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eecf7a2097
POSIX mandates that it is placed there.
516 lines
17 KiB
C++
516 lines
17 KiB
C++
/*
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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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* Copyright (c) 2021, the SerenityOS developers.
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*
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* SPDX-License-Identifier: BSD-2-Clause
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*/
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#include <AK/ByteBuffer.h>
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#include <AK/Debug.h>
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#include <AK/HashMap.h>
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#include <AK/HashTable.h>
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#include <AK/LexicalPath.h>
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#include <AK/NonnullRefPtrVector.h>
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#include <AK/ScopeGuard.h>
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#include <AK/Vector.h>
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#include <LibC/bits/pthread_integration.h>
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#include <LibC/link.h>
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#include <LibC/sys/mman.h>
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#include <LibC/unistd.h>
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#include <LibDl/dlfcn.h>
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#include <LibDl/dlfcn_integration.h>
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#include <LibELF/AuxiliaryVector.h>
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#include <LibELF/DynamicLinker.h>
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#include <LibELF/DynamicLoader.h>
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#include <LibELF/DynamicObject.h>
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#include <LibELF/Hashes.h>
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#include <fcntl.h>
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#include <string.h>
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#include <sys/types.h>
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#include <syscall.h>
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namespace ELF {
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static HashMap<String, NonnullRefPtr<ELF::DynamicLoader>> s_loaders;
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static String s_main_program_name;
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static HashMap<String, NonnullRefPtr<ELF::DynamicObject>> s_global_objects;
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using EntryPointFunction = int (*)(int, char**, char**);
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using LibCExitFunction = void (*)(int);
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using DlIteratePhdrCallbackFunction = int (*)(struct dl_phdr_info*, size_t, void*);
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using DlIteratePhdrFunction = int (*)(DlIteratePhdrCallbackFunction, void*);
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static size_t s_current_tls_offset = 0;
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static size_t s_total_tls_size = 0;
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static size_t s_allocated_tls_block_size = 0;
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static char** s_envp = nullptr;
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static LibCExitFunction s_libc_exit = nullptr;
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static __pthread_mutex_t s_loader_lock = __PTHREAD_MUTEX_INITIALIZER;
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static bool s_allowed_to_check_environment_variables { false };
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static bool s_do_breakpoint_trap_before_entry { false };
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static Result<void, DlErrorMessage> __dlclose(void* handle);
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static Result<void*, DlErrorMessage> __dlopen(const char* filename, int flags);
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static Result<void*, DlErrorMessage> __dlsym(void* handle, const char* symbol_name);
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Optional<DynamicObject::SymbolLookupResult> DynamicLinker::lookup_global_symbol(const StringView& name)
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{
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Optional<DynamicObject::SymbolLookupResult> weak_result;
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auto symbol = DynamicObject::HashSymbol { name };
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for (auto& lib : s_global_objects) {
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auto res = lib.value->lookup_symbol(symbol);
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if (!res.has_value())
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continue;
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if (res.value().bind == STB_GLOBAL)
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return res;
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if (res.value().bind == STB_WEAK && !weak_result.has_value())
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weak_result = res;
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// We don't want to allow local symbols to be pulled in to other modules
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}
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return weak_result;
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}
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static String get_library_name(String path)
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{
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return LexicalPath(move(path)).basename();
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}
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static Result<NonnullRefPtr<DynamicLoader>, DlErrorMessage> map_library(const String& filename, int fd)
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{
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auto result = ELF::DynamicLoader::try_create(fd, filename);
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if (result.is_error()) {
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return result;
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}
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auto& loader = result.value();
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s_loaders.set(get_library_name(filename), *loader);
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loader->set_tls_offset(s_current_tls_offset);
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s_current_tls_offset += loader->tls_size_of_current_object();
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return loader;
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}
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static Result<NonnullRefPtr<DynamicLoader>, DlErrorMessage> map_library(const String& name)
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{
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if (name.contains("/")) {
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int fd = open(name.characters(), O_RDONLY);
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if (fd < 0)
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return DlErrorMessage { String::formatted("Could not open shared library: {}", name) };
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return map_library(name, fd);
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}
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// TODO: Do we want to also look for libs in other paths too?
