pjvm.pas 42 KB

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  1. {
  2. Copyright (c) 2011 by Jonas Maebe
  3. This unit implements some JVM parser helper routines.
  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. {$i fpcdefs.inc}
  18. unit pjvm;
  19. interface
  20. uses
  21. globtype,
  22. symconst,symtype,symbase,symdef,symsym;
  23. { the JVM specs require that you add a default parameterless
  24. constructor in case the programmer hasn't specified any }
  25. procedure maybe_add_public_default_java_constructor(obj: tabstractrecorddef);
  26. { records are emulated via Java classes. They require a default constructor
  27. to initialise temps, a deep copy helper for assignments, and clone()
  28. to initialse dynamic arrays }
  29. procedure add_java_default_record_methods_intf(def: trecorddef);
  30. procedure jvm_maybe_create_enum_class(const name: TIDString; def: tdef);
  31. procedure jvm_create_procvar_class(const name: TIDString; def: tdef);
  32. procedure jvm_wrap_virtual_class_methods(obj: tobjectdef);
  33. function jvm_add_typed_const_initializer(csym: tconstsym): tstaticvarsym;
  34. function jvm_wrap_method_with_vis(pd: tprocdef; vis: tvisibility): tprocdef;
  35. { when a private/protected field is exposed via a property with a higher
  36. visibility, then we have to create a getter and/or setter with that same
  37. higher visibility to make sure that using the property does not result
  38. in JVM verification errors }
  39. procedure jvm_create_getter_for_property(p: tpropertysym);
  40. procedure jvm_create_setter_for_property(p: tpropertysym);
  41. implementation
  42. uses
  43. cutils,cclasses,
  44. verbose,systems,
  45. fmodule,
  46. parabase,aasmdata,
  47. pdecsub,ngenutil,pparautl,
  48. symtable,symcreat,defcmp,jvmdef,nobj,
  49. defutil,paramgr;
  50. { the JVM specs require that you add a default parameterless
  51. constructor in case the programmer hasn't specified any }
  52. procedure maybe_add_public_default_java_constructor(obj: tabstractrecorddef);
  53. var
  54. sym: tsym;
  55. ps: tprocsym;
  56. pd: tprocdef;
  57. topowner: tdefentry;
  58. i: longint;
  59. sstate: tscannerstate;
  60. needclassconstructor: boolean;
  61. begin
  62. { if there is at least one constructor for a class, do nothing (for
  63. records, we'll always also need a parameterless constructor) }
  64. if not is_javaclass(obj) or
  65. not (oo_has_constructor in obj.objectoptions) then
  66. begin
  67. { check whether the parent has a parameterless constructor that we can
  68. call (in case of a class; all records will derive from
  69. java.lang.Object or a shim on top of that with a parameterless
  70. constructor) }
  71. if is_javaclass(obj) then
  72. begin
  73. pd:=nil;
  74. { childof may not be assigned in case of a parser error }
  75. if not assigned(tobjectdef(obj).childof) then
  76. exit;
  77. sym:=tsym(tobjectdef(obj).childof.symtable.find('CREATE'));
  78. if assigned(sym) and
  79. (sym.typ=procsym) then
  80. pd:=tprocsym(sym).find_bytype_parameterless(potype_constructor);
  81. if not assigned(pd) then
  82. begin
  83. Message(sym_e_no_matching_inherited_parameterless_constructor);
  84. exit
  85. end;
  86. end;
  87. { we call all constructors CREATE, because they don't have a name in
  88. Java and otherwise we can't determine whether multiple overloads
  89. are created with the same parameters }
  90. sym:=tsym(obj.symtable.find('CREATE'));
  91. if assigned(sym) then
  92. begin
  93. { does another, non-procsym, symbol already exist with that name? }
  94. if (sym.typ<>procsym) then
  95. begin
  96. Message1(sym_e_duplicate_id_create_java_constructor,sym.realname);
  97. exit;
  98. end;
  99. ps:=tprocsym(sym);
  100. { is there already a parameterless function/procedure create? }
  101. pd:=ps.find_bytype_parameterless(potype_function);
  102. if not assigned(pd) then
  103. pd:=ps.find_bytype_parameterless(potype_procedure);
  104. if assigned(pd) then
  105. begin
  106. Message1(sym_e_duplicate_id_create_java_constructor,pd.fullprocname(false));
  107. exit;
  108. end;
  109. end;
  110. if not assigned(sym) then
  111. begin
  112. ps:=tprocsym.create('Create');
  113. obj.symtable.insert(ps);
  114. end;
  115. { determine symtable level }
  116. topowner:=obj;
  117. while not(topowner.owner.symtabletype in [staticsymtable,globalsymtable]) do
  118. topowner:=topowner.owner.defowner;
  119. { create procdef }
  120. pd:=tprocdef.create(topowner.owner.symtablelevel+1);
  121. if df_generic in obj.defoptions then
  122. include(pd.defoptions,df_generic);
  123. { method of this objectdef }
  124. pd.struct:=obj;
  125. { associated procsym }
  126. pd.procsym:=ps;
  127. { constructor }
  128. pd.proctypeoption:=potype_constructor;
  129. { needs to be exported }
  130. include(pd.procoptions,po_global);
  131. { by default do not include this routine when looking for overloads }
