nld.pas 42 KB

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  1. {
  2. Copyright (c) 2000-2002 by Florian Klaempfl
  3. Type checking and register allocation for load/assignment nodes
  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 nld;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. node,
  22. {$ifdef state_tracking}
  23. nstate,
  24. {$endif}
  25. symconst,symbase,symtype,symsym,symdef;
  26. type
  27. tloadnode = class(tunarynode)
  28. symtableentry : tsym;
  29. symtableentryderef : tderef;
  30. symtable : tsymtable;
  31. procdef : tprocdef;
  32. procdefderef : tderef;
  33. constructor create(v : tsym;st : tsymtable);virtual;
  34. constructor create_procvar(v : tsym;d:tprocdef;st : tsymtable);virtual;
  35. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  36. procedure ppuwrite(ppufile:tcompilerppufile);override;
  37. procedure buildderefimpl;override;
  38. procedure derefimpl;override;
  39. procedure set_mp(p:tnode);
  40. function is_addr_param_load:boolean;
  41. function _getcopy : tnode;override;
  42. function pass_1 : tnode;override;
  43. function det_resulttype:tnode;override;
  44. procedure mark_write;override;
  45. function docompare(p: tnode): boolean; override;
  46. procedure printnodedata(var t:text);override;
  47. end;
  48. tloadnodeclass = class of tloadnode;
  49. { different assignment types }
  50. tassigntype = (at_normal,at_plus,at_minus,at_star,at_slash);
  51. tassignmentnode = class(tbinarynode)
  52. assigntype : tassigntype;
  53. constructor create(l,r : tnode);virtual;
  54. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  55. procedure ppuwrite(ppufile:tcompilerppufile);override;
  56. function _getcopy : tnode;override;
  57. function pass_1 : tnode;override;
  58. function det_resulttype:tnode;override;
  59. {$ifdef state_tracking}
  60. function track_state_pass(exec_known:boolean):boolean;override;
  61. {$endif state_tracking}
  62. function docompare(p: tnode): boolean; override;
  63. end;
  64. tassignmentnodeclass = class of tassignmentnode;
  65. tarrayconstructorrangenode = class(tbinarynode)
  66. constructor create(l,r : tnode);virtual;
  67. function pass_1 : tnode;override;
  68. function det_resulttype:tnode;override;
  69. end;
  70. tarrayconstructorrangenodeclass = class of tarrayconstructorrangenode;
  71. tarrayconstructornode = class(tbinarynode)
  72. constructor create(l,r : tnode);virtual;
  73. function _getcopy : tnode;override;
  74. function pass_1 : tnode;override;
  75. function det_resulttype:tnode;override;
  76. function docompare(p: tnode): boolean; override;
  77. procedure force_type(tt:ttype);
  78. procedure insert_typeconvs;
  79. end;
  80. tarrayconstructornodeclass = class of tarrayconstructornode;
  81. ttypenode = class(tnode)
  82. allowed : boolean;
  83. restype : ttype;
  84. constructor create(t : ttype);virtual;
  85. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  86. procedure ppuwrite(ppufile:tcompilerppufile);override;
  87. procedure buildderefimpl;override;
  88. procedure derefimpl;override;
  89. function pass_1 : tnode;override;
  90. function det_resulttype:tnode;override;
  91. function docompare(p: tnode): boolean; override;
  92. end;
  93. ttypenodeclass = class of ttypenode;
  94. trttinode = class(tnode)
  95. l1,l2 : longint;
  96. rttitype : trttitype;
  97. rttidef : tstoreddef;
  98. rttidefderef : tderef;
  99. constructor create(def:tstoreddef;rt:trttitype);virtual;
  100. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  101. procedure ppuwrite(ppufile:tcompilerppufile);override;
  102. procedure buildderefimpl;override;
  103. procedure derefimpl;override;
  104. function _getcopy : tnode;override;
  105. function pass_1 : tnode;override;
  106. function det_resulttype:tnode;override;
  107. function docompare(p: tnode): boolean; override;
  108. end;
  109. trttinodeclass = class of trttinode;
  110. var
  111. cloadnode : tloadnodeclass;
  112. cassignmentnode : tassignmentnodeclass;
  113. carrayconstructorrangenode : tarrayconstructorrangenodeclass;
  114. carrayconstructornode : tarrayconstructornodeclass;
  115. ctypenode : ttypenodeclass;
  116. crttinode : trttinodeclass;
