargetFeatures(Module &M) {
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struct FeatureEntry {
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uint8_t Prefix;
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std::string Name;
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};
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// Read target features and linkage policies from module metadata
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SmallVector<FeatureEntry, 4> EmittedFeatures;
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auto EmitFeature = [&](std::string Feature) {
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std::string MDKey = (StringRef("wasm-feature-") + Feature).str();
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Metadata *Policy = M.getModuleFlag(MDKey);
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if (Policy == nullptr)
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return;
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FeatureEntry Entry;
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Entry.Prefix = 0;
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Entry.Name = Feature;
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if (auto *MD = cast<ConstantAsMetadata>(Policy))
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if (auto *I = cast<ConstantInt>(MD->getValue()))
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Entry.Prefix = I->getZExtValue();
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// Silently ignore invalid metadata
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if (Entry.Prefix != wasm::WASM_FEATURE_PREFIX_USED &&
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Entry.Prefix != wasm::WASM_FEATURE_PREFIX_REQUIRED &&
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Entry.Prefix != wasm::WASM_FEATURE_PREFIX_DISALLOWED)
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return;
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EmittedFeatures.push_back(Entry);
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};
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for (const SubtargetFeatureKV &KV : WebAssemblyFeatureKV) {
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EmitFeature(KV.Key);
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}
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// This pseudo-feature tells the linker whether shared memory would be safe
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EmitFeature("shared-mem");
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if (EmittedFeatures.size() == 0)
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return;
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// Emit features and linkage policies into the "target_features" section
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MCSectionWasm *FeaturesSection = OutContext.getWasmSection(
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".custom_section.target_features", SectionKind::getMetadata());
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OutStreamer->PushSection();
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OutStreamer->SwitchSection(FeaturesSection);
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OutStreamer->emitULEB128IntValue(EmittedFeatures.size());
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for (auto &F : EmittedFeatures) {
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OutStreamer->emitIntValue(F.Prefix, 1);
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OutStreamer->emitULEB128IntValue(F.Name.size());
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OutStreamer->emitBytes(F.Name);
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}
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OutStreamer->PopSection();
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}
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void WebAssemblyAsmPrinter::emitConstantPool() {
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assert(MF->getConstantPool()->getConstants().empty() &&
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"WebAssembly disables constant pools");
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}
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void WebAssemblyAsmPrinter::emitJumpTableInfo() {
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// Nothing to do; jump tables are incorporated into the instruction stream.
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}
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void WebAssemblyAsmPrinter::emitFunctionBodyStart() {
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const Function &F = MF->getFunction();
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SmallVector<MVT, 1> ResultVTs;
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SmallVector<MVT, 4> ParamVTs;
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computeSignatureVTs(F.getFunctionType(), &F, F, TM, ParamVTs, ResultVTs);
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auto Signature = signatureFromMVTs(ResultVTs, ParamVTs);
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auto *WasmSym = cast<MCSymbolWasm>(CurrentFnSym);
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WasmSym->setSignature(Signature.get());
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addSignature(std::move(Signature));
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WasmSym->setType(wasm::WASM_SYMBOL_TYPE_FUNCTION);
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getTargetStreamer()->emitFunctionType(WasmSym);
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// Emit the function index.
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if (MDNode *Idx = F.getMetadata("wasm.index")) {
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assert(Idx->getNumOperands() == 1);
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getTargetStreamer()->emitIndIdx(AsmPrinter::lowerConstant(
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cast<ConstantAsMetadata>(Idx->getOperand(0))->getValue()));
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}
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SmallVector<wasm::ValType, 16> Locals;
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valTypesFromMVTs(MFI->getLocals(), Locals);
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getTargetStreamer()->emitLocal(Locals);
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AsmPrinter::emitFunctionBodyStart();
|
|
}
|
|
|
|
void WebAssemblyAsmPrinter::emitInstruction(const MachineInstr *MI) {
|
|
LLVM_DEBUG(dbgs() << "EmitInstruction: " << *MI << '\n');
|
|
|
|
switch (MI->getOpcode()) {
|
|
case WebAssembly::ARGUMENT_i32:
|
|
case WebAssembly::ARGUMENT_i32_S:
|
|
case WebAssembly::ARGUMENT_i64:
|
|
case WebAssembly::ARGUMENT_i64_S:
|
|
case WebAssembly::ARGUMENT_f32:
|
|
case WebAssembly::ARGUMENT_f32_S:
|
|
case WebAssembly::ARGUMENT_f64:
|
|
case WebAssembly::ARGUMENT_f64_S:
|
|
case WebAssembly::ARGUMENT_v16i8:
|
|
case WebAssembly::ARGUMENT_v16i8_S:
|
|
case WebAssembly::ARGUMENT_v8i16:
|
|
case WebAssembly::ARGUMENT_v8i16_S:
|
|
case WebAssembly::ARGUMENT_v4i32:
|
|
case WebAssembly::ARGUMENT_v4i32_S:
|
|
case WebAssembly::ARGUMENT_v2i64:
|
|
case WebAssembly::ARGUMENT_v2i64_S:
|
|
case WebAssembly::ARGUMENT_v4f32:
|
|
case WebAssembly::ARGUMENT_v4f32_S:
|
|
case WebAssembly::ARGUMENT_v2f64:
|
|
case WebAssembly::ARGUMENT_v2f64_S:
|
|
// These represent values which are live into the function entry, so there's
|
|
// no instruction to emit.
