pmodules.pas 60 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. {$i fpcdefs.inc}
  20. {$define New_GDB}
  21. interface
  22. procedure proc_unit;
  23. procedure proc_program(islibrary : boolean);
  24. implementation
  25. uses
  26. globtype,version,systems,tokens,
  27. cutils,cclasses,comphook,
  28. globals,verbose,fmodule,finput,fppu,
  29. symconst,symbase,symtype,symdef,symsym,symtable,
  30. aasmbase,aasmtai,aasmcpu,
  31. cgbase,cpuinfo,
  32. ncgutil,
  33. link,assemble,import,export,gendef,ppu,comprsrc,
  34. cresstr,cpubase,
  35. {$ifdef GDB}
  36. gdb,
  37. {$endif GDB}
  38. scanner,pbase,pexpr,psystem,psub;
  39. procedure fixseg(p:TAAsmoutput;sec:TSection);
  40. begin
  41. p.insert(Tai_section.Create(sec));
  42. if (cs_create_smart in aktmoduleswitches) then
  43. p.insert(Tai_cut.Create);
  44. p.concat(Tai_section.Create(sec_none));
  45. end;
  46. procedure create_objectfile;
  47. var
  48. DLLScanner : TDLLScanner;
  49. s : string;
  50. KeepShared : TStringList;
  51. begin
  52. { try to create import entries from system dlls }
  53. if target_info.DllScanSupported and
  54. (not current_module.linkOtherSharedLibs.Empty) then
  55. begin
  56. { Init DLLScanner }
  57. if assigned(CDLLScanner[target_info.system]) then
  58. DLLScanner:=CDLLScanner[target_info.system].Create
  59. else
  60. internalerror(200104121);
  61. KeepShared:=TStringList.Create;
  62. { Walk all shared libs }
  63. While not current_module.linkOtherSharedLibs.Empty do
  64. begin
  65. S:=current_module.linkOtherSharedLibs.Getusemask(link_allways);
  66. if not DLLScanner.scan(s) then
  67. KeepShared.Concat(s);
  68. end;
  69. DLLscanner.Free;
  70. { Recreate import section }
  71. if (target_info.system in [system_i386_win32,system_i386_wdosx]) then
  72. begin
  73. if assigned(importssection)then
  74. importssection.clear
  75. else
  76. importssection:=taasmoutput.Create;
  77. importlib.generatelib;
  78. end;
  79. { Readd the not processed files }
  80. while not KeepShared.Empty do
  81. begin
  82. s:=KeepShared.GetFirst;
  83. current_module.linkOtherSharedLibs.add(s,link_allways);
  84. end;
  85. KeepShared.Free;
  86. end;
  87. { create the .s file and assemble it }
  88. GenerateAsm(false);
  89. { Also create a smartlinked version ? }
  90. if (cs_create_smart in aktmoduleswitches) then
  91. begin
  92. { regenerate the importssection for win32 }
  93. if assigned(importssection) and
  94. (target_info.system in [system_i386_win32,system_i386_wdosx]) then
  95. begin
  96. importsSection.clear;
  97. importlib.generatesmartlib;
  98. end;
  99. GenerateAsm(true);
  100. if target_asm.needar then
  101. Linker.MakeStaticLibrary;
  102. end;
  103. { resource files }
  104. CompileResourceFiles;
  105. end;
  106. procedure insertobjectfile;
  107. { Insert the used object file for this unit in the used list for this unit }
  108. begin
  109. current_module.linkunitofiles.add(current_module.objfilename^,link_static);
  110. current_module.flags:=current_module.flags or uf_static_linked;
  111. if (cs_create_smart in aktmoduleswitches) then
  112. begin
  113. current_module.linkunitstaticlibs.add(current_module.staticlibfilename^,link_smart);
  114. current_module.flags:=current_module.flags or uf_smart_linked;
  115. end;
  116. end;
  117. procedure insertsegment;
  118. begin
  119. { Insert Ident of the compiler }
  120. if (not (cs_create_smart in aktmoduleswitches))
  121. {$ifndef EXTDEBUG}
  122. and (not current_module.is_unit)
  123. {$endif}
  124. then
  125. begin
  126. { align the first data }
  127. dataSegment.insert(Tai_align.Create(const_align(32)));
  128. dataSegment.insert(Tai_string.Create('FPC '+full_version_string+
  129. ' ['+date_string+'] for '+target_cpu_string+' - '+target_info.shortname));
  130. end;
  131. { align code segment }
  132. codeSegment.concat(Tai_align.Create(aktalignment.procalign));
  133. { Insert start and end of sections }
  134. fixseg(codesegment,sec_code);
  135. fixseg(datasegment,sec_data);
  136. fixseg(bsssegment,sec_bss);
  137. { we should use .rdata section for these two no ? }
  138. { .rdata is a read only data section (PM) }
  139. fixseg(rttilist,sec_data);
  140. fixseg(consts,sec_data);
  141. if assigned(resourcestringlist) then
  142. fixseg(resourcestringlist,sec_data);
  143. {$ifdef GDB}
  144. if assigned(debuglist) then
  145. begin
  146. debugList.insert(Tai_symbol.Createname('gcc2_compiled',0));
  147. debugList.insert(Tai_symbol.Createname('fpc_compiled',0));
  148. fixseg(debuglist,sec_code);
  149. end;
  150. {$endif GDB}
  151. end;
  152. procedure InsertThreadvarTablesTable;
  153. var
  154. hp : tused_unit;
  155. ltvTables : taasmoutput;
  156. count : longint;
  157. begin
  158. ltvTables:=TAAsmOutput.Create;
  159. count:=0;
  160. hp:=tused_unit(usedunits.first);
  161. while assigned(hp) do
  162. begin
  163. If (hp.u.flags and uf_threadvars)=uf_threadvars then
  164. begin
  165. ltvTables.concat(Tai_const_symbol.Createdataname(hp.u.modulename^+'_$THREADVARLIST'));
  166. inc(count);
  167. end;
  168. hp:=tused_unit(hp.next);
  169. end;
  170. { Add program threadvars, if any }
  171. If (current_module.flags and uf_threadvars)=uf_threadvars then
  172. begin
  173. ltvTables.concat(Tai_const_symbol.Createdataname(current_module.modulename^+'_$THREADVARLIST'));
  174. inc(count);
  175. end;
  176. { TableCount }
  177. ltvTables.insert(Tai_const.Create_32bit(count));
  178. ltvTables.insert(Tai_symbol.Createdataname_global('FPC_THREADVARTABLES',0));
  179. ltvTables.insert(Tai_align.Create(const_align(pointer_size)));
  180. ltvTables.concat(Tai_symbol_end.Createname('FPC_THREADVARTABLES'));
  181. { insert in data segment }
  182. if (cs_create_smart in aktmoduleswitches) then
  183. dataSegment.concat(Tai_cut.Create);
  184. dataSegment.concatlist(ltvTables);
  185. ltvTables.free;
  186. end;
  187. procedure AddToThreadvarList(p:tnamedindexitem;arg:pointer);
  188. var
  189. ltvTable : taasmoutput;
  190. begin
  191. ltvTable:=taasmoutput(arg);
  192. if (tsym(p).typ=varsym) and
  193. (vo_is_thread_var in tvarsym(p).varoptions) then
  194. begin
  195. { address of threadvar }
  196. ltvTable.concat(tai_const_symbol.createdataname(tvarsym(p).mangledname));
  197. { size of threadvar }
  198. ltvTable.concat(tai_const.create_32bit(tvarsym(p).getsize));
  199. end;
  200. end;
  201. procedure InsertThreadvars;
  202. var
  203. ltvTable : TAAsmoutput;
  204. begin
  205. ltvTable:=TAAsmoutput.create;
  206. if assigned(current_module.globalsymtable) then
  207. current_module.globalsymtable.foreach_static({$ifdef FPCPROCVAR}@{$endif}AddToThreadvarList,ltvTable);
  208. current_module.localsymtable.foreach_static({$ifdef FPCPROCVAR}@{$endif}AddToThreadvarList,ltvTable);
  209. if ltvTable.first<>nil then
  210. begin
  211. { add begin and end of the list }
  212. ltvTable.insert(tai_symbol.createdataname_global(current_module.modulename^+'_$THREADVARLIST',0));