  132. include(pd.procoptions,po_ignore_for_overload_resolution);
  133. { generate anonymous inherited call in the implementation }
  134. pd.synthetickind:=tsk_anon_inherited;
  135. { public }
  136. pd.visibility:=vis_public;
  137. { result type }
  138. pd.returndef:=obj;
  139. { calling convention, self, ... }
  140. handle_calling_convention(pd);
  141. { register forward declaration with procsym }
  142. proc_add_definition(pd);
  143. end;
  144. { also add class constructor if class fields that need wrapping, and
  145. if none was defined }
  146. if obj.find_procdef_bytype(potype_class_constructor)=nil then
  147. begin
  148. needclassconstructor:=false;
  149. for i:=0 to obj.symtable.symlist.count-1 do
  150. begin
  151. if (tsym(obj.symtable.symlist[i]).typ=staticvarsym) and
  152. jvmimplicitpointertype(tstaticvarsym(obj.symtable.symlist[i]).vardef) then
  153. begin
  154. needclassconstructor:=true;
  155. break;
  156. end;
  157. end;
  158. if needclassconstructor then
  159. begin
  160. replace_scanner('custom_class_constructor',sstate);
  161. if str_parse_method_dec('constructor fpc_jvm_class_constructor;',potype_class_constructor,true,obj,pd) then
  162. pd.synthetickind:=tsk_empty
  163. else
  164. internalerror(2011040501);
  165. restore_scanner(sstate);
  166. end;
  167. end;
  168. end;
  169. procedure add_java_default_record_methods_intf(def: trecorddef);
  170. var
  171. sstate: tscannerstate;
  172. pd: tprocdef;
  173. sym: tsym;
  174. i: longint;
  175. begin
  176. maybe_add_public_default_java_constructor(def);
  177. replace_scanner('record_jvm_helpers',sstate);
  178. { no override, because not supported in records. Only required in case
  179. some of the fields require deep copies (otherwise the default
  180. shallow clone is fine) }
  181. for i:=0 to def.symtable.symlist.count-1 do
  182. begin
  183. sym:=tsym(def.symtable.symlist[i]);
  184. if (sym.typ=fieldvarsym) and
  185. jvmimplicitpointertype(tfieldvarsym(sym).vardef) then
  186. begin
  187. if str_parse_method_dec('function clone: JLObject;',potype_function,false,def,pd) then
  188. pd.synthetickind:=tsk_jvm_clone
  189. else
  190. internalerror(2011032806);
  191. break;
  192. end;
  193. end;
  194. { can't use def.typesym, not yet set at this point }
  195. if not assigned(def.symtable.realname) then
  196. internalerror(2011032803);
  197. if str_parse_method_dec('procedure fpcDeepCopy(result: FpcBaseRecordType);override;',potype_procedure,false,def,pd) then
  198. pd.synthetickind:=tsk_record_deepcopy
  199. else
  200. internalerror(2011032807);
  201. if def.needs_inittable then
  202. begin
  203. { 'var' instead of 'out' parameter, because 'out' would trigger
  204. calling the initialize method recursively }
  205. if str_parse_method_dec('procedure fpcInitializeRec;',potype_procedure,false,def,pd) then
  206. pd.synthetickind:=tsk_record_initialize
  207. else
  208. internalerror(2011071711);
  209. end;
  210. restore_scanner(sstate);
  211. end;
  212. procedure setup_for_new_class(const scannername: string; out sstate: tscannerstate; out islocal: boolean; out oldsymtablestack: TSymtablestack);
  213. begin
  214. replace_scanner(scannername,sstate);
  215. oldsymtablestack:=symtablestack;
  216. islocal:=symtablestack.top.symtablelevel>=normal_function_level;
  217. if islocal then
  218. begin
  219. { we cannot add a class local to a procedure -> insert it in the
  220. static symtable. This is not ideal because this means that it will
  221. be saved to the ppu file for no good reason, and loaded again
  222. even though it contains a reference to a type that was never
  223. saved to the ppu file (the locally defined enum type). Since this
  224. alias for the locally defined enumtype is only used while
  225. implementing the class' methods, this is however no problem. }
  226. symtablestack:=symtablestack.getcopyuntil(current_module.localsymtable);
  227. end;
  228. end;
  229. procedure restore_after_new_class(const sstate: tscannerstate; const islocal: boolean; const oldsymtablestack: TSymtablestack);
  230. begin
  231. if islocal then
  232. begin
  233. symtablestack.free;
  234. symtablestack:=oldsymtablestack;
  235. end;
  236. restore_scanner(sstate);
  237. end;
  238. procedure jvm_maybe_create_enum_class(const name: TIDString; def: tdef);
  239. var
  240. vmtbuilder: tvmtbuilder;
  241. arrdef: tarraydef;
  242. arrsym: ttypesym;
  243. juhashmap: tdef;
  244. enumclass: tobjectdef;
  245. pd: tprocdef;
  246. old_current_structdef: tabstractrecorddef;
  247. i: longint;
  248. sym,
  249. aliassym: tstaticvarsym;
  250. fsym: tfieldvarsym;
  251. sstate: tscannerstate;
  252. sl: tpropaccesslist;
  253. temptypesym: ttypesym;
  254. oldsymtablestack: tsymtablestack;
  255. islocal: boolean;
  256. begin
  257. { if it's a subrange type, don't create a new class }
  258. if assigned(tenumdef(def).basedef) then
