DynamicObject.h 16 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) 2022, the SerenityOS developers.
  5. *
  6. * SPDX-License-Identifier: BSD-2-Clause
  7. */
  8. #pragma once
  9. #include <AK/Assertions.h>
  10. #include <AK/Concepts.h>
  11. #include <AK/DeprecatedString.h>
  12. #include <AK/RefCounted.h>
  13. #include <Kernel/Memory/VirtualAddress.h>
  14. #include <LibC/elf.h>
  15. #include <LibC/link.h>
  16. namespace ELF {
  17. class DynamicObject : public RefCounted<DynamicObject> {
  18. public:
  19. static NonnullRefPtr<DynamicObject> create(DeprecatedString const& filepath, VirtualAddress base_address, VirtualAddress dynamic_section_address);
  20. static char const* name_for_dtag(ElfW(Sword) d_tag);
  21. ~DynamicObject();
  22. void dump() const;
  23. class DynamicEntry;
  24. class Section;
  25. class RelocationSection;
  26. class Symbol;
  27. class Relocation;
  28. class HashSection;
  29. class DynamicEntry {
  30. public:
  31. explicit DynamicEntry(const ElfW(Dyn) & dyn)
  32. : m_dyn(dyn)
  33. {
  34. }
  35. ~DynamicEntry() = default;
  36. ElfW(Sword) tag() const { return m_dyn.d_tag; }
  37. ElfW(Addr) ptr() const { return m_dyn.d_un.d_ptr; }
  38. ElfW(Word) val() const { return m_dyn.d_un.d_val; }
  39. private:
  40. const ElfW(Dyn) & m_dyn;
  41. };
  42. class Symbol {
  43. public:
  44. Symbol(DynamicObject const& dynamic, unsigned index, const ElfW(Sym) & sym)
  45. : m_dynamic(dynamic)
  46. , m_sym(sym)
  47. , m_index(index)
  48. {
  49. }
  50. StringView name() const { return m_dynamic.symbol_string_table_string(m_sym.st_name); }
  51. char const* raw_name() const { return m_dynamic.raw_symbol_string_table_string(m_sym.st_name); }
  52. unsigned section_index() const { return m_sym.st_shndx; }
  53. FlatPtr value() const { return m_sym.st_value; }
  54. size_t size() const { return m_sym.st_size; }
  55. unsigned index() const { return m_index; }
  56. unsigned type() const
  57. {
  58. return ELF64_ST_TYPE(m_sym.st_info);
  59. }
  60. unsigned bind() const { return ELF64_ST_BIND(m_sym.st_info); }
  61. bool is_undefined() const
  62. {
  63. return section_index() == 0;
  64. }
  65. VirtualAddress address() const
  66. {
  67. if (m_dynamic.elf_is_dynamic())
  68. return m_dynamic.base_address().offset(value());
  69. return VirtualAddress { value() };
  70. }
  71. DynamicObject const& object() const { return m_dynamic; }
  72. private:
  73. DynamicObject const& m_dynamic;
  74. const ElfW(Sym) & m_sym;
  75. unsigned const m_index;
  76. };
  77. class Section {
  78. public:
  79. Section(DynamicObject const& dynamic, unsigned section_offset, unsigned section_size_bytes, unsigned entry_size, StringView name)
  80. : m_dynamic(dynamic)
  81. , m_section_offset(section_offset)
  82. , m_section_size_bytes(section_size_bytes)
  83. , m_entry_size(entry_size)
  84. , m_name(name)
  85. {
  86. }
  87. ~Section() = default;
  88. StringView name() const { return m_name; }
  89. unsigned offset() const { return m_section_offset; }
  90. unsigned size() const { return m_section_size_bytes; }
  91. unsigned entry_size() const { return m_entry_size; }
  92. unsigned entry_count() const
  93. {
  94. return !entry_size() ? 0 : size() / entry_size();
  95. }
  96. VirtualAddress address() const
  97. {
  98. return m_dynamic.base_address().offset(m_section_offset);
  99. }
  100. protected:
  101. friend class RelocationSection;
  102. friend class HashSection;
  103. DynamicObject const& m_dynamic;
  104. unsigned m_section_offset;
  105. unsigned m_section_size_bytes;
  106. unsigned m_entry_size;
  107. StringView m_name;
  108. };
  109. class RelocationSection : public Section {
  110. public:
  111. explicit RelocationSection(Section const& section, bool addend_used)
  112. : Section(section.m_dynamic, section.m_section_offset, section.m_section_size_bytes, section.m_entry_size, section.m_name)
  113. , m_addend_used(addend_used)
  114. {
  115. }
  116. unsigned relocation_count() const { return entry_count(); }
