dbgdwarf.pas 157 KB

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  1. {
  2. Copyright (c) 2003-2006 by Peter Vreman and Florian Klaempfl
  3. This units contains support for DWARF debug info generation
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. {
  18. This units contains support for DWARF debug info generation.
  19. Currently a lot of code looks like being mergable with dbgstabs. This might
  20. change however when improved dwarf info is generated, so the stuff shouldn't be
  21. merged yet. (FK)
  22. The easiest way to debug dwarf debug info generation is the usage of
  23. readelf --debug-dump <executable>
  24. This works only with elf targets though.
  25. There is a similar utility called dwarfdump which is not elf-specific and
  26. which has been ported to most systems.
  27. }
  28. unit dbgdwarf;
  29. {$i fpcdefs.inc}
  30. interface
  31. uses
  32. cclasses,globtype,
  33. aasmbase,aasmtai,aasmdata,
  34. symbase,symconst,symtype,symdef,symsym,
  35. finput,
  36. DbgBase;
  37. type
  38. { Tag names and codes. }
  39. tdwarf_tag = (DW_TAG_padding := $00,DW_TAG_array_type := $01,
  40. DW_TAG_class_type := $02,DW_TAG_entry_point := $03,
  41. DW_TAG_enumeration_type := $04,DW_TAG_formal_parameter := $05,
  42. DW_TAG_imported_declaration := $08,DW_TAG_label := $0a,
  43. DW_TAG_lexical_block := $0b,DW_TAG_member := $0d,
  44. DW_TAG_pointer_type := $0f,DW_TAG_reference_type := $10,
  45. DW_TAG_compile_unit := $11,DW_TAG_stringtypee := $12,
  46. DW_TAG_structure_type := $13,DW_TAG_subroutine_type := $15,
  47. DW_TAG_typedef := $16,DW_TAG_union_type := $17,
  48. DW_TAG_unspecified_parameters := $18,
  49. DW_TAG_variant := $19,DW_TAG_common_block := $1a,
  50. DW_TAG_common_inclusion := $1b,DW_TAG_inheritance := $1c,
  51. DW_TAG_inlined_subroutine := $1d,DW_TAG_module := $1e,
  52. DW_TAG_ptr_to_member_type := $1f,DW_TAG_set_type := $20,
  53. DW_TAG_subrange_type := $21,DW_TAG_with_stmt := $22,
  54. DW_TAG_access_declaration := $23,DW_TAG_base_type := $24,
  55. DW_TAG_catch_block := $25,DW_TAG_const_type := $26,
  56. DW_TAG_constant := $27,DW_TAG_enumerator := $28,
  57. DW_TAG_file_type := $29,DW_TAG_friend := $2a,
  58. DW_TAG_namelist := $2b,DW_TAG_namelist_item := $2c,
  59. DW_TAG_packed_type := $2d,DW_TAG_subprogram := $2e,
  60. DW_TAG_template_type_param := $2f,DW_TAG_template_value_param := $30,
  61. DW_TAG_thrown_type := $31,DW_TAG_try_block := $32,
  62. DW_TAG_variant_part := $33,DW_TAG_variable := $34,
  63. DW_TAG_volatile_type := $35,
  64. { DWARF 3. }
  65. DW_TAG_dwarf_procedure := $36,
  66. DW_TAG_restrict_type := $37,DW_TAG_interface_type := $38,
  67. DW_TAG_namespace := $39,DW_TAG_imported_module := $3a,
  68. DW_TAG_unspecified_type := $3b,DW_TAG_partial_unit := $3c,
  69. DW_TAG_imported_unit := $3d,
  70. { SGI/MIPS Extensions. }
  71. DW_TAG_MIPS_loop := $4081,
  72. { HP extensions. See: ftp://ftp.hp.com/pub/lang/tools/WDB/wdb-4.0.tar.gz . }
  73. DW_TAG_HP_array_descriptor := $4090,
  74. { GNU extensions. }
  75. { For FORTRAN 77 and Fortran 90. }
  76. DW_TAG_format_label := $4101,
  77. { For C++. }
  78. DW_TAG_function_template := $4102,DW_TAG_class_template := $4103,
  79. DW_TAG_GNU_BINCL := $4104,DW_TAG_GNU_EINCL := $4105,
  80. { Extensions for UPC. See: http://upc.gwu.edu/~upc. }
  81. DW_TAG_upc_shared_type := $8765,DW_TAG_upc_strict_type := $8766,
  82. DW_TAG_upc_relaxed_type := $8767,
  83. { PGI (STMicroelectronics) extensions. No documentation available. }
  84. DW_TAG_PGI_kanji_type := $A000,
  85. DW_TAG_PGI_interface_block := $A020);
  86. {$notes off}
  87. { Attribute names and codes. }
  88. tdwarf_attribute = (DW_AT_sibling := $01,DW_AT_location := $02,
  89. DW_AT_name := $03,DW_AT_ordering := $09,
  90. DW_AT_subscr_data := $0a,DW_AT_byte_size := $0b,
  91. DW_AT_bit_offset := $0c,DW_AT_bit_size := $0d,
  92. DW_AT_element_list := $0f,DW_AT_stmt_list := $10,
  93. DW_AT_low_pc := $11,DW_AT_high_pc := $12,
  94. DW_AT_language := $13,DW_AT_member := $14,
  95. DW_AT_discr := $15,DW_AT_discr_value := $16,
  96. DW_AT_visibility := $17,DW_AT_import := $18,
  97. DW_AT_string_length := $19,DW_AT_common_reference := $1a,
  98. DW_AT_comp_dir := $1b,DW_AT_const_value := $1c,
  99. DW_AT_containing_type := $1d,DW_AT_default_value := $1e,
  100. DW_AT_inline := $20,DW_AT_is_optional := $21,
  101. DW_AT_lower_bound := $22,DW_AT_producer := $25,
  102. DW_AT_prototyped := $27,DW_AT_return_addr := $2a,
  103. DW_AT_start_scope := $2c,DW_AT_stride_size := $2e,
  104. DW_AT_upper_bound := $2f,DW_AT_abstract_origin := $31,
  105. DW_AT_accessibility := $32,DW_AT_address_class := $33,
  106. DW_AT_artificial := $34,DW_AT_base_types := $35,
  107. DW_AT_calling_convention := $36,DW_AT_count := $37,
  108. DW_AT_data_member_location := $38,DW_AT_decl_column := $39,
  109. DW_AT_decl_file := $3a,DW_AT_decl_line := $3b,
  110. DW_AT_declaration := $3c,DW_AT_discr_list := $3d,
  111. DW_AT_encoding := $3e,DW_AT_external := $3f,
  112. DW_AT_frame_base := $40,DW_AT_friend := $41,
  113. DW_AT_identifier_case := $42,DW_AT_macro_info := $43,
  114. DW_AT_namelist_items := $44,DW_AT_priority := $45,
  115. DW_AT_segment := $46,DW_AT_specification := $47,
  116. DW_AT_static_link := $48,DW_AT_type := $49,
  117. DW_AT_use_location := $4a,DW_AT_variable_parameter := $4b,
  118. DW_AT_virtuality := $4c,DW_AT_vtable_elem_location := $4d,
  119. { DWARF 3 values. }
  120. DW_AT_allocated := $4e,DW_AT_associated := $4f,
  121. DW_AT_data_location := $50,DW_AT_byte_stride := $51,
  122. DW_AT_entry_pc := $52,DW_AT_use_UTF8 := $53,
  123. DW_AT_extension := $54,DW_AT_ranges := $55,
  124. DW_AT_trampoline := $56,DW_AT_call_column := $57,
  125. DW_AT_call_file := $58,DW_AT_call_line := $59,
  126. { SGI/MIPS extensions. }
  127. DW_AT_MIPS_fde := $2001,DW_AT_MIPS_loop_begin := $2002,
  128. DW_AT_MIPS_tail_loop_begin := $2003,DW_AT_MIPS_epilog_begin := $2004,
  129. DW_AT_MIPS_loop_unroll_factor := $2005,
  130. DW_AT_MIPS_software_pipeline_depth := $2006,
  131. DW_AT_MIPS_linkage_name := $2007,DW_AT_MIPS_stride := $2008,
  132. DW_AT_MIPS_abstract_name := $2009,DW_AT_MIPS_clone_origin := $200a,
  133. DW_AT_MIPS_has_inlines := $200b,
  134. { HP extensions. }
  135. DW_AT_HP_block_index := $2000,
  136. DW_AT_HP_unmodifiable := $2001,DW_AT_HP_actuals_stmt_list := $2010,
  137. DW_AT_HP_proc_per_section := $2011,DW_AT_HP_raw_data_ptr := $2012,
  138. DW_AT_HP_pass_by_reference := $2013,DW_AT_HP_opt_level := $2014,
  139. DW_AT_HP_prof_version_id := $2015,DW_AT_HP_opt_flags := $2016,
  140. DW_AT_HP_cold_region_low_pc := $2017,DW_AT_HP_cold_region_high_pc := $2018,
  141. DW_AT_HP_all_variables_modifiable := $2019,
  142. DW_AT_HP_linkage_name := $201a,DW_AT_HP_prof_flags := $201b,
  143. { GNU extensions. }
  144. DW_AT_sf_names := $2101,DW_AT_src_info := $2102,
  145. DW_AT_mac_info := $2103,DW_AT_src_coords := $2104,
  146. DW_AT_body_begin := $2105,DW_AT_body_end := $2106,
  147. DW_AT_GNU_vector := $2107,
  148. { VMS extensions. }
  149. DW_AT_VMS_rtnbeg_pd_address := $2201,
  150. { UPC extension. }
  151. DW_AT_upc_threads_scaled := $3210,
  152. { PGI (STMicroelectronics) extensions. }
  153. DW_AT_PGI_lbase := $3a00,
  154. DW_AT_PGI_soffset := $3a01,DW_AT_PGI_lstride := $3a02,
  155. { Apple extensions }
  156. DW_AT_APPLE_optimized = $3fe1,
  157. DW_AT_APPLE_flags = $3fe2,
  158. DW_AT_APPLE_major_runtime_vers = $3fe5,
  159. DW_AT_APPLE_runtime_class = $3fe6
  160. );
  161. {$notes on}
  162. { Form names and codes. }
  163. Tdwarf_form = (DW_FORM_addr := $01,DW_FORM_block2 := $03,
  164. DW_FORM_block4 := $04,DW_FORM_data2 := $05,
  165. DW_FORM_data4 := $06,DW_FORM_data8 := $07,
  166. DW_FORM_string := $08,DW_FORM_block := $09,
  167. DW_FORM_block1 := $0a,DW_FORM_data1 := $0b,
  168. DW_FORM_flag := $0c,DW_FORM_sdata := $0d,
  169. DW_FORM_strp := $0e,DW_FORM_udata := $0f,
  170. DW_FORM_ref_addr := $10,DW_FORM_ref1 := $11,
  171. DW_FORM_ref2 := $12,DW_FORM_ref4 := $13,
  172. DW_FORM_ref8 := $14,DW_FORM_ref_udata := $15,
  173. DW_FORM_indirect := $16);
  174. TDwarfFile = record
  175. Index: integer;
  176. Name: PChar;
  177. end;
  178. { flags for emitting variables/parameters }
  179. tdwarfvarsymflag =
  180. { force the sym to be emitted as a local variable regardless of its
  181. type; used for "absolute" local variables referring to parameters.
  182. }
  183. (dvf_force_local_var
  184. );
  185. tdwarfvarsymflags = set of tdwarfvarsymflag;
  186. pAbbrevSearchTreeItem = ^tAbbrevSearchTreeItem;
  187. tAbbrevSearchTreeItem = record
  188. value: QWord;
  189. Abbrev: longint;
  190. // When this item does not match the abbrev-value, look for it
  191. // in the next SearchItem
  192. SearchItem: pAbbrevSearchTreeItem;
  193. // Next and prior item of the abbrev-section
  194. NextItem: pAbbrevSearchTreeItem;
  195. PriorItem: pAbbrevSearchTreeItem;
  196. bit8: boolean;
  197. end;
  198. { TDebugInfoDwarf }
  199. TDebugInfoDwarf = class(TDebugInfo)
  200. private
  201. currabbrevnumber : longint;
  202. { use this defs to create info for variants and file handles }
  203. { unused (MWE)
  204. filerecdef,
  205. textrecdef : tdef;
  206. }
  207. dirlist: TFPHashObjectList;
  208. filesequence: Integer;
  209. loclist: tdynamicarray;
  210. asmline: TAsmList;
  211. // The current entry in dwarf_info with the link to the abbrev-section
  212. dwarf_info_abbref_tai: tai_const;
  213. // Empty start-item of the abbrev-searchtree
  214. AbbrevSearchTree: pAbbrevSearchTreeItem;
  215. // The current abbrev-item
  216. CurrentSearchTreeItem: pAbbrevSearchTreeItem;
  217. // Is true when the abbrev-section is newly created
  218. NewAbbrev: boolean;
  219. procedure StartAbbrevSearch;
  220. procedure AddConstToAbbrev(Value: QWord; bit8:boolean=false);
  221. procedure StartAbbrevSectionFromSearchtree;
  222. procedure WriteSearchItemToAbbrevSection(SI: pAbbrevSearchTreeItem);
  223. function FinishAbbrevSearch: longint;
  224. function def_dwarf_lab(def:tdef) : tasmsymbol;
  225. function def_dwarf_ref_lab(def:tdef) : tasmsymbol;
  226. function def_dwarf_class_struct_lab(def:tobjectdef) : tasmsymbol;
  227. function get_file_index(afile: tinputfile): Integer;
  228. function relative_dwarf_path(const s:tcmdstr):tcmdstr;
  229. protected
  230. // set if we should use 64bit headers (dwarf3 and up)
  231. _use_64bit_headers: Boolean;
  232. // set to ait_const32bit if use_64bit_headers is false, otherwise
  233. // to ait_const64bit
  234. offsetreltype,
  235. offsetabstype : taiconst_type;
  236. // set if we generated any lineinfo at all. If not, we have to terminate
  237. // when insertmoduleinfo is called.
  238. generated_lineinfo: boolean;
  239. vardatadef: trecorddef;
  240. procedure set_use_64bit_headers(state: boolean);
  241. property use_64bit_headers: Boolean read _use_64bit_headers write set_use_64bit_headers;
  242. procedure set_def_dwarf_labs(def:tdef);
  243. { Convenience version of the method below, so the compiler creates the
  244. tvarrec for us (must only pass one element in the last parameter). }
  245. procedure append_attribute(attr: tdwarf_attribute; form: tdwarf_form; const values: array of const);
  246. procedure append_attribute(attr: tdwarf_attribute; form: tdwarf_form; const value: tvarrec);
  247. procedure append_entry(tag : tdwarf_tag;has_children : boolean;data : array of const);
  248. procedure append_block1(attr: tdwarf_attribute; size: aint);
  249. procedure append_labelentry(attr : tdwarf_attribute;sym : tasmsymbol);
  250. procedure append_labelentry_addr_ref(attr : tdwarf_attribute;sym : tasmsymbol); virtual;
  251. procedure append_labelentry_ref(attr : tdwarf_attribute;sym : tasmsymbol);
  252. procedure append_labelentry_dataptr_abs(attr : tdwarf_attribute;sym : tasmsymbol);
  253. procedure append_labelentry_dataptr_rel(attr : tdwarf_attribute;sym,endsym : tasmsymbol);
  254. procedure append_labelentry_dataptr_common(attr : tdwarf_attribute);
  255. procedure beforeappenddef(list:TAsmList;def:tdef);override;
  256. procedure afterappenddef(list:TAsmList;def:tdef);override;
  257. procedure appenddef_ord(list:TAsmList;def:torddef);override;
  258. procedure appenddef_float(list:TAsmList;def:tfloatdef);override;
  259. procedure appenddef_enum(list:TAsmList;def:tenumdef);override;
  260. procedure appenddef_array(list:TAsmList;def:tarraydef);override;
  261. procedure appenddef_record_named(list:TAsmList;def:trecorddef;const name: shortstring);
  262. procedure appenddef_record(list:TAsmList;def:trecorddef);override;
  263. procedure appenddef_pointer(list:TAsmList;def:tpointerdef);override;
  264. procedure appenddef_string(list:TAsmList;def:tstringdef);override;
  265. procedure appenddef_procvar(list:TAsmList;def:tprocvardef);override;
  266. procedure appendprocdef(list:TAsmList;def:tprocdef);override;
  267. function get_symlist_sym_offset(symlist: ppropaccesslistitem; out sym: tabstractvarsym; out offset: pint): boolean;
  268. procedure appendsym_var(list:TAsmList;sym:tabstractnormalvarsym);
  269. procedure appendsym_var_with_name_type_offset(list:TAsmList; sym:tabstractnormalvarsym; const name: string; def: tdef; offset: pint; const flags: tdwarfvarsymflags);
  270. { used for fields and properties mapped to fields }
  271. procedure appendsym_fieldvar_with_name_offset(list:TAsmList;sym: tfieldvarsym;const name: string; def: tdef; offset: pint);
  272. procedure beforeappendsym(list:TAsmList;sym:tsym);override;
  273. procedure appendsym_staticvar(list:TAsmList;sym:tstaticvarsym);override;
  274. procedure appendsym_paravar(list:TAsmList;sym:tparavarsym);override;
  275. procedure appendsym_localvar(list:TAsmList;sym:tlocalvarsym);override;
  276. procedure appendsym_fieldvar(list:TAsmList;sym:tfieldvarsym);override;
  277. procedure appendsym_const(list:TAsmList;sym:tconstsym);override;
  278. procedure appendsym_type(list:TAsmList;sym:ttypesym);override;
  279. procedure appendsym_label(list:TAsmList;sym:tlabelsym);override;
  280. procedure appendsym_absolute(list:TAsmList;sym:tabsolutevarsym);override;
  281. procedure appendsym_property(list:TAsmList;sym:tpropertysym);override;
  282. function symname(sym:tsym): String; virtual;
  283. procedure append_visibility(vis: tvisibility);
  284. procedure enum_membersyms_callback(p:TObject;arg:pointer);
  285. procedure finish_children;
  286. procedure finish_entry;
  287. procedure finish_lineinfo;
  288. public
  289. constructor Create;override;
  290. destructor Destroy;override;
  291. procedure insertmoduleinfo;override;
  292. procedure inserttypeinfo;override;
  293. procedure referencesections(list:TAsmList);override;
  294. procedure insertlineinfo(list:TAsmList);override;
  295. function dwarf_version: Word; virtual; abstract;
  296. end;
  297. { TDebugInfoDwarf2 }
  298. TDebugInfoDwarf2 = class(TDebugInfoDwarf)
  299. private
  300. protected
  301. procedure appenddef_set_intern(list:TAsmList;def:tsetdef; force_tag_set: boolean);
  302. procedure appenddef_file(list:TAsmList;def:tfiledef); override;
  303. procedure appenddef_formal(list:TAsmList;def:tformaldef); override;
  304. procedure appenddef_object(list:TAsmList;def:tobjectdef); override;
  305. procedure appenddef_set(list:TAsmList;def:tsetdef); override;
  306. procedure appenddef_undefined(list:TAsmList;def:tundefineddef); override;
