ogelf.pas 39 KB

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  1. {
  2. Copyright (c) 1998-2006 by Peter Vreman
  3. Contains the binary elf writer
  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. unit ogelf;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. { common }
  22. cclasses,globtype,
  23. { target }
  24. systems,
  25. { assembler }
  26. cpuinfo,cpubase,aasmbase,aasmtai,aasmdata,assemble,
  27. { output }
  28. ogbase,
  29. owbase;
  30. type
  31. TElfObjSection = class(TObjSection)
  32. public
  33. secshidx : longint; { index for the section in symtab }
  34. shstridx,
  35. shtype,
  36. shflags,
  37. shlink,
  38. shinfo,
  39. shentsize : longint;
  40. constructor create(AList:TFPHashObjectList;const Aname:string;Aalign:shortint;Aoptions:TObjSectionOptions);override;
  41. constructor create_ext(AList:TFPHashObjectList;const Aname:string;Ashtype,Ashflags,Ashlink,Ashinfo:longint;Aalign:shortint;Aentsize:longint);
  42. destructor destroy;override;
  43. end;
  44. TElfObjData = class(TObjData)
  45. public
  46. constructor create(const n:string);override;
  47. destructor destroy;override;
  48. function sectionname(atype:TAsmSectiontype;const aname:string;aorder:TAsmSectionOrder):string;override;
  49. procedure CreateDebugSections;override;
  50. procedure writereloc(data:aint;len:aword;p:TObjSymbol;reltype:TObjRelocationType);override;
  51. end;
  52. TElfObjectOutput = class(tObjOutput)
  53. private
  54. symtabsect,
  55. strtabsect,
  56. shstrtabsect: TElfObjSection;
  57. {gotpcsect,
  58. gotoffsect,
  59. goTSect,
  60. plTSect,
  61. symsect : TElfObjSection;}
  62. elf32data : TElfObjData;
  63. symidx,
  64. localsyms : longint;
  65. procedure createrelocsection(s:TElfObjSection);
  66. procedure createshstrtab;
  67. procedure createsymtab;
  68. procedure writesectionheader(s:TElfObjSection);
  69. procedure writesectiondata(s:TElfObjSection);
  70. procedure write_internal_symbol(astridx:longint;ainfo:byte;ashndx:word);
  71. procedure section_write_symbol(p:TObject;arg:pointer);
  72. procedure section_write_sh_string(p:TObject;arg:pointer);
  73. procedure section_count_sections(p:TObject;arg:pointer);
  74. procedure section_create_relocsec(p:TObject;arg:pointer);
  75. procedure section_set_datapos(p:TObject;arg:pointer);
  76. procedure section_write_data(p:TObject;arg:pointer);
  77. procedure section_write_sechdr(p:TObject;arg:pointer);
  78. protected
  79. function writedata(data:TObjData):boolean;override;
  80. public
  81. constructor Create(AWriter:TObjectWriter);override;
  82. destructor Destroy;override;
  83. end;
  84. TElfAssembler = class(tinternalassembler)
  85. constructor create(smart:boolean);override;
  86. end;
  87. implementation
  88. uses
  89. SysUtils,
  90. verbose,
  91. cutils,globals,fmodule;
  92. const
  93. symbolresize = 200*18;
  94. const
  95. { Relocation types }
  96. {$ifdef i386}
  97. R_386_32 = 1; { ordinary absolute relocation }
  98. R_386_PC32 = 2; { PC-relative relocation }
  99. R_386_GOT32 = 3; { an offset into GOT }
  100. R_386_PLT32 = 4; { a PC-relative offset into PLT }
  101. R_386_GOTOFF = 9; { an offset from GOT base }
  102. R_386_GOTPC = 10; { a PC-relative offset _to_ GOT }
  103. R_386_GNU_VTINHERIT = 250;
  104. R_386_GNU_VTENTRY = 251;
  105. {$endif i386}
  106. {$ifdef sparc}
  107. R_SPARC_32 = 3;
  108. R_SPARC_WDISP30 = 7;
  109. R_SPARC_HI22 = 9;
  110. R_SPARC_LO10 = 12;
  111. R_SPARC_GNU_VTINHERIT = 250;
  112. R_SPARC_GNU_VTENTRY = 251;
  113. {$endif sparc}
  114. {$ifdef x86_64}
  115. R_X86_64_NONE = 0;
  116. { Direct 64 bit }
  117. R_X86_64_64 = 1;
  118. { PC relative 32 bit signed }
  119. R_X86_64_PC32 = 2;
  120. { 32 bit GOT entry }
  121. R_X86_64_GOT32 = 3;
  122. { 32 bit PLT address }
  123. R_X86_64_PLT32 = 4;
  124. { Copy symbol at runtime }
  125. R_X86_64_COPY = 5;
  126. { Create GOT entry }
  127. R_X86_64_GLOB_DAT = 6;
  128. { Create PLT entry }
  129. R_X86_64_JUMP_SLOT = 7;
  130. { Adjust by program base }
  131. R_X86_64_RELATIVE = 8;
  132. { 32 bit signed PC relative offset to GOT }
  133. R_X86_64_GOTPCREL = 9;
  134. { Direct 32 bit zero extended }
  135. R_X86_64_32 = 10;
  136. { Direct 32 bit sign extended }
  137. R_X86_64_32S = 11;
  138. { Direct 16 bit zero extended }
  139. R_X86_64_16 = 12;
  140. { 16 bit sign extended PC relative }
