11a427287SDan Gohman //==- WebAssemblyDisassembler.cpp - Disassembler for WebAssembly -*- C++ -*-==// 21a427287SDan 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 61a427287SDan Gohman // 71a427287SDan Gohman //===----------------------------------------------------------------------===// 81a427287SDan Gohman /// 91a427287SDan Gohman /// \file 105f8f34e4SAdrian Prantl /// This file is part of the WebAssembly Disassembler. 111a427287SDan Gohman /// 121a427287SDan Gohman /// It contains code to translate the data produced by the decoder into 131a427287SDan Gohman /// MCInsts. 141a427287SDan Gohman /// 151a427287SDan Gohman //===----------------------------------------------------------------------===// 161a427287SDan Gohman 17c6c42137SRichard Trieu #include "TargetInfo/WebAssemblyTargetInfo.h" 18*0b2bc69bSHeejin Ahn #include "Utils/WebAssemblyTypeUtilities.h" 191a427287SDan Gohman #include "llvm/MC/MCContext.h" 20c50b8907SBenjamin Kramer #include "llvm/MC/MCDisassembler/MCDisassembler.h" 2116c16827SSam Clegg #include "llvm/MC/MCFixedLenDisassembler.h" 221a427287SDan Gohman #include "llvm/MC/MCInst.h" 231a427287SDan Gohman #include "llvm/MC/MCInstrInfo.h" 241a427287SDan Gohman #include "llvm/MC/MCSubtargetInfo.h" 251a427287SDan Gohman #include "llvm/MC/MCSymbol.h" 262cb27072SThomas Lively #include "llvm/MC/MCSymbolWasm.h" 271a427287SDan Gohman #include "llvm/Support/Endian.h" 2816c16827SSam Clegg #include "llvm/Support/LEB128.h" 291a427287SDan Gohman #include "llvm/Support/TargetRegistry.h" 3016c16827SSam Clegg 311a427287SDan Gohman using namespace llvm; 321a427287SDan Gohman 331a427287SDan Gohman #define DEBUG_TYPE "wasm-disassembler" 341a427287SDan Gohman 3516c16827SSam Clegg using DecodeStatus = MCDisassembler::DecodeStatus; 3616c16827SSam Clegg 3716c16827SSam Clegg #include "WebAssemblyGenDisassemblerTables.inc" 3816c16827SSam Clegg 391a427287SDan Gohman namespace { 4049550663SFangrui Song static constexpr int WebAssemblyInstructionTableSize = 256; 4149550663SFangrui Song 421a427287SDan Gohman class WebAssemblyDisassembler final : public MCDisassembler { 431a427287SDan Gohman std::unique_ptr<const MCInstrInfo> MCII; 441a427287SDan Gohman 451a427287SDan Gohman DecodeStatus getInstruction(MCInst &Instr, uint64_t &Size, 461a427287SDan Gohman ArrayRef<uint8_t> Bytes, uint64_t Address, 471a427287SDan Gohman raw_ostream &CStream) const override; 485bd33de9SRonak Chauhan Optional<DecodeStatus> onSymbolStart(SymbolInfoTy &Symbol, uint64_t &Size, 49480a16d5SRonak Chauhan ArrayRef<uint8_t> Bytes, 50480a16d5SRonak Chauhan uint64_t Address, 51f3b762a0SWouter van Oortmerssen raw_ostream &CStream) const override; 521a427287SDan Gohman 531a427287SDan Gohman public: 541a427287SDan Gohman WebAssemblyDisassembler(const MCSubtargetInfo &STI, MCContext &Ctx, 551a427287SDan Gohman std::unique_ptr<const MCInstrInfo> MCII) 561a427287SDan Gohman : MCDisassembler(STI, Ctx), MCII(std::move(MCII)) {} 571a427287SDan Gohman }; 