dwarf_extractor.cpp 20 KB

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  1. /*
  2. * Copyright (C) 2021 Ant Group. All rights reserved.
  3. * SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. */
  5. #include "lldb/API/SBBlock.h"
  6. #include "lldb/API/SBCompileUnit.h"
  7. #include "lldb/API/SBCommandReturnObject.h"
  8. #include "lldb/API/SBCommandInterpreter.h"
  9. #include "lldb/API/SBBreakpointLocation.h"
  10. #include "lldb/API/SBDebugger.h"
  11. #include "lldb/API//SBFunction.h"
  12. #include "lldb/API//SBModule.h"
  13. #include "lldb/API//SBProcess.h"
  14. #include "lldb/API//SBStream.h"
  15. #include "lldb/API//SBSymbol.h"
  16. #include "lldb/API//SBTarget.h"
  17. #include "lldb/API//SBThread.h"
  18. #include "lldb/API/SBDeclaration.h"
  19. #include "dwarf_extractor.h"
  20. #include "../aot_llvm.h"
  21. #include "bh_log.h"
  22. #include "../../aot/aot_runtime.h"
  23. #include "llvm/BinaryFormat/Dwarf.h"
  24. using namespace lldb;
  25. typedef struct dwarf_extractor {
  26. SBDebugger debugger;
  27. SBTarget target;
  28. SBModule module;
  29. } dwarf_extractor;
  30. #define TO_HANDLE(extractor) (dwarf_extractor_handle_t)(extractor)
  31. #define TO_EXTACTOR(handle) (dwarf_extractor *)(handle)
  32. static bool is_debugger_initialized;
  33. dwarf_extractor_handle_t
  34. create_dwarf_extractor(AOTCompData *comp_data, char *file_name)
  35. {
  36. char *arch = NULL;
  37. char *platform = NULL;
  38. dwarf_extractor *extractor = NULL;
  39. //__attribute__((constructor)) may be better?
  40. if (!is_debugger_initialized) {
  41. SBError error = SBDebugger::InitializeWithErrorHandling();
  42. if (error.Fail()) {
  43. LOG_ERROR("Init Dwarf Debugger failed");
  44. return TO_HANDLE(NULL);
  45. }
  46. is_debugger_initialized = true;
  47. }
  48. SBError error;
  49. SBFileSpec exe_file_spec(file_name, true);
  50. if (!(extractor = new dwarf_extractor())) {
  51. LOG_ERROR("Create Dwarf Extractor error: failed to allocate memory");
  52. goto fail3;
  53. }
  54. extractor->debugger = SBDebugger::Create();
  55. if (!extractor->debugger.IsValid()) {
  56. LOG_ERROR("Create Dwarf Debugger failed");
  57. goto fail2;
  58. }
  59. extractor->target = extractor->debugger.CreateTarget(
  60. file_name, arch, platform, false, error);
  61. if (!error.Success()) {
  62. LOG_ERROR("Create Dwarf target failed:%s", error.GetCString());
  63. goto fail1;
  64. }
  65. if (!extractor->target.IsValid()) {
  66. LOG_ERROR("Create Dwarf target not valid");
  67. goto fail1;
  68. }
  69. extractor->module = extractor->target.FindModule(exe_file_spec);
  70. comp_data->extractor = TO_HANDLE(extractor);
  71. return TO_HANDLE(extractor);
  72. fail1:
  73. SBDebugger::Destroy(extractor->debugger);
  74. fail2:
  75. wasm_runtime_free(extractor);
  76. fail3:
  77. return TO_HANDLE(NULL);
  78. }
  79. void
  80. destroy_dwarf_extractor(dwarf_extractor_handle_t handle)
  81. {
  82. dwarf_extractor *extractor = TO_EXTACTOR(handle);
  83. if (!extractor)
  84. return;
  85. extractor->debugger.DeleteTarget(extractor->target);
  86. SBDebugger::Destroy(extractor->debugger);
  87. delete extractor;
