pmodules.pas 54 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1998-2002 by Florian Klaempfl
  4. Handles the parsing and loading of the modules (ppufiles)
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. ****************************************************************************
  17. }
  18. unit pmodules;
  19. {$i fpcdefs.inc}
  20. interface
  21. procedure proc_unit;
  22. procedure proc_program(islibrary : boolean);
  23. implementation
  24. uses
  25. globtype,version,systems,tokens,
  26. cutils,cclasses,comphook,
  27. globals,verbose,fmodule,finput,fppu,
  28. symconst,symbase,symtype,symdef,symsym,symtable,
  29. aasmtai,aasmcpu,aasmbase,
  30. cgbase,cpuinfo,cgobj,
  31. nbas,
  32. link,assemble,import,export,gendef,ppu,comprsrc,
  33. cresstr,procinfo,
  34. dwarf,
  35. {$ifdef GDB}
  36. gdb,
  37. {$endif GDB}
  38. scanner,pbase,pexpr,psystem,psub;
  39. procedure fixseg(p:TAAsmoutput;sec:TAsmSectionType);
  40. begin
  41. maybe_new_object_file(p);
  42. p.insert(Tai_section.Create(sec,'',0));
  43. end;
  44. procedure create_objectfile;
  45. var
  46. DLLScanner : TDLLScanner;
  47. s : string;
  48. KeepShared : TStringList;
  49. begin
  50. { try to create import entries from system dlls }
  51. if target_info.DllScanSupported and
  52. (not current_module.linkOtherSharedLibs.Empty) then
  53. begin
  54. { Init DLLScanner }
  55. if assigned(CDLLScanner[target_info.system]) then
  56. DLLScanner:=CDLLScanner[target_info.system].Create
  57. else
  58. internalerror(200104121);
  59. KeepShared:=TStringList.Create;
  60. { Walk all shared libs }
  61. While not current_module.linkOtherSharedLibs.Empty do
  62. begin
  63. S:=current_module.linkOtherSharedLibs.Getusemask(link_allways);
  64. if not DLLScanner.scan(s) then
  65. KeepShared.Concat(s);
  66. end;
  67. DLLscanner.Free;
  68. { Recreate import section }
  69. if (target_info.system in [system_i386_win32,system_i386_wdosx]) then
  70. begin
  71. if assigned(importssection)then
  72. importssection.clear
  73. else
  74. importssection:=taasmoutput.Create;
  75. importlib.generatelib;
  76. end;
  77. { Readd the not processed files }
  78. while not KeepShared.Empty do
  79. begin
  80. s:=KeepShared.GetFirst;
  81. current_module.linkOtherSharedLibs.add(s,link_allways);
  82. end;
  83. KeepShared.Free;
  84. end;
  85. { create the .s file and assemble it }
  86. GenerateAsm(false);
  87. { Also create a smartlinked version ? }
  88. if (cs_create_smart in aktmoduleswitches) then
  89. begin
  90. { regenerate the importssection for win32 }
  91. if assigned(importssection) and
  92. (target_info.system in [system_i386_win32,system_i386_wdosx]) then
  93. begin
  94. importsSection.clear;
  95. importlib.generatesmartlib;
  96. end;
  97. GenerateAsm(true);
  98. if (af_needar in target_asm.flags) then
  99. Linker.MakeStaticLibrary;
  100. end;
  101. { resource files }
  102. CompileResourceFiles;
  103. end;
  104. procedure insertobjectfile;
  105. { Insert the used object file for this unit in the used list for this unit }
  106. begin
  107. current_module.linkunitofiles.add(current_module.objfilename^,link_static);
  108. current_module.flags:=current_module.flags or uf_static_linked;
  109. if (cs_create_smart in aktmoduleswitches) then
  110. begin
  111. current_module.linkunitstaticlibs.add(current_module.staticlibfilename^,link_smart);
  112. current_module.flags:=current_module.flags or uf_smart_linked;
  113. end;
  114. end;
  115. procedure create_dwarf;
  116. begin
  117. dwarflist:=taasmoutput.create;
  118. { Call frame information }
  119. if (tf_needs_dwarf_cfi in target_info.flags) and
  120. (af_supports_dwarf in target_asm.flags) then
  121. dwarfcfi.generate_code(dwarflist);
  122. end;
  123. procedure insertsegment;
  124. var
  125. oldaktfilepos : tfileposinfo;
  126. begin
  127. { Insert Ident of the compiler }
  128. if (not (cs_create_smart in aktmoduleswitches))
  129. {$ifndef EXTDEBUG}
  130. and (not current_module.is_unit)
  131. {$endif}
  132. then
  133. begin
  134. { align the first data }
  135. dataSegment.insert(Tai_align.Create(const_align(32)));
  136. dataSegment.insert(Tai_string.Create('FPC '+full_version_string+
  137. ' ['+date_string+'] for '+target_cpu_string+' - '+target_info.shortname));
  138. end;
  139. { align code segment }
  140. codeSegment.concat(Tai_align.Create(aktalignment.procalign));
  141. { Insert start and end of sections }
  142. fixseg(codesegment,sec_code);
  143. fixseg(datasegment,sec_data);
  144. fixseg(bsssegment,sec_bss);
  145. { we should use .rdata section for these two no ?
