ncgrtti.pas 50 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl
  3. Routines for the code generation of RTTI data structures
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. unit ncgrtti;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. cclasses,constexp,
  22. aasmbase,
  23. symbase,symconst,symtype,symdef;
  24. type
  25. { TRTTIWriter }
  26. TRTTIWriter=class
  27. private
  28. procedure fields_write_rtti(st:tsymtable;rt:trttitype);
  29. procedure fields_write_rtti_data(def:tabstractrecorddef;rt:trttitype);
  30. procedure write_rtti_extrasyms(def:Tdef;rt:Trttitype;mainrtti:Tasmsymbol);
  31. procedure published_write_rtti(st:tsymtable;rt:trttitype);
  32. function published_properties_count(st:tsymtable):longint;
  33. procedure published_properties_write_rtti_data(propnamelist:TFPHashObjectList;st:tsymtable);
  34. procedure collect_propnamelist(propnamelist:TFPHashObjectList;objdef:tobjectdef);
  35. procedure write_rtti_name(def:tdef);
  36. procedure write_rtti_data(def:tdef;rt:trttitype);
  37. procedure write_child_rtti_data(def:tdef;rt:trttitype);
  38. function ref_rtti(def:tdef;rt:trttitype):tasmsymbol;
  39. procedure write_header(def: tdef; typekind: byte);
  40. procedure write_string(const s: string);
  41. procedure maybe_write_align;
  42. public
  43. procedure write_rtti(def:tdef;rt:trttitype);
  44. function get_rtti_label(def:tdef;rt:trttitype):tasmsymbol;
  45. function get_rtti_label_ord2str(def:tdef;rt:trttitype):tasmsymbol;
  46. function get_rtti_label_str2ord(def:tdef;rt:trttitype):tasmsymbol;
  47. end;
  48. var
  49. RTTIWriter : TRTTIWriter;
  50. implementation
  51. uses
  52. cutils,
  53. globals,globtype,verbose,systems,
  54. fmodule, procinfo,
  55. symsym,
  56. aasmtai,aasmdata,
  57. defutil,
  58. wpobase
  59. ;
  60. const
  61. rttidefstate : array[trttitype] of tdefstate =
  62. (ds_rtti_table_written,ds_init_table_written,
  63. { Objective-C related, does not pass here }
  64. symconst.ds_none,symconst.ds_none,
  65. symconst.ds_none,symconst.ds_none);
  66. type
  67. TPropNameListItem = class(TFPHashObject)
  68. propindex : longint;
  69. propowner : TSymtable;
  70. end;
  71. {***************************************************************************
  72. TRTTIWriter
  73. ***************************************************************************}
  74. procedure TRTTIWriter.maybe_write_align;
  75. begin
  76. if (tf_requires_proper_alignment in target_info.flags) then
  77. current_asmdata.asmlists[al_rtti].concat(cai_align.Create(sizeof(TConstPtrUInt)));
  78. end;
  79. procedure TRTTIWriter.write_string(const s: string);
  80. begin
  81. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(length(s)));
  82. current_asmdata.asmlists[al_rtti].concat(Tai_string.Create(s));
  83. end;
  84. procedure TRTTIWriter.write_header(def: tdef; typekind: byte);
  85. begin
  86. if def.typ=arraydef then
  87. InternalError(201012211);
  88. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(typekind));
  89. if assigned(def.typesym) then
  90. write_string(ttypesym(def.typesym).realname)
  91. else
  92. current_asmdata.asmlists[al_rtti].concat(Tai_string.Create(#0));
  93. end;
  94. procedure TRTTIWriter.write_rtti_name(def:tdef);
  95. var
  96. hs : string;
  97. begin
  98. if is_open_array(def) then
  99. { open arrays never have a typesym with a name, since you cannot
  100. define an "open array type". Kylix prints the type of the
  101. elements in the array in this case (so together with the pfArray
  102. flag, you can reconstruct the full typename, I assume (JM))
  103. }
  104. def:=tarraydef(def).elementdef;
  105. { name }
  106. if assigned(def.typesym) then
  107. begin
  108. hs:=ttypesym(def.typesym).realname;
  109. current_asmdata.asmlists[al_rtti].concat(Tai_string.Create(chr(length(hs))+hs));
  110. end
  111. else
  112. current_asmdata.asmlists[al_rtti].concat(Tai_string.Create(#0));
  113. end;
  114. { writes a 32-bit count followed by array of field infos for given symtable }
  115. procedure TRTTIWriter.fields_write_rtti_data(def:tabstractrecorddef;rt:trttitype);
  116. var
  117. i : longint;
  118. sym : tsym;
  119. fieldcnt: longint;
  120. lastai: TLinkedListItem;
  121. st: tsymtable;
  122. begin
  123. fieldcnt:=0;
  124. { Count will be inserted at this location. It cannot be nil as we've just
  125. written header for this symtable owner. But stay safe. }
  126. lastai:=current_asmdata.asmlists[al_rtti].last;
  127. if lastai=nil then
  128. InternalError(201012212);
  129. { For objects, treat parent (if any) as a field with offset 0. This
  130. provides correct handling of entire instance with RTL rtti routines. }
  131. if (def.typ=objectdef) and (tobjectdef(def).objecttype=odt_object) and
  132. Assigned(tobjectdef(def).childof) and
  133. ((rt=fullrtti) or (tobjectdef(def).childof.needs_inittable)) then
  134. begin
  135. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(tobjectdef(def).childof,rt)));
