746 lines
22 KiB
C++
746 lines
22 KiB
C++
//===- Writer.cpp ---------------------------------------------------------===//
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//
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// The LLVM Linker
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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#include "Writer.h"
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#include "Config.h"
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#include "OutputSections.h"
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#include "OutputSegment.h"
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#include "SymbolTable.h"
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#include "WriterUtils.h"
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#include "lld/Common/ErrorHandler.h"
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#include "lld/Common/Memory.h"
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#include "lld/Common/Threads.h"
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#include "llvm/Support/FileOutputBuffer.h"
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#include "llvm/Support/Format.h"
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#include "llvm/Support/FormatVariadic.h"
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#include "llvm/Support/LEB128.h"
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#include <cstdarg>
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#define DEBUG_TYPE "lld"
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using namespace llvm;
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using namespace llvm::wasm;
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using namespace lld;
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using namespace lld::wasm;
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static constexpr int kStackAlignment = 16;
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namespace {
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// Traits for using WasmSignature in a DenseMap.
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struct WasmSignatureDenseMapInfo {
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static WasmSignature getEmptyKey() {
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WasmSignature Sig;
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Sig.ReturnType = 1;
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return Sig;
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}
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static WasmSignature getTombstoneKey() {
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WasmSignature Sig;
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Sig.ReturnType = 2;
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return Sig;
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}
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static unsigned getHashValue(const WasmSignature &Sig) {
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uintptr_t Value = 0;
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Value += DenseMapInfo<int32_t>::getHashValue(Sig.ReturnType);
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for (int32_t Param : Sig.ParamTypes)
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Value += DenseMapInfo<int32_t>::getHashValue(Param);
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return Value;
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}
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static bool isEqual(const WasmSignature &LHS, const WasmSignature &RHS) {
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return LHS == RHS;
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}
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};
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// The writer writes a SymbolTable result to a file.
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class Writer {
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public:
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void run();
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private:
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void openFile();
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uint32_t getTypeIndex(const WasmSignature &Sig);
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void assignSymbolIndexes();
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void calculateImports();
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void calculateOffsets();
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void calculateTypes();
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void createOutputSegments();
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void layoutMemory();
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void createHeader();
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void createSections();
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SyntheticSection *createSyntheticSection(uint32_t Type,
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std::string Name = "");
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// Builtin sections
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void createTypeSection();
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void createFunctionSection();
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void createTableSection();
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void createGlobalSection();
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void createExportSection();
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void createImportSection();
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void createMemorySection();
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void createElemSection();
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void createStartSection();
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void createCodeSection();
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void createDataSection();
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// Custom sections
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void createRelocSections();
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void createLinkingSection();
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void createNameSection();
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void writeHeader();
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void writeSections();
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uint64_t FileSize = 0;
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uint32_t DataSize = 0;
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uint32_t NumFunctions = 0;
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uint32_t NumMemoryPages = 0;
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uint32_t InitialTableOffset = 0;
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std::vector<const WasmSignature *> Types;
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DenseMap<WasmSignature, int32_t, WasmSignatureDenseMapInfo> TypeIndices;
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std::vector<const Symbol *> FunctionImports;
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std::vector<const Symbol *> GlobalImports;
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std::vector<const Symbol *> DefinedGlobals;
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std::vector<const Symbol *> IndirectFunctions;
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// Elements that are used to construct the final output
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std::string Header;
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std::vector<OutputSection *> OutputSections;
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std::unique_ptr<FileOutputBuffer> Buffer;
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std::vector<OutputSegment *> Segments;
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llvm::SmallDenseMap<StringRef, OutputSegment *> SegmentMap;
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};
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} // anonymous namespace
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static void debugPrint(const char *fmt, ...) {
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if (!errorHandler().Verbose)
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return;
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fprintf(stderr, "lld: ");
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va_list ap;
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va_start(ap, fmt);
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vfprintf(stderr, fmt, ap);
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va_end(ap);
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}
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void Writer::createImportSection() {
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uint32_t NumImports = FunctionImports.size() + GlobalImports.size();