  146. .rdata is a read only data section (PM) }
  147. fixseg(rttilist,sec_data);
  148. fixseg(consts,sec_data);
  149. fixseg(picdata,sec_data);
  150. if assigned(resourcestringlist) then
  151. fixseg(resourcestringlist,sec_data);
  152. {$ifdef GDB}
  153. if assigned(debuglist) then
  154. begin
  155. oldaktfilepos:=aktfilepos;
  156. aktfilepos.line:=0;
  157. debugList.insert(Tai_symbol.Createname('gcc2_compiled',AT_DATA,0));
  158. debugList.insert(Tai_symbol.Createname('fpc_compiled',AT_DATA,0));
  159. fixseg(debuglist,sec_code);
  160. aktfilepos:=oldaktfilepos;
  161. end;
  162. {$endif GDB}
  163. end;
  164. procedure InsertThreadvarTablesTable;
  165. var
  166. hp : tused_unit;
  167. ltvTables : taasmoutput;
  168. count : longint;
  169. begin
  170. ltvTables:=TAAsmOutput.Create;
  171. count:=0;
  172. hp:=tused_unit(usedunits.first);
  173. while assigned(hp) do
  174. begin
  175. If (hp.u.flags and uf_threadvars)=uf_threadvars then
  176. begin
  177. ltvTables.concat(Tai_const.Createname(make_mangledname('THREADVARLIST',hp.u.globalsymtable,''),AT_DATA,0));
  178. inc(count);
  179. end;
  180. hp:=tused_unit(hp.next);
  181. end;
  182. { Add program threadvars, if any }
  183. If (current_module.flags and uf_threadvars)=uf_threadvars then
  184. begin
  185. ltvTables.concat(Tai_const.Createname(make_mangledname('THREADVARLIST',current_module.localsymtable,''),AT_DATA,0));
  186. inc(count);
  187. end;
  188. { TableCount }
  189. ltvTables.insert(Tai_const.Create_32bit(count));
  190. ltvTables.insert(Tai_symbol.Createname_global('FPC_THREADVARTABLES',AT_DATA,0));
  191. ltvTables.insert(Tai_align.Create(const_align(sizeof(aint))));
  192. ltvTables.concat(Tai_symbol_end.Createname('FPC_THREADVARTABLES'));
  193. { insert in data segment }
  194. maybe_new_object_file(dataSegment);
  195. dataSegment.concatlist(ltvTables);
  196. ltvTables.free;
  197. end;
  198. procedure AddToThreadvarList(p:tnamedindexitem;arg:pointer);
  199. var
  200. ltvTable : taasmoutput;
  201. begin
  202. ltvTable:=taasmoutput(arg);
  203. if (tsym(p).typ=varsym) and
  204. (vo_is_thread_var in tvarsym(p).varoptions) then
  205. begin
  206. { address of threadvar }
  207. ltvTable.concat(tai_const.Createname(tvarsym(p).mangledname,AT_DATA,0));
  208. { size of threadvar }
  209. ltvTable.concat(tai_const.create_32bit(tvarsym(p).getsize));
  210. end;
  211. end;
  212. procedure InsertThreadvars;
  213. var
  214. s : string;
  215. ltvTable : TAAsmoutput;
  216. begin
  217. ltvTable:=TAAsmoutput.create;
  218. if assigned(current_module.globalsymtable) then
  219. current_module.globalsymtable.foreach_static({$ifdef FPCPROCVAR}@{$endif}AddToThreadvarList,ltvTable);
  220. current_module.localsymtable.foreach_static({$ifdef FPCPROCVAR}@{$endif}AddToThreadvarList,ltvTable);
  221. if ltvTable.first<>nil then
  222. begin
  223. s:=make_mangledname('THREADVARLIST',current_module.localsymtable,'');
  224. { add begin and end of the list }
  225. ltvTable.insert(tai_symbol.Createname_global(s,AT_DATA,0));
  226. ltvTable.concat(tai_const.create_sym(nil)); { end of list marker }
  227. ltvTable.concat(tai_symbol_end.createname(s));
  228. maybe_new_object_file(dataSegment);
  229. dataSegment.concatlist(ltvTable);
  230. current_module.flags:=current_module.flags or uf_threadvars;
  231. end;
  232. ltvTable.Free;
  233. end;
  234. Procedure InsertResourceTablesTable;
  235. var
  236. hp : tused_unit;
  237. ResourceStringTables : taasmoutput;
  238. count : longint;
  239. begin
  240. ResourceStringTables:=TAAsmOutput.Create;
  241. count:=0;
  242. hp:=tused_unit(usedunits.first);
  243. while assigned(hp) do
  244. begin
  245. If (hp.u.flags and uf_has_resources)=uf_has_resources then
  246. begin
  247. ResourceStringTables.concat(Tai_const.Createname(make_mangledname('RESOURCESTRINGLIST',hp.u.globalsymtable,''),AT_DATA,0));
  248. inc(count);
  249. end;
  250. hp:=tused_unit(hp.next);
  251. end;
  252. { Add program resources, if any }
  253. If ResourceStringList<>Nil then
  254. begin
  255. ResourceStringTables.concat(Tai_const.Createname(make_mangledname('RESOURCESTRINGLIST',current_module.localsymtable,''),AT_DATA,0));
  256. Inc(Count);
  257. end;
  258. { TableCount }
  259. ResourceStringTables.insert(Tai_const.Create_32bit(count));
  260. ResourceStringTables.insert(Tai_symbol.Createname_global('FPC_RESOURCESTRINGTABLES',AT_DATA,0));
  261. ResourceStringTables.insert(Tai_align.Create(const_align(4)));
  262. ResourceStringTables.concat(Tai_symbol_end.Createname('FPC_RESOURCESTRINGTABLES'));
  263. { insert in data segment }
  264. maybe_new_object_file(dataSegment);
  265. dataSegment.concatlist(ResourceStringTables);
  266. ResourceStringTables.free;
  267. end;
  268. procedure InsertInitFinalTable;
  269. var
  270. hp : tused_unit;
  271. unitinits : taasmoutput;
  272. count : longint;
  273. begin
  274. unitinits:=TAAsmOutput.Create;
  275. count:=0;
  276. hp:=tused_unit(usedunits.first);
  277. while assigned(hp) do
  278. begin
  279. { call the unit init code and make it external }
  280. if (hp.u.flags and (uf_init or uf_finalize))<>0 then
  281. begin
  282. if (hp.u.flags and uf_init)<>0 then
  283. unitinits.concat(Tai_const.Createname(make_mangledname('INIT$',hp.u.globalsymtable,''),AT_FUNCTION,0))
  284. else
  285. unitinits.concat(Tai_const.Create_sym(nil));
  286. if (hp.u.flags and uf_finalize)<>0 then
  287. unitinits.concat(Tai_const.Createname(make_mangledname('FINALIZE$',hp.u.globalsymtable,''),AT_FUNCTION,0))
  288. else
  289. unitinits.concat(Tai_const.Create_sym(nil));
  290. inc(count);
  291. end;
  292. hp:=tused_unit(hp.next);
  293. end;
  294. { Insert initialization/finalization of the program }
  295. if (current_module.flags and (uf_init or uf_finalize))<>0 then
  296. begin
  297. if (current_module.flags and uf_init)<>0 then
  298. unitinits.concat(Tai_const.Createname(make_mangledname('INIT$',current_module.localsymtable,''),AT_FUNCTION,0))
  299. else
  300. unitinits.concat(Tai_const.Create_sym(nil));
  301. if (current_module.flags and uf_finalize)<>0 then
  302. unitinits.concat(Tai_const.Createname(make_mangledname('FINALIZE$',current_module.localsymtable,''),AT_FUNCTION,0))
  303. else
  304. unitinits.concat(Tai_const.Create_sym(nil));
  305. inc(count);
  306. end;
  307. { TableCount,InitCount }
  308. unitinits.insert(Tai_const.Create_32bit(0));
  309. unitinits.insert(Tai_const.Create_32bit(count));
  310. unitinits.insert(Tai_symbol.Createname_global('INITFINAL',AT_DATA,0));
  311. unitinits.insert(Tai_align.Create(const_align(4)));
  312. unitinits.concat(Tai_symbol_end.Createname('INITFINAL'));
  313. { insert in data segment }
  314. maybe_new_object_file(dataSegment);
  315. dataSegment.concatlist(unitinits);
  316. unitinits.free;
  317. end;
  318. procedure insertheap;
  319. begin
  320. maybe_new_object_file(bssSegment);
  321. maybe_new_object_file(dataSegment);
  322. { On the Macintosh Classic M68k Architecture
  323. The Heap variable is simply a POINTER to the
  324. real HEAP. The HEAP must be set up by the RTL
  325. and must store the pointer in this value.