  307. procedure appenddef_variant(list:TAsmList;def:tvariantdef); override;
  308. public
  309. function dwarf_version: Word; override;
  310. end;
  311. { TDebugInfoDwarf3 }
  312. TDebugInfoDwarf3 = class(TDebugInfoDwarf2)
  313. private
  314. protected
  315. procedure append_labelentry_addr_ref(attr : tdwarf_attribute;sym : tasmsymbol); override;
  316. procedure appenddef_array(list:TAsmList;def:tarraydef); override;
  317. procedure appenddef_string(list:TAsmList;def:tstringdef);override;
  318. procedure appenddef_file(list:TAsmList;def:tfiledef); override;
  319. procedure appenddef_formal(list:TAsmList;def:tformaldef); override;
  320. procedure appenddef_object(list:TAsmList;def:tobjectdef); override;
  321. procedure appenddef_set(list:TAsmList;def: tsetdef); override;
  322. procedure appenddef_undefined(list:TAsmList;def:tundefineddef); override;
  323. procedure appenddef_variant(list:TAsmList;def:tvariantdef); override;
  324. function symname(sym:tsym): String; override;
  325. public
  326. function dwarf_version: Word; override;
  327. end;
  328. implementation
  329. uses
  330. sysutils,cutils,cfileutl,constexp,
  331. version,globals,verbose,systems,
  332. cpubase,cpuinfo,cgbase,paramgr,
  333. fmodule,
  334. defutil,symtable,ppu
  335. ;
  336. const
  337. LINE_BASE = 1;
  338. OPCODE_BASE = 13;
  339. const
  340. DW_TAG_lo_user = $4080;
  341. DW_TAG_hi_user = $ffff;
  342. { Flag that tells whether entry has a child or not. }
  343. DW_children_no = 0;
  344. DW_children_yes = 1;
  345. const
  346. { Implementation-defined range start. }
  347. DW_AT_lo_user = $2000;
  348. { Implementation-defined range end. }
  349. DW_AT_hi_user = $3ff0;
  350. type
  351. { Source language names and codes. }
  352. tdwarf_source_language = (DW_LANG_C89 := $0001,DW_LANG_C := $0002,DW_LANG_Ada83 := $0003,
  353. DW_LANG_C_plus_plus := $0004,DW_LANG_Cobol74 := $0005,
  354. DW_LANG_Cobol85 := $0006,DW_LANG_Fortran77 := $0007,
  355. DW_LANG_Fortran90 := $0008,DW_LANG_Pascal83 := $0009,
  356. DW_LANG_Modula2 := $000a,DW_LANG_Java := $000b,
  357. { DWARF 3. }
  358. DW_LANG_C99 := $000c,DW_LANG_Ada95 := $000d,
  359. DW_LANG_Fortran95 := $000e,
  360. { Objective-C }
  361. DW_LANG_ObjC := $10,
  362. { MIPS. }
  363. DW_LANG_Mips_Assembler := $8001,
  364. { UPC. }
  365. DW_LANG_Upc := $8765
  366. );
  367. const
  368. { Implementation-defined range start. }
  369. DW_LANG_lo_user = $8000;
  370. { Implementation-defined range start. }
  371. DW_LANG_hi_user = $ffff;
  372. type
  373. { Names and codes for macro information. }
  374. tdwarf_macinfo_record_type = (DW_MACINFO_define := 1,DW_MACINFO_undef := 2,
  375. DW_MACINFO_start_file := 3,DW_MACINFO_end_file := 4,
  376. DW_MACINFO_vendor_ext := 255);
  377. type
  378. { Type encodings. }
  379. Tdwarf_type = (DW_ATE_void := $0,DW_ATE_address := $1,
  380. DW_ATE_boolean := $2,DW_ATE_complex_float := $3,
  381. DW_ATE_float := $4,DW_ATE_signed := $5,
  382. DW_ATE_signed_char := $6,DW_ATE_unsigned := $7,
  383. DW_ATE_unsigned_char := $8,DW_ATE_imaginary_float := $9,
  384. { HP extensions. }
  385. DW_ATE_HP_float80 := $80,DW_ATE_HP_complex_float80 := $81,
  386. DW_ATE_HP_float128 := $82,DW_ATE_HP_complex_float128 := $83,
  387. DW_ATE_HP_floathpintel := $84,DW_ATE_HP_imaginary_float80 := $85,
  388. DW_ATE_HP_imaginary_float128 := $86
  389. );
  390. const
  391. DW_ATE_lo_user = $80;
  392. DW_ATE_hi_user = $ff;
  393. type
  394. Tdwarf_array_dim_ordering = (DW_ORD_row_major := 0,DW_ORD_col_major := 1
  395. );
  396. { Access attribute. }
  397. Tdwarf_access_attribute = (DW_ACCESS_public := 1,DW_ACCESS_protected := 2,
  398. DW_ACCESS_private := 3);
  399. { Visibility. }
  400. Tdwarf_visibility_attribute = (DW_VIS_local := 1,DW_VIS_exported := 2,
  401. DW_VIS_qualified := 3);
  402. { Virtuality. }
  403. Tdwarf_virtuality_attribute = (DW_VIRTUALITY_none := 0,DW_VIRTUALITY_virtual := 1,
  404. DW_VIRTUALITY_pure_virtual := 2);
  405. { Case sensitivity. }
  406. Tdwarf_id_case = (DW_ID_case_sensitive := 0,DW_ID_up_case := 1,
  407. DW_ID_down_case := 2,DW_ID_case_insensitive := 3
  408. );
  409. { Calling convention. }
  410. Tdwarf_calling_convention = (DW_CC_normal := $1,DW_CC_program := $2,
  411. DW_CC_nocall := $3,DW_CC_GNU_renesas_sh := $40, DW_CC_GNU_borland_fastcall_i386 := $41
  412. );
  413. {$notes off}
  414. { Location atom names and codes. }
  415. Tdwarf_location_atom = (DW_OP_addr := $03,DW_OP_deref := $06,DW_OP_const1u := $08,
  416. DW_OP_const1s := $09,DW_OP_const2u := $0a,
  417. DW_OP_const2s := $0b,DW_OP_const4u := $0c,
  418. DW_OP_const4s := $0d,DW_OP_const8u := $0e,
  419. DW_OP_const8s := $0f,DW_OP_constu := $10,
  420. DW_OP_consts := $11,DW_OP_dup := $12,DW_OP_drop := $13,
  421. DW_OP_over := $14,DW_OP_pick := $15,DW_OP_swap := $16,
  422. DW_OP_rot := $17,DW_OP_xderef := $18,DW_OP_abs := $19,
  423. DW_OP_and := $1a,DW_OP_div := $1b,DW_OP_minus := $1c,
  424. DW_OP_mod := $1d,DW_OP_mul := $1e,DW_OP_neg := $1f,
  425. DW_OP_not := $20,DW_OP_or := $21,DW_OP_plus := $22,
  426. DW_OP_plus_uconst := $23,DW_OP_shl := $24,
  427. DW_OP_shr := $25,DW_OP_shra := $26,DW_OP_xor := $27,
  428. DW_OP_bra := $28,DW_OP_eq := $29,DW_OP_ge := $2a,
  429. DW_OP_gt := $2b,DW_OP_le := $2c,DW_OP_lt := $2d,
  430. DW_OP_ne := $2e,DW_OP_skip := $2f,DW_OP_lit0 := $30,
  431. DW_OP_lit1 := $31,DW_OP_lit2 := $32,DW_OP_lit3 := $33,
  432. DW_OP_lit4 := $34,DW_OP_lit5 := $35,DW_OP_lit6 := $36,
  433. DW_OP_lit7 := $37,DW_OP_lit8 := $38,DW_OP_lit9 := $39,
  434. DW_OP_lit10 := $3a,DW_OP_lit11 := $3b,
  435. DW_OP_lit12 := $3c,DW_OP_lit13 := $3d,
  436. DW_OP_lit14 := $3e,DW_OP_lit15 := $3f,
  437. DW_OP_lit16 := $40,DW_OP_lit17 := $41,
  438. DW_OP_lit18 := $42,DW_OP_lit19 := $43,
  439. DW_OP_lit20 := $44,DW_OP_lit21 := $45,
  440. DW_OP_lit22 := $46,DW_OP_lit23 := $47,
  441. DW_OP_lit24 := $48,DW_OP_lit25 := $49,
  442. DW_OP_lit26 := $4a,DW_OP_lit27 := $4b,
  443. DW_OP_lit28 := $4c,DW_OP_lit29 := $4d,
  444. DW_OP_lit30 := $4e,DW_OP_lit31 := $4f,
  445. DW_OP_reg0 := $50,DW_OP_reg1 := $51,DW_OP_reg2 := $52,
  446. DW_OP_reg3 := $53,DW_OP_reg4 := $54,DW_OP_reg5 := $55,
  447. DW_OP_reg6 := $56,DW_OP_reg7 := $57,DW_OP_reg8 := $58,
  448. DW_OP_reg9 := $59,DW_OP_reg10 := $5a,DW_OP_reg11 := $5b,
  449. DW_OP_reg12 := $5c,DW_OP_reg13 := $5d,
  450. DW_OP_reg14 := $5e,DW_OP_reg15 := $5f,
  451. DW_OP_reg16 := $60,DW_OP_reg17 := $61,
  452. DW_OP_reg18 := $62,DW_OP_reg19 := $63,
  453. DW_OP_reg20 := $64,DW_OP_reg21 := $65,
  454. DW_OP_reg22 := $66,DW_OP_reg23 := $67,
  455. DW_OP_reg24 := $68,DW_OP_reg25 := $69,
  456. DW_OP_reg26 := $6a,DW_OP_reg27 := $6b,
  457. DW_OP_reg28 := $6c,DW_OP_reg29 := $6d,
  458. DW_OP_reg30 := $6e,DW_OP_reg31 := $6f,
  459. DW_OP_breg0 := $70,DW_OP_breg1 := $71,
  460. DW_OP_breg2 := $72,DW_OP_breg3 := $73,
  461. DW_OP_breg4 := $74,DW_OP_breg5 := $75,
  462. DW_OP_breg6 := $76,DW_OP_breg7 := $77,
  463. DW_OP_breg8 := $78,DW_OP_breg9 := $79,
  464. DW_OP_breg10 := $7a,DW_OP_breg11 := $7b,
  465. DW_OP_breg12 := $7c,DW_OP_breg13 := $7d,
  466. DW_OP_breg14 := $7e,DW_OP_breg15 := $7f,
  467. DW_OP_breg16 := $80,DW_OP_breg17 := $81,
  468. DW_OP_breg18 := $82,DW_OP_breg19 := $83,
  469. DW_OP_breg20 := $84,DW_OP_breg21 := $85,
  470. DW_OP_breg22 := $86,DW_OP_breg23 := $87,
  471. DW_OP_breg24 := $88,DW_OP_breg25 := $89,
  472. DW_OP_breg26 := $8a,DW_OP_breg27 := $8b,
  473. DW_OP_breg28 := $8c,DW_OP_breg29 := $8d,
  474. DW_OP_breg30 := $8e,DW_OP_breg31 := $8f,
  475. DW_OP_regx := $90,DW_OP_fbreg := $91,DW_OP_bregx := $92,
  476. DW_OP_piece := $93,DW_OP_deref_size := $94,
  477. DW_OP_xderef_size := $95,DW_OP_nop := $96,
  478. { DWARF 3 extensions. }
  479. DW_OP_push_object_address := $97,DW_OP_call2 := $98,
  480. DW_OP_call4 := $99,DW_OP_call_ref := $9a,
  481. { GNU extensions. }
  482. DW_OP_GNU_push_tls_address := $e0,
  483. { HP extensions. }
  484. DW_OP_HP_unknown := $e0,
  485. DW_OP_HP_is_value := $e1,DW_OP_HP_fltconst4 := $e2,
  486. DW_OP_HP_fltconst8 := $e3,DW_OP_HP_mod_range := $e4,
  487. DW_OP_HP_unmod_range := $e5,DW_OP_HP_tls := $e6
  488. );
  489. {$notes on}
  490. const
  491. { Implementation-defined range start. }
  492. DW_OP_lo_user = $e0;
  493. { Implementation-defined range end. }
  494. DW_OP_hi_user = $ff;
  495. const
  496. DW_LNS_extended_op = $00;
  497. { next copied from cfidwarf, need to go to something shared }
  498. DW_LNS_copy = $01;
  499. DW_LNS_advance_pc = $02;
  500. DW_LNS_advance_line = $03;
  501. DW_LNS_set_file = $04;
  502. DW_LNS_set_column = $05;
  503. DW_LNS_negate_stmt = $06;
  504. DW_LNS_set_basic_block = $07;
  505. DW_LNS_const_add_pc = $08;
  506. DW_LNS_fixed_advance_pc = $09;
  507. DW_LNS_set_prologue_end = $0a;
  508. DW_LNS_set_epilogue_begin = $0b;
  509. DW_LNS_set_isa = $0c;
  510. DW_LNE_end_sequence = $01;
  511. DW_LNE_set_address = $02;
  512. DW_LNE_define_file = $03;
  513. DW_LNE_lo_user = $80;
  514. DW_LNE_hi_user = $ff;
  515. type
  516. { TDirIndexItem }
  517. TDirIndexItem = class(TFPHashObject)
  518. private
  519. FFiles: TFPHashObjectList;
  520. public
  521. IndexNr : Integer;
  522. constructor Create(AList:TFPHashObjectList;const AName: String; AIndex: Integer);
  523. destructor Destroy;override;
  524. property Files: TFPHashObjectList read FFiles;
  525. end;
  526. { TFileIndexItem }
  527. TFileIndexItem = class(TFPHashObject)
  528. private
  529. FDirIndex: Integer;
  530. public
  531. IndexNr : Integer;
  532. constructor Create(AList:TFPHashObjectList;const AName: String; ADirIndex, AIndex: Integer);
  533. property DirIndex: Integer read FDirIndex;
  534. end;
  535. {****************************************************************************
  536. procs
  537. ****************************************************************************}
  538. function DirListSortCompare(AItem1, AItem2: Pointer): Integer;
  539. begin
  540. Result := TDirIndexItem(AItem1).IndexNr - TDirIndexItem(AItem2).IndexNr;
  541. end;
  542. function FileListSortCompare(AItem1, AItem2: Pointer): Integer;
  543. begin
  544. Result := TFileIndexItem(AItem1).IndexNr - TFileIndexItem(AItem2).IndexNr;
  545. end;
  546. function AllocateNewAiSearchItem: pAbbrevSearchTreeItem;
  547. begin
  548. new(result);
  549. FillChar(result^,sizeof(result^),#0);
  550. end;
  551. procedure FreeSearchItem(SI: pAbbrevSearchTreeItem);
  552. begin
  553. if assigned(SI^.NextItem) then
  554. FreeSearchItem(SI^.NextItem);
  555. if assigned(SI^.SearchItem) then
  556. FreeSearchItem(SI^.SearchItem);
  557. Dispose(SI);
  558. end;
  559. {****************************************************************************
  560. TDirIndexItem
  561. ****************************************************************************}
  562. constructor TDirIndexItem.Create(AList:TFPHashObjectList;const AName: String; AIndex: Integer);
  563. begin
  564. inherited Create(AList,AName);
  565. FFiles := TFPHashObjectList.Create;
  566. IndexNr := AIndex;
  567. end;
  568. destructor TDirIndexItem.Destroy;
  569. begin
  570. FFiles.Free;
  571. inherited Destroy;
  572. end;
  573. {****************************************************************************
  574. TFileIndexItem
  575. ****************************************************************************}
  576. constructor TFileIndexItem.Create(AList:TFPHashObjectList;const AName: String; ADirIndex, AIndex: Integer);
  577. begin
  578. inherited Create(AList,Aname);
  579. FDirIndex := ADirIndex;
  580. IndexNr := AIndex;
  581. end;
  582. {****************************************************************************
  583. TDebugInfoDwarf
  584. ****************************************************************************}
  585. procedure TDebugInfoDwarf.StartAbbrevSearch;
  586. begin
  587. CurrentSearchTreeItem:=AbbrevSearchTree;
  588. end;
  589. procedure TDebugInfoDwarf.WriteSearchItemToAbbrevSection(SI: pAbbrevSearchTreeItem);
  590. begin
  591. if SI^.bit8 then
  592. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_const.Create_8bit(SI^.value))
  593. else
  594. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_const.Create_uleb128bit(SI^.value));
  595. end;
  596. procedure TDebugInfoDwarf.StartAbbrevSectionFromSearchtree;
  597. procedure AddCurrentAndPriorItemsToAbrev(SI: pAbbrevSearchTreeItem);
  598. begin
  599. if assigned(SI^.PriorItem) then
  600. AddCurrentAndPriorItemsToAbrev(SI^.PriorItem);
  601. WriteSearchItemToAbbrevSection(SI);
  602. end;
  603. begin
  604. NewAbbrev:=true;
  605. inc(currabbrevnumber);
  606. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_comment.Create(strpnew('Abbrev '+tostr(currabbrevnumber))));
  607. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_const.create_uleb128bit(currabbrevnumber));
  608. if CurrentSearchTreeItem<>AbbrevSearchTree then
  609. AddCurrentAndPriorItemsToAbrev(CurrentSearchTreeItem);
  610. end;
  611. function TDebugInfoDwarf.FinishAbbrevSearch: longint;
  612. procedure FinalizeAbbrevSection;
  613. begin
  614. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_const.create_8bit(0));
  615. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_const.create_8bit(0));
  616. CurrentSearchTreeItem^.Abbrev:=currabbrevnumber;
  617. NewAbbrev := false;
  618. end;
  619. begin
  620. if NewAbbrev then
  621. FinalizeAbbrevSection;
  622. result := CurrentSearchTreeItem^.Abbrev;
  623. if result=0 then
  624. begin
  625. // In this case the abbrev-section equals an existing longer abbrev section.
  626. // So a new abbrev-section has to be made which ends on the current
  627. // searchtree item
  628. StartAbbrevSectionFromSearchtree;
  629. FinalizeAbbrevSection;
  630. result := CurrentSearchTreeItem^.Abbrev;
  631. end;
  632. end;
  633. procedure TDebugInfoDwarf.AddConstToAbbrev(Value: QWord; bit8:boolean);
  634. procedure AddCurrentItemToAbbrev;
  635. begin
  636. CurrentSearchTreeItem^.value:=value;
  637. CurrentSearchTreeItem^.bit8:=bit8;
  638. WriteSearchItemToAbbrevSection(CurrentSearchTreeItem);
  639. end;
  640. var si: pAbbrevSearchTreeItem;
  641. begin
  642. // Instead of adding this value directly to the ai-tree, search if an
  643. // abbrev section with the same values already exist, and use the existing
  644. // one or create one.
  645. if NewAbbrev then
  646. begin
  647. // The current abbrev-section is new, so add the value to the abbrev-section
  648. // and add it to the search-list.
  649. CurrentSearchTreeItem^.NextItem:=AllocateNewAiSearchItem;
  650. CurrentSearchTreeItem^.NextItem^.PriorItem:=CurrentSearchTreeItem;
  651. CurrentSearchTreeItem := CurrentSearchTreeItem^.NextItem;
  652. AddCurrentItemToAbbrev;
  653. end
  654. else
  655. begin
  656. // Search for the value which is added in the next sections of the
  657. // searchtree for a match
  658. si := CurrentSearchTreeItem^.NextItem;
  659. while assigned(si) do
  660. begin
  661. if (SI^.value=Value) and (si^.bit8=bit8) then
  662. begin
  663. // If a match is found, set the current searchtree item to the next item
  664. CurrentSearchTreeItem:=SI;
  665. Exit;
  666. end
  667. else if si^.SearchItem=nil then
  668. begin
  669. // If no match is found, add a new item to the searchtree and write
  670. // a new abbrev-section.