  136. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(0));
  137. inc(fieldcnt);
  138. end;
  139. st:=def.symtable;
  140. for i:=0 to st.SymList.Count-1 do
  141. begin
  142. sym:=tsym(st.SymList[i]);
  143. if (tsym(sym).typ=fieldvarsym) and
  144. not(sp_static in tsym(sym).symoptions) and
  145. (
  146. (rt=fullrtti) or
  147. tfieldvarsym(sym).vardef.needs_inittable
  148. ) and
  149. not is_objc_class_or_protocol(tfieldvarsym(sym).vardef) then
  150. begin
  151. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(tfieldvarsym(sym).vardef,rt)));
  152. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(tfieldvarsym(sym).fieldoffset));
  153. inc(fieldcnt);
  154. end;
  155. end;
  156. { insert field count before data }
  157. current_asmdata.asmlists[al_rtti].InsertAfter(Tai_const.Create_32bit(fieldcnt),lastai)
  158. end;
  159. procedure TRTTIWriter.fields_write_rtti(st:tsymtable;rt:trttitype);
  160. var
  161. i : longint;
  162. sym : tsym;
  163. begin
  164. for i:=0 to st.SymList.Count-1 do
  165. begin
  166. sym:=tsym(st.SymList[i]);
  167. if (tsym(sym).typ=fieldvarsym) and
  168. not(sp_static in tsym(sym).symoptions) and
  169. (
  170. (rt=fullrtti) or
  171. tfieldvarsym(sym).vardef.needs_inittable
  172. ) then
  173. write_rtti(tfieldvarsym(sym).vardef,rt);
  174. end;
  175. end;
  176. procedure TRTTIWriter.published_write_rtti(st:tsymtable;rt:trttitype);
  177. var
  178. i : longint;
  179. sym : tsym;
  180. begin
  181. for i:=0 to st.SymList.Count-1 do
  182. begin
  183. sym:=tsym(st.SymList[i]);
  184. if (sym.visibility=vis_published) then
  185. begin
  186. case tsym(sym).typ of
  187. propertysym:
  188. write_rtti(tpropertysym(sym).propdef,rt);
  189. fieldvarsym:
  190. write_rtti(tfieldvarsym(sym).vardef,rt);
  191. end;
  192. end;
  193. end;
  194. end;
  195. function TRTTIWriter.published_properties_count(st:tsymtable):longint;
  196. var
  197. i : longint;
  198. sym : tsym;
  199. begin
  200. result:=0;
  201. for i:=0 to st.SymList.Count-1 do
  202. begin
  203. sym:=tsym(st.SymList[i]);
  204. if (tsym(sym).typ=propertysym) and
  205. (sym.visibility=vis_published) then
  206. inc(result);
  207. end;
  208. end;
  209. procedure TRTTIWriter.collect_propnamelist(propnamelist:TFPHashObjectList;objdef:tobjectdef);
  210. var
  211. i : longint;
  212. sym : tsym;
  213. pn : tpropnamelistitem;
  214. begin
  215. if assigned(objdef.childof) then
  216. collect_propnamelist(propnamelist,objdef.childof);
  217. for i:=0 to objdef.symtable.SymList.Count-1 do
  218. begin
  219. sym:=tsym(objdef.symtable.SymList[i]);
  220. if (tsym(sym).typ=propertysym) and
  221. (sym.visibility=vis_published) then
  222. begin
  223. pn:=TPropNameListItem(propnamelist.Find(tsym(sym).name));
  224. if not assigned(pn) then
  225. begin
  226. pn:=tpropnamelistitem.create(propnamelist,tsym(sym).name);
  227. pn.propindex:=propnamelist.count-1;
  228. pn.propowner:=tsym(sym).owner;
  229. end;
  230. end;
  231. end;
  232. end;
  233. procedure TRTTIWriter.published_properties_write_rtti_data(propnamelist:TFPHashObjectList;st:tsymtable);
  234. var
  235. i : longint;
  236. sym : tsym;
  237. proctypesinfo : byte;
  238. propnameitem : tpropnamelistitem;
  239. procedure writeaccessproc(pap:tpropaccesslisttypes; shiftvalue : byte; unsetvalue: byte);
  240. var
  241. typvalue : byte;
  242. hp : ppropaccesslistitem;
  243. address,space : longint;
  244. def : tdef;
  245. hpropsym : tpropertysym;
  246. propaccesslist : tpropaccesslist;
  247. begin
  248. hpropsym:=tpropertysym(sym);
  249. repeat
  250. propaccesslist:=hpropsym.propaccesslist[pap];
  251. if not propaccesslist.empty then
  252. break;
  253. hpropsym:=hpropsym.overriddenpropsym;
  254. until not assigned(hpropsym);
  255. if not(assigned(propaccesslist) and assigned(propaccesslist.firstsym)) then
  256. begin
  257. current_asmdata.asmlists[al_rtti].concat(Tai_const.create(aitconst_ptr,unsetvalue));
  258. typvalue:=3;
  259. end
  260. else if propaccesslist.firstsym^.sym.typ=fieldvarsym then
  261. begin
  262. address:=0;
  263. hp:=propaccesslist.firstsym;
  264. def:=nil;
  265. while assigned(hp) do
  266. begin
  267. case hp^.sltype of
  268. sl_load :
  269. begin
  270. def:=tfieldvarsym(hp^.sym).vardef;
  271. inc(address,tfieldvarsym(hp^.sym).fieldoffset);
  272. end;
  273. sl_subscript :
  274. begin
  275. if not(assigned(def) and
  276. ((def.typ=recorddef) or
  277. is_object(def))) then
  278. internalerror(200402171);
  279. inc(address,tfieldvarsym(hp^.sym).fieldoffset);
  280. def:=tfieldvarsym(hp^.sym).vardef;
  281. end;
  282. sl_vec :
  283. begin
  284. if not(assigned(def) and (def.typ=arraydef)) then
  285. internalerror(200402172);
  286. def:=tarraydef(def).elementdef;
  287. {Hp.value is a Tconstexprint, which can be rather large,
  288. sanity check for longint overflow.}
  289. space:=(high(address)-address) div def.size;
  290. if int64(space)<hp^.value then
  291. internalerror(200706101);