  326. On OS/2 the heap is also intialized by the RTL. We do
  327. not output a pointer }
  328. case target_info.system of
  329. system_i386_OS2:
  330. bssSegment.concat(Tai_datablock.Create_global('HEAP',4));
  331. system_i386_EMX:
  332. ;
  333. system_powerpc_macos:
  334. ;
  335. system_i386_watcom:
  336. ;
  337. system_alpha_linux:
  338. ;
  339. system_m68k_Mac:
  340. bssSegment.concat(Tai_datablock.Create_global('HEAP',4));
  341. system_m68k_PalmOS:
  342. ;
  343. else
  344. begin
  345. bssSegment.concat(Tai_align.Create(var_align(heapsize)));
  346. bssSegment.concat(Tai_datablock.Create_global('HEAP',heapsize));
  347. end;
  348. end;
  349. {$ifdef m68k}
  350. if target_info.system<>system_m68k_PalmOS then
  351. begin
  352. dataSegment.concat(Tai_align.Create(const_align(4)));
  353. dataSegment.concat(Tai_symbol.Createname_global('HEAPSIZE',AT_DATA,4));
  354. dataSegment.concat(Tai_const.Create_32bit(heapsize));
  355. end;
  356. {$else m68k}
  357. dataSegment.concat(Tai_align.Create(const_align(4)));
  358. dataSegment.concat(Tai_symbol.Createname_global('HEAPSIZE',AT_DATA,4));
  359. dataSegment.concat(Tai_const.Create_32bit(heapsize));
  360. {$endif m68k}
  361. end;
  362. procedure insertstacklength;
  363. begin
  364. { stacksize can be specified and is now simulated }
  365. dataSegment.concat(Tai_align.Create(const_align(4)));
  366. dataSegment.concat(Tai_symbol.Createname_global('__stklen',AT_DATA,4));
  367. dataSegment.concat(Tai_const.Create_32bit(stacksize));
  368. end;
  369. procedure loaddefaultunits;
  370. procedure AddUnit(const s:string);
  371. var
  372. hp : tppumodule;
  373. unitsym : tunitsym;
  374. begin
  375. { load unit }
  376. hp:=registerunit(current_module,s,'');
  377. hp.loadppu;
  378. hp.adddependency(current_module);
  379. { add to symtable stack }
  380. tsymtable(hp.globalsymtable).next:=symtablestack;
  381. symtablestack:=hp.globalsymtable;
  382. { insert unitsym }
  383. unitsym:=tunitsym.create(s,hp.globalsymtable);
  384. inc(unitsym.refs);
  385. refsymtable.insert(unitsym);
  386. { add to used units }
  387. current_module.addusedunit(hp,false,unitsym);
  388. end;
  389. begin
  390. { are we compiling the system unit? }
  391. if (cs_compilesystem in aktmoduleswitches) then
  392. begin
  393. { create system defines }
  394. createconstdefs;
  395. { we don't need to reset anything, it's already done in parser.pas }
  396. exit;
  397. end;
  398. { insert the system unit, it is allways the first }
  399. Symtablestack:=nil;
  400. AddUnit('System');
  401. SystemUnit:=TGlobalSymtable(Symtablestack);
  402. { read default constant definitions }
  403. make_ref:=false;
  404. readconstdefs;
  405. make_ref:=true;
  406. { Set the owner of errorsym and errortype to symtable to
  407. prevent crashes when accessing .owner }
  408. generrorsym.owner:=systemunit;
  409. generrortype.def.owner:=systemunit;
  410. {$ifdef cpufpemu}
  411. { Floating point emulation unit? }
  412. if (cs_fp_emulation in aktmoduleswitches) then
  413. AddUnit('SoftFpu');
  414. {$endif cpufpemu}
  415. { Thread support unit? }
  416. if (cs_threading in aktmoduleswitches) then
  417. AddUnit('SysThrds');
  418. { Objpas unit? }
  419. if m_objpas in aktmodeswitches then
  420. AddUnit('ObjPas');
  421. { Profile unit? Needed for go32v2 only }
  422. if (cs_profile in aktmoduleswitches) and
  423. (target_info.system in [system_i386_go32v2,system_i386_watcom]) then
  424. AddUnit('Profile');
  425. { Units only required for main module }
  426. if not(current_module.is_unit) then
  427. begin
  428. { Heaptrc unit }
  429. if (cs_gdb_heaptrc in aktglobalswitches) then
  430. AddUnit('HeapTrc');
  431. { Lineinfo unit }
  432. if (cs_gdb_lineinfo in aktglobalswitches) then
  433. AddUnit('LineInfo');
  434. { Lineinfo unit }
  435. if (cs_gdb_valgrind in aktglobalswitches) then
  436. AddUnit('CMem');
  437. end;
  438. { save default symtablestack }
  439. defaultsymtablestack:=symtablestack;
  440. end;
  441. procedure loadunits;
  442. var
  443. s,sorg : stringid;
  444. fn : string;
  445. pu : tused_unit;
  446. hp2 : tmodule;
  447. hp3 : tsymtable;
  448. unitsym : tunitsym;
  449. begin
  450. consume(_USES);
  451. {$ifdef DEBUG}
  452. test_symtablestack;
  453. {$endif DEBUG}
  454. repeat
  455. s:=pattern;
  456. sorg:=orgpattern;
  457. consume(_ID);
  458. { support "<unit> in '<file>'" construct, but not for tp7 }
  459. if not(m_tp7 in aktmodeswitches) then
  460. begin
  461. if try_to_consume(_OP_IN) then
  462. fn:=FixFileName(get_stringconst)
  463. else
  464. fn:='';
  465. end;
  466. { Give a warning if objpas is loaded }
  467. if s='OBJPAS' then
  468. Message(parser_w_no_objpas_use_mode);
  469. { Using the unit itself is not possible }
  470. if (s<>current_module.modulename^) then
  471. begin
  472. { check if the unit is already used }
  473. hp2:=nil;
  474. pu:=tused_unit(current_module.used_units.first);
  475. while assigned(pu) do
  476. begin
  477. if (pu.u.modulename^=s) then
  478. begin
  479. hp2:=pu.u;
  480. break;
  481. end;
  482. pu:=tused_unit(pu.next);
  483. end;
  484. if not assigned(hp2) then
  485. hp2:=registerunit(current_module,sorg,fn)
  486. else
  487. Message1(sym_e_duplicate_id,s);
  488. { Create unitsym, we need to use the name as specified, we
  489. can not use the modulename because that can be different
  490. when -Un is used }
  491. unitsym:=tunitsym.create(sorg,nil);
  492. refsymtable.insert(unitsym);
  493. { the current module uses the unit hp2 }
  494. current_module.addusedunit(hp2,true,unitsym);
  495. end
  496. else
  497. Message1(sym_e_duplicate_id,s);
  498. if token=_COMMA then
  499. begin
  500. pattern:='';
  501. consume(_COMMA);
  502. end
  503. else
  504. break;
  505. until false;
  506. consume(_SEMICOLON);
  507. { Load the units }
  508. pu:=tused_unit(current_module.used_units.first);
  509. while assigned(pu) do
  510. begin
  511. { Only load the units that are in the current
  512. (interface/implementation) uses clause }
  513. if pu.in_uses and
  514. (pu.in_interface=current_module.in_interface) then
  515. begin
  516. tppumodule(pu.u).loadppu;
  517. { is our module compiled? then we can stop }
  518. if current_module.state=ms_compiled then
  519. exit;