  117. implementation
  118. uses
  119. cutils,verbose,globtype,globals,systems,
  120. symnot,
  121. defutil,defcmp,
  122. htypechk,pass_1,procinfo,paramgr,
  123. ncon,ninl,ncnv,nmem,ncal,nutils,
  124. cgobj,cgbase
  125. ;
  126. {*****************************************************************************
  127. TLOADNODE
  128. *****************************************************************************}
  129. constructor tloadnode.create(v : tsym;st : tsymtable);
  130. begin
  131. inherited create(loadn,nil);
  132. if not assigned(v) then
  133. internalerror(200108121);
  134. symtableentry:=v;
  135. symtable:=st;
  136. procdef:=nil;
  137. end;
  138. constructor tloadnode.create_procvar(v : tsym;d:tprocdef;st : tsymtable);
  139. begin
  140. inherited create(loadn,nil);
  141. if not assigned(v) then
  142. internalerror(200108121);
  143. symtableentry:=v;
  144. symtable:=st;
  145. procdef:=d;
  146. end;
  147. constructor tloadnode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  148. begin
  149. inherited ppuload(t,ppufile);
  150. ppufile.getderef(symtableentryderef);
  151. symtable:=nil;
  152. ppufile.getderef(procdefderef);
  153. end;
  154. procedure tloadnode.ppuwrite(ppufile:tcompilerppufile);
  155. begin
  156. inherited ppuwrite(ppufile);
  157. ppufile.putderef(symtableentryderef);
  158. ppufile.putderef(procdefderef);
  159. end;
  160. procedure tloadnode.buildderefimpl;
  161. begin
  162. inherited buildderefimpl;
  163. symtableentryderef.build(symtableentry);
  164. procdefderef.build(procdef);
  165. end;
  166. procedure tloadnode.derefimpl;
  167. begin
  168. inherited derefimpl;
  169. symtableentry:=tsym(symtableentryderef.resolve);
  170. symtable:=symtableentry.owner;
  171. procdef:=tprocdef(procdefderef.resolve);
  172. end;
  173. procedure tloadnode.set_mp(p:tnode);
  174. begin
  175. { typen nodes should not be set }
  176. if p.nodetype=typen then
  177. internalerror(200301042);
  178. left:=p;
  179. end;
  180. function tloadnode._getcopy : tnode;
  181. var
  182. n : tloadnode;
  183. begin
  184. n:=tloadnode(inherited _getcopy);
  185. n.symtable:=symtable;
  186. n.symtableentry:=symtableentry;
  187. n.procdef:=procdef;
  188. result:=n;
  189. end;
  190. function tloadnode.is_addr_param_load:boolean;
  191. begin
  192. result:=(symtable.symtabletype=parasymtable) and
  193. (symtableentry.typ=paravarsym) and
  194. not(vo_has_local_copy in tparavarsym(symtableentry).varoptions) and
  195. not(nf_load_self_pointer in flags) and
  196. paramanager.push_addr_param(tparavarsym(symtableentry).varspez,tparavarsym(symtableentry).vartype.def,tprocdef(symtable.defowner).proccalloption);
  197. end;
  198. function tloadnode.det_resulttype:tnode;
  199. begin
  200. result:=nil;
  201. case symtableentry.typ of
  202. absolutevarsym :
  203. resulttype:=tabsolutevarsym(symtableentry).vartype;
  204. constsym:
  205. begin
  206. if tconstsym(symtableentry).consttyp=constresourcestring then
  207. begin
  208. {$ifdef ansistring_bits}
  209. case aktansistring_bits of
  210. sb_16:
  211. resulttype:=cansistringtype16;
  212. sb_32:
  213. resulttype:=cansistringtype32;
  214. sb_64:
  215. resulttype:=cansistringtype64;
  216. end;
  217. {$else}
  218. resulttype:=cansistringtype
  219. {$endif}
  220. end
  221. else
  222. internalerror(22799);
  223. end;
  224. globalvarsym,
  225. paravarsym,
  226. localvarsym :
  227. begin
  228. inc(tabstractvarsym(symtableentry).refs);
  229. { Nested variable? The we need to load the framepointer of
  230. the parent procedure }
  231. if assigned(current_procinfo) then
  232. begin
  233. if (symtable.symtabletype in [localsymtable,parasymtable]) and
  234. (symtable.symtablelevel<>current_procinfo.procdef.parast.symtablelevel) then
  235. begin
  236. if assigned(left) then
  237. internalerror(200309289);
  238. left:=cloadparentfpnode.create(tprocdef(symtable.defowner));
  239. { reference in nested procedures, variable needs to be in memory }
  240. make_not_regable(self);
  241. end;
  242. { static variables referenced in procedures or from finalization,
  243. variable needs to be in memory.
