ptype.pas 92 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl
  3. Does parsing types for Free Pascal
  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 ptype;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. globtype,cclasses,
  22. symtype,symdef,symbase;
  23. type
  24. TSingleTypeOption=(
  25. stoIsForwardDef, { foward declaration }
  26. stoAllowTypeDef, { allow type definitions }
  27. stoAllowSpecialization, { allow type specialization }
  28. stoParseClassParent { parse of parent class type }
  29. );
  30. TSingleTypeOptions=set of TSingleTypeOption;
  31. procedure resolve_forward_types;
  32. { reads a string, file type or a type identifier }
  33. procedure single_type(out def:tdef;options:TSingleTypeOptions);
  34. { ... but rejects types that cannot be returned from functions }
  35. function result_type(options:TSingleTypeOptions):tdef;
  36. { reads any type declaration, where the resulting type will get name as type identifier }
  37. procedure read_named_type(var def:tdef;const newsym:tsym;genericdef:tstoreddef;genericlist:tfphashobjectlist;parseprocvardir:boolean;var hadtypetoken:boolean);
  38. { reads any type declaration }
  39. procedure read_anon_type(var def : tdef;parseprocvardir:boolean;genericdef:tstoreddef);
  40. { parse nested type declaration of the def (typedef) }
  41. procedure parse_nested_types(var def: tdef; isforwarddef,allowspecialization: boolean; currentstructstack: tfpobjectlist);
  42. { add a definition for a method to a record/objectdef that will contain
  43. all code for initialising typed constants (only for targets in
  44. systems.systems_typed_constants_node_init) }
  45. procedure add_typedconst_init_routine(def: tabstractrecorddef);
  46. { parse hint directives (platform, deprecated, ...) for a procdef }
  47. procedure maybe_parse_hint_directives(pd:tprocdef);
  48. implementation
  49. uses
  50. { common }
  51. cutils,
  52. { global }
  53. globals,tokens,verbose,constexp,
  54. systems,
  55. { symtable }
  56. symconst,symsym,symtable,symcreat,
  57. defutil,defcmp,
  58. {$ifdef jvm}
  59. jvmdef,
  60. {$endif}
  61. { modules }
  62. fmodule,
  63. { pass 1 }
  64. node,
  65. nset,ncnv,ncon,nld,
  66. { parser }
  67. scanner,
  68. pbase,pexpr,pdecsub,pdecvar,pdecobj,pdecl,pgenutil,pparautl,procdefutil
  69. {$ifdef jvm}
  70. ,pjvm
  71. {$endif}
  72. ;
  73. procedure maybe_parse_hint_directives(pd:tprocdef);
  74. var
  75. dummysymoptions : tsymoptions;
  76. deprecatedmsg : pshortstring;
  77. begin
  78. if assigned(pd) then
  79. begin
  80. dummysymoptions:=pd.symoptions;
  81. deprecatedmsg:=pd.deprecatedmsg;
  82. end
  83. else
  84. begin
  85. dummysymoptions:=[];
  86. deprecatedmsg:=nil;
  87. end;
  88. while try_consume_hintdirective(dummysymoptions,deprecatedmsg) do
  89. consume(_SEMICOLON);
  90. if assigned(pd) then
  91. begin
  92. pd.symoptions:=pd.symoptions+dummysymoptions;
  93. if sp_has_deprecated_msg in dummysymoptions then
  94. pd.deprecatedmsg:=deprecatedmsg;
  95. end
  96. else
  97. stringdispose(deprecatedmsg);
  98. end;
  99. procedure resolve_forward_types;
  100. var
  101. i: longint;
  102. tmp,
  103. hpd,
  104. def : tdef;
  105. srsym : tsym;
  106. srsymtable : TSymtable;
  107. hs : string;
  108. fileinfo : tfileposinfo;
  109. begin
  110. for i:=0 to current_module.checkforwarddefs.Count-1 do
  111. begin
  112. def:=tdef(current_module.checkforwarddefs[i]);
  113. case def.typ of
  114. pointerdef,
  115. classrefdef :
  116. begin
  117. { classrefdef inherits from pointerdef }
  118. hpd:=tabstractpointerdef(def).pointeddef;
  119. { still a forward def ? }
  120. if hpd.typ=forwarddef then
  121. begin
  122. { try to resolve the forward }
  123. if not assigned(tforwarddef(hpd).tosymname) then
  124. internalerror(200211201);
  125. hs:=tforwarddef(hpd).tosymname^;
  126. searchsym(upper(hs),srsym,srsymtable);
  127. { we don't need the forwarddef anymore, dispose it }
  128. hpd.free;
  129. tabstractpointerdef(def).pointeddef:=nil; { if error occurs }
  130. { was a type sym found ? }
  131. if assigned(srsym) and
  132. (srsym.typ=typesym) then
  133. begin
  134. if (sp_generic_dummy in srsym.symoptions) and
  135. not (ttypesym(srsym).typedef.typ=undefineddef) and
  136. assigned(def.owner.defowner) then
  137. begin
  138. { is the forward def part of a specialization? }
  139. tmp:=tdef(def.owner.defowner);
  140. while not tstoreddef(tmp).is_specialization and assigned(tmp.owner.defowner) do
  141. tmp:=tdef(tmp.owner.defowner);
  142. { if the genericdef of the specialization is the same as the
  143. def the dummy points to, then update the found symbol }
  144. if tstoreddef(tmp).is_specialization and
  145. (tstoreddef(tmp).genericdef=ttypesym(srsym).typedef) then
  146. srsym:=tstoreddef(tmp).typesym;
  147. end;
  148. tabstractpointerdef(def).pointeddef:=ttypesym(srsym).typedef;
  149. { correctly set the generic/specialization flags and the genericdef }
  150. if df_generic in tstoreddef(tabstractpointerdef(def).pointeddef).defoptions then
  151. include(tstoreddef(def).defoptions,df_generic);
  152. if df_specialization in tstoreddef(tabstractpointerdef(def).pointeddef).defoptions then
  153. begin
  154. include(tstoreddef(def).defoptions,df_specialization);
  155. case def.typ of
  156. pointerdef:
  157. tstoreddef(def).genericdef:=cpointerdef.getreusable(tstoreddef(tabstractpointerdef(def).pointeddef).genericdef);
  158. classrefdef:
  159. tstoreddef(def).genericdef:=cclassrefdef.create(tstoreddef(tabstractpointerdef(def).pointeddef).genericdef);
  160. else
  161. internalerror(2016120901);
  162. end;
  163. end;
  164. { avoid wrong unused warnings web bug 801 PM }
  165. inc(ttypesym(srsym).refs);
  166. { we need a class type for classrefdef }
  167. if (def.typ=classrefdef) and
  168. not(is_class(ttypesym(srsym).typedef)) and
  169. not(is_objcclass(ttypesym(srsym).typedef)) and
  170. not(is_javaclass(ttypesym(srsym).typedef)) then
  171. MessagePos1(def.typesym.fileinfo,type_e_class_type_expected,ttypesym(srsym).typedef.typename);
  172. { this could also be a generic dummy that was not
  173. overridden with a specific type }
  174. if (sp_generic_dummy in srsym.symoptions) and
  175. (
  176. (ttypesym(srsym).typedef.typ=undefineddef) or
  177. (
  178. { or an unspecialized generic symbol, which is
  179. the case for generics defined in non-Delphi
  180. modes }
  181. tstoreddef(ttypesym(srsym).typedef).is_generic and
  182. not defs_belong_to_same_generic(def,ttypesym(srsym).typedef)
  183. )
  184. ) then
  185. begin
  186. if assigned(def.typesym) then
  187. fileinfo:=def.typesym.fileinfo
  188. else
  189. { this is the case for inline pointer declarations }
  190. fileinfo:=srsym.fileinfo;
  191. MessagePos(fileinfo,parser_e_no_generics_as_types);
  192. end;
  193. end
  194. else
  195. begin
  196. Message1(sym_e_forward_type_not_resolved,hs);
  197. { try to recover }
  198. tabstractpointerdef(def).pointeddef:=generrordef;
  199. end;
  200. end;
  201. end;
  202. objectdef :
  203. begin
  204. { give an error as the implementation may follow in an
  205. other type block which is allowed by FPC modes }
  206. if not(m_fpc in current_settings.modeswitches) and
  207. (oo_is_forward in tobjectdef(def).objectoptions) then
  208. MessagePos1(def.typesym.fileinfo,type_e_type_is_not_completly_defined,def.typename);
  209. { generate specializations for generic forwarddefs }
  210. if not (oo_is_forward in tobjectdef(def).objectoptions) and
  211. tstoreddef(def).is_generic then
  212. generate_specializations_for_forwarddef(def);
  213. end;
  214. else
  215. internalerror(200811071);
  216. end;
  217. end;
  218. current_module.checkforwarddefs.clear;
  219. end;
  220. procedure id_type(var def : tdef;isforwarddef,checkcurrentrecdef,allowgenericsyms,allowunitsym:boolean;out srsym:tsym;out srsymtable:tsymtable;out is_specialize,is_unit_specific:boolean); forward;
  221. { def is the outermost type in which other types have to be searched
  222. isforward indicates whether the current definition can be a forward definition
  223. if assigned, currentstructstack is a list of tabstractrecorddefs that, from
  224. last to first, are child types of def that are not yet visible via the
  225. normal symtable searching routines because they are types that are currently
  226. being parsed (so using id_type on them after pushing def on the
  227. symtablestack would result in errors because they'd come back as errordef)
  228. }
  229. procedure parse_nested_types(var def: tdef; isforwarddef,allowspecialization: boolean; currentstructstack: tfpobjectlist);
  230. var
  231. t2: tdef;
  232. structstackindex: longint;
  233. srsym: tsym;
  234. srsymtable: tsymtable;
  235. oldsymtablestack: TSymtablestack;
  236. isspecialize,
  237. isunitspecific : boolean;
  238. begin
  239. if assigned(currentstructstack) then
  240. structstackindex:=currentstructstack.count-1
  241. else
  242. structstackindex:=-1;
  243. { handle types inside classes, e.g. TNode.TLongint }
  244. while (token=_POINT) do
  245. begin
  246. if is_class_or_object(def) or is_record(def) or is_java_class_or_interface(def) then
  247. begin
  248. if (def.typ=objectdef) then
  249. def:=find_real_class_definition(tobjectdef(def),false);
  250. consume(_POINT);
  251. if (structstackindex>=0) and
  252. (tabstractrecorddef(currentstructstack[structstackindex]).objname^=pattern) then
