forked from OSchip/llvm-project
505 lines
15 KiB
C++
505 lines
15 KiB
C++
//===- Writer.cpp ---------------------------------------------------------===//
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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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#include "Writer.h"
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#include "Config.h"
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#include "InputFiles.h"
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#include "InputSection.h"
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#include "OutputSegment.h"
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#include "SymbolTable.h"
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#include "Symbols.h"
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#include "SyntheticSections.h"
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#include "Target.h"
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#include "lld/Common/ErrorHandler.h"
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#include "lld/Common/Memory.h"
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#include "llvm/BinaryFormat/MachO.h"
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#include "llvm/Support/LEB128.h"
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#include "llvm/Support/MathExtras.h"
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using namespace llvm;
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using namespace llvm::MachO;
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using namespace lld;
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using namespace lld::macho;
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namespace {
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class LCLinkEdit;
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class LCDyldInfo;
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class LCSymtab;
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class Writer {
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public:
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Writer() : buffer(errorHandler().outputBuffer) {}
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void scanRelocations();
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void createHiddenSections();
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void sortSections();
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void createLoadCommands();
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void assignAddresses(OutputSegment *);
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void createSymtabContents();
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void openFile();
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void writeSections();
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void run();
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std::unique_ptr<FileOutputBuffer> &buffer;
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uint64_t addr = 0;
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uint64_t fileOff = 0;
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MachHeaderSection *headerSection = nullptr;
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BindingSection *bindingSection = nullptr;
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ExportSection *exportSection = nullptr;
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StringTableSection *stringTableSection = nullptr;
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SymtabSection *symtabSection = nullptr;
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};
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// LC_DYLD_INFO_ONLY stores the offsets of symbol import/export information.
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class LCDyldInfo : public LoadCommand {
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public:
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LCDyldInfo(BindingSection *bindingSection, ExportSection *exportSection)
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: bindingSection(bindingSection), exportSection(exportSection) {}
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uint32_t getSize() const override { return sizeof(dyld_info_command); }
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<dyld_info_command *>(buf);
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c->cmd = LC_DYLD_INFO_ONLY;
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c->cmdsize = getSize();
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if (bindingSection->isNeeded()) {
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c->bind_off = bindingSection->getFileOffset();
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c->bind_size = bindingSection->getFileSize();
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}
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if (exportSection->isNeeded()) {
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c->export_off = exportSection->getFileOffset();
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c->export_size = exportSection->getFileSize();
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}
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}
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BindingSection *bindingSection;
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ExportSection *exportSection;
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};
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class LCDysymtab : public LoadCommand {
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public:
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uint32_t getSize() const override { return sizeof(dysymtab_command); }
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<dysymtab_command *>(buf);
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c->cmd = LC_DYSYMTAB;
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c->cmdsize = getSize();
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}
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};
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class LCSegment : public LoadCommand {
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public:
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LCSegment(StringRef name, OutputSegment *seg) : name(name), seg(seg) {}
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uint32_t getSize() const override {
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return sizeof(segment_command_64) +
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seg->numNonHiddenSections * sizeof(section_64);
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}
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<segment_command_64 *>(buf);
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buf += sizeof(segment_command_64);
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c->cmd = LC_SEGMENT_64;
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c->cmdsize = getSize();
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memcpy(c->segname, name.data(), name.size());
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c->fileoff = seg->fileOff;
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c->maxprot = seg->maxProt;
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c->initprot = seg->initProt;
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if (seg->getSections().empty())
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return;
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c->vmaddr = seg->firstSection()->addr;
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c->vmsize =
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seg->lastSection()->addr + seg->lastSection()->getSize() - c->vmaddr;
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c->nsects = seg->numNonHiddenSections;
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for (auto &p : seg->getSections()) {
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StringRef s = p.first;
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ArrayRef<InputSection *> sections = p.second;
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for (InputSection *isec : sections)
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c->filesize += isec->getFileSize();
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if (sections[0]->isHidden())
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continue;
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auto *sectHdr = reinterpret_cast<section_64 *>(buf);
