ncgrtti.pas 88 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,globtype,
  22. aasmbase,aasmcnst,
  23. symbase,symconst,symtype,symdef,symsym,
  24. parabase;
  25. type
  26. { TRTTIWriter }
  27. TRTTIWriter=class
  28. private
  29. { required internal alignment of the rtti data }
  30. reqalign: shortint;
  31. { required packing of all structures except for ttypeinfo and tpropinfo,
  32. which always use packrecords 1 }
  33. defaultpacking: shortint;
  34. procedure fields_write_rtti(st:tsymtable;rt:trttitype);
  35. procedure params_write_rtti(def:tabstractprocdef;rt:trttitype;allow_hidden:boolean);
  36. procedure fields_write_rtti_data(tcb: ttai_typedconstbuilder; def: tabstractrecorddef; rt: trttitype);
  37. procedure methods_write_rtti(st:tsymtable;rt:trttitype;visibilities:tvisibilities;allow_hidden:boolean);
  38. procedure write_rtti_extrasyms(def:Tdef;rt:Trttitype;mainrtti:Tasmsymbol);
  39. procedure published_write_rtti(st:tsymtable;rt:trttitype);
  40. function published_properties_count(st:tsymtable):longint;
  41. procedure published_properties_write_rtti_data(tcb: ttai_typedconstbuilder; propnamelist: TFPHashObjectList; st: tsymtable);
  42. procedure collect_propnamelist(propnamelist:TFPHashObjectList;objdef:tobjectdef);
  43. { only use a direct reference if the referenced type can *only* reside
  44. in the same unit as the current one }
  45. function ref_rtti(def:tdef;rt:trttitype;indirect:boolean;suffix:tsymstr):tasmsymbol;
  46. procedure write_rtti_name(tcb: ttai_typedconstbuilder; def: tdef);
  47. procedure write_common_rtti_data(tcb:ttai_typedconstbuilder;def:tdef;rt:trttitype);
  48. procedure write_rtti_data(tcb: ttai_typedconstbuilder; def:tdef; rt: trttitype);
  49. procedure write_attribute_data(tcb: ttai_typedconstbuilder;attr_list:trtti_attribute_list);
  50. procedure write_child_rtti_data(def:tdef;rt:trttitype);
  51. procedure write_rtti_reference(tcb: ttai_typedconstbuilder; def: tdef; rt: trttitype);
  52. procedure write_methods(tcb:ttai_typedconstbuilder;st:tsymtable;visibilities:tvisibilities);
  53. procedure write_header(tcb: ttai_typedconstbuilder; def: tdef; typekind: byte);
  54. function write_methodkind(tcb:ttai_typedconstbuilder;def:tabstractprocdef):byte;
  55. procedure write_callconv(tcb:ttai_typedconstbuilder;def:tabstractprocdef);
  56. procedure write_paralocs(tcb:ttai_typedconstbuilder;para:pcgpara);
  57. procedure write_param_flag(tcb:ttai_typedconstbuilder;parasym:tparavarsym);
  58. procedure write_mop_offset_table(tcb:ttai_typedconstbuilder;def:tabstractrecorddef;mop:tmanagementoperator);
  59. public
  60. constructor create;
  61. procedure write_rtti(def:tdef;rt:trttitype);
  62. function get_rtti_label(def:tdef;rt:trttitype;indirect:boolean):tasmsymbol; inline;
  63. function get_rtti_label_ord2str(def:tdef;rt:trttitype;indirect:boolean):tasmsymbol; inline;
  64. function get_rtti_label_str2ord(def:tdef;rt:trttitype;indirect:boolean):tasmsymbol; inline;
  65. end;
  66. { generate RTTI and init tables }
  67. procedure write_persistent_type_info(st:tsymtable;is_global:boolean);
  68. var
  69. RTTIWriter : TRTTIWriter;
  70. implementation
  71. uses
  72. cutils,
  73. globals,verbose,systems,
  74. node,ncal,ncon,
  75. fmodule, procinfo,
  76. symtable,symutil,
  77. aasmtai,aasmdata,
  78. defutil,
  79. paramgr
  80. ;
  81. const
  82. rttidefstate : array[trttitype] of tdefstate =
  83. (ds_rtti_table_written,ds_init_table_written,
  84. { Objective-C related, does not pass here }
  85. symconst.ds_none,symconst.ds_none,
  86. symconst.ds_none,symconst.ds_none);
  87. type
  88. TPropNameListItem = class(TFPHashObject)
  89. propindex : longint;
  90. propowner : TSymtable;
  91. end;
  92. procedure write_persistent_type_info(st: tsymtable; is_global: boolean);
  93. var
  94. i : longint;
  95. def : tdef;
  96. begin
  97. { no Delphi-style RTTI for managed platforms }
  98. if target_info.system in systems_managed_vm then
  99. exit;
  100. for i:=0 to st.DefList.Count-1 do
  101. begin
  102. def:=tdef(st.DefList[i]);
  103. { skip generics }
  104. if [df_generic,df_genconstraint]*def.defoptions<>[] then
  105. continue;
  106. case def.typ of
  107. recorddef:
  108. write_persistent_type_info(trecorddef(def).symtable,is_global);
  109. objectdef :
  110. begin
  111. { Skip forward defs }
  112. if (oo_is_forward in tobjectdef(def).objectoptions) then
  113. continue;
  114. { skip unique type aliases, they use the RTTI from the parent class }
  115. if tobjectdef(def).is_unique_objpasdef then
  116. continue;
  117. write_persistent_type_info(tobjectdef(def).symtable,is_global);
  118. end;
  119. procdef :
  120. begin
  121. if assigned(tprocdef(def).localst) and
  122. (tprocdef(def).localst.symtabletype=localsymtable) then
  123. write_persistent_type_info(tprocdef(def).localst,false);
  124. if assigned(tprocdef(def).parast) then
  125. write_persistent_type_info(tprocdef(def).parast,false);
  126. end;
  127. errordef:
  128. { we shouldn't have come this far if we have an errordef somewhere }
  129. internalerror(2017010701);
  130. undefineddef:
  131. { don't write any RTTI for these }
  132. continue;
  133. else
  134. ;
  135. end;
  136. { always generate persistent tables for types in the interface so
  137. they can be reused in other units and give always the same pointer
  138. location. }
  139. { Init }
  140. if (
  141. assigned(def.typesym) and
  142. is_global and
  143. not is_objc_class_or_protocol(def)
  144. ) or
  145. is_managed_type(def) or
  146. (ds_init_table_used in def.defstates) then
  147. RTTIWriter.write_rtti(def,initrtti);
  148. { RTTI }
  149. if (
  150. assigned(def.typesym) and
  151. is_global and
  152. not is_objc_class_or_protocol(def)
  153. ) or
  154. (ds_rtti_table_used in def.defstates) then
  155. RTTIWriter.write_rtti(def,fullrtti);
  156. end;
  157. end;
  158. {***************************************************************************
  159. TRTTIWriter
  160. ***************************************************************************}
  161. function TRTTIWriter.get_rtti_label(def:tdef;rt:trttitype;indirect:boolean):tasmsymbol;
  162. begin
  163. result:=ref_rtti(def,rt,indirect,'');
  164. end;
  165. function TRTTIWriter.get_rtti_label_ord2str(def:tdef;rt:trttitype;indirect:boolean):tasmsymbol;
  166. begin
  167. result:=ref_rtti(def,rt,indirect,'_o2s');
  168. end;
  169. function TRTTIWriter.get_rtti_label_str2ord(def:tdef;rt:trttitype;indirect:boolean):tasmsymbol;
  170. begin
  171. result:=ref_rtti(def,rt,indirect,'_s2o');
  172. end;
  173. procedure TRTTIWriter.write_methods(tcb:ttai_typedconstbuilder;st:tsymtable;visibilities:tvisibilities);
  174. var
  175. rtticount,
  176. totalcount,
  177. i,j,k : longint;
  178. sym : tprocsym;
  179. def : tprocdef;
  180. para : tparavarsym;
  181. begin
  182. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  183. targetinfos[target_info.system]^.alignment.recordalignmin);
  184. totalcount:=0;
  185. rtticount:=0;
  186. for i:=0 to st.symlist.count-1 do
  187. if tsym(st.symlist[i]).typ=procsym then
  188. begin
  189. sym:=tprocsym(st.symlist[i]);
  190. inc(totalcount,sym.procdeflist.count);
  191. for j:=0 to sym.procdeflist.count-1 do
  192. if tprocdef(sym.procdeflist[j]).visibility in visibilities then
  193. inc(rtticount);
  194. end;
  195. tcb.emit_ord_const(totalcount,u16inttype);
  196. if rtticount = 0 then
  197. tcb.emit_ord_const($FFFF,u16inttype)
  198. else
  199. begin
  200. tcb.emit_ord_const(rtticount,u16inttype);
  201. for i:=0 to st.symlist.count-1 do
  202. if tsym(st.symlist[i]).typ=procsym then
  203. begin
  204. sym:=tprocsym(st.symlist[i]);
  205. for j:=0 to sym.procdeflist.count-1 do
  206. begin
  207. def:=tprocdef(sym.procdeflist[j]);
  208. if not (def.visibility in visibilities) then
  209. continue;
  210. def.init_paraloc_info(callerside);
  211. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  212. targetinfos[target_info.system]^.alignment.recordalignmin);
  213. write_rtti_reference(tcb,def.returndef,fullrtti);
  214. write_callconv(tcb,def);
  215. write_methodkind(tcb,def);
  216. tcb.emit_ord_const(def.paras.count,u16inttype);
  217. tcb.emit_ord_const(def.callerargareasize,ptrsinttype);
  218. tcb.emit_pooled_shortstring_const_ref(sym.realname);
  219. for k:=0 to def.paras.count-1 do
  220. begin
  221. para:=tparavarsym(def.paras[k]);
  222. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  223. targetinfos[target_info.system]^.alignment.recordalignmin);
  224. if is_open_array(para.vardef) or is_array_of_const(para.vardef) then
  225. write_rtti_reference(tcb,tarraydef(para.vardef).elementdef,fullrtti)
  226. else if para.vardef=cformaltype then
  227. write_rtti_reference(tcb,nil,fullrtti)
  228. else
  229. write_rtti_reference(tcb,para.vardef,fullrtti);
  230. write_param_flag(tcb,para);
  231. tcb.emit_pooled_shortstring_const_ref(para.realname);
  232. write_paralocs(tcb,@para.paraloc[callerside]);
  233. tcb.end_anonymous_record;
  234. end;
  235. if not is_void(def.returndef) then
  236. write_paralocs(tcb,@def.funcretloc[callerside]);
  237. tcb.end_anonymous_record;
  238. end;
  239. end;
  240. end;
  241. tcb.end_anonymous_record;
  242. end;
  243. procedure TRTTIWriter.write_header(tcb: ttai_typedconstbuilder; def: tdef; typekind: byte);
  244. var
  245. name: shortstring;
  246. begin
  247. if assigned(def.typesym) then
  248. name:=ttypesym(def.typesym).realname
  249. else
  250. name:='';
  251. { TTypeInfo, always packed and doesn't need alignment }
  252. tcb.begin_anonymous_record(
  253. internaltypeprefixName[itp_rtti_header]+tostr(length(name)),1,1,
  254. targetinfos[target_info.system]^.alignment.recordalignmin);
  255. if def.typ=arraydef then
  256. InternalError(201012211);
  257. tcb.emit_tai(Tai_const.Create_8bit(typekind),u8inttype);
  258. tcb.emit_shortstring_const(name);
  259. tcb.end_anonymous_record;
  260. end;