581a427287SDan Gohman } // end anonymous namespace 591a427287SDan Gohman 601a427287SDan Gohman static MCDisassembler *createWebAssemblyDisassembler(const Target &T, 611a427287SDan Gohman const MCSubtargetInfo &STI, 621a427287SDan Gohman MCContext &Ctx) { 631a427287SDan Gohman std::unique_ptr<const MCInstrInfo> MCII(T.createMCInstrInfo()); 641a427287SDan Gohman return new WebAssemblyDisassembler(STI, Ctx, std::move(MCII)); 651a427287SDan Gohman } 661a427287SDan Gohman 670dbcb363STom Stellard extern "C" LLVM_EXTERNAL_VISIBILITY void 680dbcb363STom Stellard LLVMInitializeWebAssemblyDisassembler() { 691a427287SDan Gohman // Register the disassembler for each target. 70f42454b9SMehdi Amini TargetRegistry::RegisterMCDisassembler(getTheWebAssemblyTarget32(), 711a427287SDan Gohman createWebAssemblyDisassembler); 72f42454b9SMehdi Amini TargetRegistry::RegisterMCDisassembler(getTheWebAssemblyTarget64(), 731a427287SDan Gohman createWebAssemblyDisassembler); 741a427287SDan Gohman } 751a427287SDan Gohman 76fc3163b6SThomas Lively static int nextByte(ArrayRef<uint8_t> Bytes, uint64_t &Size) { 7716c16827SSam Clegg if (Size >= Bytes.size()) 7816c16827SSam Clegg return -1; 7916c16827SSam Clegg auto V = Bytes[Size]; 8016c16827SSam Clegg Size++; 8116c16827SSam Clegg return V; 8216c16827SSam Clegg } 8316c16827SSam Clegg 842faf0794SThomas Lively static bool nextLEB(int64_t &Val, ArrayRef<uint8_t> Bytes, uint64_t &Size, 85f3b762a0SWouter van Oortmerssen bool Signed) { 8616c16827SSam Clegg unsigned N = 0; 8716c16827SSam Clegg const char *Error = nullptr; 882faf0794SThomas Lively Val = Signed ? decodeSLEB128(Bytes.data() + Size, &N, 8916c16827SSam Clegg Bytes.data() + Bytes.size(), &Error) 902faf0794SThomas Lively : static_cast<int64_t>(decodeULEB128(Bytes.data() + Size, &N, 912faf0794SThomas Lively Bytes.data() + Bytes.size(), 922faf0794SThomas Lively &Error)); 9316c16827SSam Clegg if (Error) 9416c16827SSam Clegg return false; 9516c16827SSam Clegg Size += N; 962faf0794SThomas Lively return true; 972faf0794SThomas Lively } 982faf0794SThomas Lively 992faf0794SThomas Lively static bool parseLEBImmediate(MCInst &MI, uint64_t &Size, 1002faf0794SThomas Lively ArrayRef<uint8_t> Bytes, bool Signed) { 1012faf0794SThomas Lively int64_t Val; 1022faf0794SThomas Lively if (!nextLEB(Val, Bytes, Size, Signed)) 1032faf0794SThomas Lively return false; 10416c16827SSam Clegg MI.addOperand(MCOperand::createImm(Val)); 10516c16827SSam Clegg return true; 10616c16827SSam Clegg } 10716c16827SSam Clegg 10816c16827SSam Clegg template <typename T> 10922442924SThomas Lively bool parseImmediate(MCInst &MI, uint64_t &Size, ArrayRef<uint8_t> Bytes) { 11016c16827SSam Clegg if (Size + sizeof(T) > Bytes.size()) 11116c16827SSam Clegg return false; 112df6770f0SHeejin Ahn T Val = support::endian::read<T, support::endianness::little, 1>( 1130d9f3f7fSWouter van Oortmerssen Bytes.data() + Size); 11416c16827SSam Clegg Size += sizeof(T); 11522442924SThomas Lively if (std::is_floating_point<T>::value) { 116e5269da9SFangrui Song MI.addOperand( 117e5269da9SFangrui Song MCOperand::createDFPImm(bit_cast<uint64_t>(static_cast<double>(Val)))); 11822442924SThomas Lively } else { 11922442924SThomas Lively MI.addOperand(MCOperand::createImm(static_cast<int64_t>(Val))); 12022442924SThomas Lively } 12116c16827SSam Clegg return true; 12216c16827SSam Clegg } 12316c16827SSam Clegg 124480a16d5SRonak Chauhan Optional<MCDisassembler::DecodeStatus> WebAssemblyDisassembler::onSymbolStart( 1255bd33de9SRonak Chauhan SymbolInfoTy &Symbol, uint64_t &Size, ArrayRef<uint8_t> Bytes, 1265bd33de9SRonak Chauhan uint64_t Address, raw_ostream &CStream) const { 127f3b762a0SWouter van Oortmerssen Size = 0; 128f3b762a0SWouter van Oortmerssen if (Address == 0) { 129f3b762a0SWouter van Oortmerssen // Start of a code section: we're parsing only the function count. 130f3b762a0SWouter van Oortmerssen int64_t FunctionCount; 131f3b762a0SWouter van Oortmerssen if (!nextLEB(FunctionCount, Bytes, Size, false)) 132480a16d5SRonak Chauhan return None; 133f3b762a0SWouter van Oortmerssen outs() << " # " << FunctionCount << " functions in section."; 134f3b762a0SWouter van Oortmerssen } else { 135f3b762a0SWouter van Oortmerssen // Parse the start of a single function. 136f3b762a0SWouter van Oortmerssen int64_t BodySize, LocalEntryCount; 137f3b762a0SWouter van Oortmerssen if (!nextLEB(BodySize, Bytes, Size, false) || 138f3b762a0SWouter van Oortmerssen !nextLEB(LocalEntryCount, Bytes, Size, false)) 139480a16d5SRonak Chauhan return None; 140f3b762a0SWouter van Oortmerssen if (LocalEntryCount) { 141f3b762a0SWouter van Oortmerssen outs() << " .local "; 142f3b762a0SWouter van Oortmerssen for (int64_t I = 0; I < LocalEntryCount; I++) { 143f3b762a0SWouter van Oortmerssen int64_t Count, Type; 144f3b762a0SWouter van Oortmerssen if (!nextLEB(Count, Bytes, Size, false) || 145f3b762a0SWouter van Oortmerssen !nextLEB(Type, Bytes, Size, false)) 146480a16d5SRonak Chauhan return None; 147f3b762a0SWouter van Oortmerssen for (int64_t J = 0; J < Count; J++) { 148f3b762a0SWouter van Oortmerssen if (I || J) 149f3b762a0SWouter van Oortmerssen outs() << ", "; 150f3b762a0SWouter van Oortmerssen outs() << WebAssembly::anyTypeToString(Type); 151f3b762a0SWouter van Oortmerssen } 152f3b762a0SWouter van Oortmerssen } 153f3b762a0SWouter van Oortmerssen } 154f3b762a0SWouter van Oortmerssen } 155f3b762a0SWouter van Oortmerssen outs() << "\n"; 156f3b762a0SWouter van Oortmerssen return MCDisassembler::Success; 157f3b762a0SWouter van Oortmerssen } 158f3b762a0SWouter van Oortmerssen 1591a427287SDan Gohman MCDisassembler::DecodeStatus WebAssemblyDisassembler::getInstruction( 1601a427287SDan Gohman MCInst &MI, uint64_t &Size, ArrayRef<uint8_t> Bytes, uint64_t /*Address*/, 1616fdd6a7bSFangrui Song raw_ostream &CS) const { 16216c16827SSam Clegg CommentStream = &CS; 16316c16827SSam Clegg Size = 0; 164fc3163b6SThomas Lively int Opc = nextByte(Bytes, Size); 16516c16827SSam Clegg if (Opc < 0) 1661a427287SDan Gohman return MCDisassembler::Fail; 16716c16827SSam Clegg const auto *WasmInst = &InstructionTable0[Opc]; 16816c16827SSam Clegg // If this is a prefix byte, indirect to another table. 