  671. StartAbbrevSectionFromSearchtree;
  672. si^.SearchItem:=AllocateNewAiSearchItem;
  673. if currentsearchtreeitem<>AbbrevSearchTree then
  674. si^.SearchItem^.PriorItem:=CurrentSearchTreeItem;
  675. CurrentSearchTreeItem := si^.SearchItem;
  676. AddCurrentItemToAbbrev;
  677. Exit;
  678. end;
  679. Si := SI^.SearchItem;
  680. end;
  681. // The abbrev section we are looking for is longer than the one
  682. // which is already in the search-tree. So expand the searchtree with
  683. // the new value and write a new abbrev section
  684. StartAbbrevSectionFromSearchtree;
  685. CurrentSearchTreeItem^.NextItem:=AllocateNewAiSearchItem;
  686. if currentsearchtreeitem^.PriorItem<>AbbrevSearchTree then
  687. CurrentSearchTreeItem^.NextItem^.PriorItem:=CurrentSearchTreeItem;
  688. CurrentSearchTreeItem := CurrentSearchTreeItem^.NextItem;
  689. AddCurrentItemToAbbrev;
  690. end;
  691. end;
  692. function TDebugInfoDwarf.relative_dwarf_path(const s:tcmdstr):tcmdstr;
  693. begin
  694. { Make a clean path for gdb. Remove trailing / and ./ prefixes and
  695. use always a / }
  696. result:=BsToSlash(ExcludeTrailingPathDelimiter(ExtractRelativePath(GetCurrentDir,FixFileName(ExpandFileName(s)))));
  697. end;
  698. procedure TDebugInfoDwarf.set_use_64bit_headers(state: boolean);
  699. begin
  700. _use_64bit_headers:=state;
  701. if not(state) then
  702. begin
  703. if (target_info.system in systems_windows+systems_wince) then
  704. offsetabstype:=aitconst_secrel32_symbol
  705. else
  706. offsetabstype:=aitconst_32bit;
  707. if (target_info.system in systems_darwin) then
  708. offsetreltype:=aitconst_darwin_dwarf_delta32
  709. else
  710. offsetreltype:=aitconst_32bit;
  711. end
  712. else
  713. begin
  714. if (target_info.system in systems_darwin) then
  715. offsetreltype:=aitconst_darwin_dwarf_delta64
  716. else
  717. offsetreltype:=aitconst_64bit;
  718. offsetabstype:=aitconst_64bit;
  719. end;
  720. end;
  721. procedure TDebugInfoDwarf.set_def_dwarf_labs(def:tdef);
  722. begin
  723. { Keep track of used dwarf entries, this info is only useful for dwarf entries
  724. referenced by the symbols. Definitions will always include all
  725. required stabs }
  726. if def.dbg_state=dbg_state_unused then
  727. def.dbg_state:=dbg_state_used;
  728. { Need a new label? }
  729. if not assigned(def.dwarf_lab) then
  730. begin
  731. if not(tf_dwarf_only_local_labels in target_info.flags) then
  732. begin
  733. if (ds_dwarf_dbg_info_written in def.defstates) then
  734. begin
  735. if not assigned(def.typesym) then
  736. internalerror(200610011);
  737. def.dwarf_lab:=current_asmdata.RefAsmSymbol(make_mangledname('DBG',def.owner,symname(def.typesym)));
  738. def.dwarf_ref_lab:=current_asmdata.RefAsmSymbol(make_mangledname('DBGREF',def.owner,symname(def.typesym)));
  739. if is_class_or_interface_or_dispinterface(def) then
  740. tobjectdef(def).dwarf_struct_lab:=current_asmdata.RefAsmSymbol(make_mangledname('DBG2',def.owner,symname(def.typesym)));
  741. def.dbg_state:=dbg_state_written;
  742. end
  743. else
  744. begin
  745. { Create an exported DBG symbol if we are generating a def defined in the
  746. globalsymtable of the current unit }
  747. if assigned(def.typesym) and
  748. (def.owner.symtabletype=globalsymtable) and
  749. (def.owner.iscurrentunit) then
  750. begin
  751. def.dwarf_lab:=current_asmdata.DefineAsmSymbol(make_mangledname('DBG',def.owner,symname(def.typesym)),AB_GLOBAL,AT_DATA);
  752. def.dwarf_ref_lab:=current_asmdata.DefineAsmSymbol(make_mangledname('DBGREF',def.owner,symname(def.typesym)),AB_GLOBAL,AT_DATA);
  753. if is_class_or_interface_or_dispinterface(def) then
  754. tobjectdef(def).dwarf_struct_lab:=current_asmdata.DefineAsmSymbol(make_mangledname('DBG2',def.owner,symname(def.typesym)),AB_GLOBAL,AT_DATA);
  755. include(def.defstates,ds_dwarf_dbg_info_written);
  756. end
  757. else
  758. begin
  759. { The pointer typecast is needed to prevent a problem with range checking
  760. on when the typecast is changed to 'as' }
  761. current_asmdata.getdatalabel(TAsmLabel(pointer(def.dwarf_lab)));
  762. current_asmdata.getdatalabel(TAsmLabel(pointer(def.dwarf_ref_lab)));
  763. if is_class_or_interface_or_dispinterface_or_objc(def) then
  764. current_asmdata.getdatalabel(TAsmLabel(pointer(tobjectdef(def).dwarf_struct_lab)));
  765. end;
  766. end;
  767. end
  768. else
  769. begin
  770. { The pointer typecast is needed to prevent a problem with range checking
  771. on when the typecast is changed to 'as' }
  772. { addrlabel instead of datalabel because it must be a local one }
  773. current_asmdata.getaddrlabel(TAsmLabel(pointer(def.dwarf_lab)));
  774. current_asmdata.getaddrlabel(TAsmLabel(pointer(def.dwarf_ref_lab)));
  775. if is_class_or_interface_or_dispinterface_or_objc(def) then
  776. current_asmdata.getaddrlabel(TAsmLabel(pointer(tobjectdef(def).dwarf_struct_lab)));
  777. end;
  778. if def.dbg_state=dbg_state_used then
  779. deftowritelist.Add(def);
  780. defnumberlist.Add(def);
  781. end;
  782. end;
  783. function TDebugInfoDwarf.def_dwarf_lab(def: tdef): tasmsymbol;
  784. begin
  785. set_def_dwarf_labs(def);
  786. result:=def.dwarf_lab;
  787. end;
  788. function TDebugInfoDwarf.def_dwarf_class_struct_lab(def: tobjectdef): tasmsymbol;
  789. begin
  790. set_def_dwarf_labs(def);
  791. result:=def.dwarf_struct_lab;
  792. end;
  793. function TDebugInfoDwarf.def_dwarf_ref_lab(def: tdef): tasmsymbol;
  794. begin
  795. set_def_dwarf_labs(def);
  796. result:=def.dwarf_ref_lab;
  797. end;
  798. constructor TDebugInfoDwarf.Create;
  799. begin
  800. inherited Create;
  801. { 64bit headers are only supported for dwarf3 and up, so default off }
  802. use_64bit_headers := false;
  803. { we haven't generated any lineinfo yet }
  804. generated_lineinfo := false;
  805. dirlist := TFPHashObjectList.Create;
  806. { add current dir as first item (index=0) }
  807. TDirIndexItem.Create(dirlist,'.', 0);
  808. asmline := TAsmList.create;
  809. loclist := tdynamicarray.Create(4096);
  810. AbbrevSearchTree:=AllocateNewAiSearchItem;
  811. end;
  812. destructor TDebugInfoDwarf.Destroy;
  813. begin
  814. dirlist.Free;
  815. if assigned(AbbrevSearchTree) then
  816. FreeSearchItem(AbbrevSearchTree);
  817. dirlist := nil;
  818. asmline.free;
  819. asmline:=nil;
  820. loclist.Free;
  821. loclist := nil;
  822. inherited Destroy;
  823. end;
  824. procedure TDebugInfoDwarf.enum_membersyms_callback(p:TObject; arg: pointer);
  825. begin
  826. case tsym(p).typ of
  827. fieldvarsym:
  828. appendsym_fieldvar(TAsmList(arg),tfieldvarsym(p));
  829. propertysym:
  830. appendsym_property(TAsmList(arg),tpropertysym(p));
  831. end;
  832. end;
  833. function TDebugInfoDwarf.get_file_index(afile: tinputfile): Integer;
  834. var
  835. dirname: String;
  836. diritem: TDirIndexItem;
  837. diridx: Integer;
  838. fileitem: TFileIndexItem;
  839. begin
  840. if afile.path^ = '' then
  841. dirname := '.'
  842. else
  843. begin
  844. { add the canonical form here already to avoid problems with }
  845. { paths such as './' etc }
  846. dirname := relative_dwarf_path(afile.path^);
  847. if dirname = '' then
  848. dirname := '.';
  849. end;
  850. diritem := TDirIndexItem(dirlist.Find(dirname));
  851. if diritem = nil then
  852. diritem := TDirIndexItem.Create(dirlist,dirname, dirlist.Count);
  853. diridx := diritem.IndexNr;
  854. fileitem := TFileIndexItem(diritem.files.Find(afile.name^));
  855. if fileitem = nil then
  856. begin
  857. Inc(filesequence);
  858. fileitem := TFileIndexItem.Create(diritem.files,afile.name^, diridx, filesequence);
  859. end;
  860. Result := fileitem.IndexNr;
  861. end;
  862. procedure TDebugInfoDwarf.append_attribute(attr: tdwarf_attribute; form: tdwarf_form; const values: array of const);
  863. begin
  864. if length(values)<>1 then
  865. internalerror(2009040402);
  866. append_attribute(attr,form,values[0]);
  867. end;
  868. procedure TDebugInfoDwarf.append_attribute(attr: tdwarf_attribute; form: tdwarf_form; const value: tvarrec);
  869. begin
  870. { attribute }
  871. AddConstToAbbrev(cardinal(attr));
  872. { form }
  873. AddConstToAbbrev(cardinal(form));
  874. { info itself }
  875. case form of
  876. DW_FORM_string:
  877. case value.VType of
  878. vtChar:
  879. current_asmdata.asmlists[al_dwarf_info].concat(tai_string.create(value.VChar));
  880. vtString:
  881. current_asmdata.asmlists[al_dwarf_info].concat(tai_string.create(value.VString^));
  882. vtAnsistring:
  883. current_asmdata.asmlists[al_dwarf_info].concat(tai_string.create(Ansistring(value.VAnsiString)));
  884. else
  885. internalerror(200601264);
  886. end;
  887. DW_FORM_flag:
  888. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(byte(value.VBoolean)));
  889. DW_FORM_data1:
  890. case value.VType of
  891. vtInteger:
  892. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(value.VInteger));
  893. vtInt64:
  894. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(value.VInt64^));
  895. vtQWord:
  896. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(value.VQWord^));
  897. else
  898. internalerror(200602143);
  899. end;
  900. DW_FORM_data2:
  901. case value.VType of
  902. vtInteger:
  903. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(value.VInteger));
  904. vtInt64:
  905. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(value.VInt64^));
  906. vtQWord:
  907. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(value.VQWord^));
  908. else
  909. internalerror(200602144);
  910. end;
  911. DW_FORM_data4:
  912. case value.VType of
  913. vtInteger:
  914. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_32bit(value.VInteger));
  915. vtInt64:
  916. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_32bit(value.VInt64^));
  917. vtQWord:
  918. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_32bit(value.VQWord^));
  919. else
  920. internalerror(200602145);
  921. end;
  922. DW_FORM_data8:
  923. case value.VType of
  924. vtInteger:
  925. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_64bit(value.VInteger));
  926. vtInt64:
  927. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_64bit(value.VInt64^));
  928. vtQWord:
  929. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_64bit(value.VQWord^));
  930. else
  931. internalerror(200602146);
  932. end;
  933. DW_FORM_sdata:
  934. case value.VType of
  935. vtInteger:
  936. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_sleb128bit(value.VInteger));
  937. vtInt64:
  938. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_sleb128bit(value.VInt64^));
  939. vtQWord:
  940. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_sleb128bit(value.VQWord^));
  941. else
  942. internalerror(200601285);
  943. end;
  944. DW_FORM_udata:
  945. case value.VType of
  946. vtInteger:
  947. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(value.VInteger));
  948. vtInt64:
  949. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(value.VInt64^));
  950. vtQWord:
  951. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(value.VQWord^));
  952. else
  953. internalerror(200601284);
  954. end;
  955. { block gets only the size, the rest is appended manually by the caller }
  956. DW_FORM_block1:
  957. case value.VType of
  958. vtInteger:
  959. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(value.VInteger));
  960. vtInt64:
  961. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(value.VInt64^));
  962. vtQWord:
  963. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(value.VQWord^));
  964. else
  965. internalerror(200602141);
  966. end;
  967. else
  968. internalerror(200601263);
  969. end;
  970. end;
  971. { writing the data through a few simply procedures allows to create easily extra information
  972. for debugging of debug info }
  973. procedure TDebugInfoDwarf.append_entry(tag : tdwarf_tag;has_children : boolean;data : array of const);
  974. var
  975. i : longint;
  976. begin
  977. { abbrev number }
  978. // Store the ai with the reference to the abbrev number and start a search
  979. // to find the right abbrev-section. (Or create one)
  980. dwarf_info_abbref_tai := tai_const.create_uleb128bit(currabbrevnumber);
  981. current_asmdata.asmlists[al_dwarf_info].concat(dwarf_info_abbref_tai);
  982. StartAbbrevSearch;
  983. { tag }
  984. AddConstToAbbrev(ord(tag));
  985. { children? }
  986. AddConstToAbbrev(ord(has_children),true);
  987. i:=0;
  988. while i<=high(data) do
  989. begin
  990. if (i+2 > high(data)) then
  991. internalerror(2009040401);
  992. if data[i].VType<>vtInteger then
  993. internalerror(200601261);
  994. if data[i+1].VType<>vtInteger then
  995. internalerror(200601261);
  996. append_attribute(tdwarf_attribute(data[i].VInteger),tdwarf_form(data[i+1].VInteger),data[i+2]);
  997. inc(i,3);
  998. end;
  999. end;
  1000. procedure TDebugInfoDwarf.append_block1(attr: tdwarf_attribute; size: aint);
  1001. begin
  1002. AddConstToAbbrev(ord(attr));
  1003. AddConstToAbbrev(ord(DW_FORM_block1));
  1004. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(size));
  1005. end;
  1006. procedure TDebugInfoDwarf.append_labelentry(attr : tdwarf_attribute;sym : tasmsymbol);
  1007. begin
  1008. AddConstToAbbrev(ord(attr));
  1009. AddConstToAbbrev(ord(DW_FORM_addr));
  1010. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_sym(sym));
  1011. end;
  1012. procedure TDebugInfoDwarf.append_labelentry_addr_ref(attr : tdwarf_attribute;sym : tasmsymbol);
  1013. begin
  1014. AddConstToAbbrev(ord(DW_FORM_ref_addr));
  1015. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_sym(sym))
  1016. end;
  1017. procedure TDebugInfoDwarf.append_labelentry_ref(attr : tdwarf_attribute;sym : tasmsymbol);
  1018. begin
  1019. AddConstToAbbrev(ord(attr));
  1020. if not(tf_dwarf_only_local_labels in target_info.flags) then
  1021. append_labelentry_addr_ref(attr, sym)
  1022. else
  1023. begin
  1024. AddConstToAbbrev(ord(DW_FORM_ref4));
  1025. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_rel_sym(offsetreltype,current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_info0'),sym));
  1026. end;
  1027. end;
  1028. procedure TDebugInfoDwarf.append_labelentry_dataptr_common(attr : tdwarf_attribute);
  1029. begin
  1030. AddConstToAbbrev(ord(attr));
  1031. if use_64bit_headers then
  1032. AddConstToAbbrev(ord(DW_FORM_data8))
  1033. else
  1034. AddConstToAbbrev(ord(DW_FORM_data4));
  1035. end;
  1036. procedure TDebugInfoDwarf.append_labelentry_dataptr_abs(attr : tdwarf_attribute;sym : tasmsymbol);
  1037. begin
  1038. {
  1039. used for writing dwarf lineptr, loclistptr, macptr and rangelistptr classes as FORM_dataN
  1040. The size of these depend on the header format
  1041. Must be relative to another symbol on tf_dwarf_relative_addresses
  1042. targets
  1043. }
  1044. if (tf_dwarf_relative_addresses in target_info.flags) then
  1045. { use append_labelentry_dataptr_rel instead }
  1046. internalerror(2007020210);
  1047. append_labelentry_dataptr_common(attr);
  1048. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_type_sym(offsetabstype,sym))
  1049. end;
  1050. procedure TDebugInfoDwarf.append_labelentry_dataptr_rel(attr : tdwarf_attribute;sym,endsym : tasmsymbol);
  1051. begin
  1052. {
  1053. used for writing dwarf lineptr, loclistptr, macptr and rangelistptr classes as FORM_dataN
  1054. The size of these depend on the header format
  1055. Must be relative to another symbol on tf_dwarf_relative_addresses
  1056. targets
  1057. }
  1058. append_labelentry_dataptr_common(attr);
  1059. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_rel_sym(offsetreltype,sym,endsym));
  1060. end;
  1061. procedure TDebugInfoDwarf.finish_entry;
  1062. begin
  1063. dwarf_info_abbref_tai.value:=FinishAbbrevSearch;
  1064. end;
  1065. procedure TDebugInfoDwarf.finish_children;
  1066. begin
  1067. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(0));
  1068. end;
  1069. procedure TDebugInfoDwarf.appenddef_ord(list:TAsmList;def:torddef);
  1070. var
  1071. basedef : tdef;
  1072. sign : tdwarf_type;
  1073. signform : tdwarf_form;
  1074. fullbytesize : byte;
  1075. begin
  1076. case def.ordtype of
  1077. s8bit,
  1078. s16bit,
  1079. s32bit,
  1080. u8bit,
  1081. u16bit,
  1082. u32bit :
  1083. begin
  1084. { generate proper signed/unsigned info for types like 0..3 }
  1085. { these are s8bit, but should be identified as unsigned }
  1086. { because otherwise they are interpreted wrongly when used }
  1087. { in a bitpacked record }
  1088. if (def.low<0) then
  1089. begin
  1090. sign:=DW_ATE_signed;
  1091. signform:=DW_FORM_sdata
  1092. end
  1093. else
  1094. begin
  1095. sign:=DW_ATE_unsigned;
  1096. signform:=DW_FORM_udata
  1097. end;
  1098. fullbytesize:=def.size;
  1099. case fullbytesize of
  1100. 1:
  1101. if (sign=DW_ATE_signed) then
  1102. basedef:=s8inttype
  1103. else
  1104. basedef:=u8inttype;
  1105. 2:
  1106. if (sign=DW_ATE_signed) then
  1107. basedef:=s16inttype
  1108. else
  1109. basedef:=u16inttype;
  1110. 4:
  1111. if (sign=DW_ATE_signed) then
  1112. basedef:=s32inttype
  1113. else
  1114. basedef:=u32inttype;
  1115. else
  1116. internalerror(2008032201);
  1117. end;
  1118. if (def.low=torddef(basedef).low) and
  1119. (def.high=torddef(basedef).high) then
  1120. { base type such as byte/shortint/word/... }
  1121. if assigned(def.typesym) then
  1122. append_entry(DW_TAG_base_type,false,[
  1123. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1124. DW_AT_encoding,DW_FORM_data1,sign,
  1125. DW_AT_byte_size,DW_FORM_data1,fullbytesize])
  1126. else
  1127. append_entry(DW_TAG_base_type,false,[
  1128. DW_AT_encoding,DW_FORM_data1,sign,
  1129. DW_AT_byte_size,DW_FORM_data1,fullbytesize])
  1130. else
  1131. begin
  1132. { subrange type }
  1133. { note: don't do this 64 bit int types, they appear }
  1134. { to be always clipped to s32bit for some reason }
  1135. if assigned(def.typesym) then
  1136. append_entry(DW_TAG_subrange_type,false,[
  1137. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1138. DW_AT_lower_bound,signform,int64(def.low),
  1139. DW_AT_upper_bound,signform,int64(def.high)
  1140. ])
  1141. else
  1142. append_entry(DW_TAG_subrange_type,false,[
  1143. DW_AT_lower_bound,signform,int64(def.low),
  1144. DW_AT_upper_bound,signform,int64(def.high)
  1145. ]);
  1146. append_labelentry_ref(DW_AT_type,def_dwarf_lab(basedef));
