ncnv.pas 104 KB

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  1. {
  2. Copyright (c) 2000-2002 by Florian Klaempfl
  3. Type checking and register allocation for type converting 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 ncnv;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. node,
  22. symtype,
  23. defutil,defcmp,
  24. nld
  25. ;
  26. type
  27. ttypeconvnode = class(tunarynode)
  28. totypedef : tdef;
  29. totypedefderef : tderef;
  30. convtype : tconverttype;
  31. constructor create(node : tnode;def:tdef);virtual;
  32. constructor create_explicit(node : tnode;def:tdef);
  33. constructor create_internal(node : tnode;def:tdef);
  34. constructor create_proc_to_procvar(node : tnode);
  35. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  36. procedure ppuwrite(ppufile:tcompilerppufile);override;
  37. procedure buildderefimpl;override;
  38. procedure derefimpl;override;
  39. function dogetcopy : tnode;override;
  40. procedure printnodeinfo(var t : text);override;
  41. function pass_1 : tnode;override;
  42. function pass_typecheck:tnode;override;
  43. function simplify:tnode; override;
  44. procedure mark_write;override;
  45. function docompare(p: tnode) : boolean; override;
  46. function assign_allowed:boolean;
  47. procedure second_call_helper(c : tconverttype);
  48. private
  49. function typecheck_int_to_int : tnode;
  50. function typecheck_cord_to_pointer : tnode;
  51. function typecheck_chararray_to_string : tnode;
  52. function typecheck_string_to_chararray : tnode;
  53. function typecheck_string_to_string : tnode;
  54. function typecheck_char_to_string : tnode;
  55. function typecheck_char_to_chararray : tnode;
  56. function typecheck_int_to_real : tnode;
  57. function typecheck_real_to_real : tnode;
  58. function typecheck_real_to_currency : tnode;
  59. function typecheck_cchar_to_pchar : tnode;
  60. function typecheck_cstring_to_pchar : tnode;
  61. function typecheck_cstring_to_int : tnode;
  62. function typecheck_char_to_char : tnode;
  63. function typecheck_arrayconstructor_to_set : tnode;
  64. function typecheck_set_to_set : tnode;
  65. function typecheck_pchar_to_string : tnode;
  66. function typecheck_interface_to_guid : tnode;
  67. function typecheck_dynarray_to_openarray : tnode;
  68. function typecheck_pwchar_to_string : tnode;
  69. function typecheck_variant_to_dynarray : tnode;
  70. function typecheck_dynarray_to_variant : tnode;
  71. function typecheck_call_helper(c : tconverttype) : tnode;
  72. function typecheck_variant_to_enum : tnode;
  73. function typecheck_enum_to_variant : tnode;
  74. function typecheck_proc_to_procvar : tnode;
  75. function typecheck_variant_to_interface : tnode;
  76. function typecheck_interface_to_variant : tnode;
  77. function typecheck_array_2_dynarray : tnode;
  78. protected
  79. function first_int_to_int : tnode;virtual;
  80. function first_cstring_to_pchar : tnode;virtual;
  81. function first_cstring_to_int : tnode;virtual;
  82. function first_string_to_chararray : tnode;virtual;
  83. function first_char_to_string : tnode;virtual;
  84. function first_nothing : tnode;virtual;
  85. function first_array_to_pointer : tnode;virtual;
  86. function first_int_to_real : tnode;virtual;
  87. function first_real_to_real : tnode;virtual;
  88. function first_pointer_to_array : tnode;virtual;
  89. function first_cchar_to_pchar : tnode;virtual;
  90. function first_bool_to_int : tnode;virtual;
  91. function first_int_to_bool : tnode;virtual;
  92. function first_bool_to_bool : tnode;virtual;
  93. function first_proc_to_procvar : tnode;virtual;
  94. function first_set_to_set : tnode;virtual;
  95. function first_cord_to_pointer : tnode;virtual;
  96. function first_ansistring_to_pchar : tnode;virtual;
  97. function first_arrayconstructor_to_set : tnode;virtual;
  98. function first_class_to_intf : tnode;virtual;
  99. function first_char_to_char : tnode;virtual;
  100. function first_call_helper(c : tconverttype) : tnode;
  101. { these wrapper are necessary, because the first_* stuff is called }
  102. { through a table. Without the wrappers override wouldn't have }
  103. { any effect }
  104. function _first_int_to_int : tnode;
  105. function _first_cstring_to_pchar : tnode;
  106. function _first_cstring_to_int : tnode;
  107. function _first_string_to_chararray : tnode;
  108. function _first_char_to_string : tnode;
  109. function _first_nothing : tnode;
  110. function _first_array_to_pointer : tnode;
  111. function _first_int_to_real : tnode;
  112. function _first_real_to_real: tnode;
  113. function _first_pointer_to_array : tnode;
  114. function _first_cchar_to_pchar : tnode;
  115. function _first_bool_to_int : tnode;
  116. function _first_int_to_bool : tnode;
  117. function _first_bool_to_bool : tnode;
  118. function _first_proc_to_procvar : tnode;
  119. function _first_cord_to_pointer : tnode;
  120. function _first_ansistring_to_pchar : tnode;
  121. function _first_arrayconstructor_to_set : tnode;
  122. function _first_class_to_intf : tnode;
  123. function _first_char_to_char : tnode;