|
|
break;
|
|
case WebAssembly::FALLTHROUGH_RETURN: {
|
|
// These instructions represent the implicit return at the end of a
|
|
// function body.
|
|
if (isVerbose()) {
|
|
OutStreamer->AddComment("fallthrough-return");
|
|
OutStreamer->AddBlankLine();
|
|
}
|
|
break;
|
|
}
|
|
case WebAssembly::COMPILER_FENCE:
|
|
// This is a compiler barrier that prevents instruction reordering during
|
|
// backend compilation, and should not be emitted.
|
|
break;
|
|
default: {
|
|
WebAssemblyMCInstLower MCInstLowering(OutContext, *this);
|
|
MCInst TmpInst;
|
|
MCInstLowering.lower(MI, TmpInst);
|
|
EmitToStreamer(*OutStreamer, TmpInst);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
bool WebAssemblyAsmPrinter::PrintAsmOperand(const MachineInstr *MI,
|
|
unsigned OpNo,
|
|
const char *ExtraCode,
|
|
raw_ostream &OS) {
|
|
// First try the generic code, which knows about modifiers like 'c' and 'n'.
|
|
if (!AsmPrinter::PrintAsmOperand(MI, OpNo, ExtraCode, OS))
|
|
return false;
|
|
|
|
if (!ExtraCode) {
|
|
const MachineOperand &MO = MI->getOperand(OpNo);
|
|
switch (MO.getType()) {
|
|
case MachineOperand::MO_Immediate:
|
|
OS << MO.getImm();
|
|
return false;
|
|
case MachineOperand::MO_Register:
|
|
// FIXME: only opcode that still contains registers, as required by
|
|
// MachineInstr::getDebugVariable().
|
|
assert(MI->getOpcode() == WebAssembly::INLINEASM);
|
|
OS << regToString(MO);
|
|
return false;
|
|
case MachineOperand::MO_GlobalAddress:
|
|
PrintSymbolOperand(MO, OS);
|
|
return false;
|
|
case MachineOperand::MO_ExternalSymbol:
|
|
GetExternalSymbolSymbol(MO.getSymbolName())->print(OS, MAI);
|
|
printOffset(MO.getOffset(), OS);
|
|
return false;
|
|
case MachineOperand::MO_MachineBasicBlock:
|
|
MO.getMBB()->getSymbol()->print(OS, MAI);
|
|
return false;
|
|
default:
|
|
break;
|
|
}
|
|
}
|
|
|
|
return true;
|
|
}
|
|
|
|
bool WebAssemblyAsmPrinter::PrintAsmMemoryOperand(const MachineInstr *MI,
|
|
unsigned OpNo,
|
|
const char *ExtraCode,
|
|
raw_ostream &OS) {
|
|
// The current approach to inline asm is that "r" constraints are expressed
|
|
// as local indices, rather than values on the operand stack. This simplifies
|
|
// using "r" as it eliminates the need to push and pop the values in a
|
|
// particular order, however it also makes it impossible to have an "m"
|
|
// constraint. So we don't support it.
|
|
|
|
return AsmPrinter::PrintAsmMemoryOperand(MI, OpNo, ExtraCode, OS);
|
|
}
|
|
|
|
// Force static initialization.
|
|
extern "C" LLVM_EXTERNAL_VISIBILITY void LLVMInitializeWebAssemblyAsmPrinter() {
|
|
RegisterAsmPrinter<WebAssemblyAsmPrinter> X(getTheWebAssemblyTarget32());
|
|
RegisterAsmPrinter<WebAssemblyAsmPrinter> Y(getTheWebAssemblyTarget64());
|
|
}
|