  88. SBDebugger::Terminate();
  89. is_debugger_initialized = false;
  90. }
  91. LLVMMetadataRef
  92. dwarf_gen_file_info(const AOTCompContext *comp_ctx)
  93. {
  94. dwarf_extractor *extractor;
  95. int units_number;
  96. LLVMMetadataRef file_info = NULL;
  97. const char *file_name;
  98. const char *dir_name;
  99. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  100. return NULL;
  101. units_number = extractor->module.GetNumCompileUnits();
  102. if (units_number > 0) {
  103. SBCompileUnit compile_unit = extractor->module.GetCompileUnitAtIndex(0);
  104. auto filespec = compile_unit.GetFileSpec();
  105. file_name = filespec.GetFilename();
  106. dir_name = filespec.GetDirectory();
  107. if (file_name || dir_name) {
  108. file_info = LLVMDIBuilderCreateFile(
  109. comp_ctx->debug_builder, file_name,
  110. file_name ? strlen(file_name) : 0, dir_name,
  111. dir_name ? strlen(dir_name) : 0);
  112. }
  113. }
  114. return file_info;
  115. }
  116. #if 0
  117. void
  118. dwarf_gen_mock_vm_info(AOTCompContext *comp_ctx)
  119. {
  120. LLVMMetadataRef file_info = NULL;
  121. LLVMMetadataRef comp_unit = NULL;
  122. file_info = LLVMDIBuilderCreateFile(comp_ctx->debug_builder,
  123. "ant_runtime_mock.c", 18, ".", 1);
  124. comp_unit = LLVMDIBuilderCreateCompileUnit(
  125. comp_ctx->debug_builder, LLVMDWARFSourceLanguageC, file_info,
  126. "WAMR AoT compiler", 12, 0, NULL, 0, 1, NULL, 0, LLVMDWARFEmissionFull, 0, 0,
  127. 0, "/", 1, "", 0);
  128. LLVMTypeRef ParamTys[] = {
  129. LLVMVoidType(),
  130. };
  131. LLVMTypeRef FuncTy = LLVMFunctionType(LLVMVoidType(), ParamTys, 0, 0);
  132. LLVMValueRef Function =
  133. LLVMAddFunction(comp_ctx->module, "ant_runtime_mock", FuncTy);
  134. LLVMMetadataRef ParamTypes[0];
  135. LLVMMetadataRef FunctionTy = LLVMDIBuilderCreateSubroutineType(
  136. comp_ctx->debug_builder, file_info, ParamTypes, 0, LLVMDIFlagZero);
  137. /* 0x0015 is subroutine_type */
  138. LLVMMetadataRef ReplaceableFunctionMetadata =
  139. LLVMDIBuilderCreateReplaceableCompositeType(
  140. comp_ctx->debug_builder, 0x15, "ant_runtime_mock", 16, file_info,
  141. file_info, 2, 0, 0, 0, LLVMDIFlagFwdDecl, "", 0);
  142. LLVMMetadataRef FunctionMetadata = LLVMDIBuilderCreateFunction(
  143. comp_ctx->debug_builder, file_info, "ant_runtime_mock", 16,
  144. "ant_runtime_mock", 16, file_info, 2, FunctionTy, true, true, 2, LLVMDIFlagZero,
  145. false);
  146. LLVMMetadataReplaceAllUsesWith(ReplaceableFunctionMetadata,
  147. FunctionMetadata);
  148. LLVMSetSubprogram(Function, FunctionMetadata);
  149. comp_ctx->vm_debug_comp_unit = comp_unit;
  150. comp_ctx->vm_debug_file = file_info;
  151. comp_ctx->vm_debug_func = FunctionMetadata;
  152. }
  153. #endif
  154. LLVMMetadataRef
  155. dwarf_gen_comp_unit_info(const AOTCompContext *comp_ctx)
  156. {
  157. dwarf_extractor *extractor;
  158. int units_number;
  159. LLVMMetadataRef comp_unit = NULL;
  160. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  161. return NULL;
  162. units_number = extractor->module.GetNumCompileUnits();
  163. if (units_number > 0) {
  164. SBCompileUnit compile_unit = extractor->module.GetCompileUnitAtIndex(0);