  261. function TRTTIWriter.write_methodkind(tcb:ttai_typedconstbuilder;def:tabstractprocdef):byte;
  262. begin
  263. case def.proctypeoption of
  264. potype_constructor: result:=mkConstructor;
  265. potype_destructor: result:=mkDestructor;
  266. potype_class_constructor: result:=mkClassConstructor;
  267. potype_class_destructor: result:=mkClassDestructor;
  268. potype_operator: result:=mkOperatorOverload;
  269. potype_procedure:
  270. if po_classmethod in def.procoptions then
  271. result:=mkClassProcedure
  272. else
  273. result:=mkProcedure;
  274. potype_function:
  275. if po_classmethod in def.procoptions then
  276. result:=mkClassFunction
  277. else
  278. result:=mkFunction;
  279. else
  280. begin
  281. if def.returndef = voidtype then
  282. result:=mkProcedure
  283. else
  284. result:=mkFunction;
  285. end;
  286. end;
  287. tcb.emit_ord_const(result,u8inttype);
  288. end;
  289. procedure TRTTIWriter.write_callconv(tcb:ttai_typedconstbuilder;def:tabstractprocdef);
  290. const
  291. ProcCallOptionToCallConv: array[tproccalloption] of byte = (
  292. { pocall_none } 0,
  293. { pocall_cdecl } 1,
  294. { pocall_cppdecl } 5,
  295. { pocall_far16 } 6,
  296. { pocall_oldfpccall } 7,
  297. { pocall_internproc } 8,
  298. { pocall_syscall } 9,
  299. { pocall_pascal } 2,
  300. { pocall_register } 0,
  301. { pocall_safecall } 4,
  302. { pocall_stdcall } 3,
  303. { pocall_softfloat } 10,
  304. { pocall_mwpascal } 11,
  305. { pocall_interrupt } 12,
  306. { pocall_hardfloat } 13,
  307. { pocall_sysv_abi_default } 14,
  308. { pocall_sysv_abi_cdecl } 15,
  309. { pocall_ms_abi_default } 16,
  310. { pocall_ms_abi_cdecl } 17,
  311. { pocall_vectorcall } 18
  312. );
  313. begin
  314. tcb.emit_ord_const(ProcCallOptionToCallConv[def.proccalloption],u8inttype);
  315. end;
  316. procedure TRTTIWriter.write_paralocs(tcb:ttai_typedconstbuilder;para:pcgpara);
  317. var
  318. locs : trttiparalocs;
  319. i : longint;
  320. pool : THashSet;
  321. entry : PHashSetItem;
  322. loclab : TAsmLabel;
  323. loctcb : ttai_typedconstbuilder;
  324. datadef : tdef;
  325. begin
  326. locs:=paramanager.cgparalocs_to_rttiparalocs(para^.location);
  327. if length(locs)>high(byte) then
  328. internalerror(2017010601);
  329. if length(locs)=0 then
  330. begin
  331. { *shrugs* }
  332. tcb.emit_tai(Tai_const.Create_nil_codeptr,voidpointertype);
  333. exit;
  334. end;
  335. { do we have such a paraloc already in the pool? }
  336. pool:=current_asmdata.ConstPools[sp_paraloc];
  337. entry:=pool.FindOrAdd(@locs[0],length(locs)*sizeof(trttiparaloc));
  338. if not assigned(entry^.Data) then
  339. begin
  340. current_asmdata.getglobaldatalabel(loclab);
  341. loctcb:=ctai_typedconstbuilder.create([tcalo_is_lab,tcalo_make_dead_strippable]);
  342. loctcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  343. targetinfos[target_info.system]^.alignment.recordalignmin);
  344. loctcb.emit_ord_const(length(locs),u8inttype);
  345. for i:=low(locs) to high(locs) do
  346. begin
  347. loctcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  348. targetinfos[target_info.system]^.alignment.recordalignmin);
  349. loctcb.emit_ord_const(locs[i].loctype,u8inttype);
  350. loctcb.emit_ord_const(locs[i].regsub,u8inttype);
  351. loctcb.emit_ord_const(locs[i].regindex,u16inttype);
  352. { the corresponding type for aint is alusinttype }
  353. loctcb.emit_ord_const(locs[i].offset,alusinttype);
  354. loctcb.end_anonymous_record;
  355. end;
  356. datadef:=loctcb.end_anonymous_record;
  357. current_asmdata.asmlists[al_typedconsts].concatList(
  358. loctcb.get_final_asmlist(loclab,datadef,sec_rodata_norel,loclab.name,const_align(sizeof(pint)))
  359. );
  360. loctcb.free;
  361. entry^.data:=loclab;
  362. end
  363. else
  364. loclab:=TAsmLabel(entry^.Data);
  365. tcb.emit_tai(Tai_const.Create_sym(loclab),voidpointertype);
  366. end;
  367. procedure TRTTIWriter.write_param_flag(tcb:ttai_typedconstbuilder;parasym:tparavarsym);
  368. var
  369. paraspec : word;
  370. begin
  371. case parasym.varspez of
  372. vs_value : paraspec := 0;
  373. vs_const : paraspec := pfConst;
  374. vs_var : paraspec := pfVar;
  375. vs_out : paraspec := pfOut;
  376. vs_constref: paraspec := pfConstRef;
  377. else
  378. internalerror(2013112904);
  379. end;
  380. { Kylix also seems to always add both pfArray and pfReference
  381. in this case
  382. }
  383. if is_open_array(parasym.vardef) or is_array_of_const(parasym.vardef) then
  384. paraspec:=paraspec or pfArray or pfReference;
  385. { and these for classes and interfaces (maybe because they
  386. are themselves addresses?)
  387. }
  388. if is_class_or_interface(parasym.vardef) then
  389. paraspec:=paraspec or pfAddress;
  390. { flags for the hidden parameters }
  391. if vo_is_hidden_para in parasym.varoptions then
  392. paraspec:=paraspec or pfHidden;
  393. if vo_is_high_para in parasym.varoptions then
  394. paraspec:=paraspec or pfHigh;
  395. if vo_is_self in parasym.varoptions then
  396. paraspec:=paraspec or pfSelf;
  397. if vo_is_vmt in parasym.varoptions then
  398. paraspec:=paraspec or pfVmt;
  399. if vo_is_funcret in parasym.varoptions then
  400. paraspec:=paraspec or pfResult;
  401. { set bits run from the highest to the lowest bit on
  402. big endian systems
  403. }
  404. if (target_info.endian = endian_big) then
  405. paraspec:=reverse_word(paraspec);
  406. { write flags for current parameter }
  407. tcb.emit_ord_const(paraspec,u16inttype);
  408. end;
  409. function compare_mop_offset_entry(item1,item2:pointer):longint;
  410. var
  411. entry1: pmanagementoperator_offset_entry absolute item1;
  412. entry2: pmanagementoperator_offset_entry absolute item2;
  413. begin
  414. if entry1^.offset<entry2^.offset then
  415. result:=-1
  416. else if entry1^.offset>entry2^.offset then
  417. result:=1
  418. else
  419. result:=0;
  420. end;
  421. procedure TRTTIWriter.write_mop_offset_table(tcb:ttai_typedconstbuilder;def:tabstractrecorddef;mop:tmanagementoperator);
  422. var
  423. list : tfplist;
  424. datatcb : ttai_typedconstbuilder;
  425. tbllbl : TAsmLabel;
  426. entry : pmanagementoperator_offset_entry;
  427. datadef,entrydef : tdef;
  428. i : longint;
  429. pdef : tobjectdef;
  430. begin
  431. list:=tfplist.create;
  432. tabstractrecordsymtable(def.symtable).get_managementoperator_offset_list(mop,list);
  433. if (def.typ=objectdef) then
  434. begin
  435. pdef:=tobjectdef(def).childof;
  436. while assigned(pdef) do
  437. begin
  438. tabstractrecordsymtable(pdef.symtable).get_managementoperator_offset_list(mop,list);
  439. pdef:=pdef.childof;
  440. end;
  441. list.sort(@compare_mop_offset_entry);
  442. end;
  443. if list.count=0 then
  444. tcb.emit_tai(tai_const.create_nil_dataptr,voidpointertype)
  445. else
  446. begin
  447. tcb.start_internal_data_builder(current_asmdata.AsmLists[al_rtti],sec_rodata,'',datatcb,tbllbl);
  448. datatcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  449. targetinfos[target_info.system]^.alignment.recordalignmin);
  450. datatcb.emit_ord_const(list.count,u32inttype);
  451. entrydef:=get_recorddef(itp_init_mop_offset_entry,[voidcodepointertype,sizeuinttype],defaultpacking);
  452. for i:=0 to list.count-1 do
  453. begin
  454. entry:=pmanagementoperator_offset_entry(list[i]);
  455. datatcb.maybe_begin_aggregate(entrydef);
  456. datatcb.queue_init(voidcodepointertype);
  457. datatcb.queue_emit_proc(entry^.pd);
  458. datatcb.queue_init(sizeuinttype);
  459. datatcb.queue_emit_ordconst(entry^.offset,sizeuinttype);
  460. datatcb.maybe_end_aggregate(entrydef);
  461. dispose(entry);
  462. end;
  463. datadef:=datatcb.end_anonymous_record;
  464. tcb.finish_internal_data_builder(datatcb,tbllbl,datadef,sizeof(pint));
  465. tcb.emit_tai(tai_const.Create_sym(tbllbl),voidpointertype);
  466. end;
  467. list.free;
  468. end;
  469. procedure TRTTIWriter.write_rtti_name(tcb: ttai_typedconstbuilder; def: tdef);
  470. begin
  471. if is_open_array(def) then
  472. { open arrays never have a typesym with a name, since you cannot
  473. define an "open array type". Kylix prints the type of the
  474. elements in the array in this case (so together with the pfArray
  475. flag, you can reconstruct the full typename, I assume (JM))
  476. }
  477. def:=tarraydef(def).elementdef;
  478. { name }
  479. if assigned(def.typesym) then
  480. tcb.emit_shortstring_const(ttypesym(def.typesym).realname)
  481. else
  482. tcb.emit_shortstring_const('');
  483. end;
  484. procedure TRTTIWriter.write_common_rtti_data(tcb:ttai_typedconstbuilder;def:tdef;rt:trttitype);
  485. begin
  486. if rt<>fullrtti then
  487. write_attribute_data(tcb,nil)
  488. else
  489. write_attribute_data(tcb,tstoreddef(def).rtti_attribute_list);
  490. end;
  491. { writes a 32-bit count followed by array of field infos for given symtable }
  492. procedure TRTTIWriter.fields_write_rtti_data(tcb: ttai_typedconstbuilder; def: tabstractrecorddef; rt: trttitype);
  493. var
  494. i : longint;
  495. sym : tsym;
  496. fieldcnt: longint;
  497. st: tsymtable;
  498. fields: tfplist;
  499. parentrtti: boolean;
  500. begin
  501. fieldcnt:=0;
  502. parentrtti:=false;
  503. st:=def.symtable;
  504. fields:=tfplist.create;
  505. fields.capacity:=st.symlist.count+1;
  506. { For objects, treat parent (if any) as a field with offset 0. This
  507. provides correct handling of entire instance with RTL rtti routines. }
  508. if (def.typ=objectdef) and (tobjectdef(def).objecttype=odt_object) and
  509. Assigned(tobjectdef(def).childof) and
  510. ((rt=fullrtti) or (tobjectdef(def).childof.needs_inittable)) then
  511. begin
  512. parentrtti:=true;
  513. inc(fieldcnt);
  514. end;
  515. for i:=0 to st.SymList.Count-1 do
  516. begin
  517. sym:=tsym(st.SymList[i]);
  518. if is_normal_fieldvarsym(sym) and
  519. (
  520. (rt=fullrtti) or
  521. tfieldvarsym(sym).vardef.needs_inittable
  522. ) and