  253. begin
  254. def:=tdef(currentstructstack[structstackindex]);
  255. dec(structstackindex);
  256. consume(_ID);
  257. end
  258. else
  259. begin
  260. structstackindex:=-1;
  261. oldsymtablestack:=symtablestack;
  262. symtablestack:=TSymtablestack.create;
  263. symtablestack.push(tabstractrecorddef(def).symtable);
  264. t2:=generrordef;
  265. id_type(t2,isforwarddef,false,false,false,srsym,srsymtable,isspecialize,isunitspecific);
  266. symtablestack.pop(tabstractrecorddef(def).symtable);
  267. symtablestack.free;
  268. symtablestack:=oldsymtablestack;
  269. if isspecialize then
  270. begin
  271. if not allowspecialization then
  272. Message(parser_e_no_local_para_def);
  273. generate_specialization(t2,isunitspecific,false,'');
  274. end;
  275. def:=t2;
  276. end;
  277. end
  278. else
  279. break;
  280. end;
  281. end;
  282. function try_parse_structdef_nested_type(out def: tdef; basedef: tabstractrecorddef; isfowarddef: boolean): boolean;
  283. var
  284. structdef : tdef;
  285. structdefstack : tfpobjectlist;
  286. begin
  287. def:=nil;
  288. { use of current parsed object:
  289. classes, objects, records can be used also in themself }
  290. structdef:=basedef;
  291. structdefstack:=nil;
  292. while assigned(structdef) and (structdef.typ in [objectdef,recorddef]) do
  293. begin
  294. if (tabstractrecorddef(structdef).objname^=pattern) then
  295. begin
  296. consume(_ID);
  297. def:=structdef;
  298. { we found the top-most match, now check how far down we can
  299. follow }
  300. structdefstack:=tfpobjectlist.create(false);
  301. structdef:=basedef;
  302. while (structdef<>def) do
  303. begin
  304. structdefstack.add(structdef);
  305. structdef:=tabstractrecorddef(structdef.owner.defowner);
  306. end;
  307. parse_nested_types(def,isfowarddef,false,structdefstack);
  308. structdefstack.free;
  309. result:=true;
  310. exit;
  311. end;
  312. structdef:=tdef(tabstractrecorddef(structdef).owner.defowner);
  313. end;
  314. result:=false;
  315. end;
  316. procedure id_type(var def : tdef;isforwarddef,checkcurrentrecdef,allowgenericsyms,allowunitsym:boolean;out srsym:tsym;out srsymtable:tsymtable;out is_specialize,is_unit_specific:boolean);
  317. { reads a type definition }
  318. { to a appropriating tdef, s gets the name of }
  319. { the type to allow name mangling }
  320. var
  321. not_a_type : boolean;
  322. pos : tfileposinfo;
  323. s,sorg : TIDString;
  324. t : ttoken;
  325. begin
  326. srsym:=nil;
  327. srsymtable:=nil;
  328. is_specialize:=false;
  329. is_unit_specific:=false;
  330. s:=pattern;
  331. sorg:=orgpattern;
  332. pos:=current_tokenpos;
  333. { use of current parsed object:
  334. classes, objects, records can be used also in themself }
  335. if checkcurrentrecdef and
  336. try_parse_structdef_nested_type(def,current_structdef,isforwarddef) then
  337. exit;
  338. if not allowunitsym and not (m_delphi in current_settings.modeswitches) and (idtoken=_SPECIALIZE) then
  339. begin
  340. consume(_ID);
  341. is_specialize:=true;
  342. s:=pattern;
  343. sorg:=orgpattern;
  344. pos:=current_tokenpos;
  345. end;
  346. { Use the special searchsym_type that search only types }
  347. if not searchsym_type(s,srsym,srsymtable) then
  348. { for a good error message we need to know whether the symbol really did not exist or
  349. whether we found a non-type one }
  350. not_a_type:=searchsym(s,srsym,srsymtable)
  351. else
  352. not_a_type:=false;
  353. { handle unit specification like System.Writeln }
  354. if allowunitsym then
  355. is_unit_specific:=try_consume_unitsym(srsym,srsymtable,t,[cuf_consume_id,cuf_allow_specialize],is_specialize,s)
  356. else
  357. begin
  358. t:=_ID;
  359. is_unit_specific:=false;
  360. end;
  361. consume(t);
  362. if not_a_type then
  363. begin
  364. { reset the symbol and symtable to not leak any unexpected values }
  365. srsym:=nil;
  366. srsymtable:=nil;
  367. end;
  368. { Types are first defined with an error def before assigning
  369. the real type so check if it's an errordef. if so then
  370. give an error. Only check for typesyms in the current symbol
  371. table as forwarddef are not resolved directly }
  372. if assigned(srsym) and
  373. (srsym.typ=typesym) and
  374. ((ttypesym(srsym).typedef.typ=errordef) or
  375. (not allowgenericsyms and
  376. (ttypesym(srsym).typedef.typ=undefineddef) and
  377. not (sp_generic_para in srsym.symoptions) and
  378. not (sp_explicitrename in srsym.symoptions) and
  379. not assigned(srsym.owner.defowner) and
  380. { use df_generic instead of is_generic to allow aliases in nested types as well }
  381. not (df_generic in tstoreddef(srsym.owner.defowner).defoptions))) then
  382. begin
  383. Message1(type_e_type_is_not_completly_defined,ttypesym(srsym).realname);
  384. def:=generrordef;
  385. exit;
  386. end;
  387. { are we parsing a possible forward def ? }
  388. if isforwarddef and
  389. not(is_unit_specific) then
  390. begin
  391. def:=cforwarddef.create(sorg,pos);
  392. exit;
  393. end;
  394. { unknown sym ? }
  395. if not assigned(srsym) and not not_a_type then
  396. begin
  397. Message1(sym_e_id_not_found,sorg);
  398. def:=generrordef;
  399. exit;
  400. end;
  401. { type sym ? }
  402. if not_a_type or (srsym.typ<>typesym) then
  403. begin
  404. Message(type_e_type_id_expected);
  405. def:=generrordef;
  406. exit;
  407. end;
  408. { Give an error when referring to an errordef }
  409. if (ttypesym(srsym).typedef.typ=errordef) then
  410. begin
  411. Message(sym_e_error_in_type_def);
  412. def:=generrordef;
  413. exit;
  414. end;
  415. { In non-Delphi modes the class/record name of a generic might be used
  416. in the declaration of sub types without type parameters; in that case
  417. we need to check by name as the link from the dummy symbol to the
  418. current type is not yet established }
  419. if (sp_generic_dummy in srsym.symoptions) and
  420. assigned(current_structdef) and
  421. (df_generic in current_structdef.defoptions) and
  422. (ttypesym(srsym).typedef.typ=undefineddef) and
  423. not (m_delphi in current_settings.modeswitches) then
  424. begin
  425. def:=get_generic_in_hierarchy_by_name(srsym,current_structdef);
  426. if assigned(def) then
  427. exit;
  428. end;
  429. def:=ttypesym(srsym).typedef;
  430. end;
  431. procedure single_type(out def:tdef;options:TSingleTypeOptions);
  432. function handle_dummysym(sym:tsym):tdef;
  433. begin
  434. sym:=resolve_generic_dummysym(sym.name);
  435. if assigned(sym) and
  436. not (sp_generic_dummy in sym.symoptions) and
  437. (sym.typ=typesym) then
  438. result:=ttypesym(sym).typedef
  439. else
  440. begin
  441. Message(parser_e_no_generics_as_types);
  442. result:=generrordef;
  443. end;
  444. end;
  445. var
  446. t2 : tdef;
  447. isunitspecific,
  448. isspecialize,
  449. dospecialize,
  450. again : boolean;
  451. srsym : tsym;
  452. srsymtable : tsymtable;
  453. begin
  454. dospecialize:=false;
  455. isunitspecific:=false;
  456. srsym:=nil;
  457. repeat
  458. again:=false;
  459. case token of
  460. _STRING:
  461. string_dec(def,stoAllowTypeDef in options);
  462. _FILE:
  463. begin
  464. consume(_FILE);
  465. if (token=_OF) then
  466. begin
  467. if not(stoAllowTypeDef in options) then
  468. Message(parser_e_no_local_para_def);
  469. consume(_OF);
  470. single_type(t2,[stoAllowTypeDef]);
  471. if is_managed_type(t2) then
  472. Message(parser_e_no_refcounted_typed_file);
  473. def:=cfiledef.createtyped(t2);
  474. end
  475. else
  476. def:=cfiletype;
  477. end;
  478. _ID:
  479. begin
  480. if not (m_delphi in current_settings.modeswitches) and try_to_consume(_SPECIALIZE) then
  481. begin
  482. if ([stoAllowSpecialization,stoAllowTypeDef] * options = []) then
  483. begin
  484. Message(parser_e_no_local_para_def);
  485. { try to recover }
  486. while token<>_SEMICOLON do
  487. consume(token);
  488. def:=generrordef;
  489. end
  490. else
  491. begin
  492. dospecialize:=true;
  493. again:=true;
  494. end;
  495. end
  496. else
  497. begin
  498. id_type(def,stoIsForwardDef in options,true,true,not dospecialize or ([stoAllowSpecialization,stoAllowTypeDef]*options=[]),srsym,srsymtable,isspecialize,isunitspecific);
  499. if isspecialize and dospecialize then
  500. internalerror(2015021301);
  501. if isspecialize then
  502. dospecialize:=true;
  503. parse_nested_types(def,stoIsForwardDef in options,[stoAllowSpecialization,stoAllowTypeDef]*options<>[],nil);
  504. end;
  505. end;
  506. else
  507. begin
  508. message(type_e_type_id_expected);
  509. def:=generrordef;
  510. end;
  511. end;
  512. until not again;
  513. if ([stoAllowSpecialization,stoAllowTypeDef] * options <> []) and
  514. (m_delphi in current_settings.modeswitches) then
  515. dospecialize:=token in [_LSHARPBRACKET,_LT];
  516. if dospecialize and
  517. (def.typ=forwarddef) then
  518. begin
  519. if not assigned(srsym) or not (srsym.typ=typesym) then
  520. begin
  521. Message1(type_e_type_is_not_completly_defined,def.typename);
  522. def:=generrordef;
  523. dospecialize:=false;
  524. end;
  525. end;
  526. { recover from error? }
  527. if def.typ=errordef then
  528. begin
  529. while (token<>_SEMICOLON) and (token<>_RKLAMMER) do
  530. consume(token);
  531. end
  532. else if dospecialize then
  533. begin
  534. if def.typ=forwarddef then
  535. def:=ttypesym(srsym).typedef;