  213. ltvTable.concat(tai_const.create_32bit(0)); { end of list marker }
  214. ltvTable.concat(tai_symbol_end.createname(current_module.modulename^+'_$THREADVARLIST'));
  215. if (cs_create_smart in aktmoduleswitches) then
  216. dataSegment.concat(Tai_cut.Create);
  217. dataSegment.concatlist(ltvTable);
  218. current_module.flags:=current_module.flags or uf_threadvars;
  219. end;
  220. ltvTable.Free;
  221. end;
  222. Procedure InsertResourceTablesTable;
  223. var
  224. hp : tused_unit;
  225. ResourceStringTables : taasmoutput;
  226. count : longint;
  227. begin
  228. ResourceStringTables:=TAAsmOutput.Create;
  229. count:=0;
  230. hp:=tused_unit(usedunits.first);
  231. while assigned(hp) do
  232. begin
  233. If (hp.u.flags and uf_has_resources)=uf_has_resources then
  234. begin
  235. ResourceStringTables.concat(Tai_const_symbol.Createdataname(hp.u.modulename^+'_RESOURCESTRINGLIST'));
  236. inc(count);
  237. end;
  238. hp:=tused_unit(hp.next);
  239. end;
  240. { Add program resources, if any }
  241. If ResourceStringList<>Nil then
  242. begin
  243. ResourceStringTables.concat(Tai_const_symbol.Createdataname(current_module.modulename^+'_RESOURCESTRINGLIST'));
  244. Inc(Count);
  245. end;
  246. { TableCount }
  247. ResourceStringTables.insert(Tai_const.Create_32bit(count));
  248. ResourceStringTables.insert(Tai_symbol.Createdataname_global('FPC_RESOURCESTRINGTABLES',0));
  249. ResourceStringTables.insert(Tai_align.Create(const_align(4)));
  250. ResourceStringTables.concat(Tai_symbol_end.Createname('FPC_RESOURCESTRINGTABLES'));
  251. { insert in data segment }
  252. if (cs_create_smart in aktmoduleswitches) then
  253. dataSegment.concat(Tai_cut.Create);
  254. dataSegment.concatlist(ResourceStringTables);
  255. ResourceStringTables.free;
  256. end;
  257. procedure InsertInitFinalTable;
  258. var
  259. hp : tused_unit;
  260. unitinits : taasmoutput;
  261. count : longint;
  262. begin
  263. unitinits:=TAAsmOutput.Create;
  264. count:=0;
  265. hp:=tused_unit(usedunits.first);
  266. while assigned(hp) do
  267. begin
  268. { call the unit init code and make it external }
  269. if (hp.u.flags and (uf_init or uf_finalize))<>0 then
  270. begin
  271. if (hp.u.flags and uf_init)<>0 then
  272. unitinits.concat(Tai_const_symbol.Createname('INIT$$'+hp.u.modulename^))
  273. else
  274. unitinits.concat(Tai_const.Create_32bit(0));
  275. if (hp.u.flags and uf_finalize)<>0 then
  276. unitinits.concat(Tai_const_symbol.Createname('FINALIZE$$'+hp.u.modulename^))
  277. else
  278. unitinits.concat(Tai_const.Create_32bit(0));
  279. inc(count);
  280. end;
  281. hp:=tused_unit(hp.next);
  282. end;
  283. { Insert initialization/finalization of the program }
  284. if (current_module.flags and (uf_init or uf_finalize))<>0 then
  285. begin
  286. if (current_module.flags and uf_init)<>0 then
  287. unitinits.concat(Tai_const_symbol.Createname('INIT$$'+current_module.modulename^))
  288. else
  289. unitinits.concat(Tai_const.Create_32bit(0));
  290. if (current_module.flags and uf_finalize)<>0 then
  291. unitinits.concat(Tai_const_symbol.Createname('FINALIZE$$'+current_module.modulename^))
  292. else
  293. unitinits.concat(Tai_const.Create_32bit(0));
  294. inc(count);
  295. end;
  296. { TableCount,InitCount }
  297. unitinits.insert(Tai_const.Create_32bit(0));
  298. unitinits.insert(Tai_const.Create_32bit(count));
  299. unitinits.insert(Tai_symbol.Createdataname_global('INITFINAL',0));
  300. unitinits.insert(Tai_align.Create(const_align(4)));
  301. unitinits.concat(Tai_symbol_end.Createname('INITFINAL'));
  302. { insert in data segment }
  303. if (cs_create_smart in aktmoduleswitches) then
  304. dataSegment.concat(Tai_cut.Create);
  305. dataSegment.concatlist(unitinits);
  306. unitinits.free;
  307. end;
  308. procedure insertheap;
  309. begin
  310. if (cs_create_smart in aktmoduleswitches) then
  311. begin
  312. bssSegment.concat(Tai_cut.Create);
  313. dataSegment.concat(Tai_cut.Create);
  314. end;
  315. { On the Macintosh Classic M68k Architecture
  316. The Heap variable is simply a POINTER to the
  317. real HEAP. The HEAP must be set up by the RTL
  318. and must store the pointer in this value.
  319. On OS/2 the heap is also intialized by the RTL. We do
  320. not output a pointer }
  321. case target_info.system of
  322. {$ifdef x86_64}
  323. system_x86_64_linux:
  324. ;
  325. {$endif x86_64}
  326. {$ifdef i386}
  327. system_i386_OS2,system_i386_EMX:
  328. ;
  329. {$endif i386}
  330. {$ifdef powerpc}
  331. system_powerpc_macos:
  332. ;
  333. {$endif powerpc}
  334. {$ifdef alpha}
  335. system_alpha_linux:
  336. ;
  337. {$endif alpha}
  338. {$ifdef m68k}
  339. system_m68k_Mac:
  340. bssSegment.concat(Tai_datablock.Create_global('HEAP',4));
  341. system_m68k_PalmOS:
  342. ;
  343. {$endif m68k}
  344. {$IFDEF SPARC}
  345. system_SPARC_Linux:
  346. ;
  347. {$ENDIF SPARC}
  348. else
  349. begin
  350. bssSegment.concat(Tai_align.Create(var_align(heapsize)));
  351. bssSegment.concat(Tai_datablock.Create_global('HEAP',heapsize));
  352. end;
  353. end;
  354. {$ifdef m68k}
  355. if target_info.system<>system_m68k_PalmOS then
  356. begin
  357. dataSegment.concat(Tai_align.Create(const_align(4)));
  358. dataSegment.concat(Tai_symbol.Createdataname_global('HEAPSIZE',4));
  359. dataSegment.concat(Tai_const.Create_32bit(heapsize));
  360. end;
  361. {$else m68k}
  362. dataSegment.concat(Tai_align.Create(const_align(4)));
  363. dataSegment.concat(Tai_symbol.Createdataname_global('HEAPSIZE',4));
  364. dataSegment.concat(Tai_const.Create_32bit(heapsize));
  365. {$endif m68k}
  366. end;
  367. procedure insertstacklength;
  368. begin
  369. { stacksize can be specified and is now simulated }
  370. dataSegment.concat(Tai_align.Create(const_align(4)));
  371. dataSegment.concat(Tai_symbol.Createdataname_global('__stklen',4));
  372. dataSegment.concat(Tai_const.Create_32bit(stacksize));
  373. end;
  374. procedure loaddefaultunits;
  375. procedure AddUnit(const s:string);
  376. var
  377. hp : tppumodule;
  378. unitsym : tunitsym;
  379. begin
  380. { load unit }
  381. hp:=registerunit(current_module,s,'');
  382. hp.loadppu;
  383. hp.adddependency(current_module);
  384. current_module.addusedunit(hp,false);
  385. { add to symtable stack }
  386. tsymtable(hp.globalsymtable).next:=symtablestack;
  387. symtablestack:=hp.globalsymtable;
  388. { insert unitsym }
  389. unitsym:=tunitsym.create(s,hp.globalsymtable);
  390. inc(unitsym.refs);
  391. refsymtable.insert(unitsym);
  392. end;
  393. begin
  394. { are we compiling the system unit? }
  395. if (cs_compilesystem in aktmoduleswitches) then
  396. begin
  397. { create system defines }
  398. createconstdefs;
  399. { we don't need to reset anything, it's already done in parser.pas }
  400. exit;
  401. end;
  402. { insert the system unit, it is allways the first }
  403. Symtablestack:=nil;
  404. AddUnit('System');