  124. function _first_set_to_set : tnode;
  125. procedure _second_int_to_int;virtual;
  126. procedure _second_string_to_string;virtual;
  127. procedure _second_cstring_to_pchar;virtual;
  128. procedure _second_cstring_to_int;virtual;
  129. procedure _second_string_to_chararray;virtual;
  130. procedure _second_array_to_pointer;virtual;
  131. procedure _second_pointer_to_array;virtual;
  132. procedure _second_chararray_to_string;virtual;
  133. procedure _second_char_to_string;virtual;
  134. procedure _second_int_to_real;virtual;
  135. procedure _second_real_to_real;virtual;
  136. procedure _second_cord_to_pointer;virtual;
  137. procedure _second_proc_to_procvar;virtual;
  138. procedure _second_bool_to_int;virtual;
  139. procedure _second_int_to_bool;virtual;
  140. procedure _second_bool_to_bool;virtual;
  141. procedure _second_set_to_set;virtual;
  142. procedure _second_ansistring_to_pchar;virtual;
  143. procedure _second_class_to_intf;virtual;
  144. procedure _second_char_to_char;virtual;
  145. procedure _second_nothing; virtual;
  146. procedure second_int_to_int;virtual;abstract;
  147. procedure second_string_to_string;virtual;abstract;
  148. procedure second_cstring_to_pchar;virtual;abstract;
  149. procedure second_cstring_to_int;virtual;abstract;
  150. procedure second_string_to_chararray;virtual;abstract;
  151. procedure second_array_to_pointer;virtual;abstract;
  152. procedure second_pointer_to_array;virtual;abstract;
  153. procedure second_chararray_to_string;virtual;abstract;
  154. procedure second_char_to_string;virtual;abstract;
  155. procedure second_int_to_real;virtual;abstract;
  156. procedure second_real_to_real;virtual;abstract;
  157. procedure second_cord_to_pointer;virtual;abstract;
  158. procedure second_proc_to_procvar;virtual;abstract;
  159. procedure second_bool_to_int;virtual;abstract;
  160. procedure second_int_to_bool;virtual;abstract;
  161. procedure second_bool_to_bool;virtual;abstract;
  162. procedure second_set_to_set;virtual;abstract;
  163. procedure second_ansistring_to_pchar;virtual;abstract;
  164. procedure second_class_to_intf;virtual;abstract;
  165. procedure second_char_to_char;virtual;abstract;
  166. procedure second_nothing; virtual;abstract;
  167. end;
  168. ttypeconvnodeclass = class of ttypeconvnode;
  169. tasnode = class(tbinarynode)
  170. constructor create(l,r : tnode);virtual;
  171. function pass_1 : tnode;override;
  172. function pass_typecheck:tnode;override;
  173. function dogetcopy: tnode;override;
  174. destructor destroy; override;
  175. call: tnode;
  176. end;
  177. tasnodeclass = class of tasnode;
  178. tisnode = class(tbinarynode)
  179. constructor create(l,r : tnode);virtual;
  180. function pass_1 : tnode;override;
  181. function pass_typecheck:tnode;override;
  182. procedure pass_generate_code;override;
  183. end;
  184. tisnodeclass = class of tisnode;
  185. var
  186. ctypeconvnode : ttypeconvnodeclass;
  187. casnode : tasnodeclass;
  188. cisnode : tisnodeclass;
  189. procedure inserttypeconv(var p:tnode;def:tdef);
  190. procedure inserttypeconv_internal(var p:tnode;def:tdef);
  191. procedure arrayconstructor_to_set(var p : tnode);
  192. procedure insert_varargstypeconv(var p : tnode; iscvarargs: boolean);
  193. implementation
  194. uses
  195. cclasses,globtype,systems,
  196. cutils,verbose,globals,widestr,
  197. symconst,symdef,symsym,symbase,symtable,
  198. ncon,ncal,nset,nadd,ninl,nmem,nmat,nbas,nutils,
  199. cgbase,procinfo,
  200. htypechk,pass_1,cpuinfo;
  201. {*****************************************************************************
  202. Helpers
  203. *****************************************************************************}
  204. procedure inserttypeconv(var p:tnode;def:tdef);
  205. begin
  206. if not assigned(p.resultdef) then
  207. begin
  208. typecheckpass(p);
  209. if codegenerror then
  210. exit;
  211. end;
  212. { don't insert obsolete type conversions }
  213. if equal_defs(p.resultdef,def) and
  214. not ((p.resultdef.typ=setdef) and
  215. (tsetdef(p.resultdef).settype <>
  216. tsetdef(def).settype)) then
  217. begin
  218. p.resultdef:=def;
  219. end
  220. else
  221. begin
  222. p:=ctypeconvnode.create(p,def);
  223. typecheckpass(p);
  224. end;
  225. end;
  226. procedure inserttypeconv_internal(var p:tnode;def:tdef);
  227. begin
  228. if not assigned(p.resultdef) then
  229. begin
  230. typecheckpass(p);
  231. if codegenerror then
  232. exit;
  233. end;
  234. { don't insert obsolete type conversions }
  235. if equal_defs(p.resultdef,def) and
  236. not ((p.resultdef.typ=setdef) and
  237. (tsetdef(p.resultdef).settype <>
  238. tsetdef(def).settype)) then
  239. begin
  240. p.resultdef:=def;
  241. end
  242. else
  243. begin
  244. p:=ctypeconvnode.create_internal(p,def);
  245. typecheckpass(p);
  246. end;
  247. end;
  248. {*****************************************************************************
  249. Array constructor to Set Conversion
  250. *****************************************************************************}
