DynamicLoader.cpp 28 KB

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  1. /*
  2. * Copyright (c) 2019-2020, Andrew Kaster <akaster@serenityos.org>
  3. * Copyright (c) 2020, Itamar S. <itamar8910@gmail.com>
  4. * Copyright (c) 2021, Andreas Kling <kling@serenityos.org>
  5. * Copyright (c) 2022, Daniel Bertalan <dani@danielbertalan.dev>
  6. *
  7. * SPDX-License-Identifier: BSD-2-Clause
  8. */
  9. #include <AK/Debug.h>
  10. #include <AK/Optional.h>
  11. #include <AK/QuickSort.h>
  12. #include <AK/StringBuilder.h>
  13. #include <LibELF/DynamicLinker.h>
  14. #include <LibELF/DynamicLoader.h>
  15. #include <LibELF/Hashes.h>
  16. #include <LibELF/Validation.h>
  17. #include <assert.h>
  18. #include <bits/dlfcn_integration.h>
  19. #include <dlfcn.h>
  20. #include <errno.h>
  21. #include <stdio.h>
  22. #include <stdlib.h>
  23. #include <string.h>
  24. #include <sys/mman.h>
  25. #include <sys/stat.h>
  26. #include <unistd.h>
  27. #ifndef AK_OS_SERENITY
  28. static void* mmap_with_name(void* addr, size_t length, int prot, int flags, int fd, off_t offset, char const*)
  29. {
  30. return mmap(addr, length, prot, flags, fd, offset);
  31. }
  32. # define MAP_RANDOMIZED 0
  33. #endif
  34. namespace ELF {
  35. Result<NonnullRefPtr<DynamicLoader>, DlErrorMessage> DynamicLoader::try_create(int fd, DeprecatedString filepath)
  36. {
  37. VERIFY(filepath.starts_with('/'));
  38. struct stat stat;
  39. if (fstat(fd, &stat) < 0) {
  40. return DlErrorMessage { "DynamicLoader::try_create fstat" };
  41. }
  42. VERIFY(stat.st_size >= 0);
  43. auto size = static_cast<size_t>(stat.st_size);
  44. if (size < sizeof(ElfW(Ehdr)))
  45. return DlErrorMessage { DeprecatedString::formatted("File {} has invalid ELF header", filepath) };
  46. DeprecatedString file_mmap_name = DeprecatedString::formatted("ELF_DYN: {}", filepath);
  47. auto* data = mmap_with_name(nullptr, size, PROT_READ, MAP_SHARED, fd, 0, file_mmap_name.characters());
  48. if (data == MAP_FAILED) {
  49. return DlErrorMessage { "DynamicLoader::try_create mmap" };
  50. }
  51. auto loader = adopt_ref(*new DynamicLoader(fd, move(filepath), data, size));
  52. if (!loader->is_valid())
  53. return DlErrorMessage { "ELF image validation failed" };
  54. return loader;
  55. }
  56. DynamicLoader::DynamicLoader(int fd, DeprecatedString filepath, void* data, size_t size)
  57. : m_filepath(move(filepath))
  58. , m_file_size(size)
  59. , m_image_fd(fd)
  60. , m_file_data(data)
  61. {
  62. m_elf_image = adopt_own(*new ELF::Image((u8*)m_file_data, m_file_size));
  63. m_valid = validate();
  64. if (m_valid)
  65. find_tls_size_and_alignment();
  66. else
  67. dbgln("Image validation failed for file {}", m_filepath);
  68. }
  69. DynamicLoader::~DynamicLoader()
  70. {
  71. if (munmap(m_file_data, m_file_size) < 0) {
  72. perror("munmap");
  73. VERIFY_NOT_REACHED();
  74. }
  75. if (close(m_image_fd) < 0) {
  76. perror("close");
  77. VERIFY_NOT_REACHED();
  78. }
  79. }
  80. DynamicObject const& DynamicLoader::dynamic_object() const
  81. {
  82. if (!m_cached_dynamic_object) {
  83. VirtualAddress dynamic_section_address;
  84. image().for_each_program_header([&dynamic_section_address](auto program_header) {