  405. SystemUnit:=TGlobalSymtable(Symtablestack);
  406. { read default constant definitions }
  407. make_ref:=false;
  408. readconstdefs;
  409. make_ref:=true;
  410. {$ifdef cpufpemu}
  411. { Floating point emulation unit? }
  412. if (cs_fp_emulation in aktmoduleswitches) then
  413. AddUnit('SoftFpu');
  414. {$endif cpufpemu}
  415. { Thread support unit? }
  416. if (cs_threading in aktmoduleswitches) then
  417. AddUnit('SysThrds');
  418. { Objpas unit? }
  419. if m_objpas in aktmodeswitches then
  420. AddUnit('ObjPas');
  421. { Profile unit? Needed for go32v2 only }
  422. if (cs_profile in aktmoduleswitches) and
  423. (target_info.system=system_i386_go32v2) then
  424. AddUnit('Profile');
  425. { Units only required for main module }
  426. if not(current_module.is_unit) then
  427. begin
  428. { Heaptrc unit }
  429. if (cs_gdb_heaptrc in aktglobalswitches) then
  430. AddUnit('HeapTrc');
  431. { Lineinfo unit }
  432. if (cs_gdb_lineinfo in aktglobalswitches) then
  433. AddUnit('LineInfo');
  434. end;
  435. { save default symtablestack }
  436. defaultsymtablestack:=symtablestack;
  437. end;
  438. procedure loadunits;
  439. var
  440. s,sorg : stringid;
  441. fn : string;
  442. pu : tused_unit;
  443. hp2 : tmodule;
  444. hp3 : tsymtable;
  445. oldprocdef : tprocdef;
  446. unitsym : tunitsym;
  447. begin
  448. oldprocdef:=current_procdef;
  449. consume(_USES);
  450. {$ifdef DEBUG}
  451. test_symtablestack;
  452. {$endif DEBUG}
  453. repeat
  454. s:=pattern;
  455. sorg:=orgpattern;
  456. consume(_ID);
  457. { support "<unit> in '<file>'" construct, but not for tp7 }
  458. if not(m_tp7 in aktmodeswitches) then
  459. begin
  460. if try_to_consume(_OP_IN) then
  461. fn:=FixFileName(get_stringconst)
  462. else
  463. fn:='';
  464. end;
  465. { Give a warning if objpas is loaded }
  466. if s='OBJPAS' then
  467. Message(parser_w_no_objpas_use_mode);
  468. { Using the unit itself is not possible }
  469. if (s<>current_module.modulename^) then
  470. begin
  471. { check if the unit is already used }
  472. hp2:=nil;
  473. pu:=tused_unit(current_module.used_units.first);
  474. while assigned(pu) do
  475. begin
  476. if (pu.u.modulename^=s) then
  477. begin
  478. hp2:=pu.u;
  479. break;
  480. end;
  481. pu:=tused_unit(pu.next);
  482. end;
  483. { Need to register the unit? }
  484. if not assigned(hp2) then
  485. hp2:=registerunit(current_module,sorg,fn);
  486. { the current module uses the unit hp2 }
  487. current_module.addusedunit(hp2,true);
  488. end
  489. else
  490. Message1(sym_e_duplicate_id,s);
  491. if token=_COMMA then
  492. begin
  493. pattern:='';
  494. consume(_COMMA);
  495. end
  496. else
  497. break;
  498. until false;
  499. consume(_SEMICOLON);
  500. { Load the units }
  501. pu:=tused_unit(current_module.used_units.first);
  502. while assigned(pu) do
  503. begin
  504. if pu.in_uses then
  505. begin
  506. { store the original name to create the unitsym }
  507. sorg:=pu.u.realmodulename^;
  508. tppumodule(pu.u).loadppu;
  509. { is our module compiled? then we can stop }
  510. if current_module.state=ms_compiled then
  511. exit;
  512. { add this unit to the dependencies }
  513. pu.u.adddependency(current_module);
  514. pu.checksum:=pu.u.crc;
  515. pu.interface_checksum:=pu.u.interface_crc;
  516. { Create unitsym, we need to use the name as specified, we
  517. can not use the modulename because that can be different
  518. when -Un is used. But when the names are the same then
  519. force the name of the module so there will be no difference
  520. in the case of the name }
  521. if upper(sorg)=pu.u.modulename^ then
  522. sorg:=pu.u.realmodulename^;
  523. unitsym:=tunitsym.create(sorg,pu.u.globalsymtable);
  524. if (pu.u.flags and (uf_init or uf_finalize))<>0 then
  525. inc(unitsym.refs);
  526. refsymtable.insert(unitsym);
  527. end;
  528. pu:=tused_unit(pu.next);
  529. end;
  530. { set the symtable to systemunit so it gets reorderd correctly,
  531. then insert the units in the symtablestack }
  532. pu:=tused_unit(current_module.used_units.first);
  533. symtablestack:=defaultsymtablestack;
  534. while assigned(pu) do
  535. begin
  536. {$IfDef GDB}
  537. if (cs_debuginfo in aktmoduleswitches) and
  538. (cs_gdb_dbx in aktglobalswitches) and
  539. not pu.is_stab_written then
  540. begin
  541. tglobalsymtable(pu.u.globalsymtable).concattypestabto(debuglist);
  542. pu.is_stab_written:=true;
  543. pu.unitid:=tsymtable(pu.u.globalsymtable).unitid;
  544. end;
  545. {$EndIf GDB}
  546. if pu.in_uses then
  547. begin
  548. { Reinsert in symtablestack }
  549. hp3:=symtablestack;
  550. while assigned(hp3) do
  551. begin
  552. { insert units only once ! }
  553. if pu.u.globalsymtable=hp3 then
  554. break;
  555. hp3:=hp3.next;
  556. { unit isn't inserted }
  557. if hp3=nil then
  558. begin
  559. tsymtable(pu.u.globalsymtable).next:=symtablestack;
  560. symtablestack:=tsymtable(pu.u.globalsymtable);
  561. {$ifdef DEBUG}
  562. test_symtablestack;
  563. {$endif DEBUG}
  564. end;
  565. end;
  566. end;
  567. pu:=tused_unit(pu.next);
  568. end;
  569. current_procdef:=oldprocdef;
  570. end;
  571. procedure write_gdb_info;
  572. {$IfDef GDB}
  573. var
  574. hp : tused_unit;
  575. begin
  576. if not (cs_debuginfo in aktmoduleswitches) then
  577. exit;
  578. { now insert the units in the symtablestack }
  579. hp:=tused_unit(current_module.used_units.first);
  580. while assigned(hp) do
  581. begin
  582. if (cs_debuginfo in aktmoduleswitches) and
  583. not hp.is_stab_written then
  584. begin
  585. tglobalsymtable(hp.u.globalsymtable).concattypestabto(debuglist);
  586. hp.is_stab_written:=true;
  587. hp.unitid:=tsymtable(hp.u.globalsymtable).unitid;
  588. end;
  589. hp:=tused_unit(hp.next);
  590. end;
  591. if (not current_module.in_interface) and
  592. assigned(current_module.localsymtable) then
  593. begin
  594. { all types }
  595. tstaticsymtable(current_module.localsymtable).concattypestabto(debuglist);
  596. { and all local symbols}
  597. tstaticsymtable(current_module.localsymtable).concatstabto(debuglist);
  598. end
  599. else if assigned(current_module.globalsymtable) then
  600. begin
  601. { all types }
  602. tglobalsymtable(current_module.globalsymtable).concattypestabto(debuglist);
  603. { and all local symbols}
  604. tglobalsymtable(current_module.globalsymtable).concatstabto(debuglist);
  605. end;
  606. if (cs_gdb_dbx in aktglobalswitches) then
  607. begin
  608. debugList.concat(tai_comment.Create(strpnew('EINCL of global '+
  609. tglobalsymtable(current_module.globalsymtable).name^+' has index '+
  610. tostr(tglobalsymtable(current_module.globalsymtable).unitid))));
  611. debugList.concat(Tai_stabs.Create(strpnew('"'+
  612. tglobalsymtable(current_module.globalsymtable).name^+'",'+
  613. tostr(N_EINCL)+',0,0,0')));
  614. tglobalsymtable(current_module.globalsymtable).dbx_count_ok:={true}false;