  292. inc(address,int64(def.size*hp^.value));
  293. end;
  294. end;
  295. hp:=hp^.next;
  296. end;
  297. current_asmdata.asmlists[al_rtti].concat(Tai_const.create(aitconst_ptr,address));
  298. typvalue:=0;
  299. end
  300. else
  301. begin
  302. { When there was an error then procdef is not assigned }
  303. if not assigned(propaccesslist.procdef) then
  304. exit;
  305. if not(po_virtualmethod in tprocdef(propaccesslist.procdef).procoptions) or
  306. is_objectpascal_helper(tprocdef(propaccesslist.procdef).struct) then
  307. begin
  308. current_asmdata.asmlists[al_rtti].concat(Tai_const.createname(tprocdef(propaccesslist.procdef).mangledname,0));
  309. typvalue:=1;
  310. end
  311. else
  312. begin
  313. { virtual method, write vmt offset }
  314. current_asmdata.asmlists[al_rtti].concat(Tai_const.create(aitconst_ptr,
  315. tobjectdef(tprocdef(propaccesslist.procdef).struct).vmtmethodoffset(tprocdef(propaccesslist.procdef).extnumber)));
  316. { register for wpo }
  317. tobjectdef(tprocdef(propaccesslist.procdef).struct).register_vmt_call(tprocdef(propaccesslist.procdef).extnumber);
  318. {$ifdef vtentry}
  319. { not sure if we can insert those vtentry symbols safely here }
  320. {$error register methods used for published properties}
  321. {$endif vtentry}
  322. typvalue:=2;
  323. end;
  324. end;
  325. proctypesinfo:=proctypesinfo or (typvalue shl shiftvalue);
  326. end;
  327. begin
  328. for i:=0 to st.SymList.Count-1 do
  329. begin
  330. sym:=tsym(st.SymList[i]);
  331. if (sym.typ=propertysym) and
  332. (sym.visibility=vis_published) then
  333. begin
  334. if ppo_indexed in tpropertysym(sym).propoptions then
  335. proctypesinfo:=$40
  336. else
  337. proctypesinfo:=0;
  338. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(tpropertysym(sym).propdef,fullrtti)));
  339. writeaccessproc(palt_read,0,0);
  340. writeaccessproc(palt_write,2,0);
  341. { is it stored ? }
  342. if not(ppo_stored in tpropertysym(sym).propoptions) then
  343. begin
  344. { no, so put a constant zero }
  345. current_asmdata.asmlists[al_rtti].concat(Tai_const.create(aitconst_ptr,0));
  346. proctypesinfo:=proctypesinfo or (3 shl 4);
  347. end
  348. else
  349. writeaccessproc(palt_stored,4,1); { maybe; if no procedure put a constant 1 (=true) }
  350. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(tpropertysym(sym).index));
  351. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(tpropertysym(sym).default));
  352. propnameitem:=TPropNameListItem(propnamelist.Find(tpropertysym(sym).name));
  353. if not assigned(propnameitem) then
  354. internalerror(200512201);
  355. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_16bit(propnameitem.propindex));
  356. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(proctypesinfo));
  357. write_string(tpropertysym(sym).realname);
  358. maybe_write_align;
  359. end;
  360. end;
  361. end;
  362. procedure TRTTIWriter.write_rtti_data(def:tdef;rt:trttitype);
  363. procedure unknown_rtti(def:tstoreddef);
  364. begin
  365. current_asmdata.asmlists[al_rtti].concat(tai_const.create_8bit(tkUnknown));
  366. write_rtti_name(def);
  367. end;
  368. procedure variantdef_rtti(def:tvariantdef);
  369. begin
  370. write_header(def,tkVariant);
  371. end;
  372. procedure stringdef_rtti(def:tstringdef);
  373. begin
  374. case def.stringtype of
  375. st_ansistring:
  376. write_header(def,tkAString);
  377. st_widestring:
  378. write_header(def,tkWString);
  379. st_unicodestring:
  380. write_header(def,tkUString);
  381. st_longstring:
  382. write_header(def,tkLString);
  383. st_shortstring:
  384. begin
  385. write_header(def,tkSString);
  386. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(def.len));
  387. maybe_write_align; // is align necessary here?
  388. end;
  389. end;
  390. end;
  391. procedure enumdef_rtti(def:tenumdef);
  392. var
  393. i : integer;
  394. hp : tenumsym;
  395. begin
  396. write_header(def,tkEnumeration);
  397. maybe_write_align;
  398. case longint(def.size) of
  399. 1 :
  400. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otUByte));
  401. 2 :
  402. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otUWord));
  403. 4 :
  404. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otULong));
  405. end;
  406. { we need to align by Tconstptruint here to satisfy the alignment rules set by
  407. records: in the typinfo unit we overlay a TTypeData record on this data, which at
  408. the innermost variant record needs an alignment of TConstPtrUint due to e.g.
  409. the "CompType" member for tkSet (also the "BaseType" member for tkEnumeration).
  410. We need to adhere to this, otherwise things will break.
  411. Note that other code (e.g. enumdef_rtti_calcstringtablestart()) relies on the
  412. exact sequence too. }
  413. maybe_write_align;
  414. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(def.min));
  415. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(def.max));
  416. maybe_write_align; // is align necessary here?