  85. if (program_header.type() == PT_DYNAMIC) {
  86. dynamic_section_address = VirtualAddress(program_header.raw_data());
  87. }
  88. });
  89. VERIFY(!dynamic_section_address.is_null());
  90. m_cached_dynamic_object = ELF::DynamicObject::create(m_filepath, VirtualAddress(image().base_address()), dynamic_section_address);
  91. }
  92. return *m_cached_dynamic_object;
  93. }
  94. void DynamicLoader::find_tls_size_and_alignment()
  95. {
  96. image().for_each_program_header([this](auto program_header) {
  97. if (program_header.type() == PT_TLS) {
  98. m_tls_size_of_current_object = program_header.size_in_memory();
  99. auto alignment = program_header.alignment();
  100. VERIFY(!alignment || is_power_of_two(alignment));
  101. m_tls_alignment_of_current_object = alignment > 1 ? alignment : 0; // No need to reserve extra space for single byte alignment
  102. return IterationDecision::Break;
  103. }
  104. return IterationDecision::Continue;
  105. });
  106. }
  107. bool DynamicLoader::validate()
  108. {
  109. if (!image().is_valid())
  110. return false;
  111. auto* elf_header = (ElfW(Ehdr)*)m_file_data;
  112. if (!validate_elf_header(*elf_header, m_file_size))
  113. return false;
  114. auto result_or_error = validate_program_headers(*elf_header, m_file_size, { m_file_data, m_file_size });
  115. if (result_or_error.is_error() || !result_or_error.value())
  116. return false;
  117. return true;
  118. }
  119. RefPtr<DynamicObject> DynamicLoader::map()
  120. {
  121. if (m_dynamic_object) {
  122. // Already mapped.
  123. return nullptr;
  124. }
  125. if (!m_valid) {
  126. dbgln("DynamicLoader::map failed: image is invalid");
  127. return nullptr;
  128. }
  129. load_program_headers();
  130. VERIFY(!m_base_address.is_null());
  131. m_dynamic_object = DynamicObject::create(m_filepath, m_base_address, m_dynamic_section_address);
  132. m_dynamic_object->set_tls_offset(m_tls_offset);
  133. m_dynamic_object->set_tls_size(m_tls_size_of_current_object);
  134. return m_dynamic_object;
  135. }
  136. bool DynamicLoader::link(unsigned flags)
  137. {
  138. return load_stage_2(flags);
  139. }
  140. bool DynamicLoader::load_stage_2(unsigned flags)
  141. {
  142. VERIFY(flags & RTLD_GLOBAL);
  143. if (m_dynamic_object->has_text_relocations()) {
  144. dbgln("\033[33mWarning:\033[0m Dynamic object {} has text relocations", m_dynamic_object->filepath());
  145. for (auto& text_segment : m_text_segments) {
  146. VERIFY(text_segment.address().get() != 0);
  147. #ifndef AK_OS_MACOS
  148. // Remap this text region as private.
  149. if (mremap(text_segment.address().as_ptr(), text_segment.size(), text_segment.size(), MAP_PRIVATE) == MAP_FAILED) {
  150. perror("mremap .text: MAP_PRIVATE");
  151. return false;
  152. }
  153. #endif
  154. if (0 > mprotect(text_segment.address().as_ptr(), text_segment.size(), PROT_READ | PROT_WRITE)) {
  155. perror("mprotect .text: PROT_READ | PROT_WRITE"); // FIXME: dlerror?
  156. return false;
  157. }
  158. }
  159. } else {
  160. // .text needs to be executable while we process relocations because it might contain IFUNC resolvers.
  161. // We don't allow IFUNC resolvers in objects with textrels.
