mirror of
https://github.com/LadybirdBrowser/ladybird.git
synced 2024-11-11 01:06:01 +03:00
620 lines
22 KiB
C++
620 lines
22 KiB
C++
/*
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* Copyright (c) 2019-2020, Andrew Kaster <akaster@serenityos.org>
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* Copyright (c) 2020, Itamar S. <itamar8910@gmail.com>
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* Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/Debug.h>
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#include <AK/Optional.h>
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#include <AK/QuickSort.h>
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#include <AK/StringBuilder.h>
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#include <LibDl/dlfcn.h>
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#include <LibDl/dlfcn_integration.h>
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#include <LibELF/DynamicLinker.h>
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#include <LibELF/DynamicLoader.h>
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#include <LibELF/Hashes.h>
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#include <LibELF/Validation.h>
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#include <assert.h>
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#include <errno.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <sys/mman.h>
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#include <sys/stat.h>
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#include <unistd.h>
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#ifndef __serenity__
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static void* mmap_with_name(void* addr, size_t length, int prot, int flags, int fd, off_t offset, const char*)
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{
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return mmap(addr, length, prot, flags, fd, offset);
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}
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# define MAP_RANDOMIZED 0
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#endif
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namespace ELF {
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Result<NonnullRefPtr<DynamicLoader>, DlErrorMessage> DynamicLoader::try_create(int fd, String filename)
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{
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struct stat stat;
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if (fstat(fd, &stat) < 0) {
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return DlErrorMessage { "DynamicLoader::try_create fstat" };
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}
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VERIFY(stat.st_size >= 0);
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auto size = static_cast<size_t>(stat.st_size);
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if (size < sizeof(ElfW(Ehdr)))
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return DlErrorMessage { String::formatted("File {} has invalid ELF header", filename) };
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String file_mmap_name = String::formatted("ELF_DYN: {}", filename);
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auto* data = mmap_with_name(nullptr, size, PROT_READ, MAP_PRIVATE, fd, 0, file_mmap_name.characters());
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if (data == MAP_FAILED) {
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return DlErrorMessage { "DynamicLoader::try_create mmap" };
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}
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auto loader = adopt_ref(*new DynamicLoader(fd, move(filename), data, size));
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if (!loader->is_valid())
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return DlErrorMessage { "ELF image validation failed" };
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return loader;
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}
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DynamicLoader::DynamicLoader(int fd, String filename, void* data, size_t size)
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: m_filename(move(filename))
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, m_file_size(size)
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, m_image_fd(fd)
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, m_file_data(data)
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, m_elf_image((u8*)m_file_data, m_file_size)
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{
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m_valid = validate();
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if (m_valid)
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m_tls_size_of_current_object = calculate_tls_size();
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else
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dbgln("Image validation failed for file {}", m_filename);
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}
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DynamicLoader::~DynamicLoader()
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{
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if (munmap(m_file_data, m_file_size) < 0) {
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perror("munmap");
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VERIFY_NOT_REACHED();
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}
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if (close(m_image_fd) < 0) {
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perror("close");
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VERIFY_NOT_REACHED();
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}
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}
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const DynamicObject& DynamicLoader::dynamic_object() const
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{
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if (!m_cached_dynamic_object) {
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VirtualAddress dynamic_section_address;
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m_elf_image.for_each_program_header([&dynamic_section_address](auto program_header) {
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if (program_header.type() == PT_DYNAMIC) {
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dynamic_section_address = VirtualAddress(program_header.raw_data());
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}
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});
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VERIFY(!dynamic_section_address.is_null());
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m_cached_dynamic_object = ELF::DynamicObject::create(m_filename, VirtualAddress(m_elf_image.base_address()), dynamic_section_address);
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}
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return *m_cached_dynamic_object;
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}
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size_t DynamicLoader::calculate_tls_size() const
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{
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size_t tls_size = 0;
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m_elf_image.for_each_program_header([&tls_size](auto program_header) {
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if (program_header.type() == PT_TLS) {
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tls_size = program_header.size_in_memory();
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}
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});
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return tls_size;
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}
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bool DynamicLoader::validate()
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{
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if (!m_elf_image.is_valid())
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return false;
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auto* elf_header = (ElfW(Ehdr)*)m_file_data;
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if (!validate_elf_header(*elf_header, m_file_size))
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return false;
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if (!validate_program_headers(*elf_header, m_file_size, (u8*)m_file_data, m_file_size, &m_program_interpreter))
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return false;
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return true;
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}
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RefPtr<DynamicObject> DynamicLoader::map()
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{
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if (m_dynamic_object) {
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// Already mapped.