  141. R_X86_64_PC16 = 13;
  142. { Direct 8 bit sign extended }
  143. R_X86_64_8 = 14;
  144. { 8 bit sign extended PC relative }
  145. R_X86_64_PC8 = 15;
  146. { ID of module containing symbol }
  147. R_X86_64_DTPMOD64 = 16;
  148. { Offset in module's TLS block }
  149. R_X86_64_DTPOFF64 = 17;
  150. { Offset in initial TLS block }
  151. R_X86_64_TPOFF64 = 18;
  152. { 32 bit signed PC relative offset to two GOT entries for GD symbol }
  153. R_X86_64_TLSGD = 19;
  154. { 32 bit signed PC relative offset to two GOT entries for LD symbol }
  155. R_X86_64_TLSLD = 20;
  156. { Offset in TLS block }
  157. R_X86_64_DTPOFF32 = 21;
  158. { 32 bit signed PC relative offset to GOT entry for IE symbol }
  159. R_X86_64_GOTTPOFF = 22;
  160. { Offset in initial TLS block }
  161. R_X86_64_TPOFF32 = 23;
  162. { GNU extension to record C++ vtable hierarchy }
  163. R_X86_64_GNU_VTINHERIT = 24;
  164. { GNU extension to record C++ vtable member usage }
  165. R_X86_64_GNU_VTENTRY = 25;
  166. {$endif x86_64}
  167. SHN_UNDEF = 0;
  168. SHN_ABS = $fff1;
  169. SHN_COMMON = $fff2;
  170. SHT_NULL = 0;
  171. SHT_PROGBITS = 1;
  172. SHT_SYMTAB = 2;
  173. SHT_STRTAB = 3;
  174. SHT_RELA = 4;
  175. SHT_HASH = 5;
  176. SHT_DYNAMIC = 6;
  177. SHT_NOTE = 7;
  178. SHT_NOBITS = 8;
  179. SHT_REL = 9;
  180. SHT_SHLIB = 10;
  181. SHT_DYNSYM = 11;
  182. SHF_WRITE = 1;
  183. SHF_ALLOC = 2;
  184. SHF_EXECINSTR = 4;
  185. STB_LOCAL = 0;
  186. STB_GLOBAL = 1;
  187. STB_WEAK = 2;
  188. STT_NOTYPE = 0;
  189. STT_OBJECT = 1;
  190. STT_FUNC = 2;
  191. STT_SECTION = 3;
  192. STT_FILE = 4;
  193. type
  194. { Structures which are written directly to the output file }
  195. TElf32header=packed record
  196. magic0123 : longint;
  197. file_class : byte;
  198. data_encoding : byte;
  199. file_version : byte;
  200. padding : array[$07..$0f] of byte;
  201. e_type : word;
  202. e_machine : word;
  203. e_version : longint;
  204. e_entry : longint; { entrypoint }
  205. e_phoff : longint; { program header offset }
  206. e_shoff : longint; { sections header offset }
  207. e_flags : longint;
  208. e_ehsize : word; { elf header size in bytes }
  209. e_phentsize : word; { size of an entry in the program header array }
  210. e_phnum : word; { 0..e_phnum-1 of entrys }
  211. e_shentsize : word; { size of an entry in sections header array }
  212. e_shnum : word; { 0..e_shnum-1 of entrys }
  213. e_shstrndx : word; { index of string section header }
  214. end;
  215. TElf32sechdr=packed record
  216. sh_name : longint;
  217. sh_type : longint;
  218. sh_flags : longint;
  219. sh_addr : longint;
  220. sh_offset : longint;
  221. sh_size : longint;
  222. sh_link : longint;
  223. sh_info : longint;
  224. sh_addralign : longint;
  225. sh_entsize : longint;
  226. end;
  227. TElf32reloc=packed record
  228. address : longint;
  229. info : longint; { bit 0-7: type, 8-31: symbol }
  230. end;
  231. TElf32symbol=packed record
  232. st_name : longint;
  233. st_value : longint;
  234. st_size : longint;
  235. st_info : byte; { bit 0-3: type, 4-7: bind }
  236. st_other : byte;
  237. st_shndx : word;
  238. end;
  239. telf64header=packed record
  240. magic0123 : longint;
  241. file_class : byte;
  242. data_encoding : byte;
  243. file_version : byte;
  244. padding : array[$07..$0f] of byte;
  245. e_type : word;
  246. e_machine : word;
  247. e_version : longint;
  248. e_entry : qword; { entrypoint }
  249. e_phoff : qword; { program header offset }
  250. e_shoff : qword; { sections header offset }
  251. e_flags : longint;
  252. e_ehsize : word; { elf header size in bytes }
  253. e_phentsize : word; { size of an entry in the program header array }
  254. e_phnum : word; { 0..e_phnum-1 of entrys }
  255. e_shentsize : word; { size of an entry in sections header array }
  256. e_shnum : word; { 0..e_shnum-1 of entrys }
  257. e_shstrndx : word; { index of string section header }
  258. end;
  259. telf64sechdr=packed record
  260. sh_name : longint;
  261. sh_type : longint;
  262. sh_flags : qword;
  263. sh_addr : qword;
  264. sh_offset : qword;
  265. sh_size : qword;
  266. sh_link : longint;
  267. sh_info : longint;
  268. sh_addralign : qword;
  269. sh_entsize : qword;
  270. end;
  271. telf64reloc=packed record
  272. address : qword;
  273. info : qword; { bit 0-7: type, 8-31: symbol }
  274. addend : qword;
  275. end;