  251. procedure arrayconstructor_to_set(var p : tnode);
  252. var
  253. constp : tsetconstnode;
  254. buildp,
  255. p2,p3,p4 : tnode;
  256. hdef : tdef;
  257. constset : Pconstset;
  258. constsetlo,
  259. constsethi : TConstExprInt;
  260. procedure update_constsethi(def:tdef);
  261. begin
  262. if ((def.typ=orddef) and
  263. (torddef(def).high>=constsethi)) then
  264. begin
  265. if torddef(def).ordtype=uwidechar then
  266. begin
  267. constsethi:=255;
  268. if hdef=nil then
  269. hdef:=def;
  270. end
  271. else
  272. begin
  273. constsethi:=torddef(def).high;
  274. if hdef=nil then
  275. begin
  276. if (constsethi>255) or
  277. (torddef(def).low<0) then
  278. hdef:=u8inttype
  279. else
  280. hdef:=def;
  281. end;
  282. if constsethi>255 then
  283. constsethi:=255;
  284. end;
  285. end
  286. else if ((def.typ=enumdef) and
  287. (tenumdef(def).max>=constsethi)) then
  288. begin
  289. if hdef=nil then
  290. hdef:=def;
  291. constsethi:=tenumdef(def).max;
  292. end;
  293. end;
  294. procedure do_set(pos : longint);
  295. begin
  296. if (pos and not $ff)<>0 then
  297. Message(parser_e_illegal_set_expr);
  298. if pos>constsethi then
  299. constsethi:=pos;
  300. if pos<constsetlo then
  301. constsetlo:=pos;
  302. if pos in constset^ then
  303. Message(parser_e_illegal_set_expr);
  304. include(constset^,pos);
  305. end;
  306. var
  307. l : Longint;
  308. lr,hr : TConstExprInt;
  309. hp : tarrayconstructornode;
  310. begin
  311. if p.nodetype<>arrayconstructorn then
  312. internalerror(200205105);
  313. new(constset);
  314. constset^:=[];
  315. hdef:=nil;
  316. constsetlo:=0;
  317. constsethi:=0;
  318. constp:=csetconstnode.create(nil,hdef);
  319. constp.value_set:=constset;
  320. buildp:=constp;
  321. hp:=tarrayconstructornode(p);
  322. if assigned(hp.left) then
  323. begin
  324. while assigned(hp) do
  325. begin
  326. p4:=nil; { will contain the tree to create the set }
  327. {split a range into p2 and p3 }
  328. if hp.left.nodetype=arrayconstructorrangen then
  329. begin
  330. p2:=tarrayconstructorrangenode(hp.left).left;
  331. p3:=tarrayconstructorrangenode(hp.left).right;
  332. tarrayconstructorrangenode(hp.left).left:=nil;
  333. tarrayconstructorrangenode(hp.left).right:=nil;
  334. end
  335. else
  336. begin
  337. p2:=hp.left;
  338. hp.left:=nil;
  339. p3:=nil;
  340. end;
  341. typecheckpass(p2);
  342. set_varstate(p2,vs_read,[vsf_must_be_valid]);
  343. if assigned(p3) then
  344. begin
  345. typecheckpass(p3);
  346. set_varstate(p3,vs_read,[vsf_must_be_valid]);
  347. end;
  348. if codegenerror then
  349. break;
  350. case p2.resultdef.typ of
  351. enumdef,
  352. orddef:
  353. begin
  354. getrange(p2.resultdef,lr,hr);
  355. if assigned(p3) then
  356. begin
  357. { this isn't good, you'll get problems with
  358. type t010 = 0..10;
  359. ts = set of t010;
  360. var s : ts;b : t010
  361. begin s:=[1,2,b]; end.
  362. if is_integer(p3^.resultdef) then
  363. begin
  364. inserttypeconv(p3,u8bitdef);
  365. end;
  366. }
  367. if assigned(hdef) and not(equal_defs(hdef,p3.resultdef)) then
  368. begin
  369. current_filepos:=p3.fileinfo;
  370. CGMessage(type_e_typeconflict_in_set);
  371. end
  372. else
  373. begin
  374. if (p2.nodetype=ordconstn) and (p3.nodetype=ordconstn) then
  375. begin
  376. if not(is_integer(p3.resultdef)) then
  377. hdef:=p3.resultdef
  378. else
  379. begin
  380. inserttypeconv(p3,u8inttype);
  381. inserttypeconv(p2,u8inttype);
  382. end;
  383. for l:=tordconstnode(p2).value to tordconstnode(p3).value do
  384. do_set(l);
  385. p2.free;
  386. p3.free;
  387. end
  388. else
  389. begin
  390. update_constsethi(p2.resultdef);
  391. inserttypeconv(p2,hdef);
  392. update_constsethi(p3.resultdef);
  393. inserttypeconv(p3,hdef);
  394. if assigned(hdef) then
  395. inserttypeconv(p3,hdef)
  396. else
  397. inserttypeconv(p3,u8inttype);
  398. p4:=csetelementnode.create(p2,p3);
  399. end;
  400. end;
  401. end
  402. else
  403. begin
  404. { Single value }
  405. if p2.nodetype=ordconstn then
  406. begin
  407. if not(is_integer(p2.resultdef)) then
  408. begin
  409. { for constant set elements, delphi allows the usage of elements of enumerations which
  410. have value>255 if there is no element with a value > 255 used }
  411. if (m_delphi in current_settings.modeswitches) and (p2.resultdef.typ=enumdef) then
  412. begin
  413. if tordconstnode(p2).value>constsethi then
  414. constsethi:=tordconstnode(p2).value;
  415. if hdef=nil then
  416. hdef:=p2.resultdef;
  417. end
  418. else
  419. update_constsethi(p2.resultdef);
  420. end;
  421. if assigned(hdef) then
  422. inserttypeconv(p2,hdef)
  423. else
  424. inserttypeconv(p2,u8inttype);
  425. do_set(tordconstnode(p2).value);
  426. p2.free;
  427. end
  428. else
  429. begin
  430. update_constsethi(p2.resultdef);
  431. if assigned(hdef) then
  432. inserttypeconv(p2,hdef)
  433. else
  434. inserttypeconv(p2,u8inttype);
  435. p4:=csetelementnode.create(p2,nil);
  436. end;
  437. end;
  438. end;