  259. exit;
  260. setup_for_new_class('jvm_enum_class',sstate,islocal,oldsymtablestack);
  261. { create new class (different internal name than enum to prevent name
  262. clash; at unit level because we don't want its methods to be nested
  263. inside a function in case its a local type) }
  264. enumclass:=tobjectdef.create(odt_javaclass,'$'+current_module.realmodulename^+'$'+name+'$InternEnum$'+tostr(def.defid),java_jlenum);
  265. tenumdef(def).classdef:=enumclass;
  266. include(enumclass.objectoptions,oo_is_enum_class);
  267. include(enumclass.objectoptions,oo_is_sealed);
  268. { implement FpcEnumValueObtainable interface }
  269. enumclass.ImplementedInterfaces.add(TImplementedInterface.Create(tobjectdef(search_system_type('FPCENUMVALUEOBTAINABLE').typedef)));
  270. { create an alias for this type inside itself: this way we can choose a
  271. name that can be used in generated Pascal code without risking an
  272. identifier conflict (since it is local to this class; the global name
  273. is unique because it's an identifier that contains $-signs) }
  274. enumclass.symtable.insert(ttypesym.create('__FPC_TEnumClassAlias',enumclass));
  275. { also create an alias for the enum type so that we can iterate over
  276. all enum values when creating the body of the class constructor }
  277. temptypesym:=ttypesym.create('__FPC_TEnumAlias',nil);
  278. { don't pass def to the ttypesym constructor, because then it
  279. will replace the current (real) typesym of that def with the alias }
  280. temptypesym.typedef:=def;
  281. enumclass.symtable.insert(temptypesym);
  282. { but the name of the class as far as the JVM is concerned will match
  283. the enum's original name (the enum type itself won't be output in
  284. any class file, so no conflict there) }
  285. if not islocal then
  286. enumclass.objextname:=stringdup(name)
  287. else
  288. { for local types, use a unique name to prevent conflicts (since such
  289. types are not visible outside the routine anyway, it doesn't matter
  290. }
  291. begin
  292. enumclass.objextname:=stringdup(enumclass.objrealname^);
  293. { also mark it as private (not strict private, because the class
  294. is not a subclass of the unit in which it is declared, so then
  295. the unit's procedures would not be able to use it) }
  296. enumclass.typesym.visibility:=vis_private;
  297. end;
  298. { now add a bunch of extra things to the enum class }
  299. old_current_structdef:=current_structdef;
  300. current_structdef:=enumclass;
  301. symtablestack.push(enumclass.symtable);
  302. { create static fields representing all enums }
  303. for i:=0 to tenumdef(def).symtable.symlist.count-1 do
  304. begin
  305. fsym:=tfieldvarsym.create(tenumsym(tenumdef(def).symtable.symlist[i]).realname,vs_final,enumclass,[]);
  306. enumclass.symtable.insert(fsym);
  307. sym:=make_field_static(enumclass.symtable,fsym);
  308. { add alias for the field representing ordinal(0), for use in
  309. initialization code }
  310. if tenumsym(tenumdef(def).symtable.symlist[i]).value=0 then
  311. begin
  312. aliassym:=tstaticvarsym.create('__FPC_Zero_Initializer',vs_final,enumclass,[vo_is_external]);
  313. enumclass.symtable.insert(aliassym);
  314. aliassym.set_raw_mangledname(sym.mangledname);
  315. end;
  316. end;
  317. { create local "array of enumtype" type for the "values" functionality
  318. (used internally by the JDK) }
  319. arrdef:=tarraydef.create(0,tenumdef(def).symtable.symlist.count-1,s32inttype);
  320. arrdef.elementdef:=enumclass;
  321. arrsym:=ttypesym.create('__FPC_TEnumValues',arrdef);
  322. enumclass.symtable.insert(arrsym);
  323. { insert "public static values: array of enumclass" that returns $VALUES.clone()
  324. (rather than a dynamic array and using clone --which we don't support yet for arrays--
  325. simply use a fixed length array and copy it) }
  326. if not str_parse_method_dec('function values: __FPC_TEnumValues;static;',potype_function,true,enumclass,pd) then
  327. internalerror(2011062301);
  328. include(pd.procoptions,po_staticmethod);
  329. pd.synthetickind:=tsk_jvm_enum_values;
  330. { do we have to store the ordinal value separately? (if no jumps, we can
  331. just call the default ordinal() java.lang.Enum function) }
  332. if tenumdef(def).has_jumps then
  333. begin
  334. { add field for the value }
  335. fsym:=tfieldvarsym.create('__fpc_fenumval',vs_final,s32inttype,[]);
  336. enumclass.symtable.insert(fsym);
  337. tobjectsymtable(enumclass.symtable).addfield(fsym,vis_strictprivate);
  338. { add class field with hash table that maps from FPC-declared ordinal value -> enum instance }
  339. juhashmap:=search_system_type('JUHASHMAP').typedef;
  340. fsym:=tfieldvarsym.create('__fpc_ord2enum',vs_final,juhashmap,[]);
  341. enumclass.symtable.insert(fsym);
  342. make_field_static(enumclass.symtable,fsym);
  343. { add custom constructor }