16916c16827SSam Clegg if (WasmInst->ET == ET_Prefix) { 17016c16827SSam Clegg WasmInst = nullptr; 17116c16827SSam Clegg // Linear search, so far only 2 entries. 17216c16827SSam Clegg for (auto PT = PrefixTable; PT->Table; PT++) { 17316c16827SSam Clegg if (PT->Prefix == Opc) { 17416c16827SSam Clegg WasmInst = PT->Table; 17516c16827SSam Clegg break; 17616c16827SSam Clegg } 17716c16827SSam Clegg } 17816c16827SSam Clegg if (!WasmInst) 17916c16827SSam Clegg return MCDisassembler::Fail; 1802faf0794SThomas Lively int64_t PrefixedOpc; 181f3b762a0SWouter van Oortmerssen if (!nextLEB(PrefixedOpc, Bytes, Size, false)) 18216c16827SSam Clegg return MCDisassembler::Fail; 1832faf0794SThomas Lively if (PrefixedOpc < 0 || PrefixedOpc >= WebAssemblyInstructionTableSize) 1842faf0794SThomas Lively return MCDisassembler::Fail; 1852faf0794SThomas Lively WasmInst += PrefixedOpc; 18616c16827SSam Clegg } 18716c16827SSam Clegg if (WasmInst->ET == ET_Unused) 18816c16827SSam Clegg return MCDisassembler::Fail; 18916c16827SSam Clegg // At this point we must have a valid instruction to decode. 19016c16827SSam Clegg assert(WasmInst->ET == ET_Instruction); 19116c16827SSam Clegg MI.setOpcode(WasmInst->Opcode); 19216c16827SSam Clegg // Parse any operands. 19316c16827SSam Clegg for (uint8_t OPI = 0; OPI < WasmInst->NumOperands; OPI++) { 194820c6263SWouter van Oortmerssen auto OT = OperandTable[WasmInst->OperandStart + OPI]; 195820c6263SWouter van Oortmerssen switch (OT) { 19616c16827SSam Clegg // ULEB operands: 19716c16827SSam Clegg case WebAssembly::OPERAND_BASIC_BLOCK: 19816c16827SSam Clegg case WebAssembly::OPERAND_LOCAL: 19916c16827SSam Clegg case WebAssembly::OPERAND_GLOBAL: 20016c16827SSam Clegg case WebAssembly::OPERAND_FUNCTION32: 20169e2797eSPaulo Matos case WebAssembly::OPERAND_TABLE: 20216c16827SSam Clegg case WebAssembly::OPERAND_OFFSET32: 203d9e0bbd1SWouter van Oortmerssen case WebAssembly::OPERAND_OFFSET64: 20416c16827SSam Clegg case WebAssembly::OPERAND_P2ALIGN: 20516c16827SSam Clegg case WebAssembly::OPERAND_TYPEINDEX: 2068a28ce1aSWouter van Oortmerssen case WebAssembly::OPERAND_EVENT: 20716c16827SSam Clegg case MCOI::OPERAND_IMMEDIATE: { 20816c16827SSam Clegg if (!parseLEBImmediate(MI, Size, Bytes, false)) 20916c16827SSam Clegg return MCDisassembler::Fail; 21016c16827SSam Clegg break; 21116c16827SSam Clegg } 21216c16827SSam Clegg // SLEB operands: 21316c16827SSam Clegg case WebAssembly::OPERAND_I32IMM: 214ad72f685SWouter van Oortmerssen case WebAssembly::OPERAND_I64IMM: { 21516c16827SSam Clegg if (!parseLEBImmediate(MI, Size, Bytes, true)) 21616c16827SSam Clegg return MCDisassembler::Fail; 21716c16827SSam Clegg break; 21816c16827SSam Clegg } 2192cb27072SThomas Lively // block_type operands: 220ad72f685SWouter