  244. It is too hard and the benefit is too small to detect whether a
  245. variable is only used in the finalization to add support for it (PFV) }
  246. if (symtable.symtabletype=staticsymtable) and
  247. (
  248. (symtable.symtablelevel<>current_procinfo.procdef.localst.symtablelevel) or
  249. (current_procinfo.procdef.proctypeoption=potype_unitfinalize)
  250. ) then
  251. make_not_regable(self);
  252. end;
  253. { fix self type which is declared as voidpointer in the
  254. definition }
  255. if vo_is_self in tabstractvarsym(symtableentry).varoptions then
  256. begin
  257. resulttype.setdef(tprocdef(symtableentry.owner.defowner)._class);
  258. if (po_classmethod in tprocdef(symtableentry.owner.defowner).procoptions) or
  259. (po_staticmethod in tprocdef(symtableentry.owner.defowner).procoptions) then
  260. resulttype.setdef(tclassrefdef.create(resulttype))
  261. else if is_object(resulttype.def) and
  262. (nf_load_self_pointer in flags) then
  263. resulttype.setdef(tpointerdef.create(resulttype));
  264. end
  265. else if vo_is_vmt in tabstractvarsym(symtableentry).varoptions then
  266. begin
  267. resulttype.setdef(tprocdef(symtableentry.owner.defowner)._class);
  268. resulttype.setdef(tclassrefdef.create(resulttype));
  269. end
  270. else
  271. resulttype:=tabstractvarsym(symtableentry).vartype;
  272. end;
  273. typedconstsym :
  274. resulttype:=ttypedconstsym(symtableentry).typedconsttype;
  275. procsym :
  276. begin
  277. if not assigned(procdef) then
  278. begin
  279. if Tprocsym(symtableentry).procdef_count>1 then
  280. CGMessage(parser_e_no_overloaded_procvars);
  281. procdef:=tprocsym(symtableentry).first_procdef;
  282. end;
  283. { the result is a procdef, addrn and proc_to_procvar
  284. typeconvn need this as resulttype so they know
  285. that the address needs to be returned }
  286. resulttype.setdef(procdef);
  287. { process methodpointer }
  288. if assigned(left) then
  289. resulttypepass(left);
  290. end;
  291. labelsym:
  292. resulttype:=voidtype;
  293. else
  294. internalerror(200104141);
  295. end;
  296. end;
  297. procedure Tloadnode.mark_write;
  298. begin
  299. include(flags,nf_write);
  300. end;
  301. function tloadnode.pass_1 : tnode;
  302. begin
  303. result:=nil;
  304. expectloc:=LOC_REFERENCE;
  305. registersint:=0;
  306. registersfpu:=0;
  307. {$ifdef SUPPORT_MMX}
  308. registersmmx:=0;
  309. {$endif SUPPORT_MMX}
  310. if (cs_create_pic in aktmoduleswitches) and
  311. not(symtableentry.typ in [paravarsym,localvarsym]) then
  312. include(current_procinfo.flags,pi_needs_got);
  313. case symtableentry.typ of
  314. absolutevarsym :
  315. ;
  316. constsym:
  317. begin
  318. if tconstsym(symtableentry).consttyp=constresourcestring then
  319. expectloc:=LOC_CREFERENCE;
  320. end;
  321. globalvarsym,
  322. localvarsym,
  323. paravarsym :
  324. begin
  325. if assigned(left) then
  326. firstpass(left);
  327. if not is_addr_param_load and
  328. tabstractvarsym(symtableentry).is_regvar then
  329. begin
  330. case tabstractvarsym(symtableentry).varregable of
  331. vr_intreg :
  332. expectloc:=LOC_CREGISTER;
  333. vr_fpureg :
  334. expectloc:=LOC_CFPUREGISTER;
  335. vr_mmreg :
  336. expectloc:=LOC_CMMREGISTER;
  337. end
  338. end
  339. else
  340. if (tabstractvarsym(symtableentry).varspez=vs_const) then
  341. expectloc:=LOC_CREFERENCE;
  342. { we need a register for call by reference parameters }
  343. if paramanager.push_addr_param(tabstractvarsym(symtableentry).varspez,tabstractvarsym(symtableentry).vartype.def,pocall_default) then
  344. registersint:=1;
  345. if ([vo_is_thread_var,vo_is_dll_var]*tabstractvarsym(symtableentry).varoptions)<>[] then
  346. registersint:=1;
  347. if (target_info.system=system_powerpc_darwin) and
  348. ([vo_is_dll_var,vo_is_external] * tabstractvarsym(symtableentry).varoptions <> []) then
  349. include(current_procinfo.flags,pi_needs_got);
  350. { call to get address of threadvar }
  351. if (vo_is_thread_var in tabstractvarsym(symtableentry).varoptions) then
  352. include(current_procinfo.flags,pi_do_call);
  353. if nf_write in flags then
  354. Tabstractvarsym(symtableentry).trigger_notifications(vn_onwrite)
  355. else
  356. Tabstractvarsym(symtableentry).trigger_notifications(vn_onread);
  357. { count variable references }
  358. if cg.t_times>1 then
  359. inc(tabstractvarsym(symtableentry).refs,cg.t_times-1);
  360. end;
  361. typedconstsym :
  362. ;
  363. procsym :
  364. begin
  365. { method pointer ? }
  366. if assigned(left) then
  367. begin
  368. expectloc:=LOC_CREFERENCE;
  369. firstpass(left);
  370. registersint:=max(registersint,left.registersint);
  371. registersfpu:=max(registersfpu,left.registersfpu);
  372. {$ifdef SUPPORT_MMX}
  373. registersmmx:=max(registersmmx,left.registersmmx);
