DebugInfo.cpp 18 KB

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  1. /*
  2. * Copyright (c) 2020-2021, Itamar S. <itamar8910@gmail.com>
  3. *
  4. * SPDX-License-Identifier: BSD-2-Clause
  5. */
  6. #include "DebugInfo.h"
  7. #include <AK/Debug.h>
  8. #include <AK/LexicalPath.h>
  9. #include <AK/QuickSort.h>
  10. #include <LibDebug/Dwarf/CompilationUnit.h>
  11. #include <LibDebug/Dwarf/DwarfInfo.h>
  12. #include <LibDebug/Dwarf/Expression.h>
  13. namespace Debug {
  14. DebugInfo::DebugInfo(ELF::Image const& elf, DeprecatedString source_root, FlatPtr base_address)
  15. : m_elf(elf)
  16. , m_source_root(move(source_root))
  17. , m_base_address(base_address)
  18. , m_dwarf_info(m_elf)
  19. {
  20. prepare_variable_scopes().release_value_but_fixme_should_propagate_errors();
  21. prepare_lines().release_value_but_fixme_should_propagate_errors();
  22. }
  23. ErrorOr<void> DebugInfo::prepare_variable_scopes()
  24. {
  25. TRY(m_dwarf_info.for_each_compilation_unit([&](Dwarf::CompilationUnit const& unit) -> ErrorOr<void> {
  26. auto root = unit.root_die();
  27. TRY(parse_scopes_impl(root));
  28. return {};
  29. }));
  30. return {};
  31. }
  32. ErrorOr<void> DebugInfo::parse_scopes_impl(Dwarf::DIE const& die)
  33. {
  34. TRY(die.for_each_child([&](Dwarf::DIE const& child) -> ErrorOr<void> {
  35. if (child.is_null())
  36. return {};
  37. if (!(child.tag() == Dwarf::EntryTag::SubProgram || child.tag() == Dwarf::EntryTag::LexicalBlock))
  38. return {};
  39. if (TRY(child.get_attribute(Dwarf::Attribute::Inline)).has_value()) {
  40. dbgln_if(SPAM_DEBUG, "DWARF inlined functions are not supported");
  41. return {};
  42. }
  43. if (TRY(child.get_attribute(Dwarf::Attribute::Ranges)).has_value()) {
  44. dbgln_if(SPAM_DEBUG, "DWARF ranges are not supported");
  45. return {};
  46. }
  47. auto name = TRY(child.get_attribute(Dwarf::Attribute::Name));
  48. VariablesScope scope {};
  49. scope.is_function = (child.tag() == Dwarf::EntryTag::SubProgram);
  50. if (name.has_value())
  51. scope.name = TRY(name.value().as_string());
  52. if (!TRY(child.get_attribute(Dwarf::Attribute::LowPc)).has_value()) {
  53. dbgln_if(SPAM_DEBUG, "DWARF: Couldn't find attribute LowPc for scope");
  54. return {};
  55. }
  56. scope.address_low = TRY(TRY(child.get_attribute(Dwarf::Attribute::LowPc)).value().as_addr());
  57. auto high_pc = TRY(child.get_attribute(Dwarf::Attribute::HighPc));
  58. if (high_pc->type() == Dwarf::AttributeValue::Type::Address)
  59. scope.address_high = TRY(high_pc->as_addr());
  60. else
  61. scope.address_high = scope.address_low + high_pc->as_unsigned();
  62. TRY(child.for_each_child([&](Dwarf::DIE const& variable_entry) -> ErrorOr<void> {
  63. if (!(variable_entry.tag() == Dwarf::EntryTag::Variable
  64. || variable_entry.tag() == Dwarf::EntryTag::FormalParameter))
  65. return {};
  66. scope.dies_of_variables.append(variable_entry);
  67. return {};
  68. }));
  69. m_scopes.append(scope);
  70. TRY(parse_scopes_impl(child));
  71. return {};