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if (Config->ImportMemory)
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++NumImports;
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if (NumImports == 0)
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return;
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_IMPORT);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, NumImports, "import count");
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for (const Symbol *Sym : FunctionImports) {
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WasmImport Import;
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Import.Module = "env";
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Import.Field = Sym->getName();
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Import.Kind = WASM_EXTERNAL_FUNCTION;
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assert(TypeIndices.count(Sym->getFunctionType()) > 0);
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Import.SigIndex = TypeIndices.lookup(Sym->getFunctionType());
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writeImport(OS, Import);
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}
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if (Config->ImportMemory) {
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WasmImport Import;
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Import.Module = "env";
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Import.Field = "memory";
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Import.Kind = WASM_EXTERNAL_MEMORY;
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Import.Memory.Flags = 0;
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Import.Memory.Initial = NumMemoryPages;
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writeImport(OS, Import);
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}
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for (const Symbol *Sym : GlobalImports) {
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WasmImport Import;
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Import.Module = "env";
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Import.Field = Sym->getName();
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Import.Kind = WASM_EXTERNAL_GLOBAL;
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Import.Global.Mutable = false;
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Import.Global.Type = WASM_TYPE_I32;
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writeImport(OS, Import);
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}
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}
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void Writer::createTypeSection() {
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_TYPE);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, Types.size(), "type count");
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for (const WasmSignature *Sig : Types)
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writeSig(OS, *Sig);
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}
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void Writer::createFunctionSection() {
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if (!NumFunctions)
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return;
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_FUNCTION);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, NumFunctions, "function count");
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for (ObjFile *File : Symtab->ObjectFiles)
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for (uint32_t Sig : File->getWasmObj()->functionTypes())
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writeUleb128(OS, File->relocateTypeIndex(Sig), "sig index");
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}
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void Writer::createMemorySection() {
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if (Config->ImportMemory)
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return;
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_MEMORY);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, 1, "memory count");
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writeUleb128(OS, 0, "memory limits flags");
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writeUleb128(OS, NumMemoryPages, "initial pages");
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}
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void Writer::createGlobalSection() {
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if (DefinedGlobals.empty())
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return;
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_GLOBAL);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, DefinedGlobals.size(), "global count");
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for (const Symbol *Sym : DefinedGlobals) {
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WasmGlobal Global;
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Global.Type = WASM_TYPE_I32;
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Global.Mutable = Sym == Config->StackPointerSymbol;
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Global.InitExpr.Opcode = WASM_OPCODE_I32_CONST;
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Global.InitExpr.Value.Int32 = Sym->getVirtualAddress();
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writeGlobal(OS, Global);
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}
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}
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void Writer::createTableSection() {
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// Always output a table section, even if there are no indirect calls.
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// There are two reasons for this:
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// 1. For executables it is useful to have an empty table slot at 0
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// which can be filled with a null function call handler.
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// 2. If we don't do this, any program that contains a call_indirect but
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// no address-taken function will fail at validation time since it is
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// a validation error to include a call_indirect instruction if there
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// is not table.
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uint32_t TableSize = InitialTableOffset + IndirectFunctions.size();
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_TABLE);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, 1, "table count");
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writeSleb128(OS, WASM_TYPE_ANYFUNC, "table type");
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writeUleb128(OS, WASM_LIMITS_FLAG_HAS_MAX, "table flags");
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writeUleb128(OS, TableSize, "table initial size");
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writeUleb128(OS, TableSize, "table max size");
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}
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void Writer::createExportSection() {
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bool ExportMemory = !Config->Relocatable && !Config->ImportMemory;
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Symbol *EntrySym = Symtab->find(Config->Entry);
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bool ExportEntry = !Config->Relocatable && EntrySym && EntrySym->isDefined();
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bool ExportHidden = Config->EmitRelocs;
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uint32_t NumExports = ExportMemory ? 1 : 0;
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std::vector<const Symbol *> SymbolExports;
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if (ExportEntry)
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SymbolExports.emplace_back(EntrySym);
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for (const Symbol *Sym : Symtab->getSymbols()) {
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if (Sym->isUndefined() || Sym->isGlobal())
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continue;
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if (Sym->isHidden() && !ExportHidden)
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continue;
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if (ExportEntry && Sym == EntrySym)
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continue;
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SymbolExports.emplace_back(Sym);
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}
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for (const Symbol *Sym : DefinedGlobals) {
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// Can't export the SP right now because it mutable and mutable globals
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// connot be exported.