  439. stringdef :
  440. begin
  441. { if we've already set elements which are constants }
  442. { throw an error }
  443. if ((hdef=nil) and assigned(buildp)) or
  444. not(is_char(hdef)) then
  445. CGMessage(type_e_typeconflict_in_set)
  446. else
  447. for l:=1 to length(pshortstring(tstringconstnode(p2).value_str)^) do
  448. do_set(ord(pshortstring(tstringconstnode(p2).value_str)^[l]));
  449. if hdef=nil then
  450. hdef:=cchartype;
  451. p2.free;
  452. end;
  453. else
  454. CGMessage(type_e_ordinal_expr_expected);
  455. end;
  456. { insert the set creation tree }
  457. if assigned(p4) then
  458. buildp:=caddnode.create(addn,buildp,p4);
  459. { load next and dispose current node }
  460. p2:=hp;
  461. hp:=tarrayconstructornode(tarrayconstructornode(p2).right);
  462. tarrayconstructornode(p2).right:=nil;
  463. p2.free;
  464. end;
  465. if (hdef=nil) then
  466. hdef:=u8inttype;
  467. end
  468. else
  469. begin
  470. { empty set [], only remove node }
  471. p.free;
  472. end;
  473. { set the initial set type }
  474. constp.resultdef:=tsetdef.create(hdef,constsethi);
  475. { determine the resultdef for the tree }
  476. typecheckpass(buildp);
  477. { set the new tree }
  478. p:=buildp;
  479. end;
  480. procedure insert_varargstypeconv(var p : tnode; iscvarargs: boolean);
  481. begin
  482. if not(iscvarargs) and
  483. (p.nodetype=stringconstn) then
  484. p:=ctypeconvnode.create_internal(p,cansistringtype)
  485. else
  486. case p.resultdef.typ of
  487. enumdef :
  488. p:=ctypeconvnode.create_internal(p,s32inttype);
  489. arraydef :
  490. begin
  491. if is_chararray(p.resultdef) then
  492. p:=ctypeconvnode.create_internal(p,charpointertype)
  493. else
  494. if is_widechararray(p.resultdef) then
  495. p:=ctypeconvnode.create_internal(p,widecharpointertype)
  496. else
  497. CGMessagePos1(p.fileinfo,type_e_wrong_type_in_array_constructor,p.resultdef.typename);
  498. end;
  499. orddef :
  500. begin
  501. if is_integer(p.resultdef) and
  502. not(is_64bitint(p.resultdef)) then
  503. p:=ctypeconvnode.create(p,s32inttype)
  504. else if is_void(p.resultdef) then
  505. CGMessagePos1(p.fileinfo,type_e_wrong_type_in_array_constructor,p.resultdef.typename)
  506. else if iscvarargs and
  507. is_currency(p.resultdef) then
  508. p:=ctypeconvnode.create(p,s64floattype);
  509. end;
  510. floatdef :
  511. if not(iscvarargs) then
  512. begin
  513. if not(is_currency(p.resultdef)) then
  514. p:=ctypeconvnode.create(p,pbestrealtype^);
  515. end
  516. else
  517. begin
  518. if is_constrealnode(p) and
  519. not(nf_explicit in p.flags) then
  520. MessagePos(p.fileinfo,type_w_double_c_varargs);
  521. if (tfloatdef(p.resultdef).floattype in [{$ifndef x86_64}s32real,{$endif}s64currency]) or
  522. { win64 requires the double type cast for singles as well }
  523. ((tfloatdef(p.resultdef).floattype=s32real) and (target_info.system=system_x86_64_win64)) or
  524. (is_constrealnode(p) and
  525. not(nf_explicit in p.flags)) then
  526. p:=ctypeconvnode.create(p,s64floattype);
  527. end;
  528. procvardef :
  529. p:=ctypeconvnode.create(p,voidpointertype);
  530. stringdef:
  531. if iscvarargs then
  532. p:=ctypeconvnode.create(p,charpointertype);
  533. variantdef:
  534. if iscvarargs then
  535. CGMessagePos1(p.fileinfo,type_e_wrong_type_in_array_constructor,p.resultdef.typename);
  536. pointerdef:
  537. ;
  538. classrefdef:
  539. if iscvarargs then
  540. p:=ctypeconvnode.create(p,voidpointertype);
  541. objectdef :
  542. if iscvarargs or
  543. is_object(p.resultdef) then
  544. CGMessagePos1(p.fileinfo,type_e_wrong_type_in_array_constructor,p.resultdef.typename);
  545. else
  546. CGMessagePos1(p.fileinfo,type_e_wrong_type_in_array_constructor,p.resultdef.typename);
  547. end;
  548. typecheckpass(p);
  549. end;
  550. {*****************************************************************************
  551. TTYPECONVNODE
  552. *****************************************************************************}
  553. constructor ttypeconvnode.create(node : tnode;def:tdef);
  554. begin
  555. inherited create(typeconvn,node);
  556. convtype:=tc_none;
  557. totypedef:=def;
  558. if def=nil then
  559. internalerror(200103281);
  560. fileinfo:=node.fileinfo;
  561. end;
  562. constructor ttypeconvnode.create_explicit(node : tnode;def:tdef);
  563. begin
  564. self.create(node,def);
  565. include(flags,nf_explicit);
  566. end;
  567. constructor ttypeconvnode.create_internal(node : tnode;def:tdef);
  568. begin
  569. self.create(node,def);
  570. { handle like explicit conversions }
  571. include(flags,nf_explicit);
  572. include(flags,nf_internal);
  573. end;
  574. constructor ttypeconvnode.create_proc_to_procvar(node : tnode);
  575. begin
  576. self.create(node,voidtype);
  577. convtype:=tc_proc_2_procvar;
  578. end;
  579. constructor ttypeconvnode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  580. begin
  581. inherited ppuload(t,ppufile);
  582. ppufile.getderef(totypedefderef);
  583. convtype:=tconverttype(ppufile.getbyte);
  584. end;