  117. Relocation relocation(unsigned index) const;
  118. Relocation relocation_at_offset(unsigned offset) const;
  119. template<IteratorFunction<DynamicObject::Relocation&> F>
  120. void for_each_relocation(F) const;
  121. template<VoidFunction<DynamicObject::Relocation&> F>
  122. void for_each_relocation(F func) const;
  123. private:
  124. bool const m_addend_used;
  125. };
  126. class Relocation {
  127. public:
  128. Relocation(DynamicObject const& dynamic, const ElfW(Rela) & rel, unsigned offset_in_section, bool addend_used)
  129. : m_dynamic(dynamic)
  130. , m_rel(rel)
  131. , m_offset_in_section(offset_in_section)
  132. , m_addend_used(addend_used)
  133. {
  134. }
  135. ~Relocation() = default;
  136. unsigned offset_in_section() const { return m_offset_in_section; }
  137. unsigned offset() const { return m_rel.r_offset; }
  138. unsigned type() const
  139. {
  140. return ELF64_R_TYPE(m_rel.r_info);
  141. }
  142. unsigned symbol_index() const { return ELF64_R_SYM(m_rel.r_info); }
  143. unsigned addend() const
  144. {
  145. VERIFY(m_addend_used);
  146. return m_rel.r_addend;
  147. }
  148. bool addend_used() const { return m_addend_used; }
  149. Symbol symbol() const
  150. {
  151. return m_dynamic.symbol(symbol_index());
  152. }
  153. VirtualAddress address() const
  154. {
  155. if (m_dynamic.elf_is_dynamic())
  156. return m_dynamic.base_address().offset(offset());
  157. return VirtualAddress { offset() };
  158. }
  159. [[nodiscard]] DynamicObject const& dynamic_object() const { return m_dynamic; }
  160. private:
  161. DynamicObject const& m_dynamic;
  162. const ElfW(Rela) & m_rel;
  163. unsigned const m_offset_in_section;
  164. bool const m_addend_used;
  165. };
  166. enum class HashType {
  167. SYSV,
  168. GNU
  169. };
  170. class HashSymbol {
  171. public:
  172. HashSymbol(StringView name)
  173. : m_name(name)
  174. {
  175. }
  176. StringView name() const { return m_name; }
  177. u32 gnu_hash() const;
  178. u32 sysv_hash() const;
  179. private:
  180. StringView m_name;
  181. mutable Optional<u32> m_gnu_hash;
  182. mutable Optional<u32> m_sysv_hash;
  183. };
  184. class HashSection : public Section {
  185. public:
  186. HashSection(Section const& section, HashType hash_type)
  187. : Section(section.m_dynamic, section.m_section_offset, section.m_section_size_bytes, section.m_entry_size, section.m_name)
  188. , m_hash_type(hash_type)
  189. {
  190. }
  191. Optional<Symbol> lookup_symbol(HashSymbol const& symbol) const
  192. {
  193. if (m_hash_type == HashType::SYSV)
  194. return lookup_sysv_symbol(symbol.name(), symbol.sysv_hash());
  195. return lookup_gnu_symbol(symbol.name(), symbol.gnu_hash());
  196. }
  197. private:
  198. Optional<Symbol> lookup_sysv_symbol(StringView name, u32 hash_value) const;
  199. Optional<Symbol> lookup_gnu_symbol(StringView name, u32 hash) const;
  200. HashType m_hash_type {};
  201. };
  202. unsigned symbol_count() const { return m_symbol_count; }
  203. Symbol symbol(unsigned) const;
  204. typedef void (*InitializationFunction)();
  205. typedef ElfW(Addr) (*IfuncResolver)();
  206. bool has_init_section() const { return m_init_offset != 0; }
  207. bool has_init_array_section() const { return m_init_array_offset != 0; }
  208. Section init_section() const;
  209. InitializationFunction init_section_function() const;
  210. Section fini_section() const;
  211. Section init_array_section() const;
  212. Section fini_array_section() const;
  213. HashSection hash_section() const
  214. {
  215. auto section_name = m_hash_type == HashType::SYSV ? "DT_HASH"sv : "DT_GNU_HASH"sv;
  216. return HashSection(Section(*this, m_hash_table_offset, 0, 0, section_name), m_hash_type);
  217. }
  218. RelocationSection relocation_section() const;
  219. RelocationSection plt_relocation_section() const;
  220. Section relr_relocation_section() const;
  221. bool should_process_origin() const { return m_dt_flags & DF_ORIGIN; }
  222. bool requires_symbolic_symbol_resolution() const { return m_dt_flags & DF_SYMBOLIC; }