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if (Sym == Config->StackPointerSymbol)
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continue;
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SymbolExports.emplace_back(Sym);
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}
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NumExports += SymbolExports.size();
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if (!NumExports)
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return;
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_EXPORT);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, NumExports, "export count");
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if (ExportMemory) {
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WasmExport MemoryExport;
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MemoryExport.Name = "memory";
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MemoryExport.Kind = WASM_EXTERNAL_MEMORY;
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MemoryExport.Index = 0;
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writeExport(OS, MemoryExport);
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}
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for (const Symbol *Sym : SymbolExports) {
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log("Export: " + Sym->getName());
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WasmExport Export;
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Export.Name = Sym->getName();
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Export.Index = Sym->getOutputIndex();
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if (Sym->isFunction())
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Export.Kind = WASM_EXTERNAL_FUNCTION;
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else
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Export.Kind = WASM_EXTERNAL_GLOBAL;
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writeExport(OS, Export);
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}
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}
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void Writer::createStartSection() {}
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void Writer::createElemSection() {
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if (IndirectFunctions.empty())
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return;
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_ELEM);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, 1, "segment count");
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writeUleb128(OS, 0, "table index");
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WasmInitExpr InitExpr;
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InitExpr.Opcode = WASM_OPCODE_I32_CONST;
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InitExpr.Value.Int32 = InitialTableOffset;
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writeInitExpr(OS, InitExpr);
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writeUleb128(OS, IndirectFunctions.size(), "elem count");
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uint32_t TableIndex = InitialTableOffset;
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for (const Symbol *Sym : IndirectFunctions) {
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assert(Sym->getTableIndex() == TableIndex);
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writeUleb128(OS, Sym->getOutputIndex(), "function index");
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++TableIndex;
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}
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}
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void Writer::createCodeSection() {
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if (!NumFunctions)
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return;
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log("createCodeSection");
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auto Section = make<CodeSection>(NumFunctions, Symtab->ObjectFiles);
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OutputSections.push_back(Section);
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}
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void Writer::createDataSection() {
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if (!Segments.size())
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return;
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log("createDataSection");
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auto Section = make<DataSection>(Segments);
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OutputSections.push_back(Section);
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}
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// Create relocations sections in the final output.
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// These are only created when relocatable output is requested.
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void Writer::createRelocSections() {
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log("createRelocSections");
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// Don't use iterator here since we are adding to OutputSection
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size_t OrigSize = OutputSections.size();
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for (size_t i = 0; i < OrigSize; i++) {
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OutputSection *S = OutputSections[i];
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const char *name;
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uint32_t Count = S->numRelocations();
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if (!Count)
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continue;
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if (S->Type == WASM_SEC_DATA)
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name = "reloc.DATA";
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else if (S->Type == WASM_SEC_CODE)
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name = "reloc.CODE";
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else
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llvm_unreachable("relocations only supported for code and data");
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_CUSTOM, name);
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raw_ostream &OS = Section->getStream();
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writeUleb128(OS, S->Type, "reloc section");
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writeUleb128(OS, Count, "reloc count");
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S->writeRelocations(OS);
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}
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}
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// Create the custom "linking" section containing linker metadata.
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// This is only created when relocatable output is requested.
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void Writer::createLinkingSection() {
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SyntheticSection *Section =
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createSyntheticSection(WASM_SEC_CUSTOM, "linking");
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raw_ostream &OS = Section->getStream();
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SubSection DataSizeSubSection(WASM_DATA_SIZE);
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writeUleb128(DataSizeSubSection.getStream(), DataSize, "data size");
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DataSizeSubSection.finalizeContents();
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DataSizeSubSection.writeToStream(OS);
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if (!Config->Relocatable)
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return;
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if (Segments.size()) {
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SubSection SubSection(WASM_SEGMENT_INFO);
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writeUleb128(SubSection.getStream(), Segments.size(), "num data segments");
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for (const OutputSegment *S : Segments) {
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writeStr(SubSection.getStream(), S->Name, "segment name");
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writeUleb128(SubSection.getStream(), S->Alignment, "alignment");
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writeUleb128(SubSection.getStream(), 0, "flags");
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}
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SubSection.finalizeContents();
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SubSection.writeToStream(OS);
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}
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std::vector<WasmInitFunc> InitFunctions;
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for (ObjFile *File : Symtab->ObjectFiles) {
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const WasmLinkingData &L = File->getWasmObj()->linkingData();
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InitFunctions.reserve(InitFunctions.size() + L.InitFunctions.size());
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for (const WasmInitFunc &F : L.InitFunctions)
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InitFunctions.emplace_back(WasmInitFunc{
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F.Priority, File->relocateFunctionIndex(F.FunctionIndex)});
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}
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if (!InitFunctions.empty()) {
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SubSection SubSection(WASM_INIT_FUNCS);
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writeUleb128(SubSection.getStream(), InitFunctions.size(),
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"num init functionsw");
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for (const WasmInitFunc &F : InitFunctions) {
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writeUleb128(SubSection.getStream(), F.Priority, "priority");
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writeUleb128(SubSection.getStream(), F.FunctionIndex, "function index");
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}
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SubSection.finalizeContents();
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SubSection.writeToStream(OS);
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}
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}
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// Create the custom "name" section containing debug symbol names.