  585. procedure ttypeconvnode.ppuwrite(ppufile:tcompilerppufile);
  586. begin
  587. inherited ppuwrite(ppufile);
  588. ppufile.putderef(totypedefderef);
  589. ppufile.putbyte(byte(convtype));
  590. end;
  591. procedure ttypeconvnode.buildderefimpl;
  592. begin
  593. inherited buildderefimpl;
  594. totypedefderef.build(totypedef);
  595. end;
  596. procedure ttypeconvnode.derefimpl;
  597. begin
  598. inherited derefimpl;
  599. totypedef:=tdef(totypedefderef.resolve);
  600. end;
  601. function ttypeconvnode.dogetcopy : tnode;
  602. var
  603. n : ttypeconvnode;
  604. begin
  605. n:=ttypeconvnode(inherited dogetcopy);
  606. n.convtype:=convtype;
  607. n.totypedef:=totypedef;
  608. dogetcopy:=n;
  609. end;
  610. procedure ttypeconvnode.printnodeinfo(var t : text);
  611. const
  612. convtyp2str : array[tconverttype] of pchar = (
  613. 'tc_none',
  614. 'tc_equal',
  615. 'tc_not_possible',
  616. 'tc_string_2_string',
  617. 'tc_char_2_string',
  618. 'tc_char_2_chararray',
  619. 'tc_pchar_2_string',
  620. 'tc_cchar_2_pchar',
  621. 'tc_cstring_2_pchar',
  622. 'tc_cstring_2_int',
  623. 'tc_ansistring_2_pchar',
  624. 'tc_string_2_chararray',
  625. 'tc_chararray_2_string',
  626. 'tc_array_2_pointer',
  627. 'tc_pointer_2_array',
  628. 'tc_int_2_int',
  629. 'tc_int_2_bool',
  630. 'tc_bool_2_bool',
  631. 'tc_bool_2_int',
  632. 'tc_real_2_real',
  633. 'tc_int_2_real',
  634. 'tc_real_2_currency',
  635. 'tc_proc_2_procvar',
  636. 'tc_arrayconstructor_2_set',
  637. 'tc_set_2_set',
  638. 'tc_cord_2_pointer',
  639. 'tc_intf_2_string',
  640. 'tc_intf_2_guid',
  641. 'tc_class_2_intf',
  642. 'tc_char_2_char',
  643. 'tc_dynarray_2_openarray',
  644. 'tc_pwchar_2_string',
  645. 'tc_variant_2_dynarray',
  646. 'tc_dynarray_2_variant',
  647. 'tc_variant_2_enum',
  648. 'tc_enum_2_variant',
  649. 'tc_interface_2_variant',
  650. 'tc_variant_2_interface',
  651. 'tc_array_2_dynarray'
  652. );
  653. begin
  654. inherited printnodeinfo(t);
  655. write(t,', convtype = ',strpas(convtyp2str[convtype]));
  656. end;
  657. function ttypeconvnode.typecheck_cord_to_pointer : tnode;
  658. var
  659. t : tnode;
  660. begin
  661. result:=nil;
  662. if left.nodetype=ordconstn then
  663. begin
  664. { check if we have a valid pointer constant (JM) }
  665. if (sizeof(pointer) > sizeof(TConstPtrUInt)) then
  666. if (sizeof(TConstPtrUInt) = 4) then
  667. begin
  668. if (tordconstnode(left).value < low(longint)) or
  669. (tordconstnode(left).value > high(cardinal)) then
  670. CGMessage(parser_e_range_check_error);
  671. end
  672. else if (sizeof(TConstPtrUInt) = 8) then
  673. begin
  674. if (tordconstnode(left).value < low(int64)) or
  675. (tordconstnode(left).value > high(qword)) then
  676. CGMessage(parser_e_range_check_error);
  677. end
  678. else
  679. internalerror(2001020801);
  680. t:=cpointerconstnode.create(TConstPtrUInt(tordconstnode(left).value),resultdef);
  681. result:=t;
  682. end
  683. else
  684. internalerror(200104023);
  685. end;
  686. function ttypeconvnode.typecheck_chararray_to_string : tnode;
  687. var
  688. chartype : string[8];
  689. begin
  690. if is_widechar(tarraydef(left.resultdef).elementdef) then
  691. chartype:='widechar'
  692. else
  693. chartype:='char';
  694. result := ccallnode.createinternres(
  695. 'fpc_'+chartype+'array_to_'+tstringdef(resultdef).stringtypname,
  696. ccallparanode.create(cordconstnode.create(
  697. ord(tarraydef(left.resultdef).lowrange=0),booltype,false),
  698. ccallparanode.create(left,nil)),resultdef);
  699. left := nil;
  700. end;
  701. function ttypeconvnode.typecheck_string_to_chararray : tnode;
  702. var
  703. newblock : tblocknode;
  704. newstat : tstatementnode;
  705. restemp : ttempcreatenode;
  706. pchtemp : pchar;
  707. arrsize : aint;
  708. chartype : string[8];
  709. begin
  710. result := nil;
  711. with tarraydef(resultdef) do
  712. begin
  713. if highrange<lowrange then
  714. internalerror(200501051);
  715. arrsize := highrange-lowrange+1;
  716. end;
  717. if (left.nodetype = stringconstn) and
  718. (tstringconstnode(left).cst_type=cst_conststring) then
  719. begin
  720. { if the array of char is large enough we can use the string
  721. constant directly. This is handled in ncgcnv }
  722. if (arrsize>=tstringconstnode(left).len) and
  723. is_char(tarraydef(resultdef).elementdef) then
  724. begin
  725. { pad the constant string with #0 to the array len }
  726. { (2.0.x compatible) }
  727. if (arrsize>tstringconstnode(left).len) then
  728. begin
  729. pchtemp:=concatansistrings(tstringconstnode(left).value_str,pchar(StringOfChar(#0,arrsize-tstringconstnode(left).len)),tstringconstnode(left).len,arrsize-tstringconstnode(left).len);
  730. left.free;
  731. left:=cstringconstnode.createpchar(pchtemp,arrsize);
  732. typecheckpass(left);
  733. end;
  734. exit;
  735. end;
  736. { Convert to wide/short/ansistring and call default helper }
  737. if is_widechar(tarraydef(resultdef).elementdef) then
  738. inserttypeconv(left,cwidestringtype)
  739. else
  740. begin