  417. { write base type }
  418. if assigned(def.basedef) then
  419. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.basedef,rt)))
  420. else
  421. current_asmdata.asmlists[al_rtti].concat(Tai_const.create_sym(nil));
  422. for i := 0 to def.symtable.SymList.Count - 1 do
  423. begin
  424. hp:=tenumsym(def.symtable.SymList[i]);
  425. if hp.value<def.minval then
  426. continue
  427. else
  428. if hp.value>def.maxval then
  429. break;
  430. write_string(hp.realname);
  431. end;
  432. { write unit name }
  433. write_string(current_module.realmodulename^);
  434. { write zero which is required by RTL }
  435. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(0));
  436. end;
  437. procedure orddef_rtti(def:torddef);
  438. procedure dointeger(typekind: byte);
  439. const
  440. trans : array[tordtype] of byte =
  441. (otUByte{otNone},
  442. otUByte,otUWord,otULong,otUByte{otNone},
  443. otSByte,otSWord,otSLong,otUByte{otNone},
  444. otUByte,otUWord,otULong,otUByte,
  445. otSByte,otSWord,otSLong,otSByte,
  446. otUByte,otUWord,otUByte);
  447. begin
  448. write_header(def,typekind);
  449. maybe_write_align;
  450. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(byte(trans[def.ordtype])));
  451. maybe_write_align;
  452. {Convert to longint to smuggle values in high(longint)+1..high(cardinal) into asmlist.}
  453. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(longint(def.low.svalue)));
  454. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(longint(def.high.svalue)));
  455. end;
  456. begin
  457. case def.ordtype of
  458. s64bit :
  459. begin
  460. write_header(def,tkInt64);
  461. maybe_write_align;
  462. { low }
  463. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_64bit(def.low.svalue));
  464. { high }
  465. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_64bit(def.high.svalue));
  466. end;
  467. u64bit :
  468. begin
  469. write_header(def,tkQWord);
  470. maybe_write_align;
  471. {use svalue because Create_64bit accepts int64, prevents range checks}
  472. { low }
  473. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_64bit(def.low.svalue));
  474. { high }
  475. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_64bit(def.high.svalue));
  476. end;
  477. pasbool8:
  478. dointeger(tkBool);
  479. uchar:
  480. dointeger(tkChar);
  481. uwidechar:
  482. dointeger(tkWChar);
  483. scurrency:
  484. begin
  485. write_header(def,tkFloat);
  486. maybe_write_align;
  487. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(ftCurr));
  488. end;
  489. else
  490. dointeger(tkInteger);
  491. end;
  492. end;
  493. procedure floatdef_rtti(def:tfloatdef);
  494. const
  495. {tfloattype = (s32real,s64real,s80real,sc80real,s64bit,s128bit);}
  496. translate : array[tfloattype] of byte =
  497. (ftSingle,ftDouble,ftExtended,ftExtended,ftComp,ftCurr,ftFloat128);
  498. begin
  499. write_header(def,tkFloat);
  500. maybe_write_align;
  501. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(translate[def.floattype]));
  502. end;
  503. procedure setdef_rtti(def:tsetdef);
  504. begin
  505. write_header(def,tkSet);
  506. maybe_write_align;
  507. case def.size of
  508. 1:
  509. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otUByte));
  510. 2:
  511. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otUWord));
  512. 4:
  513. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otULong));
  514. else
  515. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(otUByte));
  516. end;
  517. maybe_write_align;
  518. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.elementdef,rt)));
  519. end;
  520. procedure arraydef_rtti(def:tarraydef);
  521. begin
  522. if ado_IsDynamicArray in def.arrayoptions then
  523. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkdynarray))
  524. else
  525. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkarray));
  526. write_rtti_name(def);
  527. maybe_write_align;
  528. { size of elements }
  529. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_pint(def.elesize));
  530. if not(ado_IsDynamicArray in def.arrayoptions) then
  531. begin
  532. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_pint(pint(def.elecount)));
  533. { element type }
  534. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.elementdef,rt)));
  535. end
  536. else
  537. { write a delphi almost compatible dyn. array entry:
  538. there are two types, eltype and eltype2, the latter is nil if the element type needs
  539. no finalization, the former is always valid, delphi has this swapped, but for
  540. compatibility with older fpc versions we do it different, to be delphi compatible,
  541. the names are swapped in typinfo.pp
  542. }
  543. begin
  544. { element type }
  545. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.elementdef,rt)));
  546. end;
  547. { variant type }
  548. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(tstoreddef(def.elementdef).getvardef));
  549. if ado_IsDynamicArray in def.arrayoptions then
  550. begin
  551. { element type }
  552. if def.elementdef.needs_inittable then
  553. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.elementdef,rt)))
  554. else
  555. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_pint(0));
  556. { write unit name }
  557. write_string(current_module.realmodulename^);
  558. end;
  559. end;
  560. procedure recorddef_rtti(def:trecorddef);
  561. begin
  562. write_header(def,tkRecord);
  563. maybe_write_align;
  564. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(def.size));
  565. fields_write_rtti_data(def,rt);
  566. end;
  567. procedure procvardef_rtti(def:tprocvardef);
  568. const
  569. ProcCallOptionToCallConv: array[tproccalloption] of byte = (
  570. { pocall_none } 0,
  571. { pocall_cdecl } 1,
  572. { pocall_cppdecl } 5,
  573. { pocall_far16 } 6,
  574. { pocall_oldfpccall } 7,
  575. { pocall_internproc } 8,
  576. { pocall_syscall } 9,
  577. { pocall_pascal } 2,
  578. { pocall_register } 0,
  579. { pocall_safecall } 4,
  580. { pocall_stdcall } 3,
  581. { pocall_softfloat } 10,
  582. { pocall_mwpascal } 11,
  583. { pocall_interrupt } 12
  584. );
  585. procedure write_para(parasym:tparavarsym);
  586. var
  587. paraspec : byte;
  588. begin
  589. { only store user visible parameters }
  590. if not(vo_is_hidden_para in parasym.varoptions) then
  591. begin
  592. case parasym.varspez of
  593. vs_value : paraspec := 0;
  594. vs_const : paraspec := pfConst;
  595. vs_var : paraspec := pfVar;
  596. vs_out : paraspec := pfOut;
  597. vs_constref: paraspec := pfConstRef;
  598. end;
  599. { Kylix also seems to always add both pfArray and pfReference
  600. in this case
  601. }
  602. if is_open_array(parasym.vardef) then
  603. paraspec:=paraspec or pfArray or pfReference;
  604. { and these for classes and interfaces (maybe because they
  605. are themselves addresses?)