  1147. end;
  1148. finish_entry;
  1149. end;
  1150. uvoid :
  1151. begin
  1152. { gdb 6.4 doesn't support DW_TAG_unspecified_type so we
  1153. replace it with a unsigned type with size 0 (FK)
  1154. }
  1155. append_entry(DW_TAG_base_type,false,[
  1156. DW_AT_name,DW_FORM_string,'Void'#0,
  1157. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned,
  1158. DW_AT_byte_size,DW_FORM_data1,0
  1159. ]);
  1160. finish_entry;
  1161. end;
  1162. uchar :
  1163. begin
  1164. append_entry(DW_TAG_base_type,false,[
  1165. DW_AT_name,DW_FORM_string,'Char'#0,
  1166. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned_char,
  1167. DW_AT_byte_size,DW_FORM_data1,1
  1168. ]);
  1169. finish_entry;
  1170. end;
  1171. uwidechar :
  1172. begin
  1173. append_entry(DW_TAG_base_type,false,[
  1174. DW_AT_name,DW_FORM_string,'WideChar'#0,
  1175. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned_char,
  1176. DW_AT_byte_size,DW_FORM_data1,2
  1177. ]);
  1178. finish_entry;
  1179. end;
  1180. pasbool,
  1181. bool8bit :
  1182. begin
  1183. append_entry(DW_TAG_base_type,false,[
  1184. DW_AT_name,DW_FORM_string,'Boolean'#0,
  1185. DW_AT_encoding,DW_FORM_data1,DW_ATE_boolean,
  1186. DW_AT_byte_size,DW_FORM_data1,1
  1187. ]);
  1188. finish_entry;
  1189. end;
  1190. bool16bit :
  1191. begin
  1192. append_entry(DW_TAG_base_type,false,[
  1193. DW_AT_name,DW_FORM_string,'WordBool'#0,
  1194. DW_AT_encoding,DW_FORM_data1,DW_ATE_boolean,
  1195. DW_AT_byte_size,DW_FORM_data1,2
  1196. ]);
  1197. finish_entry;
  1198. end;
  1199. bool32bit :
  1200. begin
  1201. append_entry(DW_TAG_base_type,false,[
  1202. DW_AT_name,DW_FORM_string,'LongBool'#0,
  1203. DW_AT_encoding,DW_FORM_data1,DW_ATE_boolean,
  1204. DW_AT_byte_size,DW_FORM_data1,4
  1205. ]);
  1206. finish_entry;
  1207. end;
  1208. bool64bit :
  1209. begin
  1210. append_entry(DW_TAG_base_type,false,[
  1211. DW_AT_name,DW_FORM_string,'QWordBool'#0,
  1212. DW_AT_encoding,DW_FORM_data1,DW_ATE_boolean,
  1213. DW_AT_byte_size,DW_FORM_data1,8
  1214. ]);
  1215. finish_entry;
  1216. end;
  1217. u64bit :
  1218. begin
  1219. append_entry(DW_TAG_base_type,false,[
  1220. DW_AT_name,DW_FORM_string,'QWord'#0,
  1221. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned,
  1222. DW_AT_byte_size,DW_FORM_data1,8
  1223. ]);
  1224. finish_entry;
  1225. end;
  1226. scurrency :
  1227. begin
  1228. { we should use DW_ATE_signed_fixed, however it isn't supported yet by GDB (FK) }
  1229. append_entry(DW_TAG_base_type,false,[
  1230. DW_AT_name,DW_FORM_string,'Currency'#0,
  1231. DW_AT_encoding,DW_FORM_data1,DW_ATE_signed,
  1232. DW_AT_byte_size,DW_FORM_data1,8
  1233. ]);
  1234. finish_entry;
  1235. end;
  1236. s64bit :
  1237. begin
  1238. append_entry(DW_TAG_base_type,false,[
  1239. DW_AT_name,DW_FORM_string,'Int64'#0,
  1240. DW_AT_encoding,DW_FORM_data1,DW_ATE_signed,
  1241. DW_AT_byte_size,DW_FORM_data1,8
  1242. ]);
  1243. finish_entry;
  1244. end;
  1245. else
  1246. internalerror(200601287);
  1247. end;
  1248. end;
  1249. procedure TDebugInfoDwarf.appenddef_float(list:TAsmList;def:tfloatdef);
  1250. begin
  1251. case def.floattype of
  1252. s32real,
  1253. s64real,
  1254. s80real,
  1255. sc80real:
  1256. if assigned(def.typesym) then
  1257. begin
  1258. append_entry(DW_TAG_base_type,false,[
  1259. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1260. DW_AT_encoding,DW_FORM_data1,DW_ATE_float,
  1261. DW_AT_byte_size,DW_FORM_data1,def.size
  1262. ]);
  1263. if (def.floattype in [s80real,sc80real]) and
  1264. (def.size<>10) then
  1265. begin
  1266. append_attribute(DW_AT_bit_size,DW_FORM_data1,[10*8]);
  1267. { "The bit offset attribute describes the offset in bits
  1268. of the high order bit of a value of the given type
  1269. from the high order bit of the storage unit used to
  1270. contain that value." }
  1271. if target_info.endian=endian_little then
  1272. append_attribute(DW_AT_bit_offset,DW_FORM_data1,[(def.size-10)*8]);
  1273. end;
  1274. end
  1275. else
  1276. append_entry(DW_TAG_base_type,false,[
  1277. DW_AT_encoding,DW_FORM_data1,DW_ATE_float,
  1278. DW_AT_byte_size,DW_FORM_data1,def.size
  1279. ]);
  1280. s64currency:
  1281. { we should use DW_ATE_signed_fixed, however it isn't supported yet by GDB (FK) }
  1282. if assigned(def.typesym) then
  1283. append_entry(DW_TAG_base_type,false,[
  1284. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1285. DW_AT_encoding,DW_FORM_data1,DW_ATE_signed,
  1286. DW_AT_byte_size,DW_FORM_data1,8
  1287. ])
  1288. else
  1289. append_entry(DW_TAG_base_type,false,[
  1290. DW_AT_encoding,DW_FORM_data1,DW_ATE_signed,
  1291. DW_AT_byte_size,DW_FORM_data1,8
  1292. ]);
  1293. s64comp:
  1294. if assigned(def.typesym) then
  1295. append_entry(DW_TAG_base_type,false,[
  1296. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1297. DW_AT_encoding,DW_FORM_data1,DW_ATE_signed,
  1298. DW_AT_byte_size,DW_FORM_data1,8
  1299. ])
  1300. else
  1301. append_entry(DW_TAG_base_type,false,[
  1302. DW_AT_encoding,DW_FORM_data1,DW_ATE_signed,
  1303. DW_AT_byte_size,DW_FORM_data1,8
  1304. ]);
  1305. else
  1306. internalerror(200601289);
  1307. end;
  1308. finish_entry;
  1309. end;
  1310. procedure TDebugInfoDwarf.appenddef_enum(list:TAsmList;def:tenumdef);
  1311. var
  1312. hp : tenumsym;
  1313. i : integer;
  1314. begin
  1315. if assigned(def.typesym) then
  1316. append_entry(DW_TAG_enumeration_type,true,[
  1317. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1318. DW_AT_byte_size,DW_FORM_data1,def.size
  1319. ])
  1320. else
  1321. append_entry(DW_TAG_enumeration_type,true,[
  1322. DW_AT_byte_size,DW_FORM_data1,def.size
  1323. ]);
  1324. if assigned(def.basedef) then
  1325. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.basedef));
  1326. finish_entry;
  1327. { write enum symbols }
  1328. for i := 0 to def.symtable.SymList.Count - 1 do
  1329. begin
  1330. hp:=tenumsym(def.symtable.SymList[i]);
  1331. if hp.value<def.minval then
  1332. continue
  1333. else
  1334. if hp.value>def.maxval then
  1335. break;
  1336. append_entry(DW_TAG_enumerator,false,[
  1337. DW_AT_name,DW_FORM_string,symname(hp)+#0,
  1338. DW_AT_const_value,DW_FORM_data4,hp.value
  1339. ]);
  1340. finish_entry;
  1341. end;
  1342. finish_children;
  1343. end;
  1344. procedure TDebugInfoDwarf.appenddef_array(list:TAsmList;def:tarraydef);
  1345. var
  1346. size : aint;
  1347. elesize : aint;
  1348. elestrideattr : tdwarf_attribute;
  1349. labsym: tasmlabel;
  1350. begin
  1351. if is_dynamic_array(def) then
  1352. begin
  1353. { It's a pointer to the actual array }
  1354. current_asmdata.getaddrlabel(labsym);
  1355. append_entry(DW_TAG_pointer_type,false,[]);
  1356. append_labelentry_ref(DW_AT_type,labsym);
  1357. finish_entry;
  1358. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(labsym,0));
  1359. end;
  1360. if not is_packed_array(def) then
  1361. begin
  1362. elestrideattr := DW_AT_byte_stride;
  1363. elesize := def.elesize;
  1364. end
  1365. else
  1366. begin
  1367. elestrideattr := DW_AT_stride_size;
  1368. elesize := def.elepackedbitsize;
  1369. end;
  1370. if is_special_array(def) then
  1371. begin
  1372. { no known size, no known upper bound }
  1373. if assigned(def.typesym) then
  1374. append_entry(DW_TAG_array_type,true,[
  1375. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0
  1376. ])
  1377. else
  1378. append_entry(DW_TAG_array_type,true,[]);
  1379. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.elementdef));
  1380. finish_entry;
  1381. { a missing upper bound means "unknown"/default }
  1382. append_entry(DW_TAG_subrange_type,false,[
  1383. DW_AT_lower_bound,DW_FORM_sdata,def.lowrange,
  1384. elestrideattr,DW_FORM_udata,elesize
  1385. ]);
  1386. end
  1387. else
  1388. begin
  1389. size:=def.size;
  1390. if assigned(def.typesym) then
  1391. append_entry(DW_TAG_array_type,true,[
  1392. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1393. DW_AT_byte_size,DW_FORM_udata,size
  1394. ])
  1395. else
  1396. append_entry(DW_TAG_array_type,true,[
  1397. DW_AT_byte_size,DW_FORM_udata,size
  1398. ]);
  1399. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.elementdef));
  1400. finish_entry;
  1401. { to simplify things, we don't write a multidimensional array here }
  1402. append_entry(DW_TAG_subrange_type,false,[
  1403. DW_AT_lower_bound,DW_FORM_sdata,def.lowrange,
  1404. DW_AT_upper_bound,DW_FORM_sdata,def.highrange,
  1405. elestrideattr,DW_FORM_udata,elesize
  1406. ]);
  1407. end;
  1408. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.rangedef));
  1409. finish_entry;
  1410. finish_children;
  1411. end;
  1412. procedure TDebugInfoDwarf.appenddef_record(list:TAsmList;def:trecorddef);
  1413. begin
  1414. if assigned(def.typesym) then
  1415. appenddef_record_named(list,def,symname(def.typesym))
  1416. else
  1417. appenddef_record_named(list,def,'');
  1418. end;
  1419. procedure TDebugInfoDwarf.appenddef_record_named(list:TAsmList;def:trecorddef;const name: shortstring);
  1420. begin
  1421. if (name<>'') then
  1422. append_entry(DW_TAG_structure_type,true,[
  1423. DW_AT_name,DW_FORM_string,name+#0,
  1424. DW_AT_byte_size,DW_FORM_udata,def.size
  1425. ])
  1426. else
  1427. append_entry(DW_TAG_structure_type,true,[
  1428. DW_AT_byte_size,DW_FORM_udata,def.size
  1429. ]);
  1430. finish_entry;
  1431. def.symtable.symList.ForEachCall(@enum_membersyms_callback,nil);
  1432. finish_children;
  1433. end;
  1434. procedure TDebugInfoDwarf.appenddef_pointer(list:TAsmList;def:tpointerdef);
  1435. begin
  1436. append_entry(DW_TAG_pointer_type,false,[]);
  1437. if not(is_voidpointer(def)) then
  1438. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.pointeddef));
  1439. finish_entry;
  1440. end;
  1441. procedure TDebugInfoDwarf.appenddef_string(list:TAsmList;def:tstringdef);
  1442. procedure addnormalstringdef(const name: shortstring; lendef: tdef; maxlen: aword);
  1443. var
  1444. { maxlen can be > high(int64) }
  1445. slen : aword;
  1446. arr : tasmlabel;
  1447. begin
  1448. { fix length of openshortstring }
  1449. slen:=aword(def.len);
  1450. if (slen=0) or
  1451. (slen>maxlen) then
  1452. slen:=maxlen;
  1453. { create a structure with two elements }
  1454. if not(tf_dwarf_only_local_labels in target_info.flags) then
  1455. current_asmdata.getdatalabel(arr)
  1456. else
  1457. current_asmdata.getaddrlabel(arr);
  1458. append_entry(DW_TAG_structure_type,true,[
  1459. DW_AT_name,DW_FORM_string,name+#0,
  1460. DW_AT_byte_size,DW_FORM_udata,qword(lendef.size)+slen
  1461. ]);
  1462. finish_entry;
  1463. { length entry }
  1464. append_entry(DW_TAG_member,false,[
  1465. DW_AT_name,DW_FORM_string,'length'#0,
  1466. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(0)
  1467. ]);
  1468. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  1469. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(0));
  1470. append_labelentry_ref(DW_AT_type,def_dwarf_lab(lendef));
  1471. finish_entry;
  1472. { string data entry }
  1473. append_entry(DW_TAG_member,false,[
  1474. DW_AT_name,DW_FORM_string,'st'#0,
  1475. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(1)
  1476. ]);
  1477. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  1478. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(lendef.size));
  1479. append_labelentry_ref(DW_AT_type,arr);
  1480. finish_entry;
  1481. finish_children;
  1482. { now the data array }
  1483. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(arr,0));
  1484. append_entry(DW_TAG_array_type,true,[
  1485. DW_AT_byte_size,DW_FORM_udata,def.size,
  1486. DW_AT_byte_stride,DW_FORM_udata,1
  1487. ]);
  1488. append_labelentry_ref(DW_AT_type,def_dwarf_lab(cchartype));
  1489. finish_entry;
  1490. append_entry(DW_TAG_subrange_type,false,[
  1491. DW_AT_lower_bound,DW_FORM_udata,0,
  1492. DW_AT_upper_bound,DW_FORM_udata,qword(slen)
  1493. ]);
  1494. append_labelentry_ref(DW_AT_type,def_dwarf_lab(lendef));
  1495. finish_entry;
  1496. finish_children;
  1497. end;
  1498. begin
  1499. case def.stringtype of
  1500. st_shortstring:
  1501. begin
  1502. addnormalstringdef('ShortString',u8inttype,255);
  1503. end;
  1504. st_longstring:
  1505. begin
  1506. { a) we don't actually support variables of this type currently
  1507. b) this type is only used as the type for constant strings
  1508. > 255 characters
  1509. c) in such a case, gdb will allocate and initialise enough
  1510. memory to hold the maximum size for such a string
  1511. -> don't use high(qword)/high(cardinal) as maximum, since that
  1512. will cause exhausting the VM space, but some "reasonably high"
  1513. number that should be enough for most constant strings
  1514. }
  1515. {$ifdef cpu64bitaddr}
  1516. addnormalstringdef('LongString',u64inttype,qword(1024*1024));
  1517. {$else cpu64bitaddr}
  1518. addnormalstringdef('LongString',u32inttype,cardinal(1024*1024));
  1519. {$endif cpu64bitaddr}
  1520. end;
  1521. st_ansistring:
  1522. begin
  1523. { looks like a pchar }
  1524. append_entry(DW_TAG_pointer_type,false,[]);
  1525. append_labelentry_ref(DW_AT_type,def_dwarf_lab(cchartype));
  1526. finish_entry;
  1527. end;
  1528. st_unicodestring,
  1529. st_widestring:
  1530. begin
  1531. { looks like a pwidechar }
  1532. append_entry(DW_TAG_pointer_type,false,[]);
  1533. append_labelentry_ref(DW_AT_type,def_dwarf_lab(cwidechartype));
  1534. finish_entry;
  1535. end;
  1536. end;
  1537. end;
  1538. procedure TDebugInfoDwarf.appenddef_procvar(list:TAsmList;def:tprocvardef);
  1539. procedure doappend;
  1540. var
  1541. i : longint;
  1542. begin
  1543. if assigned(def.typesym) then
  1544. append_entry(DW_TAG_subroutine_type,true,[
  1545. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  1546. DW_AT_prototyped,DW_FORM_flag,true
  1547. ])
  1548. else
  1549. append_entry(DW_TAG_subroutine_type,true,[
  1550. DW_AT_prototyped,DW_FORM_flag,true
  1551. ]);
  1552. if not(is_void(tprocvardef(def).returndef)) then
  1553. append_labelentry_ref(DW_AT_type,def_dwarf_lab(tprocvardef(def).returndef));
  1554. finish_entry;
  1555. { write parameters }
  1556. for i:=0 to def.paras.count-1 do
  1557. begin
  1558. append_entry(DW_TAG_formal_parameter,false,[
  1559. DW_AT_name,DW_FORM_string,symname(tsym(def.paras[i]))+#0
  1560. ]);
  1561. append_labelentry_ref(DW_AT_type,def_dwarf_lab(tparavarsym(def.paras[i]).vardef));
  1562. finish_entry;
  1563. end;
  1564. finish_children;
  1565. end;
  1566. var
  1567. proc : tasmlabel;
  1568. begin
  1569. if not def.is_addressonly then
  1570. begin
  1571. { create a structure with two elements }
  1572. if not(tf_dwarf_only_local_labels in target_info.flags) then
  1573. current_asmdata.getdatalabel(proc)
  1574. else
  1575. current_asmdata.getaddrlabel(proc);
  1576. append_entry(DW_TAG_structure_type,true,[
  1577. DW_AT_byte_size,DW_FORM_data1,2*sizeof(pint)
  1578. ]);
  1579. finish_entry;
  1580. { proc entry }
  1581. append_entry(DW_TAG_member,false,[
  1582. DW_AT_name,DW_FORM_string,'Proc'#0,
  1583. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(0)
  1584. ]);
  1585. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  1586. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(0));
  1587. append_labelentry_ref(DW_AT_type,proc);
  1588. finish_entry;
  1589. { self entry }
  1590. append_entry(DW_TAG_member,false,[
  1591. DW_AT_name,DW_FORM_string,'Self'#0,
  1592. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(sizeof(pint))
  1593. ]);
  1594. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  1595. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(sizeof(pint)));
  1596. append_labelentry_ref(DW_AT_type,def_dwarf_lab(class_tobject));
  1597. finish_entry;
  1598. finish_children;
  1599. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(proc,0));
  1600. doappend;
  1601. end
  1602. else
  1603. doappend;
  1604. end;
  1605. procedure TDebugInfoDwarf.beforeappenddef(list:TAsmList;def:tdef);
  1606. var
  1607. labsym : tasmsymbol;
  1608. begin
  1609. current_asmdata.asmlists[al_dwarf_info].concat(tai_comment.Create(strpnew('Definition '+def.typename)));
  1610. labsym:=def_dwarf_lab(def);
  1611. if ds_dwarf_dbg_info_written in def.defstates then
  1612. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create_global(labsym,0))
  1613. else
  1614. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(labsym,0));
  1615. { On Darwin, dwarf info is not linked in the final binary,
  1616. but kept in the individual object files. This allows for
  1617. faster linking, but means that you have to keep the object
  1618. files for debugging and also that gdb only loads in the
  1619. debug info of a particular object file once you step into
  1620. or over a procedure in it.
  1621. To solve this, there is a tool called dsymutil which can
  1622. extract all the dwarf info from a program's object files.
  1623. This utility however performs "smart linking" on the dwarf
  1624. info and throws away all unreferenced dwarf entries. Since
  1625. variables' types always point to the dwarfinfo for a tdef
  1626. and never to that for a typesym, this means all debug
  1627. entries generated for typesyms are thrown away.
  1628. The problem with that is that we translate typesyms into
  1629. DW_TAG_typedef, and gdb's dwarf-2 reader only makes types
  1630. globally visibly if they are defined using a DW_TAG_typedef.
  1631. So as a result, before running dsymutil types only become
  1632. available once you stepped into/over a function in the object
  1633. file where they are declared, and after running dsymutil they
  1634. are all gone (printing variables still works because the
  1635. tdef dwarf info is still available, but you cannot typecast
  1636. anything outside the declaring units because the type names
  1637. are not known there).
  1638. The solution: if a tdef has an associated typesym, let the
  1639. debug label for the tdef point to a DW_TAG_typedef instead
  1640. of directly to the tdef itself. And don't write anything
  1641. special for the typesym itself.
  1642. Update: we now also do this for other platforms, because
  1643. otherwise if you compile unit A without debug info and
  1644. use one of its types in unit B, then no typedef will be
  1645. generated and hence gdb will not be able to give a definition
  1646. of the type.