  741. if tstringconstnode(left).len>255 then
  742. inserttypeconv(left,cansistringtype)
  743. else
  744. inserttypeconv(left,cshortstringtype);
  745. end;
  746. end;
  747. if is_widechar(tarraydef(resultdef).elementdef) then
  748. chartype:='widechar'
  749. else
  750. chartype:='char';
  751. newblock:=internalstatements(newstat);
  752. restemp:=ctempcreatenode.create(resultdef,resultdef.size,tt_persistent,false);
  753. addstatement(newstat,restemp);
  754. addstatement(newstat,ccallnode.createintern('fpc_'+tstringdef(left.resultdef).stringtypname+
  755. '_to_'+chartype+'array',ccallparanode.create(left,ccallparanode.create(
  756. ctemprefnode.create(restemp),nil))));
  757. addstatement(newstat,ctempdeletenode.create_normal_temp(restemp));
  758. addstatement(newstat,ctemprefnode.create(restemp));
  759. result:=newblock;
  760. left:=nil;
  761. end;
  762. function ttypeconvnode.typecheck_string_to_string : tnode;
  763. var
  764. procname: string[31];
  765. stringpara : tcallparanode;
  766. begin
  767. result:=nil;
  768. if left.nodetype=stringconstn then
  769. begin
  770. tstringconstnode(left).changestringtype(resultdef);
  771. result:=left;
  772. left:=nil;
  773. end
  774. else
  775. begin
  776. { get the correct procedure name }
  777. procname := 'fpc_'+tstringdef(left.resultdef).stringtypname+
  778. '_to_'+tstringdef(resultdef).stringtypname;
  779. { create parameter (and remove left node from typeconvnode }
  780. { since it's reused as parameter) }
  781. stringpara := ccallparanode.create(left,nil);
  782. left := nil;
  783. { when converting to shortstrings, we have to pass high(destination) too }
  784. if (tstringdef(resultdef).stringtype = st_shortstring) then
  785. stringpara.right := ccallparanode.create(cinlinenode.create(
  786. in_high_x,false,self.getcopy),nil);
  787. { and create the callnode }
  788. result := ccallnode.createinternres(procname,stringpara,resultdef);
  789. end;
  790. end;
  791. function ttypeconvnode.typecheck_char_to_string : tnode;
  792. var
  793. procname: string[31];
  794. para : tcallparanode;
  795. hp : tstringconstnode;
  796. ws : pcompilerwidestring;
  797. begin
  798. result:=nil;
  799. if left.nodetype=ordconstn then
  800. begin
  801. if tstringdef(resultdef).stringtype=st_widestring then
  802. begin
  803. initwidestring(ws);
  804. if torddef(left.resultdef).ordtype=uwidechar then
  805. concatwidestringchar(ws,tcompilerwidechar(tordconstnode(left).value))
  806. else
  807. concatwidestringchar(ws,tcompilerwidechar(chr(tordconstnode(left).value)));
  808. hp:=cstringconstnode.createwstr(ws);
  809. donewidestring(ws);
  810. end
  811. else
  812. begin
  813. hp:=cstringconstnode.createstr(chr(tordconstnode(left).value));
  814. tstringconstnode(hp).changestringtype(resultdef);
  815. end;
  816. result:=hp;
  817. end
  818. else
  819. { shortstrings are handled 'inline' }
  820. if tstringdef(resultdef).stringtype <> st_shortstring then
  821. begin
  822. { create the parameter }
  823. para := ccallparanode.create(left,nil);
  824. left := nil;
  825. { and the procname }
  826. procname := 'fpc_char_to_' +tstringdef(resultdef).stringtypname;
  827. { and finally the call }
  828. result := ccallnode.createinternres(procname,para,resultdef);
  829. end
  830. else
  831. begin
  832. { create word(byte(char) shl 8 or 1) for litte endian machines }
  833. { and word(byte(char) or 256) for big endian machines }
  834. left := ctypeconvnode.create_internal(left,u8inttype);
  835. if (target_info.endian = endian_little) then
  836. left := caddnode.create(orn,
  837. cshlshrnode.create(shln,left,cordconstnode.create(8,s32inttype,false)),
  838. cordconstnode.create(1,s32inttype,false))
  839. else
  840. left := caddnode.create(orn,left,
  841. cordconstnode.create(1 shl 8,s32inttype,false));
  842. left := ctypeconvnode.create_internal(left,u16inttype);
  843. typecheckpass(left);
  844. end;
  845. end;
  846. function ttypeconvnode.typecheck_char_to_chararray : tnode;
  847. begin
  848. if resultdef.size <> 1 then
  849. begin
  850. { convert first to string, then to chararray }
  851. inserttypeconv(left,cshortstringtype);
  852. inserttypeconv(left,resultdef);
  853. result:=left;
  854. left := nil;
  855. exit;
  856. end;
  857. result := nil;
  858. end;
  859. function ttypeconvnode.typecheck_char_to_char : tnode;
  860. var
  861. hp : tordconstnode;
  862. begin
  863. result:=nil;
  864. if left.nodetype=ordconstn then
  865. begin
  866. if (torddef(resultdef).ordtype=uchar) and
  867. (torddef(left.resultdef).ordtype=uwidechar) then
  868. begin
  869. hp:=cordconstnode.create(
  870. ord(unicode2asciichar(tcompilerwidechar(tordconstnode(left).value))),
  871. cchartype,true);
  872. result:=hp;
  873. end
  874. else if (torddef(resultdef).ordtype=uwidechar) and
  875. (torddef(left.resultdef).ordtype=uchar) then
  876. begin
  877. hp:=cordconstnode.create(
  878. asciichar2unicode(chr(tordconstnode(left).value)),
  879. cwidechartype,true);
  880. result:=hp;
  881. end
  882. else
  883. internalerror(200105131);