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const char* search_paths[] = { "/usr/lib/{}", "/usr/local/lib/{}" };
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for (auto& search_path : search_paths) {
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auto path = String::formatted(search_path, name);
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int fd = open(path.characters(), O_RDONLY);
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if (fd < 0)
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continue;
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return map_library(name, fd);
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}
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return DlErrorMessage { String::formatted("Could not find required shared library: {}", name) };
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}
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static Vector<String> get_dependencies(const String& name)
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{
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auto lib = s_loaders.get(name).value();
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Vector<String> dependencies;
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lib->for_each_needed_library([&dependencies, &name](auto needed_name) {
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if (name == needed_name)
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return IterationDecision::Continue;
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dependencies.append(needed_name);
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return IterationDecision::Continue;
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});
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return dependencies;
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}
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static Result<void, DlErrorMessage> map_dependencies(const String& name)
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{
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dbgln_if(DYNAMIC_LOAD_DEBUG, "mapping dependencies for: {}", name);
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for (const auto& needed_name : get_dependencies(name)) {
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dbgln_if(DYNAMIC_LOAD_DEBUG, "needed library: {}", needed_name.characters());
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String library_name = get_library_name(needed_name);
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if (!s_loaders.contains(library_name) && !s_global_objects.contains(library_name)) {
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auto result1 = map_library(needed_name);
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if (result1.is_error()) {
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return result1.error();
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}
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auto result2 = map_dependencies(library_name);
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if (result2.is_error()) {
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return result2.error();
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}
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}
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}
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dbgln_if(DYNAMIC_LOAD_DEBUG, "mapped dependencies for {}", name);
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return {};
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}
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static void allocate_tls()
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{
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s_total_tls_size = 0;
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for (const auto& data : s_loaders) {
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dbgln_if(DYNAMIC_LOAD_DEBUG, "{}: TLS Size: {}", data.key, data.value->tls_size_of_current_object());
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s_total_tls_size += data.value->tls_size_of_current_object();
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}
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if (!s_total_tls_size)
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return;
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auto page_aligned_size = align_up_to(s_total_tls_size, PAGE_SIZE);
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ByteBuffer initial_tls_data = ByteBuffer::create_zeroed(page_aligned_size);
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// Initialize TLS data
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for (const auto& entry : s_loaders) {
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entry.value->copy_initial_tls_data_into(initial_tls_data);
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}
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void* master_tls = ::allocate_tls((char*)initial_tls_data.data(), initial_tls_data.size());
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VERIFY(master_tls != (void*)-1);
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dbgln_if(DYNAMIC_LOAD_DEBUG, "from userspace, master_tls: {:p}", master_tls);
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s_allocated_tls_block_size = initial_tls_data.size();
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}
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static int __dl_iterate_phdr(DlIteratePhdrCallbackFunction callback, void* data)
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{
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__pthread_mutex_lock(&s_loader_lock);
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ScopeGuard unlock_guard = [] { __pthread_mutex_unlock(&s_loader_lock); };
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for (auto& it : s_global_objects) {
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auto& object = it.value;
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auto info = dl_phdr_info {
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.dlpi_addr = (ElfW(Addr))object->base_address().as_ptr(),
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.dlpi_name = object->filename().characters(),
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.dlpi_phdr = object->program_headers(),
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.dlpi_phnum = object->program_header_count()
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};
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auto res = callback(&info, sizeof(info), data);
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if (res != 0)
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return res;
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}
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return 0;
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}
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static void initialize_libc(DynamicObject& libc)
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{
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// Traditionally, `_start` of the main program initializes libc.
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// However, since some libs use malloc() and getenv() in global constructors,
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// we have to initialize libc just after it is loaded.
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// Also, we can't just mark `__libc_init` with "__attribute__((constructor))"
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// because it uses getenv() internally, so `environ` has to be initialized before we call `__libc_init`.
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auto res = libc.lookup_symbol("environ"sv);
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VERIFY(res.has_value());
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*((char***)res.value().address.as_ptr()) = s_envp;
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res = libc.lookup_symbol("__environ_is_malloced"sv);
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VERIFY(res.has_value());
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*((bool*)res.value().address.as_ptr()) = false;
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res = libc.lookup_symbol("exit"sv);
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VERIFY(res.has_value());
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s_libc_exit = (LibCExitFunction)res.value().address.as_ptr();
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res = libc.lookup_symbol("__dl_iterate_phdr"sv);
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VERIFY(res.has_value());
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*((DlIteratePhdrFunction*)res.value().address.as_ptr()) = __dl_iterate_phdr;
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res = libc.lookup_symbol("__dlclose"sv);
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VERIFY(res.has_value());
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*((DlCloseFunction*)res.value().address.as_ptr()) = __dlclose;
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res = libc.lookup_symbol("__dlopen"sv);
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VERIFY(res.has_value());
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*((DlOpenFunction*)res.value().address.as_ptr()) = __dlopen;
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res = libc.lookup_symbol("__dlsym"sv);
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VERIFY(res.has_value());
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*((DlSymFunction*)res.value().address.as_ptr()) = __dlsym;
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res = libc.lookup_symbol("__libc_init"sv);