van Oortmerssen case WebAssembly::OPERAND_SIGNATURE: { 2212cb27072SThomas Lively int64_t Val; 2222cb27072SThomas Lively uint64_t PrevSize = Size; 2232cb27072SThomas Lively if (!nextLEB(Val, Bytes, Size, true)) 224ad72f685SWouter van Oortmerssen return MCDisassembler::Fail; 2252cb27072SThomas Lively if (Val < 0) { 2262cb27072SThomas Lively // Negative values are single septet value types or empty types 2272cb27072SThomas Lively if (Size != PrevSize + 1) { 2282cb27072SThomas Lively MI.addOperand( 2292cb27072SThomas Lively MCOperand::createImm(int64_t(WebAssembly::BlockType::Invalid))); 2302cb27072SThomas Lively } else { 2312cb27072SThomas Lively MI.addOperand(MCOperand::createImm(Val & 0x7f)); 2322cb27072SThomas Lively } 2332cb27072SThomas Lively } else { 2342cb27072SThomas Lively // We don't have access to the signature, so create a symbol without one 2352cb27072SThomas Lively MCSymbol *Sym = getContext().createTempSymbol("typeindex", true); 2362cb27072SThomas Lively auto *WasmSym = cast<MCSymbolWasm>(Sym); 2372cb27072SThomas Lively WasmSym->setType(wasm::WASM_SYMBOL_TYPE_FUNCTION); 2382cb27072SThomas Lively const MCExpr *Expr = MCSymbolRefExpr::create( 2392cb27072SThomas Lively WasmSym, MCSymbolRefExpr::VK_WASM_TYPEINDEX, getContext()); 2402cb27072SThomas Lively MI.addOperand(MCOperand::createExpr(Expr)); 2412cb27072SThomas Lively } 242ad72f685SWouter van Oortmerssen break; 243ad72f685SWouter van Oortmerssen } 244107c3a12SAndy Wingo // heap_type operands, for e.g. ref.null: 245107c3a12SAndy Wingo case WebAssembly::OPERAND_HEAPTYPE: { 246107c3a12SAndy Wingo int64_t Val; 247107c3a12SAndy Wingo uint64_t PrevSize = Size; 248107c3a12SAndy Wingo if (!nextLEB(Val, Bytes, Size, true)) 249107c3a12SAndy Wingo return MCDisassembler::Fail; 250107c3a12SAndy Wingo if (Val < 0 && Size == PrevSize + 1) { 251107c3a12SAndy Wingo // The HeapType encoding is like BlockType, in that encodings that 252107c3a12SAndy Wingo // decode as negative values indicate ValTypes. In practice we expect 253107c3a12SAndy Wingo // either wasm::ValType::EXTERNREF or wasm::ValType::FUNCREF here. 254107c3a12SAndy Wingo // 255107c3a12SAndy Wingo // The positive SLEB values are reserved for future expansion and are 256107c3a12SAndy Wingo // expected to be type indices in the typed function references 257107c3a12SAndy Wingo // proposal, and should disassemble as MCSymbolRefExpr as in BlockType 258107c3a12SAndy Wingo // above. 259107c3a12SAndy Wingo MI.addOperand(MCOperand::createImm(Val & 0x7f)); 260107c3a12SAndy Wingo } else { 261107c3a12SAndy Wingo MI.addOperand( 262107c3a12SAndy Wingo MCOperand::createImm(int64_t(WebAssembly::HeapType::Invalid))); 263107c3a12SAndy Wingo } 264107c3a12SAndy Wingo break; 265107c3a12SAndy Wingo } 26616c16827SSam Clegg // FP operands. 