  536. generate_specialization(def,isunitspecific,stoParseClassParent in options,'');
  537. parse_nested_types(def,stoIsForwardDef in options,[stoAllowSpecialization,stoAllowTypeDef]*options<>[],nil);
  538. end
  539. else
  540. begin
  541. if assigned(current_specializedef) and (def=current_specializedef.genericdef) then
  542. begin
  543. def:=current_specializedef
  544. end
  545. else if (def=current_genericdef) then
  546. begin
  547. def:=current_genericdef
  548. end
  549. { when parsing a nested specialization in non-Delphi mode it might
  550. use the name of the topmost generic without type paramaters, thus
  551. def will contain the generic definition, but we need a reference
  552. to the specialization of that generic }
  553. { TODO : only in non-Delphi modes? }
  554. else if assigned(current_structdef) and
  555. (df_specialization in current_structdef.defoptions) and
  556. return_specialization_of_generic(current_structdef,def,t2) then
  557. begin
  558. def:=t2
  559. end
  560. else if tstoreddef(def).is_generic and
  561. not
  562. (
  563. parse_generic and
  564. (
  565. { if this is a generic parameter than it has already been checked that this is
  566. a valid usage of a generic }
  567. (sp_generic_para in srsym.symoptions) or
  568. (
  569. (current_genericdef.typ in [recorddef,objectdef]) and
  570. (
  571. { if both defs belong to the same generic (e.g. both are
  572. subtypes) then we must allow the usage }
  573. defs_belong_to_same_generic(def,current_genericdef) or
  574. { this is needed to correctly resolve "type Foo=SomeGeneric<T>"
  575. declarations inside a generic }
  576. sym_is_owned_by(srsym,tabstractrecorddef(current_genericdef).symtable)
  577. )
  578. )
  579. )
  580. )
  581. then
  582. begin
  583. def:=handle_dummysym(srsym);
  584. end
  585. else if (def.typ=undefineddef) and
  586. (sp_generic_dummy in srsym.symoptions) then
  587. begin
  588. if parse_generic and
  589. (current_genericdef.typ in [recorddef,objectdef]) and
  590. (Pos(upper(srsym.realname),tabstractrecorddef(current_genericdef).objname^)=1) then
  591. begin
  592. if m_delphi in current_settings.modeswitches then
  593. begin
  594. def:=handle_dummysym(srsym);
  595. end
  596. else
  597. def:=current_genericdef;
  598. end
  599. else
  600. begin
  601. def:=handle_dummysym(srsym);
  602. end;
  603. end
  604. else if is_classhelper(def) and
  605. not (stoParseClassParent in options) then
  606. begin
  607. Message(parser_e_no_category_as_types);
  608. def:=generrordef
  609. end
  610. end;
  611. end;
  612. function result_type(options:TSingleTypeOptions):tdef;
  613. begin
  614. single_type(result,options);
  615. { file types cannot be function results }
  616. if result.typ=filedef then
  617. message(parser_e_illegal_function_result);
  618. end;
  619. procedure parse_record_members(recsym:tsym);
  620. function IsAnonOrLocal: Boolean;
  621. begin
  622. result:=(current_structdef.objname^='') or
  623. not(symtablestack.stack^.next^.symtable.symtabletype in [globalsymtable,staticsymtable,objectsymtable,recordsymtable]);
  624. end;
  625. var
  626. pd : tprocdef;
  627. oldparse_only: boolean;
  628. member_blocktype : tblock_type;
  629. hadgeneric,
  630. fields_allowed, is_classdef, classfields, threadvarfields: boolean;
  631. vdoptions: tvar_dec_options;
  632. rtti_attrs_def: trtti_attribute_list;
  633. fldCount : Integer;
  634. attr_element_count : Integer;
  635. procedure check_unbound_attributes;
  636. begin
  637. if assigned(rtti_attrs_def) and (rtti_attrs_def.get_attribute_count>0) then
  638. Message1(parser_e_unbound_attribute,trtti_attribute(rtti_attrs_def.rtti_attributes[0]).typesym.prettyname);
  639. rtti_attrs_def.free;
  640. rtti_attrs_def:=nil;
  641. end;
  642. begin
  643. { empty record declaration ? }
  644. if (token=_SEMICOLON) then
  645. Exit;
  646. current_structdef.symtable.currentvisibility:=vis_public;
  647. fields_allowed:=true;
  648. is_classdef:=false;
  649. hadgeneric:=false;
  650. classfields:=false;
  651. threadvarfields:=false;
  652. member_blocktype:=bt_general;
  653. rtti_attrs_def := nil;
  654. repeat
  655. case token of
  656. _TYPE :
  657. begin
  658. check_unbound_attributes;
  659. consume(_TYPE);
  660. member_blocktype:=bt_type;
  661. { local and anonymous records can not have inner types. skip top record symtable }
  662. if IsAnonOrLocal then
  663. Message(parser_e_no_types_in_local_anonymous_records);
  664. end;
  665. _VAR :
  666. begin
  667. check_unbound_attributes;
  668. consume(_VAR);
  669. fields_allowed:=true;
  670. member_blocktype:=bt_general;
  671. classfields:=is_classdef;
  672. threadvarfields:=false;
  673. is_classdef:=false;
  674. end;
  675. _THREADVAR :
  676. begin
  677. check_unbound_attributes;
  678. if not is_classdef then
  679. begin
  680. message(parser_e_threadvar_must_be_class);
  681. { for error recovery we enforce class fields }
  682. is_classdef:=true;
  683. end;
  684. consume(_THREADVAR);
  685. fields_allowed:=true;
  686. member_blocktype:=bt_general;
  687. classfields:=is_classdef;
  688. threadvarfields:=true;
  689. is_classdef:=false;
  690. end;
  691. _CONST:
  692. begin
  693. check_unbound_attributes;
  694. consume(_CONST);
  695. member_blocktype:=bt_const;
  696. { local and anonymous records can not have constants. skip top record symtable }
  697. if IsAnonOrLocal then
  698. Message(parser_e_no_consts_in_local_anonymous_records);
  699. end;
  700. _ID, _CASE, _OPERATOR :
  701. begin
  702. case idtoken of
  703. _PRIVATE :
  704. begin
  705. check_unbound_attributes;
  706. consume(_PRIVATE);
  707. current_structdef.symtable.currentvisibility:=vis_private;
  708. include(current_structdef.objectoptions,oo_has_private);
  709. fields_allowed:=true;
  710. is_classdef:=false;
  711. classfields:=false;
  712. threadvarfields:=false;
  713. member_blocktype:=bt_general;
  714. end;
  715. _PROTECTED :
  716. begin
  717. check_unbound_attributes;
  718. Message1(parser_e_not_allowed_in_record,tokeninfo^[_PROTECTED].str);
  719. consume(_PROTECTED);
  720. current_structdef.symtable.currentvisibility:=vis_protected;
  721. include(current_structdef.objectoptions,oo_has_protected);
  722. fields_allowed:=true;
  723. is_classdef:=false;
  724. classfields:=false;
  725. threadvarfields:=false;
  726. member_blocktype:=bt_general;
  727. end;
  728. _PUBLIC :
  729. begin
  730. check_unbound_attributes;
  731. consume(_PUBLIC);
  732. current_structdef.symtable.currentvisibility:=vis_public;
  733. fields_allowed:=true;
  734. is_classdef:=false;
  735. classfields:=false;
  736. threadvarfields:=false;
  737. member_blocktype:=bt_general;
  738. end;
  739. _PUBLISHED :
  740. begin
  741. check_unbound_attributes;
  742. Message(parser_e_no_record_published);
  743. consume(_PUBLISHED);
  744. current_structdef.symtable.currentvisibility:=vis_published;
  745. fields_allowed:=true;
  746. is_classdef:=false;
  747. classfields:=false;
  748. threadvarfields:=false;
  749. member_blocktype:=bt_general;
  750. end;
  751. _STRICT :
  752. begin
  753. consume(_STRICT);
  754. if token=_ID then
  755. begin
  756. case idtoken of
  757. _PRIVATE:
  758. begin
  759. consume(_PRIVATE);
  760. current_structdef.symtable.currentvisibility:=vis_strictprivate;
  761. include(current_structdef.objectoptions,oo_has_strictprivate);
  762. end;
  763. _PROTECTED:
  764. begin
  765. { "strict protected" is not allowed for records }
  766. Message1(parser_e_not_allowed_in_record,tokeninfo^[_STRICT].str+' '+tokeninfo^[_PROTECTED].str);
  767. consume(_PROTECTED);
  768. current_structdef.symtable.currentvisibility:=vis_strictprotected;
  769. include(current_structdef.objectoptions,oo_has_strictprotected);
  770. end;
  771. else
  772. message(parser_e_protected_or_private_expected);
  773. end;
  774. end
  775. else
  776. message(parser_e_protected_or_private_expected);
  777. fields_allowed:=true;
  778. is_classdef:=false;
  779. classfields:=false;
  780. threadvarfields:=false;
  781. member_blocktype:=bt_general;
  782. end
  783. else
  784. if is_classdef and (idtoken=_OPERATOR) then
  785. begin
  786. check_unbound_attributes;
  787. pd:=parse_record_method_dec(current_structdef,is_classdef,false);
  788. fields_allowed:=false;
  789. is_classdef:=false;
  790. end
  791. else
  792. begin
  793. if member_blocktype=bt_general then
  794. begin
  795. if (idtoken=_GENERIC) and
  796. not (m_delphi in current_settings.modeswitches) and
  797. not fields_allowed then
  798. begin
  799. if hadgeneric then
  800. Message(parser_e_procedure_or_function_expected);
  801. consume(_ID);
  802. hadgeneric:=true;
  803. if not (token in [_PROCEDURE,_FUNCTION,_CLASS]) then
  804. Message(parser_e_procedure_or_function_expected);
  805. end
  806. else
  807. begin
  808. if (not fields_allowed)and(idtoken<>_CASE) then
  809. Message(parser_e_field_not_allowed_here);
  810. vdoptions:=[vd_record];
  811. if classfields then
  812. include(vdoptions,vd_class);
  813. if not (m_delphi in current_settings.modeswitches) then
  814. include(vdoptions,vd_check_generic);
  815. if threadvarfields then
  816. include(vdoptions,vd_threadvar);
  817. fldCount:=current_structdef.symtable.SymList.Count;
  818. read_record_fields(vdoptions,nil,nil,hadgeneric,attr_element_count);
  819. {
  820. attr_element_count returns the number of fields to which the attribute must be applied.