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return nullptr;
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}
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if (!m_valid) {
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dbgln("DynamicLoader::map failed: image is invalid");
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return nullptr;
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}
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load_program_headers();
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VERIFY(!m_base_address.is_null());
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m_dynamic_object = DynamicObject::create(m_filename, m_base_address, m_dynamic_section_address);
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m_dynamic_object->set_tls_offset(m_tls_offset);
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m_dynamic_object->set_tls_size(m_tls_size_of_current_object);
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return m_dynamic_object;
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}
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bool DynamicLoader::link(unsigned flags)
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{
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return load_stage_2(flags);
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}
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bool DynamicLoader::load_stage_2(unsigned flags)
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{
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VERIFY(flags & RTLD_GLOBAL);
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if (m_dynamic_object->has_text_relocations()) {
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for (auto& text_segment : m_text_segments) {
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VERIFY(text_segment.address().get() != 0);
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#ifndef AK_OS_MACOS
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// Remap this text region as private.
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if (mremap(text_segment.address().as_ptr(), text_segment.size(), text_segment.size(), MAP_PRIVATE) == MAP_FAILED) {
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perror("mremap .text: MAP_PRIVATE");
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return false;
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}
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#endif
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if (0 > mprotect(text_segment.address().as_ptr(), text_segment.size(), PROT_READ | PROT_WRITE)) {
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perror("mprotect .text: PROT_READ | PROT_WRITE"); // FIXME: dlerror?
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return false;
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}
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}
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}
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do_main_relocations();
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return true;
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}
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void DynamicLoader::do_main_relocations()
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{
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auto do_single_relocation = [&](const ELF::DynamicObject::Relocation& relocation) {
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switch (do_relocation(relocation, ShouldInitializeWeak::No)) {
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case RelocationResult::Failed:
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dbgln("Loader.so: {} unresolved symbol '{}'", m_filename, relocation.symbol().name());
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VERIFY_NOT_REACHED();
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case RelocationResult::ResolveLater:
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m_unresolved_relocations.append(relocation);
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break;
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case RelocationResult::Success:
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break;
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}
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};
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m_dynamic_object->relocation_section().for_each_relocation(do_single_relocation);
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m_dynamic_object->plt_relocation_section().for_each_relocation(do_single_relocation);
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}
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Result<NonnullRefPtr<DynamicObject>, DlErrorMessage> DynamicLoader::load_stage_3(unsigned flags)
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{
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do_lazy_relocations();
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if (flags & RTLD_LAZY) {
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if (m_dynamic_object->has_plt())
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setup_plt_trampoline();
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}
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for (auto& text_segment : m_text_segments) {
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if (mprotect(text_segment.address().as_ptr(), text_segment.size(), PROT_READ | PROT_EXEC) < 0) {
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return DlErrorMessage { String::formatted("mprotect .text: PROT_READ | PROT_EXEC: {}", strerror(errno)) };
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}
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}
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if (m_relro_segment_size) {
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if (mprotect(m_relro_segment_address.as_ptr(), m_relro_segment_size, PROT_READ) < 0) {
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return DlErrorMessage { String::formatted("mprotect .relro: PROT_READ: {}", strerror(errno)) };
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}
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#ifdef __serenity__
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if (set_mmap_name(m_relro_segment_address.as_ptr(), m_relro_segment_size, String::formatted("{}: .relro", m_filename).characters()) < 0) {
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return DlErrorMessage { String::formatted("set_mmap_name .relro: {}", strerror(errno)) };
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}
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#endif
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}
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return NonnullRefPtr<DynamicObject> { *m_dynamic_object };
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}
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void DynamicLoader::load_stage_4()
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{
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call_object_init_functions();