  72. }));
  73. return {};
  74. }
  75. ErrorOr<void> DebugInfo::prepare_lines()
  76. {
  77. Vector<Dwarf::LineProgram::LineInfo> all_lines;
  78. TRY(m_dwarf_info.for_each_compilation_unit([&all_lines](Dwarf::CompilationUnit const& unit) -> ErrorOr<void> {
  79. all_lines.extend(unit.line_program().lines());
  80. return {};
  81. }));
  82. HashMap<DeprecatedFlyString, Optional<DeprecatedString>> memoized_full_paths;
  83. auto compute_full_path = [&](DeprecatedFlyString const& file_path) -> Optional<DeprecatedString> {
  84. if (file_path.view().contains("Toolchain/"sv) || file_path.view().contains("libgcc"sv))
  85. return {};
  86. if (file_path.view().starts_with("./"sv) && !m_source_root.is_null())
  87. return LexicalPath::join(m_source_root, file_path).string();
  88. if (auto index_of_serenity_slash = file_path.view().find("serenity/"sv); index_of_serenity_slash.has_value()) {
  89. auto start_index = index_of_serenity_slash.value() + "serenity/"sv.length();
  90. return file_path.view().substring_view(start_index, file_path.length() - start_index);
  91. }
  92. return file_path;
  93. };
  94. m_sorted_lines.ensure_capacity(all_lines.size());
  95. for (auto const& line_info : all_lines) {
  96. auto maybe_full_path = memoized_full_paths.ensure(line_info.file, [&] { return compute_full_path(line_info.file); });
  97. if (!maybe_full_path.has_value())
  98. continue;
  99. m_sorted_lines.unchecked_append({ line_info.address, maybe_full_path.release_value(), line_info.line });
  100. }
  101. quick_sort(m_sorted_lines, [](auto& a, auto& b) {
  102. return a.address < b.address;
  103. });
  104. return {};
  105. }
  106. Optional<DebugInfo::SourcePosition> DebugInfo::get_source_position(FlatPtr target_address) const
  107. {
  108. if (m_sorted_lines.is_empty())
  109. return {};
  110. if (target_address < m_sorted_lines[0].address)
  111. return {};
  112. // TODO: We can do a binary search here
  113. for (size_t i = 0; i < m_sorted_lines.size() - 1; ++i) {
  114. if (m_sorted_lines[i + 1].address > target_address) {
  115. return SourcePosition::from_line_info(m_sorted_lines[i]);
  116. }
  117. }
  118. return {};
  119. }
  120. Optional<DebugInfo::SourcePositionAndAddress> DebugInfo::get_address_from_source_position(DeprecatedString const& file, size_t line) const
  121. {
  122. DeprecatedString file_path = file;
  123. if (!file_path.starts_with('/'))
  124. file_path = DeprecatedString::formatted("/{}", file_path);
  125. Optional<SourcePositionAndAddress> result;
  126. for (auto const& line_entry : m_sorted_lines) {
  127. if (!line_entry.file.ends_with(file_path))
  128. continue;
  129. if (line_entry.line > line)
  130. continue;
  131. // We look for the source position that is closest to the desired position, and is not after it.
  132. // For example, get_address_of_source_position("main.cpp", 73) could return the address for an instruction whose location is ("main.cpp", 72)
  133. // as there might not be an instruction mapped for "main.cpp", 73.