26716c16827SSam Clegg case WebAssembly::OPERAND_F32IMM: { 26822442924SThomas Lively if (!parseImmediate<float>(MI, Size, Bytes)) 26916c16827SSam Clegg return MCDisassembler::Fail; 27016c16827SSam Clegg break; 27116c16827SSam Clegg } 27216c16827SSam Clegg case WebAssembly::OPERAND_F64IMM: { 27322442924SThomas Lively if (!parseImmediate<double>(MI, Size, Bytes)) 27422442924SThomas Lively return MCDisassembler::Fail; 27522442924SThomas Lively break; 27622442924SThomas Lively } 27722442924SThomas Lively // Vector lane operands (not LEB encoded). 27822442924SThomas Lively case WebAssembly::OPERAND_VEC_I8IMM: { 27922442924SThomas Lively if (!parseImmediate<uint8_t>(MI, Size, Bytes)) 28022442924SThomas Lively return MCDisassembler::Fail; 28122442924SThomas Lively break; 28222442924SThomas Lively } 28322442924SThomas Lively case WebAssembly::OPERAND_VEC_I16IMM: { 28422442924SThomas Lively if (!parseImmediate<uint16_t>(MI, Size, Bytes)) 28522442924SThomas Lively return MCDisassembler::Fail; 28622442924SThomas Lively break; 28722442924SThomas Lively } 28822442924SThomas Lively case WebAssembly::OPERAND_VEC_I32IMM: { 28922442924SThomas Lively if (!parseImmediate<uint32_t>(MI, Size, Bytes)) 29022442924SThomas Lively return MCDisassembler::Fail; 29122442924SThomas Lively break; 29222442924SThomas Lively } 29322442924SThomas Lively case WebAssembly::OPERAND_VEC_I64IMM: { 29422442924SThomas Lively if (!parseImmediate<uint64_t>(MI, Size, Bytes)) 29516c16827SSam Clegg return MCDisassembler::Fail; 29616c16827SSam Clegg break; 29716c16827SSam Clegg } 298820c6263SWouter van Oortmerssen case WebAssembly::OPERAND_BRLIST: { 299820c6263SWouter van Oortmerssen int64_t TargetTableLen; 300820c6263SWouter van Oortmerssen if (!nextLEB(TargetTableLen, Bytes, Size, false)) 301820c6263SWouter van Oortmerssen return MCDisassembler::Fail; 302820c6263SWouter van Oortmerssen for (int64_t I = 0; I < TargetTableLen; I++) { 303820c6263SWouter van Oortmerssen if (!parseLEBImmediate(MI, Size, Bytes, false)) 304820c6263SWouter van Oortmerssen return MCDisassembler::Fail; 305820c6263SWouter van Oortmerssen } 306820c6263SWouter van Oortmerssen // Default case. 307820c6263SWouter van Oortmerssen if (!parseLEBImmediate(MI, Size, Bytes, false)) 308820c6263SWouter van Oortmerssen return MCDisassembler::Fail; 309820c6263SWouter van Oortmerssen break; 310820c6263SWouter van Oortmerssen } 311a733d08dSWouter van Oortmerssen case MCOI::OPERAND_REGISTER: 312a733d08dSWouter van Oortmerssen // The tablegen header currently does not have any register operands since 313a733d08dSWouter van Oortmerssen // we use only the stack (_S) instructions. 314a733d08dSWouter van Oortmerssen // If you hit this that probably means a bad instruction definition in 315a733d08dSWouter van Oortmerssen // tablegen. 316a733d08dSWouter van Oortmerssen llvm_unreachable("Register operand in WebAssemblyDisassembler"); 31716c16827SSam Clegg default: 31816c16827SSam Clegg llvm_unreachable("Unknown operand type in WebAssemblyDisassembler"); 31916c16827SSam Clegg } 32016c16827SSam Clegg } 32116c16827SSam Clegg return MCDisassembler::Success; 3221a427287SDan Gohman } 323