  1647. }
  1648. if is_objc_class_or_protocol(def) then
  1649. begin
  1650. { for Objective-C classes, the typedef must refer to the
  1651. struct itself, not to the pointer of the struct; Objective-C
  1652. classes are not implicit pointers in Objective-C itself, only
  1653. in FPC. So make the def label point to a pointer to the
  1654. typedef, which in turn refers to the actual struct (for Delphi-
  1655. style classes, the def points to the typedef, which refers to
  1656. a pointer to the actual struct) }
  1657. { implicit pointer }
  1658. current_asmdata.getaddrlabel(TAsmLabel(pointer(labsym)));
  1659. append_entry(DW_TAG_pointer_type,false,[]);
  1660. append_labelentry_ref(DW_AT_type,labsym);
  1661. finish_entry;
  1662. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(labsym,0));
  1663. end;
  1664. if assigned(def.typesym) and
  1665. not(df_generic in def.defoptions) then
  1666. begin
  1667. current_asmdata.getaddrlabel(TAsmLabel(pointer(labsym)));
  1668. append_entry(DW_TAG_typedef,false,[
  1669. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0
  1670. ]);
  1671. append_labelentry_ref(DW_AT_type,labsym);
  1672. finish_entry;
  1673. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(labsym,0));
  1674. end
  1675. end;
  1676. procedure TDebugInfoDwarf.afterappenddef(list:TAsmList;def:tdef);
  1677. var
  1678. labsym : tasmsymbol;
  1679. begin
  1680. { create a derived reference type for pass-by-reference parameters }
  1681. { (gdb doesn't support DW_AT_variable_parameter yet) }
  1682. labsym:=def_dwarf_ref_lab(def);
  1683. if ds_dwarf_dbg_info_written in def.defstates then
  1684. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create_global(labsym,0))
  1685. else
  1686. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(labsym,0));
  1687. append_entry(DW_TAG_reference_type,false,[]);
  1688. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def));
  1689. finish_entry;
  1690. end;
  1691. procedure TDebugInfoDwarf.appendprocdef(list:TAsmList; def:tprocdef);
  1692. function dwarf_calling_convention(def: tprocdef): Tdwarf_calling_convention;
  1693. begin
  1694. case def.proccalloption of
  1695. pocall_register:
  1696. result:=DW_CC_GNU_borland_fastcall_i386;
  1697. pocall_cdecl,
  1698. pocall_stdcall,
  1699. pocall_cppdecl,
  1700. pocall_mwpascal:
  1701. result:=DW_CC_normal;
  1702. else
  1703. result:=DW_CC_nocall;
  1704. end
  1705. end;
  1706. var
  1707. procendlabel : tasmlabel;
  1708. procentry : string;
  1709. cc : Tdwarf_calling_convention;
  1710. st : tsymtable;
  1711. vmtindexnr : pint;
  1712. in_currentunit : boolean;
  1713. begin
  1714. { only write debug info for procedures defined in the current module,
  1715. except in case of methods (gcc-compatible)
  1716. }
  1717. in_currentunit:=def.in_currentunit;
  1718. if not in_currentunit and
  1719. (def.owner.symtabletype<>objectsymtable) then
  1720. exit;
  1721. { happens for init procdef of units without init section }
  1722. if in_currentunit and
  1723. not assigned(def.procstarttai) then
  1724. exit;
  1725. { Procdefs are not handled by the regular def writing code, so
  1726. dbg_state is not set/checked for them. Do it here. }
  1727. if (def.dbg_state in [dbg_state_writing,dbg_state_written]) then
  1728. exit;
  1729. defnumberlist.Add(def);
  1730. { Write methods and only in the scope of their parent objectdefs. }
  1731. if (def.owner.symtabletype=objectsymtable) then
  1732. begin
  1733. { this code can also work for nested procdefs, but is not yet
  1734. activated for those because there is no clear advantage yet to
  1735. limiting the scope of nested procedures to that of their parent,
  1736. and it makes it impossible to set breakpoints in them by
  1737. referring to their name. }
  1738. st:=def.owner;
  1739. while assigned(st.defowner) and
  1740. (tdef(st.defowner).typ = procdef) do
  1741. st:=tprocdef(st.defowner).owner;
  1742. if assigned(st) and
  1743. (tdef(st.defowner).dbg_state<>dbg_state_writing) then
  1744. exit;
  1745. end;
  1746. def.dbg_state:=dbg_state_writing;
  1747. current_asmdata.asmlists[al_dwarf_info].concat(tai_comment.Create(strpnew('Procdef '+def.fullprocname(true))));
  1748. if not is_objc_class_or_protocol(def._class) then
  1749. append_entry(DW_TAG_subprogram,true,
  1750. [DW_AT_name,DW_FORM_string,symname(def.procsym)+#0
  1751. { data continues below }
  1752. { problem: base reg isn't known here
  1753. DW_AT_frame_base,DW_FORM_block1,1
  1754. }
  1755. ])
  1756. else
  1757. append_entry(DW_TAG_subprogram,true,
  1758. [DW_AT_name,DW_FORM_string,def.mangledname+#0
  1759. { data continues below }
  1760. { problem: base reg isn't known here
  1761. DW_AT_frame_base,DW_FORM_block1,1
  1762. }
  1763. ]);
  1764. { Append optional flags. }
  1765. { All Pascal procedures are prototyped }
  1766. append_attribute(DW_AT_prototyped,DW_FORM_flag,[true]);
  1767. { Calling convention. }
  1768. cc:=dwarf_calling_convention(def);
  1769. if (cc<>DW_CC_normal) then
  1770. append_attribute(DW_AT_calling_convention,DW_FORM_data1,[ord(cc)]);
  1771. { Externally visible. }
  1772. if (po_global in def.procoptions) and
  1773. (def.parast.symtablelevel<=normal_function_level) then
  1774. append_attribute(DW_AT_external,DW_FORM_flag,[true]);
  1775. { Abstract or virtual/overriding method. }
  1776. if (([po_abstractmethod, po_virtualmethod, po_overridingmethod] * def.procoptions) <> []) and
  1777. not is_objc_class_or_protocol(def._class) then
  1778. begin
  1779. if not(po_abstractmethod in def.procoptions) then
  1780. append_attribute(DW_AT_virtuality,DW_FORM_data1,[ord(DW_VIRTUALITY_virtual)])
  1781. else
  1782. append_attribute(DW_AT_virtuality,DW_FORM_data1,[ord(DW_VIRTUALITY_pure_virtual)]);
  1783. { Element number in the vmt (needs to skip stuff coming before the
  1784. actual method addresses in the vmt, so we use vmtmethodoffset()
  1785. and then divide by sizeof(pint)). }
  1786. vmtindexnr:=tobjectdef(def.owner.defowner).vmtmethodoffset(def.extnumber) div sizeof(pint);
  1787. append_attribute(DW_AT_vtable_elem_location,DW_FORM_block1,[1+LengthUleb128(vmtindexnr)]);
  1788. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_constu)));
  1789. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.Create_uleb128bit(vmtindexnr));
  1790. end;
  1791. { accessibility: public/private/protected }
  1792. if (def.owner.symtabletype=objectsymtable) then
  1793. append_visibility(def.visibility);
  1794. { Return type. }
  1795. if not(is_void(tprocdef(def).returndef)) then
  1796. append_labelentry_ref(DW_AT_type,def_dwarf_lab(tprocdef(def).returndef));
  1797. { we can only write the start/end if this procedure is implemented in
  1798. this module
  1799. }
  1800. if in_currentunit then
  1801. begin
  1802. { mark end of procedure }
  1803. current_asmdata.getlabel(procendlabel,alt_dbgtype);
  1804. current_asmdata.asmlists[al_procedures].insertbefore(tai_label.create(procendlabel),def.procendtai);
  1805. if (target_info.system = system_powerpc64_linux) then
  1806. procentry := '.' + def.mangledname
  1807. else
  1808. procentry := def.mangledname;
  1809. append_labelentry(DW_AT_low_pc,current_asmdata.RefAsmSymbol(procentry));
  1810. append_labelentry(DW_AT_high_pc,procendlabel);
  1811. end;
  1812. { Don't write the funcretsym explicitly, it's also in the
  1813. localsymtable and/or parasymtable.
  1814. }
  1815. finish_entry;
  1816. if assigned(def.parast) then
  1817. begin
  1818. { First insert self, because gdb uses the fact whether or not the
  1819. first parameter of a method is artificial to distinguish static
  1820. from regular methods. }
  1821. { fortunately, self is the always the first parameter in the
  1822. paralist, since it has the lowest paranr. Note that this is not
  1823. true for Objective-C, but those methods are detected in
  1824. another way (by reading the ObjC run time information) }
  1825. write_symtable_parasyms(current_asmdata.asmlists[al_dwarf_info],def.paras);
  1826. end;
  1827. { local type defs and vars should not be written
  1828. inside the main proc }
  1829. if in_currentunit and
  1830. assigned(def.localst) and
  1831. (def.localst.symtabletype=localsymtable) then
  1832. write_symtable_syms(current_asmdata.asmlists[al_dwarf_info],def.localst);
  1833. { last write the types from this procdef }
  1834. if assigned(def.parast) then
  1835. write_symtable_defs(current_asmdata.asmlists[al_dwarf_info],def.parast);
  1836. { only try to write the localst if the routine is implemented here }
  1837. if in_currentunit and
  1838. assigned(def.localst) and
  1839. (def.localst.symtabletype=localsymtable) then
  1840. begin
  1841. write_symtable_defs(current_asmdata.asmlists[al_dwarf_info],def.localst);
  1842. { Write nested procedures -- disabled, see scope check at the
  1843. beginning; currently, these are still written in the global
  1844. scope. }
  1845. // write_symtable_procdefs(current_asmdata.asmlists[al_dwarf_info],def.localst);
  1846. end;
  1847. finish_children;
  1848. end;
  1849. function TDebugInfoDwarf.get_symlist_sym_offset(symlist: ppropaccesslistitem; out sym: tabstractvarsym; out offset: pint): boolean;
  1850. var
  1851. elesize : pint;
  1852. currdef : tdef;
  1853. indirection: boolean;
  1854. begin
  1855. result:=false;
  1856. if not assigned(symlist) then
  1857. exit;
  1858. sym:=nil;
  1859. offset:=0;
  1860. currdef:=nil;
  1861. indirection:=false;
  1862. repeat
  1863. case symlist^.sltype of
  1864. sl_load:
  1865. begin
  1866. if assigned(sym) then
  1867. internalerror(2009031203);
  1868. if not(symlist^.sym.typ in [paravarsym,localvarsym,staticvarsym,fieldvarsym]) then
  1869. { can't handle... }
  1870. exit;
  1871. sym:=tabstractvarsym(symlist^.sym);
  1872. currdef:=tabstractvarsym(sym).vardef;
  1873. if ((sym.typ=paravarsym) and
  1874. paramanager.push_addr_param(tparavarsym(sym).varspez,sym.vardef,tprocdef(sym.owner.defowner).proccalloption)) then
  1875. indirection:=true;
  1876. end;
  1877. sl_subscript:
  1878. begin
  1879. if not assigned(currdef) then
  1880. internalerror(2009031301);
  1881. if (symlist^.sym.typ<>fieldvarsym) then
  1882. internalerror(2009031202);
  1883. { can't handle offsets with indirections yet }
  1884. if indirection then
  1885. exit;
  1886. if is_packed_record_or_object(currdef) then
  1887. begin
  1888. { can't calculate the address of a non-byte aligned field }
  1889. if (tfieldvarsym(symlist^.sym).fieldoffset mod 8) <> 0 then
  1890. exit;
  1891. inc(offset,tfieldvarsym(symlist^.sym).fieldoffset div 8)
  1892. end
  1893. else
  1894. inc(offset,tfieldvarsym(symlist^.sym).fieldoffset);
  1895. currdef:=tfieldvarsym(symlist^.sym).vardef;
  1896. end;
  1897. sl_absolutetype,
  1898. sl_typeconv:
  1899. begin
  1900. currdef:=tfieldvarsym(symlist^.sym).vardef;
  1901. { ignore, these don't change the address }
  1902. end;
  1903. sl_vec:
  1904. begin
  1905. if not assigned(currdef) or
  1906. (currdef.typ<>arraydef) then
  1907. internalerror(2009031201);
  1908. { can't handle offsets with indirections yet }
  1909. if indirection then
  1910. exit;
  1911. if not is_packed_array(currdef) then
  1912. elesize:=tarraydef(currdef).elesize
  1913. else
  1914. begin
  1915. elesize:=tarraydef(currdef).elepackedbitsize;
  1916. { can't calculate the address of a non-byte aligned element }
  1917. if (elesize mod 8)<>0 then
  1918. exit;
  1919. elesize:=elesize div 8;
  1920. end;
  1921. inc(offset,(symlist^.value.svalue-tarraydef(currdef).lowrange)*elesize);
  1922. currdef:=tarraydef(currdef).elementdef;
  1923. end;
  1924. else
  1925. internalerror(2009031401);
  1926. end;
  1927. symlist:=symlist^.next;
  1928. until not assigned(symlist);
  1929. if not assigned(sym) then
  1930. internalerror(2009031205);
  1931. result:=true;
  1932. end;
  1933. procedure TDebugInfoDwarf.appendsym_var(list:TAsmList;sym:tabstractnormalvarsym);
  1934. begin
  1935. appendsym_var_with_name_type_offset(list,sym,symname(sym),sym.vardef,0,[]);
  1936. end;
  1937. procedure TDebugInfoDwarf.appendsym_var_with_name_type_offset(list:TAsmList; sym:tabstractnormalvarsym; const name: string; def: tdef; offset: pint; const flags: tdwarfvarsymflags);
  1938. var
  1939. templist : TAsmList;
  1940. blocksize : longint;
  1941. tag : tdwarf_tag;
  1942. dreg : byte;
  1943. begin
  1944. { external symbols can't be resolved at link time, so we
  1945. can't generate stabs for them
  1946. not sure if this applies to dwarf as well (FK)
  1947. }
  1948. if vo_is_external in sym.varoptions then
  1949. exit;
  1950. { There is no space allocated for not referenced locals }
  1951. if (sym.owner.symtabletype=localsymtable) and (sym.refs=0) then
  1952. exit;
  1953. templist:=TAsmList.create;
  1954. case sym.localloc.loc of
  1955. LOC_REGISTER,
  1956. LOC_CREGISTER,
  1957. LOC_MMREGISTER,
  1958. LOC_CMMREGISTER,
  1959. LOC_FPUREGISTER,
  1960. LOC_CFPUREGISTER :
  1961. begin
  1962. templist.concat(tai_const.create_8bit(ord(DW_OP_regx)));
  1963. dreg:=dwarf_reg(sym.localloc.register);
  1964. templist.concat(tai_const.create_uleb128bit(dreg));
  1965. blocksize:=1+Lengthuleb128(dreg);
  1966. end;
  1967. else
  1968. begin
  1969. case sym.typ of
  1970. staticvarsym:
  1971. begin
  1972. if (vo_is_thread_var in sym.varoptions) then
  1973. begin
  1974. { TODO: !!! FIXME: dwarf for thread vars !!!}
  1975. blocksize:=0;
  1976. end
  1977. else
  1978. begin
  1979. templist.concat(tai_const.create_8bit(ord(DW_OP_addr)));
  1980. templist.concat(tai_const.createname(sym.mangledname,offset));
  1981. blocksize:=1+sizeof(puint);
  1982. end;
  1983. end;
  1984. paravarsym,
  1985. localvarsym:
  1986. begin
  1987. { Happens when writing debug info for paras of procdefs not
  1988. implemented in the current module. Can't add a general check
  1989. for LOC_INVALID above, because staticvarsyms may also have it.
  1990. }
  1991. if sym.localloc.loc<> LOC_INVALID then
  1992. begin
  1993. dreg:=dwarf_reg(sym.localloc.reference.base);
  1994. templist.concat(tai_const.create_8bit(ord(DW_OP_breg0)+dreg));
  1995. templist.concat(tai_const.create_sleb128bit(sym.localloc.reference.offset+offset));
  1996. blocksize:=1+Lengthsleb128(sym.localloc.reference.offset);
  1997. end;
  1998. end
  1999. else
  2000. internalerror(200601288);
  2001. end;
  2002. end;
  2003. end;
  2004. { function results must not be added to the parameter list,
  2005. as they are not part of the signature of the function
  2006. (gdb automatically adds them according to the ABI specifications
  2007. when calling the function)
  2008. }
  2009. if (sym.typ=paravarsym) and
  2010. not(dvf_force_local_var in flags) and
  2011. not(vo_is_funcret in sym.varoptions) then
  2012. tag:=DW_TAG_formal_parameter
  2013. else
  2014. tag:=DW_TAG_variable;
  2015. { must be parasym of externally implemented procdef, but
  2016. the parasymtable can con also contain e.g. absolutevarsyms
  2017. -> check symtabletype}
  2018. if (sym.owner.symtabletype=parasymtable) and
  2019. (sym.localloc.loc=LOC_INVALID) then
  2020. begin
  2021. if (sym.owner.symtabletype<>parasymtable) then
  2022. internalerror(2009101001);
  2023. append_entry(tag,false,[
  2024. DW_AT_name,DW_FORM_string,name+#0
  2025. {
  2026. DW_AT_decl_file,DW_FORM_data1,0,
  2027. DW_AT_decl_line,DW_FORM_data1,
  2028. }
  2029. ])
  2030. end
  2031. else if not(sym.localloc.loc in [LOC_REGISTER,LOC_CREGISTER,LOC_MMREGISTER,
  2032. LOC_CMMREGISTER,LOC_FPUREGISTER,LOC_CFPUREGISTER]) and
  2033. ((sym.owner.symtabletype = globalsymtable) or
  2034. (sp_static in sym.symoptions) or
  2035. (vo_is_public in sym.varoptions)) then
  2036. append_entry(tag,false,[
  2037. DW_AT_name,DW_FORM_string,name+#0,
  2038. {
  2039. DW_AT_decl_file,DW_FORM_data1,0,
  2040. DW_AT_decl_line,DW_FORM_data1,
  2041. }
  2042. DW_AT_external,DW_FORM_flag,true,
  2043. { data continues below }
  2044. DW_AT_location,DW_FORM_block1,blocksize
  2045. ])
  2046. {$ifdef gdb_supports_DW_AT_variable_parameter}
  2047. else if (sym.typ=paravarsym) and
  2048. paramanager.push_addr_param(sym.varspez,sym.vardef,tprocdef(sym.owner.defowner).proccalloption) and
  2049. not(vo_has_local_copy in sym.varoptions) and
  2050. not is_open_string(sym.vardef) then
  2051. append_entry(tag,false,[
  2052. DW_AT_name,DW_FORM_string,name+#0,
  2053. DW_AT_variable_parameter,DW_FORM_flag,true,
  2054. {
  2055. DW_AT_decl_file,DW_FORM_data1,0,
  2056. DW_AT_decl_line,DW_FORM_data1,
  2057. }
  2058. { data continues below }
  2059. DW_AT_location,DW_FORM_block1,blocksize
  2060. ])
  2061. {$endif gdb_supports_DW_AT_variable_parameter}
  2062. else
  2063. append_entry(tag,false,[
  2064. DW_AT_name,DW_FORM_string,name+#0,
  2065. {
  2066. DW_AT_decl_file,DW_FORM_data1,0,
  2067. DW_AT_decl_line,DW_FORM_data1,
  2068. }
  2069. { data continues below }
  2070. DW_AT_location,DW_FORM_block1,blocksize
  2071. ]);
  2072. { append block data }
  2073. current_asmdata.asmlists[al_dwarf_info].concatlist(templist);
  2074. { Mark self as artificial for methods, because gdb uses the fact
  2075. whether or not the first parameter of a method is artificial to
  2076. distinguish regular from static methods (since there are no
  2077. no vo_is_self parameters for static methods, we don't have to check
  2078. that). }
  2079. if (vo_is_self in sym.varoptions) then
  2080. append_attribute(DW_AT_artificial,DW_FORM_flag,[true]);
  2081. {$ifndef gdb_supports_DW_AT_variable_parameter}
  2082. if (sym.typ=paravarsym) and
  2083. paramanager.push_addr_param(sym.varspez,sym.vardef,tprocdef(sym.owner.defowner).proccalloption) and
  2084. not(vo_has_local_copy in sym.varoptions) and
  2085. not is_open_string(sym.vardef) then
  2086. append_labelentry_ref(DW_AT_type,def_dwarf_ref_lab(def))
  2087. else
  2088. {$endif not gdb_supports_DW_AT_variable_parameter}
  2089. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def));
  2090. templist.free;
  2091. finish_entry;
  2092. end;
  2093. procedure TDebugInfoDwarf.appendsym_staticvar(list:TAsmList;sym:tstaticvarsym);
  2094. begin
  2095. appendsym_var(list,sym);
  2096. end;
  2097. procedure TDebugInfoDwarf.appendsym_localvar(list:TAsmList;sym:tlocalvarsym);
  2098. begin
  2099. appendsym_var(list,sym);
  2100. end;
  2101. procedure TDebugInfoDwarf.appendsym_paravar(list:TAsmList;sym:tparavarsym);
  2102. begin
  2103. appendsym_var(list,sym);
  2104. end;
  2105. procedure TDebugInfoDwarf.appendsym_fieldvar(list:TAsmList;sym: tfieldvarsym);
  2106. begin
  2107. appendsym_fieldvar_with_name_offset(list,sym,symname(sym),sym.vardef,0);
  2108. end;
  2109. procedure TDebugInfoDwarf.appendsym_fieldvar_with_name_offset(list:TAsmList;sym: tfieldvarsym;const name: string; def: tdef; offset: pint);
  2110. var
  2111. bitoffset,
  2112. fieldoffset,
  2113. fieldnatsize: aint;
  2114. begin
  2115. if (sp_static in sym.symoptions) or
  2116. (sym.visibility=vis_hidden) then
  2117. exit;
  2118. if (tabstractrecordsymtable(sym.owner).usefieldalignment<>bit_alignment) or
  2119. { only ordinals are bitpacked }
  2120. not is_ordinal(sym.vardef) then
  2121. begin
  2122. { other kinds of fields can however also appear in a bitpacked }
  2123. { record, and then their offset is also specified in bits rather }
  2124. { than in bytes }
  2125. if (tabstractrecordsymtable(sym.owner).usefieldalignment<>bit_alignment) then
  2126. fieldoffset:=sym.fieldoffset
  2127. else
  2128. fieldoffset:=sym.fieldoffset div 8;
  2129. inc(fieldoffset,offset);
  2130. append_entry(DW_TAG_member,false,[
  2131. DW_AT_name,DW_FORM_string,name+#0,
  2132. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(fieldoffset)
  2133. ]);
  2134. end
  2135. else
  2136. begin
  2137. if (sym.vardef.packedbitsize > 255) then
  2138. internalerror(2007061201);
  2139. { we don't bitpack according to the ABI, but as close as }
  2140. { possible, i.e., equivalent to gcc's }
  2141. { __attribute__((__packed__)), which is also what gpc }
  2142. { does. }
  2143. fieldnatsize:=max(sizeof(pint),sym.vardef.size);
  2144. fieldoffset:=(sym.fieldoffset div (fieldnatsize*8)) * fieldnatsize;
  2145. inc(fieldoffset,offset);
  2146. bitoffset:=sym.fieldoffset mod (fieldnatsize*8);
  2147. if (target_info.endian=endian_little) then
  2148. bitoffset:=(fieldnatsize*8)-bitoffset-sym.vardef.packedbitsize;
  2149. append_entry(DW_TAG_member,false,[
  2150. DW_AT_name,DW_FORM_string,symname(sym)+#0,
  2151. { gcc also generates both a bit and byte size attribute }
  2152. { we don't support ordinals >= 256 bits }
  2153. DW_AT_byte_size,DW_FORM_data1,fieldnatsize,
  2154. { nor >= 256 bits (not yet, anyway, see IE above) }
  2155. DW_AT_bit_size,DW_FORM_data1,sym.vardef.packedbitsize,
  2156. { data1 and data2 are unsigned, bitoffset can also be negative }
  2157. DW_AT_bit_offset,DW_FORM_data4,bitoffset,
  2158. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(fieldoffset)
  2159. ]);
  2160. end;
  2161. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  2162. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(fieldoffset));
  2163. if (sym.owner.symtabletype=objectsymtable) then
  2164. append_visibility(sym.visibility);
  2165. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def));
  2166. finish_entry;
  2167. end;
  2168. procedure TDebugInfoDwarf.appendsym_const(list:TAsmList;sym:tconstsym);
  2169. var
  2170. i,
  2171. size: aint;
  2172. usedef: tdef;
  2173. begin
  2174. { These are default values of parameters. These should be encoded
  2175. via DW_AT_default_value, not as a separate sym. Moreover, their
  2176. type is not available when writing the debug info for external
  2177. procedures.