  165. auto lang_type = compile_unit.GetLanguage();
  166. comp_unit = LLVMDIBuilderCreateCompileUnit(
  167. comp_ctx->debug_builder, LLDB_TO_LLVM_LANG_TYPE(lang_type),
  168. comp_ctx->debug_file, "WAMR AoT compiler", 12, 0, NULL, 0, 1, NULL,
  169. 0, LLVMDWARFEmissionFull, 0, 0, 0, "/", 1, "", 0);
  170. }
  171. return comp_unit;
  172. }
  173. static LLVMDWARFTypeEncoding
  174. lldb_get_basic_type_encoding(BasicType basic_type)
  175. {
  176. LLVMDWARFTypeEncoding encoding = 0;
  177. switch (basic_type) {
  178. case eBasicTypeUnsignedChar:
  179. encoding = llvm::dwarf::DW_ATE_unsigned_char;
  180. break;
  181. case eBasicTypeSignedChar:
  182. encoding = llvm::dwarf::DW_ATE_signed_char;
  183. break;
  184. case eBasicTypeUnsignedInt:
  185. case eBasicTypeUnsignedLong:
  186. case eBasicTypeUnsignedLongLong:
  187. case eBasicTypeUnsignedWChar:
  188. case eBasicTypeUnsignedInt128:
  189. case eBasicTypeUnsignedShort:
  190. encoding = llvm::dwarf::DW_ATE_unsigned;
  191. break;
  192. case eBasicTypeInt:
  193. case eBasicTypeLong:
  194. case eBasicTypeLongLong:
  195. case eBasicTypeWChar:
  196. case eBasicTypeInt128:
  197. case eBasicTypeShort:
  198. encoding = llvm::dwarf::DW_ATE_signed;
  199. break;
  200. case eBasicTypeBool:
  201. encoding = llvm::dwarf::DW_ATE_boolean;
  202. break;
  203. case eBasicTypeHalf:
  204. case eBasicTypeFloat:
  205. case eBasicTypeDouble:
  206. case eBasicTypeLongDouble:
  207. encoding = llvm::dwarf::DW_ATE_float;
  208. break;
  209. default:
  210. break;
  211. }
  212. return encoding;
  213. }
  214. static LLVMMetadataRef
  215. lldb_type_to_type_dbi(const AOTCompContext *comp_ctx, SBType &type)
  216. {
  217. LLVMMetadataRef type_info = NULL;
  218. BasicType basic_type = type.GetBasicType();
  219. uint64_t bit_size = type.GetByteSize() * 8;
  220. LLVMDIBuilderRef DIB = comp_ctx->debug_builder;
  221. LLVMDWARFTypeEncoding encoding;
  222. if (basic_type != eBasicTypeInvalid) {
  223. encoding = lldb_get_basic_type_encoding(basic_type);
  224. type_info = LLVMDIBuilderCreateBasicType(
  225. DIB, type.GetName(), strlen(type.GetName()), bit_size, encoding,
  226. LLVMDIFlagZero);
  227. }
  228. else if (type.IsPointerType()) {
  229. SBType pointee_type = type.GetPointeeType();
  230. type_info = LLVMDIBuilderCreatePointerType(
  231. DIB, lldb_type_to_type_dbi(comp_ctx, pointee_type), bit_size, 0, 0,
  232. "", 0);
  233. }
  234. return type_info;
  235. }
  236. static LLVMMetadataRef
  237. lldb_function_to_function_dbi(const AOTCompContext *comp_ctx,
  238. SBSymbolContext &sc,
  239. const AOTFuncContext *func_ctx)
  240. {
  241. SBFunction function(sc.GetFunction());
  242. const char *function_name = function.GetName();
  243. const char *link_name = function.GetName();
  244. SBTypeList function_args = function.GetType().GetFunctionArgumentTypes();
  245. SBType return_type = function.GetType().GetFunctionReturnType();
  246. const size_t num_function_args = function_args.GetSize();
  247. dwarf_extractor *extractor;
  248. /*
  249. * Process only known languages.
  250. * We have a few assumptions which might not be true for non-C functions.