  344. if not str_parse_method_dec('constructor Create(const __fpc_name: JLString; const __fpc_ord, __fpc_initenumval: longint);',potype_constructor,false,enumclass,pd) then
  345. internalerror(2011062401);
  346. pd.synthetickind:=tsk_jvm_enum_jumps_constr;
  347. pd.visibility:=vis_strictprivate;
  348. end
  349. else
  350. begin
  351. { insert "private constructor(string,int,int)" that calls inherited and
  352. initialises the FPC value field }
  353. add_missing_parent_constructors_intf(enumclass,false,vis_strictprivate);
  354. end;
  355. { add instance method to get the enum's value as declared in FPC }
  356. if not str_parse_method_dec('function FPCOrdinal: longint;',potype_function,false,enumclass,pd) then
  357. internalerror(2011062402);
  358. pd.synthetickind:=tsk_jvm_enum_fpcordinal;
  359. { add static class method to convert an ordinal to the corresponding enum }
  360. if not str_parse_method_dec('function FPCValueOf(__fpc_int: longint): __FPC_TEnumClassAlias; static;',potype_function,true,enumclass,pd) then
  361. internalerror(2011062402);
  362. pd.synthetickind:=tsk_jvm_enum_fpcvalueof;
  363. { similar (instance) function for use in set factories; implements FpcEnumValueObtainable interface }
  364. if not str_parse_method_dec('function fpcGenericValueOf(__fpc_int: longint): JLEnum;',potype_function,false,enumclass,pd) then
  365. internalerror(2011062402);
  366. pd.synthetickind:=tsk_jvm_enum_fpcvalueof;
  367. { insert "public static valueOf(string): tenumclass" that returns tenumclass(inherited valueOf(tenumclass,string)) }
  368. if not str_parse_method_dec('function valueOf(const __fpc_str: JLString): __FPC_TEnumClassAlias; static;',potype_function,true,enumclass,pd) then
  369. internalerror(2011062302);
  370. include(pd.procoptions,po_staticmethod);
  371. pd.synthetickind:=tsk_jvm_enum_valueof;
  372. { add instance method to convert an ordinal and an array into a set of
  373. (we always need/can use both in case of subrange types and/or array
  374. -> set type casts) }
  375. if not str_parse_method_dec('function fpcLongToEnumSet(__val: jlong; __setbase, __setsize: jint): JUEnumSet;',potype_function,true,enumclass,pd) then
  376. internalerror(2011070501);
  377. pd.synthetickind:=tsk_jvm_enum_long2set;
  378. if not str_parse_method_dec('function fpcBitSetToEnumSet(const __val: FpcBitSet; __fromsetbase, __tosetbase: jint): JUEnumSet; static;',potype_function,true,enumclass,pd) then
  379. internalerror(2011071004);
  380. pd.synthetickind:=tsk_jvm_enum_bitset2set;
  381. if not str_parse_method_dec('function fpcEnumSetToEnumSet(const __val: JUEnumSet; __fromsetbase, __tosetbase: jint): JUEnumSet; static;',potype_function,true,enumclass,pd) then
  382. internalerror(2011071005);
  383. pd.synthetickind:=tsk_jvm_enum_set2set;
  384. { create array called "$VALUES" that will contain a reference to all
  385. enum instances (JDK convention)
  386. Disable duplicate identifier checking when inserting, because it will
  387. check for a conflict with "VALUES" ($<id> normally means "check for
  388. <id> without uppercasing first"), which will conflict with the
  389. "Values" instance method -- that's also the reason why we insert the
  390. field only now, because we cannot disable duplicate identifier
  391. checking when creating the "Values" method }
  392. fsym:=tfieldvarsym.create('$VALUES',vs_final,arrdef,[]);
  393. fsym.visibility:=vis_strictprivate;
  394. enumclass.symtable.insert(fsym,false);
  395. sym:=make_field_static(enumclass.symtable,fsym);
  396. { alias for accessing the field in generated Pascal code }
  397. sl:=tpropaccesslist.create;
  398. sl.addsym(sl_load,sym);
  399. enumclass.symtable.insert(tabsolutevarsym.create_ref('__fpc_FVALUES',arrdef,sl));
  400. { add initialization of the static class fields created above }
  401. if not str_parse_method_dec('constructor fpc_enum_class_constructor;',potype_class_constructor,true,enumclass,pd) then
  402. internalerror(2011062303);
  403. pd.synthetickind:=tsk_jvm_enum_classconstr;
  404. symtablestack.pop(enumclass.symtable);
  405. vmtbuilder:=TVMTBuilder.Create(enumclass);
  406. vmtbuilder.generate_vmt;
  407. vmtbuilder.free;
  408. restore_after_new_class(sstate,islocal,oldsymtablestack);
  409. current_structdef:=old_current_structdef;
  410. end;
  411. procedure jvm_create_procvar_class_intern(const name: TIDString; def: tdef; force_no_callback_intf: boolean);
  412. var
  413. vmtbuilder: tvmtbuilder;
  414. oldsymtablestack: tsymtablestack;
  415. pvclass,
  416. pvintf: tobjectdef;
  417. temptypesym: ttypesym;
  418. sstate: tscannerstate;
  419. methoddef: tprocdef;
  420. old_current_structdef: tabstractrecorddef;
  421. islocal: boolean;
  422. begin
  423. { inlined definition of procvar -> generate name, derive from
  424. FpcBaseNestedProcVarType, pass nestedfpstruct to constructor and
  425. copy it }
  426. if name='' then
  427. internalerror(2011071901);