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void Writer::createNameSection() {
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// Create an array of all function sorted by function index space
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std::vector<const Symbol *> Names;
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for (ObjFile *File : Symtab->ObjectFiles) {
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Names.reserve(Names.size() + File->getSymbols().size());
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for (Symbol *S : File->getSymbols()) {
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if (!S->isFunction() || S->isWeak() || S->WrittenToNameSec)
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continue;
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S->WrittenToNameSec = true;
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Names.emplace_back(S);
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}
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}
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SyntheticSection *Section = createSyntheticSection(WASM_SEC_CUSTOM, "name");
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std::sort(Names.begin(), Names.end(), [](const Symbol *A, const Symbol *B) {
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return A->getOutputIndex() < B->getOutputIndex();
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});
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SubSection FunctionSubsection(WASM_NAMES_FUNCTION);
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raw_ostream &OS = FunctionSubsection.getStream();
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writeUleb128(OS, Names.size(), "name count");
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// We have to iterate through the inputs twice so that all the imports
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// appear first before any of the local function names.
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for (const Symbol *S : Names) {
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writeUleb128(OS, S->getOutputIndex(), "func index");
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writeStr(OS, S->getName(), "symbol name");
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}
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FunctionSubsection.finalizeContents();
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FunctionSubsection.writeToStream(Section->getStream());
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}
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void Writer::writeHeader() {
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memcpy(Buffer->getBufferStart(), Header.data(), Header.size());
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}
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void Writer::writeSections() {
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uint8_t *Buf = Buffer->getBufferStart();
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parallelForEach(OutputSections, [Buf](OutputSection *S) { S->writeTo(Buf); });
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}
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// Fix the memory layout of the output binary. This assigns memory offsets
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// to each of the input data sections as well as the explicit stack region.
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void Writer::layoutMemory() {
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uint32_t MemoryPtr = 0;
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if (!Config->Relocatable) {
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MemoryPtr = Config->GlobalBase;
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debugPrint("mem: global base = %d\n", Config->GlobalBase);
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}
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createOutputSegments();
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// Static data comes first
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for (OutputSegment *Seg : Segments) {
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MemoryPtr = alignTo(MemoryPtr, Seg->Alignment);
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Seg->StartVA = MemoryPtr;
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debugPrint("mem: %-10s offset=%-8d size=%-4d align=%d\n",
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Seg->Name.str().c_str(), MemoryPtr, Seg->Size, Seg->Alignment);
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MemoryPtr += Seg->Size;