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}
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void DynamicLoader::do_lazy_relocations()
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{
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for (const auto& relocation : m_unresolved_relocations) {
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if (auto res = do_relocation(relocation, ShouldInitializeWeak::Yes); res != RelocationResult::Success) {
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dbgln("Loader.so: {} unresolved symbol '{}'", m_filename, relocation.symbol().name());
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VERIFY_NOT_REACHED();
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}
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}
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}
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void DynamicLoader::load_program_headers()
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{
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Vector<ProgramHeaderRegion> load_regions;
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Vector<ProgramHeaderRegion> text_regions;
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Vector<ProgramHeaderRegion> data_regions;
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Optional<ProgramHeaderRegion> tls_region;
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Optional<ProgramHeaderRegion> relro_region;
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VirtualAddress dynamic_region_desired_vaddr;
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m_elf_image.for_each_program_header([&](const Image::ProgramHeader& program_header) {
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ProgramHeaderRegion region {};
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region.set_program_header(program_header.raw_header());
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if (region.is_tls_template()) {
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VERIFY(!tls_region.has_value());
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tls_region = region;
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} else if (region.is_load()) {
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load_regions.append(region);
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if (region.is_executable()) {
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text_regions.append(region);
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} else {
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data_regions.append(region);
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}
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} else if (region.is_dynamic()) {
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dynamic_region_desired_vaddr = region.desired_load_address();
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} else if (region.is_relro()) {
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VERIFY(!relro_region.has_value());
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relro_region = region;
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}
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});
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VERIFY(!text_regions.is_empty() || !data_regions.is_empty());
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auto compare_load_address = [](ProgramHeaderRegion& a, ProgramHeaderRegion& b) {
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return a.desired_load_address().as_ptr() < b.desired_load_address().as_ptr();
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};
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quick_sort(load_regions, compare_load_address);
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quick_sort(text_regions, compare_load_address);
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quick_sort(data_regions, compare_load_address);
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// Process regions in order: .text, .data, .tls
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void* requested_load_address = m_elf_image.is_dynamic() ? nullptr : load_regions.first().desired_load_address().as_ptr();
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int reservation_mmap_flags = MAP_ANON | MAP_PRIVATE | MAP_NORESERVE;
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if (m_elf_image.is_dynamic())
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reservation_mmap_flags |= MAP_RANDOMIZED;
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else
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reservation_mmap_flags |= MAP_FIXED;
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for (auto& text_region : text_regions)
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VERIFY(!text_region.is_writable());
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// First, we make a dummy reservation mapping, in order to allocate enough VM
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// to hold all regions contiguously in the address space.
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FlatPtr ph_load_base = load_regions.first().desired_load_address().page_base().get();
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FlatPtr ph_load_end = round_up_to_power_of_two(load_regions.last().desired_load_address().offset(load_regions.last().size_in_memory()).get(), PAGE_SIZE);
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size_t total_mapping_size = ph_load_end - ph_load_base;
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auto* reservation = mmap(requested_load_address, total_mapping_size, PROT_NONE, reservation_mmap_flags, 0, 0);
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if (reservation == MAP_FAILED) {
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perror("mmap reservation");
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VERIFY_NOT_REACHED();
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}
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m_base_address = VirtualAddress { reservation };
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// Then we unmap the reservation.
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if (munmap(reservation, total_mapping_size) < 0) {
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perror("munmap reservation");
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VERIFY_NOT_REACHED();
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}
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for (auto& text_region : text_regions) {
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FlatPtr ph_text_desired_base = text_region.desired_load_address().get();
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FlatPtr ph_text_base = text_region.desired_load_address().page_base().get();
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FlatPtr ph_text_end = ph_text_base + round_up_to_power_of_two(text_region.size_in_memory() + text_region.desired_load_address().get() - ph_text_base, PAGE_SIZE);
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// Now we can map the text segment at the reserved address.