  428. setup_for_new_class('jvm_pvar_class',sstate,islocal,oldsymtablestack);
  429. { create new class (different internal name than pvar to prevent name
  430. clash; at unit level because we don't want its methods to be nested
  431. inside a function in case its a local type) }
  432. pvclass:=tobjectdef.create(odt_javaclass,'$'+current_module.realmodulename^+'$'+name+'$InternProcvar$'+tostr(def.defid),java_procvarbase);
  433. tprocvardef(def).classdef:=pvclass;
  434. include(pvclass.objectoptions,oo_is_sealed);
  435. if df_generic in def.defoptions then
  436. include(pvclass.defoptions,df_generic);
  437. { associate typesym }
  438. pvclass.symtable.insert(ttypesym.create('__FPC_TProcVarClassAlias',pvclass));
  439. { set external name to match procvar type name }
  440. if not islocal then
  441. pvclass.objextname:=stringdup(name)
  442. else
  443. pvclass.objextname:=stringdup(pvclass.objrealname^);
  444. symtablestack.push(pvclass.symtable);
  445. { inherit constructor and keep public }
  446. add_missing_parent_constructors_intf(pvclass,true,vis_public);
  447. { add a method to call the procvar using unwrapped arguments, which
  448. then wraps them and calls through to JLRMethod.invoke }
  449. methoddef:=tprocdef(tprocvardef(def).getcopyas(procdef,pc_bareproc));
  450. finish_copied_procdef(methoddef,'invoke',pvclass.symtable,pvclass);
  451. insert_self_and_vmt_para(methoddef);
  452. methoddef.synthetickind:=tsk_jvm_procvar_invoke;
  453. methoddef.calcparas;
  454. { add local alias for the procvartype that we can use when implementing
  455. the invoke method }
  456. temptypesym:=ttypesym.create('__FPC_ProcVarAlias',nil);
  457. { don't pass def to the ttypesym constructor, because then it
  458. will replace the current (real) typesym of that def with the alias }
  459. temptypesym.typedef:=def;
  460. pvclass.symtable.insert(temptypesym);
  461. { in case of a procedure of object, add a nested interface type that
  462. has one method that conforms to the procvartype (with name
  463. procvartypename+'Callback') and an extra constructor that takes
  464. an instance conforming to this interface and which sets up the
  465. procvar by taking the address of its Callback method (convenient to
  466. use from Java code) }
  467. if (po_methodpointer in tprocvardef(def).procoptions) and
  468. not islocal and
  469. not force_no_callback_intf then
  470. begin
  471. pvintf:=tobjectdef.create(odt_interfacejava,'Callback',nil);
  472. pvintf.objextname:=stringdup('Callback');
  473. if df_generic in def.defoptions then
  474. include(pvintf.defoptions,df_generic);
  475. { associate typesym }
  476. pvclass.symtable.insert(ttypesym.create('Callback',pvintf));
  477. { add a method prototype matching the procvar (like the invoke
  478. in the procvarclass itself) }
  479. symtablestack.push(pvintf.symtable);
  480. methoddef:=tprocdef(tprocvardef(def).getcopyas(procdef,pc_bareproc));
  481. finish_copied_procdef(methoddef,name+'Callback',pvintf.symtable,pvintf);
  482. insert_self_and_vmt_para(methoddef);
  483. { can't be final/static/private/protected, and must be virtual
  484. since it's an interface method }
  485. methoddef.procoptions:=methoddef.procoptions-[po_staticmethod,po_finalmethod];
  486. include(methoddef.procoptions,po_virtualmethod);
  487. methoddef.visibility:=vis_public;
  488. symtablestack.pop(pvintf.symtable);
  489. { add an extra constructor to the procvarclass that takes an
  490. instance of this interface as parameter }
  491. old_current_structdef:=current_structdef;
  492. current_structdef:=pvclass;
  493. if not str_parse_method_dec('constructor Create(__intf:'+pvintf.objextname^+');overload;',potype_constructor,false,pvclass,methoddef) then
  494. internalerror(2011092401);
  495. methoddef.synthetickind:=tsk_jvm_procvar_intconstr;
  496. methoddef.skpara:=def;
  497. current_structdef:=old_current_structdef;
  498. end;
  499. symtablestack.pop(pvclass.symtable);
  500. vmtbuilder:=TVMTBuilder.Create(pvclass);
  501. vmtbuilder.generate_vmt;
  502. vmtbuilder.free;
  503. restore_after_new_class(sstate,islocal,oldsymtablestack);
  504. end;
  505. procedure jvm_create_procvar_class(const name: TIDString; def: tdef);
  506. begin
  507. jvm_create_procvar_class_intern(name,def,false);
  508. end;
  509. procedure jvm_wrap_virtual_class_method(pd: tprocdef);
  510. var
  511. wrapperpd: tprocdef;
  512. wrapperpv: tprocvardef;
  513. typ: ttypesym;
  514. wrappername: shortstring;
  515. begin
  516. if (po_external in pd.procoptions) or
  517. (oo_is_external in pd.struct.objectoptions) then
  518. exit;
  519. { the JVM does not support virtual class methods -> we generate
  520. wrappers with the original name so they can be called normally,
  521. and these wrappers will then perform a dynamic lookup. To enable
  522. calling the class method by its intended name from external Java code,