  520. { add this unit to the dependencies }
  521. pu.u.adddependency(current_module);
  522. { save crc values }
  523. pu.checksum:=pu.u.crc;
  524. pu.interface_checksum:=pu.u.interface_crc;
  525. { connect unitsym to the globalsymtable of the unit }
  526. pu.unitsym.unitsymtable:=pu.u.globalsymtable;
  527. { increase refs of the unitsym when the unit contains
  528. initialization/finalization code so it doesn't trigger
  529. the unit not used hint }
  530. if (pu.u.flags and (uf_init or uf_finalize))<>0 then
  531. inc(pu.unitsym.refs);
  532. end;
  533. pu:=tused_unit(pu.next);
  534. end;
  535. { set the symtable to systemunit so it gets reorderd correctly,
  536. then insert the units in the symtablestack }
  537. pu:=tused_unit(current_module.used_units.first);
  538. symtablestack:=defaultsymtablestack;
  539. while assigned(pu) do
  540. begin
  541. if pu.in_uses then
  542. begin
  543. { Reinsert in symtablestack }
  544. hp3:=symtablestack;
  545. while assigned(hp3) do
  546. begin
  547. { insert units only once ! }
  548. if pu.u.globalsymtable=hp3 then
  549. break;
  550. hp3:=hp3.next;
  551. { unit isn't inserted }
  552. if hp3=nil then
  553. begin
  554. tsymtable(pu.u.globalsymtable).next:=symtablestack;
  555. symtablestack:=tsymtable(pu.u.globalsymtable);
  556. {$ifdef DEBUG}
  557. test_symtablestack;
  558. {$endif DEBUG}
  559. end;
  560. end;
  561. end;
  562. pu:=tused_unit(pu.next);
  563. end;
  564. end;
  565. {$IfDef GDB}
  566. procedure write_gdb_info;
  567. procedure reset_unit_type_info;
  568. var
  569. hp : tmodule;
  570. begin
  571. hp:=tmodule(loaded_units.first);
  572. while assigned(hp) do
  573. begin
  574. hp.is_stab_written:=false;
  575. hp:=tmodule(hp.next);
  576. end;
  577. end;
  578. procedure write_used_unit_type_info(hp:tmodule);
  579. var
  580. pu : tused_unit;
  581. begin
  582. pu:=tused_unit(hp.used_units.first);
  583. while assigned(pu) do
  584. begin
  585. if not pu.u.is_stab_written then
  586. begin
  587. { prevent infinte loop for circular dependencies }
  588. pu.u.is_stab_written:=true;
  589. { write type info from used units, use a depth first
  590. strategy to reduce the recursion in writing all
  591. dependent stabs }
  592. write_used_unit_type_info(pu.u);
  593. if assigned(pu.u.globalsymtable) then
  594. tglobalsymtable(pu.u.globalsymtable).concattypestabto(debuglist);
  595. end;
  596. pu:=tused_unit(pu.next);
  597. end;
  598. end;
  599. var
  600. vardebuglist : taasmoutput;
  601. begin
  602. if not (cs_debuginfo in aktmoduleswitches) then
  603. exit;
  604. { include symbol that will be referenced from the program to be sure to
  605. include this debuginfo .o file }
  606. if current_module.is_unit then
  607. begin
  608. current_module.flags:=current_module.flags or uf_has_debuginfo;
  609. debugList.concat(tai_symbol.Createname_global(make_mangledname('DEBUGINFO',current_module.globalsymtable,''),AT_DATA,0));
  610. end
  611. else
  612. debugList.concat(tai_symbol.Createname_global(make_mangledname('DEBUGINFO',current_module.localsymtable,''),AT_DATA,0));
  613. { first write all global/local symbols to a temp list. This will flag
  614. all required tdefs. Afterwards this list will be added }
  615. vardebuglist:=taasmoutput.create;
  616. if assigned(current_module.globalsymtable) then
  617. tglobalsymtable(current_module.globalsymtable).concatstabto(vardebuglist);
  618. if assigned(current_module.localsymtable) then
  619. tstaticsymtable(current_module.localsymtable).concatstabto(vardebuglist);
  620. { reset unit type info flag }
  621. reset_unit_type_info;
  622. { write used types from the used units }
  623. write_used_unit_type_info(current_module);
  624. { last write the types from this unit }
  625. if assigned(current_module.globalsymtable) then
  626. tglobalsymtable(current_module.globalsymtable).concattypestabto(debuglist);
  627. if assigned(current_module.localsymtable) then
  628. tstaticsymtable(current_module.localsymtable).concattypestabto(debuglist);
  629. { now all defs have a type in the debuglist, we now can add the vardebuglist since
  630. all references to defs can be solved }
  631. debuglist.concatlist(vardebuglist);
  632. vardebuglist.free;
  633. { include files }
  634. if (cs_gdb_dbx in aktglobalswitches) then
  635. begin
  636. debugList.concat(tai_comment.Create(strpnew('EINCL of global '+
  637. tglobalsymtable(current_module.globalsymtable).name^+' has index '+
  638. tostr(tglobalsymtable(current_module.globalsymtable).unitid))));
  639. debugList.concat(Tai_stabs.Create(strpnew('"'+
  640. tglobalsymtable(current_module.globalsymtable).name^+'",'+
  641. tostr(N_EINCL)+',0,0,0')));
  642. tglobalsymtable(current_module.globalsymtable).dbx_count_ok:={true}false;
  643. dbx_counter:=tglobalsymtable(current_module.globalsymtable).prev_dbx_counter;
  644. do_count_dbx:=false;
  645. end;
  646. end;
  647. {$EndIf GDB}
  648. procedure reset_all_defs;
  649. procedure reset_used_unit_defs(hp:tmodule);
  650. var
  651. pu : tused_unit;
  652. begin
  653. pu:=tused_unit(hp.used_units.first);
  654. while assigned(pu) do
  655. begin
  656. if not pu.u.is_reset then
  657. begin
  658. { prevent infinte loop for circular dependencies }
  659. pu.u.is_reset:=true;
  660. if assigned(pu.u.globalsymtable) then
  661. begin
  662. tglobalsymtable(pu.u.globalsymtable).reset_all_defs;
  663. reset_used_unit_defs(pu.u);
  664. end;
  665. end;
  666. pu:=tused_unit(pu.next);
  667. end;
  668. end;
  669. var
  670. hp2 : tmodule;
  671. begin
  672. hp2:=tmodule(loaded_units.first);
  673. while assigned(hp2) do
  674. begin
  675. hp2.is_reset:=false;
  676. hp2:=tmodule(hp2.next);
  677. end;
  678. reset_used_unit_defs(current_module);
  679. end;
  680. procedure parse_implementation_uses;
  681. begin
  682. if token=_USES then
  683. begin
  684. loadunits;
  685. {$ifdef DEBUG}
  686. test_symtablestack;
  687. {$endif DEBUG}
  688. end;
  689. end;
  690. procedure setupglobalswitches;
  691. begin
  692. { can't have local browser when no global browser }
  693. if (cs_local_browser in aktmoduleswitches) and
  694. not(cs_browser in aktmoduleswitches) then
  695. exclude(aktmoduleswitches,cs_local_browser);
  696. { define a symbol in delphi,objfpc,tp,gpc mode }