  2178. }
  2179. if (sym.owner.symtabletype=parasymtable) then
  2180. exit;
  2181. append_entry(DW_TAG_variable,false,[
  2182. DW_AT_name,DW_FORM_string,symname(sym)+#0
  2183. ]);
  2184. { for string constants, constdef isn't set because they have no real type }
  2185. case sym.consttyp of
  2186. conststring:
  2187. begin
  2188. { if DW_FORM_string is used below one day, this usedef should
  2189. probably become nil }
  2190. { note: < 255 instead of <= 255 because we have to store the
  2191. entire length of the string as well, and 256 does not fit in
  2192. a byte }
  2193. if (sym.value.len<255) then
  2194. usedef:=cshortstringtype
  2195. else
  2196. usedef:=clongstringtype;
  2197. end;
  2198. constresourcestring,
  2199. constwstring:
  2200. usedef:=nil;
  2201. else
  2202. usedef:=sym.constdef;
  2203. end;
  2204. if assigned(usedef) then
  2205. append_labelentry_ref(DW_AT_type,def_dwarf_lab(usedef));
  2206. AddConstToAbbrev(ord(DW_AT_const_value));
  2207. case sym.consttyp of
  2208. conststring:
  2209. begin
  2210. { DW_FORM_string isn't supported yet by the Pascal value printer
  2211. -> create a string using raw bytes }
  2212. if (sym.value.len<255) then
  2213. begin
  2214. AddConstToAbbrev(ord(DW_FORM_block1));
  2215. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(sym.value.len+1));
  2216. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(sym.value.len));
  2217. end
  2218. else
  2219. begin
  2220. AddConstToAbbrev(ord(DW_FORM_block));
  2221. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(sym.value.len+sizeof(pint)));
  2222. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_pint(sym.value.len));
  2223. end;
  2224. i:=0;
  2225. size:=sym.value.len;
  2226. while(i<size) do
  2227. begin
  2228. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit((pbyte(sym.value.valueptr+i)^)));
  2229. inc(i);
  2230. end;
  2231. end;
  2232. constguid,
  2233. constset:
  2234. begin
  2235. AddConstToAbbrev(ord(DW_FORM_block1));
  2236. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(usedef.size));
  2237. i:=0;
  2238. size:=sym.constdef.size;
  2239. while (i<size) do
  2240. begin
  2241. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit((pbyte(sym.value.valueptr+i)^)));
  2242. inc(i);
  2243. end;
  2244. end;
  2245. constwstring,
  2246. constresourcestring:
  2247. begin
  2248. { write dummy for now }
  2249. AddConstToAbbrev(ord(DW_FORM_string));
  2250. current_asmdata.asmlists[al_dwarf_info].concat(tai_string.create(''));
  2251. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(0));
  2252. end;
  2253. constord:
  2254. begin
  2255. if (sym.value.valueord<0) then
  2256. begin
  2257. AddConstToAbbrev(ord(DW_FORM_sdata));
  2258. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_sleb128bit(sym.value.valueord.svalue));
  2259. end
  2260. else
  2261. begin
  2262. AddConstToAbbrev(ord(DW_FORM_udata));
  2263. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(sym.value.valueord.uvalue));
  2264. end;
  2265. end;
  2266. constnil:
  2267. begin
  2268. {$ifdef cpu64bitaddr}
  2269. AddConstToAbbrev(ord(DW_FORM_data8));
  2270. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_64bit(0));
  2271. {$else cpu64bitaddr}
  2272. AddConstToAbbrev(ord(DW_FORM_data4));
  2273. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_32bit(0));
  2274. {$endif cpu64bitaddr}
  2275. end;
  2276. constpointer:
  2277. begin
  2278. {$ifdef cpu64bitaddr}
  2279. AddConstToAbbrev(ord(DW_FORM_data8));
  2280. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_64bit(int64(sym.value.valueordptr)));
  2281. {$else cpu64bitaddr}
  2282. AddConstToAbbrev(ord(DW_FORM_data4));
  2283. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_32bit(longint(sym.value.valueordptr)));
  2284. {$endif cpu64bitaddr}
  2285. end;
  2286. constreal:
  2287. begin
  2288. AddConstToAbbrev(ord(DW_FORM_block1));
  2289. case tfloatdef(sym.constdef).floattype of
  2290. s32real:
  2291. begin
  2292. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(4));
  2293. current_asmdata.asmlists[al_dwarf_info].concat(tai_real_32bit.create(pbestreal(sym.value.valueptr)^));
  2294. end;
  2295. s64real:
  2296. begin
  2297. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(8));
  2298. current_asmdata.asmlists[al_dwarf_info].concat(tai_real_64bit.create(pbestreal(sym.value.valueptr)^));
  2299. end;
  2300. s64comp,
  2301. s64currency:
  2302. begin
  2303. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(8));
  2304. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_64bit(trunc(pbestreal(sym.value.valueptr)^)));
  2305. end;
  2306. s80real,
  2307. sc80real:
  2308. begin
  2309. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(sym.constdef.size));
  2310. current_asmdata.asmlists[al_dwarf_info].concat(tai_real_80bit.create(pextended(sym.value.valueptr)^,sym.constdef.size));
  2311. end;
  2312. else
  2313. internalerror(200601291);
  2314. end;
  2315. end;
  2316. else
  2317. internalerror(200601292);
  2318. end;
  2319. finish_entry;
  2320. end;
  2321. procedure TDebugInfoDwarf.appendsym_label(list:TAsmList;sym: tlabelsym);
  2322. begin
  2323. { ignore label syms for now, the problem is that a label sym
  2324. can have more than one label associated e.g. in case of
  2325. an inline procedure expansion }
  2326. end;
  2327. procedure TDebugInfoDwarf.appendsym_property(list:TAsmList;sym: tpropertysym);
  2328. var
  2329. symlist: ppropaccesslistitem;
  2330. tosym: tabstractvarsym;
  2331. offset: pint;
  2332. begin
  2333. if assigned(sym.propaccesslist[palt_read]) and
  2334. not assigned(sym.propaccesslist[palt_read].procdef) then
  2335. symlist:=sym.propaccesslist[palt_read].firstsym
  2336. else
  2337. { can't handle }
  2338. exit;
  2339. if not get_symlist_sym_offset(symlist,tosym,offset) then
  2340. exit;
  2341. if (tosym.owner.symtabletype<>objectsymtable) then
  2342. begin
  2343. if (tosym.typ=fieldvarsym) then
  2344. internalerror(2009031404);
  2345. appendsym_var_with_name_type_offset(list,tabstractnormalvarsym(tosym),symname(sym),sym.propdef,offset,[])
  2346. end
  2347. else
  2348. appendsym_fieldvar_with_name_offset(list,tfieldvarsym(tosym),symname(sym),sym.propdef,offset)
  2349. end;
  2350. procedure TDebugInfoDwarf.appendsym_type(list:TAsmList;sym: ttypesym);
  2351. begin
  2352. { just queue the def if needed, beforeappenddef will
  2353. emit the typedef if necessary }
  2354. def_dwarf_lab(sym.typedef);
  2355. end;
  2356. procedure TDebugInfoDwarf.appendsym_absolute(list:TAsmList;sym:tabsolutevarsym);
  2357. var
  2358. templist : TAsmList;
  2359. blocksize : longint;
  2360. symlist : ppropaccesslistitem;
  2361. tosym: tabstractvarsym;
  2362. offset: pint;
  2363. flags: tdwarfvarsymflags;
  2364. begin
  2365. templist:=TAsmList.create;
  2366. case tabsolutevarsym(sym).abstyp of
  2367. toaddr :
  2368. begin
  2369. { MWE: replaced ifdef i368 }
  2370. (*
  2371. if target_cpu = cpu_i386 then
  2372. begin
  2373. { in theory, we could write a DW_AT_segment entry here for sym.absseg,
  2374. however I doubt that gdb supports this (FK) }
  2375. end;
  2376. *)
  2377. templist.concat(tai_const.create_8bit(3));
  2378. templist.concat(tai_const.create_pint(sym.addroffset));
  2379. blocksize:=1+sizeof(puint);
  2380. end;
  2381. toasm :
  2382. begin
  2383. templist.concat(tai_const.create_8bit(3));
  2384. templist.concat(tai_const.createname(sym.mangledname,0));
  2385. blocksize:=1+sizeof(puint);
  2386. end;
  2387. tovar:
  2388. begin
  2389. symlist:=tabsolutevarsym(sym).ref.firstsym;
  2390. if get_symlist_sym_offset(symlist,tosym,offset) then
  2391. begin
  2392. if (tosym.typ=fieldvarsym) then
  2393. internalerror(2009031402);
  2394. flags:=[];
  2395. if (sym.owner.symtabletype=localsymtable) then
  2396. include(flags,dvf_force_local_var);
  2397. appendsym_var_with_name_type_offset(list,tabstractnormalvarsym(tosym),symname(sym),tabstractvarsym(sym).vardef,offset,flags);
  2398. end;
  2399. templist.free;
  2400. exit;
  2401. end;
  2402. end;
  2403. append_entry(DW_TAG_variable,false,[
  2404. DW_AT_name,DW_FORM_string,symname(sym)+#0,
  2405. {
  2406. DW_AT_decl_file,DW_FORM_data1,0,
  2407. DW_AT_decl_line,DW_FORM_data1,
  2408. }
  2409. DW_AT_external,DW_FORM_flag,true,
  2410. { data continues below }
  2411. DW_AT_location,DW_FORM_block1,blocksize
  2412. ]);
  2413. { append block data }
  2414. current_asmdata.asmlists[al_dwarf_info].concatlist(templist);
  2415. append_labelentry_ref(DW_AT_type,def_dwarf_lab(sym.vardef));
  2416. templist.free;
  2417. finish_entry;
  2418. end;
  2419. procedure TDebugInfoDwarf.beforeappendsym(list:TAsmList;sym:tsym);
  2420. begin
  2421. current_asmdata.asmlists[al_dwarf_info].concat(tai_comment.Create(strpnew('Symbol '+symname(sym))));
  2422. end;
  2423. procedure TDebugInfoDwarf.insertmoduleinfo;
  2424. var
  2425. templist: TAsmList;
  2426. linelist: TAsmList;
  2427. lbl : tasmlabel;
  2428. n,m : Integer;
  2429. ditem : TDirIndexItem;
  2430. fitem : TFileIndexItem;
  2431. flist : TFPList;
  2432. dbgname : String;
  2433. begin
  2434. { insert DEBUGSTART and DEBUGEND labels }
  2435. dbgname:=make_mangledname('DEBUGSTART',current_module.localsymtable,'');
  2436. { Darwin's linker does not like two global labels both pointing to the
  2437. end of a section, which can happen in case of units without code ->
  2438. make them local; we don't need the debugtable stuff there either,
  2439. so it doesn't matter that they are not global.
  2440. }
  2441. if (target_info.system in systems_darwin) then
  2442. dbgname:='L'+dbgname;
  2443. new_section(current_asmdata.asmlists[al_start],sec_code,dbgname,0,secorder_begin);
  2444. if not(target_info.system in systems_darwin) then
  2445. current_asmdata.asmlists[al_start].concat(tai_symbol.Createname_global(dbgname,AT_DATA,0))
  2446. else
  2447. current_asmdata.asmlists[al_start].concat(tai_symbol.Createname(dbgname,AT_DATA,0));
  2448. dbgname:=make_mangledname('DEBUGEND',current_module.localsymtable,'');
  2449. { See above. }
  2450. if (target_info.system in systems_darwin) then
  2451. dbgname:='L'+dbgname;
  2452. new_section(current_asmdata.asmlists[al_end],sec_code,dbgname,0,secorder_end);
  2453. if not(target_info.system in systems_darwin) then
  2454. current_asmdata.asmlists[al_end].concat(tai_symbol.Createname_global(dbgname,AT_DATA,0))
  2455. else
  2456. current_asmdata.asmlists[al_end].concat(tai_symbol.Createname(dbgname,AT_DATA,0));
  2457. { insert .Ldebug_abbrev0 label }
  2458. templist:=TAsmList.create;
  2459. new_section(templist,sec_debug_abbrev,'',0);
  2460. templist.concat(tai_symbol.createname(target_asm.labelprefix+'debug_abbrevsection0',AT_DATA,0));
  2461. { add any extra stuff which needs to be in the abbrev section, but before }
  2462. { the actual abbreviations, in between the symbol above and below, i.e. here }
  2463. templist.concat(tai_symbol.createname(target_asm.labelprefix+'debug_abbrev0',AT_DATA,0));
  2464. current_asmdata.asmlists[al_start].insertlist(templist);
  2465. templist.free;
  2466. { insert .Ldebug_line0 label }
  2467. templist:=TAsmList.create;
  2468. new_section(templist,sec_debug_line,'',0);
  2469. templist.concat(tai_symbol.createname(target_asm.labelprefix+'debug_linesection0',AT_DATA,0));
  2470. { add any extra stuff which needs to be in the line section, but before }
  2471. { the actual line info, in between the symbol above and below, i.e. here }
  2472. templist.concat(tai_symbol.createname(target_asm.labelprefix+'debug_line0',AT_DATA,0));
  2473. current_asmdata.asmlists[al_start].insertlist(templist);
  2474. templist.free;
  2475. { finalize line info if the unit doesn't contain any function/ }
  2476. { procedure/init/final code }
  2477. finish_lineinfo;
  2478. { debug line header }
  2479. linelist := current_asmdata.asmlists[al_dwarf_line];
  2480. new_section(linelist,sec_debug_line,'',0);
  2481. linelist.concat(tai_comment.Create(strpnew('=== header start ===')));
  2482. { size }
  2483. current_asmdata.getlabel(lbl,alt_dbgfile);
  2484. if use_64bit_headers then
  2485. linelist.concat(tai_const.create_32bit(longint($FFFFFFFF)));
  2486. linelist.concat(tai_const.create_rel_sym(offsetreltype,
  2487. lbl,current_asmdata.RefAsmSymbol(target_asm.labelprefix+'edebug_line0')));
  2488. linelist.concat(tai_label.create(lbl));
  2489. { version }
  2490. linelist.concat(tai_const.create_16bit(dwarf_version));
  2491. { header length }
  2492. current_asmdata.getlabel(lbl,alt_dbgfile);
  2493. linelist.concat(tai_const.create_rel_sym(offsetreltype,
  2494. lbl,current_asmdata.RefAsmSymbol(target_asm.labelprefix+'ehdebug_line0')));
  2495. linelist.concat(tai_label.create(lbl));
  2496. { minimum_instruction_length }
  2497. linelist.concat(tai_const.create_8bit(1));
  2498. { default_is_stmt }
  2499. linelist.concat(tai_const.create_8bit(1));
  2500. { line_base }
  2501. linelist.concat(tai_const.create_8bit(LINE_BASE));
  2502. { line_range }
  2503. { only line increase, no adress }
  2504. linelist.concat(tai_const.create_8bit(255));
  2505. { opcode_base }
  2506. linelist.concat(tai_const.create_8bit(OPCODE_BASE));
  2507. { standard_opcode_lengths }
  2508. { MWE: sigh... why adding the default lengths (and make those sizes sense with LEB encoding) }
  2509. { DW_LNS_copy }
  2510. linelist.concat(tai_const.create_8bit(0));
  2511. { DW_LNS_advance_pc }
  2512. linelist.concat(tai_const.create_8bit(1));
  2513. { DW_LNS_advance_line }
  2514. linelist.concat(tai_const.create_8bit(1));
  2515. { DW_LNS_set_file }
  2516. linelist.concat(tai_const.create_8bit(1));
  2517. { DW_LNS_set_column }
  2518. linelist.concat(tai_const.create_8bit(1));
  2519. { DW_LNS_negate_stmt }
  2520. linelist.concat(tai_const.create_8bit(0));
  2521. { DW_LNS_set_basic_block }
  2522. linelist.concat(tai_const.create_8bit(0));
  2523. { DW_LNS_const_add_pc }
  2524. linelist.concat(tai_const.create_8bit(0));
  2525. { DW_LNS_fixed_advance_pc }
  2526. linelist.concat(tai_const.create_8bit(1));
  2527. { DW_LNS_set_prologue_end }
  2528. linelist.concat(tai_const.create_8bit(0));
  2529. { DW_LNS_set_epilogue_begin }
  2530. linelist.concat(tai_const.create_8bit(0));
  2531. { DW_LNS_set_isa }
  2532. linelist.concat(tai_const.create_8bit(1));
  2533. { Create single list of filenames sorted in IndexNr }
  2534. flist:=TFPList.Create;
  2535. for n := 0 to dirlist.Count - 1 do
  2536. begin
  2537. ditem := TDirIndexItem(dirlist[n]);
  2538. for m := 0 to ditem.Files.Count - 1 do
  2539. flist.Add(ditem.Files[m]);
  2540. end;
  2541. flist.Sort(@FileListSortCompare);
  2542. { include_directories }
  2543. linelist.concat(tai_comment.Create(strpnew('include_directories')));
  2544. for n := 0 to dirlist.Count - 1 do
  2545. begin
  2546. ditem := TDirIndexItem(dirlist[n]);
  2547. if ditem.Name = '.' then
  2548. Continue;
  2549. { Write without trailing path delimiter and also don't prefix with ./ for current dir (already done while adding to dirlist }
  2550. linelist.concat(tai_string.create(ditem.Name+#0));
  2551. end;
  2552. linelist.concat(tai_const.create_8bit(0));
  2553. { file_names }
  2554. linelist.concat(tai_comment.Create(strpnew('file_names')));
  2555. for n := 0 to flist.Count - 1 do
  2556. begin
  2557. fitem := TFileIndexItem(flist[n]);
  2558. { file name }
  2559. linelist.concat(tai_string.create(fitem.Name+#0));
  2560. { directory index }
  2561. linelist.concat(tai_const.create_uleb128bit(fitem.DirIndex));
  2562. { last modification }
  2563. linelist.concat(tai_const.create_uleb128bit(0));
  2564. { file length }
  2565. linelist.concat(tai_const.create_uleb128bit(0));
  2566. end;
  2567. linelist.concat(tai_const.create_8bit(0));
  2568. { end of debug line header }
  2569. linelist.concat(tai_symbol.createname(target_asm.labelprefix+'ehdebug_line0',AT_DATA,0));
  2570. linelist.concat(tai_comment.Create(strpnew('=== header end ===')));
  2571. { add line program }
  2572. linelist.concatList(asmline);
  2573. { end of debug line table }
  2574. linelist.concat(tai_symbol.createname(target_asm.labelprefix+'edebug_line0',AT_DATA,0));
  2575. flist.free;
  2576. end;
  2577. procedure TDebugInfoDwarf.inserttypeinfo;
  2578. var
  2579. storefilepos : tfileposinfo;
  2580. lenstartlabel : tasmlabel;
  2581. i : longint;
  2582. def: tdef;
  2583. dbgname: string;
  2584. begin
  2585. current_module.flags:=current_module.flags or uf_has_dwarf_debuginfo;
  2586. storefilepos:=current_filepos;
  2587. current_filepos:=current_module.mainfilepos;
  2588. currabbrevnumber:=0;
  2589. defnumberlist:=TFPObjectList.create(false);
  2590. deftowritelist:=TFPObjectList.create(false);
  2591. { not exported (FK)
  2592. FILEREC
  2593. TEXTREC
  2594. }
  2595. vardatadef:=trecorddef(search_system_type('TVARDATA').typedef);
  2596. { write start labels }
  2597. new_section(current_asmdata.asmlists[al_dwarf_info],sec_debug_info,'',0);
  2598. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.createname(target_asm.labelprefix+'debug_info0',AT_DATA,0));
  2599. { start abbrev section }
  2600. new_section(current_asmdata.asmlists[al_dwarf_abbrev],sec_debug_abbrev,'',0);
  2601. { debug info header }
  2602. current_asmdata.getlabel(lenstartlabel,alt_dbgfile);
  2603. { size }
  2604. if use_64bit_headers then
  2605. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_32bit(longint($FFFFFFFF)));
  2606. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_rel_sym(offsetreltype,
  2607. lenstartlabel,current_asmdata.RefAsmSymbol(target_asm.labelprefix+'edebug_info0')));
  2608. current_asmdata.asmlists[al_dwarf_info].concat(tai_label.create(lenstartlabel));
  2609. { version }
  2610. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(dwarf_version));
  2611. { abbrev table (=relative from section start)}
  2612. if not(tf_dwarf_relative_addresses in target_info.flags) then
  2613. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_type_sym(offsetabstype,
  2614. current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_abbrev0')))
  2615. else
  2616. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_rel_sym(offsetreltype,
  2617. current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_abbrevsection0'),
  2618. current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_abbrev0')));
  2619. { address size }
  2620. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(sizeof(pint)));
  2621. { first manadatory compilation unit TAG }
  2622. append_entry(DW_TAG_compile_unit,true,[
  2623. DW_AT_name,DW_FORM_string,relative_dwarf_path(current_module.sourcefiles.get_file(1).path^+current_module.sourcefiles.get_file(1).name^)+#0,