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VERIFY(res.has_value());
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typedef void libc_init_func();
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((libc_init_func*)res.value().address.as_ptr())();
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}
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template<typename Callback>
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static void for_each_unfinished_dependency_of(const String& name, HashTable<String>& seen_names, Callback callback)
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{
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if (!s_loaders.contains(name))
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return;
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if (seen_names.contains(name))
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return;
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seen_names.set(name);
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for (const auto& needed_name : get_dependencies(name))
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for_each_unfinished_dependency_of(get_library_name(needed_name), seen_names, callback);
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callback(*s_loaders.get(name).value());
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}
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static NonnullRefPtrVector<DynamicLoader> collect_loaders_for_library(const String& name)
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{
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HashTable<String> seen_names;
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NonnullRefPtrVector<DynamicLoader> loaders;
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for_each_unfinished_dependency_of(name, seen_names, [&](auto& loader) {
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loaders.append(loader);
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});
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return loaders;
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}
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static Result<NonnullRefPtr<DynamicLoader>, DlErrorMessage> load_main_library(const String& name, int flags)
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{
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auto main_library_loader = *s_loaders.get(name);
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auto main_library_object = main_library_loader->map();
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s_global_objects.set(name, *main_library_object);
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auto loaders = collect_loaders_for_library(name);
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for (auto& loader : loaders) {
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auto dynamic_object = loader.map();
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if (dynamic_object)
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s_global_objects.set(dynamic_object->filename(), *dynamic_object);
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}
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for (auto& loader : loaders) {
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bool success = loader.link(flags);
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if (!success) {
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return DlErrorMessage { String::formatted("Failed to link library {}", loader.filename()) };
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}
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}
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for (auto& loader : loaders) {
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auto result = loader.load_stage_3(flags);
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VERIFY(!result.is_error());
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auto& object = result.value();
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if (loader.filename() == "libsystem.so") {
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if (syscall(SC_msyscall, object->base_address().as_ptr())) {
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VERIFY_NOT_REACHED();
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}
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}
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if (loader.filename() == "libc.so") {
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initialize_libc(*object);
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}
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}
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for (auto& loader : loaders) {
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loader.load_stage_4();
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}
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return NonnullRefPtr<DynamicLoader>(*main_library_loader);
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}
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static Result<void, DlErrorMessage> __dlclose(void* handle)
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{
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dbgln_if(DYNAMIC_LOAD_DEBUG, "__dlclose: {}", handle);
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__pthread_mutex_lock(&s_loader_lock);
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ScopeGuard unlock_guard = [] { __pthread_mutex_unlock(&s_loader_lock); };
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// FIXME: this will not currently destroy the dynamic object
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// because we're intentionally holding a strong reference to it
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// via s_global_objects until there's proper unload support.
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auto object = static_cast<ELF::DynamicObject*>(handle);
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object->unref();
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return {};
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}
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static Optional<DlErrorMessage> verify_tls_for_dlopen(const DynamicLoader& loader)
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{
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if (loader.tls_size_of_current_object() == 0)
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return {};
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if (s_total_tls_size + loader.tls_size_of_current_object() > s_allocated_tls_block_size)
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return DlErrorMessage("TLS size too large");
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bool tls_data_is_all_zero = true;
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loader.image().for_each_program_header([&loader, &tls_data_is_all_zero](ELF::Image::ProgramHeader program_header) {
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if (program_header.type() != PT_TLS)
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return IterationDecision::Continue;
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auto* tls_data = (const u8*)loader.image().base_address() + program_header.offset();
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for (size_t i = 0; i < program_header.size_in_image(); ++i) {
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if (tls_data[i] != 0) {
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tls_data_is_all_zero = false;
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break;
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}
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}
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return IterationDecision::Break;
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});
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if (tls_data_is_all_zero)
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return {};
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return DlErrorMessage("Using dlopen() with libraries that have non-zeroed TLS is currently not supported");
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}
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static Result<void*, DlErrorMessage> __dlopen(const char* filename, int flags)
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{
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// FIXME: RTLD_NOW and RTLD_LOCAL are not supported
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flags &= ~RTLD_NOW;
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flags |= RTLD_LAZY;
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flags &= ~RTLD_LOCAL;
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flags |= RTLD_GLOBAL;
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dbgln_if(DYNAMIC_LOAD_DEBUG, "__dlopen invoked, filename={}, flags={}", filename, flags);
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auto library_name = get_library_name(filename ? filename : s_main_program_name);
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if (__pthread_mutex_trylock(&s_loader_lock) != 0)
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return DlErrorMessage { "Nested calls to dlopen() are not permitted." };
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ScopeGuard unlock_guard = [] { __pthread_mutex_unlock(&s_loader_lock); };
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auto existing_elf_object = s_global_objects.get(library_name);
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if (existing_elf_object.has_value()) {
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// It's up to the caller to release the ref with dlclose().