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auto* text_segment_begin = (u8*)mmap_with_name(
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(u8*)reservation + ph_text_base - ph_load_base,
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ph_text_desired_base - ph_text_base + text_region.size_in_image(),
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PROT_READ,
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MAP_FILE | MAP_SHARED | MAP_FIXED,
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m_image_fd,
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VirtualAddress { text_region.offset() }.page_base().get(),
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String::formatted("{}: .text", m_filename).characters());
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if (text_segment_begin == MAP_FAILED) {
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perror("mmap text");
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VERIFY_NOT_REACHED();
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}
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m_text_segments.append({ VirtualAddress { (FlatPtr)text_segment_begin }, ph_text_end - ph_text_base });
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}
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VERIFY(requested_load_address == nullptr || requested_load_address == reservation);
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if (relro_region.has_value()) {
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m_relro_segment_size = relro_region->size_in_memory();
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m_relro_segment_address = VirtualAddress { (u8*)reservation + relro_region->desired_load_address().get() - ph_load_base };
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}
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if (m_elf_image.is_dynamic())
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m_dynamic_section_address = VirtualAddress { (u8*)reservation + dynamic_region_desired_vaddr.get() - ph_load_base };
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else
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m_dynamic_section_address = dynamic_region_desired_vaddr;
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for (auto& data_region : data_regions) {
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FlatPtr ph_data_base = data_region.desired_load_address().page_base().get();
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FlatPtr ph_data_end = ph_data_base + round_up_to_power_of_two(data_region.size_in_memory() + data_region.desired_load_address().get() - ph_data_base, PAGE_SIZE);
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auto* data_segment_address = (u8*)reservation + ph_data_base - ph_load_base;
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size_t data_segment_size = ph_data_end - ph_data_base;
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// Finally, we make an anonymous mapping for the data segment. Contents are then copied from the file.
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auto* data_segment = (u8*)mmap_with_name(
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data_segment_address,
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data_segment_size,
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PROT_READ | PROT_WRITE,
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MAP_ANONYMOUS | MAP_PRIVATE | MAP_FIXED,
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0,
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0,
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String::formatted("{}: .data", m_filename).characters());
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if (MAP_FAILED == data_segment) {
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perror("mmap data");
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VERIFY_NOT_REACHED();
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}
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VirtualAddress data_segment_start;
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if (m_elf_image.is_dynamic())
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data_segment_start = VirtualAddress { (u8*)reservation + data_region.desired_load_address().get() };
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else
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data_segment_start = data_region.desired_load_address();
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VERIFY(data_segment_start.as_ptr() + data_region.size_in_memory() <= data_segment + data_segment_size);
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memcpy(data_segment_start.as_ptr(), (u8*)m_file_data + data_region.offset(), data_region.size_in_image());
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}
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// FIXME: Initialize the values in the TLS section. Currently, it is zeroed.
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}
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DynamicLoader::RelocationResult DynamicLoader::do_relocation(const ELF::DynamicObject::Relocation& relocation, ShouldInitializeWeak should_initialize_weak)
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{
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FlatPtr* patch_ptr = nullptr;
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if (is_dynamic())
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patch_ptr = (FlatPtr*)(m_dynamic_object->base_address().as_ptr() + relocation.offset());
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else
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patch_ptr = (FlatPtr*)(FlatPtr)relocation.offset();
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switch (relocation.type()) {
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#if ARCH(I386)
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case R_386_NONE:
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#else
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case R_X86_64_NONE:
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#endif
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// Apparently most loaders will just skip these?
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// Seems if the 'link editor' generates one something is funky with your code
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break;
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#if ARCH(I386)
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case R_386_32: {
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#else
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case R_X86_64_64: {
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#endif
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auto symbol = relocation.symbol();
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auto res = lookup_symbol(symbol);
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if (!res.has_value()) {
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if (symbol.bind() == STB_WEAK)
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return RelocationResult::ResolveLater;
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dbgln("ERROR: symbol not found: {}.", symbol.name());
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return RelocationResult::Failed;
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}
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auto symbol_address = res.value().address;
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if (relocation.addend_used())
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*patch_ptr = symbol_address.get() + relocation.addend();
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else
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*patch_ptr += symbol_address.get();
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break;
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}
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#if ARCH(I386)
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case R_386_PC32: {
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auto symbol = relocation.symbol();
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auto result = lookup_symbol(symbol);
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if (!result.has_value())
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return RelocationResult::Failed;
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auto relative_offset = result.value().address - m_dynamic_object->base_address().offset(relocation.offset());
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*patch_ptr += relative_offset.get();
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break;
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}
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case R_386_GLOB_DAT: {
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#else
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case R_X86_64_GLOB_DAT: {
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#endif
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auto symbol = relocation.symbol();
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auto res = lookup_symbol(symbol);
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VirtualAddress symbol_location;
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if (!res.has_value()) {
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if (symbol.bind() == STB_WEAK) {
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if (should_initialize_weak == ShouldInitializeWeak::No)
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return RelocationResult::ResolveLater;
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} else {
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// Symbol not found
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return RelocationResult::Failed;
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}
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symbol_location = VirtualAddress { (FlatPtr)0 };
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} else
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symbol_location = res.value().address;
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VERIFY(symbol_location != m_dynamic_object->base_address());
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*patch_ptr = symbol_location.get();
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break;
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}
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#if ARCH(I386)
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case R_386_RELATIVE: {
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#else
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case R_X86_64_RELATIVE: {
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#endif
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// FIXME: According to the spec, R_386_relative ones must be done first.