  697. if (m_delphi in aktmodeswitches) then
  698. current_scanner.def_macro('FPC_DELPHI')
  699. else
  700. if (m_tp7 in aktmodeswitches) then
  701. current_scanner.def_macro('FPC_TP')
  702. else
  703. if (m_objfpc in aktmodeswitches) then
  704. current_scanner.def_macro('FPC_OBJFPC')
  705. else
  706. if (m_gpc in aktmodeswitches) then
  707. current_scanner.def_macro('FPC_GPC')
  708. else
  709. if (m_mac in aktmodeswitches) then
  710. current_scanner.def_macro('FPC_MACPAS');
  711. end;
  712. function create_main_proc(const name:string;potype:tproctypeoption;st:tsymtable):tprocdef;
  713. var
  714. stt : tsymtable;
  715. ps : tprocsym;
  716. pd : tprocdef;
  717. begin
  718. { there should be no current_procinfo available }
  719. if assigned(current_procinfo) then
  720. internalerror(200304275);
  721. {Generate a procsym for main}
  722. make_ref:=false;
  723. { try to insert in in static symtable ! }
  724. stt:=symtablestack;
  725. symtablestack:=st;
  726. { generate procsym }
  727. ps:=tprocsym.create('$'+name);
  728. { main are allways used }
  729. inc(ps.refs);
  730. symtablestack.insert(ps);
  731. pd:=tprocdef.create(main_program_level);
  732. include(pd.procoptions,po_public);
  733. pd.procsym:=ps;
  734. ps.addprocdef(pd);
  735. { restore symtable }
  736. make_ref:=true;
  737. symtablestack:=stt;
  738. { set procdef options }
  739. pd.proctypeoption:=potype;
  740. pd.proccalloption:=pocall_default;
  741. pd.forwarddef:=false;
  742. pd.setmangledname(target_info.cprefix+name);
  743. pd.aliasnames.insert(pd.mangledname);
  744. { We don't need is a local symtable. Change it into the static
  745. symtable }
  746. pd.localst.free;
  747. pd.localst:=st;
  748. { set procinfo and current_procinfo.procdef }
  749. current_procinfo:=cprocinfo.create(nil);
  750. current_module.procinfo:=current_procinfo;
  751. current_procinfo.procdef:=pd;
  752. { return procdef }
  753. create_main_proc:=pd;
  754. { main proc does always a call e.g. to init system unit }
  755. include(current_procinfo.flags,pi_do_call);
  756. end;
  757. procedure release_main_proc(pd:tprocdef);
  758. begin
  759. { this is a main proc, so there should be no parent }
  760. if not(assigned(current_procinfo)) or
  761. assigned(current_procinfo.parent) or
  762. not(current_procinfo.procdef=pd) then
  763. internalerror(200304276);
  764. { remove procinfo }
  765. current_module.procinfo:=nil;
  766. current_procinfo.free;
  767. current_procinfo:=nil;
  768. { remove localst as it was replaced by staticsymtable }
  769. pd.localst:=nil;
  770. end;
  771. procedure gen_implicit_initfinal(flag:word;st:tsymtable);
  772. var
  773. pd : tprocdef;
  774. begin
  775. { update module flags }
  776. current_module.flags:=current_module.flags or flag;
  777. { create procdef }
  778. case flag of
  779. uf_init :
  780. begin
  781. pd:=create_main_proc(make_mangledname('',current_module.localsymtable,'init_implicit'),potype_unitinit,st);
  782. pd.aliasnames.insert(make_mangledname('INIT$',current_module.localsymtable,''));
  783. end;
  784. uf_finalize :
  785. begin
  786. pd:=create_main_proc(make_mangledname('',current_module.localsymtable,'finalize_implicit'),potype_unitfinalize,st);
  787. pd.aliasnames.insert(make_mangledname('FINALIZE$',current_module.localsymtable,''));
  788. end;
  789. else
  790. internalerror(200304253);
  791. end;
  792. tcgprocinfo(current_procinfo).code:=cnothingnode.create;
  793. tcgprocinfo(current_procinfo).generate_code;
  794. release_main_proc(pd);
  795. end;
  796. procedure proc_unit;
  797. function is_assembler_generated:boolean;
  798. begin
  799. is_assembler_generated:=(Errorcount=0) and
  800. not(
  801. codeSegment.empty and
  802. dataSegment.empty and
  803. bssSegment.empty and
  804. ((importssection=nil) or importsSection.empty) and
  805. ((resourcesection=nil) or resourceSection.empty) and
  806. ((resourcestringlist=nil) or resourcestringList.empty)
  807. );
  808. end;
  809. var
  810. main_file: tinputfile;
  811. st : tsymtable;
  812. unitst : tglobalsymtable;
  813. store_crc,store_interface_crc : cardinal;
  814. s1,s2 : ^string; {Saves stack space}
  815. force_init_final : boolean;
  816. pd : tprocdef;
  817. unitname8 : string[8];
  818. has_impl: boolean;
  819. begin
  820. consume(_UNIT);
  821. if compile_level=1 then
  822. Status.IsExe:=false;
  823. if token=_ID then
  824. begin
  825. { create filenames and unit name }
  826. main_file := current_scanner.inputfile;
  827. while assigned(main_file.next) do
  828. main_file := main_file.next;
  829. new(s1);
  830. s1^:=current_module.modulename^;
  831. current_module.SetFileName(main_file.path^+main_file.name^,true);
  832. current_module.SetModuleName(orgpattern);
  833. { check for system unit }
  834. new(s2);
  835. s2^:=upper(SplitName(main_file.name^));
  836. unitname8:=copy(current_module.modulename^,1,8);
  837. if (cs_check_unit_name in aktglobalswitches) and
  838. (
  839. not(
  840. (current_module.modulename^=s2^) or
  841. (
  842. (length(current_module.modulename^)>8) and
  843. (unitname8=s2^)
  844. )
  845. )
  846. or
  847. (
  848. (length(s1^)>8) and
  849. (s1^<>current_module.modulename^)
  850. )
  851. ) then
  852. Message1(unit_e_illegal_unit_name,current_module.realmodulename^);
  853. if (current_module.modulename^='SYSTEM') then
  854. include(aktmoduleswitches,cs_compilesystem);
  855. dispose(s2);
  856. dispose(s1);
  857. end;
  858. consume(_ID);
  859. consume(_SEMICOLON);
  860. consume(_INTERFACE);
  861. { global switches are read, so further changes aren't allowed }
  862. current_module.in_global:=false;
  863. { handle the global switches }
  864. setupglobalswitches;
  865. message1(unit_u_loading_interface_units,current_module.modulename^);
  866. { update status }
  867. status.currentmodule:=current_module.realmodulename^;
  868. { maybe turn off m_objpas if we are compiling objpas }
  869. if (current_module.modulename^='OBJPAS') then
  870. exclude(aktmodeswitches,m_objpas);
  871. parse_only:=true;
  872. { generate now the global symboltable }
  873. st:=tglobalsymtable.create(current_module.modulename^);
  874. refsymtable:=st;
  875. unitst:=tglobalsymtable(st);
  876. { define first as local to overcome dependency conflicts }