  821. For
  822. [someattr]
  823. a : integer;
  824. b : integer;
  825. attr_element_count returns 1. For
  826. [someattr]
  827. a, b : integer;
  828. it returns 2.
  829. Basically the number of variables before the first colon.
  830. }
  831. if assigned(rtti_attrs_def) then
  832. begin
  833. While (attr_element_count>1) do
  834. begin
  835. trtti_attribute_list.copyandbind(rtti_attrs_def,(current_structdef.symtable.SymList[fldCount] as tfieldvarsym).rtti_attribute_list);
  836. inc(fldcount);
  837. dec(attr_element_count);
  838. end;
  839. if fldCount<current_structdef.symtable.SymList.Count then
  840. trtti_attribute_list.bind(rtti_attrs_def,(current_structdef.symtable.SymList[fldCount] as tfieldvarsym).rtti_attribute_list);
  841. end;
  842. end;
  843. end
  844. else if member_blocktype=bt_type then
  845. types_dec(true,hadgeneric, rtti_attrs_def)
  846. else if member_blocktype=bt_const then
  847. consts_dec(true,true,hadgeneric)
  848. else
  849. internalerror(201001110);
  850. end;
  851. end;
  852. end;
  853. _PROPERTY :
  854. begin
  855. if IsAnonOrLocal then
  856. Message(parser_e_no_properties_in_local_anonymous_records);
  857. struct_property_dec(is_classdef, rtti_attrs_def);
  858. fields_allowed:=false;
  859. is_classdef:=false;
  860. end;
  861. _CLASS:
  862. begin
  863. check_unbound_attributes;
  864. is_classdef:=false;
  865. { read class method/field/property }
  866. consume(_CLASS);
  867. { class modifier is only allowed for procedures, functions, }
  868. { constructors, destructors, fields and properties }
  869. if (hadgeneric and not (token in [_FUNCTION,_PROCEDURE])) or
  870. (not hadgeneric and (not ((token in [_FUNCTION,_PROCEDURE,_PROPERTY,_VAR,_DESTRUCTOR,_OPERATOR,_THREADVAR]) or (token=_CONSTRUCTOR)) and
  871. not((token=_ID) and (idtoken=_OPERATOR)))) then
  872. Message(parser_e_procedure_or_function_expected);
  873. if IsAnonOrLocal then
  874. Message(parser_e_no_class_in_local_anonymous_records);
  875. is_classdef:=true;
  876. end;
  877. _PROCEDURE,
  878. _FUNCTION:
  879. begin
  880. if IsAnonOrLocal then
  881. Message(parser_e_no_methods_in_local_anonymous_records);
  882. pd:=parse_record_method_dec(current_structdef,is_classdef,hadgeneric);
  883. if assigned(rtti_attrs_def) then
  884. begin
  885. trtti_attribute_list.bind(rtti_attrs_def,pd.rtti_attribute_list);
  886. rtti_attrs_def:=Nil;
  887. end;
  888. hadgeneric:=false;
  889. fields_allowed:=false;
  890. is_classdef:=false;
  891. end;
  892. _CONSTRUCTOR :
  893. begin
  894. check_unbound_attributes;
  895. if IsAnonOrLocal then
  896. Message(parser_e_no_methods_in_local_anonymous_records);
  897. if not is_classdef and (current_structdef.symtable.currentvisibility <> vis_public) then
  898. Message(parser_w_constructor_should_be_public);
  899. { only 1 class constructor is allowed }
  900. if is_classdef and (oo_has_class_constructor in current_structdef.objectoptions) then
  901. Message1(parser_e_only_one_class_constructor_allowed, current_structdef.objrealname^);
  902. oldparse_only:=parse_only;
  903. parse_only:=true;
  904. if is_classdef then
  905. pd:=class_constructor_head(current_structdef)
  906. else
  907. begin
  908. pd:=constructor_head;
  909. if pd.minparacount = 0 then
  910. MessagePos(pd.procsym.fileinfo,parser_e_no_parameterless_constructor_in_records);
  911. end;
  912. parse_only:=oldparse_only;
  913. fields_allowed:=false;
  914. is_classdef:=false;
  915. end;
  916. _DESTRUCTOR :
  917. begin
  918. check_unbound_attributes;
  919. if IsAnonOrLocal then
  920. Message(parser_e_no_methods_in_local_anonymous_records);
  921. if not is_classdef then
  922. Message(parser_e_no_destructor_in_records);
  923. { only 1 class destructor is allowed }
  924. if is_classdef and (oo_has_class_destructor in current_structdef.objectoptions) then
  925. Message1(parser_e_only_one_class_destructor_allowed, current_structdef.objrealname^);
  926. oldparse_only:=parse_only;
  927. parse_only:=true;
  928. if is_classdef then
  929. pd:=class_destructor_head(current_structdef)
  930. else
  931. pd:=destructor_head;
  932. parse_only:=oldparse_only;
  933. fields_allowed:=false;
  934. is_classdef:=false;
  935. end;
  936. _LECKKLAMMER:
  937. begin
  938. if m_prefixed_attributes in current_settings.modeswitches then
  939. parse_rttiattributes(rtti_attrs_def)
  940. else
  941. consume(_ID);
  942. end;
  943. _END :
  944. begin
  945. {$ifdef jvm}
  946. add_java_default_record_methods_intf(trecorddef(current_structdef));
  947. {$endif}
  948. if target_info.system in systems_typed_constants_node_init then
  949. add_typedconst_init_routine(current_structdef);
  950. consume(_END);
  951. break;
  952. end;
  953. else
  954. consume(_ID); { Give a ident expected message, like tp7 }
  955. end;
  956. until false;
  957. end;
  958. { reads a record declaration }
  959. function record_dec(const n:tidstring;recsym:tsym;genericdef:tstoreddef;genericlist:tfphashobjectlist):tdef;
  960. var
  961. olddef : tdef;
  962. procedure set_typesym;
  963. begin
  964. if not assigned(recsym) then
  965. exit;
  966. if ttypesym(recsym).typedef=current_structdef then
  967. exit;
  968. ttypesym(recsym).typedef:=current_structdef;
  969. current_structdef.typesym:=recsym;
  970. end;
  971. procedure reset_typesym;
  972. begin
  973. if not assigned(recsym) then
  974. exit;
  975. if ttypesym(recsym).typedef<>current_structdef then
  976. exit;
  977. ttypesym(recsym).typedef:=olddef;
  978. current_structdef.typesym:=nil;
  979. end;
  980. var
  981. old_current_structdef: tabstractrecorddef;
  982. old_current_genericdef,
  983. old_current_specializedef: tstoreddef;
  984. old_parse_generic: boolean;
  985. recst: trecordsymtable;
  986. hadgendummy : boolean;
  987. alignment: Integer;
  988. dummyattrelcount : Integer;
  989. begin
  990. old_current_structdef:=current_structdef;
  991. old_current_genericdef:=current_genericdef;
  992. old_current_specializedef:=current_specializedef;
  993. old_parse_generic:=parse_generic;
  994. current_genericdef:=nil;
  995. current_specializedef:=nil;
  996. { create recdef }
  997. if (n<>'') or
  998. not(target_info.system in systems_jvm) then
  999. begin
  1000. recst:=trecordsymtable.create(n,current_settings.packrecords,current_settings.alignment.recordalignmin);
  1001. { can't use recst.realname^ instead of n, because recst.realname is
  1002. nil in case of an empty name }
  1003. current_structdef:=crecorddef.create(n,recst);
  1004. end
  1005. else
  1006. begin
  1007. { for the JVM target records always need a name, because they are
  1008. represented by a class }
  1009. recst:=trecordsymtable.create(current_module.realmodulename^+'__fpc_intern_recname_'+tostr(current_module.deflist.count),
  1010. current_settings.packrecords,current_settings.alignment.recordalignmin);
  1011. current_structdef:=crecorddef.create(recst.name^,recst);
  1012. end;
  1013. result:=current_structdef;
  1014. { insert in symtablestack }
  1015. symtablestack.push(recst);
  1016. { usage of specialized type inside its generic template }
  1017. if assigned(genericdef) then
  1018. current_specializedef:=current_structdef
  1019. { reject declaration of generic class inside generic class }
  1020. else if assigned(genericlist) then
  1021. current_genericdef:=current_structdef;
  1022. { nested types of specializations are specializations as well }
  1023. if assigned(old_current_structdef) and
  1024. (df_specialization in old_current_structdef.defoptions) then
  1025. include(current_structdef.defoptions,df_specialization);
  1026. if assigned(old_current_structdef) and
  1027. (df_generic in old_current_structdef.defoptions) then
  1028. include(current_structdef.defoptions,df_generic);
  1029. insert_generic_parameter_types(current_structdef,genericdef,genericlist,false);
  1030. { when we are parsing a generic already then this is a generic as
  1031. well }
  1032. if old_parse_generic then
  1033. include(current_structdef.defoptions, df_generic);
  1034. parse_generic:=(df_generic in current_structdef.defoptions);
  1035. if parse_generic and not assigned(current_genericdef) then
  1036. current_genericdef:=current_structdef;
  1037. { in non-Delphi modes we need a strict private symbol without type
  1038. count and type parameters in the name to simply resolving }
  1039. maybe_insert_generic_rename_symbol(n,genericlist);
  1040. { apply $RTTI directive to current object }
  1041. current_structdef.apply_rtti_directive(current_module.rtti_directive);
  1042. { the correct typesym<->def relationship is needed for example when
  1043. parsing parameters that are specializations of the record, when
  1044. using nested constants and such or when specializing the type
  1045. itself as a pointer type }
  1046. if assigned(recsym) then
  1047. olddef:=ttypesym(recsym).typedef
  1048. else
  1049. olddef:=nil;
  1050. set_typesym;