  2624. DW_AT_producer,DW_FORM_string,'Free Pascal '+full_version_string+' '+date_string+#0,
  2625. DW_AT_comp_dir,DW_FORM_string,BSToSlash(FixPath(GetCurrentDir,false))+#0,
  2626. DW_AT_language,DW_FORM_data1,DW_LANG_Pascal83,
  2627. DW_AT_identifier_case,DW_FORM_data1,DW_ID_case_insensitive]);
  2628. { reference to line info section }
  2629. if not(tf_dwarf_relative_addresses in target_info.flags) then
  2630. append_labelentry_dataptr_abs(DW_AT_stmt_list,current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_line0'))
  2631. else
  2632. append_labelentry_dataptr_rel(DW_AT_stmt_list,
  2633. current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_linesection0'),
  2634. current_asmdata.RefAsmSymbol(target_asm.labelprefix+'debug_line0'));
  2635. if (m_objectivec1 in current_settings.modeswitches) then
  2636. append_attribute(DW_AT_APPLE_major_runtime_vers,DW_FORM_data1,[1]);
  2637. dbgname:=make_mangledname('DEBUGSTART',current_module.localsymtable,'');
  2638. if (target_info.system in systems_darwin) then
  2639. dbgname:='L'+dbgname;
  2640. append_labelentry(DW_AT_low_pc,current_asmdata.RefAsmSymbol(dbgname));
  2641. dbgname:=make_mangledname('DEBUGEND',current_module.localsymtable,'');
  2642. if (target_info.system in systems_darwin) then
  2643. dbgname:='L'+dbgname;
  2644. append_labelentry(DW_AT_high_pc,current_asmdata.RefAsmSymbol(dbgname));
  2645. finish_entry;
  2646. { write all global/local variables. This will flag all required tdefs }
  2647. if assigned(current_module.globalsymtable) then
  2648. write_symtable_syms(current_asmdata.asmlists[al_dwarf_info],current_module.globalsymtable);
  2649. if assigned(current_module.localsymtable) then
  2650. write_symtable_syms(current_asmdata.asmlists[al_dwarf_info],current_module.localsymtable);
  2651. { write all procedures and methods. This will flag all required tdefs }
  2652. if assigned(current_module.globalsymtable) then
  2653. write_symtable_procdefs(current_asmdata.asmlists[al_dwarf_info],current_module.globalsymtable);
  2654. if assigned(current_module.localsymtable) then
  2655. write_symtable_procdefs(current_asmdata.asmlists[al_dwarf_info],current_module.localsymtable);
  2656. { reset unit type info flag }
  2657. reset_unit_type_info;
  2658. { write used types from the used units }
  2659. write_used_unit_type_info(current_asmdata.asmlists[al_dwarf_info],current_module);
  2660. { last write the types from this unit }
  2661. if assigned(current_module.globalsymtable) then
  2662. write_symtable_defs(current_asmdata.asmlists[al_dwarf_info],current_module.globalsymtable);
  2663. if assigned(current_module.localsymtable) then
  2664. write_symtable_defs(current_asmdata.asmlists[al_dwarf_info],current_module.localsymtable);
  2665. { write defs not written yet }
  2666. write_remaining_defs_to_write(current_asmdata.asmlists[al_dwarf_info]);
  2667. { close compilation unit entry }
  2668. finish_children;
  2669. { end of debug info table }
  2670. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.createname(target_asm.labelprefix+'edebug_info0',AT_DATA,0));
  2671. { end of abbrev table }
  2672. current_asmdata.asmlists[al_dwarf_abbrev].concat(tai_const.create_8bit(0));
  2673. { reset all def labels }
  2674. for i:=0 to defnumberlist.count-1 do
  2675. begin
  2676. def := tdef(defnumberlist[i]);
  2677. if assigned(def) then
  2678. begin
  2679. def.dwarf_lab:=nil;
  2680. def.dbg_state:=dbg_state_unused;
  2681. end;
  2682. end;
  2683. defnumberlist.free;
  2684. defnumberlist:=nil;
  2685. deftowritelist.free;
  2686. deftowritelist:=nil;
  2687. current_filepos:=storefilepos;
  2688. end;
  2689. procedure TDebugInfoDwarf.referencesections(list:TAsmList);
  2690. var
  2691. hp : tmodule;
  2692. begin
  2693. { Reference all DEBUGINFO sections from the main .fpc section }
  2694. { to prevent eliminating them by smartlinking }
  2695. if (target_info.system in ([system_powerpc_macos]+systems_darwin)) then
  2696. exit;
  2697. new_section(list,sec_fpc,'links',0);
  2698. { include reference to all debuginfo sections of used units }
  2699. hp:=tmodule(loaded_units.first);
  2700. while assigned(hp) do
  2701. begin
  2702. If (hp.flags and uf_has_dwarf_debuginfo)=uf_has_dwarf_debuginfo then
  2703. begin
  2704. list.concat(Tai_const.Createname(make_mangledname('DEBUGSTART',hp.localsymtable,''),0));
  2705. list.concat(Tai_const.Createname(make_mangledname('DEBUGEND',hp.localsymtable,''),0));
  2706. end;
  2707. hp:=tmodule(hp.next);
  2708. end;
  2709. end;
  2710. function TDebugInfoDwarf.symname(sym: tsym): String;
  2711. begin
  2712. if (sym.typ=paravarsym) and
  2713. (vo_is_self in tparavarsym(sym).varoptions) then
  2714. { We use 'this' for regular methods because that's what gdb triggers
  2715. on to automatically search fields. Don't do this for class methods,
  2716. because search class fields is not supported, and gdb 7.0+ fails
  2717. in this case because "this" is not a record in that case (it's a
  2718. pointer to a vmt) }
  2719. if not is_objc_class_or_protocol(tdef(sym.owner.defowner.owner.defowner)) and
  2720. not(po_classmethod in tabstractprocdef(sym.owner.defowner).procoptions) then
  2721. result:='this'
  2722. else
  2723. result:='self'
  2724. else if (sym.typ=typesym) and
  2725. is_objc_class_or_protocol(ttypesym(sym).typedef) then
  2726. result:=tobjectdef(ttypesym(sym).typedef).objextname^
  2727. else if (ds_dwarf_method_class_prefix in current_settings.debugswitches) and
  2728. (sym.typ=procsym) and
  2729. (tprocsym(sym).owner.symtabletype=objectsymtable) then
  2730. result:=tprocsym(sym).owner.name^+'__'+sym.name
  2731. else
  2732. result:=sym.name;
  2733. end;
  2734. procedure tdebuginfodwarf.append_visibility(vis: tvisibility);
  2735. begin
  2736. case vis of
  2737. vis_private,
  2738. vis_strictprivate:
  2739. append_attribute(DW_AT_accessibility,DW_FORM_data1,[ord(DW_ACCESS_private)]);
  2740. vis_protected,
  2741. vis_strictprotected:
  2742. append_attribute(DW_AT_accessibility,DW_FORM_data1,[ord(DW_ACCESS_protected)]);
  2743. vis_public:
  2744. { default };
  2745. end;
  2746. end;
  2747. procedure TDebugInfoDwarf.insertlineinfo(list:TAsmList);
  2748. var
  2749. currfileinfo,
  2750. lastfileinfo : tfileposinfo;
  2751. currfuncname : pshortstring;
  2752. currsectype : TAsmSectiontype;
  2753. hp, hpend : tai;
  2754. infile : tinputfile;
  2755. prevcolumn,
  2756. diffline,
  2757. prevline,
  2758. prevfileidx,
  2759. currfileidx,
  2760. nolineinfolevel : Integer;
  2761. prevlabel,
  2762. currlabel : tasmlabel;
  2763. begin
  2764. { this function will always terminate the lineinfo block }
  2765. generated_lineinfo := true;
  2766. FillChar(lastfileinfo,sizeof(lastfileinfo),0);
  2767. currfuncname:=nil;
  2768. currsectype:=sec_code;
  2769. hp:=Tai(list.first);
  2770. prevcolumn := 0;
  2771. prevline := 1;
  2772. prevfileidx := 1;
  2773. prevlabel := nil;
  2774. nolineinfolevel:=0;
  2775. while assigned(hp) do
  2776. begin
  2777. case hp.typ of
  2778. ait_section :
  2779. currsectype:=tai_section(hp).sectype;
  2780. ait_function_name :
  2781. begin
  2782. currfuncname:=tai_function_name(hp).funcname;
  2783. asmline.concat(tai_comment.Create(strpnew('function: '+currfuncname^)));
  2784. end;
  2785. ait_force_line :
  2786. begin
  2787. lastfileinfo.line:=-1;
  2788. end;
  2789. ait_marker :
  2790. begin
  2791. case tai_marker(hp).kind of
  2792. mark_NoLineInfoStart:
  2793. inc(nolineinfolevel);
  2794. mark_NoLineInfoEnd:
  2795. dec(nolineinfolevel);
  2796. end;
  2797. end;
  2798. end;
  2799. if (currsectype=sec_code) and
  2800. (hp.typ=ait_instruction) and
  2801. (nolineinfolevel=0) then
  2802. begin
  2803. currfileinfo:=tailineinfo(hp).fileinfo;
  2804. { file changed ? (must be before line info) }
  2805. if (currfileinfo.fileindex<>0) and
  2806. ((lastfileinfo.fileindex<>currfileinfo.fileindex) or
  2807. (lastfileinfo.moduleindex<>currfileinfo.moduleindex)) then
  2808. begin
  2809. infile:=get_module(currfileinfo.moduleindex).sourcefiles.get_file(currfileinfo.fileindex);
  2810. if assigned(infile) then
  2811. begin
  2812. currfileidx := get_file_index(infile);
  2813. if prevfileidx <> currfileidx then
  2814. begin
  2815. list.insertbefore(tai_comment.Create(strpnew('path: '+infile.path^)), hp);
  2816. list.insertbefore(tai_comment.Create(strpnew('file: '+infile.name^)), hp);
  2817. list.insertbefore(tai_comment.Create(strpnew('indx: '+tostr(currfileidx))), hp);
  2818. { set file }
  2819. asmline.concat(tai_comment.Create(strpnew('path: '+infile.path^)));
  2820. asmline.concat(tai_comment.Create(strpnew('file: '+infile.name^)));
  2821. asmline.concat(tai_const.create_8bit(DW_LNS_set_file));
  2822. asmline.concat(tai_const.create_uleb128bit(currfileidx));
  2823. prevfileidx := currfileidx;
  2824. end;
  2825. { force new line info }
  2826. lastfileinfo.line:=-1;
  2827. end;
  2828. end;
  2829. { line changed ? }
  2830. if (lastfileinfo.line<>currfileinfo.line) and (currfileinfo.line<>0) then
  2831. begin
  2832. { set address }
  2833. current_asmdata.getlabel(currlabel, alt_dbgline);
  2834. list.insertbefore(tai_label.create(currlabel), hp);
  2835. asmline.concat(tai_comment.Create(strpnew('['+tostr(currfileinfo.line)+':'+tostr(currfileinfo.column)+']')));
  2836. if (prevlabel = nil) or
  2837. { darwin's assembler cannot create an uleb128 of the difference }
  2838. { between to symbols }
  2839. (target_info.system in systems_darwin) then
  2840. begin
  2841. asmline.concat(tai_const.create_8bit(DW_LNS_extended_op));
  2842. asmline.concat(tai_const.create_uleb128bit(1+sizeof(pint)));
  2843. asmline.concat(tai_const.create_8bit(DW_LNE_set_address));
  2844. asmline.concat(tai_const.create_sym(currlabel));
  2845. end
  2846. else
  2847. begin
  2848. asmline.concat(tai_const.create_8bit(DW_LNS_advance_pc));
  2849. asmline.concat(tai_const.create_rel_sym(aitconst_uleb128bit, prevlabel, currlabel));
  2850. end;
  2851. prevlabel := currlabel;
  2852. { set column }
  2853. if prevcolumn <> currfileinfo.column then
  2854. begin
  2855. asmline.concat(tai_const.create_8bit(DW_LNS_set_column));
  2856. asmline.concat(tai_const.create_uleb128bit(currfileinfo.column));
  2857. prevcolumn := currfileinfo.column;
  2858. end;
  2859. { set line }
  2860. diffline := currfileinfo.line - prevline;
  2861. if (diffline >= LINE_BASE) and (OPCODE_BASE + diffline - LINE_BASE <= 255) then
  2862. begin
  2863. { use special opcode, this also adds a row }
  2864. asmline.concat(tai_const.create_8bit(OPCODE_BASE + diffline - LINE_BASE));
  2865. end
  2866. else
  2867. begin
  2868. if diffline <> 0 then
  2869. begin
  2870. asmline.concat(tai_const.create_8bit(DW_LNS_advance_line));
  2871. asmline.concat(tai_const.create_sleb128bit(diffline));
  2872. end;
  2873. { no row added yet, do it manually }
  2874. asmline.concat(tai_const.create_8bit(DW_LNS_copy));
  2875. end;
  2876. prevline := currfileinfo.line;
  2877. end;
  2878. lastfileinfo:=currfileinfo;
  2879. end;
  2880. hpend:=hp;
  2881. hp:=tai(hp.next);
  2882. end;
  2883. if assigned(hpend) then
  2884. begin
  2885. { set address for end (see appendix 3 of dwarf 2 specs) }
  2886. current_asmdata.getlabel(currlabel, alt_dbgline);
  2887. list.insertafter(tai_label.create(currlabel), hpend);
  2888. asmline.concat(tai_const.create_8bit(DW_LNS_extended_op));
  2889. asmline.concat(tai_const.create_uleb128bit(1+sizeof(pint)));
  2890. asmline.concat(tai_const.create_8bit(DW_LNE_set_address));
  2891. asmline.concat(tai_const.create_sym(currlabel));
  2892. end;
  2893. { end sequence }
  2894. asmline.concat(tai_const.Create_8bit(DW_LNS_extended_op));
  2895. asmline.concat(tai_const.Create_8bit(1));
  2896. asmline.concat(tai_const.Create_8bit(DW_LNE_end_sequence));
  2897. asmline.concat(tai_comment.Create(strpnew('###################')));
  2898. end;
  2899. procedure TDebugInfoDwarf.finish_lineinfo;
  2900. var
  2901. infile: tinputfile;
  2902. begin
  2903. { only needed if no line info at all has been generated }
  2904. if generated_lineinfo then
  2905. begin
  2906. { reset for next module compilation }
  2907. generated_lineinfo:=false;
  2908. exit;
  2909. end;
  2910. { at least the Darwin linker is annoyed if you do not }
  2911. { finish the lineinfo section, or if it doesn't }
  2912. { contain at least one file name and set_address }
  2913. infile:=current_module.sourcefiles.get_file(1);
  2914. if not assigned(infile) then
  2915. internalerror(2006020211);
  2916. asmline.concat(tai_const.create_8bit(DW_LNS_set_file));
  2917. asmline.concat(tai_const.create_uleb128bit(get_file_index(infile)));
  2918. asmline.concat(tai_const.create_8bit(DW_LNS_extended_op));
  2919. asmline.concat(tai_const.create_uleb128bit(1+sizeof(pint)));
  2920. asmline.concat(tai_const.create_8bit(DW_LNE_set_address));
  2921. asmline.concat(tai_const.create_sym(nil));
  2922. asmline.concat(tai_const.create_8bit(DW_LNS_extended_op));
  2923. asmline.concat(tai_const.Create_8bit(1));
  2924. asmline.concat(tai_const.Create_8bit(DW_LNE_end_sequence));
  2925. asmline.concat(tai_comment.Create(strpnew('###################')));
  2926. end;
  2927. {****************************************************************************
  2928. TDebugInfoDwarf2
  2929. ****************************************************************************}
  2930. procedure TDebugInfoDwarf2.appenddef_file(list:TAsmList;def: tfiledef);
  2931. begin
  2932. { gdb 6.4 doesn't support files so far so we use some fake recorddef
  2933. file recs. are less than 1k so using data2 is enough }
  2934. if assigned(def.typesym) then
  2935. append_entry(DW_TAG_structure_type,false,[
  2936. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  2937. DW_AT_byte_size,DW_FORM_udata,def.size
  2938. ])
  2939. else
  2940. append_entry(DW_TAG_structure_type,false,[
  2941. DW_AT_byte_size,DW_FORM_udata,def.size
  2942. ]);
  2943. finish_entry;
  2944. end;
  2945. procedure TDebugInfoDwarf2.appenddef_formal(list:TAsmList;def: tformaldef);
  2946. begin
  2947. { gdb 6.4 doesn't support DW_TAG_unspecified_type so we
  2948. replace it with a unsigned type with size 0 (FK)
  2949. }
  2950. append_entry(DW_TAG_base_type,false,[
  2951. DW_AT_name,DW_FORM_string,'FormalDef'#0,
  2952. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned,
  2953. DW_AT_byte_size,DW_FORM_data1,0
  2954. ]);
  2955. finish_entry;
  2956. end;
  2957. procedure TDebugInfoDwarf2.appenddef_object(list:TAsmList;def: tobjectdef);
  2958. procedure doappend;
  2959. begin
  2960. { Objective-C class: same as regular class, except for
  2961. a) Apple-specific tag that identifies it as an Objective-C class
  2962. b) use extname^ instead of objname
  2963. }
  2964. if (def.objecttype=odt_objcclass) then
  2965. append_entry(DW_TAG_structure_type,true,[
  2966. DW_AT_name,DW_FORM_string,def.objextname^+#0,
  2967. DW_AT_byte_size,DW_FORM_udata,tobjectsymtable(def.symtable).datasize,
  2968. DW_AT_APPLE_runtime_class,DW_FORM_data1,DW_LANG_ObjC
  2969. ])
  2970. else if assigned(def.objname) then
  2971. append_entry(DW_TAG_structure_type,true,[
  2972. DW_AT_name,DW_FORM_string,def.objname^+#0,
  2973. DW_AT_byte_size,DW_FORM_udata,tobjectsymtable(def.symtable).datasize
  2974. ])
  2975. else
  2976. append_entry(DW_TAG_structure_type,true,[
  2977. DW_AT_byte_size,DW_FORM_udata,tobjectsymtable(def.symtable).datasize
  2978. ]);
  2979. finish_entry;
  2980. if assigned(def.childof) then
  2981. begin
  2982. append_entry(DW_TAG_inheritance,false,[
  2983. DW_AT_accessibility,DW_FORM_data1,DW_ACCESS_public,
  2984. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(0)
  2985. ]);
  2986. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  2987. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(0));
  2988. if (def.childof.dbg_state=dbg_state_unused) then
  2989. def.childof.dbg_state:=dbg_state_used;
  2990. if is_class_or_interface_or_dispinterface_or_objc(def) then
  2991. append_labelentry_ref(DW_AT_type,def_dwarf_class_struct_lab(def.childof))
  2992. else
  2993. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.childof));
  2994. finish_entry;
  2995. end;
  2996. if (oo_has_vmt in def.objectoptions) and
  2997. (not assigned(def.childof) or
  2998. not(oo_has_vmt in def.childof.objectoptions)) then
  2999. begin
  3000. { vmt field }
  3001. append_entry(DW_TAG_member,false,[
  3002. DW_AT_artificial,DW_FORM_flag,true,
  3003. DW_AT_name,DW_FORM_string,'_vptr$'+def.objname^+#0,
  3004. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(def.vmt_offset)
  3005. ]);
  3006. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  3007. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(def.vmt_offset));
  3008. { should be changed into a pointer to a function returning an }
  3009. { int and with TAG_unspecified_parameters }
  3010. if (voidpointertype.dbg_state=dbg_state_unused) then
  3011. voidpointertype.dbg_state:=dbg_state_used;
  3012. append_labelentry_ref(DW_AT_type,def_dwarf_lab(voidpointertype));
  3013. finish_entry;
  3014. end;
  3015. def.symtable.symList.ForEachCall(@enum_membersyms_callback,nil);
  3016. { Write the methods in the scope of the class/object, except for Objective-C. }
  3017. if is_objc_class_or_protocol(def) then
  3018. finish_children;
  3019. { don't write procdefs of externally defined classes, gcc doesn't
  3020. either (info is probably gotten from ObjC runtime) }
  3021. if not(oo_is_external in def.objectoptions) then
  3022. write_symtable_procdefs(current_asmdata.asmlists[al_dwarf_info],def.symtable);
  3023. if not is_objc_class_or_protocol(def) then
  3024. finish_children;
  3025. end;
  3026. begin
  3027. case def.objecttype of
  3028. odt_cppclass,
  3029. odt_object:
  3030. doappend;
  3031. odt_interfacecom,
  3032. odt_interfacecorba,
  3033. odt_dispinterface,
  3034. odt_class,
  3035. odt_objcclass:
  3036. begin
  3037. if (def.objecttype<>odt_objcclass) then
  3038. begin
  3039. { implicit pointer }
  3040. append_entry(DW_TAG_pointer_type,false,[]);
  3041. append_labelentry_ref(DW_AT_type,def_dwarf_class_struct_lab(def));
  3042. finish_entry;
  3043. end;
  3044. if not(tf_dwarf_only_local_labels in target_info.flags) then
  3045. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create_global(def_dwarf_class_struct_lab(def),0))
  3046. else
  3047. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(def_dwarf_class_struct_lab(def),0));
  3048. doappend;
  3049. end;
  3050. odt_objcprotocol:
  3051. begin
  3052. append_entry(DW_TAG_pointer_type,false,[]);
  3053. append_labelentry_ref(DW_AT_type,def_dwarf_lab(voidpointertype));
  3054. finish_entry;