  276. telf64symbol=packed record
  277. st_name : longint;
  278. st_info : byte; { bit 0-3: type, 4-7: bind }
  279. st_other : byte;
  280. st_shndx : word;
  281. st_value : qword;
  282. st_size : qword;
  283. end;
  284. {$ifdef cpu64bitaddr}
  285. telfheader = telf64header;
  286. telfreloc = telf64reloc;
  287. telfsymbol = telf64symbol;
  288. telfsechdr = telf64sechdr;
  289. {$else cpu64bitaddr}
  290. telfheader = telf32header;
  291. telfreloc = telf32reloc;
  292. telfsymbol = telf32symbol;
  293. telfsechdr = telf32sechdr;
  294. {$endif cpu64bitaddr}
  295. function MayBeSwapHeader(h : telf32header) : telf32header;
  296. begin
  297. result:=h;
  298. if source_info.endian<>target_info.endian then
  299. with h do
  300. begin
  301. result.e_type:=swapendian(e_type);
  302. result.e_machine:=swapendian(e_machine);
  303. result.e_version:=swapendian(e_version);
  304. result.e_entry:=swapendian(e_entry);
  305. result.e_phoff:=swapendian(e_phoff);
  306. result.e_shoff:=swapendian(e_shoff);
  307. result.e_flags:=swapendian(e_flags);
  308. result.e_ehsize:=swapendian(e_ehsize);
  309. result.e_phentsize:=swapendian(e_phentsize);
  310. result.e_phnum:=swapendian(e_phnum);
  311. result.e_shentsize:=swapendian(e_shentsize);
  312. result.e_shnum:=swapendian(e_shnum);
  313. result.e_shstrndx:=swapendian(e_shstrndx);
  314. end;
  315. end;
  316. function MayBeSwapHeader(h : telf64header) : telf64header;
  317. begin
  318. result:=h;
  319. if source_info.endian<>target_info.endian then
  320. with h do
  321. begin
  322. result.e_type:=swapendian(e_type);
  323. result.e_machine:=swapendian(e_machine);
  324. result.e_version:=swapendian(e_version);
  325. result.e_entry:=swapendian(e_entry);
  326. result.e_phoff:=swapendian(e_phoff);
  327. result.e_shoff:=swapendian(e_shoff);
  328. result.e_flags:=swapendian(e_flags);
  329. result.e_ehsize:=swapendian(e_ehsize);
  330. result.e_phentsize:=swapendian(e_phentsize);
  331. result.e_phnum:=swapendian(e_phnum);
  332. result.e_shentsize:=swapendian(e_shentsize);
  333. result.e_shnum:=swapendian(e_shnum);
  334. result.e_shstrndx:=swapendian(e_shstrndx);
  335. end;
  336. end;
  337. function MaybeSwapSecHeader(h : telf32sechdr) : telf32sechdr;
  338. begin
  339. result:=h;
  340. if source_info.endian<>target_info.endian then
  341. with h do
  342. begin
  343. result.sh_name:=swapendian(sh_name);
  344. result.sh_type:=swapendian(sh_type);
  345. result.sh_flags:=swapendian(sh_flags);
  346. result.sh_addr:=swapendian(sh_addr);
  347. result.sh_offset:=swapendian(sh_offset);
  348. result.sh_size:=swapendian(sh_size);
  349. result.sh_link:=swapendian(sh_link);
  350. result.sh_info:=swapendian(sh_info);
  351. result.sh_addralign:=swapendian(sh_addralign);
  352. result.sh_entsize:=swapendian(sh_entsize);
  353. end;
  354. end;
  355. function MaybeSwapSecHeader(h : telf64sechdr) : telf64sechdr;
  356. begin
  357. result:=h;
  358. if source_info.endian<>target_info.endian then
  359. with h do
  360. begin
  361. result.sh_name:=swapendian(sh_name);
  362. result.sh_type:=swapendian(sh_type);
  363. result.sh_flags:=swapendian(sh_flags);
  364. result.sh_addr:=swapendian(sh_addr);
  365. result.sh_offset:=swapendian(sh_offset);
  366. result.sh_size:=swapendian(sh_size);
  367. result.sh_link:=swapendian(sh_link);
  368. result.sh_info:=swapendian(sh_info);
  369. result.sh_addralign:=swapendian(sh_addralign);
  370. result.sh_entsize:=swapendian(sh_entsize);
  371. end;
  372. end;
  373. function MaybeSwapElfSymbol(h : telf32symbol) : telf32symbol;
  374. begin
  375. result:=h;
  376. if source_info.endian<>target_info.endian then
  377. with h do
  378. begin
  379. result.st_name:=swapendian(st_name);
  380. result.st_value:=swapendian(st_value);
  381. result.st_size:=swapendian(st_size);
  382. result.st_shndx:=swapendian(st_shndx);
  383. end;
  384. end;
  385. function MaybeSwapElfSymbol(h : telf64symbol) : telf64symbol;
  386. begin
  387. result:=h;
  388. if source_info.endian<>target_info.endian then
  389. with h do
  390. begin
  391. result.st_name:=swapendian(st_name);
  392. result.st_value:=swapendian(st_value);
  393. result.st_size:=swapendian(st_size);
  394. result.st_shndx:=swapendian(st_shndx);
  395. end;
  396. end;
  397. function MaybeSwapElfReloc(h : telf32reloc) : telf32reloc;
  398. begin
  399. result:=h;