  251. *
  252. * At least it's known broken for C++ and Rust:
  253. * https://github.com/bytecodealliance/wasm-micro-runtime/issues/3187
  254. * https://github.com/bytecodealliance/wasm-micro-runtime/issues/3163
  255. */
  256. LanguageType language_type = function.GetLanguage();
  257. switch (language_type) {
  258. case eLanguageTypeC89:
  259. case eLanguageTypeC:
  260. case eLanguageTypeC99:
  261. case eLanguageTypeC11:
  262. case eLanguageTypeC17:
  263. break;
  264. default:
  265. LOG_WARNING("func %s has unsuppoted language_type 0x%x",
  266. function_name, (int)language_type);
  267. return NULL;
  268. }
  269. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  270. return NULL;
  271. LLVMDIBuilderRef DIB = comp_ctx->debug_builder;
  272. LLVMMetadataRef File = comp_ctx->debug_file; /* a fallback */
  273. LLVMMetadataRef ParamTypes[num_function_args + 1];
  274. ParamTypes[0] = lldb_type_to_type_dbi(comp_ctx, return_type);
  275. for (uint32_t function_arg_idx = 0; function_arg_idx < num_function_args;
  276. ++function_arg_idx) {
  277. SBType function_arg_type =
  278. function_args.GetTypeAtIndex(function_arg_idx);
  279. if (function_arg_type.IsValid()) {
  280. ParamTypes[function_arg_idx + 1] =
  281. lldb_type_to_type_dbi(comp_ctx, function_arg_type);
  282. if (ParamTypes[function_arg_idx + 1] == NULL) {
  283. LOG_WARNING(
  284. "func %s arg %" PRIu32
  285. " has a type not implemented by lldb_type_to_type_dbi",
  286. function_name, function_arg_idx);
  287. }
  288. }
  289. else {
  290. LOG_WARNING("func %s arg %" PRIu32 ": GetTypeAtIndex failed",
  291. function_name, function_arg_idx);
  292. ParamTypes[function_arg_idx + 1] = NULL;
  293. }
  294. }
  295. auto compile_unit = sc.GetCompileUnit();
  296. auto file_spec = compile_unit.GetFileSpec();
  297. const char *file_name = file_spec.GetFilename();
  298. const char *dir_name = file_spec.GetDirectory();
  299. LLVMMetadataRef file_info = NULL;
  300. if (file_name || dir_name) {
  301. file_info =
  302. LLVMDIBuilderCreateFile(comp_ctx->debug_builder, file_name,
  303. file_name ? strlen(file_name) : 0, dir_name,
  304. dir_name ? strlen(dir_name) : 0);
  305. }
  306. if (file_info) {
  307. File = file_info;
  308. }
  309. LLVMMetadataRef FunctionTy = LLVMDIBuilderCreateSubroutineType(
  310. DIB, File, ParamTypes, num_function_args + 1, LLVMDIFlagZero);
  311. auto line_entry = sc.GetLineEntry();
  312. LLVMMetadataRef ReplaceableFunctionMetadata =
  313. LLVMDIBuilderCreateReplaceableCompositeType(
  314. DIB, 0x15, function_name, strlen(function_name), File, File,
  315. line_entry.GetLine(), 0, 0, 0, LLVMDIFlagFwdDecl, "", 0);
  316. LLVMMetadataRef FunctionMetadata = LLVMDIBuilderCreateFunction(
  317. DIB, File, function_name, strlen(function_name), link_name,
  318. strlen(link_name), File, line_entry.GetLine(), FunctionTy, true, true,
  319. line_entry.GetLine(), LLVMDIFlagZero, false);
  320. LLVMMetadataReplaceAllUsesWith(ReplaceableFunctionMetadata,
  321. FunctionMetadata);
  322. LLVMSetSubprogram(func_ctx->func, FunctionMetadata);
  323. LLVMMetadataRef ParamExpression =
  324. LLVMDIBuilderCreateExpression(DIB, NULL, 0);
  325. auto variable_list =
  326. function.GetBlock().GetVariables(extractor->target, true, false, false);
  327. if (num_function_args != variable_list.GetSize()) {
  328. LOG_ERROR(
  329. "function args number dismatch!:value number=%d, function args=%d",
  330. variable_list.GetSize(), num_function_args);
  331. }
  332. LLVMMetadataRef ParamLocation = LLVMDIBuilderCreateDebugLocation(
  333. comp_ctx->context, line_entry.GetLine(), 0, FunctionMetadata, NULL);
  334. // TODO:change to void * or WasmExenv * ?