  884. exit;
  885. end;
  886. end;
  887. function ttypeconvnode.typecheck_int_to_int : tnode;
  888. var
  889. v : TConstExprInt;
  890. begin
  891. result:=nil;
  892. if left.nodetype=ordconstn then
  893. begin
  894. v:=tordconstnode(left).value;
  895. if is_currency(resultdef) then
  896. v:=v*10000;
  897. if (resultdef.typ=pointerdef) then
  898. result:=cpointerconstnode.create(TConstPtrUInt(v),resultdef)
  899. else
  900. begin
  901. if is_currency(left.resultdef) then
  902. v:=v div 10000;
  903. result:=cordconstnode.create(v,resultdef,false);
  904. end;
  905. end
  906. else if left.nodetype=pointerconstn then
  907. begin
  908. v:=tpointerconstnode(left).value;
  909. if (resultdef.typ=pointerdef) then
  910. result:=cpointerconstnode.create(v,resultdef)
  911. else
  912. begin
  913. if is_currency(resultdef) then
  914. v:=v*10000;
  915. result:=cordconstnode.create(v,resultdef,false);
  916. end;
  917. end
  918. else
  919. begin
  920. { multiply by 10000 for currency. We need to use getcopy to pass
  921. the argument because the current node is always disposed. Only
  922. inserting the multiply in the left node is not possible because
  923. it'll get in an infinite loop to convert int->currency }
  924. if is_currency(resultdef) then
  925. begin
  926. result:=caddnode.create(muln,getcopy,cordconstnode.create(10000,resultdef,false));
  927. include(result.flags,nf_is_currency);
  928. end
  929. else if is_currency(left.resultdef) then
  930. begin
  931. result:=cmoddivnode.create(divn,getcopy,cordconstnode.create(10000,resultdef,false));
  932. include(result.flags,nf_is_currency);
  933. end;
  934. end;
  935. end;
  936. function ttypeconvnode.typecheck_int_to_real : tnode;
  937. var
  938. rv : bestreal;
  939. begin
  940. result:=nil;
  941. if left.nodetype=ordconstn then
  942. begin
  943. rv:=tordconstnode(left).value;
  944. if is_currency(resultdef) then
  945. rv:=rv*10000.0
  946. else if is_currency(left.resultdef) then
  947. rv:=rv/10000.0;
  948. result:=crealconstnode.create(rv,resultdef);
  949. end
  950. else
  951. begin
  952. { multiply by 10000 for currency. We need to use getcopy to pass
  953. the argument because the current node is always disposed. Only
  954. inserting the multiply in the left node is not possible because
  955. it'll get in an infinite loop to convert int->currency }
  956. if is_currency(resultdef) then
  957. begin
  958. result:=caddnode.create(muln,getcopy,crealconstnode.create(10000.0,resultdef));
  959. include(result.flags,nf_is_currency);
  960. end
  961. else if is_currency(left.resultdef) then
  962. begin
  963. result:=caddnode.create(slashn,getcopy,crealconstnode.create(10000.0,resultdef));
  964. include(result.flags,nf_is_currency);
  965. end;
  966. end;
  967. end;
  968. function ttypeconvnode.typecheck_real_to_currency : tnode;
  969. begin
  970. if not is_currency(resultdef) then
  971. internalerror(200304221);
  972. result:=nil;
  973. left:=caddnode.create(muln,left,crealconstnode.create(10000.0,left.resultdef));
  974. include(left.flags,nf_is_currency);
  975. typecheckpass(left);
  976. { Convert constants directly, else call Round() }
  977. if left.nodetype=realconstn then
  978. result:=cordconstnode.create(round(trealconstnode(left).value_real),resultdef,false)
  979. else
  980. result:=ccallnode.createinternres('fpc_round_real',
  981. ccallparanode.create(left,nil),resultdef);
  982. left:=nil;
  983. end;
  984. function ttypeconvnode.typecheck_real_to_real : tnode;
  985. begin
  986. result:=nil;
  987. if is_currency(left.resultdef) and not(is_currency(resultdef)) then
  988. begin
  989. left:=caddnode.create(slashn,left,crealconstnode.create(10000.0,left.resultdef));
  990. include(left.flags,nf_is_currency);
  991. typecheckpass(left);
  992. end
  993. else
  994. if is_currency(resultdef) and not(is_currency(left.resultdef)) then
  995. begin
  996. left:=caddnode.create(muln,left,crealconstnode.create(10000.0,left.resultdef));
  997. include(left.flags,nf_is_currency);
  998. typecheckpass(left);
  999. end;
  1000. end;
  1001. function ttypeconvnode.typecheck_cchar_to_pchar : tnode;
  1002. begin
  1003. result:=nil;
  1004. if is_pwidechar(resultdef) then
  1005. inserttypeconv(left,cwidestringtype)
  1006. else
  1007. inserttypeconv(left,cshortstringtype);
  1008. { evaluate again, reset resultdef so the convert_typ
  1009. will be calculated again and cstring_to_pchar will
  1010. be used for futher conversion }
  1011. convtype:=tc_none;
  1012. result:=pass_typecheck;
  1013. end;
  1014. function ttypeconvnode.typecheck_cstring_to_pchar : tnode;
  1015. begin
  1016. result:=nil;
  1017. if is_pwidechar(resultdef) then
  1018. inserttypeconv(left,cwidestringtype)
  1019. else
  1020. if is_pchar(resultdef) and
  1021. is_widestring(left.resultdef) then
  1022. inserttypeconv(left,cansistringtype);
  1023. end;
  1024. function ttypeconvnode.typecheck_cstring_to_int : tnode;
  1025. var
  1026. fcc : cardinal;
  1027. pb : pbyte;
  1028. begin
  1029. result:=nil;