  162. for (auto& text_segment : m_text_segments) {
  163. if (mprotect(text_segment.address().as_ptr(), text_segment.size(), PROT_READ | PROT_EXEC) < 0) {
  164. perror("mprotect .text: PROT_READ | PROT_EXEC");
  165. return false;
  166. }
  167. }
  168. }
  169. do_main_relocations();
  170. return true;
  171. }
  172. void DynamicLoader::do_main_relocations()
  173. {
  174. do_relr_relocations();
  175. m_dynamic_object->relocation_section().for_each_relocation([&](DynamicObject::Relocation const& relocation) {
  176. switch (do_direct_relocation(relocation, ShouldInitializeWeak::No)) {
  177. case RelocationResult::Failed:
  178. dbgln("Loader.so: {} unresolved symbol '{}'", m_filepath, relocation.symbol().name());
  179. VERIFY_NOT_REACHED();
  180. case RelocationResult::ResolveLater:
  181. m_unresolved_relocations.append(relocation);
  182. break;
  183. case RelocationResult::Success:
  184. break;
  185. }
  186. });
  187. auto fixup_trampoline_pointer = [&](DynamicObject::Relocation const& relocation) {
  188. VERIFY(relocation.type() == R_X86_64_JUMP_SLOT || relocation.type() == R_AARCH64_JUMP_SLOT);
  189. if (image().is_dynamic())
  190. *((FlatPtr*)relocation.address().as_ptr()) += m_dynamic_object->base_address().get();
  191. };
  192. if (m_dynamic_object->must_bind_now()) {
  193. m_dynamic_object->plt_relocation_section().for_each_relocation([&](DynamicObject::Relocation const& relocation) {
  194. RelocationResult result;
  195. if (relocation.type() == R_X86_64_IRELATIVE || relocation.type() == R_AARCH64_IRELATIVE) {
  196. result = do_direct_relocation(relocation, ShouldInitializeWeak::No);
  197. } else {
  198. result = do_plt_relocation(relocation);
  199. }
  200. switch (result) {
  201. case RelocationResult::Failed:
  202. dbgln("Loader.so: {} unresolved symbol '{}'", m_filepath, relocation.symbol().name());
  203. VERIFY_NOT_REACHED();
  204. case RelocationResult::ResolveLater:
  205. VERIFY_NOT_REACHED();
  206. case RelocationResult::Success:
  207. break;
  208. }
  209. });
  210. } else {
  211. m_dynamic_object->plt_relocation_section().for_each_relocation([&](DynamicObject::Relocation const& relocation) {
  212. if (relocation.type() == R_X86_64_IRELATIVE || relocation.type() == R_AARCH64_IRELATIVE) {
  213. do_direct_relocation(relocation, ShouldInitializeWeak::No);
  214. return;
  215. }
  216. fixup_trampoline_pointer(relocation);
  217. });
  218. }
  219. }
  220. Result<NonnullRefPtr<DynamicObject>, DlErrorMessage> DynamicLoader::load_stage_3(unsigned flags)
  221. {
  222. do_lazy_relocations();
  223. if (flags & RTLD_LAZY) {
  224. if (m_dynamic_object->has_plt())
  225. setup_plt_trampoline();
  226. }
  227. if (m_dynamic_object->has_text_relocations()) {
  228. // If we don't have textrels, .text has already been made executable by this point in load_stage_2.
  229. for (auto& text_segment : m_text_segments) {
  230. if (mprotect(text_segment.address().as_ptr(), text_segment.size(), PROT_READ | PROT_EXEC) < 0) {
  231. return DlErrorMessage { DeprecatedString::formatted("mprotect .text: PROT_READ | PROT_EXEC: {}", strerror(errno)) };
  232. }
  233. }
  234. }
  235. if (m_relro_segment_size) {
  236. if (mprotect(m_relro_segment_address.as_ptr(), m_relro_segment_size, PROT_READ) < 0) {
  237. return DlErrorMessage { DeprecatedString::formatted("mprotect .relro: PROT_READ: {}", strerror(errno)) };
  238. }
  239. #ifdef AK_OS_SERENITY
  240. if (set_mmap_name(m_relro_segment_address.as_ptr(), m_relro_segment_size, DeprecatedString::formatted("{}: .relro", m_filepath).characters()) < 0) {
  241. return DlErrorMessage { DeprecatedString::formatted("set_mmap_name .relro: {}", strerror(errno)) };
  242. }
  243. #endif
  244. }
  245. m_fully_relocated = true;
  246. return NonnullRefPtr<DynamicObject> { *m_dynamic_object };
  247. }
  248. void DynamicLoader::load_stage_4()
  249. {
  250. call_object_init_functions();
  251. m_fully_initialized = true;
  252. }
  253. void DynamicLoader::do_lazy_relocations()
  254. {
  255. for (auto const& relocation : m_unresolved_relocations) {
  256. if (auto res = do_direct_relocation(relocation, ShouldInitializeWeak::Yes); res != RelocationResult::Success) {
  257. dbgln("Loader.so: {} unresolved symbol '{}'", m_filepath, relocation.symbol().name());
  258. VERIFY_NOT_REACHED();
  259. }
  260. }
  261. }
  262. void DynamicLoader::load_program_headers()
  263. {
  264. FlatPtr ph_load_start = SIZE_MAX;
  265. FlatPtr ph_load_end = 0;
  266. // We walk the program header list once to find the requested address ranges of the program.