  1051. if m_advanced_records in current_settings.modeswitches then
  1052. begin
  1053. parse_record_members(recsym);
  1054. end
  1055. else
  1056. begin
  1057. read_record_fields([vd_record],nil,nil,hadgendummy,dummyattrelcount);
  1058. {$ifdef jvm}
  1059. { we need a constructor to create temps, a deep copy helper, ... }
  1060. add_java_default_record_methods_intf(trecorddef(current_structdef));
  1061. {$endif}
  1062. if target_info.system in systems_typed_constants_node_init then
  1063. add_typedconst_init_routine(current_structdef);
  1064. consume(_END);
  1065. end;
  1066. reset_typesym;
  1067. if (token=_ID) and (pattern='ALIGN') then
  1068. begin
  1069. consume(_ID);
  1070. alignment:=get_intconst.svalue;
  1071. { "(alignment and not $7F) = 0" means it's between 0 and 127, and
  1072. PopCnt = 1 for powers of 2 }
  1073. if ((alignment and not $7F) <> 0) or (PopCnt(Byte(alignment))<>1) then
  1074. message(scanner_e_illegal_alignment_directive)
  1075. else
  1076. recst.recordalignment:=shortint(alignment);
  1077. end;
  1078. { make the record size aligned (has to be done before inserting the
  1079. parameters, because that may depend on the record's size) }
  1080. recst.addalignmentpadding;
  1081. { don't keep track of procdefs in a separate list, because the
  1082. compiler may add additional procdefs (e.g. property wrappers for
  1083. the jvm backend) }
  1084. insert_struct_hidden_paras(trecorddef(current_structdef));
  1085. { restore symtable stack }
  1086. symtablestack.pop(recst);
  1087. if trecorddef(current_structdef).is_packed and is_managed_type(current_structdef) then
  1088. Message(type_e_no_packed_inittable);
  1089. { restore old state }
  1090. parse_generic:=old_parse_generic;
  1091. current_structdef:=old_current_structdef;
  1092. current_genericdef:=old_current_genericdef;
  1093. current_specializedef:=old_current_specializedef;
  1094. end;
  1095. { reads a type definition and returns a pointer to it }
  1096. procedure read_named_type(var def:tdef;const newsym:tsym;genericdef:tstoreddef;genericlist:tfphashobjectlist;parseprocvardir:boolean;var hadtypetoken:boolean);
  1097. const
  1098. SingleTypeOptionsInTypeBlock:array[Boolean] of TSingleTypeOptions = ([],[stoIsForwardDef]);
  1099. var
  1100. pt : tnode;
  1101. tt2 : tdef;
  1102. aktenumdef : tenumdef;
  1103. s : TIDString;
  1104. l,v : TConstExprInt;
  1105. oldpackrecords : longint;
  1106. defpos,storepos : tfileposinfo;
  1107. name: TIDString;
  1108. procedure expr_type;
  1109. var
  1110. pt1,pt2 : tnode;
  1111. lv,hv : TConstExprInt;
  1112. old_block_type : tblock_type;
  1113. dospecialize : boolean;
  1114. newdef : tdef;
  1115. sym : tsym;
  1116. genstr : string;
  1117. gencount : longint;
  1118. begin
  1119. old_block_type:=block_type;
  1120. dospecialize:=false;
  1121. { use of current parsed object:
  1122. classes, objects, records can be used also in themself }
  1123. if (token=_ID) then
  1124. if try_parse_structdef_nested_type(def,current_structdef,false) then
  1125. exit;
  1126. { we can't accept a equal in type }
  1127. pt1:=comp_expr([ef_type_only]);
  1128. if try_to_consume(_POINTPOINT) then
  1129. begin
  1130. { get high value of range }
  1131. pt2:=comp_expr([]);
  1132. { make both the same type or give an error. This is not
  1133. done when both are integer values, because typecasting
  1134. between -3200..3200 will result in a signed-unsigned
  1135. conflict and give a range check error (PFV) }
  1136. if not(is_integer(pt1.resultdef) and is_integer(pt2.resultdef)) then
  1137. inserttypeconv(pt1,pt2.resultdef);
  1138. { both must be evaluated to constants now }
  1139. if (pt1.nodetype=ordconstn) and
  1140. (pt2.nodetype=ordconstn) then
  1141. begin
  1142. lv:=tordconstnode(pt1).value;
  1143. hv:=tordconstnode(pt2).value;
  1144. { Check bounds }
  1145. if hv<lv then
  1146. message(parser_e_upper_lower_than_lower)
  1147. else if (lv.signed and (lv.svalue<0)) and (not hv.signed and (hv.uvalue>qword(high(int64)))) then
  1148. message(type_e_cant_eval_constant_expr)
  1149. else
  1150. begin
  1151. { All checks passed, create the new def }
  1152. case pt1.resultdef.typ of
  1153. enumdef :
  1154. def:=cenumdef.create_subrange(tenumdef(pt1.resultdef),lv.svalue,hv.svalue);
  1155. orddef :
  1156. begin
  1157. if is_char(pt1.resultdef) then
  1158. def:=corddef.create(uchar,lv,hv,true)
  1159. else
  1160. if is_boolean(pt1.resultdef) then
  1161. def:=corddef.create(pasbool1,lv,hv,true)
  1162. else if is_signed(pt1.resultdef) then
  1163. def:=corddef.create(range_to_basetype(lv,hv),lv,hv,true)
  1164. else
  1165. def:=corddef.create(range_to_basetype(lv,hv),lv,hv,true);
  1166. end;
  1167. else
  1168. internalerror(2019050527);
  1169. end;
  1170. end;
  1171. end
  1172. else
  1173. Message(sym_e_error_in_type_def);
  1174. pt2.free;
  1175. end
  1176. else
  1177. begin
  1178. { a simple type renaming or generic specialization }
  1179. if (pt1.nodetype=typen) then
  1180. begin
  1181. def:=ttypenode(pt1).resultdef;
  1182. { Delphi mode specialization? }
  1183. if (m_delphi in current_settings.modeswitches) then
  1184. dospecialize:=token=_LSHARPBRACKET
  1185. else
  1186. begin
  1187. dospecialize:=false;
  1188. { in non-Delphi modes we might get a inline specialization
  1189. without "specialize" or "<T>" of the same type we're
  1190. currently parsing, so we need to handle that special }
  1191. newdef:=nil;
  1192. end;
  1193. if not dospecialize and
  1194. assigned(ttypenode(pt1).typesym) and
  1195. (ttypenode(pt1).typesym.typ=typesym) and
  1196. (sp_generic_dummy in ttypenode(pt1).typesym.symoptions) and
  1197. assigned(current_structdef) and
  1198. (
  1199. (
  1200. not (m_delphi in current_settings.modeswitches) and
  1201. (ttypesym(ttypenode(pt1).typesym).typedef.typ=undefineddef) and
  1202. (df_generic in current_structdef.defoptions) and
  1203. (ttypesym(ttypenode(pt1).typesym).typedef.owner=current_structdef.owner) and
  1204. (upper(ttypenode(pt1).typesym.realname)=copy(current_structdef.objname^,1,pos('$',current_structdef.objname^)-1))
  1205. ) or (
  1206. { this could be a nested specialization which uses
  1207. the type name of a surrounding generic to
  1208. reference the specialization of said surrounding
  1209. class }
  1210. (df_specialization in current_structdef.defoptions) and
  1211. return_specialization_of_generic(current_structdef,ttypesym(ttypenode(pt1).typesym).typedef,newdef)
  1212. )
  1213. )
  1214. then
  1215. begin
  1216. if assigned(newdef) then
  1217. def:=newdef
  1218. else
  1219. def:=current_structdef;
  1220. if assigned(def) then
  1221. { handle nested types }
  1222. post_comp_expr_gendef(def)
  1223. else
  1224. def:=generrordef;
  1225. end;
  1226. if dospecialize then
  1227. begin
  1228. generate_specialization(def,false,false,name);
  1229. { handle nested types }
  1230. if assigned(def) then
  1231. post_comp_expr_gendef(def);
  1232. end
  1233. else
  1234. begin
  1235. if assigned(current_specializedef) and (def=current_specializedef.genericdef) then
  1236. begin
  1237. def:=current_specializedef
  1238. end
  1239. else if (def=current_genericdef) then
  1240. begin
  1241. def:=current_genericdef
  1242. end
  1243. else if tstoreddef(def).is_generic and
  1244. { TODO : check once nested generics are allowed }
  1245. not
  1246. (
  1247. parse_generic and
  1248. (current_genericdef.typ in [recorddef,objectdef]) and
  1249. (def.typ in [recorddef,objectdef]) and
  1250. (
  1251. { if both defs belong to the same generic (e.g. both are
  1252. subtypes) then we must allow the usage }
  1253. defs_belong_to_same_generic(def,current_genericdef) or
  1254. { this is needed to correctly resolve "type Foo=SomeGeneric<T>"
  1255. declarations inside a generic }
  1256. (
  1257. (ttypenode(pt1).typesym<>nil) and
  1258. sym_is_owned_by(ttypenode(pt1).typesym,tabstractrecorddef(current_genericdef).symtable)
  1259. )
  1260. )
  1261. )
  1262. then
  1263. begin
  1264. if assigned(def.typesym) then
  1265. begin
  1266. if ttypesym(def.typesym).typedef.typ<>undefineddef then
  1267. { non-Delphi modes... }
  1268. split_generic_name(def.typesym.name,genstr,gencount)
  1269. else
  1270. genstr:=def.typesym.name;
  1271. sym:=resolve_generic_dummysym(genstr);
  1272. end
  1273. else
  1274. sym:=nil;
  1275. if assigned(sym) and
  1276. not (sp_generic_dummy in sym.symoptions) and
  1277. (sym.typ=typesym) then
  1278. def:=ttypesym(sym).typedef
  1279. else
  1280. begin
  1281. Message(parser_e_no_generics_as_types);
  1282. def:=generrordef;
  1283. end;
  1284. end
  1285. else if is_classhelper(def) then
  1286. begin
  1287. Message(parser_e_no_category_as_types);
  1288. def:=generrordef
  1289. end
  1290. end;
  1291. end
  1292. else
  1293. Message(sym_e_error_in_type_def);
  1294. end;
  1295. pt1.free;
  1296. block_type:=old_block_type;
  1297. end;
  1298. procedure set_dec;
  1299. begin