  877. current_module.localsymtable:=st;
  878. { the unit name must be usable as a unit specifier }
  879. { inside the unit itself (PM) }
  880. { this also forbids to have another symbol }
  881. { with the same name as the unit }
  882. refsymtable.insert(tunitsym.create(current_module.realmodulename^,unitst));
  883. { load default units, like the system unit }
  884. loaddefaultunits;
  885. { reset }
  886. make_ref:=true;
  887. { insert qualifier for the system unit (allows system.writeln) }
  888. if not(cs_compilesystem in aktmoduleswitches) then
  889. begin
  890. if token=_USES then
  891. begin
  892. loadunits;
  893. { has it been compiled at a higher level ?}
  894. if current_module.state=ms_compiled then
  895. exit;
  896. end;
  897. { ... but insert the symbol table later }
  898. st.next:=symtablestack;
  899. symtablestack:=st;
  900. end
  901. else
  902. { while compiling a system unit, some types are directly inserted }
  903. begin
  904. st.next:=symtablestack;
  905. symtablestack:=st;
  906. insert_intern_types(st);
  907. end;
  908. { now we know the place to insert the constants }
  909. constsymtable:=symtablestack;
  910. { move the global symtab from the temporary local to global }
  911. current_module.globalsymtable:=current_module.localsymtable;
  912. current_module.localsymtable:=nil;
  913. reset_all_defs;
  914. { number all units, so we know if a unit is used by this unit or
  915. needs to be added implicitly }
  916. current_module.numberunits;
  917. { ... parse the declarations }
  918. Message1(parser_u_parsing_interface,current_module.realmodulename^);
  919. read_interface_declarations;
  920. { leave when we got an error }
  921. if (Errorcount>0) and not status.skip_error then
  922. begin
  923. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  924. status.skip_error:=true;
  925. exit;
  926. end;
  927. { Our interface is compiled, generate CRC and switch to implementation }
  928. if not(cs_compilesystem in aktmoduleswitches) and
  929. (Errorcount=0) then
  930. tppumodule(current_module).getppucrc;
  931. current_module.in_interface:=false;
  932. current_module.interface_compiled:=true;
  933. { First reload all units depending on our interface, we need to do this
  934. in the implementation part to prevent errorneous circular references }
  935. reload_flagged_units;
  936. { Parse the implementation section }
  937. if (m_mac in aktmodeswitches) and try_to_consume(_END) then
  938. has_impl:= false
  939. else
  940. begin
  941. consume(_IMPLEMENTATION);
  942. has_impl:= true;
  943. end;
  944. if has_impl then
  945. Message1(unit_u_loading_implementation_units,current_module.modulename^);
  946. parse_only:=false;
  947. { generates static symbol table }
  948. st:=tstaticsymtable.create(current_module.modulename^);
  949. current_module.localsymtable:=st;
  950. { remove the globalsymtable from the symtable stack }
  951. { to reinsert it after loading the implementation units }
  952. symtablestack:=unitst.next;
  953. { we don't want implementation units symbols in unitsymtable !! PM }
  954. refsymtable:=st;
  955. { Read the implementation units }
  956. if has_impl then
  957. parse_implementation_uses;
  958. if current_module.state=ms_compiled then
  959. exit;
  960. { reset ranges/stabs in exported definitions }
  961. reset_all_defs;
  962. { All units are read, now give them a number }
  963. current_module.numberunits;
  964. { now we can change refsymtable }
  965. refsymtable:=st;
  966. { but reinsert the global symtable as lasts }
  967. unitst.next:=symtablestack;
  968. symtablestack:=unitst;
  969. {$ifdef DEBUG}
  970. test_symtablestack;
  971. {$endif DEBUG}
  972. constsymtable:=symtablestack;
  973. {$ifdef Splitheap}
  974. if testsplit then
  975. begin
  976. Split_Heap;
  977. allow_special:=true;
  978. Switch_to_temp_heap;
  979. end;
  980. { it will report all crossings }
  981. allow_special:=false;
  982. {$endif Splitheap}
  983. if has_impl then
  984. begin
  985. Message1(parser_u_parsing_implementation,current_module.modulename^);
  986. if current_module.in_interface then
  987. internalerror(200212285);
  988. { Compile the unit }
  989. pd:=create_main_proc(make_mangledname('',current_module.localsymtable,'init'),potype_unitinit,st);
  990. pd.aliasnames.insert(make_mangledname('INIT$',current_module.localsymtable,''));
  991. tcgprocinfo(current_procinfo).parse_body;
  992. tcgprocinfo(current_procinfo).generate_code;
  993. tcgprocinfo(current_procinfo).resetprocdef;
  994. release_main_proc(pd);
  995. end;
  996. { if the unit contains ansi/widestrings, initialization and
  997. finalization code must be forced }
  998. force_init_final:=tglobalsymtable(current_module.globalsymtable).needs_init_final or
  999. tstaticsymtable(current_module.localsymtable).needs_init_final;
  1000. { should we force unit initialization? }
  1001. { this is a hack, but how can it be done better ? }
  1002. if force_init_final and ((current_module.flags and uf_init)=0) then
  1003. gen_implicit_initfinal(uf_init,st);
  1004. { finalize? }
  1005. if has_impl and (token=_FINALIZATION) then
  1006. begin
  1007. { set module options }
  1008. current_module.flags:=current_module.flags or uf_finalize;
  1009. { Compile the finalize }
  1010. pd:=create_main_proc(make_mangledname('',current_module.localsymtable,'finalize'),potype_unitfinalize,st);
  1011. pd.aliasnames.insert(make_mangledname('FINALIZE$',current_module.localsymtable,''));
  1012. tcgprocinfo(current_procinfo).parse_body;
  1013. tcgprocinfo(current_procinfo).generate_code;
  1014. tcgprocinfo(current_procinfo).resetprocdef;
  1015. release_main_proc(pd);
  1016. end
  1017. else if force_init_final then
  1018. gen_implicit_initfinal(uf_finalize,st);
  1019. { the last char should always be a point }
  1020. consume(_POINT);
  1021. { Generate resoucestrings }
  1022. If ResourceStrings.ResStrCount>0 then
  1023. begin
  1024. ResourceStrings.CreateResourceStringList;
  1025. current_module.flags:=current_module.flags or uf_has_resources;
  1026. { only write if no errors found }
  1027. if (Errorcount=0) then
  1028. ResourceStrings.WriteResourceFile(ForceExtension(current_module.ppufilename^,'.rst'));
  1029. end;
  1030. if (Errorcount=0) then
  1031. begin