  223. // Text relocations meaning: we need to edit the .text section which is normally mapped PROT_READ
  224. bool has_text_relocations() const { return m_dt_flags & DF_TEXTREL; }
  225. bool must_bind_now() const { return m_dt_flags & DF_BIND_NOW; }
  226. bool has_static_thread_local_storage() const { return m_dt_flags & DF_STATIC_TLS; }
  227. bool has_plt() const { return m_procedure_linkage_table_offset.has_value(); }
  228. VirtualAddress plt_got_base_address() const { return m_base_address.offset(m_procedure_linkage_table_offset.value()); }
  229. VirtualAddress base_address() const { return m_base_address; }
  230. DeprecatedString const& filepath() const { return m_filepath; }
  231. StringView rpath() const { return m_has_rpath ? symbol_string_table_string(m_rpath_index) : StringView {}; }
  232. StringView runpath() const { return m_has_runpath ? symbol_string_table_string(m_runpath_index) : StringView {}; }
  233. StringView soname() const { return m_has_soname ? symbol_string_table_string(m_soname_index) : StringView {}; }
  234. Optional<FlatPtr> tls_offset() const { return m_tls_offset; }
  235. Optional<FlatPtr> tls_size() const { return m_tls_size; }
  236. void set_tls_offset(FlatPtr offset) { m_tls_offset = offset; }
  237. void set_tls_size(FlatPtr size) { m_tls_size = size; }
  238. ElfW(Half) program_header_count() const;
  239. const ElfW(Phdr) * program_headers() const;
  240. template<VoidFunction<StringView> F>
  241. void for_each_needed_library(F) const;
  242. template<VoidFunction<InitializationFunction&> F>
  243. void for_each_initialization_array_function(F f) const;
  244. template<IteratorFunction<DynamicEntry&> F>
  245. void for_each_dynamic_entry(F) const;
  246. template<VoidFunction<DynamicEntry&> F>
  247. void for_each_dynamic_entry(F func) const;
  248. template<VoidFunction<Symbol&> F>
  249. void for_each_symbol(F) const;
  250. template<typename F>
  251. void for_each_relr_relocation(F) const;
  252. struct SymbolLookupResult {
  253. FlatPtr value { 0 };
  254. size_t size { 0 };
  255. VirtualAddress address;
  256. unsigned bind { STB_LOCAL };
  257. unsigned type { STT_FUNC };
  258. const ELF::DynamicObject* dynamic_object { nullptr }; // The object in which the symbol is defined
  259. };
  260. Optional<SymbolLookupResult> lookup_symbol(StringView name) const;
  261. Optional<SymbolLookupResult> lookup_symbol(HashSymbol const& symbol) const;
  262. bool elf_is_dynamic() const { return m_is_elf_dynamic; }
  263. void* symbol_for_name(StringView name);
  264. private:
  265. explicit DynamicObject(DeprecatedString const& filepath, VirtualAddress base_address, VirtualAddress dynamic_section_address);
  266. StringView symbol_string_table_string(ElfW(Word)) const;
  267. char const* raw_symbol_string_table_string(ElfW(Word)) const;
  268. void parse();
  269. DeprecatedString m_filepath;
  270. VirtualAddress m_base_address;
  271. VirtualAddress m_dynamic_address;
  272. VirtualAddress m_elf_base_address;
  273. unsigned m_symbol_count { 0 };
  274. // Begin Section information collected from DT_* entries
  275. FlatPtr m_init_offset { 0 };
  276. FlatPtr m_fini_offset { 0 };
  277. FlatPtr m_init_array_offset { 0 };
  278. size_t m_init_array_size { 0 };
  279. FlatPtr m_fini_array_offset { 0 };
  280. size_t m_fini_array_size { 0 };
  281. FlatPtr m_hash_table_offset { 0 };
  282. HashType m_hash_type { HashType::SYSV };
  283. FlatPtr m_string_table_offset { 0 };
  284. size_t m_size_of_string_table { 0 };
  285. FlatPtr m_symbol_table_offset { 0 };
  286. size_t m_size_of_symbol_table_entry { 0 };
  287. ElfW(Sword) m_procedure_linkage_table_relocation_type { -1 };
  288. FlatPtr m_plt_relocation_offset_location { 0 }; // offset of PLT relocations, at end of relocations
  289. size_t m_size_of_plt_relocation_entry_list { 0 };
  290. Optional<FlatPtr> m_procedure_linkage_table_offset;
  291. // NOTE: We'll only ever either RELA or REL entries, not both (thank god)
  292. // NOTE: The x86 ABI will only ever genrerate REL entries.