  267. // We don't fill in the list of regions yet to keep malloc memory blocks from interfering with our reservation.
  268. image().for_each_program_header([&](Image::ProgramHeader const& program_header) {
  269. if (program_header.type() != PT_LOAD)
  270. return;
  271. FlatPtr section_start = program_header.vaddr().get();
  272. FlatPtr section_end = section_start + program_header.size_in_memory();
  273. if (ph_load_start > section_start)
  274. ph_load_start = section_start;
  275. if (ph_load_end < section_end)
  276. ph_load_end = section_end;
  277. });
  278. void* requested_load_address = image().is_dynamic() ? nullptr : reinterpret_cast<void*>(ph_load_start);
  279. int reservation_mmap_flags = MAP_ANON | MAP_PRIVATE | MAP_NORESERVE;
  280. if (image().is_dynamic())
  281. reservation_mmap_flags |= MAP_RANDOMIZED;
  282. #ifdef MAP_FIXED_NOREPLACE
  283. else
  284. reservation_mmap_flags |= MAP_FIXED_NOREPLACE;
  285. #endif
  286. // First, we make a dummy reservation mapping, in order to allocate enough VM
  287. // to hold all regions contiguously in the address space.
  288. FlatPtr ph_load_base = ph_load_start & ~(FlatPtr)0xfffu;
  289. ph_load_end = round_up_to_power_of_two(ph_load_end, PAGE_SIZE);
  290. size_t total_mapping_size = ph_load_end - ph_load_base;
  291. // Before we make our reservation, unmap our existing mapped ELF image that we used for reading header information.
  292. // This leaves our pointers dangling momentarily, but it reduces the chance that we will conflict with ourselves.
  293. if (munmap(m_file_data, m_file_size) < 0) {
  294. perror("munmap old mapping");
  295. VERIFY_NOT_REACHED();
  296. }
  297. m_elf_image = nullptr;
  298. m_file_data = nullptr;
  299. auto* reservation = mmap(requested_load_address, total_mapping_size, PROT_NONE, reservation_mmap_flags, 0, 0);
  300. if (reservation == MAP_FAILED) {
  301. perror("mmap reservation");
  302. VERIFY_NOT_REACHED();
  303. }
  304. // Now that we can't accidentally block our requested space, re-map our ELF image.
  305. DeprecatedString file_mmap_name = DeprecatedString::formatted("ELF_DYN: {}", m_filepath);
  306. auto* data = mmap_with_name(nullptr, m_file_size, PROT_READ, MAP_SHARED, m_image_fd, 0, file_mmap_name.characters());
  307. if (data == MAP_FAILED) {
  308. perror("mmap new mapping");
  309. VERIFY_NOT_REACHED();
  310. }
  311. m_file_data = data;
  312. m_elf_image = adopt_own(*new ELF::Image((u8*)m_file_data, m_file_size));
  313. VERIFY(requested_load_address == nullptr || reservation == requested_load_address);
  314. m_base_address = VirtualAddress { reservation };
  315. // Then we unmap the reservation.
  316. if (munmap(reservation, total_mapping_size) < 0) {
  317. perror("munmap reservation");
  318. VERIFY_NOT_REACHED();
  319. }
  320. // Most binaries have four loadable regions, three of which are mapped
  321. // (symbol tables/relocation information, executable instructions, read-only data)
  322. // and one of which is copied (modifiable data).
  323. // These are allocated in-line to cut down on the malloc calls.