  400. if source_info.endian<>target_info.endian then
  401. with h do
  402. begin
  403. result.address:=swapendian(address);
  404. result.info:=swapendian(info);
  405. end;
  406. end;
  407. function MaybeSwapElfReloc(h : telf64reloc) : telf64reloc;
  408. begin
  409. result:=h;
  410. if source_info.endian<>target_info.endian then
  411. with h do
  412. begin
  413. result.address:=swapendian(address);
  414. result.info:=swapendian(info);
  415. end;
  416. end;
  417. {****************************************************************************
  418. Helpers
  419. ****************************************************************************}
  420. procedure encodesechdrflags(aoptions:TObjSectionOptions;out AshType:longint;out Ashflags:longint);
  421. begin
  422. { Section Type }
  423. AshType:=SHT_PROGBITS;
  424. if oso_strings in aoptions then
  425. AshType:=SHT_STRTAB
  426. else if not(oso_data in aoptions) then
  427. AshType:=SHT_NOBITS;
  428. { Section Flags }
  429. Ashflags:=0;
  430. if oso_load in aoptions then
  431. Ashflags:=Ashflags or SHF_ALLOC;
  432. if oso_executable in aoptions then
  433. Ashflags:=Ashflags or SHF_EXECINSTR;
  434. if oso_write in aoptions then
  435. Ashflags:=Ashflags or SHF_WRITE;
  436. end;
  437. procedure decodesechdrflags(AshType:longint;Ashflags:longint;out aoptions:TObjSectionOptions);
  438. begin
  439. aoptions:=[];
  440. { Section Type }
  441. if AshType<>SHT_NOBITS then
  442. include(aoptions,oso_data);
  443. if AshType=SHT_STRTAB then
  444. include(aoptions,oso_strings);
  445. { Section Flags }
  446. if Ashflags and SHF_ALLOC<>0 then
  447. include(aoptions,oso_load)
  448. else
  449. include(aoptions,oso_noload);
  450. if Ashflags and SHF_WRITE<>0 then
  451. include(aoptions,oso_write)
  452. else
  453. include(aoptions,oso_readonly);
  454. end;
  455. {****************************************************************************
  456. TSection
  457. ****************************************************************************}
  458. constructor TElfObjSection.create(AList:TFPHashObjectList;const Aname:string;Aalign:shortint;Aoptions:TObjSectionOptions);
  459. begin
  460. inherited create(AList,Aname,Aalign,aoptions);
  461. secshidx:=0;
  462. shstridx:=0;
  463. encodesechdrflags(aoptions,shtype,shflags);
  464. shlink:=0;
  465. shinfo:=0;
  466. if name='.stab' then
  467. shentsize:=sizeof(TObjStabEntry);
  468. end;
  469. constructor TElfObjSection.create_ext(AList:TFPHashObjectList;const Aname:string;Ashtype,Ashflags,Ashlink,Ashinfo:longint;Aalign:shortint;Aentsize:longint);
  470. var
  471. aoptions : TObjSectionOptions;
  472. begin
  473. decodesechdrflags(Ashtype,Ashflags,aoptions);
  474. inherited create(AList,Aname,Aalign,aoptions);
  475. secshidx:=0;
  476. shstridx:=0;
  477. shtype:=AshType;
  478. shflags:=AshFlags;
  479. shlink:=Ashlink;
  480. shinfo:=Ashinfo;
  481. shentsize:=Aentsize;
  482. end;
  483. destructor TElfObjSection.destroy;
  484. begin
  485. inherited destroy;
  486. end;
  487. {****************************************************************************
  488. TElfObjData
  489. ****************************************************************************}
  490. constructor TElfObjData.create(const n:string);
  491. begin
  492. inherited create(n);
  493. CObjSection:=TElfObjSection;
  494. { we need at least the following sections }
  495. createsection(sec_code);
  496. createsection(sec_data);
  497. createsection(sec_bss);
  498. if tf_section_threadvars in target_info.flags then
  499. createsection(sec_threadvar);
  500. if (tf_needs_dwarf_cfi in target_info.flags) and
  501. (af_supports_dwarf in target_asm.flags) then
  502. createsection(sec_debug_frame);
  503. end;
  504. destructor TElfObjData.destroy;
  505. begin
  506. inherited destroy;
  507. end;
  508. function TElfObjData.sectionname(atype:TAsmSectiontype;const aname:string;aorder:TAsmSectionOrder):string;
  509. const
  510. secnames : array[TAsmSectiontype] of string[13] = ('',
  511. {$ifdef userodata}
  512. '.text','.data','.data','.rodata','.bss','.threadvar',
  513. {$else userodata}
  514. '.text','.data','.data','.data','.bss','.threadvar',
  515. {$endif userodata}
  516. '.pdata',
  517. '.text', { darwin stubs }
  518. '.stab','.stabstr',
  519. '.idata$2','.idata$4','.idata$5','.idata$6','.idata$7','.edata',