  615. dbx_counter:=tglobalsymtable(current_module.globalsymtable).prev_dbx_counter;
  616. do_count_dbx:=false;
  617. end;
  618. end;
  619. {$Else GDB}
  620. begin
  621. end;
  622. {$EndIf GDB}
  623. procedure parse_implementation_uses(symt:tsymtable);
  624. begin
  625. if token=_USES then
  626. begin
  627. loadunits;
  628. {$ifdef DEBUG}
  629. test_symtablestack;
  630. {$endif DEBUG}
  631. end;
  632. end;
  633. procedure setupglobalswitches;
  634. begin
  635. { can't have local browser when no global browser }
  636. if (cs_local_browser in aktmoduleswitches) and
  637. not(cs_browser in aktmoduleswitches) then
  638. exclude(aktmoduleswitches,cs_local_browser);
  639. { define a symbol in delphi,objfpc,tp,gpc mode }
  640. if (m_delphi in aktmodeswitches) then
  641. current_scanner.def_macro('FPC_DELPHI')
  642. else
  643. if (m_tp7 in aktmodeswitches) then
  644. current_scanner.def_macro('FPC_TP')
  645. else
  646. if (m_objfpc in aktmodeswitches) then
  647. current_scanner.def_macro('FPC_OBJFPC')
  648. else
  649. if (m_gpc in aktmodeswitches) then
  650. current_scanner.def_macro('FPC_GPC');
  651. end;
  652. function create_main_proc(const name:string;potype:tproctypeoption;st:tsymtable):tprocdef;
  653. var
  654. stt : tsymtable;
  655. ps : tprocsym;
  656. pd : tprocdef;
  657. begin
  658. { there should be no current_procinfo available }
  659. if assigned(current_procinfo) then
  660. internalerror(200304275);
  661. {Generate a procsym for main}
  662. make_ref:=false;
  663. { try to insert in in static symtable ! }
  664. stt:=symtablestack;
  665. symtablestack:=st;
  666. { generate procsym }
  667. ps:=tprocsym.create('$'+name);
  668. { main are allways used }
  669. inc(ps.refs);
  670. symtablestack.insert(ps);
  671. pd:=tprocdef.create(main_program_level);
  672. include(pd.procoptions,po_public);
  673. pd.procsym:=ps;
  674. ps.addprocdef(pd);
  675. { restore symtable }
  676. make_ref:=true;
  677. symtablestack:=stt;
  678. { set procdef options }
  679. pd.proctypeoption:=potype;
  680. pd.forwarddef:=false;
  681. pd.setmangledname(target_info.cprefix+name);
  682. pd.aliasnames.insert(pd.mangledname);
  683. { We don't need is a local symtable. Change it into the static
  684. symtable }
  685. pd.localst.free;
  686. pd.localst:=st;
  687. { set procinfo and current_procdef }
  688. current_procinfo:=cprocinfo.create(nil);
  689. current_module.procinfo:=current_procinfo;
  690. current_procinfo.procdef:=pd;
  691. current_procdef:=pd;
  692. { return procdef }
  693. create_main_proc:=pd;
  694. end;
  695. procedure release_main_proc(pd:tprocdef);
  696. begin
  697. { this is a main proc, so there should be no parent }
  698. if not(assigned(current_procinfo)) or
  699. assigned(current_procinfo.parent) or
  700. not(current_procinfo.procdef=pd) then
  701. internalerror(200304276);
  702. { remove procinfo }
  703. current_module.procinfo:=nil;
  704. current_procinfo.free;
  705. current_procinfo:=nil;
  706. { remove localst as it was replaced by staticsymtable }
  707. pd.localst:=nil;
  708. end;
  709. procedure gen_implicit_initfinal(list:taasmoutput;flag:word;st:tsymtable);
  710. var
  711. parasize : longint;
  712. nostackframe : boolean;
  713. pd : tprocdef;
  714. oldexitlabel,
  715. oldexit2label : tasmlabel;
  716. begin
  717. { update module flags }
  718. current_module.flags:=current_module.flags or flag;
  719. { create procdef }
  720. case flag of
  721. uf_init :
  722. begin
  723. pd:=create_main_proc(current_module.modulename^+'_init_implicit',potype_unitinit,st);
  724. pd.aliasnames.insert('INIT$$'+current_module.modulename^);
  725. end;
  726. uf_finalize :
  727. begin
  728. pd:=create_main_proc(current_module.modulename^+'_finalize_implicit',potype_unitfinalize,st);
  729. pd.aliasnames.insert('FINALIZE$$'+current_module.modulename^);
  730. end;
  731. else
  732. internalerror(200304253);
  733. end;
  734. { save labels }
  735. oldexitlabel:=aktexitlabel;
  736. oldexit2label:=aktexit2label;
  737. { generate a dummy function }
  738. parasize:=0;
  739. nostackframe:=false;
  740. objectlibrary.getlabel(aktexitlabel);
  741. objectlibrary.getlabel(aktexit2label);
  742. include(current_procinfo.flags,pi_do_call);
  743. genentrycode(list,0,parasize,nostackframe,false);
  744. genexitcode(list,parasize,nostackframe,false);
  745. list.convert_registers;
  746. release_main_proc(pd);
  747. { restore }
  748. aktexitlabel:=oldexitlabel;
  749. aktexit2label:=oldexit2label;
  750. end;
  751. procedure proc_unit;
  752. function is_assembler_generated:boolean;
  753. begin
  754. is_assembler_generated:=(Errorcount=0) and
  755. not(
  756. codeSegment.empty and
  757. dataSegment.empty and
  758. bssSegment.empty and
  759. ((importssection=nil) or importsSection.empty) and
  760. ((resourcesection=nil) or resourceSection.empty) and
  761. ((resourcestringlist=nil) or resourcestringList.empty)
  762. );
  763. end;
  764. var
  765. main_file: tinputfile;
  766. st : tsymtable;
  767. unitst : tglobalsymtable;
  768. {$ifdef GDB}
  769. pu : tused_unit;
  770. {$endif GDB}
  771. store_crc,store_interface_crc : cardinal;
  772. s2 : ^string; {Saves stack space}
  773. force_init_final : boolean;
  774. initfinalcode : taasmoutput;
  775. pd : tprocdef;
  776. begin
  777. initfinalcode:=taasmoutput.create;
  778. consume(_UNIT);
  779. if compile_level=1 then
  780. Status.IsExe:=false;
  781. if token=_ID then
  782. begin
  783. { create filenames and unit name }
  784. main_file := current_scanner.inputfile;
  785. while assigned(main_file.next) do
  786. main_file := main_file.next;
  787. current_module.SetFileName(main_file.path^+main_file.name^,true);
  788. current_module.SetModuleName(orgpattern);
  789. { check for system unit }
  790. new(s2);
  791. s2^:=upper(SplitName(main_file.name^));
  792. if (cs_check_unit_name in aktglobalswitches) and
  793. not((current_module.modulename^=s2^) or
  794. ((length(current_module.modulename^)>8) and
  795. (copy(current_module.modulename^,1,8)=s2^))) then
  796. Message1(unit_e_illegal_unit_name,current_module.realmodulename^);
  797. if (current_module.modulename^='SYSTEM') then
  798. include(aktmoduleswitches,cs_compilesystem);
  799. dispose(s2);
  800. end;
  801. consume(_ID);
  802. consume(_SEMICOLON);
  803. consume(_INTERFACE);
  804. { global switches are read, so further changes aren't allowed }
  805. current_module.in_global:=false;
  806. { handle the global switches }
  807. setupglobalswitches;
  808. Message1(unit_u_loading_interface_units,current_module.modulename^);
  809. { update status }
  810. status.currentmodule:=current_module.realmodulename^;
  811. { maybe turn off m_objpas if we are compiling objpas }
  812. if (current_module.modulename^='OBJPAS') then
  813. exclude(aktmodeswitches,m_objpas);
  814. parse_only:=true;
  815. { generate now the global symboltable }
  816. st:=tglobalsymtable.create(current_module.modulename^);