  134. if (!result.has_value() || (line_entry.line > result.value().line)) {
  135. result = SourcePositionAndAddress { line_entry.file, line_entry.line, line_entry.address };
  136. }
  137. }
  138. return result;
  139. }
  140. ErrorOr<Vector<NonnullOwnPtr<DebugInfo::VariableInfo>>> DebugInfo::get_variables_in_current_scope(PtraceRegisters const& regs) const
  141. {
  142. Vector<NonnullOwnPtr<DebugInfo::VariableInfo>> variables;
  143. // TODO: We can store the scopes in a better data structure
  144. for (auto const& scope : m_scopes) {
  145. FlatPtr ip;
  146. #if ARCH(X86_64)
  147. ip = regs.rip;
  148. #elif ARCH(AARCH64)
  149. TODO_AARCH64();
  150. #else
  151. # error Unknown architecture
  152. #endif
  153. if (ip - m_base_address < scope.address_low || ip - m_base_address >= scope.address_high)
  154. continue;
  155. for (auto const& die_entry : scope.dies_of_variables) {
  156. auto variable_info = TRY(create_variable_info(die_entry, regs));
  157. if (!variable_info)
  158. continue;
  159. variables.append(variable_info.release_nonnull());
  160. }
  161. }
  162. return variables;
  163. }
  164. static ErrorOr<Optional<Dwarf::DIE>> parse_variable_type_die(Dwarf::DIE const& variable_die, DebugInfo::VariableInfo& variable_info)
  165. {
  166. auto type_die_offset = TRY(variable_die.get_attribute(Dwarf::Attribute::Type));
  167. if (!type_die_offset.has_value())
  168. return Optional<Dwarf::DIE> {};
  169. VERIFY(type_die_offset.value().type() == Dwarf::AttributeValue::Type::DieReference);
  170. auto type_die = variable_die.compilation_unit().get_die_at_offset(type_die_offset.value().as_unsigned());
  171. auto type_name = TRY(type_die.get_attribute(Dwarf::Attribute::Name));
  172. if (type_name.has_value()) {
  173. variable_info.type_name = TRY(type_name.value().as_string());
  174. } else {
  175. dbgln("Unnamed DWARF type at offset: {}", type_die.offset());
  176. variable_info.type_name = "[Unnamed Type]";
  177. }
  178. return type_die;
  179. }
  180. static ErrorOr<void> parse_variable_location(Dwarf::DIE const& variable_die, DebugInfo::VariableInfo& variable_info, PtraceRegisters const& regs)
  181. {
  182. auto location_info = TRY(variable_die.get_attribute(Dwarf::Attribute::Location));
  183. if (!location_info.has_value()) {
  184. location_info = TRY(variable_die.get_attribute(Dwarf::Attribute::MemberLocation));
  185. }
  186. if (!location_info.has_value())
  187. return {};
  188. switch (location_info.value().type()) {
  189. case Dwarf::AttributeValue::Type::UnsignedNumber:
  190. variable_info.location_type = DebugInfo::VariableInfo::LocationType::Address;
  191. variable_info.location_data.address = location_info.value().as_unsigned();
  192. break;
  193. case Dwarf::AttributeValue::Type::DwarfExpression: {
  194. auto expression_bytes = location_info.value().as_raw_bytes();
  195. auto value = TRY(Dwarf::Expression::evaluate(expression_bytes, regs));
  196. if (value.type != Dwarf::Expression::Type::None) {
  197. VERIFY(value.type == Dwarf::Expression::Type::UnsignedInteger);
  198. variable_info.location_type = DebugInfo::VariableInfo::LocationType::Address;
  199. variable_info.location_data.address = value.data.as_addr;
  200. }
  201. break;
  202. }
  203. default:
  204. dbgln("Warning: unhandled Dwarf location type: {}", to_underlying(location_info.value().type()));
  205. }
  206. return {};
  207. }
  208. ErrorOr<OwnPtr<DebugInfo::VariableInfo>> DebugInfo::create_variable_info(Dwarf::DIE const& variable_die, PtraceRegisters const& regs, u32 address_offset) const
  209. {
  210. VERIFY(is_variable_tag_supported(variable_die.tag()));
  211. if (variable_die.tag() == Dwarf::EntryTag::FormalParameter
  212. && !TRY(variable_die.get_attribute(Dwarf::Attribute::Name)).has_value()) {
  213. // We don't want to display info for unused parameters
  214. return OwnPtr<DebugInfo::VariableInfo> {};
  215. }
  216. NonnullOwnPtr<VariableInfo> variable_info = make<VariableInfo>();
  217. auto name_attribute = TRY(variable_die.get_attribute(Dwarf::Attribute::Name));
  218. if (name_attribute.has_value())
  219. variable_info->name = TRY(name_attribute.value().as_string());
  220. auto type_die = TRY(parse_variable_type_die(variable_die, *variable_info));
  221. if (variable_die.tag() == Dwarf::EntryTag::Enumerator) {
  222. auto constant = TRY(variable_die.get_attribute(Dwarf::Attribute::ConstValue));
  223. VERIFY(constant.has_value());
  224. switch (constant.value().type()) {
  225. case Dwarf::AttributeValue::Type::UnsignedNumber:
  226. variable_info->constant_data.as_u32 = constant.value().as_unsigned();
  227. break;
  228. case Dwarf::AttributeValue::Type::SignedNumber:
  229. variable_info->constant_data.as_i32 = constant.value().as_signed();
  230. break;
  231. case Dwarf::AttributeValue::Type::String:
  232. variable_info->constant_data.as_string = TRY(constant.value().as_string());
  233. break;
  234. default:
  235. VERIFY_NOT_REACHED();
  236. }
  237. } else {
  238. TRY(parse_variable_location(variable_die, *variable_info, regs));
  239. variable_info->location_data.address += address_offset;
  240. }
  241. if (type_die.has_value())
  242. TRY(add_type_info_to_variable(type_die.value(), regs, variable_info));
  243. return variable_info;
  244. }
  245. ErrorOr<void> DebugInfo::add_type_info_to_variable(Dwarf::DIE const& type_die, PtraceRegisters const& regs, DebugInfo::VariableInfo* parent_variable) const
  246. {
  247. OwnPtr<VariableInfo> type_info;
  248. auto is_array_type = type_die.tag() == Dwarf::EntryTag::ArrayType;
  249. if (type_die.tag() == Dwarf::EntryTag::EnumerationType
  250. || type_die.tag() == Dwarf::EntryTag::StructureType
  251. || is_array_type) {
  252. type_info = TRY(create_variable_info(type_die, regs));
  253. }
  254. TRY(type_die.for_each_child([&](Dwarf::DIE const& member) -> ErrorOr<void> {
  255. if (member.is_null())
  256. return {};
  257. if (is_array_type && member.tag() == Dwarf::EntryTag::SubRangeType) {
  258. auto upper_bound = TRY(member.get_attribute(Dwarf::Attribute::UpperBound));
  259. VERIFY(upper_bound.has_value());
  260. auto size = upper_bound.value().as_unsigned() + 1;
  261. type_info->dimension_sizes.append(size);
  262. return {};
  263. }
  264. if (!is_variable_tag_supported(member.tag()))
  265. return {};
  266. auto member_variable = TRY(create_variable_info(member, regs, parent_variable->location_data.address));
  267. VERIFY(member_variable);
  268. if (type_die.tag() == Dwarf::EntryTag::EnumerationType) {
  269. member_variable->parent = type_info.ptr();
  270. type_info->members.append(member_variable.release_nonnull());
  271. } else {
  272. if (parent_variable->location_type != DebugInfo::VariableInfo::LocationType::Address)
  273. return {};
  274. member_variable->parent = parent_variable;
  275. parent_variable->members.append(member_variable.release_nonnull());
  276. }
  277. return {};
  278. }));
  279. if (type_info) {
  280. if (is_array_type) {
  281. StringBuilder array_type_name;
  282. array_type_name.append(type_info->type_name);
  283. for (auto array_size : type_info->dimension_sizes) {
  284. array_type_name.append('[');
  285. array_type_name.append(DeprecatedString::formatted("{:d}", array_size));
  286. array_type_name.append(']');
  287. }
  288. parent_variable->type_name = array_type_name.to_deprecated_string();
  289. }
  290. parent_variable->type = move(type_info);
  291. parent_variable->type->type_tag = type_die.tag();
  292. }
  293. return {};
  294. }
  295. bool DebugInfo::is_variable_tag_supported(Dwarf::EntryTag const& tag)
  296. {
  297. return tag == Dwarf::EntryTag::Variable
  298. || tag == Dwarf::EntryTag::Member
  299. || tag == Dwarf::EntryTag::FormalParameter
  300. || tag == Dwarf::EntryTag::EnumerationType
  301. || tag == Dwarf::EntryTag::Enumerator
  302. || tag == Dwarf::EntryTag::StructureType
  303. || tag == Dwarf::EntryTag::ArrayType;
  304. }
  305. DeprecatedString DebugInfo::name_of_containing_function(FlatPtr address) const
  306. {
  307. auto function = get_containing_function(address);
  308. if (!function.has_value())
  309. return {};
  310. return function.value().name;
  311. }
  312. Optional<DebugInfo::VariablesScope> DebugInfo::get_containing_function(FlatPtr address) const
  313. {
  314. for (auto const& scope : m_scopes) {
  315. if (!scope.is_function || address < scope.address_low || address >= scope.address_high)
  316. continue;
  317. return scope;
  318. }
  319. return {};
  320. }
  321. Vector<DebugInfo::SourcePosition> DebugInfo::source_lines_in_scope(VariablesScope const& scope) const
  322. {
  323. Vector<DebugInfo::SourcePosition> source_lines;
  324. for (auto const& line : m_sorted_lines) {
  325. if (line.address < scope.address_low)
  326. continue;
  327. if (line.address >= scope.address_high)
  328. break;
  329. source_lines.append(SourcePosition::from_line_info(line));
  330. }
  331. return source_lines;
  332. }
  333. DebugInfo::SourcePosition DebugInfo::SourcePosition::from_line_info(Dwarf::LineProgram::LineInfo const& line)
  334. {
  335. return { line.file, line.line, line.address };
  336. }
  337. ErrorOr<DebugInfo::SourcePositionWithInlines> DebugInfo::get_source_position_with_inlines(FlatPtr address) const
  338. {
  339. // If the address is in an "inline chain", this is the inner-most inlined position.