  523. not is_objc_class_or_protocol(tfieldvarsym(sym).vardef) then
  524. begin
  525. fields.add(tfieldvarsym(sym));
  526. inc(fieldcnt);
  527. end;
  528. end;
  529. { insert field count before data }
  530. tcb.emit_ord_const(fieldcnt,u32inttype);
  531. { parent object? }
  532. if parentrtti then
  533. begin
  534. write_rtti_reference(tcb,tobjectdef(def).childof,rt);
  535. tcb.emit_ord_const(0,ptruinttype);
  536. end;
  537. { fields }
  538. for i:=0 to fields.count-1 do
  539. begin
  540. sym:=tsym(fields[i]);
  541. write_rtti_reference(tcb,tfieldvarsym(sym).vardef,rt);
  542. tcb.emit_ord_const(tfieldvarsym(sym).fieldoffset,sizeuinttype);
  543. end;
  544. fields.free;
  545. end;
  546. procedure TRTTIWriter.fields_write_rtti(st:tsymtable;rt:trttitype);
  547. var
  548. i : longint;
  549. sym : tsym;
  550. begin
  551. for i:=0 to st.SymList.Count-1 do
  552. begin
  553. sym:=tsym(st.SymList[i]);
  554. if is_normal_fieldvarsym(sym) and
  555. (
  556. (rt=fullrtti) or
  557. tfieldvarsym(sym).vardef.needs_inittable
  558. ) then
  559. write_rtti(tfieldvarsym(sym).vardef,rt);
  560. end;
  561. end;
  562. procedure TRTTIWriter.params_write_rtti(def:tabstractprocdef;rt:trttitype;allow_hidden:boolean);
  563. var
  564. i : longint;
  565. sym : tparavarsym;
  566. begin
  567. for i:=0 to def.paras.count-1 do
  568. begin
  569. sym:=tparavarsym(def.paras[i]);
  570. if not (vo_is_hidden_para in sym.varoptions) or allow_hidden then
  571. begin
  572. if is_open_array(sym.vardef) or is_array_of_const(sym.vardef) then
  573. write_rtti(tarraydef(sym.vardef).elementdef,rt)
  574. else
  575. write_rtti(sym.vardef,rt);
  576. end;
  577. end;
  578. end;
  579. procedure TRTTIWriter.methods_write_rtti(st:tsymtable;rt:trttitype;visibilities:tvisibilities;allow_hidden:boolean);
  580. var
  581. i,j : longint;
  582. sym : tprocsym;
  583. def : tabstractprocdef;
  584. begin
  585. for i:=0 to st.symlist.count-1 do
  586. if tsym(st.symlist[i]).typ=procsym then
  587. begin
  588. sym:=tprocsym(st.symlist[i]);
  589. for j:=0 to sym.procdeflist.count-1 do
  590. begin
  591. def:=tabstractprocdef(sym.procdeflist[j]);
  592. write_rtti(def.returndef,rt);
  593. params_write_rtti(def,rt,allow_hidden);
  594. end;
  595. end;
  596. end;
  597. procedure TRTTIWriter.published_write_rtti(st:tsymtable;rt:trttitype);
  598. var
  599. i : longint;
  600. sym : tsym;
  601. begin
  602. for i:=0 to st.SymList.Count-1 do
  603. begin
  604. sym:=tsym(st.SymList[i]);
  605. if (sym.visibility=vis_published) then
  606. begin
  607. case tsym(sym).typ of
  608. propertysym:
  609. write_rtti(tpropertysym(sym).propdef,rt);
  610. fieldvarsym:
  611. write_rtti(tfieldvarsym(sym).vardef,rt);
  612. else
  613. ;
  614. end;
  615. end;
  616. end;
  617. end;
  618. function TRTTIWriter.published_properties_count(st:tsymtable):longint;
  619. var
  620. i : longint;
  621. sym : tsym;
  622. begin
  623. result:=0;
  624. for i:=0 to st.SymList.Count-1 do
  625. begin
  626. sym:=tsym(st.SymList[i]);
  627. if (tsym(sym).typ=propertysym) and
  628. (sym.visibility=vis_published) then
  629. inc(result);
  630. end;
  631. end;
  632. procedure TRTTIWriter.collect_propnamelist(propnamelist:TFPHashObjectList;objdef:tobjectdef);
  633. var
  634. i : longint;
  635. sym : tsym;
  636. pn : tpropnamelistitem;
  637. begin
  638. if assigned(objdef.childof) then
  639. collect_propnamelist(propnamelist,objdef.childof);
  640. for i:=0 to objdef.symtable.SymList.Count-1 do
  641. begin
  642. sym:=tsym(objdef.symtable.SymList[i]);
  643. if (tsym(sym).typ=propertysym) and
  644. (sym.visibility=vis_published) then
  645. begin
  646. pn:=TPropNameListItem(propnamelist.Find(tsym(sym).name));
  647. if not assigned(pn) then
  648. begin
  649. pn:=tpropnamelistitem.create(propnamelist,tsym(sym).name);
  650. pn.propindex:=propnamelist.count-1;
  651. pn.propowner:=tsym(sym).owner;
  652. end;
  653. end;
  654. end;
  655. end;
  656. procedure TRTTIWriter.published_properties_write_rtti_data(tcb: ttai_typedconstbuilder; propnamelist:TFPHashObjectList;st:tsymtable);
  657. var
  658. i : longint;
  659. sym : tsym;
  660. proctypesinfo : byte;
  661. propnameitem : tpropnamelistitem;
  662. propdefname : string;
  663. procedure writeaccessproc(pap:tpropaccesslisttypes; shiftvalue : byte; unsetvalue: byte);
  664. var
  665. typvalue : byte;
  666. hp : ppropaccesslistitem;
  667. extnumber: longint;
  668. address,space : longint;
  669. def : tdef;
  670. hpropsym : tpropertysym;
  671. propaccesslist : tpropaccesslist;
  672. begin
  673. hpropsym:=tpropertysym(sym);
  674. repeat
  675. propaccesslist:=hpropsym.propaccesslist[pap];
  676. if not propaccesslist.empty then
  677. break;
  678. hpropsym:=hpropsym.overriddenpropsym;
  679. until not assigned(hpropsym);
  680. if not(assigned(propaccesslist) and assigned(propaccesslist.firstsym)) then
  681. begin
  682. tcb.emit_tai(Tai_const.Create_int_codeptr(unsetvalue),codeptruinttype);
  683. typvalue:=3;
  684. end
  685. { also for accessing class fields }
  686. else if propaccesslist.firstsym^.sym.typ=fieldvarsym then
  687. begin
  688. address:=0;
  689. hp:=propaccesslist.firstsym;
  690. def:=nil;
  691. while assigned(hp) do
  692. begin
  693. case hp^.sltype of
  694. sl_load :
  695. begin
  696. def:=tfieldvarsym(hp^.sym).vardef;
  697. inc(address,tfieldvarsym(hp^.sym).fieldoffset);
  698. end;
  699. sl_subscript :
  700. begin
  701. if not(assigned(def) and
  702. ((def.typ=recorddef) or
  703. is_object(def))) then
  704. internalerror(200402171);
  705. inc(address,tfieldvarsym(hp^.sym).fieldoffset);
  706. def:=tfieldvarsym(hp^.sym).vardef;
  707. end;
  708. sl_vec :
  709. begin
  710. if not(assigned(def) and (def.typ=arraydef)) then
  711. internalerror(200402172);
  712. def:=tarraydef(def).elementdef;
  713. {Hp.value is a Tconstexprint, which can be rather large,
  714. sanity check for longint overflow.}
  715. space:=(high(address)-address) div def.size;
  716. if int64(space)<hp^.value then
  717. internalerror(200706101);
  718. inc(address,int64(def.size*hp^.value));
  719. end;
  720. else
  721. internalerror(2019050523);
  722. end;
  723. hp:=hp^.next;
  724. end;
  725. tcb.emit_tai(Tai_const.Create_int_codeptr(address),codeptruinttype);
  726. typvalue:=0;
  727. end
  728. else
  729. begin
  730. { When there was an error then procdef is not assigned }
  731. if not assigned(propaccesslist.procdef) then
  732. exit;
  733. if not(po_virtualmethod in tprocdef(propaccesslist.procdef).procoptions) or
  734. is_objectpascal_helper(tprocdef(propaccesslist.procdef).struct) then
  735. begin
  736. tcb.queue_init(codeptruinttype);
  737. tcb.queue_emit_proc(tprocdef(propaccesslist.procdef));
  738. typvalue:=1;
  739. end
  740. else
  741. begin
  742. { virtual method, write vmt offset }
  743. extnumber:=tprocdef(propaccesslist.procdef).extnumber;
  744. tcb.emit_tai(Tai_const.Create_int_codeptr(
  745. tobjectdef(tprocdef(propaccesslist.procdef).struct).vmtmethodoffset(extnumber)),
  746. codeptruinttype);
  747. { register for wpo }
  748. tobjectdef(tprocdef(propaccesslist.procdef).struct).register_vmt_call(extnumber);
  749. {$ifdef vtentry}
  750. { not sure if we can insert those vtentry symbols safely here }
  751. {$error register methods used for published properties}
  752. {$endif vtentry}
  753. typvalue:=2;
  754. end;
  755. end;
  756. proctypesinfo:=proctypesinfo or (typvalue shl shiftvalue);
  757. end;
  758. begin
  759. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  760. targetinfos[target_info.system]^.alignment.recordalignmin);
  761. tcb.emit_ord_const(published_properties_count(st),u16inttype);
  762. for i:=0 to st.SymList.Count-1 do
  763. begin
  764. sym:=tsym(st.SymList[i]);
  765. if (sym.typ=propertysym) and
  766. (sym.visibility=vis_published) then
  767. begin
  768. { we can only easily reuse defs if the property is not stored,
  769. because otherwise the rtti layout depends on how the "stored"
  770. is defined (field, indexed expression, virtual method, ...) }
  771. if not(ppo_stored in tpropertysym(sym).propoptions) then
  772. propdefname:=internaltypeprefixName[itp_rtti_prop]+tostr(length(tpropertysym(sym).realname))
  773. else
  774. propdefname:='';
  775. { TPropInfo is a packed record (even on targets that require
  776. alignment), but it starts aligned }
  777. tcb.begin_anonymous_record(
  778. propdefname,
  779. 1,min(reqalign,SizeOf(PInt)),
  780. targetinfos[target_info.system]^.alignment.recordalignmin);
  781. if ppo_indexed in tpropertysym(sym).propoptions then
  782. proctypesinfo:=$40
  783. else
  784. proctypesinfo:=0;
  785. write_rtti_reference(tcb,tpropertysym(sym).propdef,fullrtti);
  786. writeaccessproc(palt_read,0,0);
  787. writeaccessproc(palt_write,2,0);
  788. { is it stored ? }
  789. if not(ppo_stored in tpropertysym(sym).propoptions) then
  790. begin
  791. { no, so put a constant zero }
  792. tcb.emit_tai(Tai_const.Create_nil_codeptr,codeptruinttype);
  793. proctypesinfo:=proctypesinfo or (3 shl 4);
  794. end
  795. else
  796. writeaccessproc(palt_stored,4,1); { maybe; if no procedure put a constant 1 (=true) }
  797. tcb.emit_ord_const(tpropertysym(sym).index,u32inttype);
  798. tcb.emit_ord_const(tpropertysym(sym).default,u32inttype);
  799. propnameitem:=TPropNameListItem(propnamelist.Find(tpropertysym(sym).name));
  800. if not assigned(propnameitem) then
  801. internalerror(200512201);
  802. tcb.emit_ord_const(propnameitem.propindex,u16inttype);
  803. tcb.emit_ord_const(proctypesinfo,u8inttype);
  804. { write reference to attribute table }
  805. write_attribute_data(tcb,tpropertysym(sym).rtti_attribute_list);
  806. { Write property name }
  807. tcb.emit_shortstring_const(tpropertysym(sym).realname);
  808. tcb.end_anonymous_record;
  809. end;
  810. end;
  811. tcb.end_anonymous_record;
  812. end;
  813. procedure TRTTIWriter.write_rtti_data(tcb: ttai_typedconstbuilder; def: tdef; rt: trttitype);