  1300. consume(_SET);
  1301. consume(_OF);
  1302. read_anon_type(tt2,true,nil);
  1303. if assigned(tt2) then
  1304. begin
  1305. case tt2.typ of
  1306. { don't forget that min can be negativ PM }
  1307. enumdef :
  1308. if (tenumdef(tt2).min>=0) and
  1309. (tenumdef(tt2).max<=255) then
  1310. // !! def:=csetdef.create(tt2,tenumdef(tt2.def).min,tenumdef(tt2.def).max),true)
  1311. def:=csetdef.create(tt2,tenumdef(tt2).min,tenumdef(tt2).max,true)
  1312. else
  1313. Message(sym_e_ill_type_decl_set);
  1314. orddef :
  1315. begin
  1316. if (torddef(tt2).ordtype=uwidechar) then
  1317. begin
  1318. if (m_default_unicodestring in current_settings.modeswitches) then
  1319. begin
  1320. Message(parser_w_widechar_set_reduced);
  1321. def:=csetdef.create(cansichartype,torddef(cansichartype).low.svalue,torddef(cansichartype).high.svalue,true);
  1322. end
  1323. else
  1324. Message(sym_e_ill_type_decl_set);
  1325. end
  1326. else if (torddef(tt2).ordtype<>uvoid) and
  1327. (torddef(tt2).low>=0) then
  1328. // !! def:=csetdef.create(tt2,torddef(tt2.def).low,torddef(tt2.def).high),true)
  1329. if Torddef(tt2).high>int64(high(byte)) then
  1330. message(sym_e_ill_type_decl_set)
  1331. else
  1332. def:=csetdef.create(tt2,torddef(tt2).low.svalue,torddef(tt2).high.svalue,true)
  1333. else
  1334. Message(sym_e_ill_type_decl_set);
  1335. end;
  1336. { generic parameter? }
  1337. undefineddef:
  1338. ;
  1339. else
  1340. Message(sym_e_ill_type_decl_set);
  1341. end;
  1342. end
  1343. else
  1344. def:=generrordef;
  1345. end;
  1346. procedure pointer_dec;
  1347. var
  1348. sym: tsym;
  1349. begin
  1350. consume(_CARET);
  1351. single_type(tt2,
  1352. SingleTypeOptionsInTypeBlock[block_type=bt_type]+[stoAllowSpecialization]
  1353. );
  1354. { in case of e.g. var or const sections we need to especially
  1355. check that we don't use a generic dummy symbol }
  1356. if (block_type<>bt_type) and
  1357. (tt2.typ=undefineddef) and
  1358. assigned(tt2.typesym) and
  1359. (sp_generic_dummy in tt2.typesym.symoptions) then
  1360. begin
  1361. sym:=resolve_generic_dummysym(tt2.typesym.name);
  1362. if assigned(sym) and
  1363. not (sp_generic_dummy in sym.symoptions) and
  1364. (sym.typ=typesym) then
  1365. tt2:=ttypesym(sym).typedef
  1366. else
  1367. Message(parser_e_no_generics_as_types);
  1368. end;
  1369. { don't use cpointerdef.getreusable() here, since this is a type
  1370. declaration (-> must create new typedef) }
  1371. def:=cpointerdef.create(tt2);
  1372. if tt2.typ=forwarddef then
  1373. current_module.checkforwarddefs.add(def);
  1374. end;
  1375. procedure array_dec(is_packed:boolean;genericdef:tstoreddef;genericlist:tfphashobjectlist);
  1376. var
  1377. isgeneric : boolean;
  1378. lowval,
  1379. highval : TConstExprInt;
  1380. indexdef : tdef;
  1381. hdef : tdef;
  1382. arrdef : tarraydef;
  1383. procedure setdefdecl(def:tdef);
  1384. begin
  1385. case def.typ of
  1386. enumdef :
  1387. begin
  1388. lowval:=tenumdef(def).min;
  1389. highval:=tenumdef(def).max;
  1390. if (m_fpc in current_settings.modeswitches) and
  1391. (tenumdef(def).has_jumps) then
  1392. Message(type_e_array_index_enums_with_assign_not_possible);
  1393. indexdef:=def;
  1394. end;
  1395. orddef :
  1396. begin
  1397. if torddef(def).ordtype in [uchar,
  1398. u8bit,
  1399. s8bit,s16bit,
  1400. {$if defined(cpu32bitaddr) or defined(cpu64bitaddr)}
  1401. u16bit,s32bit,
  1402. {$endif defined(cpu32bitaddr) or defined(cpu64bitaddr)}
  1403. {$ifdef cpu64bitaddr}
  1404. u32bit,s64bit,
  1405. {$endif cpu64bitaddr}
  1406. pasbool1,pasbool8,pasbool16,pasbool32,pasbool64,
  1407. bool8bit,bool16bit,bool32bit,bool64bit,
  1408. uwidechar] then
  1409. begin
  1410. lowval:=torddef(def).low;
  1411. highval:=torddef(def).high;
  1412. indexdef:=def;
  1413. end
  1414. else
  1415. Message1(parser_e_type_cant_be_used_in_array_index,def.typename);
  1416. end;
  1417. { generic parameter? }
  1418. undefineddef:
  1419. begin
  1420. lowval:=0;
  1421. highval:=1;
  1422. indexdef:=def;
  1423. isgeneric:=true;
  1424. end;
  1425. else
  1426. Message(sym_e_error_in_type_def);
  1427. end;
  1428. end;
  1429. var
  1430. old_current_genericdef,
  1431. old_current_specializedef: tstoreddef;
  1432. first,
  1433. old_parse_generic: boolean;
  1434. begin
  1435. old_current_genericdef:=current_genericdef;
  1436. old_current_specializedef:=current_specializedef;
  1437. old_parse_generic:=parse_generic;
  1438. current_genericdef:=nil;
  1439. current_specializedef:=nil;
  1440. first:=true;
  1441. arrdef:=carraydef.create(0,0,s32inttype);
  1442. consume(_ARRAY);
  1443. { usage of specialized type inside its generic template }
  1444. if assigned(genericdef) then
  1445. current_specializedef:=arrdef
  1446. { reject declaration of generic class inside generic class }
  1447. else if assigned(genericlist) then
  1448. current_genericdef:=arrdef;
  1449. symtablestack.push(arrdef.symtable);
  1450. insert_generic_parameter_types(arrdef,genericdef,genericlist,false);
  1451. { there are two possibilties for the following to be true:
  1452. * the array declaration itself is generic
  1453. * the array is declared inside a generic
  1454. in both cases we need "parse_generic" and "current_genericdef"
  1455. so that e.g. specializations of another generic inside the
  1456. current generic can be used (either inline ones or "type" ones) }
  1457. if old_parse_generic then
  1458. include(arrdef.defoptions,df_generic);
  1459. parse_generic:=(df_generic in arrdef.defoptions);
  1460. if parse_generic and not assigned(current_genericdef) then
  1461. current_genericdef:=old_current_genericdef;
  1462. { open array? }
  1463. if try_to_consume(_LECKKLAMMER) then
  1464. begin
  1465. { defaults }
  1466. indexdef:=generrordef;
  1467. isgeneric:=false;
  1468. { use defaults which don't overflow the compiler }
  1469. lowval:=0;
  1470. highval:=0;
  1471. repeat
  1472. { read the expression and check it, check apart if the
  1473. declaration is an enum declaration because that needs to
  1474. be parsed by readtype (PFV) }
  1475. if token=_LKLAMMER then
  1476. begin
  1477. read_anon_type(hdef,true,nil);
  1478. setdefdecl(hdef);
  1479. end
  1480. else
  1481. begin
  1482. pt:=expr(true);
  1483. isgeneric:=false;
  1484. if pt.nodetype=typen then
  1485. setdefdecl(pt.resultdef)
  1486. else
  1487. begin
  1488. if pt.nodetype=rangen then
  1489. begin
  1490. if nf_generic_para in pt.flags then
  1491. isgeneric:=true;
  1492. { pure ordconstn expressions can be checked for
  1493. generics as well, but don't give an error in case
  1494. of parsing a generic if that isn't yet the case }
  1495. if (trangenode(pt).left.nodetype=ordconstn) and
  1496. (trangenode(pt).right.nodetype=ordconstn) then
  1497. begin
  1498. { make both the same type or give an error. This is not
  1499. done when both are integer values, because typecasting
  1500. between -3200..3200 will result in a signed-unsigned
  1501. conflict and give a range check error (PFV) }
  1502. if not(is_integer(trangenode(pt).left.resultdef) and is_integer(trangenode(pt).left.resultdef)) then
  1503. inserttypeconv(trangenode(pt).left,trangenode(pt).right.resultdef);
  1504. lowval:=tordconstnode(trangenode(pt).left).value;
  1505. highval:=tordconstnode(trangenode(pt).right).value;
  1506. if highval<lowval then
  1507. begin
  1508. { ignore error if node is generic param }
  1509. if not (nf_generic_para in pt.flags) then
  1510. Message(parser_e_array_lower_less_than_upper_bound);
  1511. highval:=lowval;
  1512. end
  1513. else if (lowval<int64(low(asizeint))) or
  1514. (highval>high(asizeint)) then
  1515. begin
  1516. Message(parser_e_array_range_out_of_bounds);
  1517. lowval :=0;
  1518. highval:=0;
  1519. end;
  1520. if is_integer(trangenode(pt).left.resultdef) then
  1521. range_to_type(lowval,highval,indexdef)
  1522. else
  1523. indexdef:=trangenode(pt).left.resultdef;
  1524. end
  1525. else
  1526. if not parse_generic then
  1527. Message(type_e_cant_eval_constant_expr)
  1528. else
  1529. { we need a valid range for debug information }
  1530. range_to_type(lowval,highval,indexdef);
  1531. end
  1532. else
  1533. Message(sym_e_error_in_type_def)
  1534. end;
  1535. pt.free;
  1536. end;
  1537. { if we are not at the first dimension, add the new arrray
  1538. as element of the existing array, otherwise modify the existing array }
  1539. if not(first) then
  1540. begin
  1541. arrdef.elementdef:=carraydef.create(lowval.svalue,highval.svalue,indexdef);
  1542. { push new symtable }
  1543. symtablestack.pop(arrdef.symtable);
  1544. arrdef:=tarraydef(arrdef.elementdef);
  1545. symtablestack.push(arrdef.symtable);
  1546. { correctly update the generic information of the new array def }
  1547. insert_generic_parameter_types(arrdef,genericdef,genericlist,false);
  1548. if old_parse_generic then