  606. }
  607. if is_class_or_interface(parasym.vardef) then
  608. paraspec:=paraspec or pfAddress;
  609. { set bits run from the highest to the lowest bit on
  610. big endian systems
  611. }
  612. if (target_info.endian = endian_big) then
  613. paraspec:=reverse_byte(paraspec);
  614. { write flags for current parameter }
  615. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(paraspec));
  616. { write name of current parameter }
  617. write_string(parasym.realname);
  618. { write name of type of current parameter }
  619. write_rtti_name(parasym.vardef);
  620. end;
  621. end;
  622. var
  623. methodkind : byte;
  624. i : integer;
  625. begin
  626. if po_methodpointer in def.procoptions then
  627. begin
  628. { write method id and name }
  629. write_header(def,tkMethod);
  630. maybe_write_align;
  631. { write kind of method }
  632. case def.proctypeoption of
  633. potype_constructor: methodkind:=mkConstructor;
  634. potype_destructor: methodkind:=mkDestructor;
  635. potype_class_constructor: methodkind:=mkClassConstructor;
  636. potype_class_destructor: methodkind:=mkClassDestructor;
  637. potype_operator: methodkind:=mkOperatorOverload;
  638. potype_procedure:
  639. if po_classmethod in def.procoptions then
  640. methodkind:=mkClassProcedure
  641. else
  642. methodkind:=mkProcedure;
  643. potype_function:
  644. if po_classmethod in def.procoptions then
  645. methodkind:=mkClassFunction
  646. else
  647. methodkind:=mkFunction;
  648. else
  649. begin
  650. if def.returndef = voidtype then
  651. methodkind:=mkProcedure
  652. else
  653. methodkind:=mkFunction;
  654. end;
  655. end;
  656. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(methodkind));
  657. { write parameter info. The parameters must be written in reverse order
  658. if this method uses right to left parameter pushing! }
  659. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(def.maxparacount));
  660. for i:=0 to def.paras.count-1 do
  661. write_para(tparavarsym(def.paras[i]));
  662. if (methodkind=mkFunction) or (methodkind=mkClassFunction) then
  663. begin
  664. { write name of result type }
  665. write_rtti_name(def.returndef);
  666. maybe_write_align;
  667. { write result typeinfo }
  668. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.returndef,fullrtti)))
  669. end;
  670. { write calling convention }
  671. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(ProcCallOptionToCallConv[def.proccalloption]));
  672. maybe_write_align;
  673. { write params typeinfo }
  674. for i:=0 to def.paras.count-1 do
  675. if not(vo_is_hidden_para in tparavarsym(def.paras[i]).varoptions) then
  676. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(tparavarsym(def.paras[i]).vardef,fullrtti)));
  677. end
  678. else
  679. write_header(def,tkProcvar);
  680. end;
  681. procedure objectdef_rtti(def:tobjectdef);
  682. procedure objectdef_rtti_fields(def:tobjectdef);
  683. begin
  684. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(def.size));
  685. fields_write_rtti_data(def,rt);
  686. end;
  687. procedure objectdef_rtti_interface_init(def:tobjectdef);
  688. begin
  689. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(def.size));
  690. end;
  691. procedure objectdef_rtti_class_full(def:tobjectdef);
  692. var
  693. propnamelist : TFPHashObjectList;
  694. begin
  695. { Collect unique property names with nameindex }
  696. propnamelist:=TFPHashObjectList.Create;
  697. collect_propnamelist(propnamelist,def);
  698. if not is_objectpascal_helper(def) then
  699. if (oo_has_vmt in def.objectoptions) then
  700. current_asmdata.asmlists[al_rtti].concat(Tai_const.Createname(def.vmt_mangledname,0))
  701. else
  702. current_asmdata.asmlists[al_rtti].concat(Tai_const.create_sym(nil));
  703. { write parent typeinfo }
  704. if assigned(def.childof) then
  705. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.childof,fullrtti)))
  706. else
  707. current_asmdata.asmlists[al_rtti].concat(Tai_const.create_sym(nil));
  708. { write typeinfo of extended type }
  709. if is_objectpascal_helper(def) then
  710. if assigned(def.extendeddef) then
  711. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.extendeddef,fullrtti)))
  712. else
  713. InternalError(2011033001);
  714. { total number of unique properties }
  715. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_16bit(propnamelist.count));
  716. { write unit name }
  717. write_string(current_module.realmodulename^);
  718. maybe_write_align;
  719. { write published properties for this object }
  720. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_16bit(published_properties_count(def.symtable)));
  721. maybe_write_align;
  722. published_properties_write_rtti_data(propnamelist,def.symtable);
  723. propnamelist.free;
  724. end;
  725. procedure objectdef_rtti_interface_full(def:tobjectdef);
  726. var
  727. i : longint;
  728. propnamelist : TFPHashObjectList;
  729. { if changed to a set, make sure it's still a byte large, and
  730. swap appropriately when cross-compiling
  731. }