  814. procedure unknown_rtti(def:tstoreddef);
  815. begin
  816. tcb.emit_ord_const(tkUnknown,u8inttype);
  817. write_rtti_name(tcb,def);
  818. write_common_rtti_data(tcb,def,rt);
  819. end;
  820. procedure variantdef_rtti(def:tvariantdef);
  821. begin
  822. write_header(tcb,def,tkVariant);
  823. write_common_rtti_data(tcb,def,rt);
  824. end;
  825. procedure stringdef_rtti(def:tstringdef);
  826. const
  827. string_typekinds: array[tstringtype] of byte = (
  828. tkSString,tkLString,tkAString,tkWString,tkUString
  829. );
  830. begin
  831. write_header(tcb,def,string_typekinds[def.stringtype]);
  832. tcb.begin_anonymous_record(
  833. internaltypeprefixName[itp_rtti_outer]+tostr(string_typekinds[def.stringtype]),
  834. defaultpacking,reqalign,
  835. targetinfos[target_info.system]^.alignment.recordalignmin);
  836. write_common_rtti_data(tcb,def,rt);
  837. case def.stringtype of
  838. st_ansistring:
  839. begin
  840. tcb.begin_anonymous_record(
  841. internaltypeprefixName[itp_rtti_case]+tostr(string_typekinds[def.stringtype]),
  842. defaultpacking,reqalign,
  843. targetinfos[target_info.system]^.alignment.recordalignmin);
  844. tcb.emit_ord_const(def.encoding,u16inttype);
  845. tcb.end_anonymous_record;
  846. end;
  847. st_shortstring:
  848. begin
  849. tcb.begin_anonymous_record(
  850. internaltypeprefixName[itp_rtti_case]+tostr(string_typekinds[def.stringtype]),
  851. defaultpacking,reqalign,
  852. targetinfos[target_info.system]^.alignment.recordalignmin);
  853. tcb.emit_ord_const(def.len,u8inttype);
  854. tcb.end_anonymous_record;
  855. end;
  856. st_widestring,
  857. st_unicodestring,
  858. st_longstring:
  859. { nothing }
  860. ;
  861. end;
  862. tcb.end_anonymous_record;
  863. end;
  864. procedure enumdef_rtti(def: tenumdef);
  865. var
  866. i : integer;
  867. hp : tenumsym;
  868. begin
  869. write_header(tcb,def,tkEnumeration);
  870. { align; the named fields are so that we can let the compiler
  871. calculate the string offsets later on }
  872. tcb.next_field_name:='size_start_rec';
  873. { add a typename so that it can be reused when writing the the s2o
  874. and o2s arrays for llvm (otherwise we have to write out the entire
  875. type definition every time we access an element from this record) }
  876. tcb.begin_anonymous_record(internaltypeprefixName[itp_rtti_enum_size_start_rec]+def.unique_id_str,defaultpacking,reqalign,
  877. targetinfos[target_info.system]^.alignment.recordalignmin);
  878. write_common_rtti_data(tcb,def,rt);
  879. tcb.next_field_name:='typ_union_rec';
  880. tcb.begin_anonymous_record(internaltypeprefixName[itp_rtti_enum_size_start_rec2]+def.unique_id_str,defaultpacking,reqalign,
  881. targetinfos[target_info.system]^.alignment.recordalignmin);
  882. case longint(def.size) of
  883. 1 :
  884. tcb.emit_ord_const(otUByte,u8inttype);
  885. 2 :
  886. tcb.emit_ord_const(otUWord,u8inttype);
  887. 4 :
  888. tcb.emit_ord_const(otULong,u8inttype);
  889. end;
  890. { we need to align by Tconstptruint here to satisfy the alignment
  891. rules set by records: in the typinfo unit we overlay a TTypeData
  892. record on this data, which at the innermost variant record needs an
  893. alignment of TConstPtrUint due to e.g. the "CompType" member for
  894. tkSet (also the "BaseType" member for tkEnumeration).
  895. We need to adhere to this, otherwise things will break. }
  896. tcb.next_field_name:='min_max_rec';
  897. tcb.begin_anonymous_record(internaltypeprefixName[itp_rtti_enum_min_max_rec]+def.unique_id_str,defaultpacking,reqalign,
  898. targetinfos[target_info.system]^.alignment.recordalignmin);
  899. tcb.emit_ord_const(def.min,s32inttype);
  900. tcb.emit_ord_const(def.max,s32inttype);
  901. tcb.next_field_name:='basetype_array_rec';
  902. { all strings must appear right after each other -> from now on
  903. packrecords 1 (but the start must still be aligned) }
  904. tcb.begin_anonymous_record(internaltypeprefixName[itp_rtti_enum_basetype_array_rec]+def.unique_id_str,1,reqalign,
  905. targetinfos[target_info.system]^.alignment.recordalignmin);
  906. { write base type }
  907. write_rtti_reference(tcb,def.basedef,rt);
  908. for i:=0 to def.symtable.SymList.Count-1 do
  909. begin
  910. hp:=tenumsym(def.symtable.SymList[i]);
  911. if hp.value<def.minval then
  912. continue
  913. else
  914. if hp.value>def.maxval then
  915. break;
  916. tcb.next_field_name:=hp.name;
  917. tcb.emit_shortstring_const(hp.realname);
  918. end;
  919. { write unit name }
  920. tcb.emit_shortstring_const(current_module.realmodulename^);
  921. { write zero which is required by RTL }
  922. tcb.emit_ord_const(0,u8inttype);
  923. { terminate all records }
  924. tcb.end_anonymous_record;
  925. tcb.end_anonymous_record;
  926. tcb.end_anonymous_record;
  927. tcb.end_anonymous_record;
  928. end;
  929. procedure orddef_rtti(def:torddef);
  930. procedure doint32_64(typekind: byte;min,max:int64);
  931. const
  932. trans : array[tordtype] of byte =
  933. (otUByte{otNone},
  934. otUByte,otUWord,otULong,otUQWord,otUByte{otNone},
  935. otSByte,otSWord,otSLong,otSQWord,otUByte{otNone},
  936. otUByte,otUByte,otUWord,otULong,otUQWord,
  937. otSByte,otSWord,otSLong,otSQWord,
  938. otUByte,otUWord,otUByte,255);
  939. var
  940. elesize: string[1];
  941. deftrans: byte;
  942. begin
  943. write_header(tcb,def,typekind);
  944. deftrans:=trans[def.ordtype];
  945. case deftrans of
  946. otUQWord,
  947. otSQWord:
  948. elesize:='8';
  949. 255:
  950. begin
  951. if def.packedbitsize<=32 then
  952. begin
  953. elesize:='4';
  954. if def.low<0 then
  955. deftrans:=otSLong
  956. else
  957. deftrans:=otULong;
  958. end
  959. else
  960. begin
  961. elesize:='8';
  962. if def.low<0 then
  963. deftrans:=otSQWord
  964. else
  965. deftrans:=otUQWord;
  966. end;
  967. end
  968. else
  969. elesize:='4'
  970. end;
  971. tcb.begin_anonymous_record(
  972. internaltypeprefixName[itp_rtti_ord_outer]+elesize,
  973. defaultpacking,reqalign,
  974. targetinfos[target_info.system]^.alignment.recordalignmin);
  975. write_common_rtti_data(tcb,def,rt);
  976. tcb.begin_anonymous_record(
  977. internaltypeprefixName[itp_rtti_ord_middle]+elesize,
  978. defaultpacking,reqalign,
  979. targetinfos[target_info.system]^.alignment.recordalignmin);
  980. tcb.emit_ord_const(byte(trans[def.ordtype]),u8inttype);
  981. tcb.begin_anonymous_record(
  982. internaltypeprefixName[itp_rtti_ord_inner]+elesize,
  983. defaultpacking,reqalign,
  984. targetinfos[target_info.system]^.alignment.recordalignmin);
  985. {Convert to longint to smuggle values in high(longint)+1..high(cardinal) into asmlist.}
  986. case deftrans of
  987. otUQWord:
  988. begin
  989. tcb.emit_ord_const(min,u64inttype);
  990. tcb.emit_ord_const(max,u64inttype);
  991. end;
  992. otSQWord:
  993. begin
  994. tcb.emit_ord_const(min,s64inttype);
  995. tcb.emit_ord_const(max,s64inttype);
  996. end;
  997. else
  998. begin
  999. tcb.emit_ord_const(longint(min),s32inttype);
  1000. tcb.emit_ord_const(longint(max),s32inttype);
  1001. end;
  1002. end;
  1003. tcb.end_anonymous_record;
  1004. tcb.end_anonymous_record;
  1005. tcb.end_anonymous_record;
  1006. end;
  1007. procedure dointeger(typekind:byte);inline;
  1008. begin
  1009. doint32_64(typekind,int64(def.low.svalue),int64(def.high.svalue));
  1010. end;
  1011. begin
  1012. case def.ordtype of
  1013. s64bit :
  1014. dointeger(tkInt64);
  1015. u64bit :
  1016. dointeger(tkQWord);
  1017. pasbool1,
  1018. pasbool8,
  1019. pasbool16,
  1020. pasbool32,
  1021. pasbool64:
  1022. dointeger(tkBool);
  1023. { use different low/high values to be Delphi compatible }
  1024. bool8bit,
  1025. bool16bit,
  1026. bool32bit:
  1027. doint32_64(tkBool,longint(low(longint)),longint(high(longint)));
  1028. bool64bit:
  1029. doint32_64(tkBool,low(int64),high(int64));
  1030. uchar:
  1031. dointeger(tkChar);
  1032. uwidechar:
  1033. dointeger(tkWChar);
  1034. scurrency:
  1035. begin
  1036. write_header(tcb,def,tkFloat);
  1037. tcb.begin_anonymous_record(
  1038. internaltypeprefixName[itp_1byte],
  1039. defaultpacking,reqalign,
  1040. targetinfos[target_info.system]^.alignment.recordalignmin);
  1041. write_common_rtti_data(tcb,def,rt);
  1042. tcb.emit_ord_const(ftCurr,u8inttype);
  1043. tcb.end_anonymous_record;
  1044. end;
  1045. else
  1046. dointeger(tkInteger);
  1047. end;
  1048. end;
  1049. procedure floatdef_rtti(def:tfloatdef);
  1050. const
  1051. {tfloattype = (s32real,s64real,s80real,sc80real,s64bit,s128bit);}
  1052. translate : array[tfloattype] of byte =
  1053. (ftSingle,ftDouble,ftExtended,ftExtended,ftComp,ftCurr,ftFloat128);
  1054. begin
  1055. write_header(tcb,def,tkFloat);
  1056. tcb.begin_anonymous_record(
  1057. internaltypeprefixName[itp_1byte],
  1058. defaultpacking,reqalign,
  1059. targetinfos[target_info.system]^.alignment.recordalignmin);
  1060. write_common_rtti_data(tcb,def,rt);
  1061. tcb.begin_anonymous_record(
  1062. internaltypeprefixName[itp_rtti_float],
  1063. defaultpacking,reqalign,
  1064. targetinfos[target_info.system]^.alignment.recordalignmin);
  1065. tcb.emit_ord_const(translate[def.floattype],u8inttype);
  1066. tcb.end_anonymous_record;
  1067. tcb.end_anonymous_record;
  1068. end;
  1069. procedure setdef_rtti(def:tsetdef);
  1070. begin
  1071. write_header(tcb,def,tkSet);
  1072. tcb.begin_anonymous_record(
  1073. internaltypeprefixName[itp_rtti_set_outer],
  1074. defaultpacking,reqalign,
  1075. targetinfos[target_info.system]^.alignment.recordalignmin);
  1076. write_common_rtti_data(tcb,def,rt);
  1077. tcb.begin_anonymous_record(
  1078. internaltypeprefixName[itp_rtti_set_middle],
  1079. defaultpacking,reqalign,
  1080. targetinfos[target_info.system]^.alignment.recordalignmin);
  1081. case def.size of
  1082. 1:
  1083. tcb.emit_ord_const(otUByte,u8inttype);
  1084. 2:
  1085. tcb.emit_ord_const(otUWord,u8inttype);
  1086. 4:
  1087. tcb.emit_ord_const(otULong,u8inttype);
  1088. else
  1089. tcb.emit_ord_const(otUByte,u8inttype);
  1090. end;
  1091. tcb.begin_anonymous_record(
  1092. internaltypeprefixName[itp_rtti_set_inner],
  1093. defaultpacking,reqalign,
  1094. targetinfos[target_info.system]^.alignment.recordalignmin);
  1095. tcb.emit_ord_const(def.size,sizesinttype);
  1096. write_rtti_reference(tcb,def.elementdef,rt);
  1097. tcb.end_anonymous_record;
  1098. tcb.end_anonymous_record;
  1099. tcb.end_anonymous_record;
  1100. end;
  1101. procedure arraydef_rtti(def:tarraydef);
  1102. var
  1103. i,dimcount: byte;
  1104. totalcount: asizeuint;
  1105. finaldef: tdef;
  1106. curdef:tarraydef;
  1107. begin
  1108. if ado_IsDynamicArray in def.arrayoptions then
  1109. tcb.emit_ord_const(tkDynArray,u8inttype)
  1110. else
  1111. tcb.emit_ord_const(tkArray,u8inttype);
  1112. write_rtti_name(tcb,def);
  1113. if not(ado_IsDynamicArray in def.arrayoptions) then
  1114. begin
  1115. { remember tha last instruction. we will need to insert some
  1116. calculated values after it }
  1117. finaldef:=def;
  1118. totalcount:=1;
  1119. dimcount:=0;
  1120. repeat
  1121. curdef:=tarraydef(finaldef);
  1122. finaldef:=curdef.elementdef;
  1123. { Dims[i] PTypeInfo }
  1124. inc(dimcount);
  1125. totalcount:=totalcount*curdef.elecount;
  1126. until (finaldef.typ<>arraydef) or
  1127. (ado_IsDynamicArray in tarraydef(finaldef).arrayoptions);
  1128. tcb.begin_anonymous_record(
  1129. internaltypeprefixName[itp_rtti_normal_array]+tostr(dimcount),
  1130. defaultpacking,reqalign,
  1131. targetinfos[target_info.system]^.alignment.recordalignmin);
  1132. write_common_rtti_data(tcb,def,rt);
  1133. tcb.begin_anonymous_record(internaltypeprefixName[itp_rtti_normal_array_inner]+tostr(dimcount),
  1134. defaultpacking,reqalign,
  1135. targetinfos[target_info.system]^.alignment.recordalignmin);
  1136. { total size = elecount * elesize of the first arraydef }
  1137. tcb.emit_tai(Tai_const.Create_sizeint(def.elecount*def.elesize),sizeuinttype);
  1138. { total element count }
  1139. tcb.emit_tai(Tai_const.Create_sizeint(asizeint(totalcount)),sizeuinttype);
  1140. { last dimension element type }
  1141. tcb.emit_tai(Tai_const.Create_sym(get_rtti_label(curdef.elementdef,rt,true)),voidpointertype);
  1142. { dimension count }
  1143. tcb.emit_ord_const(dimcount,u8inttype);
  1144. finaldef:=def;
  1145. { ranges of the dimensions }
  1146. for i:=1 to dimcount do
  1147. begin
  1148. curdef:=tarraydef(finaldef);
  1149. finaldef:=curdef.elementdef;
  1150. { Dims[i] PPTypeInfo }
  1151. write_rtti_reference(tcb,curdef.rangedef,rt);
  1152. end;
  1153. end
  1154. else
  1155. { write a delphi almost compatible dyn. array entry:
  1156. there are two types, eltype and eltype2, the latter is nil if the element type needs
  1157. no finalization, the former is always valid, delphi has this swapped, but for
  1158. compatibility with older fpc versions we do it different, to be delphi compatible,
  1159. the names are swapped in typinfo.pp
  1160. }
  1161. begin
  1162. tcb.begin_anonymous_record(
  1163. internaltypeprefixName[itp_rtti_dyn_array],
  1164. defaultpacking,reqalign,
  1165. targetinfos[target_info.system]^.alignment.recordalignmin);
  1166. write_common_rtti_data(tcb,def,rt);
  1167. { record in TypInfo is aligned differently from init rtti }
  1168. tcb.begin_anonymous_record(
  1169. internaltypeprefixName[itp_rtti_dyn_array_inner],
  1170. defaultpacking,reqalign,
  1171. targetinfos[target_info.system]^.alignment.recordalignmin);
  1172. { size of elements }
  1173. tcb.emit_tai(Tai_const.Create_sizeint(def.elesize),sizeuinttype);
  1174. { element type }
  1175. write_rtti_reference(tcb,def.elementdef,rt);
  1176. { variant type }
  1177. tcb.emit_ord_const(tstoreddef(def.elementdef).getvardef,s32inttype);
  1178. { element type }
  1179. if def.elementdef.needs_inittable then
  1180. write_rtti_reference(tcb,def.elementdef,rt)
  1181. else
  1182. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype);
  1183. { write unit name }
  1184. tcb.emit_shortstring_const(current_module.realmodulename^);
  1185. end;
  1186. tcb.end_anonymous_record;
  1187. tcb.end_anonymous_record;
  1188. end;
  1189. procedure classrefdef_rtti(def:tclassrefdef);
  1190. begin
  1191. write_header(tcb,def,tkClassRef);
  1192. tcb.begin_anonymous_record(
  1193. internaltypeprefixName[itp_rtti_ref],
  1194. defaultpacking,reqalign,
  1195. targetinfos[target_info.system]^.alignment.recordalignmin);
  1196. write_common_rtti_data(tcb,def,rt);
  1197. tcb.begin_anonymous_record(
  1198. internaltypeprefixName[itp_rtti_classref],
  1199. defaultpacking,reqalign,
  1200. targetinfos[target_info.system]^.alignment.recordalignmin);
  1201. write_rtti_reference(tcb,def.pointeddef,rt);
  1202. tcb.end_anonymous_record;
  1203. tcb.end_anonymous_record;
  1204. end;
  1205. procedure pointerdef_rtti(def:tpointerdef);
  1206. begin
  1207. write_header(tcb,def,tkPointer);
  1208. tcb.begin_anonymous_record(
  1209. internaltypeprefixName[itp_rtti_ref],
  1210. defaultpacking,reqalign,
  1211. targetinfos[target_info.system]^.alignment.recordalignmin);
  1212. write_common_rtti_data(tcb,def,rt);
  1213. tcb.begin_anonymous_record(
  1214. internaltypeprefixName[itp_rtti_pointer],
  1215. defaultpacking,reqalign,
  1216. targetinfos[target_info.system]^.alignment.recordalignmin);
  1217. write_rtti_reference(tcb,def.pointeddef,rt);
  1218. tcb.end_anonymous_record;
  1219. tcb.end_anonymous_record;
  1220. end;
  1221. procedure recorddef_rtti(def:trecorddef);
  1222. procedure write_record_operators(rttilab:tasmlabel);
  1223. var
  1224. rttidef: tdef;
  1225. tcb: ttai_typedconstbuilder;
  1226. mop: tmanagementoperator;
  1227. procdef: tprocdef;
  1228. begin
  1229. tcb:=ctai_typedconstbuilder.create([tcalo_make_dead_strippable]);
  1230. tcb.begin_anonymous_record(
  1231. '',
  1232. defaultpacking,min(reqalign,SizeOf(PInt)),
  1233. targetinfos[target_info.system]^.alignment.recordalignmin
  1234. );
  1235. { use "succ" to omit first enum item "mop_none" }
  1236. for mop := succ(low(tmanagementoperator)) to high(tmanagementoperator) do
  1237. begin
  1238. if not (mop in trecordsymtable(def.symtable).managementoperators) then
  1239. tcb.emit_tai(Tai_const.Create_nil_codeptr,voidcodepointertype)
  1240. else
  1241. begin
  1242. procdef := search_management_operator(mop, def);
  1243. if procdef = nil then
  1244. internalerror(201603021)
  1245. else
  1246. tcb.emit_tai(Tai_const.Createname(procdef.mangledname,AT_FUNCTION,0),
  1247. cprocvardef.getreusableprocaddr(procdef,pc_address_only));
  1248. end;
  1249. end;
  1250. rttidef := tcb.end_anonymous_record;
  1251. current_asmdata.AsmLists[al_rtti].concatList(
  1252. tcb.get_final_asmlist(rttilab,rttidef,sec_rodata,rttilab.name,
  1253. sizeof(PInt)));
  1254. tcb.free;
  1255. end;
  1256. var
  1257. oplab : tasmlabel;
  1258. begin
  1259. write_header(tcb,def,tkRecord);
  1260. { need extra reqalign record, because otherwise the u32 int will
  1261. only be aligned to 4 even on 64 bit target (while the rtti code
  1262. in typinfo expects alignments to sizeof(pointer)) }
  1263. tcb.begin_anonymous_record('',
  1264. defaultpacking,reqalign,
  1265. targetinfos[target_info.system]^.alignment.recordalignmin);
  1266. write_common_rtti_data(tcb,def,rt);
  1267. tcb.begin_anonymous_record('',
  1268. defaultpacking,reqalign,
  1269. targetinfos[target_info.system]^.alignment.recordalignmin);
  1270. { store special terminator for init table for more optimal rtl operations
  1271. strictly related to RecordRTTI procedure in rtti.inc (directly
  1272. related to RTTIRecordRttiInfoToInitInfo function) }
  1273. if rt=initrtti then
  1274. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype)
  1275. else
  1276. { we use a direct reference as the init RTTI is always in the same
  1277. unit as the full RTTI }
  1278. tcb.emit_tai(Tai_const.Create_sym(get_rtti_label(def,initrtti,false)),voidpointertype);
  1279. tcb.emit_ord_const(def.size,u32inttype);
  1280. oplab:=nil;
  1281. { store rtti management operators only for init table }
  1282. if rt=initrtti then
  1283. begin
  1284. { for now records don't have the initializer table }
  1285. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype);
  1286. if (trecordsymtable(def.symtable).managementoperators=[]) then
  1287. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype)
  1288. else
  1289. begin
  1290. current_asmdata.getlocaldatalabel(oplab);
  1291. tcb.emit_tai(Tai_const.Createname(
  1292. oplab.name,
  1293. AT_DATA_FORCEINDIRECT,0),voidpointertype);
  1294. end;
  1295. end;
  1296. fields_write_rtti_data(tcb,def,rt);
  1297. tcb.end_anonymous_record;
  1298. tcb.end_anonymous_record;
  1299. { write pointers to operators if needed }
  1300. if (rt=initrtti) and (trecordsymtable(def.symtable).managementoperators<>[]) then
  1301. write_record_operators(oplab);
  1302. end;
  1303. procedure procvardef_rtti(def:tprocvardef);
  1304. procedure write_para(parasym:tparavarsym);
  1305. begin
  1306. { write flags for current parameter }
  1307. write_param_flag(tcb,parasym);
  1308. { write name of current parameter }
  1309. tcb.emit_shortstring_const(parasym.realname);
  1310. { write name of type of current parameter }
  1311. write_rtti_name(tcb,parasym.vardef);
  1312. end;
  1313. procedure write_procedure_param(parasym:tparavarsym);
  1314. begin
  1315. { every parameter is expected to start aligned }
  1316. tcb.begin_anonymous_record(
  1317. internaltypeprefixName[itp_rtti_proc_param]+tostr(length(parasym.realname)),
  1318. defaultpacking,min(reqalign,SizeOf(PInt)),
  1319. targetinfos[target_info.system]^.alignment.recordalignmin);
  1320. { write flags for current parameter }
  1321. write_param_flag(tcb,parasym);
  1322. { write param type }
  1323. if is_open_array(parasym.vardef) or is_array_of_const(parasym.vardef) then