  374. {$endif SUPPORT_MMX}
  375. end;
  376. end;
  377. labelsym :
  378. ;
  379. else
  380. internalerror(200104143);
  381. end;
  382. end;
  383. function tloadnode.docompare(p: tnode): boolean;
  384. begin
  385. docompare :=
  386. inherited docompare(p) and
  387. (symtableentry = tloadnode(p).symtableentry) and
  388. (procdef = tloadnode(p).procdef) and
  389. (symtable = tloadnode(p).symtable);
  390. end;
  391. procedure Tloadnode.printnodedata(var t:text);
  392. begin
  393. inherited printnodedata(t);
  394. write(t,printnodeindention,'symbol = ',symtableentry.name);
  395. if symtableentry.typ=procsym then
  396. write(t,printnodeindention,'procdef = ',procdef.mangledname);
  397. writeln(t,'');
  398. end;
  399. {*****************************************************************************
  400. TASSIGNMENTNODE
  401. *****************************************************************************}
  402. constructor tassignmentnode.create(l,r : tnode);
  403. begin
  404. inherited create(assignn,l,r);
  405. l.mark_write;
  406. assigntype:=at_normal;
  407. end;
  408. constructor tassignmentnode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  409. begin
  410. inherited ppuload(t,ppufile);
  411. assigntype:=tassigntype(ppufile.getbyte);
  412. end;
  413. procedure tassignmentnode.ppuwrite(ppufile:tcompilerppufile);
  414. begin
  415. inherited ppuwrite(ppufile);
  416. ppufile.putbyte(byte(assigntype));
  417. end;
  418. function tassignmentnode._getcopy : tnode;
  419. var
  420. n : tassignmentnode;
  421. begin
  422. n:=tassignmentnode(inherited _getcopy);
  423. n.assigntype:=assigntype;
  424. result:=n;
  425. end;
  426. function tassignmentnode.det_resulttype:tnode;
  427. var
  428. hp : tnode;
  429. useshelper : boolean;
  430. original_size : longint;
  431. begin
  432. result:=nil;
  433. resulttype:=voidtype;
  434. original_size := 0;
  435. { must be made unique }
  436. set_unique(left);
  437. resulttypepass(left);
  438. if is_ansistring(left.resulttype.def) then
  439. begin
  440. { fold <ansistring>:=<ansistring>+<char|shortstring|ansistring> }
  441. if (right.nodetype=addn) and
  442. left.isequal(tbinarynode(right).left) and
  443. { don't fold multiple concatenations else we could get trouble
  444. with multiple uses of s
  445. }
  446. (tbinarynode(right).left.nodetype<>addn) and
  447. (tbinarynode(right).right.nodetype<>addn) then
  448. begin
  449. { don't do a resulttypepass(right), since then the addnode }
  450. { may insert typeconversions that make this optimization }
  451. { opportunity quite difficult to detect (JM) }
  452. resulttypepass(tbinarynode(right).left);
  453. resulttypepass(tbinarynode(right).right);
  454. if (is_char(tbinarynode(right).right.resulttype.def) or
  455. is_shortstring(tbinarynode(right).right.resulttype.def) or
  456. is_ansistring(tbinarynode(right).right.resulttype.def)) then
  457. begin
  458. { remove property flag so it'll not trigger an error }
  459. exclude(left.flags,nf_isproperty);
  460. { generate call to helper }
  461. hp:=ccallparanode.create(tbinarynode(right).right,
  462. ccallparanode.create(left,nil));
  463. if is_char(tbinarynode(right).right.resulttype.def) then
  464. result:=ccallnode.createintern('fpc_'+Tstringdef(left.resulttype.def).stringtypname+'_append_char',hp)
  465. else if is_shortstring(tbinarynode(right).right.resulttype.def) then
  466. result:=ccallnode.createintern('fpc_'+Tstringdef(left.resulttype.def).stringtypname+'_append_shortstring',hp)
  467. else
  468. result:=ccallnode.createintern('fpc_'+Tstringdef(left.resulttype.def).stringtypname+'_append_ansistring',hp);
  469. tbinarynode(right).right:=nil;
  470. left:=nil;
  471. exit;
  472. end;
  473. end;
  474. end
  475. else
  476. if is_shortstring(left.resulttype.def) then
  477. begin
  478. { fold <shortstring>:=<shortstring>+<shortstring>,
  479. <shortstring>+<char> is handled by an optimized node }
  480. if (right.nodetype=addn) and
  481. left.isequal(tbinarynode(right).left) and
  482. { don't fold multiple concatenations else we could get trouble
  483. with multiple uses of s }
  484. (tbinarynode(right).left.nodetype<>addn) and
  485. (tbinarynode(right).right.nodetype<>addn) then
  486. begin
  487. { don't do a resulttypepass(right), since then the addnode }
  488. { may insert typeconversions that make this optimization }
  489. { opportunity quite difficult to detect (JM) }
  490. resulttypepass(tbinarynode(right).left);
  491. resulttypepass(tbinarynode(right).right);
  492. if is_shortstring(tbinarynode(right).right.resulttype.def) then
  493. begin
  494. { remove property flag so it'll not trigger an error }
  495. exclude(left.flags,nf_isproperty);
  496. { generate call to helper }