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existing_elf_object.value()->ref();
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return *existing_elf_object;
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}
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VERIFY(!library_name.is_empty());
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auto result1 = map_library(filename);
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if (result1.is_error()) {
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return result1.error();
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}
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if (auto error = verify_tls_for_dlopen(result1.value()); error.has_value())
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return error.value();
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auto result2 = map_dependencies(library_name);
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if (result2.is_error()) {
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return result2.error();
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}
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auto result = load_main_library(library_name, flags);
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if (result.is_error())
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return result.error();
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s_total_tls_size += result1.value()->tls_size_of_current_object();
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auto object = s_global_objects.get(library_name);
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if (!object.has_value())
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return DlErrorMessage { "Could not load ELF object." };
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// It's up to the caller to release the ref with dlclose().
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object.value()->ref();
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return *object;
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}
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static Result<void*, DlErrorMessage> __dlsym(void* handle, const char* symbol_name)
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{
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dbgln_if(DYNAMIC_LOAD_DEBUG, "__dlsym: {}, {}", handle, symbol_name);
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__pthread_mutex_lock(&s_loader_lock);
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ScopeGuard unlock_guard = [] { __pthread_mutex_unlock(&s_loader_lock); };
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auto object = static_cast<DynamicObject*>(handle);
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if (!handle) {
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auto library_name = get_library_name(s_main_program_name);
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auto global_object = s_global_objects.get(library_name);
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object = *global_object;
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}
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auto symbol = object->lookup_symbol(symbol_name);
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if (!symbol.has_value()) {
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return DlErrorMessage { String::formatted("Symbol {} not found", symbol_name) };
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}
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return symbol.value().address.as_ptr();
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}
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static void read_environment_variables()
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{
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for (char** env = s_envp; *env; ++env) {
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if (StringView { *env } == "_LOADER_BREAKPOINT=1") {
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s_do_breakpoint_trap_before_entry = true;
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}
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}
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}
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void ELF::DynamicLinker::linker_main(String&& main_program_name, int main_program_fd, bool is_secure, int argc, char** argv, char** envp)
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{
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s_envp = envp;
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s_allowed_to_check_environment_variables = !is_secure;
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if (s_allowed_to_check_environment_variables)
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read_environment_variables();
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s_main_program_name = main_program_name;
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auto library_name = get_library_name(main_program_name);
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// NOTE: We always map the main library first, since it may require
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// placement at a specific address.
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auto result1 = map_library(main_program_name, main_program_fd);
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if (result1.is_error()) {
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warnln("{}", result1.error().text);
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fflush(stderr);
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_exit(1);
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}
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result1.release_value();
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auto result2 = map_dependencies(library_name);
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if (result2.is_error()) {
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warnln("{}", result2.error().text);
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fflush(stderr);
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_exit(1);
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}
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dbgln_if(DYNAMIC_LOAD_DEBUG, "loaded all dependencies");
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for ([[maybe_unused]] auto& lib : s_loaders) {
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dbgln_if(DYNAMIC_LOAD_DEBUG, "{} - tls size: {}, tls offset: {}", lib.key, lib.value->tls_size_of_current_object(), lib.value->tls_offset());
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}
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|
|
|
allocate_tls();
|
|
|
|
auto entry_point_function = [&main_program_name] {
|
|
auto library_name = get_library_name(main_program_name);
|
|
auto result = load_main_library(library_name, RTLD_GLOBAL | RTLD_LAZY);
|
|
if (result.is_error()) {
|
|
warnln("{}", result.error().text);
|
|
_exit(1);
|
|
}
|
|
auto& main_executable_loader = result.value();
|
|
auto entry_point = main_executable_loader->image().entry();
|
|
if (main_executable_loader->is_dynamic())
|
|
entry_point = entry_point.offset(main_executable_loader->base_address().get());
|
|
return (EntryPointFunction)(entry_point.as_ptr());
|
|
}();
|
|
|
|
s_loaders.clear();
|
|
|
|
int rc = syscall(SC_msyscall, nullptr);
|
|
if (rc < 0) {
|
|
VERIFY_NOT_REACHED();
|
|
}
|
|
|
|
dbgln_if(DYNAMIC_LOAD_DEBUG, "Jumping to entry point: {:p}", entry_point_function);
|
|
if (s_do_breakpoint_trap_before_entry) {
|
|
asm("int3");
|
|
}
|
|
rc = entry_point_function(argc, argv, envp);
|
|
dbgln_if(DYNAMIC_LOAD_DEBUG, "rc: {}", rc);
|
|
if (s_libc_exit != nullptr) {
|
|
s_libc_exit(rc);
|
|
} else {
|
|
_exit(rc);
|
|
}
|
|
|
|
VERIFY_NOT_REACHED();
|
|
}
|
|
|
|
}
|