  520. '.eh_frame',
  521. '.debug_frame','.debug_info','.debug_line','.debug_abbrev',
  522. '.fpc',
  523. '.toc',
  524. '.init',
  525. '.fini'
  526. );
  527. secnames_pic : array[TAsmSectiontype] of string[17] = ('',
  528. '.text',
  529. '.data.rel',
  530. '.data.rel',
  531. '.data.rel',
  532. '.bss',
  533. '.threadvar',
  534. '.pdata',
  535. '', { stubs }
  536. '.stab',
  537. '.stabstr',
  538. '.idata$2','.idata$4','.idata$5','.idata$6','.idata$7','.edata',
  539. '.eh_frame',
  540. '.debug_frame','.debug_info','.debug_line','.debug_abbrev',
  541. '.fpc',
  542. '.toc',
  543. '.init',
  544. '.fini'
  545. );
  546. var
  547. sep : string[3];
  548. secname : string;
  549. begin
  550. if (cs_create_pic in current_settings.moduleswitches) and
  551. not(target_info.system in systems_darwin) then
  552. secname:=secnames_pic[atype]
  553. else
  554. secname:=secnames[atype];
  555. if (atype=sec_fpc) and (Copy(aname,1,3)='res') then
  556. begin
  557. result:=secname+'.'+aname;
  558. exit;
  559. end;
  560. if create_smartlink_sections and (aname<>'') then
  561. begin
  562. case aorder of
  563. secorder_begin :
  564. sep:='.b_';
  565. secorder_end :
  566. sep:='.z_';
  567. else
  568. sep:='.n_';
  569. end;
  570. result:=secname+sep+aname
  571. end
  572. else
  573. result:=secname;
  574. end;
  575. procedure TElfObjData.CreateDebugSections;
  576. begin
  577. if target_dbg.id=dbg_stabs then
  578. begin
  579. stabssec:=createsection(sec_stab);
  580. stabstrsec:=createsection(sec_stabstr);
  581. end;
  582. end;
  583. procedure TElfObjData.writereloc(data:aint;len:aword;p:TObjSymbol;reltype:TObjRelocationType);
  584. var
  585. symaddr : longint;
  586. begin
  587. if CurrObjSec=nil then
  588. internalerror(200403292);
  589. {$ifdef userodata}
  590. if CurrObjSec.sectype in [sec_rodata,sec_bss,sec_threadvar] then
  591. internalerror(200408252);
  592. {$endif userodata}
  593. if assigned(p) then
  594. begin
  595. { real address of the symbol }
  596. symaddr:=p.address;
  597. { Local ObjSymbols can be resolved already or need a section reloc }
  598. if (p.bind=AB_LOCAL) and
  599. (reltype in [RELOC_RELATIVE,RELOC_ABSOLUTE{$ifdef x86_64},RELOC_ABSOLUTE32{$endif x86_64}]) then
  600. begin
  601. { For a reltype relocation in the same section the
  602. value can be calculated }
  603. if (p.objsection=CurrObjSec) and
  604. (reltype=RELOC_RELATIVE) then
  605. inc(data,symaddr-len-CurrObjSec.Size)
  606. else
  607. begin
  608. CurrObjSec.addsectionreloc(CurrObjSec.Size,p.objsection,reltype);
  609. inc(data,symaddr);
  610. end;
  611. end
  612. else
  613. begin
  614. CurrObjSec.addsymreloc(CurrObjSec.Size,p,reltype);
  615. {$ifndef x86_64}
  616. if reltype=RELOC_RELATIVE then
  617. dec(data,len);
  618. {$endif x86_64}
  619. end;
  620. end;
  621. CurrObjSec.write(data,len);
  622. end;
  623. {****************************************************************************
  624. TElfObjectOutput
  625. ****************************************************************************}
  626. constructor TElfObjectOutput.create(AWriter:TObjectWriter);
  627. begin
  628. inherited Create(AWriter);
  629. CObjData:=TElfObjData;
  630. end;
  631. destructor TElfObjectOutput.destroy;
  632. begin
  633. inherited destroy;
  634. end;
  635. procedure TElfObjectOutput.createrelocsection(s:TElfObjSection);
  636. var
  637. i : longint;
  638. rel : telfreloc;
  639. objreloc : TObjRelocation;
  640. relsym,
  641. reltyp : longint;
  642. relocsect : TObjSection;
  643. begin
  644. with elf32data do
  645. begin
  646. {$ifdef userodata}
  647. { rodata can't have relocations }
  648. if s.sectype=sec_rodata then
  649. begin
  650. if assigned(s.relocations.first) then
  651. internalerror(200408251);
  652. exit;
  653. end;
  654. {$endif userodata}
  655. { create the reloc section }
  656. {$ifdef i386}
  657. relocsect:=TElfObjSection.create_ext(ObjSectionList,'.rel'+s.name,SHT_REL,0,symtabsect.secshidx,s.secshidx,4,sizeof(TElfReloc));
  658. {$else i386}
  659. relocsect:=TElfObjSection.create_ext(ObjSectionList,'.rela'+s.name,SHT_RELA,0,symtabsect.secshidx,s.secshidx,4,sizeof(TElfReloc));
  660. {$endif i386}
  661. { add the relocations }
  662. for i:=0 to s.Objrelocations.count-1 do
  663. begin
  664. objreloc:=TObjRelocation(s.Objrelocations[i]);
  665. fillchar(rel,sizeof(rel),0);