  1324. write_rtti_reference(tcb,tarraydef(parasym.vardef).elementdef,fullrtti)
  1325. else if parasym.vardef=cformaltype then
  1326. write_rtti_reference(tcb,nil,fullrtti)
  1327. else
  1328. write_rtti_reference(tcb,parasym.vardef,fullrtti);
  1329. { write name of current parameter }
  1330. tcb.emit_shortstring_const(parasym.realname);
  1331. tcb.end_anonymous_record;
  1332. end;
  1333. var
  1334. methodkind : byte;
  1335. i : integer;
  1336. begin
  1337. if po_methodpointer in def.procoptions then
  1338. begin
  1339. { write method id and name }
  1340. write_header(tcb,def,tkMethod);
  1341. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1342. targetinfos[target_info.system]^.alignment.recordalignmin);
  1343. write_common_rtti_data(tcb,def,rt);
  1344. tcb.begin_anonymous_record('',
  1345. defaultpacking,reqalign,
  1346. targetinfos[target_info.system]^.alignment.recordalignmin);
  1347. { write kind of method }
  1348. methodkind:=write_methodkind(tcb,def);
  1349. { write parameter info. The parameters must be written in reverse order
  1350. if this method uses right to left parameter pushing! }
  1351. tcb.emit_ord_const(def.paras.count,u8inttype);
  1352. for i:=0 to def.paras.count-1 do
  1353. write_para(tparavarsym(def.paras[i]));
  1354. if (methodkind=mkFunction) or (methodkind=mkClassFunction) then
  1355. begin
  1356. { write name of result type }
  1357. write_rtti_name(tcb,def.returndef);
  1358. { enclosing record takes care of alignment }
  1359. { write result typeinfo }
  1360. write_rtti_reference(tcb,def.returndef,fullrtti);
  1361. end;
  1362. { write calling convention }
  1363. write_callconv(tcb,def);
  1364. { enclosing record takes care of alignment }
  1365. { write params typeinfo }
  1366. for i:=0 to def.paras.count-1 do
  1367. begin
  1368. if is_open_array(tparavarsym(def.paras[i]).vardef) or is_array_of_const(tparavarsym(def.paras[i]).vardef) then
  1369. write_rtti_reference(tcb,tarraydef(tparavarsym(def.paras[i]).vardef).elementdef,fullrtti)
  1370. else if tparavarsym(def.paras[i]).vardef=cformaltype then
  1371. write_rtti_reference(tcb,nil,fullrtti)
  1372. else
  1373. write_rtti_reference(tcb,tparavarsym(def.paras[i]).vardef,fullrtti);
  1374. end;
  1375. tcb.end_anonymous_record;
  1376. tcb.end_anonymous_record;
  1377. end
  1378. else
  1379. begin
  1380. write_header(tcb,def,tkProcvar);
  1381. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1382. targetinfos[target_info.system]^.alignment.recordalignmin);
  1383. write_common_rtti_data(tcb,def,rt);
  1384. tcb.begin_anonymous_record('',
  1385. defaultpacking,reqalign,
  1386. targetinfos[target_info.system]^.alignment.recordalignmin);
  1387. { flags }
  1388. tcb.emit_ord_const(0,u8inttype);
  1389. { write calling convention }
  1390. write_callconv(tcb,def);
  1391. { enclosing record takes care of alignment }
  1392. { write result typeinfo }
  1393. write_rtti_reference(tcb,def.returndef,fullrtti);
  1394. { write parameter count }
  1395. tcb.emit_ord_const(def.paras.count,u8inttype);
  1396. for i:=0 to def.paras.count-1 do
  1397. write_procedure_param(tparavarsym(def.paras[i]));
  1398. tcb.end_anonymous_record;
  1399. tcb.end_anonymous_record;
  1400. end;
  1401. end;
  1402. procedure objectdef_rtti(def: tobjectdef);
  1403. procedure objectdef_rtti_fields(def:tobjectdef);
  1404. begin
  1405. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1406. targetinfos[target_info.system]^.alignment.recordalignmin);
  1407. { - for compatiblity with record RTTI we need to write a terminator-
  1408. Nil pointer for initrtti as well for objects
  1409. - for RTTI consistency for objects we need point from fullrtti
  1410. to initrtti
  1411. - classes are assumed to have the same INIT RTTI as records
  1412. (see TObject.CleanupInstance)
  1413. - neither helper nor class type have fullrtti for fields
  1414. }
  1415. if (rt=initrtti) then
  1416. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype)
  1417. else
  1418. if (def.objecttype=odt_object) then
  1419. tcb.emit_tai(Tai_const.Create_sym(get_rtti_label(def,initrtti,false)),voidpointertype)
  1420. else
  1421. internalerror(2017011801);
  1422. tcb.emit_ord_const(def.size, u32inttype);
  1423. { pointer to management operators available only for initrtti }
  1424. if (rt=initrtti) then
  1425. begin
  1426. { initializer table only available for classes currently }
  1427. if def.objecttype=odt_class then
  1428. write_mop_offset_table(tcb,def,mop_initialize)
  1429. else
  1430. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype);
  1431. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype);
  1432. end;
  1433. { enclosing record takes care of alignment }
  1434. fields_write_rtti_data(tcb,def,rt);
  1435. tcb.end_anonymous_record;
  1436. end;
  1437. procedure objectdef_rtti_interface_init(def:tobjectdef);
  1438. begin
  1439. tcb.emit_ord_const(def.size, u32inttype);
  1440. end;
  1441. procedure objectdef_rtti_class_full(def:tobjectdef);
  1442. var
  1443. propnamelist : TFPHashObjectList;
  1444. begin
  1445. { Collect unique property names with nameindex }
  1446. propnamelist:=TFPHashObjectList.Create;
  1447. collect_propnamelist(propnamelist,def);
  1448. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1449. targetinfos[target_info.system]^.alignment.recordalignmin);
  1450. if not is_objectpascal_helper(def) then
  1451. if (oo_has_vmt in def.objectoptions) then
  1452. tcb.emit_tai(
  1453. Tai_const.Createname(def.vmt_mangledname,AT_DATA_FORCEINDIRECT,0),
  1454. cpointerdef.getreusable(def.vmt_def))
  1455. else
  1456. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype);
  1457. { write parent typeinfo }
  1458. write_rtti_reference(tcb,def.childof,fullrtti);
  1459. { write typeinfo of extended type }
  1460. if is_objectpascal_helper(def) then
  1461. if assigned(def.extendeddef) then
  1462. write_rtti_reference(tcb,def.extendeddef,fullrtti)
  1463. else
  1464. InternalError(2011033001);
  1465. { total number of unique properties }
  1466. tcb.emit_ord_const(propnamelist.count,u16inttype);
  1467. { write unit name }
  1468. tcb.emit_shortstring_const(current_module.realmodulename^);
  1469. { write published properties for this object }
  1470. published_properties_write_rtti_data(tcb,propnamelist,def.symtable);
  1471. tcb.end_anonymous_record;
  1472. propnamelist.free;
  1473. end;
  1474. procedure objectdef_rtti_interface_full(def:tobjectdef);
  1475. var
  1476. propnamelist : TFPHashObjectList;
  1477. { if changed to a set, make sure it's still a byte large, and
  1478. swap appropriately when cross-compiling
  1479. }
  1480. IntfFlags: byte;
  1481. begin
  1482. { Collect unique property names with nameindex }
  1483. propnamelist:=TFPHashObjectList.Create;
  1484. collect_propnamelist(propnamelist,def);
  1485. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1486. targetinfos[target_info.system]^.alignment.recordalignmin);
  1487. { write parent typeinfo }
  1488. write_rtti_reference(tcb,def.childof,fullrtti);
  1489. { interface: write flags, iid and iidstr }
  1490. IntfFlags:=0;
  1491. if assigned(def.iidguid) then
  1492. IntfFlags:=IntfFlags or (1 shl ord(ifHasGuid));
  1493. if (def.objecttype=odt_interfacecorba) and (def.iidstr^<>'') then
  1494. IntfFlags:=IntfFlags or (1 shl ord(ifHasStrGUID));
  1495. if (def.objecttype=odt_dispinterface) then
  1496. IntfFlags:=IntfFlags or (1 shl ord(ifDispInterface));
  1497. if (target_info.endian=endian_big) then
  1498. IntfFlags:=reverse_byte(IntfFlags);
  1499. {
  1500. ifDispatch, }
  1501. tcb.emit_ord_const(IntfFlags,u8inttype);
  1502. { write GUID }
  1503. tcb.emit_guid_const(def.iidguid^);
  1504. { write unit name }
  1505. tcb.emit_shortstring_const(current_module.realmodulename^);
  1506. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1507. targetinfos[target_info.system]^.alignment.recordalignmin);
  1508. { write iidstr }
  1509. if def.objecttype=odt_interfacecorba then
  1510. begin
  1511. { prepareguid always allocates an empty string }
  1512. if not assigned(def.iidstr) then
  1513. internalerror(2016021901);
  1514. tcb.emit_shortstring_const(def.iidstr^)
  1515. end;
  1516. { write published properties for this object }
  1517. published_properties_write_rtti_data(tcb,propnamelist,def.symtable);
  1518. { write published methods for this interface }
  1519. write_methods(tcb,def.symtable,[vis_published]);
  1520. tcb.end_anonymous_record;
  1521. tcb.end_anonymous_record;
  1522. propnamelist.free;
  1523. end;
  1524. begin
  1525. case def.objecttype of
  1526. odt_class:
  1527. tcb.emit_ord_const(tkclass,u8inttype);
  1528. odt_object:
  1529. tcb.emit_ord_const(tkobject,u8inttype);
  1530. odt_dispinterface,
  1531. odt_interfacecom:
  1532. tcb.emit_ord_const(tkInterface,u8inttype);
  1533. odt_interfacecorba:
  1534. tcb.emit_ord_const(tkinterfaceCorba,u8inttype);
  1535. odt_helper:
  1536. tcb.emit_ord_const(tkhelper,u8inttype);
  1537. else
  1538. internalerror(200611034);
  1539. end;
  1540. { generate the name }
  1541. tcb.emit_shortstring_const(def.objrealname^);
  1542. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1543. targetinfos[target_info.system]^.alignment.recordalignmin);
  1544. write_common_rtti_data(tcb,def,rt);
  1545. case rt of
  1546. initrtti :
  1547. begin
  1548. if def.objecttype in [odt_class,odt_object,odt_helper] then
  1549. objectdef_rtti_fields(def)
  1550. else
  1551. objectdef_rtti_interface_init(def);
  1552. end;
  1553. fullrtti :
  1554. begin
  1555. tcb.begin_anonymous_record('',
  1556. defaultpacking,reqalign,
  1557. targetinfos[target_info.system]^.alignment.recordalignmin);
  1558. case def.objecttype of
  1559. odt_helper,
  1560. odt_class:
  1561. objectdef_rtti_class_full(def);
  1562. odt_object:
  1563. objectdef_rtti_fields(def);
  1564. else
  1565. objectdef_rtti_interface_full(def);
  1566. end;
  1567. tcb.end_anonymous_record;