  1549. include(arrdef.defoptions,df_generic);
  1550. end
  1551. else
  1552. begin
  1553. arrdef.lowrange:=lowval.svalue;
  1554. arrdef.highrange:=highval.svalue;
  1555. arrdef.rangedef:=indexdef;
  1556. def:=arrdef;
  1557. first:=false;
  1558. end;
  1559. if is_packed then
  1560. include(arrdef.arrayoptions,ado_IsBitPacked);
  1561. if isgeneric then
  1562. include(arrdef.arrayoptions,ado_IsGeneric);
  1563. if token=_COMMA then
  1564. consume(_COMMA)
  1565. else
  1566. break;
  1567. until false;
  1568. consume(_RECKKLAMMER);
  1569. end
  1570. else
  1571. begin
  1572. if is_packed then
  1573. Message(parser_e_packed_dynamic_open_array);
  1574. arrdef.lowrange:=0;
  1575. arrdef.highrange:=-1;
  1576. arrdef.rangedef:=sizesinttype;
  1577. include(arrdef.arrayoptions,ado_IsDynamicArray);
  1578. def:=arrdef;
  1579. end;
  1580. consume(_OF);
  1581. read_anon_type(tt2,true,nil);
  1582. { set element type of the last array definition }
  1583. if assigned(arrdef) then
  1584. begin
  1585. symtablestack.pop(arrdef.symtable);
  1586. arrdef.elementdef:=tt2;
  1587. if is_packed and
  1588. is_managed_type(tt2) then
  1589. Message(type_e_no_packed_inittable);
  1590. end;
  1591. { restore old state }
  1592. parse_generic:=old_parse_generic;
  1593. current_genericdef:=old_current_genericdef;
  1594. current_specializedef:=old_current_specializedef;
  1595. end;
  1596. function procvar_dec(genericdef:tstoreddef;genericlist:tfphashobjectlist;sym:tsym;doregister:boolean):tdef;
  1597. var
  1598. is_func:boolean;
  1599. pd:tprocvardef;
  1600. old_current_genericdef,
  1601. old_current_specializedef: tstoreddef;
  1602. old_parse_generic: boolean;
  1603. olddef : tdef;
  1604. begin
  1605. old_current_genericdef:=current_genericdef;
  1606. old_current_specializedef:=current_specializedef;
  1607. old_parse_generic:=parse_generic;
  1608. current_genericdef:=nil;
  1609. current_specializedef:=nil;
  1610. olddef:=nil;
  1611. is_func:=(token=_FUNCTION);
  1612. if token in [_FUNCTION,_PROCEDURE] then
  1613. consume(token)
  1614. else
  1615. consume(_FUNCTION);
  1616. pd:=cprocvardef.create(normal_function_level,doregister);
  1617. if assigned(sym) then
  1618. begin
  1619. pd.typesym:=sym;
  1620. olddef:=ttypesym(sym).typedef;
  1621. ttypesym(sym).typedef:=pd;
  1622. end;
  1623. { usage of specialized type inside its generic template }
  1624. if assigned(genericdef) then
  1625. current_specializedef:=pd
  1626. { reject declaration of generic class inside generic class }
  1627. else if assigned(genericlist) then
  1628. current_genericdef:=pd;
  1629. symtablestack.push(pd.parast);
  1630. insert_generic_parameter_types(pd,genericdef,genericlist,false);
  1631. { there are two possibilties for the following to be true:
  1632. * the procvar declaration itself is generic
  1633. * the procvar is declared inside a generic
  1634. in both cases we need "parse_generic" and "current_genericdef"
  1635. so that e.g. specializations of another generic inside the
  1636. current generic can be used (either inline ones or "type" ones) }
  1637. if old_parse_generic then
  1638. include(pd.defoptions,df_generic);
  1639. parse_generic:=(df_generic in pd.defoptions);
  1640. if parse_generic and not assigned(current_genericdef) then
  1641. current_genericdef:=old_current_genericdef;
  1642. if token=_LKLAMMER then
  1643. parse_parameter_dec(pd);
  1644. if is_func then
  1645. begin
  1646. consume(_COLON);
  1647. pd.proctypeoption:=potype_function;
  1648. pd.returndef:=result_type([stoAllowSpecialization]);
  1649. end
  1650. else
  1651. pd.proctypeoption:=potype_procedure;
  1652. if try_to_consume(_OF) then
  1653. begin
  1654. consume(_OBJECT);
  1655. include(pd.procoptions,po_methodpointer);
  1656. end
  1657. else if (m_nested_procvars in current_settings.modeswitches) and
  1658. try_to_consume(_IS) then
  1659. begin
  1660. consume(_NESTED);
  1661. pd.parast.symtablelevel:=normal_function_level+1;
  1662. pd.check_mark_as_nested;
  1663. end;
  1664. symtablestack.pop(pd.parast);
  1665. { possible proc directives }
  1666. if parseprocvardir then
  1667. begin
  1668. if check_proc_directive(true) then
  1669. parse_proctype_directives(pd);
  1670. { Add implicit hidden parameters and function result }
  1671. handle_calling_convention(pd,hcc_default_actions_intf);
  1672. end;
  1673. { restore old state }
  1674. parse_generic:=old_parse_generic;
  1675. current_genericdef:=old_current_genericdef;
  1676. current_specializedef:=old_current_specializedef;
  1677. if assigned(sym) then
  1678. begin
  1679. pd.typesym:=nil;
  1680. ttypesym(sym).typedef:=olddef;
  1681. end;
  1682. result:=pd;
  1683. end;
  1684. var
  1685. p : tnode;
  1686. hdef : tdef;
  1687. enumdupmsg, first, is_specialize : boolean;
  1688. oldlocalswitches : tlocalswitches;
  1689. bitpacking: boolean;
  1690. stitem: psymtablestackitem;
  1691. sym: tsym;
  1692. st: tsymtable;
  1693. begin
  1694. def:=nil;
  1695. v:=0;
  1696. l:=0;
  1697. if assigned(newsym) then
  1698. name:=newsym.RealName
  1699. else
  1700. name:='';
  1701. { type a = type ..,; syntax is allowed only with type syms and apparently helpers, see below }
  1702. if hadtypetoken and
  1703. (
  1704. (token<>_ID) or
  1705. (
  1706. (m_function_references in current_settings.modeswitches) and
  1707. (idtoken=_REFERENCE)
  1708. )
  1709. ) and
  1710. (token<>_STRING) and (token<>_FILE) then
  1711. consume(_ID);
  1712. case token of
  1713. _STRING,_FILE:
  1714. begin
  1715. if hadtypetoken then
  1716. single_type(def,[])
  1717. else
  1718. single_type(def,[stoAllowTypeDef]);
  1719. end;
  1720. _LKLAMMER:
  1721. begin
  1722. consume(_LKLAMMER);
  1723. first:=true;
  1724. { allow negativ value_str }
  1725. l:=int64(-1);
  1726. enumdupmsg:=false;
  1727. { check that we are not adding an enum from specialization
  1728. we can't just use current_specializedef because of inner types
  1729. like specialize array of record }
  1730. is_specialize:=false;
  1731. stitem:=symtablestack.stack;
  1732. while assigned(stitem) do
  1733. begin
  1734. { check records, classes and arrays because they can be specialized }
  1735. if stitem^.symtable.symtabletype in [recordsymtable,ObjectSymtable,arraysymtable] then
  1736. begin
  1737. is_specialize:=is_specialize or (df_specialization in tstoreddef(stitem^.symtable.defowner).defoptions);
  1738. stitem:=stitem^.next;
  1739. end
  1740. else
  1741. break;
  1742. end;
  1743. if not is_specialize then
  1744. aktenumdef:=cenumdef.create
  1745. else
  1746. aktenumdef:=nil;
  1747. repeat
  1748. { if it is a specialization then search the first enum member
  1749. and get the member owner instead of just created enumdef }
  1750. if not assigned(aktenumdef) then
  1751. begin
  1752. if not searchsym(pattern,sym,st) then
  1753. internalerror(202504121)
  1754. else if sym.typ=enumsym then
  1755. aktenumdef:=tenumsym(sym).definition
  1756. else
  1757. internalerror(201101021);
  1758. end;
  1759. s:=orgpattern;
  1760. defpos:=current_tokenpos;
  1761. consume(_ID);
  1762. { only allow assigning of specific numbers under fpc mode }
  1763. if not(m_tp7 in current_settings.modeswitches) and
  1764. (
  1765. { in fpc mode also allow := to be compatible
  1766. with previous 1.0.x versions }
  1767. ((m_fpc in current_settings.modeswitches) and
  1768. try_to_consume(_ASSIGNMENT)) or
  1769. try_to_consume(_EQ)
  1770. ) then
  1771. begin
  1772. oldlocalswitches:=current_settings.localswitches;
  1773. include(current_settings.localswitches,cs_allow_enum_calc);
  1774. p:=comp_expr([ef_accept_equal]);
  1775. current_settings.localswitches:=oldlocalswitches;
  1776. if (p.nodetype=ordconstn) then
  1777. begin
  1778. { we expect an integer or an enum of the
  1779. same type }
  1780. if is_integer(p.resultdef) or
  1781. is_char(p.resultdef) or
  1782. equal_defs(p.resultdef,aktenumdef) then
  1783. v:=tordconstnode(p).value
  1784. else
  1785. IncompatibleTypes(p.resultdef,s32inttype);
  1786. end
  1787. else
  1788. Message(parser_e_illegal_expression);
  1789. p.free;
  1790. { please leave that a note, allows type save }
  1791. { declarations in the win32 units ! }
  1792. if (not first) and (v<=l) and (not enumdupmsg) then
  1793. begin
  1794. Message(parser_n_duplicate_enum);
  1795. enumdupmsg:=true;
  1796. end;
  1797. l:=v;
  1798. end
  1799. else
  1800. inc(l.svalue);
  1801. first:=false;
  1802. { don't generate enum members if this is a specialization because aktenumdef is copied from the generic type }
  1803. if not is_specialize then
  1804. begin
  1805. storepos:=current_tokenpos;
  1806. current_tokenpos:=defpos;
  1807. if (l.svalue<low(longint)) or (l.svalue>high(longint)) then
  1808. if m_delphi in current_settings.modeswitches then
  1809. Message(parser_w_enumeration_out_of_range)
  1810. else
  1811. Message(parser_e_enumeration_out_of_range);