  817. refsymtable:=st;
  818. unitst:=tglobalsymtable(st);
  819. { define first as local to overcome dependency conflicts }
  820. current_module.localsymtable:=st;
  821. { the unit name must be usable as a unit specifier }
  822. { inside the unit itself (PM) }
  823. { this also forbids to have another symbol }
  824. { with the same name as the unit }
  825. refsymtable.insert(tunitsym.create(current_module.realmodulename^,unitst));
  826. { load default units, like the system unit }
  827. loaddefaultunits;
  828. { reset }
  829. make_ref:=true;
  830. { insert qualifier for the system unit (allows system.writeln) }
  831. if not(cs_compilesystem in aktmoduleswitches) then
  832. begin
  833. if token=_USES then
  834. begin
  835. loadunits;
  836. { has it been compiled at a higher level ?}
  837. if current_module.state=ms_compiled then
  838. begin
  839. { this unit symtable is obsolete }
  840. { dispose(unitst,done);
  841. disposed as localsymtable !! }
  842. RestoreUnitSyms;
  843. exit;
  844. end;
  845. end;
  846. { ... but insert the symbol table later }
  847. st.next:=symtablestack;
  848. symtablestack:=st;
  849. end
  850. else
  851. { while compiling a system unit, some types are directly inserted }
  852. begin
  853. st.next:=symtablestack;
  854. symtablestack:=st;
  855. insert_intern_types(st);
  856. end;
  857. { now we know the place to insert the constants }
  858. constsymtable:=symtablestack;
  859. { move the global symtab from the temporary local to global }
  860. current_module.globalsymtable:=current_module.localsymtable;
  861. current_module.localsymtable:=nil;
  862. reset_global_defs;
  863. { number all units, so we know if a unit is used by this unit or
  864. needs to be added implicitly }
  865. current_module.numberunits;
  866. { ... parse the declarations }
  867. Message1(parser_u_parsing_interface,current_module.realmodulename^);
  868. read_interface_declarations;
  869. { leave when we got an error }
  870. if (Errorcount>0) and not status.skip_error then
  871. begin
  872. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  873. status.skip_error:=true;
  874. exit;
  875. end;
  876. {else in inteface its somatimes necessary even if unused
  877. st^.allunitsused; }
  878. {$ifdef New_GDB}
  879. write_gdb_info;
  880. {$endIf Def New_GDB}
  881. if not(cs_compilesystem in aktmoduleswitches) then
  882. if (Errorcount=0) then
  883. tppumodule(current_module).getppucrc;
  884. { Parse the implementation section }
  885. consume(_IMPLEMENTATION);
  886. current_module.in_interface:=false;
  887. Message1(unit_u_loading_implementation_units,current_module.modulename^);
  888. parse_only:=false;
  889. { generates static symbol table }
  890. st:=tstaticsymtable.create(current_module.modulename^);
  891. current_module.localsymtable:=st;
  892. { remove the globalsymtable from the symtable stack }
  893. { to reinsert it after loading the implementation units }
  894. symtablestack:=unitst.next;
  895. { we don't want implementation units symbols in unitsymtable !! PM }
  896. refsymtable:=st;
  897. { Read the implementation units }
  898. parse_implementation_uses(unitst);
  899. if current_module.state=ms_compiled then
  900. begin
  901. RestoreUnitSyms;
  902. exit;
  903. end;
  904. { reset ranges/stabs in exported definitions }
  905. reset_global_defs;
  906. { All units are read, now give them a number }
  907. current_module.numberunits;
  908. { now we can change refsymtable }
  909. refsymtable:=st;
  910. { but reinsert the global symtable as lasts }
  911. unitst.next:=symtablestack;
  912. symtablestack:=unitst;
  913. tstoredsymtable(symtablestack).chainoperators;
  914. {$ifdef DEBUG}
  915. test_symtablestack;
  916. {$endif DEBUG}
  917. constsymtable:=symtablestack;
  918. {$ifdef Splitheap}
  919. if testsplit then
  920. begin
  921. Split_Heap;
  922. allow_special:=true;
  923. Switch_to_temp_heap;
  924. end;
  925. { it will report all crossings }
  926. allow_special:=false;
  927. {$endif Splitheap}
  928. Message1(parser_u_parsing_implementation,current_module.modulename^);
  929. if current_module.in_interface then
  930. internalerror(200212285);
  931. { Compile the unit }
  932. pd:=create_main_proc(current_module.modulename^+'_init',potype_unitinit,st);
  933. pd.aliasnames.insert('INIT$$'+current_module.modulename^);
  934. tcgprocinfo(current_procinfo).parse_body;
  935. tcgprocinfo(current_procinfo).generate_code;
  936. tcgprocinfo(current_procinfo).resetprocdef;
  937. release_main_proc(pd);
  938. { if the unit contains ansi/widestrings, initialization and
  939. finalization code must be forced }
  940. force_init_final:=tglobalsymtable(current_module.globalsymtable).needs_init_final or
  941. tstaticsymtable(current_module.localsymtable).needs_init_final;
  942. { should we force unit initialization? }
  943. { this is a hack, but how can it be done better ? }
  944. if force_init_final and ((current_module.flags and uf_init)=0) then
  945. begin
  946. gen_implicit_initfinal(initfinalcode,uf_init,st);
  947. codesegment.concatlist(initfinalcode);
  948. end;
  949. { finalize? }
  950. if token=_FINALIZATION then
  951. begin
  952. { set module options }
  953. current_module.flags:=current_module.flags or uf_finalize;
  954. { Compile the finalize }
  955. pd:=create_main_proc(current_module.modulename^+'_finalize',potype_unitfinalize,st);
  956. pd.aliasnames.insert('FINALIZE$$'+current_module.modulename^);
  957. tcgprocinfo(current_procinfo).parse_body;
  958. tcgprocinfo(current_procinfo).generate_code;
  959. tcgprocinfo(current_procinfo).resetprocdef;
  960. release_main_proc(pd);
  961. end
  962. else if force_init_final then
  963. begin
  964. gen_implicit_initfinal(initfinalcode,uf_finalize,st);
  965. codesegment.concatlist(initfinalcode);
  966. end;
  967. { the last char should always be a point }
  968. consume(_POINT);
  969. { generate a list of threadvars }
  970. InsertThreadvars;
  971. { Generate resoucestrings }
  972. If ResourceStrings.ResStrCount>0 then
  973. begin
  974. ResourceStrings.CreateResourceStringList;
  975. current_module.flags:=current_module.flags or uf_has_resources;
  976. { only write if no errors found }
  977. if (Errorcount=0) then
  978. ResourceStrings.WriteResourceFile(ForceExtension(current_module.ppufilename^,'.rst'));
  979. end;
  980. { test static symtable }
  981. if (Errorcount=0) then
  982. begin
  983. tstoredsymtable(st).allsymbolsused;
  984. tstoredsymtable(st).allunitsused;
  985. tstoredsymtable(st).allprivatesused;
  986. end;
  987. { size of the static data }
  988. datasize:=st.datasize;
  989. {$ifdef GDB}
  990. { add all used definitions even for implementation}
  991. if (cs_debuginfo in aktmoduleswitches) then
  992. begin
  993. {$IfnDef New_GDB}
  994. if assigned(current_module.globalsymtable) then
  995. begin
  996. { all types }
  997. tglobalsymtable(current_module.globalsymtable).concattypestabto(debuglist);