  1032. { tests, if all (interface) forwards are resolved }
  1033. tstoredsymtable(symtablestack).check_forwards;
  1034. { check if all private fields are used }
  1035. tstoredsymtable(symtablestack).allprivatesused;
  1036. { remove cross unit overloads }
  1037. tstoredsymtable(symtablestack).unchain_overloaded;
  1038. { test static symtable }
  1039. tstoredsymtable(st).allsymbolsused;
  1040. tstoredsymtable(st).allprivatesused;
  1041. tstoredsymtable(st).check_forwards;
  1042. tstoredsymtable(st).checklabels;
  1043. tstoredsymtable(st).unchain_overloaded;
  1044. { used units }
  1045. current_module.allunitsused;
  1046. end;
  1047. { leave when we got an error }
  1048. if (Errorcount>0) and not status.skip_error then
  1049. begin
  1050. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1051. status.skip_error:=true;
  1052. exit;
  1053. end;
  1054. { generate debuginfo }
  1055. {$ifdef GDB}
  1056. write_gdb_info;
  1057. {$endif GDB}
  1058. { generate a list of threadvars }
  1059. InsertThreadvars;
  1060. { generate imports }
  1061. if current_module.uses_imports then
  1062. importlib.generatelib;
  1063. { insert own objectfile, or say that it's in a library
  1064. (no check for an .o when loading) }
  1065. if is_assembler_generated then
  1066. insertobjectfile
  1067. else
  1068. current_module.flags:=current_module.flags or uf_no_link;
  1069. if cs_local_browser in aktmoduleswitches then
  1070. current_module.localsymtable:=refsymtable;
  1071. if is_assembler_generated then
  1072. begin
  1073. { create dwarf debuginfo }
  1074. create_dwarf;
  1075. { finish asmlist by adding segment starts }
  1076. insertsegment;
  1077. { assemble }
  1078. create_objectfile;
  1079. end;
  1080. { Write out the ppufile after the object file has been created }
  1081. store_interface_crc:=current_module.interface_crc;
  1082. store_crc:=current_module.crc;
  1083. if (Errorcount=0) then
  1084. tppumodule(current_module).writeppu;
  1085. if not(cs_compilesystem in aktmoduleswitches) then
  1086. if store_interface_crc<>current_module.interface_crc then
  1087. Message1(unit_u_interface_crc_changed,current_module.ppufilename^);
  1088. {$ifdef EXTDEBUG}
  1089. if not(cs_compilesystem in aktmoduleswitches) then
  1090. if (store_crc<>current_module.crc) and simplify_ppu then
  1091. Message1(unit_u_implementation_crc_changed,current_module.ppufilename^);
  1092. {$endif EXTDEBUG}
  1093. { remove static symtable (=refsymtable) here to save some mem }
  1094. if not (cs_local_browser in aktmoduleswitches) then
  1095. begin
  1096. st.free;
  1097. current_module.localsymtable:=nil;
  1098. end;
  1099. { leave when we got an error }
  1100. if (Errorcount>0) and not status.skip_error then
  1101. begin
  1102. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1103. status.skip_error:=true;
  1104. exit;
  1105. end;
  1106. Message1(unit_u_finished_compiling,current_module.modulename^);
  1107. end;
  1108. procedure proc_program(islibrary : boolean);
  1109. var
  1110. main_file: tinputfile;
  1111. st : tsymtable;
  1112. hp : tmodule;
  1113. pd : tprocdef;
  1114. begin
  1115. DLLsource:=islibrary;
  1116. Status.IsLibrary:=IsLibrary;
  1117. Status.IsExe:=true;
  1118. parse_only:=false;
  1119. { DLL defaults to create reloc info }
  1120. if islibrary then
  1121. begin
  1122. if not RelocSectionSetExplicitly then
  1123. RelocSection:=true;
  1124. end;
  1125. { relocation works only without stabs under win32 !! PM }
  1126. { internal assembler uses rva for stabs info
  1127. so it should work with relocated DLLs }
  1128. if RelocSection and
  1129. (target_info.system in [system_i386_win32,system_i386_wdosx]) and
  1130. (target_info.assem<>as_i386_pecoff) then
  1131. begin
  1132. include(aktglobalswitches,cs_link_strip);
  1133. { Warning stabs info does not work with reloc section !! }
  1134. if cs_debuginfo in aktmoduleswitches then
  1135. begin
  1136. Message1(parser_w_parser_reloc_no_debug,current_module.mainsource^);
  1137. Message(parser_w_parser_win32_debug_needs_WN);
  1138. exclude(aktmoduleswitches,cs_debuginfo);
  1139. end;
  1140. end;
  1141. { get correct output names }
  1142. main_file := current_scanner.inputfile;
  1143. while assigned(main_file.next) do
  1144. main_file := main_file.next;
  1145. current_module.SetFileName(main_file.path^+main_file.name^,true);
  1146. if islibrary then
  1147. begin
  1148. consume(_LIBRARY);
  1149. stringdispose(current_module.modulename);
  1150. current_module.modulename:=stringdup(pattern);
  1151. current_module.islibrary:=true;
  1152. exportlib.preparelib(pattern);
  1153. consume(_ID);
  1154. consume(_SEMICOLON);
  1155. end
  1156. else
  1157. { is there an program head ? }
  1158. if token=_PROGRAM then
  1159. begin
  1160. consume(_PROGRAM);
  1161. stringdispose(current_module.modulename);
  1162. stringdispose(current_module.realmodulename);
  1163. current_module.modulename:=stringdup(pattern);
  1164. current_module.realmodulename:=stringdup(orgpattern);
  1165. if (target_info.system in [system_i386_WIN32,system_i386_wdosx]) then
  1166. exportlib.preparelib(pattern);
  1167. consume(_ID);
  1168. if token=_LKLAMMER then
  1169. begin
  1170. consume(_LKLAMMER);
  1171. repeat
  1172. consume(_ID);
  1173. until not try_to_consume(_COMMA);
  1174. consume(_RKLAMMER);
  1175. end;
  1176. consume(_SEMICOLON);
  1177. end
  1178. else if (target_info.system in [system_i386_WIN32,system_i386_wdosx]) then
  1179. exportlib.preparelib(current_module.modulename^);
  1180. { global switches are read, so further changes aren't allowed }
  1181. current_module.in_global:=false;
  1182. { setup things using the global switches }
  1183. setupglobalswitches;
  1184. { set implementation flag }
  1185. current_module.in_interface:=false;
  1186. current_module.interface_compiled:=true;
  1187. { insert after the unit symbol tables the static symbol table }
  1188. { of the program }
  1189. st:=tstaticsymtable.create(current_module.modulename^);;
  1190. current_module.localsymtable:=st;
  1191. refsymtable:=st;
  1192. { load standard units (system,objpas,profile unit) }
  1193. loaddefaultunits;
  1194. {Load the units used by the program we compile.}
  1195. if token=_USES then
  1196. loadunits;
  1197. { reset ranges/stabs in exported definitions }