  324. Vector<ProgramHeaderRegion, 3> map_regions;
  325. Vector<ProgramHeaderRegion, 1> copy_regions;
  326. Optional<ProgramHeaderRegion> relro_region;
  327. VirtualAddress dynamic_region_desired_vaddr;
  328. image().for_each_program_header([&](Image::ProgramHeader const& program_header) {
  329. ProgramHeaderRegion region {};
  330. region.set_program_header(program_header.raw_header());
  331. if (region.is_tls_template()) {
  332. // Skip, this is handled in DynamicLoader::copy_initial_tls_data_into.
  333. } else if (region.is_load()) {
  334. if (region.size_in_memory() == 0)
  335. return;
  336. if (region.is_writable()) {
  337. copy_regions.append(region);
  338. } else {
  339. map_regions.append(region);
  340. }
  341. } else if (region.is_dynamic()) {
  342. dynamic_region_desired_vaddr = region.desired_load_address();
  343. } else if (region.is_relro()) {
  344. VERIFY(!relro_region.has_value());
  345. relro_region = region;
  346. }
  347. });
  348. VERIFY(!map_regions.is_empty() || !copy_regions.is_empty());
  349. auto compare_load_address = [](ProgramHeaderRegion& a, ProgramHeaderRegion& b) {
  350. return a.desired_load_address().as_ptr() < b.desired_load_address().as_ptr();
  351. };
  352. quick_sort(map_regions, compare_load_address);
  353. quick_sort(copy_regions, compare_load_address);
  354. // Process regions in order: .text, .data, .tls
  355. for (auto& region : map_regions) {
  356. FlatPtr ph_desired_base = region.desired_load_address().get();
  357. FlatPtr ph_base = region.desired_load_address().page_base().get();
  358. FlatPtr ph_end = ph_base + round_up_to_power_of_two(region.size_in_memory() + region.desired_load_address().get() - ph_base, PAGE_SIZE);
  359. StringBuilder builder;
  360. builder.append(m_filepath);
  361. if (region.is_executable())
  362. builder.append(": .text"sv);
  363. else
  364. builder.append(": .rodata"sv);
  365. // Now we can map the text segment at the reserved address.
  366. auto* segment_base = (u8*)mmap_with_name(
  367. (u8*)reservation + ph_base - ph_load_base,
  368. ph_desired_base - ph_base + region.size_in_image(),
  369. PROT_READ,
  370. MAP_FILE | MAP_SHARED | MAP_FIXED,
  371. m_image_fd,
  372. VirtualAddress { region.offset() }.page_base().get(),
  373. builder.to_deprecated_string().characters());
  374. if (segment_base == MAP_FAILED) {
  375. perror("mmap non-writable");
  376. VERIFY_NOT_REACHED();
  377. }
  378. if (region.is_executable())
  379. m_text_segments.append({ VirtualAddress { segment_base }, ph_end - ph_base });
  380. }
  381. VERIFY(requested_load_address == nullptr || requested_load_address == reservation);
  382. if (relro_region.has_value()) {
  383. m_relro_segment_size = relro_region->size_in_memory();
  384. m_relro_segment_address = VirtualAddress { (u8*)reservation + relro_region->desired_load_address().get() - ph_load_base };
  385. }
  386. if (image().is_dynamic())
  387. m_dynamic_section_address = VirtualAddress { (u8*)reservation + dynamic_region_desired_vaddr.get() - ph_load_base };
  388. else
  389. m_dynamic_section_address = dynamic_region_desired_vaddr;
  390. for (auto& region : copy_regions) {
  391. FlatPtr ph_data_base = region.desired_load_address().page_base().get();
  392. FlatPtr ph_data_end = ph_data_base + round_up_to_power_of_two(region.size_in_memory() + region.desired_load_address().get() - ph_data_base, PAGE_SIZE);
  393. auto* data_segment_address = (u8*)reservation + ph_data_base - ph_load_base;
  394. size_t data_segment_size = ph_data_end - ph_data_base;
  395. // Finally, we make an anonymous mapping for the data segment. Contents are then copied from the file.