  998. { and all local symbols}
  999. tglobalsymtable(current_module.globalsymtable).concatstabto(debuglist);
  1000. end;
  1001. { all local types }
  1002. tglobalsymtable(st)^.concattypestabto(debuglist);
  1003. { and all local symbols}
  1004. st^.concatstabto(debuglist);
  1005. {$else New_GDB}
  1006. write_gdb_info;
  1007. {$endIf Def New_GDB}
  1008. end;
  1009. {$endif GDB}
  1010. reset_global_defs;
  1011. if (Errorcount=0) then
  1012. begin
  1013. { tests, if all (interface) forwards are resolved }
  1014. tstoredsymtable(symtablestack).check_forwards;
  1015. { check if all private fields are used }
  1016. tstoredsymtable(symtablestack).allprivatesused;
  1017. { remove cross unit overloads }
  1018. tstoredsymtable(symtablestack).unchain_overloaded;
  1019. end;
  1020. {$ifdef GDB}
  1021. tglobalsymtable(symtablestack).is_stab_written:=false;
  1022. {$endif GDB}
  1023. { leave when we got an error }
  1024. if (Errorcount>0) and not status.skip_error then
  1025. begin
  1026. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1027. status.skip_error:=true;
  1028. exit;
  1029. end;
  1030. { generate imports }
  1031. if current_module.uses_imports then
  1032. importlib.generatelib;
  1033. { insert own objectfile, or say that it's in a library
  1034. (no check for an .o when loading) }
  1035. if is_assembler_generated then
  1036. insertobjectfile
  1037. else
  1038. current_module.flags:=current_module.flags or uf_no_link;
  1039. if cs_local_browser in aktmoduleswitches then
  1040. current_module.localsymtable:=refsymtable;
  1041. {$ifdef GDB}
  1042. pu:=tused_unit(usedunits.first);
  1043. while assigned(pu) do
  1044. begin
  1045. if assigned(pu.u.globalsymtable) then
  1046. tglobalsymtable(pu.u.globalsymtable).is_stab_written:=false;
  1047. pu:=tused_unit(pu.next);
  1048. end;
  1049. {$endif GDB}
  1050. if is_assembler_generated then
  1051. begin
  1052. { finish asmlist by adding segment starts }
  1053. insertsegment;
  1054. { assemble }
  1055. create_objectfile;
  1056. end;
  1057. { Write out the ppufile after the object file has been created }
  1058. store_interface_crc:=current_module.interface_crc;
  1059. store_crc:=current_module.crc;
  1060. if (Errorcount=0) then
  1061. tppumodule(current_module).writeppu;
  1062. if not(cs_compilesystem in aktmoduleswitches) then
  1063. if store_interface_crc<>current_module.interface_crc then
  1064. Message1(unit_u_interface_crc_changed,current_module.ppufilename^);
  1065. {$ifdef EXTDEBUG}
  1066. if not(cs_compilesystem in aktmoduleswitches) then
  1067. if (store_crc<>current_module.crc) and simplify_ppu then
  1068. Message1(unit_u_implementation_crc_changed,current_module.ppufilename^);
  1069. {$endif EXTDEBUG}
  1070. { remove static symtable (=refsymtable) here to save some mem }
  1071. if not (cs_local_browser in aktmoduleswitches) then
  1072. begin
  1073. st.free;
  1074. current_module.localsymtable:=nil;
  1075. end;
  1076. RestoreUnitSyms;
  1077. { leave when we got an error }
  1078. if (Errorcount>0) and not status.skip_error then
  1079. begin
  1080. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1081. status.skip_error:=true;
  1082. exit;
  1083. end;
  1084. initfinalcode.free;
  1085. Message1(unit_u_finished_compiling,current_module.modulename^);
  1086. end;
  1087. procedure proc_program(islibrary : boolean);
  1088. var
  1089. main_file: tinputfile;
  1090. st : tsymtable;
  1091. hp : tmodule;
  1092. initfinalcode : taasmoutput;
  1093. pd : tprocdef;
  1094. begin
  1095. initfinalcode:=taasmoutput.create;
  1096. DLLsource:=islibrary;
  1097. Status.IsLibrary:=IsLibrary;
  1098. Status.IsExe:=true;
  1099. parse_only:=false;
  1100. { relocation works only without stabs under win32 !! PM }
  1101. { internal assembler uses rva for stabs info
  1102. so it should work with relocated DLLs }
  1103. if RelocSection and
  1104. (target_info.system in [system_i386_win32,system_i386_wdosx]) and
  1105. (target_info.assem<>as_i386_pecoff) then
  1106. begin
  1107. include(aktglobalswitches,cs_link_strip);
  1108. { Warning stabs info does not work with reloc section !! }
  1109. if cs_debuginfo in aktmoduleswitches then
  1110. begin
  1111. Message1(parser_w_parser_reloc_no_debug,current_module.mainsource^);
  1112. Message(parser_w_parser_win32_debug_needs_WN);
  1113. exclude(aktmoduleswitches,cs_debuginfo);
  1114. end;
  1115. end;
  1116. { get correct output names }
  1117. main_file := current_scanner.inputfile;
  1118. while assigned(main_file.next) do
  1119. main_file := main_file.next;
  1120. current_module.SetFileName(main_file.path^+main_file.name^,true);
  1121. if islibrary then
  1122. begin
  1123. consume(_LIBRARY);
  1124. stringdispose(current_module.modulename);
  1125. current_module.modulename:=stringdup(pattern);
  1126. current_module.islibrary:=true;
  1127. exportlib.preparelib(pattern);
  1128. consume(_ID);
  1129. consume(_SEMICOLON);
  1130. end
  1131. else
  1132. { is there an program head ? }
  1133. if token=_PROGRAM then
  1134. begin
  1135. consume(_PROGRAM);
  1136. stringdispose(current_module.modulename);
  1137. stringdispose(current_module.realmodulename);
  1138. current_module.modulename:=stringdup(pattern);
  1139. current_module.realmodulename:=stringdup(orgpattern);
  1140. if (target_info.system in [system_i386_WIN32,system_i386_wdosx]) then
  1141. exportlib.preparelib(pattern);
  1142. consume(_ID);
  1143. if token=_LKLAMMER then
  1144. begin
  1145. consume(_LKLAMMER);
  1146. repeat
  1147. consume(_ID);
  1148. until not try_to_consume(_COMMA);
  1149. consume(_RKLAMMER);
  1150. end;
  1151. consume(_SEMICOLON);
  1152. end
  1153. else if (target_info.system in [system_i386_WIN32,system_i386_wdosx]) then
  1154. exportlib.preparelib(current_module.modulename^);
  1155. { global switches are read, so further changes aren't allowed }
  1156. current_module.in_global:=false;
  1157. { setup things using the global switches }
  1158. setupglobalswitches;
  1159. { set implementation flag }
  1160. current_module.in_interface:=false;
  1161. { insert after the unit symbol tables the static symbol table }
  1162. { of the program }
  1163. st:=tstaticsymtable.create(current_module.modulename^);;
  1164. current_module.localsymtable:=st;
  1165. refsymtable:=st;
  1166. { load standard units (system,objpas,profile unit) }
  1167. loaddefaultunits;
  1168. {Load the units used by the program we compile.}
  1169. if token=_USES then
  1170. loadunits;
  1171. tstoredsymtable(symtablestack).chainoperators;
  1172. { reset ranges/stabs in exported definitions }
  1173. reset_global_defs;
  1174. { All units are read, now give them a number }
  1175. current_module.numberunits;
  1176. {Insert the name of the main program into the symbol table.}
  1177. if current_module.realmodulename^<>'' then
  1178. st.insert(tunitsym.create(current_module.realmodulename^,st));