  523. we have to change its external name so that we give that original
  524. name to the wrapper function -> "switch" the external names around for
  525. the original and wrapper methods }
  526. { replace importname of original procdef }
  527. include(pd.procoptions,po_has_importname);
  528. if not assigned(pd.import_name) then
  529. wrappername:=pd.procsym.realname
  530. else
  531. wrappername:=pd.import_name^;
  532. stringdispose(pd.import_name);
  533. pd.import_name:=stringdup(wrappername+'__fpcvirtualclassmethod__');
  534. { wrapper is part of the same symtable as the original procdef }
  535. symtablestack.push(pd.owner);
  536. { get a copy of the virtual class method }
  537. wrapperpd:=tprocdef(pd.getcopy);
  538. { this one is not virtual nor override }
  539. exclude(wrapperpd.procoptions,po_virtualmethod);
  540. exclude(wrapperpd.procoptions,po_overridingmethod);
  541. { import/external name = name of original class method }
  542. stringdispose(wrapperpd.import_name);
  543. wrapperpd.import_name:=stringdup(wrappername);
  544. include(wrapperpd.procoptions,po_has_importname);
  545. { associate with wrapper procsym (Pascal-level name = wrapper name ->
  546. in callnodes, we will have to replace the calls to virtual class
  547. methods with calls to the wrappers) }
  548. finish_copied_procdef(wrapperpd,pd.import_name^,pd.owner,tabstractrecorddef(pd.owner.defowner));
  549. { we only have to generate the dispatching routine for non-overriding
  550. methods; the overriding ones can use the original one, but generate
  551. a skeleton for that anyway because the overriding one may still
  552. change the visibility (but we can just call the inherited routine
  553. in that case) }
  554. if po_overridingmethod in pd.procoptions then
  555. begin
  556. { by default do not include this routine when looking for overloads }
  557. include(wrapperpd.procoptions,po_ignore_for_overload_resolution);
  558. wrapperpd.synthetickind:=tsk_anon_inherited;
  559. symtablestack.pop(pd.owner);
  560. exit;
  561. end;
  562. { implementation }
  563. wrapperpd.synthetickind:=tsk_jvm_virtual_clmethod;
  564. wrapperpd.skpara:=pd;
  565. { also create procvar type that we can use in the implementation }
  566. wrapperpv:=tprocvardef(pd.getcopyas(procvardef,pc_normal));
  567. wrapperpv.calcparas;
  568. { no use in creating a callback wrapper here, this procvar type isn't
  569. for public consumption }
  570. jvm_create_procvar_class_intern('__fpc_virtualclassmethod_pv_t'+tostr(wrapperpd.defid),wrapperpv,true);
  571. { create alias for the procvar type so we can use it in generated
  572. Pascal code }
  573. typ:=ttypesym.create('__fpc_virtualclassmethod_pv_t'+tostr(wrapperpd.defid),wrapperpv);
  574. wrapperpv.classdef.typesym.visibility:=vis_strictprivate;
  575. symtablestack.top.insert(typ);
  576. symtablestack.pop(pd.owner);
  577. end;
  578. procedure jvm_wrap_virtual_constructor(pd: tprocdef);
  579. var
  580. wrapperpd: tprocdef;
  581. begin
  582. { to avoid having to implement procvar-like support for dynamically
  583. invoking constructors, call the constructors from virtual class
  584. methods and replace calls to the constructors with calls to the
  585. virtual class methods -> we can reuse lots of infrastructure }
  586. if (po_external in pd.procoptions) or
  587. (oo_is_external in pd.struct.objectoptions) then
  588. exit;
  589. { wrapper is part of the same symtable as the original procdef }
  590. symtablestack.push(pd.owner);
  591. { get a copy of the constructor }
  592. wrapperpd:=tprocdef(pd.getcopyas(procdef,pc_bareproc));
  593. { this one is is a class method rather than a constructor }
  594. include(wrapperpd.procoptions,po_classmethod);
  595. wrapperpd.proctypeoption:=potype_function;
  596. wrapperpd.returndef:=tobjectdef(pd.owner.defowner);
  597. { import/external name = name of original constructor (since
  598. constructors don't have names in Java, this won't conflict with the
  599. original constructor definition) }
  600. stringdispose(wrapperpd.import_name);
  601. wrapperpd.import_name:=stringdup(pd.procsym.realname);
  602. { associate with wrapper procsym (Pascal-level name = wrapper name ->
  603. in callnodes, we will have to replace the calls to virtual
  604. constructors with calls to the wrappers) }
  605. finish_copied_procdef(wrapperpd,pd.procsym.realname+'__fpcvirtconstrwrapper__',pd.owner,tabstractrecorddef(pd.owner.defowner));
  606. { since it was a bare copy, insert the self parameter (we can't just
  607. copy the vmt parameter from the constructor, that's different) }
  608. insert_self_and_vmt_para(wrapperpd);
  609. wrapperpd.calcparas;
  610. { implementation: call through to the constructor }
  611. wrapperpd.synthetickind:=tsk_callthrough;
  612. wrapperpd.skpara:=pd;
  613. symtablestack.pop(pd.owner);
  614. { and now wrap this generated virtual static method itself as well }
  615. jvm_wrap_virtual_class_method(wrapperpd);