  497. hp:=ccallparanode.create(tbinarynode(right).right,
  498. ccallparanode.create(left,nil));
  499. if is_shortstring(tbinarynode(right).right.resulttype.def) then
  500. result:=ccallnode.createintern('fpc_shortstr_append_shortstr',hp);
  501. tbinarynode(right).right:=nil;
  502. left:=nil;
  503. exit;
  504. end;
  505. end;
  506. end;
  507. resulttypepass(right);
  508. set_varstate(left,vs_assigned,[]);
  509. set_varstate(right,vs_used,[vsf_must_be_valid]);
  510. if codegenerror then
  511. exit;
  512. { tp procvar support, when we don't expect a procvar
  513. then we need to call the procvar }
  514. if (left.resulttype.def.deftype<>procvardef) then
  515. maybe_call_procvar(right,true);
  516. { assignments to formaldefs and open arrays aren't allowed }
  517. if (left.resulttype.def.deftype=formaldef) or
  518. is_open_array(left.resulttype.def) then
  519. CGMessage(type_e_operator_not_allowed);
  520. { test if node can be assigned, properties are allowed }
  521. valid_for_assignment(left);
  522. { assigning nil to a dynamic array clears the array }
  523. if is_dynamic_array(left.resulttype.def) and
  524. (right.nodetype=niln) then
  525. begin
  526. hp:=ccallparanode.create(caddrnode.create_internal
  527. (crttinode.create(tstoreddef(left.resulttype.def),initrtti)),
  528. ccallparanode.create(ctypeconvnode.create_internal(left,voidpointertype),nil));
  529. result := ccallnode.createintern('fpc_dynarray_clear',hp);
  530. left:=nil;
  531. exit;
  532. end;
  533. { shortstring helpers can do the conversion directly,
  534. so treat them separatly }
  535. if (is_shortstring(left.resulttype.def)) then
  536. begin
  537. { insert typeconv, except for chars that are handled in
  538. secondpass and except for ansi/wide string that can
  539. be converted immediatly }
  540. if not(is_char(right.resulttype.def) or
  541. (right.resulttype.def.deftype=stringdef)) then
  542. inserttypeconv(right,left.resulttype);
  543. if right.resulttype.def.deftype=stringdef then
  544. begin
  545. useshelper:=true;
  546. { convert constant strings to shortstrings. But
  547. skip empty constant strings, that will be handled
  548. in secondpass }
  549. if (right.nodetype=stringconstn) then
  550. begin
  551. { verify if range fits within shortstring }
  552. { just emit a warning, delphi gives an }
  553. { error, only if the type definition of }
  554. { of the string is less < 255 characters }
  555. if not is_open_string(left.resulttype.def) and
  556. (tstringconstnode(right).len > tstringdef(left.resulttype.def).len) then
  557. cgmessage(type_w_string_too_long);
  558. inserttypeconv(right,left.resulttype);
  559. if (tstringconstnode(right).len=0) then
  560. useshelper:=false;
  561. end;
  562. { rest is done in pass 1 (JM) }
  563. if useshelper then
  564. exit;
  565. end
  566. end
  567. else
  568. begin
  569. { get the size before the type conversion - check for all nodes }
  570. if assigned(right.resulttype.def) and
  571. (right.resulttype.def.deftype in [enumdef,orddef,floatdef]) and
  572. (right.nodetype in [loadn,vecn,calln]) then
  573. original_size := right.resulttype.def.size;
  574. inserttypeconv(right,left.resulttype);
  575. end;
  576. { check if the assignment may cause a range check error }
  577. { if its not explicit, and only if the values are }
  578. { ordinals, enumdef and floatdef }
  579. if (right.nodetype = typeconvn) and
  580. not (nf_explicit in ttypeconvnode(right).flags) then
  581. begin
  582. if assigned(left.resulttype.def) and
  583. (left.resulttype.def.deftype in [enumdef,orddef,floatdef]) and
  584. not is_boolean(left.resulttype.def) then
  585. begin
  586. if (original_size <> 0) and
  587. (left.resulttype.def.size < original_size) then
  588. begin
  589. if (cs_check_range in aktlocalswitches) then
  590. Message(type_w_smaller_possible_range_check)
  591. else
  592. Message(type_h_smaller_possible_range_check);
  593. end;
  594. end;
  595. end;
  596. { call helpers for interface }
  597. if is_interfacecom(left.resulttype.def) then
  598. begin
  599. hp:=ccallparanode.create(ctypeconvnode.create_internal
  600. (right,voidpointertype),
  601. ccallparanode.create(ctypeconvnode.create_internal
  602. (left,voidpointertype),nil));
  603. result:=ccallnode.createintern('fpc_intf_assign',hp);
  604. left:=nil;
  605. right:=nil;
  606. exit;
  607. end;
  608. { call helpers for variant, they can contain non ref. counted types like
  609. vararrays which must be really copied }
  610. if left.resulttype.def.deftype=variantdef then
  611. begin
  612. hp:=ccallparanode.create(ctypeconvnode.create_internal(
  613. caddrnode.create_internal(right),voidpointertype),
  614. ccallparanode.create(ctypeconvnode.create_internal(
  615. caddrnode.create_internal(left),voidpointertype),
  616. nil));