  1198. reset_all_defs;
  1199. { All units are read, now give them a number }
  1200. current_module.numberunits;
  1201. {Insert the name of the main program into the symbol table.}
  1202. if current_module.realmodulename^<>'' then
  1203. st.insert(tunitsym.create(current_module.realmodulename^,st));
  1204. { ...is also constsymtable, this is the symtable where }
  1205. { the elements of enumeration types are inserted }
  1206. constsymtable:=st;
  1207. Message1(parser_u_parsing_implementation,current_module.mainsource^);
  1208. { The program intialization needs an alias, so it can be called
  1209. from the bootstrap code.}
  1210. if islibrary or
  1211. (target_info.system in [system_powerpc_macos,system_powerpc_darwin]) then
  1212. begin
  1213. pd:=create_main_proc(make_mangledname('',current_module.localsymtable,'main'),potype_proginit,st);
  1214. { Win32 startup code needs a single name }
  1215. // if (target_info.system in [system_i386_win32,system_i386_wdosx]) then
  1216. pd.aliasnames.insert('PASCALMAIN');
  1217. end
  1218. else
  1219. begin
  1220. pd:=create_main_proc('main',potype_proginit,st);
  1221. pd.aliasnames.insert('PASCALMAIN');
  1222. end;
  1223. tcgprocinfo(current_procinfo).parse_body;
  1224. tcgprocinfo(current_procinfo).generate_code;
  1225. tcgprocinfo(current_procinfo).resetprocdef;
  1226. release_main_proc(pd);
  1227. { should we force unit initialization? }
  1228. if tstaticsymtable(current_module.localsymtable).needs_init_final then
  1229. begin
  1230. { initialize section }
  1231. gen_implicit_initfinal(uf_init,st);
  1232. { finalize section }
  1233. gen_implicit_initfinal(uf_finalize,st);
  1234. end;
  1235. { Add symbol to the exports section for win32 so smartlinking a
  1236. DLL will include the edata section }
  1237. if assigned(exportlib) and
  1238. (target_info.system in [system_i386_win32,system_i386_wdosx]) and
  1239. assigned(current_module._exports.first) then
  1240. codesegment.concat(tai_const.create_sym(exportlib.edatalabel));
  1241. If ResourceStrings.ResStrCount>0 then
  1242. begin
  1243. ResourceStrings.CreateResourceStringList;
  1244. { only write if no errors found }
  1245. if (Errorcount=0) then
  1246. ResourceStrings.WriteResourceFile(ForceExtension(current_module.ppufilename^,'.rst'));
  1247. end;
  1248. { finalize? }
  1249. if token=_FINALIZATION then
  1250. begin
  1251. { set module options }
  1252. current_module.flags:=current_module.flags or uf_finalize;
  1253. { Compile the finalize }
  1254. pd:=create_main_proc(make_mangledname('',current_module.localsymtable,'finalize'),potype_unitfinalize,st);
  1255. pd.aliasnames.insert(make_mangledname('FINALIZE$',current_module.localsymtable,''));
  1256. tcgprocinfo(current_procinfo).parse_body;
  1257. tcgprocinfo(current_procinfo).generate_code;
  1258. tcgprocinfo(current_procinfo).resetprocdef;
  1259. release_main_proc(pd);
  1260. end;
  1261. { consume the last point }
  1262. consume(_POINT);
  1263. if (Errorcount=0) then
  1264. begin
  1265. { test static symtable }
  1266. tstoredsymtable(st).allsymbolsused;
  1267. tstoredsymtable(st).allprivatesused;
  1268. tstoredsymtable(st).check_forwards;
  1269. tstoredsymtable(st).checklabels;
  1270. tstoredsymtable(st).unchain_overloaded;
  1271. current_module.allunitsused;
  1272. end;
  1273. { leave when we got an error }
  1274. if (Errorcount>0) and not status.skip_error then
  1275. begin
  1276. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1277. status.skip_error:=true;
  1278. exit;
  1279. end;
  1280. { generate debuginfo }
  1281. {$ifdef GDB}
  1282. write_gdb_info;
  1283. {$endif GDB}
  1284. { generate a list of threadvars }
  1285. InsertThreadvars;
  1286. { generate imports }
  1287. if current_module.uses_imports then
  1288. importlib.generatelib;
  1289. if islibrary or
  1290. (target_info.system in [system_i386_WIN32,system_i386_wdosx]) or
  1291. (target_info.system=system_i386_NETWARE) then
  1292. exportlib.generatelib;
  1293. { insert Tables and Heap }
  1294. insertThreadVarTablesTable;
  1295. insertResourceTablesTable;
  1296. insertinitfinaltable;
  1297. insertheap;
  1298. insertstacklength;
  1299. { create dwarf debuginfo }
  1300. create_dwarf;
  1301. { finish asmlist by adding segment starts }
  1302. insertsegment;
  1303. { insert own objectfile }
  1304. insertobjectfile;
  1305. { assemble and link }
  1306. create_objectfile;
  1307. { leave when we got an error }
  1308. if (Errorcount>0) and not status.skip_error then
  1309. begin
  1310. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1311. status.skip_error:=true;
  1312. exit;
  1313. end;
  1314. { create the executable when we are at level 1 }
  1315. if (compile_level=1) then
  1316. begin
  1317. { insert all .o files from all loaded units }
  1318. hp:=tmodule(loaded_units.first);
  1319. while assigned(hp) do
  1320. begin
  1321. linker.AddModuleFiles(hp);
  1322. hp:=tmodule(hp.next);
  1323. end;
  1324. { write .def file }
  1325. if (cs_link_deffile in aktglobalswitches) then
  1326. deffile.writefile;
  1327. { finally we can create a executable }
  1328. if (not current_module.is_unit) then
  1329. begin
  1330. if DLLSource then
  1331. linker.MakeSharedLibrary
  1332. else
  1333. linker.MakeExecutable;
  1334. end;
  1335. end;
  1336. end;
  1337. end.
  1338. {
  1339. $Log$
  1340. Revision 1.159 2004-06-29 21:00:08 peter
  1341. * only enable dwarf for supported platforms
  1342. Revision 1.158 2004/06/20 08:55:30 florian
  1343. * logs truncated
  1344. Revision 1.157 2004/06/18 15:16:27 peter
  1345. * fixed debuginfo symbol
  1346. Revision 1.156 2004/06/16 20:07:09 florian
  1347. * dwarf branch merged
  1348. Revision 1.155 2004/05/23 20:56:42 peter
  1349. * initialize errorsym/errortype.def.owner to prevent crashes
  1350. Revision 1.154 2004/05/23 15:06:21 peter
  1351. * implicit_finally flag must be set in pass1
  1352. * add check whether the implicit frame is generated when expected
  1353. Revision 1.153 2004/05/19 21:16:13 peter
  1354. * add DEBUGINFO symbol to reference the .o file that includes the
  1355. stabs info for types and global/static variables
  1356. * debuginfo flag added to ppu to indicate whether debuginfo is
  1357. generated or not
  1358. }