  616. end;
  617. procedure jvm_wrap_virtual_class_methods(obj: tobjectdef);
  618. var
  619. i: longint;
  620. def: tdef;
  621. begin
  622. { new methods will be inserted while we do this, but since
  623. symtable.deflist.count is evaluated at the start of the loop that
  624. doesn't matter }
  625. for i:=0 to obj.symtable.deflist.count-1 do
  626. begin
  627. def:=tdef(obj.symtable.deflist[i]);
  628. if def.typ<>procdef then
  629. continue;
  630. if [po_classmethod,po_virtualmethod]<=tprocdef(def).procoptions then
  631. jvm_wrap_virtual_class_method(tprocdef(def))
  632. else if (tprocdef(def).proctypeoption=potype_constructor) and
  633. (po_virtualmethod in tprocdef(def).procoptions) then
  634. jvm_wrap_virtual_constructor(tprocdef(def));
  635. end;
  636. end;
  637. function jvm_add_typed_const_initializer(csym: tconstsym): tstaticvarsym;
  638. var
  639. ssym: tstaticvarsym;
  640. esym: tenumsym;
  641. i: longint;
  642. sstate: tscannerstate;
  643. elemdef: tdef;
  644. elemdefname,
  645. conststr: ansistring;
  646. first: boolean;
  647. begin
  648. case csym.constdef.typ of
  649. enumdef:
  650. begin
  651. replace_scanner('jvm_enum_const',sstate);
  652. { make sure we don't emit a definition for this field (we'll do
  653. that for the constsym already) -> mark as external }
  654. ssym:=tstaticvarsym.create(internal_static_field_name(csym.realname),vs_final,csym.constdef,[vo_is_external]);
  655. csym.owner.insert(ssym);
  656. { alias storage to the constsym }
  657. ssym.set_mangledname(csym.realname);
  658. for i:=0 to tenumdef(csym.constdef).symtable.symlist.count-1 do
  659. begin
  660. esym:=tenumsym(tenumdef(csym.constdef).symtable.symlist[i]);
  661. if esym.value=csym.value.valueord.svalue then
  662. break;
  663. esym:=nil;
  664. end;
  665. { can happen in case of explicit typecast from integer constant
  666. to enum type }
  667. if not assigned(esym) then
  668. begin
  669. MessagePos(csym.fileinfo,parser_e_range_check_error);
  670. exit;
  671. end;
  672. str_parse_typedconst(current_asmdata.asmlists[al_typedconsts],esym.name+';',ssym);
  673. restore_scanner(sstate);
  674. result:=ssym;
  675. end;
  676. setdef:
  677. begin
  678. replace_scanner('jvm_set_const',sstate);
  679. { make sure we don't emit a definition for this field (we'll do
  680. that for the constsym already) -> mark as external;
  681. on the other hand, we don't create instances for constsyms in
  682. (or external syms) the program/unit initialization code -> add
  683. vo_has_local_copy to indicate that this should be done after all
  684. (in thlcgjvm.allocate_implicit_structs_for_st_with_base_ref) }
  685. { the constant can be defined in the body of a function and its
  686. def can also belong to that -> will be freed when the function
  687. has been compiler -> insert a copy in the unit's staticsymtable
  688. }
  689. symtablestack.push(current_module.localsymtable);
  690. ssym:=tstaticvarsym.create(internal_static_field_name(csym.realname),vs_final,tsetdef(csym.constdef).getcopy,[vo_is_external,vo_has_local_copy]);
  691. symtablestack.top.insert(ssym);
  692. symtablestack.pop(current_module.localsymtable);
  693. { alias storage to the constsym }
  694. ssym.set_mangledname(csym.realname);
  695. { ensure that we allocate space for global symbols (won't actually
  696. allocate space for this one, since it's external, but for the
  697. constsym) }
  698. cnodeutils.insertbssdata(ssym);
  699. elemdef:=tsetdef(csym.constdef).elementdef;
  700. if not assigned(elemdef) then
  701. begin
  702. internalerror(2011070502);
  703. end
  704. else
  705. begin
  706. elemdefname:=elemdef.typename;
  707. conststr:='[';
  708. first:=true;
  709. for i:=0 to 255 do
  710. if i in pnormalset(csym.value.valueptr)^ then
  711. begin
  712. if not first then
  713. conststr:=conststr+',';
  714. first:=false;
  715. { instead of looking up all enum value names/boolean
  716. names, type cast integers to the required type }
  717. conststr:=conststr+elemdefname+'('+tostr(i)+')';
  718. end;
  719. conststr:=conststr+'];';
  720. end;
  721. str_parse_typedconst(current_asmdata.asmlists[al_typedconsts],conststr,ssym);
  722. restore_scanner(sstate);
  723. result:=ssym;
  724. end;
  725. else
  726. internalerror(2011062701);
  727. end;
  728. end;
  729. function jvm_wrap_method_with_vis(pd: tprocdef; vis: tvisibility): tprocdef;
  730. var
  731. obj: tabstractrecorddef;
  732. visname: string;
  733. begin
  734. obj:=current_structdef;
  735. { if someone gets the idea to add a property to an external class
  736. definition, don't try to wrap it since we cannot add methods to
  737. external classes }
  738. if oo_is_external in obj.objectoptions then
  739. begin
  740. result:=pd;
  741. exit
  742. end;
  743. symtablestack.push(obj.symtable);
  744. result:=tprocdef(pd.getcopy);
  745. result.visibility:=vis;