  335. LLVMMetadataRef voidtype =
  336. LLVMDIBuilderCreateBasicType(DIB, "void", 4, 0, 0, LLVMDIFlagZero);
  337. LLVMMetadataRef voidpionter =
  338. LLVMDIBuilderCreatePointerType(DIB, voidtype, 64, 0, 0, "void *", 6);
  339. LLVMMetadataRef ParamVar = LLVMDIBuilderCreateParameterVariable(
  340. DIB, FunctionMetadata, "exenv", 5, 1,
  341. File, // starts form 1, and 1 is exenv,
  342. line_entry.GetLine(), voidpionter, true, LLVMDIFlagZero);
  343. LLVMValueRef Param = LLVMGetParam(func_ctx->func, 0);
  344. LLVMBasicBlockRef block_curr = LLVMGetEntryBasicBlock(func_ctx->func);
  345. LLVMDIBuilderInsertDbgValueAtEnd(DIB, Param, ParamVar, ParamExpression,
  346. ParamLocation, block_curr);
  347. for (uint32_t function_arg_idx = 0;
  348. function_arg_idx < variable_list.GetSize(); ++function_arg_idx) {
  349. SBValue variable(variable_list.GetValueAtIndex(function_arg_idx));
  350. if (variable.IsValid() && ParamTypes[function_arg_idx + 1] != NULL) {
  351. SBDeclaration dec(variable.GetDeclaration());
  352. auto valtype = variable.GetType();
  353. LLVMMetadataRef ParamLocation = LLVMDIBuilderCreateDebugLocation(
  354. comp_ctx->context, dec.GetLine(), dec.GetColumn(),
  355. FunctionMetadata, NULL);
  356. const char *varname = variable.GetName();
  357. LLVMMetadataRef ParamVar = LLVMDIBuilderCreateParameterVariable(
  358. DIB, FunctionMetadata, varname, varname ? strlen(varname) : 0,
  359. function_arg_idx + 1 + 1,
  360. File, // starts form 1, and 1 is exenv,
  361. dec.GetLine(), ParamTypes[function_arg_idx + 1], true,
  362. LLVMDIFlagZero);
  363. LLVMValueRef Param =
  364. LLVMGetParam(func_ctx->func, function_arg_idx + 1);
  365. LLVMDIBuilderInsertDbgValueAtEnd(DIB, Param, ParamVar,
  366. ParamExpression, ParamLocation,
  367. block_curr);
  368. }
  369. }
  370. return FunctionMetadata;
  371. }
  372. LLVMMetadataRef
  373. dwarf_gen_func_info(const AOTCompContext *comp_ctx,
  374. const AOTFuncContext *func_ctx)
  375. {
  376. LLVMMetadataRef func_info = NULL;
  377. dwarf_extractor *extractor;
  378. uint64_t vm_offset;
  379. AOTFunc *func = func_ctx->aot_func;
  380. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  381. return NULL;
  382. // A code address in DWARF for WebAssembly is the offset of an
  383. // instruction relative within the Code section of the WebAssembly file.
  384. // For this reason Section::GetFileAddress() must return zero for the
  385. // Code section. (refert to ObjectFileWasm.cpp)
  386. vm_offset = func->code - comp_ctx->comp_data->wasm_module->buf_code;
  387. auto sbaddr = extractor->target.ResolveFileAddress(vm_offset);
  388. SBSymbolContext sc(sbaddr.GetSymbolContext(eSymbolContextFunction
  389. | eSymbolContextLineEntry));
  390. if (sc.IsValid()) {
  391. SBFunction function(sc.GetFunction());
  392. if (function.IsValid()) {
  393. func_info = lldb_function_to_function_dbi(comp_ctx, sc, func_ctx);
  394. }
  395. }
  396. return func_info;
  397. }
  398. void
  399. dwarf_get_func_name(const AOTCompContext *comp_ctx,
  400. const AOTFuncContext *func_ctx, char *name, int len)
  401. {
  402. LLVMMetadataRef func_info = NULL;
  403. dwarf_extractor *extractor;
  404. uint64_t vm_offset;
  405. AOTFunc *func = func_ctx->aot_func;
  406. name[0] = '\0';
  407. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  408. return;
  409. // A code address in DWARF for WebAssembly is the offset of an
  410. // instruction relative within the Code section of the WebAssembly file.