  732. IntfFlags: byte;
  733. begin
  734. { Collect unique property names with nameindex }
  735. propnamelist:=TFPHashObjectList.Create;
  736. collect_propnamelist(propnamelist,def);
  737. { write parent typeinfo }
  738. if assigned(def.childof) then
  739. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_sym(ref_rtti(def.childof,fullrtti)))
  740. else
  741. current_asmdata.asmlists[al_rtti].concat(Tai_const.create_sym(nil));
  742. { interface: write flags, iid and iidstr }
  743. IntfFlags:=0;
  744. if assigned(def.iidguid) then
  745. IntfFlags:=IntfFlags or (1 shl ord(ifHasGuid));
  746. if assigned(def.iidstr) then
  747. IntfFlags:=IntfFlags or (1 shl ord(ifHasStrGUID));
  748. if (def.objecttype=odt_dispinterface) then
  749. IntfFlags:=IntfFlags or (1 shl ord(ifDispInterface));
  750. if (target_info.endian=endian_big) then
  751. IntfFlags:=reverse_byte(IntfFlags);
  752. {
  753. ifDispatch, }
  754. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(IntfFlags));
  755. maybe_write_align;
  756. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_32bit(longint(def.iidguid^.D1)));
  757. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_16bit(def.iidguid^.D2));
  758. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_16bit(def.iidguid^.D3));
  759. for i:=Low(def.iidguid^.D4) to High(def.iidguid^.D4) do
  760. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(def.iidguid^.D4[i]));
  761. { write unit name }
  762. write_string(current_module.realmodulename^);
  763. maybe_write_align;
  764. { write iidstr }
  765. if assigned(def.iidstr) then
  766. write_string(def.iidstr^)
  767. else
  768. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(0));
  769. maybe_write_align;
  770. { write published properties for this object }
  771. published_properties_write_rtti_data(propnamelist,def.symtable);
  772. propnamelist.free;
  773. end;
  774. begin
  775. case def.objecttype of
  776. odt_class:
  777. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkclass));
  778. odt_object:
  779. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkobject));
  780. odt_dispinterface,
  781. odt_interfacecom:
  782. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkinterface));
  783. odt_interfacecorba:
  784. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkinterfaceCorba));
  785. odt_helper:
  786. current_asmdata.asmlists[al_rtti].concat(Tai_const.Create_8bit(tkhelper));
  787. else
  788. internalerror(200611034);
  789. end;
  790. { generate the name }
  791. write_string(def.objrealname^);
  792. maybe_write_align;
  793. case rt of
  794. initrtti :
  795. begin
  796. if def.objecttype in [odt_class,odt_object,odt_helper] then
  797. objectdef_rtti_fields(def)
  798. else
  799. objectdef_rtti_interface_init(def);
  800. end;
  801. fullrtti :
  802. begin
  803. case def.objecttype of
  804. odt_helper,
  805. odt_class:
  806. objectdef_rtti_class_full(def);
  807. odt_object:
  808. objectdef_rtti_fields(def);
  809. else
  810. objectdef_rtti_interface_full(def);
  811. end;
  812. end;
  813. end;
  814. end;
  815. begin
  816. case def.typ of
  817. variantdef :
  818. variantdef_rtti(tvariantdef(def));
  819. stringdef :
  820. stringdef_rtti(tstringdef(def));
  821. enumdef :
  822. enumdef_rtti(tenumdef(def));
  823. orddef :
  824. orddef_rtti(torddef(def));
  825. floatdef :
  826. floatdef_rtti(tfloatdef(def));
  827. setdef :
  828. setdef_rtti(tsetdef(def));
  829. procvardef :
  830. procvardef_rtti(tprocvardef(def));
  831. arraydef :
  832. begin
  833. if ado_IsBitPacked in tarraydef(def).arrayoptions then
  834. unknown_rtti(tstoreddef(def))
  835. else
  836. arraydef_rtti(tarraydef(def));
  837. end;
  838. recorddef :
  839. begin
  840. if trecorddef(def).is_packed then
  841. unknown_rtti(tstoreddef(def))
  842. else
  843. recorddef_rtti(trecorddef(def));
  844. end;
  845. objectdef :
  846. objectdef_rtti(tobjectdef(def));
  847. else
  848. unknown_rtti(tstoreddef(def));
  849. end;
  850. end;
  851. procedure TRTTIWriter.write_rtti_extrasyms(def:Tdef;rt:Trttitype;mainrtti:Tasmsymbol);
  852. type Penumsym = ^Tenumsym;
  853. function enumdef_rtti_calcstringtablestart(const def : Tenumdef) : integer;
  854. begin
  855. { the alignment calls must correspond to the ones used during generating the
  856. actual data structure created elsewhere in this file }
  857. result:=1;
  858. if assigned(def.typesym) then
  859. inc(result,length(def.typesym.realname)+1)
  860. else
  861. inc(result);
  862. if (tf_requires_proper_alignment in target_info.flags) then
  863. result:=align(result,sizeof(Tconstptruint));
  864. inc(result);
  865. if (tf_requires_proper_alignment in target_info.flags) then
  866. result:=align(result,sizeof(Tconstptruint));
  867. inc(result, sizeof(longint) * 2);
  868. if (tf_requires_proper_alignment in target_info.flags) then
  869. result:=align(result,sizeof(Tconstptruint));
  870. inc(result, sizeof(pint));
  871. end;
  872. { Writes a helper table for accelerated conversion of ordinal enum values to strings.