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buf += sizeof(section_64);
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memcpy(sectHdr->sectname, s.data(), s.size());
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memcpy(sectHdr->segname, name.data(), name.size());
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sectHdr->addr = sections[0]->addr;
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sectHdr->offset = sections[0]->getFileOffset();
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sectHdr->align = sections[0]->align;
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uint32_t maxAlign = 0;
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for (const InputSection *section : sections)
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maxAlign = std::max(maxAlign, section->align);
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sectHdr->align = Log2_32(maxAlign);
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sectHdr->flags = sections[0]->flags;
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sectHdr->size = sections.back()->addr + sections.back()->getSize() -
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sections[0]->addr;
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}
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}
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private:
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StringRef name;
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OutputSegment *seg;
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};
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class LCMain : public LoadCommand {
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uint32_t getSize() const override { return sizeof(entry_point_command); }
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<entry_point_command *>(buf);
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c->cmd = LC_MAIN;
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c->cmdsize = getSize();
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c->entryoff = config->entry->getVA() - ImageBase;
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c->stacksize = 0;
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}
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};
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class LCSymtab : public LoadCommand {
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public:
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LCSymtab(SymtabSection *symtabSection, StringTableSection *stringTableSection)
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: symtabSection(symtabSection), stringTableSection(stringTableSection) {}
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uint32_t getSize() const override { return sizeof(symtab_command); }
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<symtab_command *>(buf);
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c->cmd = LC_SYMTAB;
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c->cmdsize = getSize();
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c->symoff = symtabSection->getFileOffset();
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c->nsyms = symtabSection->getNumSymbols();
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c->stroff = stringTableSection->getFileOffset();
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c->strsize = stringTableSection->getFileSize();
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}
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SymtabSection *symtabSection = nullptr;
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StringTableSection *stringTableSection = nullptr;
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};
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class LCLoadDylib : public LoadCommand {
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public:
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LCLoadDylib(StringRef path) : path(path) {}
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uint32_t getSize() const override {
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return alignTo(sizeof(dylib_command) + path.size() + 1, 8);
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}
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<dylib_command *>(buf);
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buf += sizeof(dylib_command);
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c->cmd = LC_LOAD_DYLIB;
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c->cmdsize = getSize();
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c->dylib.name = sizeof(dylib_command);
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memcpy(buf, path.data(), path.size());
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buf[path.size()] = '\0';
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}
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private:
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StringRef path;
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};
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class LCIdDylib : public LoadCommand {
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public:
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LCIdDylib(StringRef name) : name(name) {}
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uint32_t getSize() const override {
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return alignTo(sizeof(dylib_command) + name.size() + 1, 8);
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}
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<dylib_command *>(buf);
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buf += sizeof(dylib_command);
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c->cmd = LC_ID_DYLIB;
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c->cmdsize = getSize();
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c->dylib.name = sizeof(dylib_command);
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memcpy(buf, name.data(), name.size());
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buf[name.size()] = '\0';
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}
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private:
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StringRef name;
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};
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class LCLoadDylinker : public LoadCommand {
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public:
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uint32_t getSize() const override {
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return alignTo(sizeof(dylinker_command) + path.size() + 1, 8);
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}
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void writeTo(uint8_t *buf) const override {
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auto *c = reinterpret_cast<dylinker_command *>(buf);
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buf += sizeof(dylinker_command);
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c->cmd = LC_LOAD_DYLINKER;
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c->cmdsize = getSize();
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c->name = sizeof(dylinker_command);
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memcpy(buf, path.data(), path.size());
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buf[path.size()] = '\0';
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}
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private:
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// Recent versions of Darwin won't run any binary that has dyld at a
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// different location.
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const StringRef path = "/usr/lib/dyld";
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};
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class SectionComparator {
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public:
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struct OrderInfo {
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uint32_t segmentOrder;
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DenseMap<StringRef, uint32_t> sectionOrdering;
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};
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SectionComparator() {
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// This defines the order of segments and the sections within each segment.