  1568. end;
  1569. else
  1570. ;
  1571. end;
  1572. tcb.end_anonymous_record;
  1573. end;
  1574. begin
  1575. case def.typ of
  1576. variantdef :
  1577. variantdef_rtti(tvariantdef(def));
  1578. stringdef :
  1579. stringdef_rtti(tstringdef(def));
  1580. enumdef :
  1581. enumdef_rtti(tenumdef(def));
  1582. orddef :
  1583. orddef_rtti(torddef(def));
  1584. floatdef :
  1585. floatdef_rtti(tfloatdef(def));
  1586. setdef :
  1587. setdef_rtti(tsetdef(def));
  1588. procvardef :
  1589. procvardef_rtti(tprocvardef(def));
  1590. arraydef :
  1591. begin
  1592. if ado_IsBitPacked in tarraydef(def).arrayoptions then
  1593. unknown_rtti(tstoreddef(def))
  1594. else
  1595. arraydef_rtti(tarraydef(def));
  1596. end;
  1597. recorddef :
  1598. begin
  1599. if trecorddef(def).is_packed then
  1600. unknown_rtti(tstoreddef(def))
  1601. else
  1602. recorddef_rtti(trecorddef(def));
  1603. end;
  1604. objectdef :
  1605. objectdef_rtti(tobjectdef(def));
  1606. classrefdef :
  1607. classrefdef_rtti(tclassrefdef(def));
  1608. pointerdef :
  1609. pointerdef_rtti(tpointerdef(def));
  1610. else
  1611. unknown_rtti(tstoreddef(def));
  1612. end;
  1613. end;
  1614. procedure TRTTIWriter.write_attribute_data(tcb:ttai_typedconstbuilder;attr_list:trtti_attribute_list);
  1615. procedure write_args(tbltcb:ttai_typedconstbuilder;attr:trtti_attribute);
  1616. var
  1617. argtcb : ttai_typedconstbuilder;
  1618. arglab : tasmlabel;
  1619. argdef : tdef;
  1620. i : sizeint;
  1621. begin
  1622. if length(attr.paras)=0 then
  1623. begin
  1624. tbltcb.emit_tai(tai_const.Create_16bit(0),u16inttype);
  1625. tbltcb.emit_tai(tai_const.Create_nil_dataptr,voidpointertype);
  1626. end
  1627. else
  1628. begin
  1629. current_asmdata.getglobaldatalabel(arglab);
  1630. argtcb:=ctai_typedconstbuilder.create([tcalo_is_lab,tcalo_make_dead_strippable]);
  1631. argtcb.begin_anonymous_record('',defaultpacking,min(reqalign,SizeOf(PInt)),
  1632. targetinfos[target_info.system]^.alignment.recordalignmin);
  1633. for i:=0 to High(attr.paras) do
  1634. begin
  1635. case attr.paras[i].nodetype of
  1636. niln,
  1637. ordconstn,
  1638. realconstn,
  1639. stringconstn,
  1640. pointerconstn,
  1641. guidconstn:
  1642. tconstnode(attr.paras[i]).emit_data(argtcb);
  1643. setconstn:
  1644. tsetconstnode(attr.paras[i]).emit_data(argtcb);
  1645. else
  1646. internalerror(2019070803);
  1647. end;
  1648. end;
  1649. argdef:=argtcb.end_anonymous_record;
  1650. current_asmdata.asmlists[al_rtti].concatlist(
  1651. argtcb.get_final_asmlist(arglab,argdef,sec_rodata,arglab.name,const_align(sizeof(pint)))
  1652. );
  1653. argtcb.free;
  1654. { write argument size and the reference to the argument entry }
  1655. tbltcb.emit_ord_const(argdef.size,u16inttype);
  1656. tbltcb.emit_tai(Tai_const.Create_sym(arglab),voidpointertype);
  1657. end;
  1658. end;
  1659. var
  1660. count,i: word;
  1661. attr : trtti_attribute;
  1662. tbltcb : ttai_typedconstbuilder;
  1663. tbllab : tasmlabel;
  1664. tbldef : tdef;
  1665. begin
  1666. if assigned(attr_list) then
  1667. count:=attr_list.get_attribute_count
  1668. else
  1669. count:=0;
  1670. if count=0 then
  1671. begin
  1672. { write a Nil reference }
  1673. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype);
  1674. exit;
  1675. end;
  1676. { first write the attribute list as a separate table }
  1677. current_asmdata.getglobaldatalabel(tbllab);
  1678. tbltcb:=ctai_typedconstbuilder.create([tcalo_is_lab,tcalo_make_dead_strippable]);
  1679. tbltcb.begin_anonymous_record(
  1680. internaltypeprefixName[itp_rtti_attr_list]+tostr(count),
  1681. defaultpacking,min(reqalign,SizeOf(PInt)),
  1682. targetinfos[target_info.system]^.alignment.recordalignmin);
  1683. tbltcb.emit_ord_const(count,u16inttype);
  1684. for i:=0 to count-1 do
  1685. begin
  1686. tbltcb.begin_anonymous_record(internaltypeprefixName[itp_rtti_attr_entry],defaultpacking,min(reqalign,SizeOf(PInt)),
  1687. targetinfos[target_info.system]^.alignment.recordalignmin);
  1688. attr:=trtti_attribute(attr_list.rtti_attributes[i]);
  1689. write_rtti_reference(tbltcb,ttypesym(attr.typesym).typedef,fullrtti);
  1690. tbltcb.emit_procdef_const(tprocdef(tcallnode(attr.constructorcall).procdefinition));
  1691. if not assigned(attr.constructorpd) then
  1692. internalerror(2019071004);
  1693. tbltcb.emit_procdef_const(tprocdef(attr.constructorpd));
  1694. write_args(tbltcb,attr);
  1695. tbltcb.end_anonymous_record;
  1696. end;
  1697. tbldef:=tbltcb.end_anonymous_record;
  1698. current_asmdata.asmlists[al_rtti].concatlist(
  1699. tbltcb.get_final_asmlist(tbllab,tbldef,sec_rodata,tbllab.name,const_align(sizeof(pint)))
  1700. );
  1701. tbltcb.free;
  1702. { write the reference to the attribute table }
  1703. tcb.emit_tai(Tai_const.Create_sym(tbllab),voidpointertype);
  1704. end;
  1705. function enumsym_compare_name(item1, item2: pointer): Integer;
  1706. var
  1707. enum1: tenumsym absolute item1;
  1708. enum2: tenumsym absolute item2;
  1709. begin
  1710. if enum1=enum2 then
  1711. result:=0
  1712. else if enum1.name>enum2.name then
  1713. result:=1
  1714. else
  1715. { there can't be equal names, identifiers are unique }
  1716. result:=-1;
  1717. end;
  1718. function enumsym_compare_value(item1, item2: pointer): Integer;
  1719. var
  1720. enum1: tenumsym absolute item1;
  1721. enum2: tenumsym absolute item2;
  1722. begin
  1723. if enum1.value>enum2.value then
  1724. result:=1
  1725. else if enum1.value<enum2.value then
  1726. result:=-1
  1727. else
  1728. result:=0;
  1729. end;
  1730. procedure TRTTIWriter.write_rtti_extrasyms(def:Tdef;rt:Trttitype;mainrtti:Tasmsymbol);
  1731. type Penumsym = ^Tenumsym;
  1732. { Writes a helper table for accelerated conversion of ordinal enum values to strings.
  1733. If you change something in this method, make sure to adapt the corresponding code
  1734. in sstrings.inc. }
  1735. procedure enumdef_rtti_ord2stringindex(rttidef: trecorddef; const syms: tfplist);
  1736. var rttilab:Tasmsymbol;
  1737. h,i,o,prev_value:longint;
  1738. mode:(lookup,search); {Modify with care, ordinal value of enum is written.}
  1739. r:single; {Must be real type because of integer overflow risk.}
  1740. tcb: ttai_typedconstbuilder;
  1741. sym_count: integer;
  1742. tabledef: tdef;
  1743. begin
  1744. {Decide wether a lookup array is size efficient.}
  1745. mode:=lookup;
  1746. sym_count:=syms.count;
  1747. if sym_count>0 then
  1748. begin
  1749. i:=1;
  1750. r:=0;
  1751. h:=tenumsym(syms[0]).value; {Next expected enum value is min.}
  1752. { set prev_value for the first iteration to a value that is
  1753. different from the first one without risking overflow (it's used
  1754. to detect whether two enum values are the same) }
  1755. if h=0 then
  1756. prev_value:=1
  1757. else
  1758. prev_value:=0;
  1759. while i<sym_count do
  1760. begin
  1761. { if two enum values are the same, we have to create a table }
  1762. if (prev_value=h) then
  1763. begin
  1764. mode:=search;
  1765. break;
  1766. end;
  1767. {Calculate size of hole between values. Avoid integer overflows.}
  1768. r:=r+(single(tenumsym(syms[i]).value)-single(h))-1;
  1769. prev_value:=h;
  1770. h:=tenumsym(syms[i]).value;
  1771. inc(i);
  1772. end;
  1773. if r>sym_count then
  1774. mode:=search; {Don't waste more than 50% space.}
  1775. end;
  1776. { write rtti data; make sure that the alignment matches the corresponding data structure
  1777. in the code that uses it (if alignment is required). }
  1778. tcb:=ctai_typedconstbuilder.create([tcalo_make_dead_strippable,tcalo_data_force_indirect]);
  1779. { use TConstPtrUInt packrecords to ensure good alignment }
  1780. tcb.begin_anonymous_record('',defaultpacking,reqalign,
  1781. targetinfos[target_info.system]^.alignment.recordalignmin);
  1782. { now emit the data: first the mode }
  1783. tcb.emit_tai(Tai_const.create_32bit(longint(mode)),u32inttype);
  1784. { align }
  1785. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,sizeof(PInt)),
  1786. targetinfos[target_info.system]^.alignment.recordalignmin);
  1787. if mode=lookup then
  1788. begin
  1789. o:=tenumsym(syms[0]).value; {Start with min value.}
  1790. for i:=0 to sym_count-1 do
  1791. begin
  1792. while o<tenumsym(syms[i]).value do
  1793. begin
  1794. tcb.emit_tai(Tai_const.create_nil_dataptr,ptruinttype);
  1795. inc(o);
  1796. end;
  1797. inc(o);
  1798. tcb.queue_init(voidpointertype);
  1799. tcb.queue_subscriptn_multiple_by_name(rttidef,
  1800. ['size_start_rec',
  1801. 'typ_union_rec',
  1802. 'min_max_rec',
  1803. 'basetype_array_rec',
  1804. tsym(syms[i]).Name]
  1805. );
  1806. tcb.queue_emit_asmsym(mainrtti,rttidef);
  1807. end;
  1808. end
  1809. else
  1810. begin
  1811. tcb.emit_ord_const(sym_count,u32inttype);
  1812. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,sizeof(PInt)),
  1813. targetinfos[target_info.system]^.alignment.recordalignmin);
  1814. for i:=0 to sym_count-1 do
  1815. begin
  1816. tcb.emit_ord_const(tenumsym(syms[i]).value,s32inttype);
  1817. tcb.queue_init(voidpointertype);
  1818. tcb.queue_subscriptn_multiple_by_name(rttidef,
  1819. ['size_start_rec',
  1820. 'typ_union_rec',
  1821. 'min_max_rec',
  1822. 'basetype_array_rec',
  1823. tsym(syms[i]).Name]
  1824. );
  1825. tcb.queue_emit_asmsym(mainrtti,rttidef);
  1826. end;
  1827. tcb.end_anonymous_record;
  1828. end;
  1829. tcb.end_anonymous_record;
  1830. tabledef:=tcb.end_anonymous_record;
  1831. rttilab:=current_asmdata.DefineAsmSymbol(Tstoreddef(def).rtti_mangledname(rt)+'_o2s',AB_GLOBAL,AT_DATA_NOINDIRECT,tabledef);
  1832. current_asmdata.asmlists[al_rtti].concatlist(tcb.get_final_asmlist(
  1833. rttilab,tabledef,sec_rodata,
  1834. rttilab.name,sizeof(PInt)));
  1835. tcb.free;
  1836. current_module.add_public_asmsym(rttilab);
  1837. end;
  1838. { Writes a helper table for accelerated conversion of string to ordinal enum values.