|
|
// We could explicitly do them first using m_number_of_relocations from DT_RELCOUNT
|
|
// However, our compiler is nice enough to put them at the front of the relocations for us :)
|
|
if (relocation.addend_used())
|
|
*patch_ptr = m_dynamic_object->base_address().offset(relocation.addend()).get();
|
|
else
|
|
*patch_ptr += m_dynamic_object->base_address().get();
|
|
break;
|
|
}
|
|
#if ARCH(I386)
|
|
case R_386_TLS_TPOFF32:
|
|
case R_386_TLS_TPOFF: {
|
|
#else
|
|
case R_X86_64_TPOFF64: {
|
|
#endif
|
|
auto symbol = relocation.symbol();
|
|
FlatPtr symbol_value;
|
|
DynamicObject const* dynamic_object_of_symbol;
|
|
if (relocation.symbol_index() != 0) {
|
|
auto res = lookup_symbol(symbol);
|
|
if (!res.has_value())
|
|
break;
|
|
symbol_value = res.value().value;
|
|
dynamic_object_of_symbol = res.value().dynamic_object;
|
|
} else {
|
|
symbol_value = 0;
|
|
dynamic_object_of_symbol = &relocation.dynamic_object();
|
|
}
|
|
VERIFY(dynamic_object_of_symbol);
|
|
size_t addend = relocation.addend_used() ? relocation.addend() : *patch_ptr;
|
|
*patch_ptr = negative_offset_from_tls_block_end(dynamic_object_of_symbol->tls_offset().value(), symbol_value + addend);
|
|
break;
|
|
}
|
|
#if ARCH(I386)
|
|
case R_386_JMP_SLOT: {
|
|
#else
|
|
case R_X86_64_JUMP_SLOT: {
|
|
#endif
|
|
// FIXME: Or BIND_NOW flag passed in?
|
|
if (m_dynamic_object->must_bind_now()) {
|
|
// Eagerly BIND_NOW the PLT entries, doing all the symbol looking goodness
|
|
// The patch method returns the address for the LAZY fixup path, but we don't need it here
|
|
m_dynamic_object->patch_plt_entry(relocation.offset_in_section());
|
|
} else {
|
|
auto relocation_address = (FlatPtr*)relocation.address().as_ptr();
|
|
|
|
if (m_elf_image.is_dynamic())
|
|
*relocation_address += m_dynamic_object->base_address().get();
|
|
}
|
|
break;
|
|
}
|
|
default:
|
|
// Raise the alarm! Someone needs to implement this relocation type
|
|
dbgln("Found a new exciting relocation type {}", relocation.type());
|
|
VERIFY_NOT_REACHED();
|
|
}
|
|
return RelocationResult::Success;
|
|
}
|
|
|
|
ssize_t DynamicLoader::negative_offset_from_tls_block_end(ssize_t tls_offset, size_t value_of_symbol) const
|
|
{
|
|
ssize_t offset = static_cast<ssize_t>(tls_offset + value_of_symbol);
|
|
// At offset 0 there's the thread's ThreadSpecificData structure, we don't want to collide with it.