  617. result:=ccallnode.createintern('fpc_variant_copy',hp);
  618. left:=nil;
  619. right:=nil;
  620. exit;
  621. end;
  622. { check if local proc/func is assigned to procvar }
  623. if right.resulttype.def.deftype=procvardef then
  624. test_local_to_procvar(tprocvardef(right.resulttype.def),left.resulttype.def);
  625. end;
  626. function tassignmentnode.pass_1 : tnode;
  627. var
  628. hp: tnode;
  629. begin
  630. result:=nil;
  631. expectloc:=LOC_VOID;
  632. firstpass(left);
  633. firstpass(right);
  634. { assignment to refcounted variable -> inc/decref }
  635. if (not is_class(left.resulttype.def) and
  636. left.resulttype.def.needs_inittable) then
  637. include(current_procinfo.flags,pi_do_call);
  638. if codegenerror then
  639. exit;
  640. if (is_shortstring(left.resulttype.def)) then
  641. begin
  642. if right.resulttype.def.deftype=stringdef then
  643. begin
  644. if (right.nodetype<>stringconstn) or
  645. (tstringconstnode(right).len<>0) then
  646. begin
  647. if (cs_optimize in aktglobalswitches) and
  648. (right.nodetype in [calln,blockn]) and
  649. (left.nodetype = temprefn) and
  650. is_shortstring(right.resulttype.def) and
  651. not is_open_string(left.resulttype.def) and
  652. (tstringdef(left.resulttype.def).len = 255) then
  653. begin
  654. { the blocknode case is handled in pass_2 at the temp }
  655. { reference level (mainly for callparatemp) (JM) }
  656. if (right.nodetype = calln) then
  657. begin
  658. tcallnode(right).funcretnode := left;
  659. result := right;
  660. end
  661. else
  662. exit;
  663. end
  664. else
  665. begin
  666. hp:=ccallparanode.create
  667. (right,
  668. ccallparanode.create(cinlinenode.create
  669. (in_high_x,false,left.getcopy),nil));
  670. result:=ccallnode.createinternreturn('fpc_'+tstringdef(right.resulttype.def).stringtypname+'_to_shortstr',hp,left);
  671. firstpass(result);
  672. end;
  673. left:=nil;
  674. right:=nil;
  675. exit;
  676. end;
  677. end;
  678. end;
  679. if (cs_optimize in aktglobalswitches) and
  680. (right.nodetype = calln) and
  681. { left must be a temp, since otherwise as soon as you modify the }
  682. { result, the current left node is modified and that one may }
  683. { still be an argument to the function or even accessed in the }
  684. { function }
  685. (((left.nodetype = temprefn) and
  686. paramanager.ret_in_param(right.resulttype.def,
  687. tcallnode(right).procdefinition.proccalloption)) or
  688. { there's special support for ansi/widestrings in the callnode }
  689. is_ansistring(right.resulttype.def) or
  690. is_widestring(right.resulttype.def)) then
  691. begin
  692. tcallnode(right).funcretnode := left;
  693. result := right;
  694. left := nil;
  695. right := nil;
  696. exit;
  697. end;
  698. registersint:=left.registersint+right.registersint;
  699. registersfpu:=max(left.registersfpu,right.registersfpu);
  700. {$ifdef SUPPORT_MMX}
  701. registersmmx:=max(left.registersmmx,right.registersmmx);
  702. {$endif SUPPORT_MMX}
  703. end;
  704. function tassignmentnode.docompare(p: tnode): boolean;
  705. begin
  706. docompare :=
  707. inherited docompare(p) and
  708. (assigntype = tassignmentnode(p).assigntype);
  709. end;
  710. {$ifdef state_tracking}
  711. function Tassignmentnode.track_state_pass(exec_known:boolean):boolean;
  712. var se:Tstate_entry;
  713. begin
  714. track_state_pass:=false;
  715. if exec_known then
  716. begin
  717. track_state_pass:=right.track_state_pass(exec_known);
  718. {Force a new resulttype pass.}
  719. right.resulttype.def:=nil;
  720. do_resulttypepass(right);
  721. resulttypepass(right);
  722. aktstate.store_fact(left.getcopy,right.getcopy);
  723. end
  724. else
  725. aktstate.delete_fact(left);
  726. end;
  727. {$endif}
  728. {*****************************************************************************
  729. TARRAYCONSTRUCTORRANGENODE
  730. *****************************************************************************}
  731. constructor tarrayconstructorrangenode.create(l,r : tnode);
  732. begin
  733. inherited create(arrayconstructorrangen,l,r);
  734. end;
  735. function tarrayconstructorrangenode.det_resulttype:tnode;
  736. begin
  737. result:=nil;
  738. resulttypepass(left);
  739. resulttypepass(right);
  740. set_varstate(left,vs_used,[vsf_must_be_valid]);
  741. set_varstate(right,vs_used,[vsf_must_be_valid]);
  742. if codegenerror then
  743. exit;
  744. resulttype:=left.resulttype;
  745. end;
  746. function tarrayconstructorrangenode.pass_1 : tnode;
  747. begin
  748. firstpass(left);
  749. firstpass(right);
  750. expectloc:=LOC_CREFERENCE;
  751. calcregisters(self,0,0,0);
  752. result:=nil;
  753. end;
  754. {****************************************************************************
  755. TARRAYCONSTRUCTORNODE