  396. auto* data_segment = (u8*)mmap_with_name(
  397. data_segment_address,
  398. data_segment_size,
  399. PROT_READ | PROT_WRITE,
  400. MAP_ANONYMOUS | MAP_PRIVATE | MAP_FIXED,
  401. 0,
  402. 0,
  403. DeprecatedString::formatted("{}: .data", m_filepath).characters());
  404. if (MAP_FAILED == data_segment) {
  405. perror("mmap writable");
  406. VERIFY_NOT_REACHED();
  407. }
  408. VirtualAddress data_segment_start;
  409. if (image().is_dynamic())
  410. data_segment_start = VirtualAddress { (u8*)reservation + region.desired_load_address().get() };
  411. else
  412. data_segment_start = region.desired_load_address();
  413. VERIFY(data_segment_start.as_ptr() + region.size_in_memory() <= data_segment + data_segment_size);
  414. memcpy(data_segment_start.as_ptr(), (u8*)m_file_data + region.offset(), region.size_in_image());
  415. }
  416. }
  417. DynamicLoader::RelocationResult DynamicLoader::do_direct_relocation(DynamicObject::Relocation const& relocation, ShouldInitializeWeak should_initialize_weak)
  418. {
  419. FlatPtr* patch_ptr = nullptr;
  420. if (is_dynamic())
  421. patch_ptr = (FlatPtr*)(m_dynamic_object->base_address().as_ptr() + relocation.offset());
  422. else
  423. patch_ptr = (FlatPtr*)(FlatPtr)relocation.offset();
  424. auto call_ifunc_resolver = [](VirtualAddress address) {
  425. return VirtualAddress { reinterpret_cast<DynamicObject::IfuncResolver>(address.get())() };
  426. };
  427. switch (relocation.type()) {
  428. case R_X86_64_NONE:
  429. // Apparently most loaders will just skip these?
  430. // Seems if the 'link editor' generates one something is funky with your code
  431. break;
  432. case R_AARCH64_ABS64:
  433. case R_X86_64_64: {
  434. auto symbol = relocation.symbol();
  435. auto res = lookup_symbol(symbol);
  436. if (!res.has_value()) {
  437. if (symbol.bind() == STB_WEAK)
  438. return RelocationResult::ResolveLater;
  439. dbgln("ERROR: symbol not found: {}.", symbol.name());
  440. return RelocationResult::Failed;
  441. }
  442. auto symbol_address = res.value().address;
  443. if (relocation.addend_used())
  444. *patch_ptr = symbol_address.get() + relocation.addend();
  445. else
  446. *patch_ptr += symbol_address.get();
  447. if (res.value().type == STT_GNU_IFUNC)
  448. *patch_ptr = call_ifunc_resolver(VirtualAddress { *patch_ptr }).get();
  449. break;
  450. }
  451. case R_AARCH64_GLOB_DAT:
  452. case R_X86_64_GLOB_DAT: {
  453. auto symbol = relocation.symbol();
  454. auto res = lookup_symbol(symbol);
  455. VirtualAddress symbol_location;
  456. if (!res.has_value()) {
  457. if (symbol.bind() == STB_WEAK) {
  458. if (should_initialize_weak == ShouldInitializeWeak::No)
  459. return RelocationResult::ResolveLater;
  460. } else {
  461. // Symbol not found
  462. return RelocationResult::Failed;
  463. }
  464. symbol_location = VirtualAddress { (FlatPtr)0 };
  465. } else {
  466. symbol_location = res.value().address;
  467. if (res.value().type == STT_GNU_IFUNC) {
  468. if (res.value().dynamic_object != nullptr && res.value().dynamic_object->has_text_relocations()) {
  469. dbgln("\033[31mError:\033[0m Refusing to call IFUNC resolver defined in an object with text relocations.");
  470. return RelocationResult::Failed;
  471. }
  472. symbol_location = call_ifunc_resolver(symbol_location);
  473. }
  474. }
  475. VERIFY(symbol_location != m_dynamic_object->base_address());
  476. *patch_ptr = symbol_location.get();
  477. break;
  478. }
  479. case R_AARCH64_RELATIVE:
  480. case R_X86_64_RELATIVE: {
  481. if (!image().is_dynamic())
  482. break;
  483. // FIXME: According to the spec, R_386_relative ones must be done first.