  340. auto inner_source_position = get_source_position(address);
  341. auto die = TRY(m_dwarf_info.get_die_at_address(address));
  342. if (!die.has_value() || die->tag() == Dwarf::EntryTag::SubroutineType) {
  343. // Inline chain is empty
  344. return SourcePositionWithInlines { inner_source_position, {} };
  345. }
  346. Vector<SourcePosition> inline_chain;
  347. auto insert_to_chain = [&](Dwarf::DIE const& die) -> ErrorOr<void> {
  348. auto caller_source_path = TRY(get_source_path_of_inline(die));
  349. auto caller_line = TRY(get_line_of_inline(die));
  350. if (!caller_source_path.has_value() || !caller_line.has_value()) {
  351. return {};
  352. }
  353. inline_chain.append({ DeprecatedString::formatted("{}/{}", caller_source_path->directory, caller_source_path->filename), caller_line.value() });
  354. return {};
  355. };
  356. while (die->tag() == Dwarf::EntryTag::InlinedSubroutine) {
  357. TRY(insert_to_chain(*die));
  358. if (!die->parent_offset().has_value()) {
  359. break;
  360. }
  361. auto parent = TRY(die->compilation_unit().dwarf_info().get_cached_die_at_offset(die->parent_offset().value()));
  362. if (!parent.has_value()) {
  363. break;
  364. }
  365. die = *parent;
  366. }
  367. return SourcePositionWithInlines { inner_source_position, inline_chain };
  368. }
  369. ErrorOr<Optional<Dwarf::LineProgram::DirectoryAndFile>> DebugInfo::get_source_path_of_inline(Dwarf::DIE const& die) const
  370. {
  371. auto caller_file = TRY(die.get_attribute(Dwarf::Attribute::CallFile));
  372. if (caller_file.has_value()) {
  373. size_t file_index = 0;
  374. if (caller_file->type() == Dwarf::AttributeValue::Type::UnsignedNumber) {
  375. file_index = caller_file->as_unsigned();
  376. } else if (caller_file->type() == Dwarf::AttributeValue::Type::SignedNumber) {
  377. // For some reason, the file_index is sometimes stored as a signed number.
  378. auto signed_file_index = caller_file->as_signed();
  379. VERIFY(signed_file_index >= 0);
  380. VERIFY(static_cast<u64>(signed_file_index) <= NumericLimits<size_t>::max());
  381. file_index = static_cast<size_t>(caller_file->as_signed());
  382. } else {
  383. return Optional<Dwarf::LineProgram::DirectoryAndFile> {};
  384. }
  385. return die.compilation_unit().line_program().get_directory_and_file(file_index);
  386. }
  387. return Optional<Dwarf::LineProgram::DirectoryAndFile> {};
  388. }
  389. ErrorOr<Optional<uint32_t>> DebugInfo::get_line_of_inline(Dwarf::DIE const& die) const
  390. {
  391. auto caller_line = TRY(die.get_attribute(Dwarf::Attribute::CallLine));
  392. if (!caller_line.has_value())
  393. return Optional<uint32_t> {};
  394. if (caller_line->type() != Dwarf::AttributeValue::Type::UnsignedNumber)
  395. return Optional<uint32_t> {};
  396. return Optional<uint32_t> { caller_line.value().as_unsigned() };
  397. }
  398. }