|
|
VERIFY(offset < 0);
|
|
return offset;
|
|
}
|
|
|
|
void DynamicLoader::copy_initial_tls_data_into(ByteBuffer& buffer) const
|
|
{
|
|
const u8* tls_data = nullptr;
|
|
size_t tls_size_in_image = 0;
|
|
|
|
m_elf_image.for_each_program_header([this, &tls_data, &tls_size_in_image](ELF::Image::ProgramHeader program_header) {
|
|
if (program_header.type() != PT_TLS)
|
|
return IterationDecision::Continue;
|
|
|
|
tls_data = (const u8*)m_file_data + program_header.offset();
|
|
tls_size_in_image = program_header.size_in_image();
|
|
return IterationDecision::Break;
|
|
});
|
|
|
|
if (!tls_data || !tls_size_in_image)
|
|
return;
|
|
|
|
m_elf_image.for_each_symbol([this, &buffer, tls_data](ELF::Image::Symbol symbol) {
|
|
if (symbol.type() != STT_TLS)
|
|
return IterationDecision::Continue;
|
|
|
|
ssize_t negative_offset = negative_offset_from_tls_block_end(m_tls_offset, symbol.value());
|
|
VERIFY(symbol.size() != 0);
|
|
VERIFY(buffer.size() + negative_offset + symbol.size() <= buffer.size());
|
|
memcpy(buffer.data() + buffer.size() + negative_offset, tls_data + symbol.value(), symbol.size());
|
|
|
|
return IterationDecision::Continue;
|
|
});
|
|
}
|
|
|
|
// Defined in <arch>/plt_trampoline.S
|
|
extern "C" void _plt_trampoline(void) __attribute__((visibility("hidden")));
|
|
|
|
void DynamicLoader::setup_plt_trampoline()
|
|
{
|
|
VERIFY(m_dynamic_object);
|
|
VERIFY(m_dynamic_object->has_plt());
|
|
VirtualAddress got_address = m_dynamic_object->plt_got_base_address();
|
|
|
|
auto* got_ptr = (FlatPtr*)got_address.as_ptr();
|
|
got_ptr[1] = (FlatPtr)m_dynamic_object.ptr();
|
|
got_ptr[2] = (FlatPtr)&_plt_trampoline;
|
|
}
|
|
|
|
// Called from our ASM routine _plt_trampoline.
|
|
// Tell the compiler that it might be called from other places:
|
|
extern "C" FlatPtr _fixup_plt_entry(DynamicObject* object, u32 relocation_offset);
|
|
extern "C" FlatPtr _fixup_plt_entry(DynamicObject* object, u32 relocation_offset)
|
|
{
|
|
return object->patch_plt_entry(relocation_offset).get();
|
|
}
|
|
|
|
void DynamicLoader::call_object_init_functions()
|
|
{
|
|
typedef void (*InitFunc)();
|
|
|
|
if (m_dynamic_object->has_init_section()) {
|
|
auto init_function = (InitFunc)(m_dynamic_object->init_section().address().as_ptr());
|
|
(init_function)();
|
|
}
|
|
|
|
if (m_dynamic_object->has_init_array_section()) {
|
|
auto init_array_section = m_dynamic_object->init_array_section();
|
|
|
|
InitFunc* init_begin = (InitFunc*)(init_array_section.address().as_ptr());
|
|
InitFunc* init_end = init_begin + init_array_section.entry_count();
|
|
while (init_begin != init_end) {
|
|
// Android sources claim that these can be -1, to be ignored.
|
|
// 0 definitely shows up. Apparently 0/-1 are valid? Confusing.
|
|
if (!*init_begin || ((FlatPtr)*init_begin == (FlatPtr)-1))
|
|
continue;
|
|
(*init_begin)();
|
|
++init_begin;
|
|
}
|
|
}
|
|
}
|
|
|
|
Optional<DynamicObject::SymbolLookupResult> DynamicLoader::lookup_symbol(const ELF::DynamicObject::Symbol& symbol)
|
|
{
|
|
if (symbol.is_undefined() || symbol.bind() == STB_WEAK)
|
|
return DynamicLinker::lookup_global_symbol(symbol.name());
|
|
|
|
return DynamicObject::SymbolLookupResult { symbol.value(), symbol.size(), symbol.address(), symbol.bind(), &symbol.object() };
|
|
}
|
|
|
|
} // end namespace ELF
|