  411. // For this reason Section::GetFileAddress() must return zero for the
  412. // Code section. (refert to ObjectFileWasm.cpp)
  413. vm_offset = func->code - comp_ctx->comp_data->wasm_module->buf_code;
  414. auto sbaddr = extractor->target.ResolveFileAddress(vm_offset);
  415. SBSymbolContext sc(sbaddr.GetSymbolContext(eSymbolContextFunction
  416. | eSymbolContextLineEntry));
  417. if (sc.IsValid()) {
  418. SBFunction function(sc.GetFunction());
  419. if (function.IsValid()) {
  420. bh_strcpy_s(name, len, function.GetName());
  421. }
  422. }
  423. }
  424. LLVMMetadataRef
  425. dwarf_gen_location(const AOTCompContext *comp_ctx,
  426. const AOTFuncContext *func_ctx, uint64_t vm_offset)
  427. {
  428. LLVMMetadataRef location_info = NULL;
  429. dwarf_extractor *extractor;
  430. AOTFunc *func = func_ctx->aot_func;
  431. if (func_ctx->debug_func == NULL)
  432. return NULL;
  433. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  434. return NULL;
  435. auto sbaddr = extractor->target.ResolveFileAddress(vm_offset);
  436. SBSymbolContext sc(sbaddr.GetSymbolContext(eSymbolContextFunction
  437. | eSymbolContextLineEntry));
  438. if (sc.IsValid()) {
  439. // TODO:need to check if the vm_offset is belong to
  440. SBFunction function(sc.GetFunction());
  441. if (function.IsValid()) {
  442. uint64_t start = func_ctx->aot_func->code
  443. - comp_ctx->comp_data->wasm_module->buf_code;
  444. uint64_t end = func_ctx->aot_func->code
  445. - comp_ctx->comp_data->wasm_module->buf_code
  446. + func_ctx->aot_func->code_size;
  447. if (function.GetStartAddress().GetOffset() <= start
  448. && end <= function.GetEndAddress().GetOffset()) {
  449. auto line_entry = sc.GetLineEntry();
  450. location_info = LLVMDIBuilderCreateDebugLocation(
  451. comp_ctx->context, line_entry.GetLine(),
  452. line_entry.GetColumn(), func_ctx->debug_func, NULL);
  453. // LOG_VERBOSE("Gen the location l:%d, c:%d at %lx",
  454. // line_entry.GetLine(), line_entry.GetColumn(), vm_offset);
  455. }
  456. else
  457. LOG_WARNING("the offset and function is not matched");
  458. }
  459. }
  460. return location_info;
  461. }
  462. LLVMMetadataRef
  463. dwarf_gen_func_ret_location(const AOTCompContext *comp_ctx,
  464. const AOTFuncContext *func_ctx)
  465. {
  466. LLVMMetadataRef func_info = NULL;
  467. dwarf_extractor *extractor;
  468. uint64_t vm_offset;
  469. AOTFunc *func = func_ctx->aot_func;
  470. LLVMMetadataRef location_info = NULL;
  471. if (!(extractor = TO_EXTACTOR(comp_ctx->comp_data->extractor)))
  472. return NULL;
  473. // A code address in DWARF for WebAssembly is the offset of an
  474. // instruction relative within the Code section of the WebAssembly file.
  475. // For this reason Section::GetFileAddress() must return zero for the
  476. // Code section. (refert to ObjectFileWasm.cpp)
  477. vm_offset = (func->code + func->code_size - 1)
  478. - comp_ctx->comp_data->wasm_module->buf_code;
  479. location_info = dwarf_gen_location(comp_ctx, func_ctx, vm_offset);
  480. return location_info;
  481. }