  756. *****************************************************************************}
  757. constructor tarrayconstructornode.create(l,r : tnode);
  758. begin
  759. inherited create(arrayconstructorn,l,r);
  760. end;
  761. function tarrayconstructornode._getcopy : tnode;
  762. var
  763. n : tarrayconstructornode;
  764. begin
  765. n:=tarrayconstructornode(inherited _getcopy);
  766. result:=n;
  767. end;
  768. function tarrayconstructornode.det_resulttype:tnode;
  769. var
  770. htype : ttype;
  771. hp : tarrayconstructornode;
  772. len : longint;
  773. varia : boolean;
  774. begin
  775. result:=nil;
  776. { are we allowing array constructor? Then convert it to a set }
  777. if not allow_array_constructor then
  778. begin
  779. hp:=tarrayconstructornode(getcopy);
  780. arrayconstructor_to_set(tnode(hp));
  781. result:=hp;
  782. exit;
  783. end;
  784. { only pass left tree, right tree contains next construct if any }
  785. htype.reset;
  786. len:=0;
  787. varia:=false;
  788. if assigned(left) then
  789. begin
  790. hp:=self;
  791. while assigned(hp) do
  792. begin
  793. resulttypepass(hp.left);
  794. set_varstate(hp.left,vs_used,[vsf_must_be_valid]);
  795. if (htype.def=nil) then
  796. htype:=hp.left.resulttype
  797. else
  798. begin
  799. if ((nf_novariaallowed in flags) or (not varia)) and
  800. (not equal_defs(htype.def,hp.left.resulttype.def)) then
  801. begin
  802. varia:=true;
  803. end;
  804. end;
  805. inc(len);
  806. hp:=tarrayconstructornode(hp.right);
  807. end;
  808. end;
  809. { Set the type of empty or varia arrays to void. Also
  810. do this if the type is array of const/open array
  811. because those can't be used with setelementtype }
  812. if not assigned(htype.def) or
  813. varia or
  814. is_array_of_const(htype.def) or
  815. is_open_array(htype.def) then
  816. htype:=voidtype;
  817. resulttype.setdef(tarraydef.create(0,len-1,s32inttype));
  818. tarraydef(resulttype.def).setelementtype(htype);
  819. tarraydef(resulttype.def).IsConstructor:=true;
  820. tarraydef(resulttype.def).IsVariant:=varia;
  821. end;
  822. procedure tarrayconstructornode.force_type(tt:ttype);
  823. var
  824. hp : tarrayconstructornode;
  825. begin
  826. tarraydef(resulttype.def).setelementtype(tt);
  827. tarraydef(resulttype.def).IsConstructor:=true;
  828. tarraydef(resulttype.def).IsVariant:=false;
  829. if assigned(left) then
  830. begin
  831. hp:=self;
  832. while assigned(hp) do
  833. begin
  834. inserttypeconv(hp.left,tt);
  835. hp:=tarrayconstructornode(hp.right);
  836. end;
  837. end;
  838. end;
  839. procedure tarrayconstructornode.insert_typeconvs;
  840. var
  841. hp : tarrayconstructornode;
  842. dovariant : boolean;
  843. begin
  844. dovariant:=(nf_forcevaria in flags) or tarraydef(resulttype.def).isvariant;
  845. { only pass left tree, right tree contains next construct if any }
  846. if assigned(left) then
  847. begin
  848. hp:=self;
  849. while assigned(hp) do
  850. begin
  851. resulttypepass(hp.left);
  852. { Insert typeconvs for array of const }
  853. if dovariant then
  854. begin
  855. case hp.left.resulttype.def.deftype of
  856. enumdef :
  857. hp.left:=ctypeconvnode.create_internal(hp.left,s32inttype);
  858. arraydef :
  859. begin
  860. if is_chararray(hp.left.resulttype.def) then
  861. hp.left:=ctypeconvnode.create_internal(hp.left,charpointertype)
  862. else
  863. if is_widechararray(hp.left.resulttype.def) then
  864. hp.left:=ctypeconvnode.create_internal(hp.left,widecharpointertype)
  865. else
  866. CGMessagePos1(hp.left.fileinfo,type_e_wrong_type_in_array_constructor,hp.left.resulttype.def.typename);
  867. end;
  868. orddef :
  869. begin
  870. if is_integer(hp.left.resulttype.def) and
  871. not(is_64bitint(hp.left.resulttype.def)) then
  872. hp.left:=ctypeconvnode.create(hp.left,s32inttype);
  873. end;
  874. floatdef :
  875. if not(is_currency(hp.left.resulttype.def)) then
  876. hp.left:=ctypeconvnode.create(hp.left,pbestrealtype^);
  877. procvardef :
  878. hp.left:=ctypeconvnode.create(hp.left,voidpointertype);
  879. stringdef,
  880. variantdef,
  881. pointerdef,
  882. classrefdef:
  883. ;
  884. objectdef :
  885. if is_object(hp.left.resulttype.def) then
  886. CGMessagePos1(hp.left.fileinfo,type_e_wrong_type_in_array_constructor,hp.left.resulttype.def.typename);
  887. else
  888. CGMessagePos1(hp.left.fileinfo,type_e_wrong_type_in_array_constructor,hp.left.resulttype.def.typename);
  889. end;
  890. end;
  891. resulttypepass(hp.left);
  892. hp:=tarrayconstructornode(hp.right);
  893. end;
  894. end;
  895. end;
  896. function tarrayconstructornode.pass_1 : tnode;
  897. var
  898. hp : tarrayconstructornode;
  899. do_variant:boolean;
  900. begin
  901. do_variant:=(nf_forcevaria in flags) or tarraydef(resulttype.def).isvariant;