  3055. end;
  3056. else
  3057. internalerror(200602041);
  3058. end;
  3059. end;
  3060. procedure TDebugInfoDwarf2.appenddef_set_intern(list:TAsmList;def: tsetdef; force_tag_set: boolean);
  3061. var
  3062. lab: tasmlabel;
  3063. begin
  3064. if force_tag_set or
  3065. (ds_dwarf_sets in current_settings.debugswitches) then
  3066. begin
  3067. { current (20070704 -- patch was committed on 20060513) gdb cvs supports set types }
  3068. if assigned(def.typesym) then
  3069. append_entry(DW_TAG_set_type,false,[
  3070. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  3071. DW_AT_byte_size,DW_FORM_data2,def.size
  3072. ])
  3073. else
  3074. append_entry(DW_TAG_set_type,false,[
  3075. DW_AT_byte_size,DW_FORM_data2,def.size
  3076. ]);
  3077. if assigned(def.elementdef) then
  3078. begin
  3079. if not(tf_dwarf_only_local_labels in target_info.flags) then
  3080. current_asmdata.getdatalabel(lab)
  3081. else
  3082. current_asmdata.getaddrlabel(lab);
  3083. append_labelentry_ref(DW_AT_type,lab);
  3084. finish_entry;
  3085. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(lab,0));
  3086. { Sets of e.g. [1..5] are actually stored as a set of [0..7],
  3087. so write the exact boundaries of the set here. Let's hope no
  3088. debugger ever rejects this because this "subrange" type can
  3089. actually have a larger range than the original one. }
  3090. append_entry(DW_TAG_subrange_type,false,[
  3091. DW_AT_lower_bound,DW_FORM_sdata,def.setbase,
  3092. DW_AT_upper_bound,DW_FORM_sdata,get_max_value(def.elementdef).svalue
  3093. ]);
  3094. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.elementdef))
  3095. end
  3096. end
  3097. else
  3098. begin
  3099. { gdb versions which don't support sets refuse to load the debug }
  3100. { info of modules that contain set tags }
  3101. if assigned(def.typesym) then
  3102. append_entry(DW_TAG_base_type,false,[
  3103. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  3104. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned,
  3105. DW_AT_byte_size,DW_FORM_data2,def.size
  3106. ])
  3107. else
  3108. append_entry(DW_TAG_base_type,false,[
  3109. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned,
  3110. DW_AT_byte_size,DW_FORM_data2,def.size
  3111. ]);
  3112. end;
  3113. finish_entry;
  3114. end;
  3115. procedure TDebugInfoDwarf2.appenddef_set(list:TAsmList;def: tsetdef);
  3116. begin
  3117. appenddef_set_intern(list,def,false);
  3118. end;
  3119. procedure TDebugInfoDwarf2.appenddef_undefined(list:TAsmList;def: tundefineddef);
  3120. begin
  3121. { gdb 6.4 doesn't support DW_TAG_unspecified_type so we
  3122. replace it with a unsigned type with size 0 (FK)
  3123. }
  3124. append_entry(DW_TAG_base_type,false,[
  3125. DW_AT_name,DW_FORM_string,'FormalDef'#0,
  3126. DW_AT_encoding,DW_FORM_data1,DW_ATE_unsigned,
  3127. DW_AT_byte_size,DW_FORM_data1,0
  3128. ]);
  3129. finish_entry;
  3130. end;
  3131. procedure TDebugInfoDwarf2.appenddef_variant(list:TAsmList;def: tvariantdef);
  3132. begin
  3133. { variants aren't known to dwarf2 but writting tvardata should be enough }
  3134. appenddef_record_named(list,trecorddef(vardatadef),'Variant');
  3135. end;
  3136. function TDebugInfoDwarf2.dwarf_version: Word;
  3137. begin
  3138. Result:=2;
  3139. end;
  3140. {****************************************************************************
  3141. TDebugInfoDwarf3
  3142. ****************************************************************************}
  3143. procedure TDebugInfoDwarf3.append_labelentry_addr_ref(attr : tdwarf_attribute;sym : tasmsymbol);
  3144. begin
  3145. AddConstToAbbrev(ord(DW_FORM_ref_addr));
  3146. { Since Dwarf 3 the length of a DW_FORM_ref_addr entry is not dependent on the pointer size of the
  3147. target platform, but on the used Dwarf-format (32 bit or 64 bit) for the current compilation section. }
  3148. if use_64bit_headers then
  3149. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.Create_type_sym(aitconst_64bit,sym))
  3150. else
  3151. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.Create_type_sym(aitconst_32bit,sym));
  3152. end;
  3153. procedure tdebuginfodwarf3.appenddef_array(list: tasmlist; def: tarraydef);
  3154. begin
  3155. if not is_dynamic_array(def) then
  3156. begin
  3157. inherited appenddef_array(list,def);
  3158. exit;
  3159. end;
  3160. if assigned(def.typesym) then
  3161. append_entry(DW_TAG_array_type,true,[
  3162. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  3163. DW_AT_data_location,DW_FORM_block1,2
  3164. ])
  3165. else
  3166. append_entry(DW_TAG_array_type,true,[
  3167. DW_AT_data_location,DW_FORM_block1,2
  3168. ]);
  3169. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_push_object_address)));
  3170. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref)));
  3171. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.elementdef));
  3172. finish_entry;
  3173. { to simplify things, we don't write a multidimensional array here }
  3174. append_entry(DW_TAG_subrange_type,false,[
  3175. DW_AT_byte_stride,DW_FORM_udata,def.elesize,
  3176. DW_AT_lower_bound,DW_FORM_udata,0,
  3177. DW_AT_upper_bound,DW_FORM_block1,14
  3178. ]);
  3179. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_push_object_address)));
  3180. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref)));
  3181. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_dup)));
  3182. { pointer = nil? }
  3183. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_bra)));
  3184. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(5));
  3185. { yes -> length = 0 }
  3186. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_const1s)));
  3187. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(byte(-1)));
  3188. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_skip)));
  3189. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(3));
  3190. { no -> load length }
  3191. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_lit0)+sizeof(ptrint)));
  3192. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_minus)));
  3193. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref)));
  3194. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.rangedef));
  3195. finish_entry;
  3196. finish_children;
  3197. end;
  3198. procedure tdebuginfodwarf3.appenddef_string(list: tasmlist; def: tstringdef);
  3199. procedure addstringdef(const name: shortstring; chardef: tdef; deref: boolean; lensize: aint);
  3200. var
  3201. upperopcodes: longint;
  3202. begin
  3203. { deref=true -> ansi/unicde/widestring; deref = false -> short/longstring }
  3204. if assigned(def.typesym) then
  3205. append_entry(DW_TAG_array_type,true,[
  3206. DW_AT_name,DW_FORM_string,name+#0,
  3207. DW_AT_data_location,DW_FORM_block1,2+ord(not(deref))
  3208. ])
  3209. else
  3210. append_entry(DW_TAG_array_type,true,[
  3211. DW_AT_data_location,DW_FORM_block1,2+ord(not(deref))
  3212. ]);
  3213. { in all cases we start with the address of the string }
  3214. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_push_object_address)));
  3215. if deref then
  3216. begin
  3217. { ansi/unicode/widestring -> dereference the address of the string, and then
  3218. we point to address of the string
  3219. }
  3220. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref)));
  3221. end
  3222. else
  3223. begin
  3224. { shortstring characters begin at string[1], so add one to the string's address }
  3225. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_lit0)+lensize));
  3226. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus)))
  3227. end;
  3228. { reference to the element type of the string }
  3229. append_labelentry_ref(DW_AT_type,def_dwarf_lab(chardef));
  3230. finish_entry;
  3231. { now the information about the length of the string }
  3232. if deref then
  3233. begin
  3234. if (chardef.size=1) then
  3235. upperopcodes:=13
  3236. else
  3237. upperopcodes:=15;
  3238. { lower bound is always 1, upper bound (length) needs to be calculated }
  3239. append_entry(DW_TAG_subrange_type,false,[
  3240. DW_AT_lower_bound,DW_FORM_udata,1,
  3241. DW_AT_upper_bound,DW_FORM_block1,upperopcodes
  3242. ]);
  3243. { high(string) is stored sizeof(ptrint) bytes before the string data }
  3244. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_push_object_address)));
  3245. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref)));
  3246. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_dup)));
  3247. { pointer = nil? }
  3248. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_bra)));
  3249. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(4));
  3250. { yes -> length = 0 }
  3251. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_lit0)));
  3252. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_skip)));
  3253. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_16bit(3));
  3254. { no -> load length }
  3255. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_lit0)+sizeof(ptrint)));
  3256. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_minus)));
  3257. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref)));
  3258. { for widestrings, the length is specified in bytes, so divide by two }
  3259. if (upperopcodes=15) then
  3260. begin
  3261. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_lit1)));
  3262. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_shr)));
  3263. end;
  3264. end
  3265. else
  3266. begin
  3267. append_entry(DW_TAG_subrange_type,false,[
  3268. DW_AT_lower_bound,DW_FORM_udata,1,
  3269. DW_AT_upper_bound,DW_FORM_block1,3
  3270. ]);
  3271. { for shortstrings, the length is the first byte of the string }
  3272. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_push_object_address)));
  3273. { load 1 byte }
  3274. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_deref_size)));
  3275. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(lensize));
  3276. end;
  3277. finish_entry;
  3278. finish_children;
  3279. end;
  3280. begin
  3281. case def.stringtype of
  3282. st_shortstring:
  3283. begin
  3284. addstringdef('ShortString',cchartype,false,1);
  3285. end;
  3286. st_longstring:
  3287. begin
  3288. {$ifdef cpu64bitaddr}
  3289. addstringdef('LongString',cchartype,false,8);
  3290. {$else cpu64bitaddr}
  3291. addstringdef('LongString',cchartype,false,4);
  3292. {$endif cpu64bitaddr}
  3293. end;
  3294. st_ansistring:
  3295. begin
  3296. addstringdef('AnsiString',cchartype,true,-1);
  3297. end;
  3298. st_unicodestring:
  3299. begin
  3300. addstringdef('UnicodeString',cwidechartype,true,-1);
  3301. end;
  3302. st_widestring:
  3303. begin
  3304. if not(tf_winlikewidestring in target_info.flags) then
  3305. addstringdef('WideString',cwidechartype,true,-1)
  3306. else
  3307. begin
  3308. { looks like a pwidechar (no idea about length location) }
  3309. append_entry(DW_TAG_pointer_type,false,[]);
  3310. append_labelentry_ref(DW_AT_type,def_dwarf_lab(cwidechartype));
  3311. finish_entry;
  3312. end;
  3313. end;
  3314. end;
  3315. end;
  3316. procedure TDebugInfoDwarf3.appenddef_file(list:TAsmList;def: tfiledef);
  3317. begin
  3318. if assigned(def.typesym) then
  3319. append_entry(DW_TAG_file_type,false,[
  3320. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0,
  3321. DW_AT_byte_size,DW_FORM_data2,def.size
  3322. ])
  3323. else
  3324. append_entry(DW_TAG_file_type,false,[
  3325. DW_AT_byte_size,DW_FORM_data2,def.size
  3326. ]);
  3327. if tfiledef(def).filetyp=ft_typed then
  3328. append_labelentry_ref(DW_AT_type,def_dwarf_lab(tfiledef(def).typedfiledef));
  3329. finish_entry;
  3330. end;
  3331. procedure TDebugInfoDwarf3.appenddef_formal(list:TAsmList;def: tformaldef);
  3332. begin
  3333. append_entry(DW_TAG_unspecified_type,false,[
  3334. ]);
  3335. finish_entry;
  3336. end;
  3337. procedure TDebugInfoDwarf3.appenddef_object(list:TAsmList;def: tobjectdef);
  3338. procedure dostruct(tag: tdwarf_tag);
  3339. begin
  3340. if assigned(def.objname) then
  3341. append_entry(tag,true,[
  3342. DW_AT_name,DW_FORM_string,def.objrealname^+#0,
  3343. DW_AT_byte_size,DW_FORM_udata,def.size
  3344. ])
  3345. else
  3346. append_entry(DW_TAG_structure_type,true,[
  3347. DW_AT_byte_size,DW_FORM_udata,def.size
  3348. ]);
  3349. finish_entry;
  3350. end;
  3351. procedure doimplicitpointer;
  3352. var
  3353. obj : tasmlabel;
  3354. begin
  3355. if not(tf_dwarf_only_local_labels in target_info.flags) then
  3356. current_asmdata.getdatalabel(obj)
  3357. else
  3358. current_asmdata.getaddrlabel(obj);
  3359. { implicit pointer }
  3360. append_entry(DW_TAG_pointer_type,false,[]);
  3361. append_labelentry_ref(DW_AT_type,obj);
  3362. finish_entry;
  3363. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(obj,0));
  3364. end;
  3365. procedure doparent(isinterface: boolean);
  3366. begin
  3367. if not assigned(def.childof) then
  3368. exit;
  3369. if isinterface then
  3370. begin
  3371. append_entry(DW_TAG_inheritance,false,[]);
  3372. end
  3373. else
  3374. begin
  3375. append_entry(DW_TAG_inheritance,false,[
  3376. DW_AT_accessibility,DW_FORM_data1,DW_ACCESS_public,
  3377. DW_AT_data_member_location,DW_FORM_block1,1+lengthuleb128(0)
  3378. ]);
  3379. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_8bit(ord(DW_OP_plus_uconst)));
  3380. current_asmdata.asmlists[al_dwarf_info].concat(tai_const.create_uleb128bit(0));
  3381. end;
  3382. append_labelentry_ref(DW_AT_type,def_dwarf_lab(def.childof));
  3383. finish_entry;
  3384. end;
  3385. var
  3386. n: integer;
  3387. begin
  3388. case def.objecttype of
  3389. odt_cppclass,
  3390. odt_object:
  3391. begin
  3392. dostruct(DW_TAG_structure_type);
  3393. doparent(false);
  3394. end;
  3395. odt_interfacecom,
  3396. odt_interfacecorba,
  3397. odt_dispinterface:
  3398. begin
  3399. dostruct(DW_TAG_interface_type);
  3400. doparent(true);
  3401. end;
  3402. odt_class:
  3403. begin
  3404. { not sure if the implicit pointer is needed for tag_class (MWE)}
  3405. {
  3406. doimplicitpointer;
  3407. }
  3408. dostruct(DW_TAG_class_type);
  3409. doparent(false);
  3410. end;
  3411. else
  3412. internalerror(200609171);
  3413. end;
  3414. { add implemented interfaces }
  3415. if assigned(def.ImplementedInterfaces) then
  3416. for n := 0 to def.ImplementedInterfaces.count-1 do
  3417. begin
  3418. append_entry(DW_TAG_inheritance,false,[]);
  3419. append_labelentry_ref(DW_AT_type,def_dwarf_lab(TImplementedInterface(def.ImplementedInterfaces[n]).IntfDef));
  3420. finish_entry;
  3421. end;
  3422. { add members }
  3423. def.symtable.symList.ForEachCall(@enum_membersyms_callback,nil);
  3424. finish_children;
  3425. end;
  3426. procedure TDebugInfoDwarf3.appenddef_set(list:TAsmList;def: tsetdef);
  3427. begin
  3428. appenddef_set_intern(list,def,true);
  3429. end;
  3430. procedure TDebugInfoDwarf3.appenddef_undefined(list:TAsmList;def: tundefineddef);
  3431. begin
  3432. { ??? can a undefined def have a typename ? }
  3433. if assigned(def.typesym) then
  3434. append_entry(DW_TAG_unspecified_type,false,[
  3435. DW_AT_name,DW_FORM_string,symname(def.typesym)+#0
  3436. ])
  3437. else
  3438. append_entry(DW_TAG_unspecified_type,false,[
  3439. ]);
  3440. finish_entry;
  3441. end;
  3442. procedure TDebugInfoDwarf3.appenddef_variant(list:TAsmList;def: tvariantdef);
  3443. const
  3444. VARIANTS: array[1..27] of record Value: Word; Name: String end = (
  3445. (value:0; name:''),
  3446. (value:1; name:''),
  3447. (value:2; name:'VSMALLINT'),
  3448. (value:3; name:'VINTEGER'),
  3449. (value:4; name:'VSINGLE'),
  3450. (value:5; name:'VDOUBLE'),
  3451. (value:6; name:'VCURRENCY'),
  3452. (value:7; name:'VDATE'),
  3453. (value:8; name:'VOLESTR'),
  3454. (value:9; name:'VDISPATCH'),
  3455. (value:10; name:'VERROR'),
  3456. (value:11; name:'VBOOLEAN'),
  3457. (value:12; name:''),
  3458. (value:13; name:'VUNKNOWN'),
  3459. (value:14; name:''),
  3460. (value:16; name:'VSHORTINT'),
  3461. (value:17; name:'VBYTE'),
  3462. (value:18; name:'VWORD'),
  3463. (value:19; name:'VLONGWORD'),
  3464. (value:20; name:'VINT64'),
  3465. (value:21; name:'VQWORD'),
  3466. (value:36; name:'VRECORD'),
  3467. (value:$48; name:''),
  3468. (value:$100; name:'VSTRING'),
  3469. (value:$101; name:'VANY'),
  3470. (value:$2000; name:'VARRAY'),
  3471. (value:$4000; name:'VPOINTER')
  3472. );
  3473. var
  3474. fs: tfieldvarsym;
  3475. lbl: tasmlabel;
  3476. idx: integer;
  3477. begin
  3478. { it could be done with DW_TAG_variant for the union part (if that info was available)
  3479. now we do it manually for variants (MWE) }
  3480. { struct }
  3481. append_entry(DW_TAG_structure_type,true,[
  3482. DW_AT_name,DW_FORM_string,'Variant'#0,
  3483. DW_AT_byte_size,DW_FORM_udata,vardatadef.size
  3484. ]);
  3485. finish_entry;
  3486. append_entry(DW_TAG_variant_part,true,[
  3487. ]);
  3488. current_asmdata.getaddrlabel(lbl);
  3489. append_labelentry_ref(DW_AT_discr,lbl);
  3490. finish_entry;
  3491. { discriminant }
  3492. fs := tfieldvarsym(vardatadef.symtable.Find('VTYPE'));
  3493. if (fs = nil) or (fs.typ <> fieldvarsym) then
  3494. internalerror(200609271);
  3495. current_asmdata.asmlists[al_dwarf_info].concat(tai_symbol.create(lbl,0));
  3496. appendsym_fieldvar(list,fs);
  3497. { variants }
  3498. for idx := Low(VARIANTS) to High(VARIANTS) do
  3499. begin
  3500. append_entry(DW_TAG_variant,true,[
  3501. DW_AT_discr_value,DW_FORM_udata,VARIANTS[idx].value
  3502. ]);
  3503. finish_entry;
  3504. if VARIANTS[idx].name <> '' then
  3505. begin
  3506. fs := tfieldvarsym(vardatadef.symtable.Find(VARIANTS[idx].name));
  3507. if (fs = nil) or (fs.typ <> fieldvarsym) then
  3508. internalerror(20060927200+idx);
  3509. appendsym_fieldvar(list,fs);
  3510. end;
  3511. finish_children; { variant }
  3512. end;
  3513. finish_children; { variant part }
  3514. finish_children; { struct }
  3515. end;
  3516. function TDebugInfoDwarf3.dwarf_version: Word;
  3517. begin
  3518. Result:=3;
  3519. end;
  3520. function TDebugInfoDwarf3.symname(sym: tsym): String;
  3521. begin
  3522. Result:=sym.realname;
  3523. end;
  3524. {****************************************************************************
  3525. ****************************************************************************}
  3526. const
  3527. dbg_dwarf2_info : tdbginfo =
  3528. (
  3529. id : dbg_dwarf2;
  3530. idtxt : 'DWARF2';
  3531. );
  3532. dbg_dwarf3_info : tdbginfo =
  3533. (
  3534. id : dbg_dwarf3;
  3535. idtxt : 'DWARF3';
  3536. );
  3537. initialization
  3538. RegisterDebugInfo(dbg_dwarf2_info,TDebugInfoDwarf2);
  3539. RegisterDebugInfo(dbg_dwarf3_info,TDebugInfoDwarf3);
  3540. end.