  1179. { ...is also constsymtable, this is the symtable where }
  1180. { the elements of enumeration types are inserted }
  1181. constsymtable:=st;
  1182. Message1(parser_u_parsing_implementation,current_module.mainsource^);
  1183. { The program intialization needs an alias, so it can be called
  1184. from the bootstrap code.}
  1185. if islibrary then
  1186. begin
  1187. pd:=create_main_proc(current_module.modulename^+'_main',potype_proginit,st);
  1188. { Win32 startup code needs a single name }
  1189. // if (target_info.system in [system_i386_win32,system_i386_wdosx]) then
  1190. pd.aliasnames.insert('PASCALMAIN');
  1191. { this code is called from C so we need to save some
  1192. registers }
  1193. include(pd.procoptions,po_savestdregs);
  1194. end
  1195. else
  1196. begin
  1197. pd:=create_main_proc('main',potype_proginit,st);
  1198. pd.aliasnames.insert('PASCALMAIN');
  1199. end;
  1200. {$IFDEF SPARC}
  1201. current_procinfo.After_Header;
  1202. {main function is declared as
  1203. PROCEDURE main(ArgC:Integer;ArgV,EnvP:ARRAY OF PChar):Integer;CDECL;
  1204. So, all parameters are passerd into registers in sparc architecture.}
  1205. {$ENDIF SPARC}
  1206. tcgprocinfo(current_procinfo).parse_body;
  1207. tcgprocinfo(current_procinfo).generate_code;
  1208. tcgprocinfo(current_procinfo).resetprocdef;
  1209. release_main_proc(pd);
  1210. { should we force unit initialization? }
  1211. if tstaticsymtable(current_module.localsymtable).needs_init_final then
  1212. begin
  1213. { initialize section }
  1214. gen_implicit_initfinal(initfinalcode,uf_init,st);
  1215. codesegment.concatlist(initfinalcode);
  1216. { finalize section }
  1217. gen_implicit_initfinal(initfinalcode,uf_finalize,st);
  1218. codesegment.concatlist(initfinalcode);
  1219. end;
  1220. { Add symbol to the exports section for win32 so smartlinking a
  1221. DLL will include the edata section }
  1222. if assigned(exportlib) and
  1223. (target_info.system in [system_i386_win32,system_i386_wdosx]) and
  1224. assigned(current_module._exports.first) then
  1225. codesegment.concat(tai_const_symbol.create(exportlib.edatalabel));
  1226. If ResourceStrings.ResStrCount>0 then
  1227. begin
  1228. ResourceStrings.CreateResourceStringList;
  1229. { only write if no errors found }
  1230. if (Errorcount=0) then
  1231. ResourceStrings.WriteResourceFile(ForceExtension(current_module.ppufilename^,'.rst'));
  1232. end;
  1233. { finalize? }
  1234. if token=_FINALIZATION then
  1235. begin
  1236. { set module options }
  1237. current_module.flags:=current_module.flags or uf_finalize;
  1238. { Compile the finalize }
  1239. pd:=create_main_proc(current_module.modulename^+'_finalize',potype_unitfinalize,st);
  1240. pd.aliasnames.insert('FINALIZE$$'+current_module.modulename^);
  1241. tcgprocinfo(current_procinfo).parse_body;
  1242. tcgprocinfo(current_procinfo).generate_code;
  1243. tcgprocinfo(current_procinfo).resetprocdef;
  1244. release_main_proc(pd);
  1245. end;
  1246. { consume the last point }
  1247. consume(_POINT);
  1248. {$ifdef New_GDB}
  1249. write_gdb_info;
  1250. {$endIf Def New_GDB}
  1251. { leave when we got an error }
  1252. if (Errorcount>0) and not status.skip_error then
  1253. begin
  1254. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1255. status.skip_error:=true;
  1256. exit;
  1257. end;
  1258. { test static symtable }
  1259. if (Errorcount=0) then
  1260. begin
  1261. tstoredsymtable(st).allsymbolsused;
  1262. tstoredsymtable(st).allunitsused;
  1263. tstoredsymtable(st).allprivatesused;
  1264. end;
  1265. { generate a list of threadvars }
  1266. InsertThreadvars;
  1267. { generate imports }
  1268. if current_module.uses_imports then
  1269. importlib.generatelib;
  1270. if islibrary or
  1271. (target_info.system in [system_i386_WIN32,system_i386_wdosx]) or
  1272. (target_info.system=system_i386_NETWARE) then
  1273. exportlib.generatelib;
  1274. { insert Tables and Heap }
  1275. insertThreadVarTablesTable;
  1276. insertResourceTablesTable;
  1277. insertinitfinaltable;
  1278. insertheap;
  1279. insertstacklength;
  1280. datasize:=symtablestack.datasize;
  1281. { finish asmlist by adding segment starts }
  1282. insertsegment;
  1283. { insert own objectfile }
  1284. insertobjectfile;
  1285. { assemble and link }
  1286. create_objectfile;
  1287. { leave when we got an error }
  1288. if (Errorcount>0) and not status.skip_error then
  1289. begin
  1290. Message1(unit_f_errors_in_unit,tostr(Errorcount));
  1291. status.skip_error:=true;
  1292. exit;
  1293. end;
  1294. { create the executable when we are at level 1 }
  1295. if (compile_level=1) then
  1296. begin
  1297. { insert all .o files from all loaded units }
  1298. hp:=tmodule(loaded_units.first);
  1299. while assigned(hp) do
  1300. begin
  1301. linker.AddModuleFiles(hp);
  1302. hp:=tmodule(hp.next);
  1303. end;
  1304. { write .def file }
  1305. if (cs_link_deffile in aktglobalswitches) then
  1306. deffile.writefile;
  1307. { finally we can create a executable }
  1308. if (not current_module.is_unit) then
  1309. begin
  1310. if DLLSource then
  1311. linker.MakeSharedLibrary
  1312. else
  1313. linker.MakeExecutable;
  1314. end;
  1315. end;
  1316. initfinalcode.free;
  1317. end;
  1318. end.
  1319. {
  1320. $Log$
  1321. Revision 1.108 2003-05-25 10:27:12 peter
  1322. * moved Comment calls to messge file
  1323. Revision 1.107 2003/05/22 21:31:35 peter
  1324. * defer codegeneration for nested procedures
  1325. Revision 1.106 2003/05/15 18:58:53 peter
  1326. * removed selfpointer_offset, vmtpointer_offset
  1327. * tvarsym.adjusted_address
  1328. * address in localsymtable is now in the real direction
  1329. * removed some obsolete globals
  1330. Revision 1.105 2003/05/11 19:31:28 florian
  1331. * fixed implicit init/final code for units, stack frame was wrong for ppc
  1332. Revision 1.104 2003/04/28 21:19:02 peter
  1333. * fix stabs generation for implicit initfinal
  1334. Revision 1.103 2003/04/27 11:21:34 peter
  1335. * aktprocdef renamed to current_procdef
  1336. * procinfo renamed to current_procinfo
  1337. * procinfo will now be stored in current_module so it can be
  1338. cleaned up properly
  1339. * gen_main_procsym changed to create_main_proc and release_main_proc
  1340. to also generate a tprocinfo structure
  1341. * fixed unit implicit initfinal
  1342. Revision 1.102 2003/04/27 07:29:50 peter
  1343. * current_procdef cleanup, current_procdef is now always nil when parsing
  1344. a new procdef declaration
  1345. * aktprocsym removed
  1346. * lexlevel removed, use symtable.symtablelevel instead
  1347. * implicit init/final code uses the normal genentry/genexit
  1348. * funcret state checking updated for new funcret handling
  1349. Revision 1.101 2003/04/23 12:35:34 florian
  1350. * fixed several issues with powerpc
  1351. + applied a patch from Jonas for nested function calls (PowerPC only)
  1352. * ...