  293. size_t m_number_of_relocations { 0 };
  294. size_t m_size_of_relocation_entry { 0 };
  295. size_t m_size_of_relocation_table { 0 };
  296. bool m_addend_used { false };
  297. FlatPtr m_relocation_table_offset { 0 };
  298. size_t m_size_of_relr_relocations_entry { 0 };
  299. size_t m_size_of_relr_relocation_table { 0 };
  300. FlatPtr m_relr_relocation_table_offset { 0 };
  301. bool m_is_elf_dynamic { false };
  302. // DT_FLAGS
  303. ElfW(Word) m_dt_flags { 0 };
  304. bool m_has_soname { false };
  305. ElfW(Word) m_soname_index { 0 }; // Index into dynstr table for SONAME
  306. bool m_has_rpath { false };
  307. ElfW(Word) m_rpath_index { 0 }; // Index into dynstr table for RPATH
  308. bool m_has_runpath { false };
  309. ElfW(Word) m_runpath_index { 0 }; // Index into dynstr table for RUNPATH
  310. Optional<FlatPtr> m_tls_offset;
  311. Optional<FlatPtr> m_tls_size;
  312. // End Section information from DT_* entries
  313. };
  314. template<IteratorFunction<DynamicObject::Relocation&> F>
  315. inline void DynamicObject::RelocationSection::for_each_relocation(F func) const
  316. {
  317. for (unsigned i = 0; i < relocation_count(); ++i) {
  318. auto const reloc = relocation(i);
  319. if (reloc.type() == 0)
  320. continue;
  321. if (func(reloc) == IterationDecision::Break)
  322. break;
  323. }
  324. }
  325. template<VoidFunction<DynamicObject::Relocation&> F>
  326. inline void DynamicObject::RelocationSection::for_each_relocation(F func) const
  327. {
  328. for_each_relocation([&](auto& reloc) {
  329. func(reloc);
  330. return IterationDecision::Continue;
  331. });
  332. }
  333. template<typename F>
  334. inline void DynamicObject::for_each_relr_relocation(F f) const
  335. {
  336. auto section = relr_relocation_section();
  337. if (section.entry_count() == 0)
  338. return;
  339. VERIFY(section.entry_size() == sizeof(FlatPtr));
  340. VERIFY(section.size() >= section.entry_size() * section.entry_count());
  341. auto* entries = reinterpret_cast<ElfW(Relr)*>(section.address().get());
  342. auto base = base_address().get();
  343. FlatPtr patch_addr = 0;
  344. for (unsigned i = 0; i < section.entry_count(); ++i) {
  345. if ((entries[i] & 1u) == 0) {
  346. patch_addr = base + entries[i];
  347. f(patch_addr);
  348. patch_addr += sizeof(FlatPtr);
  349. } else {
  350. unsigned j = 0;
  351. for (auto bitmap = entries[i]; (bitmap >>= 1u) != 0; ++j)
  352. if (bitmap & 1u)
  353. f(patch_addr + j * sizeof(FlatPtr));
  354. patch_addr += (8 * sizeof(FlatPtr) - 1) * sizeof(FlatPtr);
  355. }
  356. }
  357. }
  358. template<VoidFunction<DynamicObject::Symbol&> F>
  359. inline void DynamicObject::for_each_symbol(F func) const
  360. {
  361. for (unsigned i = 0; i < symbol_count(); ++i) {
  362. func(symbol(i));
  363. }
  364. }
  365. template<IteratorFunction<DynamicObject::DynamicEntry&> F>
  366. inline void DynamicObject::for_each_dynamic_entry(F func) const
  367. {
  368. auto* dyns = reinterpret_cast<const ElfW(Dyn)*>(m_dynamic_address.as_ptr());
  369. for (unsigned i = 0;; ++i) {
  370. auto&& dyn = DynamicEntry(dyns[i]);
  371. if (dyn.tag() == DT_NULL)
  372. break;
  373. if (func(dyn) == IterationDecision::Break)
  374. break;
  375. }
  376. }
  377. template<VoidFunction<DynamicObject::DynamicEntry&> F>
  378. inline void DynamicObject::for_each_dynamic_entry(F func) const
  379. {
  380. for_each_dynamic_entry([&](auto& dyn) {
  381. func(dyn);
  382. return IterationDecision::Continue;
  383. });
  384. }
  385. template<VoidFunction<StringView> F>
  386. inline void DynamicObject::for_each_needed_library(F func) const
  387. {
  388. for_each_dynamic_entry([func, this](auto entry) {
  389. if (entry.tag() != DT_NEEDED)
  390. return;
  391. ElfW(Word) offset = entry.val();
  392. func(symbol_string_table_string(offset));
  393. });
  394. }
  395. template<VoidFunction<DynamicObject::InitializationFunction&> F>
  396. void DynamicObject::for_each_initialization_array_function(F f) const
  397. {
  398. if (!has_init_array_section())
  399. return;
  400. FlatPtr init_array = (FlatPtr)init_array_section().address().as_ptr();
  401. for (size_t i = 0; i < (m_init_array_size / sizeof(void*)); ++i) {
  402. InitializationFunction current = ((InitializationFunction*)(init_array))[i];
  403. f(current);
  404. }
  405. }
  406. } // end namespace ELF