  1812. tenumsymtable(aktenumdef.symtable).insertsym(cenumsym.create(s,aktenumdef,longint(l.svalue)));
  1813. if not (cs_scopedenums in current_settings.localswitches) or
  1814. { also provide the global symbol for anonymous enums }
  1815. not assigned(newsym) then
  1816. tstoredsymtable(aktenumdef.owner).insertsym(cenumsym.create(s,aktenumdef,longint(l.svalue)));
  1817. current_tokenpos:=storepos;
  1818. end;
  1819. until not try_to_consume(_COMMA);
  1820. def:=aktenumdef;
  1821. consume(_RKLAMMER);
  1822. {$ifdef jvm}
  1823. jvm_maybe_create_enum_class(name,def);
  1824. {$endif}
  1825. end;
  1826. _ARRAY:
  1827. array_dec(false,genericdef,genericlist);
  1828. _SET:
  1829. set_dec;
  1830. _CARET:
  1831. pointer_dec;
  1832. _RECORD:
  1833. begin
  1834. consume(token);
  1835. if (idtoken=_HELPER) and (m_advanced_records in current_settings.modeswitches) then
  1836. begin
  1837. consume(_HELPER);
  1838. def:=object_dec(odt_helper,name,newsym,genericdef,genericlist,nil,ht_record);
  1839. end
  1840. else
  1841. def:=record_dec(name,newsym,genericdef,genericlist);
  1842. end;
  1843. _PACKED,
  1844. _BITPACKED:
  1845. begin
  1846. bitpacking :=
  1847. (cs_bitpacking in current_settings.localswitches) or
  1848. (token = _BITPACKED);
  1849. consume(token);
  1850. if token=_ARRAY then
  1851. array_dec(bitpacking,genericdef,genericlist)
  1852. else if token=_SET then
  1853. set_dec
  1854. else if token=_FILE then
  1855. single_type(def,[stoAllowTypeDef])
  1856. else
  1857. begin
  1858. oldpackrecords:=current_settings.packrecords;
  1859. if (not bitpacking) or
  1860. (token in [_CLASS,_OBJECT]) then
  1861. current_settings.packrecords:=1
  1862. else
  1863. current_settings.packrecords:=bit_alignment;
  1864. case token of
  1865. _CLASS :
  1866. begin
  1867. consume(_CLASS);
  1868. def:=object_dec(odt_class,name,newsym,genericdef,genericlist,nil,ht_none);
  1869. end;
  1870. _OBJECT :
  1871. begin
  1872. consume(_OBJECT);
  1873. def:=object_dec(odt_object,name,newsym,genericdef,genericlist,nil,ht_none);
  1874. end;
  1875. else begin
  1876. consume(_RECORD);
  1877. def:=record_dec(name,newsym,genericdef,genericlist);
  1878. end;
  1879. end;
  1880. current_settings.packrecords:=oldpackrecords;
  1881. end;
  1882. end;
  1883. _DISPINTERFACE :
  1884. begin
  1885. { need extra check here since interface is a keyword
  1886. in all pascal modes }
  1887. if not(m_class in current_settings.modeswitches) then
  1888. Message(parser_f_need_objfpc_or_delphi_mode);
  1889. consume(token);
  1890. def:=object_dec(odt_dispinterface,name,newsym,genericdef,genericlist,nil,ht_none);
  1891. end;
  1892. _CLASS :
  1893. begin
  1894. consume(token);
  1895. { Delphi only allows class of in type blocks }
  1896. if (token=_OF) and
  1897. (
  1898. not(m_delphi in current_settings.modeswitches) or
  1899. (block_type=bt_type)
  1900. ) then
  1901. begin
  1902. consume(_OF);
  1903. single_type(hdef,SingleTypeOptionsInTypeBlock[block_type=bt_type]);
  1904. if is_class(hdef) or
  1905. is_objcclass(hdef) or
  1906. is_javaclass(hdef) then
  1907. def:=cclassrefdef.create(hdef)
  1908. else
  1909. if hdef.typ=forwarddef then
  1910. begin
  1911. def:=cclassrefdef.create(hdef);
  1912. current_module.checkforwarddefs.add(def);
  1913. end
  1914. else
  1915. Message1(type_e_class_or_objcclass_type_expected,hdef.typename);
  1916. end
  1917. else
  1918. if (idtoken=_HELPER) then
  1919. begin
  1920. consume(_HELPER);
  1921. def:=object_dec(odt_helper,name,newsym,genericdef,genericlist,nil,ht_class);
  1922. end
  1923. else
  1924. def:=object_dec(default_class_type,name,newsym,genericdef,genericlist,nil,ht_none);
  1925. end;
  1926. _CPPCLASS :
  1927. begin
  1928. consume(token);
  1929. def:=object_dec(odt_cppclass,name,newsym,genericdef,genericlist,nil,ht_none);
  1930. end;
  1931. _OBJCCLASS :
  1932. begin
  1933. if not(m_objectivec1 in current_settings.modeswitches) then
  1934. Message(parser_f_need_objc);
  1935. consume(token);
  1936. def:=object_dec(odt_objcclass,name,newsym,genericdef,genericlist,nil,ht_none);
  1937. end;
  1938. _INTERFACE :
  1939. begin
  1940. { need extra check here since interface is a keyword
  1941. in all pascal modes }
  1942. if not(m_class in current_settings.modeswitches) then
  1943. Message(parser_f_need_objfpc_or_delphi_mode);
  1944. consume(token);
  1945. case current_settings.interfacetype of
  1946. it_interfacecom:
  1947. def:=object_dec(odt_interfacecom,name,newsym,genericdef,genericlist,nil,ht_none);
  1948. it_interfacecorba:
  1949. def:=object_dec(odt_interfacecorba,name,newsym,genericdef,genericlist,nil,ht_none);
  1950. it_interfacejava:
  1951. def:=object_dec(odt_interfacejava,name,newsym,genericdef,genericlist,nil,ht_none);
  1952. end;
  1953. end;
  1954. _OBJCPROTOCOL :
  1955. begin
  1956. if not(m_objectivec1 in current_settings.modeswitches) then
  1957. Message(parser_f_need_objc);
  1958. consume(token);
  1959. def:=object_dec(odt_objcprotocol,name,newsym,genericdef,genericlist,nil,ht_none);
  1960. end;
  1961. _OBJCCATEGORY :
  1962. begin
  1963. if not(m_objectivec1 in current_settings.modeswitches) then
  1964. Message(parser_f_need_objc);
  1965. consume(token);
  1966. def:=object_dec(odt_objccategory,name,newsym,genericdef,genericlist,nil,ht_none);
  1967. end;
  1968. _OBJECT :
  1969. begin
  1970. consume(token);
  1971. def:=object_dec(odt_object,name,newsym,genericdef,genericlist,nil,ht_none);
  1972. end;
  1973. _PROCEDURE,
  1974. _FUNCTION:
  1975. begin
  1976. def:=procvar_dec(genericdef,genericlist,nil,true);
  1977. {$ifdef jvm}
  1978. jvm_create_procvar_class(name,def);
  1979. {$endif}
  1980. end;
  1981. _ID:
  1982. begin
  1983. case idtoken of
  1984. _HELPER:
  1985. begin
  1986. if hadtypetoken and
  1987. (m_type_helpers in current_settings.modeswitches) then
  1988. begin
  1989. { reset hadtypetoken, so that calling code knows that it should not be handled
  1990. as a "unique" type }
  1991. hadtypetoken:=false;
  1992. consume(_HELPER);
  1993. def:=object_dec(odt_helper,name,newsym,genericdef,genericlist,nil,ht_type);
  1994. end
  1995. else
  1996. expr_type
  1997. end;
  1998. _REFERENCE:
  1999. begin
  2000. if current_settings.modeswitches*[m_blocks,m_function_references]<>[] then
  2001. begin
  2002. consume(_REFERENCE);
  2003. consume(_TO);
  2004. { don't register the def as a non-cblock function
  2005. reference will be converted to an interface }
  2006. def:=procvar_dec(genericdef,genericlist,newsym,false);
  2007. { could be errordef in case of a syntax error }
  2008. if assigned(def) and
  2009. (def.typ=procvardef) then
  2010. begin
  2011. include(tprocvardef(def).procoptions,po_is_function_ref);
  2012. end;
  2013. end
  2014. else
  2015. expr_type;
  2016. end;
  2017. else
  2018. expr_type;
  2019. end;
  2020. end
  2021. else
  2022. if (token=_KLAMMERAFFE) and (([m_iso,m_extpas]*current_settings.modeswitches)<>[]) then
  2023. begin
  2024. consume(_KLAMMERAFFE);
  2025. single_type(tt2,SingleTypeOptionsInTypeBlock[block_type=bt_type]);
  2026. def:=cpointerdef.create(tt2);
  2027. if tt2.typ=forwarddef then
  2028. current_module.checkforwarddefs.add(def);
  2029. end
  2030. else
  2031. expr_type;
  2032. end;
  2033. if def=nil then
  2034. def:=generrordef;
  2035. end;
  2036. procedure read_anon_type(var def : tdef;parseprocvardir:boolean;genericdef:tstoreddef);
  2037. var
  2038. hadtypetoken : boolean;
  2039. begin
  2040. hadtypetoken:=false;
  2041. read_named_type(def,nil,genericdef,nil,parseprocvardir,hadtypetoken);
  2042. end;
  2043. procedure add_typedconst_init_routine(def: tabstractrecorddef);
  2044. var
  2045. sstate: tscannerstate;
  2046. pd: tprocdef;
  2047. begin
  2048. replace_scanner('tcinit_routine',sstate);
  2049. { the typed constant initialization code is called from the class
  2050. constructor by tnodeutils.wrap_proc_body; at this point, we don't
  2051. know yet whether that will be necessary, because there may be
  2052. typed constants inside method bodies -> always force the addition
  2053. of a class constructor.
  2054. We cannot directly add the typed constant initialisations to the
  2055. class constructor, because when it's parsed not all method bodies
  2056. are necessarily already parsed }
  2057. pd:=def.find_procdef_bytype(potype_class_constructor);
  2058. { the class constructor }
  2059. if not assigned(pd) then
  2060. begin
  2061. if str_parse_method_dec('constructor fpc_init_typed_consts_class_constructor;',potype_class_constructor,true,def,pd) then
  2062. pd.synthetickind:=tsk_empty
  2063. else
  2064. internalerror(2011040206);
  2065. end;
  2066. { the initialisation helper }
  2067. if str_parse_method_dec('procedure fpc_init_typed_consts_helper; static;',potype_procedure,true,def,pd) then
  2068. pd.synthetickind:=tsk_tcinit
  2069. else
  2070. internalerror(2011040207);
  2071. restore_scanner(sstate);
  2072. end;
  2073. end.