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// Segments that are not mentioned here will end up at defaultPosition;
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// sections that are not mentioned will end up at the end of the section
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// list for their given segment.
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std::vector<std::pair<StringRef, std::vector<StringRef>>> ordering{
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{segment_names::pageZero, {}},
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{segment_names::text, {section_names::header}},
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{defaultPosition, {}},
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// Make sure __LINKEDIT is the last segment (i.e. all its hidden
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// sections must be ordered after other sections).
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{segment_names::linkEdit,
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{
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section_names::binding,
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section_names::export_,
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section_names::symbolTable,
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section_names::stringTable,
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}},
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};
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for (uint32_t i = 0, n = ordering.size(); i < n; ++i) {
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auto &p = ordering[i];
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StringRef segname = p.first;
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const std::vector<StringRef> §Ordering = p.second;
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OrderInfo &info = orderMap[segname];
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info.segmentOrder = i;
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for (uint32_t j = 0, m = sectOrdering.size(); j < m; ++j)
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info.sectionOrdering[sectOrdering[j]] = j;
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}
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}
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// Return a {segmentOrder, sectionOrder} pair. Using this as a key will
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// ensure that all sections in the same segment are sorted contiguously.
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std::pair<uint32_t, uint32_t> order(const InputSection *isec) {
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auto it = orderMap.find(isec->segname);
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if (it == orderMap.end())
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return {orderMap[defaultPosition].segmentOrder, 0};
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OrderInfo &info = it->second;
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auto sectIt = info.sectionOrdering.find(isec->name);
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if (sectIt != info.sectionOrdering.end())
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return {info.segmentOrder, sectIt->second};
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return {info.segmentOrder, info.sectionOrdering.size()};
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}
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bool operator()(const InputSection *a, const InputSection *b) {
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return order(a) < order(b);
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}
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private:
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const StringRef defaultPosition = StringRef();
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DenseMap<StringRef, OrderInfo> orderMap;
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};
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} // namespace
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template <typename SectionType, typename... ArgT>
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SectionType *createInputSection(ArgT &&... args) {
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auto *section = make<SectionType>(std::forward<ArgT>(args)...);
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inputSections.push_back(section);
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return section;
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}
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void Writer::scanRelocations() {
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for (InputSection *sect : inputSections)
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for (Reloc &r : sect->relocs)
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if (auto *s = r.target.dyn_cast<Symbol *>())
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if (auto *dylibSymbol = dyn_cast<DylibSymbol>(s))
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in.got->addEntry(*dylibSymbol);
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}
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void Writer::createLoadCommands() {
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headerSection->addLoadCommand(
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make<LCDyldInfo>(bindingSection, exportSection));
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headerSection->addLoadCommand(
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make<LCSymtab>(symtabSection, stringTableSection));
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headerSection->addLoadCommand(make<LCDysymtab>());
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switch (config->outputType) {
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case MH_EXECUTE:
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headerSection->addLoadCommand(make<LCMain>());
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headerSection->addLoadCommand(make<LCLoadDylinker>());
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break;
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case MH_DYLIB:
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headerSection->addLoadCommand(make<LCIdDylib>(config->installName));
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break;
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default:
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llvm_unreachable("unhandled output file type");
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}
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uint8_t segIndex = 0;
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for (OutputSegment *seg : outputSegments) {
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if (seg->isNeeded()) {
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headerSection->addLoadCommand(make<LCSegment>(seg->name, seg));
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seg->index = segIndex++;
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}
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}
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uint64_t dylibOrdinal = 1;
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for (InputFile *file : inputFiles) {
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if (auto *dylibFile = dyn_cast<DylibFile>(file)) {
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headerSection->addLoadCommand(make<LCLoadDylib>(dylibFile->dylibName));
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dylibFile->ordinal = dylibOrdinal++;
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}
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}
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// TODO: dyld requires libSystem to be loaded. libSystem is a universal
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// binary and we don't have support for that yet, so mock it out here.