  666. rel.address:=objreloc.dataoffset;
  667. { when things settle down, we can create processor specific
  668. derived classes }
  669. case objreloc.typ of
  670. {$ifdef i386}
  671. RELOC_RELATIVE :
  672. reltyp:=R_386_PC32;
  673. RELOC_ABSOLUTE :
  674. reltyp:=R_386_32;
  675. {$endif i386}
  676. {$ifdef sparc}
  677. RELOC_ABSOLUTE :
  678. reltyp:=R_SPARC_32;
  679. {$endif sparc}
  680. {$ifdef x86_64}
  681. RELOC_RELATIVE :
  682. begin
  683. reltyp:=R_X86_64_PC32;
  684. { length of the relocated location is handled here }
  685. rel.addend:=qword(-4);
  686. end;
  687. RELOC_ABSOLUTE :
  688. reltyp:=R_X86_64_64;
  689. RELOC_ABSOLUTE32 :
  690. reltyp:=R_X86_64_32S;
  691. RELOC_GOTPCREL :
  692. begin
  693. reltyp:=R_X86_64_GOTPCREL;
  694. { length of the relocated location is handled here }
  695. rel.addend:=qword(-4);
  696. end;
  697. RELOC_PLT32 :
  698. begin
  699. reltyp:=R_X86_64_PLT32;
  700. { length of the relocated location is handled here }
  701. rel.addend:=qword(-4);
  702. end;
  703. {$endif x86_64}
  704. else
  705. internalerror(200602261);
  706. end;
  707. { Symbol }
  708. if assigned(objreloc.symbol) then
  709. begin
  710. if objreloc.symbol.symidx=-1 then
  711. begin
  712. writeln(objreloc.symbol.Name);
  713. internalerror(200603012);
  714. end;
  715. relsym:=objreloc.symbol.symidx;
  716. end
  717. else
  718. begin
  719. if objreloc.objsection<>nil then
  720. relsym:=objreloc.objsection.secsymidx
  721. else
  722. relsym:=SHN_UNDEF;
  723. end;
  724. {$ifdef cpu64bitaddr}
  725. rel.info:=(qword(relsym) shl 32) or reltyp;
  726. {$else cpu64bitaddr}
  727. rel.info:=(relsym shl 8) or reltyp;
  728. {$endif cpu64bitaddr}
  729. { write reloc }
  730. relocsect.write(MaybeSwapElfReloc(rel),sizeof(rel));
  731. end;
  732. end;
  733. end;
  734. procedure TElfObjectOutput.write_internal_symbol(astridx:longint;ainfo:byte;ashndx:word);
  735. var
  736. elfsym : telfsymbol;
  737. begin
  738. fillchar(elfsym,sizeof(elfsym),0);
  739. elfsym.st_name:=astridx;
  740. elfsym.st_info:=ainfo;
  741. elfsym.st_shndx:=ashndx;
  742. inc(symidx);
  743. inc(localsyms);
  744. symtabsect.write(MaybeSwapElfSymbol(elfsym),sizeof(elfsym));
  745. end;
  746. procedure TElfObjectOutput.section_write_symbol(p:TObject;arg:pointer);
  747. begin
  748. TObjSection(p).secsymidx:=symidx;
  749. write_internal_symbol(TElfObjSection(p).shstridx,STT_SECTION,TElfObjSection(p).secshidx);
  750. end;
  751. procedure TElfObjectOutput.createsymtab;
  752. procedure WriteSym(objsym:TObjSymbol);
  753. var
  754. elfsym : telfsymbol;
  755. begin
  756. with elf32data do
  757. begin
  758. fillchar(elfsym,sizeof(elfsym),0);
  759. { symbolname, write the #0 separate to overcome 255+1 char not possible }
  760. elfsym.st_name:=strtabsect.Size;
  761. strtabsect.writestr(objsym.name);
  762. strtabsect.writestr(#0);
  763. elfsym.st_size:=objsym.size;
  764. case objsym.bind of
  765. AB_LOCAL :
  766. begin
  767. elfsym.st_value:=objsym.address;
  768. elfsym.st_info:=STB_LOCAL shl 4;
  769. inc(localsyms);
  770. end;
  771. AB_COMMON :
  772. begin
  773. elfsym.st_value:=$10;
  774. elfsym.st_info:=STB_GLOBAL shl 4;
  775. end;
  776. AB_EXTERNAL :
  777. elfsym.st_info:=STB_GLOBAL shl 4;
  778. AB_GLOBAL :
  779. begin
  780. elfsym.st_value:=objsym.address;
  781. elfsym.st_info:=STB_GLOBAL shl 4;
  782. end;
  783. end;
  784. if (objsym.bind<>AB_EXTERNAL) {and
  785. not(assigned(objsym.objsection) and
  786. not(oso_data in objsym.objsection.secoptions))} then
  787. begin
  788. case objsym.typ of
  789. AT_FUNCTION :
  790. elfsym.st_info:=elfsym.st_info or STT_FUNC;
  791. AT_DATA :
  792. elfsym.st_info:=elfsym.st_info or STT_OBJECT;
  793. end;
  794. end;
  795. if objsym.bind=AB_COMMON then
  796. elfsym.st_shndx:=SHN_COMMON
  797. else
  798. begin
  799. if assigned(objsym.objsection) then
  800. elfsym.st_shndx:=TElfObjSection(objsym.objsection).secshidx
  801. else
  802. elfsym.st_shndx:=SHN_UNDEF;
  803. end;
  804. objsym.symidx:=symidx;
  805. inc(symidx);
  806. symtabsect.write(MaybeSwapElfSymbol(elfsym),sizeof(elfsym));
  807. end;
  808. end;
  809. var
  810. i : longint;
  811. objsym : TObjSymbol;
  812. begin
  813. with elf32data do
  814. begin
  815. symidx:=0;
  816. localsyms:=0;
  817. { empty entry }
  818. write_internal_symbol(0,0,0);