  1839. If you change something in this method, make sure to adapt the corresponding code
  1840. in sstrings.inc. }
  1841. procedure enumdef_rtti_string2ordindex(rttidef: trecorddef; const syms: tfplist);
  1842. var
  1843. tcb: ttai_typedconstbuilder;
  1844. rttilab: Tasmsymbol;
  1845. i:longint;
  1846. tabledef: tdef;
  1847. begin
  1848. { write rtti data }
  1849. tcb:=ctai_typedconstbuilder.create([tcalo_make_dead_strippable,tcalo_data_force_indirect]);
  1850. { begin of Tstring_to_ord }
  1851. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,sizeof(PInt)),
  1852. targetinfos[target_info.system]^.alignment.recordalignmin);
  1853. tcb.emit_ord_const(syms.count,s32inttype);
  1854. { begin of "data" array in Tstring_to_ord }
  1855. tcb.begin_anonymous_record('',defaultpacking,min(reqalign,sizeof(PInt)),
  1856. targetinfos[target_info.system]^.alignment.recordalignmin);
  1857. for i:=0 to syms.count-1 do
  1858. begin
  1859. tcb.emit_ord_const(tenumsym(syms[i]).value,s32inttype);
  1860. { alignment of pointer value handled by enclosing record already }
  1861. tcb.queue_init(voidpointertype);
  1862. tcb.queue_subscriptn_multiple_by_name(rttidef,
  1863. ['size_start_rec',
  1864. 'typ_union_rec',
  1865. 'min_max_rec',
  1866. 'basetype_array_rec',
  1867. tsym(syms[i]).Name]
  1868. );
  1869. tcb.queue_emit_asmsym(mainrtti,rttidef);
  1870. end;
  1871. tcb.end_anonymous_record;
  1872. tabledef:=tcb.end_anonymous_record;
  1873. rttilab:=current_asmdata.DefineAsmSymbol(Tstoreddef(def).rtti_mangledname(rt)+'_s2o',AB_GLOBAL,AT_DATA_NOINDIRECT,tabledef);
  1874. current_asmdata.asmlists[al_rtti].concatlist(tcb.get_final_asmlist(
  1875. rttilab,tabledef,sec_rodata,
  1876. rttilab.name,sizeof(PInt)));
  1877. tcb.free;
  1878. current_module.add_public_asmsym(rttilab);
  1879. end;
  1880. procedure enumdef_rtti_extrasyms(def:Tenumdef);
  1881. var
  1882. t:Tenumsym;
  1883. syms:tfplist;
  1884. i:longint;
  1885. rttitypesym: ttypesym;
  1886. rttidef: trecorddef;
  1887. begin
  1888. { collect enumsyms belonging to this enum type (could be a subsection
  1889. in case of a subrange type) }
  1890. syms:=tfplist.create;
  1891. for i := 0 to def.symtable.SymList.Count - 1 do
  1892. begin
  1893. t:=tenumsym(def.symtable.SymList[i]);
  1894. if t.value<def.minval then
  1895. continue
  1896. else
  1897. if t.value>def.maxval then
  1898. break;
  1899. syms.add(t);
  1900. end;
  1901. { sort the syms by enum name }
  1902. syms.sort(@enumsym_compare_name);
  1903. rttitypesym:=try_search_current_module_type(internaltypeprefixName[itp_rttidef]+def.rtti_mangledname(fullrtti));
  1904. if not assigned(rttitypesym) or
  1905. (ttypesym(rttitypesym).typedef.typ<>recorddef) then
  1906. internalerror(2015071402);
  1907. rttidef:=trecorddef(ttypesym(rttitypesym).typedef);
  1908. enumdef_rtti_string2ordindex(rttidef,syms);
  1909. { sort the syms by enum value }
  1910. syms.sort(@enumsym_compare_value);
  1911. enumdef_rtti_ord2stringindex(rttidef,syms);
  1912. syms.free;
  1913. end;
  1914. begin
  1915. case def.typ of
  1916. enumdef:
  1917. if rt=fullrtti then
  1918. begin
  1919. enumdef_rtti_extrasyms(Tenumdef(def));
  1920. end;
  1921. else
  1922. ;
  1923. end;
  1924. end;
  1925. procedure TRTTIWriter.write_child_rtti_data(def:tdef;rt:trttitype);
  1926. begin
  1927. case def.typ of
  1928. enumdef :
  1929. if assigned(tenumdef(def).basedef) then
  1930. write_rtti(tenumdef(def).basedef,rt);
  1931. setdef :
  1932. write_rtti(tsetdef(def).elementdef,rt);
  1933. arraydef :
  1934. begin
  1935. write_rtti(tarraydef(def).rangedef,rt);
  1936. write_rtti(tarraydef(def).elementdef,rt);
  1937. end;
  1938. recorddef :
  1939. begin
  1940. { guarantee initrtti for any record for RTTI purposes
  1941. also for fpc_initialize, fpc_finalize }
  1942. if (rt=fullrtti) then
  1943. begin
  1944. include(def.defstates,ds_init_table_used);
  1945. write_rtti(def, initrtti);
  1946. end;
  1947. fields_write_rtti(trecorddef(def).symtable,rt);
  1948. end;
  1949. objectdef :
  1950. begin
  1951. if assigned(tobjectdef(def).childof) then
  1952. write_rtti(tobjectdef(def).childof,rt);
  1953. if (rt=initrtti) or (tobjectdef(def).objecttype=odt_object) then
  1954. fields_write_rtti(tobjectdef(def).symtable,rt)
  1955. else
  1956. published_write_rtti(tobjectdef(def).symtable,rt);
  1957. if (rt=fullrtti) then
  1958. begin
  1959. { guarantee initrtti for any object for RTTI purposes
  1960. also for fpc_initialize, fpc_finalize }
  1961. if (tobjectdef(def).objecttype=odt_object) then
  1962. begin
  1963. include(def.defstates,ds_init_table_used);
  1964. write_rtti(def,initrtti);
  1965. end;
  1966. if (is_interface(def) or is_dispinterface(def))
  1967. and (oo_can_have_published in tobjectdef(def).objectoptions) then
  1968. methods_write_rtti(tobjectdef(def).symtable,rt,[vis_published],true);
  1969. end;
  1970. end;
  1971. classrefdef,
  1972. pointerdef:
  1973. if not is_objc_class_or_protocol(tabstractpointerdef(def).pointeddef) then
  1974. write_rtti(tabstractpointerdef(def).pointeddef,rt);
  1975. procvardef:
  1976. params_write_rtti(tabstractprocdef(def),rt,false);
  1977. else
  1978. ;
  1979. end;
  1980. end;
  1981. procedure TRTTIWriter.write_rtti_reference(tcb: ttai_typedconstbuilder; def: tdef; rt: trttitype);
  1982. begin
  1983. { we don't care about the real type here, because
  1984. a) we don't index into these elements
  1985. b) we may not have the rtti type available at the point that we
  1986. are emitting this data, because of forward definitions etc
  1987. c) if the rtti is emitted in another unit, we won't have the type
  1988. available at all
  1989. For the cases where the type is emitted in the current unit and hence
  1990. the underlying system will detect and complain about symbol def
  1991. mismatches, type conversions will have to be inserted afterwards (like
  1992. in llvm/llvmtype)
  1993. }
  1994. if not assigned(def) or is_void(def) or ((rt<>initrtti) and is_objc_class_or_protocol(def)) then
  1995. tcb.emit_tai(Tai_const.Create_nil_dataptr,voidpointertype)
  1996. else
  1997. tcb.emit_tai(Tai_const.Create_sym(get_rtti_label(def,rt,true)),voidpointertype);
  1998. end;
  1999. function TRTTIWriter.ref_rtti(def:tdef;rt:trttitype;indirect:boolean;suffix:tsymstr):tasmsymbol;
  2000. var
  2001. s : tsymstr;
  2002. begin
  2003. s:=def.rtti_mangledname(rt)+suffix;
  2004. result:=current_asmdata.RefAsmSymbol(s,AT_DATA,indirect);
  2005. if def.owner.moduleid<>current_module.moduleid then
  2006. current_module.add_extern_asmsym(s,AB_EXTERNAL,AT_DATA);
  2007. end;
  2008. procedure TRTTIWriter.write_rtti(def:tdef;rt:trttitype);
  2009. var
  2010. tcb: ttai_typedconstbuilder;
  2011. rttilab: tasmsymbol;
  2012. rttidef: tdef;
  2013. begin
  2014. { only write rtti of definitions from the current module }
  2015. if not findunitsymtable(def.owner).iscurrentunit then
  2016. exit;
  2017. { check if separate initrtti is actually needed }
  2018. if (rt=initrtti) and (not def.needs_separate_initrtti) then
  2019. rt:=fullrtti;
  2020. { prevent recursion }
  2021. if rttidefstate[rt] in def.defstates then
  2022. exit;
  2023. include(def.defstates,rttidefstate[rt]);
  2024. { write first all dependencies }
  2025. write_child_rtti_data(def,rt);
  2026. { write rtti data }
  2027. tcb:=ctai_typedconstbuilder.create([tcalo_make_dead_strippable,tcalo_data_force_indirect]);
  2028. tcb.begin_anonymous_record(
  2029. internaltypeprefixName[itp_rttidef]+tstoreddef(def).rtti_mangledname(rt),
  2030. defaultpacking,reqalign,
  2031. targetinfos[target_info.system]^.alignment.recordalignmin
  2032. );
  2033. write_rtti_data(tcb,def,rt);
  2034. rttidef:=tcb.end_anonymous_record;
  2035. rttilab:=current_asmdata.DefineAsmSymbol(tstoreddef(def).rtti_mangledname(rt),AB_GLOBAL,AT_DATA_NOINDIRECT,rttidef);
  2036. current_asmdata.AsmLists[al_rtti].concatList(
  2037. tcb.get_final_asmlist(rttilab,rttidef,sec_rodata,rttilab.name,min(target_info.alignment.maxCrecordalign,SizeOf(QWord))));
  2038. tcb.free;
  2039. current_module.add_public_asmsym(rttilab);
  2040. { write additional data }
  2041. write_rtti_extrasyms(def,rt,rttilab);
  2042. end;
  2043. constructor TRTTIWriter.create;
  2044. begin
  2045. if tf_requires_proper_alignment in target_info.flags then
  2046. begin
  2047. reqalign:=min(sizeof(QWord),target_info.alignment.maxCrecordalign);
  2048. defaultpacking:=C_alignment;
  2049. end
  2050. else
  2051. begin
  2052. reqalign:=1;
  2053. defaultpacking:=1;
  2054. end;
  2055. end;
  2056. end.