  873. If you change something in this method, make sure to adapt the corresponding code
  874. in sstrings.inc. }
  875. procedure enumdef_rtti_ord2stringindex(const sym_count:longint; const offsets:plongint; const syms:Penumsym; const st:longint);
  876. var rttilab:Tasmsymbol;
  877. h,i,o,prev_value:longint;
  878. mode:(lookup,search); {Modify with care, ordinal value of enum is written.}
  879. r:single; {Must be real type because of integer overflow risk.}
  880. begin
  881. {Decide wether a lookup array is size efficient.}
  882. mode:=lookup;
  883. if sym_count>0 then
  884. begin
  885. i:=1;
  886. r:=0;
  887. h:=syms[0].value; {Next expected enum value is min.}
  888. { set prev_value for the first iteration to a value that is
  889. different from the first one without risking overflow (it's used
  890. to detect whether two enum values are the same) }
  891. if h=0 then
  892. prev_value:=1
  893. else
  894. prev_value:=0;
  895. while i<sym_count do
  896. begin
  897. { if two enum values are the same, we have to create a table }
  898. if (prev_value=h) then
  899. begin
  900. mode:=search;
  901. break;
  902. end;
  903. {Calculate size of hole between values. Avoid integer overflows.}
  904. r:=r+(single(syms[i].value)-single(h))-1;
  905. prev_value:=h;
  906. h:=syms[i].value;
  907. inc(i);
  908. end;
  909. if r>sym_count then
  910. mode:=search; {Don't waste more than 50% space.}
  911. end;
  912. { write rtti data; make sure that the alignment matches the corresponding data structure
  913. in the code that uses it (if alignment is required). }
  914. with current_asmdata do
  915. begin
  916. rttilab:=defineasmsymbol(Tstoreddef(def).rtti_mangledname(rt)+'_o2s',AB_GLOBAL,AT_DATA);
  917. maybe_new_object_file(asmlists[al_rtti]);
  918. new_section(asmlists[al_rtti],sec_rodata,rttilab.name,const_align(sizeof(pint)));
  919. asmlists[al_rtti].concat(Tai_symbol.create_global(rttilab,0));
  920. asmlists[al_rtti].concat(Tai_const.create_32bit(longint(mode)));
  921. if mode=lookup then
  922. begin
  923. maybe_write_align;
  924. o:=syms[0].value; {Start with min value.}
  925. for i:=0 to sym_count-1 do
  926. begin
  927. while o<syms[i].value do
  928. begin
  929. asmlists[al_rtti].concat(Tai_const.create_pint(0));
  930. inc(o);
  931. end;
  932. inc(o);
  933. asmlists[al_rtti].concat(Tai_const.create_sym_offset(mainrtti,st+offsets[i]));
  934. end;
  935. end
  936. else
  937. begin
  938. maybe_write_align;
  939. asmlists[al_rtti].concat(Tai_const.create_32bit(sym_count));
  940. for i:=0 to sym_count-1 do
  941. begin
  942. maybe_write_align;
  943. asmlists[al_rtti].concat(Tai_const.create_32bit(syms[i].value));
  944. maybe_write_align;
  945. asmlists[al_rtti].concat(Tai_const.create_sym_offset(mainrtti,st+offsets[i]));
  946. end;
  947. end;
  948. asmlists[al_rtti].concat(Tai_symbol_end.create(rttilab));
  949. end;
  950. end;
  951. { Writes a helper table for accelerated conversion of string to ordinal enum values.
  952. If you change something in this method, make sure to adapt the corresponding code
  953. in sstrings.inc. }
  954. procedure enumdef_rtti_string2ordindex(const sym_count:longint; const offsets:plongint; const syms:Penumsym; const st:longint);
  955. var rttilab:Tasmsymbol;
  956. i:longint;
  957. begin
  958. { write rtti data }
  959. with current_asmdata do
  960. begin
  961. rttilab:=defineasmsymbol(Tstoreddef(def).rtti_mangledname(rt)+'_s2o',AB_GLOBAL,AT_DATA);
  962. maybe_new_object_file(asmlists[al_rtti]);
  963. new_section(asmlists[al_rtti],sec_rodata,rttilab.name,const_align(sizeof(pint)));
  964. asmlists[al_rtti].concat(Tai_symbol.create_global(rttilab,0));
  965. asmlists[al_rtti].concat(Tai_const.create_32bit(sym_count));
  966. { need to align the entry record according to the largest member }
  967. maybe_write_align;
  968. for i:=0 to sym_count-1 do
  969. begin
  970. if (tf_requires_proper_alignment in target_info.flags) then
  971. current_asmdata.asmlists[al_rtti].concat(cai_align.Create(4)); // necessary?
  972. asmlists[al_rtti].concat(Tai_const.create_32bit(syms[i].value));
  973. maybe_write_align;
  974. asmlists[al_rtti].concat(Tai_const.create_sym_offset(mainrtti,st+offsets[i]));
  975. end;
  976. asmlists[al_rtti].concat(Tai_symbol_end.create(rttilab));
  977. end;
  978. end;
  979. procedure enumdef_rtti_extrasyms(def:Tenumdef);
  980. var
  981. t:Tenumsym;
  982. syms:Penumsym;
  983. sym_count,sym_alloc:sizeuint;
  984. offsets:^longint;
  985. h,i,p,o,st:longint;
  986. begin
  987. {Random access needed, put in array.}
  988. getmem(syms,64*sizeof(Tenumsym));
  989. getmem(offsets,64*sizeof(longint));
  990. sym_count:=0;
  991. sym_alloc:=64;
  992. st:=0;
  993. for i := 0 to def.symtable.SymList.Count - 1 do
  994. begin
  995. t:=tenumsym(def.symtable.SymList[i]);
  996. if t.value<def.minval then
  997. continue
  998. else
  999. if t.value>def.maxval then
  1000. break;
  1001. if sym_count>=sym_alloc then
  1002. begin
  1003. reallocmem(syms,2*sym_alloc*sizeof(Tenumsym));
  1004. reallocmem(offsets,2*sym_alloc*sizeof(longint));