  819. { filename entry }
  820. write_internal_symbol(1,STT_FILE,SHN_ABS);
  821. { section }
  822. ObjSectionList.ForEachCall(@section_write_symbol,nil);
  823. { First the Local Symbols, this is required by ELF. The localsyms
  824. count stored in shinfo is used to skip the local symbols
  825. when traversing the symtab }
  826. for i:=0 to ObjSymbolList.Count-1 do
  827. begin
  828. objsym:=TObjSymbol(ObjSymbolList[i]);
  829. if (objsym.bind=AB_LOCAL) and (objsym.typ<>AT_LABEL) then
  830. WriteSym(objsym);
  831. end;
  832. { Global Symbols }
  833. for i:=0 to ObjSymbolList.Count-1 do
  834. begin
  835. objsym:=TObjSymbol(ObjSymbolList[i]);
  836. if (objsym.bind<>AB_LOCAL) then
  837. WriteSym(objsym);
  838. end;
  839. { update the .symtab section header }
  840. symtabsect.shlink:=strtabsect.secshidx;
  841. symtabsect.shinfo:=localsyms;
  842. end;
  843. end;
  844. procedure TElfObjectOutput.section_write_sh_string(p:TObject;arg:pointer);
  845. begin
  846. TElfObjSection(p).shstridx:=shstrtabsect.writestr(TObjSection(p).name+#0);
  847. end;
  848. procedure TElfObjectOutput.createshstrtab;
  849. begin
  850. with elf32data do
  851. begin
  852. shstrtabsect.writestr(#0);
  853. ObjSectionList.ForEachCall(@section_write_sh_string,nil);
  854. end;
  855. end;
  856. procedure TElfObjectOutput.writesectionheader(s:TElfObjSection);
  857. var
  858. sechdr : telfsechdr;
  859. begin
  860. fillchar(sechdr,sizeof(sechdr),0);
  861. sechdr.sh_name:=s.shstridx;
  862. sechdr.sh_type:=s.shtype;
  863. sechdr.sh_flags:=s.shflags;
  864. sechdr.sh_offset:=s.datapos;
  865. sechdr.sh_size:=s.Size;
  866. sechdr.sh_link:=s.shlink;
  867. sechdr.sh_info:=s.shinfo;
  868. sechdr.sh_addralign:=s.secalign;
  869. sechdr.sh_entsize:=s.shentsize;
  870. writer.write(MaybeSwapSecHeader(sechdr),sizeof(sechdr));
  871. end;
  872. procedure TElfObjectOutput.writesectiondata(s:TElfObjSection);
  873. begin
  874. FWriter.writezeros(s.dataalignbytes);
  875. if s.Datapos<>FWriter.ObjSize then
  876. internalerror(200604031);
  877. FWriter.writearray(s.data);
  878. end;
  879. procedure TElfObjectOutput.section_count_sections(p:TObject;arg:pointer);
  880. begin
  881. TElfObjSection(p).secshidx:=pword(arg)^;
  882. inc(pword(arg)^);
  883. end;
  884. procedure TElfObjectOutput.section_create_relocsec(p:TObject;arg:pointer);
  885. begin
  886. if (TElfObjSection(p).ObjRelocations.count>0) then
  887. createrelocsection(TElfObjSection(p));
  888. end;
  889. procedure TElfObjectOutput.section_set_datapos(p:TObject;arg:pointer);
  890. begin
  891. TObjSection(p).setdatapos(paword(arg)^);
  892. end;
  893. procedure TElfObjectOutput.section_write_data(p:TObject;arg:pointer);
  894. begin
  895. if (oso_data in TObjSection(p).secoptions) then
  896. begin
  897. if TObjSection(p).data=nil then
  898. internalerror(200403073);
  899. writesectiondata(TElfObjSection(p));
  900. end;
  901. end;
  902. procedure TElfObjectOutput.section_write_sechdr(p:TObject;arg:pointer);
  903. begin
  904. writesectionheader(TElfObjSection(p));
  905. end;
  906. function TElfObjectOutput.writedata(data:TObjData):boolean;
  907. var
  908. header : telfheader;
  909. shoffset,
  910. datapos : aint;
  911. nsections : word;
  912. begin
  913. result:=false;
  914. elf32data:=TElfObjData(data);
  915. with elf32data do
  916. begin
  917. { default sections }
  918. symtabsect:=TElfObjSection.create_ext(ObjSectionList,'.symtab',SHT_SYMTAB,0,0,0,4,sizeof(telfsymbol));
  919. strtabsect:=TElfObjSection.create_ext(ObjSectionList,'.strtab',SHT_STRTAB,0,0,0,1,0);
  920. shstrtabsect:=TElfObjSection.create_ext(ObjSectionList,'.shstrtab',SHT_STRTAB,0,0,0,1,0);
  921. { "no executable stack" marker for Linux }
  922. if (target_info.system in system_linux) and
  923. not(cs_executable_stack in current_settings.moduleswitches) then
  924. TElfObjSection.create_ext(ObjSectionList,'.note.GNU-stack',SHT_PROGBITS,0,0,0,1,0);
  925. { insert the empty and filename as first in strtab }
  926. strtabsect.writestr(#0);
  927. strtabsect.writestr(ExtractFileName(current_module.mainsource^)+#0);
  928. { calc amount of sections we have }
  929. nsections:=1;
  930. { also create the index in the section header table }
  931. ObjSectionList.ForEachCall(@section_count_sections,@nsections);
  932. { create .symtab and .strtab }
  933. createsymtab;