  1353. Revision 1.100 2003/04/12 15:13:03 peter
  1354. * Use the original unitname when defining a unitsym
  1355. Revision 1.99 2003/03/23 23:21:42 hajny
  1356. + emx target added
  1357. Revision 1.98 2003/03/17 22:20:08 peter
  1358. *** empty log message ***
  1359. Revision 1.97 2003/03/17 13:36:39 peter
  1360. * fix import linking under linux
  1361. Revision 1.96 2003/02/19 22:00:14 daniel
  1362. * Code generator converted to new register notation
  1363. - Horribily outdated todo.txt removed
  1364. Revision 1.95 2003/02/06 22:36:55 mazen
  1365. * fixing bug related to errornous program main entry stack frame
  1366. Revision 1.94 2003/01/30 21:46:20 peter
  1367. * tai_const_symbol.createdataname added
  1368. Revision 1.93 2003/01/11 11:19:54 hajny
  1369. * correction from rev. 1.88 put back
  1370. Revision 1.92 2003/01/08 18:43:56 daniel
  1371. * Tregister changed into a record
  1372. Revision 1.91 2003/01/05 13:36:53 florian
  1373. * x86-64 compiles
  1374. + very basic support for float128 type (x86-64 only)
  1375. Revision 1.90 2002/12/29 18:17:23 peter
  1376. * insert unitsym with the name as specified in the uses list
  1377. Revision 1.89 2002/12/29 14:57:50 peter
  1378. * unit loading changed to first register units and load them
  1379. afterwards. This is needed to support uses xxx in yyy correctly
  1380. * unit dependency check fixed
  1381. Revision 1.88 2002/12/27 19:09:33 hajny
  1382. * another (hopefully final ;-) ) fix for not linked import libraries for units with no code
  1383. Revision 1.87 2002/12/24 23:32:56 peter
  1384. * Use FixFilename for specified unit sourcefile in uses
  1385. Revision 1.86 2002/12/06 16:56:58 peter
  1386. * only compile cs_fp_emulation support when cpufpuemu is defined
  1387. * define cpufpuemu for m68k only
  1388. Revision 1.85 2002/11/30 21:32:24 carl
  1389. + Add loading of softfpu in emulation mode
  1390. + Correct routine call for softfpu
  1391. * Extended type must also be defined even with softfpu
  1392. Revision 1.84 2002/11/15 01:58:53 peter
  1393. * merged changes from 1.0.7 up to 04-11
  1394. - -V option for generating bug report tracing
  1395. - more tracing for option parsing
  1396. - errors for cdecl and high()
  1397. - win32 import stabs
  1398. - win32 records<=8 are returned in eax:edx (turned off by default)
  1399. - heaptrc update
  1400. - more info for temp management in .s file with EXTDEBUG
  1401. Revision 1.83 2002/11/09 15:33:26 carl
  1402. * major alignment updates
  1403. Revision 1.82 2002/10/16 06:32:52 michael
  1404. + Renamed thread unit to systhrds
  1405. Revision 1.81 2002/10/14 19:42:34 peter
  1406. * only use init tables for threadvars
  1407. Revision 1.80 2002/10/06 19:41:30 peter
  1408. * Add finalization of typed consts
  1409. * Finalization of globals in the main program
  1410. Revision 1.79 2002/09/09 17:34:15 peter
  1411. * tdicationary.replace added to replace and item in a dictionary. This
  1412. is only allowed for the same name
  1413. * varsyms are inserted in symtable before the types are parsed. This
  1414. fixes the long standing "var longint : longint" bug
  1415. - consume_idlist and idstringlist removed. The loops are inserted
  1416. at the callers place and uses the symtable for duplicate id checking
  1417. Revision 1.78 2002/09/07 15:25:07 peter
  1418. * old logs removed and tabs fixed
  1419. Revision 1.77 2002/09/03 16:26:27 daniel
  1420. * Make Tprocdef.defs protected
  1421. Revision 1.76 2002/09/02 18:46:26 peter
  1422. * insert PASCALMAIN in library for Win32 only
  1423. Revision 1.75 2002/08/31 15:59:30 florian
  1424. + HEAP* stuff must be generated for Linux/PPC as well
  1425. + direct assembler reader searches now global and static symtables as well
  1426. Revision 1.74 2002/08/25 19:25:20 peter
  1427. * sym.insert_in_data removed
  1428. * symtable.insertvardata/insertconstdata added
  1429. * removed insert_in_data call from symtable.insert, it needs to be
  1430. called separatly. This allows to deref the address calculation
  1431. * procedures now calculate the parast addresses after the procedure
  1432. directives are parsed. This fixes the cdecl parast problem
  1433. * push_addr_param has an extra argument that specifies if cdecl is used
  1434. or not
  1435. Revision 1.73 2002/08/18 20:06:25 peter
  1436. * inlining is now also allowed in interface
  1437. * renamed write/load to ppuwrite/ppuload
  1438. * tnode storing in ppu
  1439. * nld,ncon,nbas are already updated for storing in ppu
  1440. Revision 1.72 2002/08/17 09:23:39 florian
  1441. * first part of procinfo rewrite
  1442. Revision 1.71 2002/08/11 13:24:12 peter
  1443. * saving of asmsymbols in ppu supported
  1444. * asmsymbollist global is removed and moved into a new class
  1445. tasmlibrarydata that will hold the info of a .a file which
  1446. corresponds with a single module. Added librarydata to tmodule
  1447. to keep the library info stored for the module. In the future the
  1448. objectfiles will also be stored to the tasmlibrarydata class
  1449. * all getlabel/newasmsymbol and friends are moved to the new class
  1450. Revision 1.70 2002/08/10 14:46:29 carl
  1451. + moved target_cpu_string to cpuinfo
  1452. * renamed asmmode enum.
  1453. * assembler reader has now less ifdef's
  1454. * move from nppcmem.pas -> ncgmem.pas vec. node.
  1455. Revision 1.69 2002/07/26 21:15:41 florian
  1456. * rewrote the system handling
  1457. Revision 1.68 2002/07/04 20:43:01 florian
  1458. * first x86-64 patches
  1459. Revision 1.67 2002/07/01 18:46:25 peter
  1460. * internal linker
  1461. * reorganized aasm layer
  1462. Revision 1.66 2002/05/16 19:46:43 carl
  1463. + defines.inc -> fpcdefs.inc to avoid conflicts if compiling by hand
  1464. + try to fix temp allocation (still in ifdef)
  1465. + generic constructor calls
  1466. + start of tassembler / tmodulebase class cleanup
  1467. Revision 1.65 2002/05/14 19:34:49 peter
  1468. * removed old logs and updated copyright year
  1469. Revision 1.64 2002/05/12 16:53:09 peter
  1470. * moved entry and exitcode to ncgutil and cgobj
  1471. * foreach gets extra argument for passing local data to the
  1472. iterator function
  1473. * -CR checks also class typecasts at runtime by changing them
  1474. into as
  1475. * fixed compiler to cycle with the -CR option
  1476. * fixed stabs with elf writer, finally the global variables can
  1477. be watched
  1478. * removed a lot of routines from cga unit and replaced them by
  1479. calls to cgobj
  1480. * u32bit-s32bit updates for and,or,xor nodes. When one element is
  1481. u32bit then the other is typecasted also to u32bit without giving
  1482. a rangecheck warning/error.
  1483. * fixed pascal calling method with reversing also the high tree in
  1484. the parast, detected by tcalcst3 test
  1485. Revision 1.63 2002/05/06 19:54:50 carl
  1486. + added more patches from Mazen for SPARC port
  1487. Revision 1.62 2002/04/20 21:32:24 carl
  1488. + generic FPC_CHECKPOINTER
  1489. + first parameter offset in stack now portable
  1490. * rename some constants
  1491. + move some cpu stuff to other units
  1492. - remove unused constents
  1493. * fix stacksize for some targets
  1494. * fix generic size problems which depend now on EXTEND_SIZE constant
  1495. Revision 1.61 2002/04/19 15:46:02 peter
  1496. * mangledname rewrite, tprocdef.mangledname is now created dynamicly
  1497. in most cases and not written to the ppu
  1498. * add mangeledname_prefix() routine to generate the prefix of
  1499. manglednames depending on the current procedure, object and module
  1500. * removed static procprefix since the mangledname is now build only
  1501. on demand from tprocdef.mangledname
  1502. Revision 1.60 2002/04/14 16:53:10 carl
  1503. + align code section and data section according to alignment rules
  1504. Revision 1.59 2002/04/07 17:58:38 carl
  1505. + generic stack checking
  1506. Revision 1.58 2002/04/04 19:06:03 peter
  1507. * removed unused units
  1508. * use tlocation.size in cg.a_*loc*() routines
  1509. }