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}
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DataSize = MemoryPtr;
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if (!Config->Relocatable)
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DataSize -= Config->GlobalBase;
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debugPrint("mem: static data = %d\n", DataSize);
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// Stack comes after static data
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if (!Config->Relocatable) {
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MemoryPtr = alignTo(MemoryPtr, kStackAlignment);
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if (Config->ZStackSize != alignTo(Config->ZStackSize, kStackAlignment))
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error("stack size must be " + Twine(kStackAlignment) + "-byte aligned");
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debugPrint("mem: stack size = %d\n", Config->ZStackSize);
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debugPrint("mem: stack base = %d\n", MemoryPtr);
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MemoryPtr += Config->ZStackSize;
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Config->StackPointerSymbol->setVirtualAddress(MemoryPtr);
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debugPrint("mem: stack top = %d\n", MemoryPtr);
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}
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uint32_t MemSize = alignTo(MemoryPtr, WasmPageSize);
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NumMemoryPages = MemSize / WasmPageSize;
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debugPrint("mem: total pages = %d\n", NumMemoryPages);
|
|
}
|
|
|
|
SyntheticSection *Writer::createSyntheticSection(uint32_t Type,
|
|
std::string Name) {
|
|
auto Sec = make<SyntheticSection>(Type, Name);
|
|
log("createSection: " + toString(*Sec));
|
|
OutputSections.push_back(Sec);
|
|
return Sec;
|
|
}
|
|
|
|
void Writer::createSections() {
|
|
// Known sections
|
|
createTypeSection();
|
|
createImportSection();
|
|
createFunctionSection();
|
|
createTableSection();
|
|
createMemorySection();
|
|
createGlobalSection();
|
|
createExportSection();
|
|
createStartSection();
|
|
createElemSection();
|
|
createCodeSection();
|
|
createDataSection();
|
|
|
|
// Custom sections
|
|
if (Config->EmitRelocs)
|
|
createRelocSections();
|
|
createLinkingSection();
|
|
if (!Config->StripDebug && !Config->StripAll)
|
|
createNameSection();
|
|
|
|
for (OutputSection *S : OutputSections) {
|
|
S->setOffset(FileSize);
|
|
S->finalizeContents();
|
|
FileSize += S->getSize();
|
|
}
|
|
}
|
|
|
|
void Writer::calculateOffsets() {
|
|
for (ObjFile *File : Symtab->ObjectFiles) {
|
|
const WasmObjectFile *WasmFile = File->getWasmObj();
|
|
|
|
// Function Index
|
|
File->FunctionIndexOffset =
|
|
FunctionImports.size() - File->NumFunctionImports() + NumFunctions;
|
|
NumFunctions += WasmFile->functions().size();
|
|
|
|
// Memory
|
|
if (WasmFile->memories().size() > 1)
|
|
fatal(File->getName() + ": contains more than one memory");
|
|
}
|
|
}
|
|
|
|
void Writer::calculateImports() {
|
|
for (Symbol *Sym : Symtab->getSymbols()) {
|
|
if (!Sym->isUndefined() || Sym->isWeak())
|
|
continue;
|
|
|
|
if (Sym->isFunction()) {
|
|
Sym->setOutputIndex(FunctionImports.size());
|
|
FunctionImports.push_back(Sym);
|
|
} else {
|
|
Sym->setOutputIndex(GlobalImports.size());
|
|
GlobalImports.push_back(Sym);
|
|
}
|
|
}
|
|
}
|
|
|
|
uint32_t Writer::getTypeIndex(const WasmSignature &Sig) {
|
|
auto Pair = TypeIndices.insert(std::make_pair(Sig, Types.size()));
|
|
if (Pair.second)
|
|
Types.push_back(&Sig);
|
|
return Pair.first->second;
|
|
}
|
|
|
|
void Writer::calculateTypes() {
|
|
for (ObjFile *File : Symtab->ObjectFiles) {
|
|
File->TypeMap.reserve(File->getWasmObj()->types().size());
|
|
for (const WasmSignature &Sig : File->getWasmObj()->types())
|
|
File->TypeMap.push_back(getTypeIndex(Sig));
|
|
}
|
|
}
|
|
|
|
void Writer::assignSymbolIndexes() {
|
|
uint32_t GlobalIndex = GlobalImports.size();
|
|
|
|
if (Config->StackPointerSymbol) {
|
|
DefinedGlobals.emplace_back(Config->StackPointerSymbol);
|
|
Config->StackPointerSymbol->setOutputIndex(GlobalIndex++);
|
|
}
|
|
|
|
if (Config->EmitRelocs)
|
|
DefinedGlobals.reserve(Symtab->getSymbols().size());
|
|
|
|
uint32_t TableIndex = InitialTableOffset;
|
|
|
|
for (ObjFile *File : Symtab->ObjectFiles) {
|
|
DEBUG(dbgs() << "assignSymbolIndexes: " << File->getName() << "\n");
|
|
|
|
for (Symbol *Sym : File->getSymbols()) {
|
|
// Assign indexes for symbols defined with this file.