  484. // We could explicitly do them first using m_number_of_relocations from DT_RELCOUNT
  485. // However, our compiler is nice enough to put them at the front of the relocations for us :)
  486. if (relocation.addend_used())
  487. *patch_ptr = m_dynamic_object->base_address().offset(relocation.addend()).get();
  488. else
  489. *patch_ptr += m_dynamic_object->base_address().get();
  490. break;
  491. }
  492. case R_AARCH64_TLS_TPREL64:
  493. case R_X86_64_TPOFF64: {
  494. auto symbol = relocation.symbol();
  495. FlatPtr symbol_value;
  496. DynamicObject const* dynamic_object_of_symbol;
  497. if (relocation.symbol_index() != 0) {
  498. auto res = lookup_symbol(symbol);
  499. if (!res.has_value())
  500. break;
  501. VERIFY(symbol.type() != STT_GNU_IFUNC);
  502. symbol_value = res.value().value;
  503. dynamic_object_of_symbol = res.value().dynamic_object;
  504. } else {
  505. symbol_value = 0;
  506. dynamic_object_of_symbol = &relocation.dynamic_object();
  507. }
  508. VERIFY(dynamic_object_of_symbol);
  509. size_t addend = relocation.addend_used() ? relocation.addend() : *patch_ptr;
  510. *patch_ptr = addend + dynamic_object_of_symbol->tls_offset().value() + symbol_value;
  511. // At offset 0 there's the thread's ThreadSpecificData structure, we don't want to collide with it.
  512. VERIFY(static_cast<ssize_t>(*patch_ptr) < 0);
  513. break;
  514. }
  515. case R_AARCH64_IRELATIVE:
  516. case R_X86_64_IRELATIVE: {
  517. VirtualAddress resolver;
  518. if (relocation.addend_used())
  519. resolver = m_dynamic_object->base_address().offset(relocation.addend());
  520. else
  521. resolver = m_dynamic_object->base_address().offset(*patch_ptr);
  522. if (m_dynamic_object->has_text_relocations()) {
  523. dbgln("\033[31mError:\033[0m Refusing to call IFUNC resolver defined in an object with text relocations.");
  524. return RelocationResult::Failed;
  525. }
  526. *patch_ptr = call_ifunc_resolver(resolver).get();
  527. break;
  528. }
  529. case R_AARCH64_JUMP_SLOT:
  530. case R_X86_64_JUMP_SLOT:
  531. VERIFY_NOT_REACHED(); // PLT relocations are handled by do_plt_relocation.
  532. default:
  533. // Raise the alarm! Someone needs to implement this relocation type
  534. dbgln("Found a new exciting relocation type {}", relocation.type());
  535. VERIFY_NOT_REACHED();
  536. }
  537. return RelocationResult::Success;
  538. }
  539. DynamicLoader::RelocationResult DynamicLoader::do_plt_relocation(DynamicObject::Relocation const& relocation)
  540. {
  541. VERIFY(relocation.type() == R_X86_64_JUMP_SLOT || relocation.type() == R_AARCH64_JUMP_SLOT);
  542. auto symbol = relocation.symbol();
  543. auto* relocation_address = (FlatPtr*)relocation.address().as_ptr();
  544. VirtualAddress symbol_location {};
  545. if (auto result = lookup_symbol(symbol); result.has_value()) {
  546. auto address = result.value().address;
  547. if (result.value().type == STT_GNU_IFUNC) {
  548. symbol_location = VirtualAddress { reinterpret_cast<DynamicObject::IfuncResolver>(address.get())() };
  549. } else {
  550. symbol_location = address;
  551. }
  552. } else if (symbol.bind() != STB_WEAK) {
  553. return RelocationResult::Failed;
  554. }
  555. dbgln_if(DYNAMIC_LOAD_DEBUG, "DynamicLoader: Jump slot relocation: putting {} ({}) into PLT at {}", symbol.name(), symbol_location, (void*)relocation_address);
  556. *relocation_address = symbol_location.get();
  557. return RelocationResult::Success;
  558. }
  559. void DynamicLoader::do_relr_relocations()
  560. {
  561. auto base_address = m_dynamic_object->base_address().get();
  562. m_dynamic_object->for_each_relr_relocation([base_address](FlatPtr address) {
  563. *(FlatPtr*)address += base_address;
  564. });
  565. }
  566. void DynamicLoader::copy_initial_tls_data_into(ByteBuffer& buffer) const
  567. {
  568. image().for_each_program_header([this, &buffer](ELF::Image::ProgramHeader program_header) {
  569. if (program_header.type() != PT_TLS)
  570. return IterationDecision::Continue;
  571. // Note: The "size in image" is only concerned with initialized data. Uninitialized data (.tbss) is
  572. // only included in the "size in memory" metric, and is expected to not be touched or read from, as
  573. // it is not present in the image and zeroed out in-memory. We will still check that the buffer has
  574. // space for both the initialized and the uninitialized data.