  934. { Create the relocation sections, this needs valid secidx and symidx }
  935. ObjSectionList.ForEachCall(@section_create_relocsec,nil);
  936. { recalc nsections to incude the reloc sections }
  937. nsections:=1;
  938. ObjSectionList.ForEachCall(@section_count_sections,@nsections);
  939. { create .shstrtab }
  940. createshstrtab;
  941. { Calculate the filepositions }
  942. datapos:=$40; { elfheader + alignment }
  943. { section data }
  944. ObjSectionList.ForEachCall(@section_set_datapos,@datapos);
  945. { section headers }
  946. shoffset:=datapos;
  947. inc(datapos,(nsections+1)*sizeof(telfsechdr));
  948. { Write ELF Header }
  949. fillchar(header,sizeof(header),0);
  950. header.magic0123:=$464c457f; { = #127'ELF' }
  951. {$ifdef cpu64bitaddr}
  952. header.file_class:=2;
  953. {$else cpu64bitaddr}
  954. header.file_class:=1;
  955. {$endif cpu64bitaddr}
  956. if target_info.endian=endian_big then
  957. header.data_encoding:=2
  958. else
  959. header.data_encoding:=1;
  960. header.file_version:=1;
  961. header.e_type:=1;
  962. {$ifdef sparc}
  963. header.e_machine:=2;
  964. {$endif sparc}
  965. {$ifdef i386}
  966. header.e_machine:=3;
  967. {$endif i386}
  968. {$ifdef m68k}
  969. header.e_machine:=4;
  970. {$endif m68k}
  971. {$ifdef powerpc}
  972. header.e_machine:=20;
  973. {$endif powerpc}
  974. {$ifdef arm}
  975. header.e_machine:=40;
  976. if (current_settings.fputype=cpu_soft) then
  977. header.e_flags:=$600;
  978. {$endif arm}
  979. {$ifdef x86_64}
  980. header.e_machine:=62;
  981. {$endif x86_64}
  982. header.e_version:=1;
  983. header.e_shoff:=shoffset;
  984. header.e_shstrndx:=shstrtabsect.secshidx;
  985. header.e_shnum:=nsections;
  986. header.e_ehsize:=sizeof(telfheader);
  987. header.e_shentsize:=sizeof(telfsechdr);
  988. writer.write(MaybeSwapHeader(header),sizeof(header));
  989. writer.writezeros($40-sizeof(header)); { align }
  990. { Sections }
  991. ObjSectionList.ForEachCall(@section_write_data,nil);
  992. { section headers, start with an empty header for sh_undef }
  993. writer.writezeros(sizeof(telfsechdr));
  994. ObjSectionList.ForEachCall(@section_write_sechdr,nil);
  995. end;
  996. result:=true;
  997. end;
  998. {****************************************************************************
  999. TELFAssembler
  1000. ****************************************************************************}
  1001. constructor TElfAssembler.Create(smart:boolean);
  1002. begin
  1003. inherited Create(smart);
  1004. CObjOutput:=TElfObjectOutput;
  1005. end;
  1006. {*****************************************************************************
  1007. Initialize
  1008. *****************************************************************************}
  1009. {$ifdef i386}
  1010. const
  1011. as_i386_elf32_info : tasminfo =
  1012. (
  1013. id : as_i386_elf32;
  1014. idtxt : 'ELF';
  1015. asmbin : '';
  1016. asmcmd : '';
  1017. supported_targets : [system_i386_linux,system_i386_beos,system_i386_freebsd,system_i386_haiku,system_i386_Netware,system_i386_netwlibc];
  1018. flags : [af_outputbinary,af_smartlink_sections,af_supports_dwarf];
  1019. labelprefix : '.L';
  1020. comment : '';
  1021. );
  1022. {$endif i386}
  1023. {$ifdef x86_64}
  1024. const
  1025. as_x86_64_elf64_info : tasminfo =
  1026. (
  1027. id : as_x86_64_elf64;
  1028. idtxt : 'ELF';
  1029. asmbin : '';
  1030. asmcmd : '';
  1031. supported_targets : [system_x86_64_linux];
  1032. flags : [af_outputbinary,af_smartlink_sections,af_supports_dwarf];
  1033. labelprefix : '.L';
  1034. comment : '';
  1035. );
  1036. {$endif x86_64}
  1037. {$ifdef sparc}
  1038. const
  1039. as_sparc_elf32_info : tasminfo =
  1040. (
  1041. id : as_sparc_elf32;
  1042. idtxt : 'ELF';
  1043. asmbin : '';
  1044. asmcmd : '';
  1045. supported_targets : [];
  1046. // flags : [af_outputbinary,af_smartlink_sections];
  1047. flags : [af_outputbinary,af_supports_dwarf];
  1048. labelprefix : '.L';
  1049. comment : '';
  1050. );
  1051. {$endif sparc}
  1052. initialization
  1053. {$ifdef i386}
  1054. RegisterAssembler(as_i386_elf32_info,TElfAssembler);
  1055. {$endif i386}
  1056. {$ifdef sparc}
  1057. RegisterAssembler(as_sparc_elf32_info,TElfAssembler);
  1058. {$endif sparc}
  1059. {$ifdef x86_64}
  1060. RegisterAssembler(as_x86_64_elf64_info,TElfAssembler);
  1061. {$endif x86_64}
  1062. end.