|
|
if (!Sym->isDefined() || File != Sym->getFile())
|
|
continue;
|
|
if (Sym->isFunction()) {
|
|
auto *Obj = cast<ObjFile>(Sym->getFile());
|
|
Sym->setOutputIndex(Obj->FunctionIndexOffset +
|
|
Sym->getFunctionIndex());
|
|
} else if (Config->EmitRelocs) {
|
|
DefinedGlobals.emplace_back(Sym);
|
|
Sym->setOutputIndex(GlobalIndex++);
|
|
}
|
|
}
|
|
|
|
for (Symbol *Sym : File->getTableSymbols()) {
|
|
if (!Sym->hasTableIndex()) {
|
|
Sym->setTableIndex(TableIndex++);
|
|
IndirectFunctions.emplace_back(Sym);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
static StringRef getOutputDataSegmentName(StringRef Name) {
|
|
if (Config->Relocatable)
|
|
return Name;
|
|
|
|
for (StringRef V :
|
|
{".text.", ".rodata.", ".data.rel.ro.", ".data.", ".bss.rel.ro.",
|
|
".bss.", ".init_array.", ".fini_array.", ".ctors.", ".dtors.", ".tbss.",
|
|
".gcc_except_table.", ".tdata.", ".ARM.exidx.", ".ARM.extab."}) {
|
|
StringRef Prefix = V.drop_back();
|
|
if (Name.startswith(V) || Name == Prefix)
|
|
return Prefix;
|
|
}
|
|
|
|
return Name;
|
|
}
|
|
|
|
void Writer::createOutputSegments() {
|
|
for (ObjFile *File : Symtab->ObjectFiles) {
|
|
for (InputSegment *Segment : File->Segments) {
|
|
StringRef Name = getOutputDataSegmentName(Segment->getName());
|
|
OutputSegment *&S = SegmentMap[Name];
|
|
if (S == nullptr) {
|
|
DEBUG(dbgs() << "new segment: " << Name << "\n");
|
|
S = make<OutputSegment>(Name);
|
|
Segments.push_back(S);
|
|
}
|
|
S->addInputSegment(Segment);
|
|
DEBUG(dbgs() << "added data: " << Name << ": " << S->Size << "\n");
|
|
}
|
|
}
|
|
}
|
|
|
|
void Writer::run() {
|
|
if (!Config->Relocatable)
|
|
InitialTableOffset = 1;
|
|
|
|
log("-- calculateTypes");
|
|
calculateTypes();
|
|
log("-- calculateImports");
|
|
calculateImports();
|
|
log("-- calculateOffsets");
|
|
calculateOffsets();
|
|
|
|
if (errorHandler().Verbose) {
|
|
log("Defined Functions: " + Twine(NumFunctions));
|
|
log("Defined Globals : " + Twine(DefinedGlobals.size()));
|
|
log("Function Imports : " + Twine(FunctionImports.size()));
|
|
log("Global Imports : " + Twine(GlobalImports.size()));
|
|
log("Total Imports : " +
|
|
Twine(FunctionImports.size() + GlobalImports.size()));
|
|
for (ObjFile *File : Symtab->ObjectFiles)
|
|
File->dumpInfo();
|
|
}
|
|
|
|
log("-- assignSymbolIndexes");
|
|
assignSymbolIndexes();
|
|
log("-- layoutMemory");
|
|
layoutMemory();
|
|
|
|
createHeader();
|
|
log("-- createSections");
|
|
createSections();
|
|
|
|
log("-- openFile");
|
|
openFile();
|
|
if (errorCount())
|
|
return;
|
|
|
|
writeHeader();
|
|
|
|
log("-- writeSections");
|
|
writeSections();
|
|
if (errorCount())
|
|
return;
|
|
|
|
if (Error E = Buffer->commit())
|
|
fatal("failed to write the output file: " + toString(std::move(E)));
|
|
}
|
|
|
|
// Open a result file.
|
|
void Writer::openFile() {
|
|
log("writing: " + Config->OutputFile);
|
|
::remove(Config->OutputFile.str().c_str());
|
|
|
|
Expected<std::unique_ptr<FileOutputBuffer>> BufferOrErr =
|
|
FileOutputBuffer::create(Config->OutputFile, FileSize,
|
|
FileOutputBuffer::F_executable);
|
|
|
|
if (!BufferOrErr)
|
|
error("failed to open " + Config->OutputFile + ": " +
|
|
toString(BufferOrErr.takeError()));
|
|
else
|
|
Buffer = std::move(*BufferOrErr);
|
|
}
|
|
|
|
void Writer::createHeader() {
|
|
raw_string_ostream OS(Header);
|
|
writeBytes(OS, WasmMagic, sizeof(WasmMagic), "wasm magic");
|
|
writeU32(OS, WasmVersion, "wasm version");
|
|
OS.flush();
|
|
FileSize += Header.size();
|
|
}
|
|
|
|
void lld::wasm::writeResult() { Writer().run(); }
|