  575. // Note: The m_tls_offset here is (of course) negative.
  576. // TODO: Is the initialized data always in the beginning of the TLS segment, or should we walk the
  577. // sections to figure that out?
  578. size_t tls_start_in_buffer = buffer.size() + m_tls_offset;
  579. VERIFY(program_header.size_in_image() <= program_header.size_in_memory());
  580. VERIFY(program_header.size_in_memory() <= m_tls_size_of_current_object);
  581. VERIFY(tls_start_in_buffer + program_header.size_in_memory() <= buffer.size());
  582. memcpy(buffer.data() + tls_start_in_buffer, static_cast<const u8*>(m_file_data) + program_header.offset(), program_header.size_in_image());
  583. return IterationDecision::Break;
  584. });
  585. }
  586. // Defined in <arch>/plt_trampoline.S
  587. extern "C" void _plt_trampoline(void) __attribute__((visibility("hidden")));
  588. void DynamicLoader::setup_plt_trampoline()
  589. {
  590. VERIFY(m_dynamic_object);
  591. VERIFY(m_dynamic_object->has_plt());
  592. VirtualAddress got_address = m_dynamic_object->plt_got_base_address();
  593. auto* got_ptr = (FlatPtr*)got_address.as_ptr();
  594. got_ptr[1] = (FlatPtr)m_dynamic_object.ptr();
  595. got_ptr[2] = (FlatPtr)&_plt_trampoline;
  596. }
  597. // Called from our ASM routine _plt_trampoline.
  598. extern "C" FlatPtr _fixup_plt_entry(DynamicObject* object, u32 relocation_offset)
  599. {
  600. auto const& relocation = object->plt_relocation_section().relocation_at_offset(relocation_offset);
  601. auto result = DynamicLoader::do_plt_relocation(relocation);
  602. if (result != DynamicLoader::RelocationResult::Success) {
  603. dbgln("Loader.so: {} unresolved symbol '{}'", object->filepath(), relocation.symbol().name());
  604. VERIFY_NOT_REACHED();
  605. }
  606. return *reinterpret_cast<FlatPtr*>(relocation.address().as_ptr());
  607. }
  608. void DynamicLoader::call_object_init_functions()
  609. {
  610. typedef void (*InitFunc)();
  611. if (m_dynamic_object->has_init_section()) {
  612. auto init_function = (InitFunc)(m_dynamic_object->init_section().address().as_ptr());
  613. (init_function)();
  614. }
  615. if (m_dynamic_object->has_init_array_section()) {
  616. auto init_array_section = m_dynamic_object->init_array_section();
  617. InitFunc* init_begin = (InitFunc*)(init_array_section.address().as_ptr());
  618. InitFunc* init_end = init_begin + init_array_section.entry_count();
  619. while (init_begin != init_end) {
  620. // Android sources claim that these can be -1, to be ignored.
  621. // 0 definitely shows up. Apparently 0/-1 are valid? Confusing.
  622. if (!*init_begin || ((FlatPtr)*init_begin == (FlatPtr)-1))
  623. continue;
  624. (*init_begin)();
  625. ++init_begin;
  626. }
  627. }
  628. }
  629. Optional<DynamicObject::SymbolLookupResult> DynamicLoader::lookup_symbol(const ELF::DynamicObject::Symbol& symbol)
  630. {
  631. if (symbol.is_undefined() || symbol.bind() == STB_WEAK)
  632. return DynamicLinker::lookup_global_symbol(symbol.name());
  633. return DynamicObject::SymbolLookupResult { symbol.value(), symbol.size(), symbol.address(), symbol.bind(), symbol.type(), &symbol.object() };
  634. }
  635. } // end namespace ELF