  1005. sym_alloc:=sym_alloc*2;
  1006. end;
  1007. syms[sym_count]:=t;
  1008. offsets[sym_count]:=st;
  1009. inc(sym_count);
  1010. st:=st+length(t.realname)+1;
  1011. end;
  1012. {Sort the syms by enum name}
  1013. if sym_count>=2 then
  1014. begin
  1015. p:=1;
  1016. while 2*p<sym_count do
  1017. p:=2*p;
  1018. while p<>0 do
  1019. begin
  1020. for h:=p to sym_count-1 do
  1021. begin
  1022. i:=h;
  1023. t:=syms[i];
  1024. o:=offsets[i];
  1025. repeat
  1026. if syms[i-p].name<=t.name then
  1027. break;
  1028. syms[i]:=syms[i-p];
  1029. offsets[i]:=offsets[i-p];
  1030. dec(i,p);
  1031. until i<p;
  1032. syms[i]:=t;
  1033. offsets[i]:=o;
  1034. end;
  1035. p:=p shr 1;
  1036. end;
  1037. end;
  1038. st:=enumdef_rtti_calcstringtablestart(def);
  1039. enumdef_rtti_string2ordindex(sym_count,offsets,syms,st);
  1040. { Sort the syms by enum value }
  1041. if sym_count>=2 then
  1042. begin
  1043. p:=1;
  1044. while 2*p<sym_count do
  1045. p:=2*p;
  1046. while p<>0 do
  1047. begin
  1048. for h:=p to sym_count-1 do
  1049. begin
  1050. i:=h;
  1051. t:=syms[i];
  1052. o:=offsets[i];
  1053. repeat
  1054. if syms[i-p].value<=t.value then
  1055. break;
  1056. syms[i]:=syms[i-p];
  1057. offsets[i]:=offsets[i-p];
  1058. dec(i,p);
  1059. until i<p;
  1060. syms[i]:=t;
  1061. offsets[i]:=o;
  1062. end;
  1063. p:=p shr 1;
  1064. end;
  1065. end;
  1066. enumdef_rtti_ord2stringindex(sym_count,offsets,syms,st);
  1067. freemem(syms);
  1068. freemem(offsets);
  1069. end;
  1070. begin
  1071. case def.typ of
  1072. enumdef:
  1073. if rt=fullrtti then
  1074. begin
  1075. enumdef_rtti_extrasyms(Tenumdef(def));
  1076. end;
  1077. end;
  1078. end;
  1079. procedure TRTTIWriter.write_child_rtti_data(def:tdef;rt:trttitype);
  1080. begin
  1081. case def.typ of
  1082. enumdef :
  1083. if assigned(tenumdef(def).basedef) then
  1084. write_rtti(tenumdef(def).basedef,rt);
  1085. setdef :
  1086. write_rtti(tsetdef(def).elementdef,rt);
  1087. arraydef :
  1088. write_rtti(tarraydef(def).elementdef,rt);
  1089. recorddef :
  1090. fields_write_rtti(trecorddef(def).symtable,rt);
  1091. objectdef :
  1092. begin
  1093. if assigned(tobjectdef(def).childof) then
  1094. write_rtti(tobjectdef(def).childof,rt);
  1095. if (rt=initrtti) or (tobjectdef(def).objecttype=odt_object) then
  1096. fields_write_rtti(tobjectdef(def).symtable,rt)
  1097. else
  1098. published_write_rtti(tobjectdef(def).symtable,rt);
  1099. end;
  1100. end;
  1101. end;
  1102. function TRTTIWriter.ref_rtti(def:tdef;rt:trttitype):tasmsymbol;
  1103. begin
  1104. result:=current_asmdata.RefAsmSymbol(def.rtti_mangledname(rt));
  1105. if (cs_create_pic in current_settings.moduleswitches) and
  1106. assigned(current_procinfo) then
  1107. include(current_procinfo.flags,pi_needs_got);
  1108. end;
  1109. procedure TRTTIWriter.write_rtti(def:tdef;rt:trttitype);
  1110. var
  1111. rttilab : tasmsymbol;
  1112. begin
  1113. { only write rtti of definitions from the current module }
  1114. if not findunitsymtable(def.owner).iscurrentunit then
  1115. exit;
  1116. { check if separate initrtti is actually needed }
  1117. if (rt=initrtti) and (not def.needs_separate_initrtti) then
  1118. rt:=fullrtti;
  1119. { prevent recursion }
  1120. if rttidefstate[rt] in def.defstates then
  1121. exit;
  1122. include(def.defstates,rttidefstate[rt]);
  1123. { write first all dependencies }
  1124. write_child_rtti_data(def,rt);
  1125. { write rtti data }
  1126. rttilab:=current_asmdata.DefineAsmSymbol(tstoreddef(def).rtti_mangledname(rt),AB_GLOBAL,AT_DATA);
  1127. maybe_new_object_file(current_asmdata.asmlists[al_rtti]);
  1128. new_section(current_asmdata.asmlists[al_rtti],sec_rodata,rttilab.name,const_align(sizeof(pint)));
  1129. current_asmdata.asmlists[al_rtti].concat(Tai_symbol.Create_global(rttilab,0));
  1130. write_rtti_data(def,rt);
  1131. current_asmdata.asmlists[al_rtti].concat(Tai_symbol_end.Create(rttilab));
  1132. write_rtti_extrasyms(def,rt,rttilab);
  1133. end;
  1134. function TRTTIWriter.get_rtti_label(def:tdef;rt:trttitype):tasmsymbol;
  1135. begin
  1136. result:=current_asmdata.RefAsmSymbol(def.rtti_mangledname(rt));
  1137. if (cs_create_pic in current_settings.moduleswitches) and
  1138. assigned(current_procinfo) then
  1139. include(current_procinfo.flags,pi_needs_got);
  1140. end;
  1141. function TRTTIWriter.get_rtti_label_ord2str(def:tdef;rt:trttitype):tasmsymbol;
  1142. begin
  1143. result:=current_asmdata.RefAsmSymbol(def.rtti_mangledname(rt)+'_o2s');
  1144. if (cs_create_pic in current_settings.moduleswitches) and
  1145. assigned(current_procinfo) then
  1146. include(current_procinfo.flags,pi_needs_got);
  1147. end;
  1148. function TRTTIWriter.get_rtti_label_str2ord(def:tdef;rt:trttitype):tasmsymbol;
  1149. begin
  1150. result:=current_asmdata.RefAsmSymbol(def.rtti_mangledname(rt)+'_s2o');
  1151. if (cs_create_pic in current_settings.moduleswitches) and
  1152. assigned(current_procinfo) then
  1153. include(current_procinfo.flags,pi_needs_got);
  1154. end;
  1155. end.