  746. visname:=visibilityName[vis];
  747. replace(visname,' ','_');
  748. { create a name that is unique amongst all units (start with '$unitname$$') and
  749. unique in this unit (result.defid) }
  750. finish_copied_procdef(result,'$'+current_module.realmodulename^+'$$'+tostr(result.defid)+pd.procsym.realname+'$'+visname,obj.symtable,obj);
  751. { in case the referred method is from an external class }
  752. exclude(result.procoptions,po_external);
  753. { not virtual/override/abstract/... }
  754. result.procoptions:=result.procoptions*[po_classmethod,po_staticmethod,po_varargs,po_public];
  755. result.synthetickind:=tsk_callthrough;
  756. { so we know the name of the routine to call through to }
  757. result.skpara:=pd;
  758. symtablestack.pop(obj.symtable);
  759. end;
  760. procedure jvm_create_getter_or_setter_for_property(p: tpropertysym; getter: boolean);
  761. var
  762. obj: tabstractrecorddef;
  763. ps: tprocsym;
  764. pvs: tparavarsym;
  765. pd: tprocdef;
  766. callthroughpropname,
  767. name: string;
  768. callthroughprop: tpropertysym;
  769. accesstyp: tpropaccesslisttypes;
  770. begin
  771. obj:=current_structdef;
  772. { if someone gets the idea to add a property to an external class
  773. definition, don't try to wrap it since we cannot add methods to
  774. external classes }
  775. if oo_is_external in obj.objectoptions then
  776. exit;
  777. symtablestack.push(obj.symtable);
  778. if getter then
  779. accesstyp:=palt_read
  780. else
  781. accesstyp:=palt_write;
  782. { create a property for the old symaccesslist with a new name, so that
  783. we can reuse it in the implementation (rather than having to
  784. translate the symaccesslist back to Pascal code) }
  785. callthroughpropname:='__fpc__'+p.realname;
  786. if getter then
  787. callthroughpropname:=callthroughpropname+'__getter_wrapper'
  788. else
  789. callthroughpropname:=callthroughpropname+'__setter_wrapper';
  790. callthroughprop:=tpropertysym.create(callthroughpropname);
  791. callthroughprop.visibility:=p.visibility;
  792. callthroughprop.default:=longint($80000000);
  793. if sp_static in p.symoptions then
  794. include(callthroughprop.symoptions, sp_static);
  795. { copy original property target to callthrough property }
  796. callthroughprop.propaccesslist[accesstyp]:=p.propaccesslist[accesstyp];
  797. p.propaccesslist[accesstyp]:=tpropaccesslist.create;
  798. p.owner.insert(callthroughprop);
  799. { we can't use str_parse_method_dec here because the type of the field
  800. may not be visible at the Pascal level }
  801. { create procdef }
  802. pd:=tprocdef.create(normal_function_level);
  803. if df_generic in obj.defoptions then
  804. include(pd.defoptions,df_generic);
  805. { construct procsym name (unique for this access; reusing the same
  806. helper for multiple accesses to the same field is hard because the
  807. propacesslist can contain subscript nodes etc) }
  808. name:=visibilityName[p.visibility];
  809. replace(name,' ','_');
  810. if getter then
  811. name:=name+'$getter'
  812. else
  813. name:=name+'$setter';
  814. name:='$'+obj.symtable.realname^+'$'+p.realname+'$'+name+'$'+tostr(pd.defid);
  815. { new procsym }
  816. ps:=tprocsym.create(name);
  817. obj.symtable.insert(ps);
  818. { associate procsym with procdef}
  819. pd.procsym:=ps;
  820. { method of this objectdef }
  821. pd.struct:=obj;
  822. { visibility }
  823. pd.visibility:=p.visibility;
  824. { function/procedure }
  825. if getter then
  826. begin
  827. pd.proctypeoption:=potype_function;
  828. pd.synthetickind:=tsk_field_getter;
  829. { result type }
  830. pd.returndef:=p.propdef;
  831. end
  832. else
  833. begin
  834. pd.proctypeoption:=potype_procedure;
  835. pd.synthetickind:=tsk_field_setter;
  836. pd.returndef:=voidtype;
  837. { parameter with value to set }
  838. pvs:=tparavarsym.create('__fpc_newval__',10,vs_const,p.propdef,[]);
  839. pd.parast.insert(pvs);
  840. end;
  841. pd.skpara:=callthroughprop;
  842. { needs to be exported }
  843. include(pd.procoptions,po_global);
  844. { class property -> static class method }
  845. if sp_static in p.symoptions then
  846. pd.procoptions:=pd.procoptions+[po_classmethod,po_staticmethod];
  847. { calling convention, self, ... }
  848. handle_calling_convention(pd);
  849. { register forward declaration with procsym }
  850. proc_add_definition(pd);
  851. { make the property call this new function }
  852. p.propaccesslist[accesstyp].addsym(sl_call,ps);
  853. p.propaccesslist[accesstyp].procdef:=pd;
  854. symtablestack.pop(obj.symtable);
  855. end;
  856. procedure jvm_create_getter_for_property(p: tpropertysym);
  857. begin
  858. jvm_create_getter_or_setter_for_property(p,true);
  859. end;
  860. procedure jvm_create_setter_for_property(p: tpropertysym);
  861. begin
  862. jvm_create_getter_or_setter_for_property(p,false);
  863. end;
  864. end.