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headerSection->addLoadCommand(
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make<LCLoadDylib>("/usr/lib/libSystem.B.dylib"));
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}
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void Writer::createHiddenSections() {
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headerSection = createInputSection<MachHeaderSection>();
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bindingSection = createInputSection<BindingSection>();
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stringTableSection = createInputSection<StringTableSection>();
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symtabSection = createInputSection<SymtabSection>(*stringTableSection);
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exportSection = createInputSection<ExportSection>();
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switch (config->outputType) {
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case MH_EXECUTE:
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createInputSection<PageZeroSection>();
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break;
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case MH_DYLIB:
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break;
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default:
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llvm_unreachable("unhandled output file type");
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}
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}
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void Writer::sortSections() {
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llvm::stable_sort(inputSections, SectionComparator());
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// TODO This is wrong; input sections ought to be grouped into
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// output sections, which are then organized like this.
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uint32_t sectionIndex = 0;
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// Add input sections to output segments.
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for (InputSection *isec : inputSections) {
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if (isec->isNeeded()) {
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if (!isec->isHidden())
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isec->sectionIndex = ++sectionIndex;
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getOrCreateOutputSegment(isec->segname)->addSection(isec);
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}
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}
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}
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void Writer::assignAddresses(OutputSegment *seg) {
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addr = alignTo(addr, PageSize);
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fileOff = alignTo(fileOff, PageSize);
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seg->fileOff = fileOff;
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for (auto &p : seg->getSections()) {
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ArrayRef<InputSection *> sections = p.second;
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for (InputSection *isec : sections) {
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addr = alignTo(addr, isec->align);
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// We must align the file offsets too to avoid misaligned writes of
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// structs.
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fileOff = alignTo(fileOff, isec->align);
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isec->addr = addr;
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addr += isec->getSize();
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fileOff += isec->getFileSize();
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}
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}
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}
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void Writer::openFile() {
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Expected<std::unique_ptr<FileOutputBuffer>> bufferOrErr =
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FileOutputBuffer::create(config->outputFile, fileOff,
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FileOutputBuffer::F_executable);
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if (!bufferOrErr)
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error("failed to open " + config->outputFile + ": " +
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llvm::toString(bufferOrErr.takeError()));
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else
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buffer = std::move(*bufferOrErr);
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}
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void Writer::writeSections() {
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uint8_t *buf = buffer->getBufferStart();
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for (OutputSegment *seg : outputSegments) {
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uint64_t fileOff = seg->fileOff;
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for (auto § : seg->getSections()) {
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for (InputSection *isec : sect.second) {
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fileOff = alignTo(fileOff, isec->align);
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isec->writeTo(buf + fileOff);
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fileOff += isec->getFileSize();
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}
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}
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}
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}
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void Writer::run() {
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scanRelocations();
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createHiddenSections();
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// Sort and assign sections to their respective segments. No more sections can
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// be created after this method runs.
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sortSections();
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// dyld requires __LINKEDIT segment to always exist (even if empty).
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getOrCreateOutputSegment(segment_names::linkEdit);
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// No more segments can be created after this method runs.
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createLoadCommands();
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// Ensure that segments (and the sections they contain) are allocated
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// addresses in ascending order, which dyld requires.
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//
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// Note that at this point, __LINKEDIT sections are empty, but we need to
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// determine addresses of other segments/sections before generating its
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// contents.
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for (OutputSegment *seg : outputSegments)
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assignAddresses(seg);
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// Fill __LINKEDIT contents.
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bindingSection->finalizeContents();
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exportSection->finalizeContents();
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symtabSection->finalizeContents();
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// Now that __LINKEDIT is filled out, do a proper calculation of its
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// addresses and offsets. We don't have to recalculate the other segments
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// since sortSections() ensures that __LINKEDIT is the last segment.
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assignAddresses(getOutputSegment(segment_names::linkEdit));
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openFile();
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if (errorCount())
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return;
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writeSections();
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if (auto e = buffer->commit())
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error("failed to write to the output file: " + toString(std::move(e)));
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}
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void macho::writeResult() { Writer().run(); }
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void macho::createSyntheticSections() {
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in.got = createInputSection<GotSection>();
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}
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