  902. result:=nil;
  903. { Insert required type convs, this must be
  904. done in pass 1, because the call must be
  905. resulttypepassed already }
  906. if assigned(left) then
  907. begin
  908. insert_typeconvs;
  909. { call firstpass for all nodes }
  910. hp:=self;
  911. while assigned(hp) do
  912. begin
  913. if hp.left<>nil then
  914. begin
  915. {This check is pessimistic; a call will happen depending
  916. on the location in which the elements will be found in
  917. pass 2.}
  918. if not do_variant then
  919. include(current_procinfo.flags,pi_do_call);
  920. firstpass(hp.left);
  921. end;
  922. hp:=tarrayconstructornode(hp.right);
  923. end;
  924. end;
  925. expectloc:=LOC_CREFERENCE;
  926. calcregisters(self,0,0,0);
  927. end;
  928. function tarrayconstructornode.docompare(p: tnode): boolean;
  929. begin
  930. docompare:=inherited docompare(p);
  931. end;
  932. {*****************************************************************************
  933. TTYPENODE
  934. *****************************************************************************}
  935. constructor ttypenode.create(t : ttype);
  936. begin
  937. inherited create(typen);
  938. restype:=t;
  939. allowed:=false;
  940. end;
  941. constructor ttypenode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  942. begin
  943. inherited ppuload(t,ppufile);
  944. ppufile.gettype(restype);
  945. allowed:=boolean(ppufile.getbyte);
  946. end;
  947. procedure ttypenode.ppuwrite(ppufile:tcompilerppufile);
  948. begin
  949. inherited ppuwrite(ppufile);
  950. ppufile.puttype(restype);
  951. ppufile.putbyte(byte(allowed));
  952. end;
  953. procedure ttypenode.buildderefimpl;
  954. begin
  955. inherited buildderefimpl;
  956. restype.buildderef;
  957. end;
  958. procedure ttypenode.derefimpl;
  959. begin
  960. inherited derefimpl;
  961. restype.resolve;
  962. end;
  963. function ttypenode.det_resulttype:tnode;
  964. begin
  965. result:=nil;
  966. resulttype:=restype;
  967. { check if it's valid }
  968. if restype.def.deftype = errordef then
  969. CGMessage(parser_e_illegal_expression);
  970. end;
  971. function ttypenode.pass_1 : tnode;
  972. begin
  973. result:=nil;
  974. expectloc:=LOC_VOID;
  975. { a typenode can't generate code, so we give here
  976. an error. Else it'll be an abstract error in pass_2.
  977. Only when the allowed flag is set we don't generate
  978. an error }
  979. if not allowed then
  980. Message(parser_e_no_type_not_allowed_here);
  981. end;
  982. function ttypenode.docompare(p: tnode): boolean;
  983. begin
  984. docompare :=
  985. inherited docompare(p);
  986. end;
  987. {*****************************************************************************
  988. TRTTINODE
  989. *****************************************************************************}
  990. constructor trttinode.create(def:tstoreddef;rt:trttitype);
  991. begin
  992. inherited create(rttin);
  993. rttidef:=def;
  994. rttitype:=rt;
  995. end;
  996. constructor trttinode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  997. begin
  998. inherited ppuload(t,ppufile);
  999. ppufile.getderef(rttidefderef);
  1000. rttitype:=trttitype(ppufile.getbyte);
  1001. end;
  1002. procedure trttinode.ppuwrite(ppufile:tcompilerppufile);
  1003. begin
  1004. inherited ppuwrite(ppufile);
  1005. ppufile.putderef(rttidefderef);
  1006. ppufile.putbyte(byte(rttitype));
  1007. end;
  1008. procedure trttinode.buildderefimpl;
  1009. begin
  1010. inherited buildderefimpl;
  1011. rttidefderef.build(rttidef);
  1012. end;
  1013. procedure trttinode.derefimpl;
  1014. begin
  1015. inherited derefimpl;
  1016. rttidef:=tstoreddef(rttidefderef.resolve);
  1017. end;
  1018. function trttinode._getcopy : tnode;
  1019. var
  1020. n : trttinode;
  1021. begin
  1022. n:=trttinode(inherited _getcopy);
  1023. n.rttidef:=rttidef;
  1024. n.rttitype:=rttitype;
  1025. result:=n;
  1026. end;
  1027. function trttinode.det_resulttype:tnode;
  1028. begin
  1029. { rtti information will be returned as a void pointer }
  1030. result:=nil;
  1031. resulttype:=voidpointertype;
  1032. end;
  1033. function trttinode.pass_1 : tnode;
  1034. begin
  1035. result:=nil;
  1036. expectloc:=LOC_CREFERENCE;
  1037. end;
  1038. function trttinode.docompare(p: tnode): boolean;
  1039. begin
  1040. docompare :=
  1041. inherited docompare(p) and
  1042. (rttidef = trttinode(p).rttidef) and
  1043. (rttitype = trttinode(p).rttitype);
  1044. end;
  1045. begin
  1046. cloadnode:=tloadnode;
  1047. cassignmentnode:=tassignmentnode;
  1048. carrayconstructorrangenode:=tarrayconstructorrangenode;
  1049. carrayconstructornode:=tarrayconstructornode;
  1050. ctypenode:=ttypenode;
  1051. crttinode:=trttinode;
  1052. end.