  1030. if left.nodetype<>stringconstn then
  1031. internalerror(200510012);
  1032. if tstringconstnode(left).len=4 then
  1033. begin
  1034. pb:=pbyte(tstringconstnode(left).value_str);
  1035. fcc:=(pb[0] shl 24) or (pb[1] shl 16) or (pb[2] shl 8) or pb[3];
  1036. result:=cordconstnode.create(fcc,u32inttype,false);
  1037. end
  1038. else
  1039. CGMessage2(type_e_illegal_type_conversion,left.resultdef.GetTypeName,resultdef.GetTypeName);
  1040. end;
  1041. function ttypeconvnode.typecheck_arrayconstructor_to_set : tnode;
  1042. var
  1043. hp : tnode;
  1044. begin
  1045. result:=nil;
  1046. if left.nodetype<>arrayconstructorn then
  1047. internalerror(5546);
  1048. { remove typeconv node }
  1049. hp:=left;
  1050. left:=nil;
  1051. { create a set constructor tree }
  1052. arrayconstructor_to_set(hp);
  1053. result:=hp;
  1054. end;
  1055. function ttypeconvnode.typecheck_set_to_set : tnode;
  1056. begin
  1057. result:=nil;
  1058. { constant sets can be converted by changing the type only }
  1059. if (left.nodetype=setconstn) then
  1060. begin
  1061. left.resultdef:=resultdef;
  1062. result:=left;
  1063. left:=nil;
  1064. exit;
  1065. end;
  1066. end;
  1067. function ttypeconvnode.typecheck_pchar_to_string : tnode;
  1068. begin
  1069. result := ccallnode.createinternres(
  1070. 'fpc_pchar_to_'+tstringdef(resultdef).stringtypname,
  1071. ccallparanode.create(left,nil),resultdef);
  1072. left := nil;
  1073. end;
  1074. function ttypeconvnode.typecheck_interface_to_guid : tnode;
  1075. begin
  1076. if assigned(tobjectdef(left.resultdef).iidguid) then
  1077. result:=cguidconstnode.create(tobjectdef(left.resultdef).iidguid^);
  1078. end;
  1079. function ttypeconvnode.typecheck_dynarray_to_openarray : tnode;
  1080. begin
  1081. { a dynamic array is a pointer to an array, so to convert it to }
  1082. { an open array, we have to dereference it (JM) }
  1083. result := ctypeconvnode.create_internal(left,voidpointertype);
  1084. typecheckpass(result);
  1085. { left is reused }
  1086. left := nil;
  1087. result := cderefnode.create(result);
  1088. include(result.flags,nf_no_checkpointer);
  1089. result.resultdef := resultdef;
  1090. end;
  1091. function ttypeconvnode.typecheck_pwchar_to_string : tnode;
  1092. begin
  1093. result := ccallnode.createinternres(
  1094. 'fpc_pwidechar_to_'+tstringdef(resultdef).stringtypname,
  1095. ccallparanode.create(left,nil),resultdef);
  1096. left := nil;
  1097. end;
  1098. function ttypeconvnode.typecheck_variant_to_dynarray : tnode;
  1099. begin
  1100. result := ccallnode.createinternres(
  1101. 'fpc_variant_to_dynarray',
  1102. ccallparanode.create(caddrnode.create_internal(crttinode.create(tstoreddef(resultdef),initrtti,rdt_normal)),
  1103. ccallparanode.create(left,nil)
  1104. ),resultdef);
  1105. typecheckpass(result);
  1106. left:=nil;
  1107. end;
  1108. function ttypeconvnode.typecheck_dynarray_to_variant : tnode;
  1109. begin
  1110. result := ccallnode.createinternres(
  1111. 'fpc_dynarray_to_variant',
  1112. ccallparanode.create(caddrnode.create_internal(crttinode.create(tstoreddef(left.resultdef),initrtti,rdt_normal)),
  1113. ccallparanode.create(ctypeconvnode.create_explicit(left,voidpointertype),nil)
  1114. ),resultdef);
  1115. typecheckpass(result);
  1116. left:=nil;
  1117. end;
  1118. function ttypeconvnode.typecheck_variant_to_interface : tnode;
  1119. begin
  1120. if tobjectdef(resultdef).is_related(tobjectdef(search_system_type('IDISPATCH').typedef)) then
  1121. result := ccallnode.createinternres(
  1122. 'fpc_variant_to_idispatch',
  1123. ccallparanode.create(left,nil)
  1124. ,resultdef)
  1125. else
  1126. result := ccallnode.createinternres(
  1127. 'fpc_variant_to_interface',
  1128. ccallparanode.create(left,nil)
  1129. ,resultdef);
  1130. typecheckpass(result);
  1131. left:=nil;
  1132. end;
  1133. function ttypeconvnode.typecheck_interface_to_variant : tnode;
  1134. begin
  1135. if tobjectdef(left.resultdef).is_related(tobjectdef(search_system_type('IDISPATCH').typedef)) then
  1136. result := ccallnode.createinternres(
  1137. 'fpc_idispatch_to_variant',
  1138. ccallparanode.create(left,nil)
  1139. ,resultdef)
  1140. else
  1141. result := ccallnode.createinternres(
  1142. 'fpc_interface_to_variant',
  1143. ccallparanode.create(left,nil)
  1144. ,resultdef);
  1145. typecheckpass(result);
  1146. left:=nil;
  1147. end;
  1148. function ttypeconvnode.typecheck_variant_to_enum : tnode;
  1149. begin
  1150. result := ctypeconvnode.create_internal(left,sinttype);
  1151. result := ctypeconvnode.create_internal(result,resultdef);
  1152. typecheckpass(result);
  1153. { left is reused }
  1154. left := nil;
  1155. end;
  1156. function ttypeconvnode.typecheck_enum_to_variant : tnode;
  1157. begin
  1158. result := ctypeconvnode.create_internal(left,sinttype);
  1159. result := ctypeconvnode.create_internal(result,cvarianttype);
  1160. typecheckpass(result);
  1161. { left is reused }
  1162. left := nil;
  1163. end;
  1164. function ttypeconvnode.typecheck_array_2_dynarray : tnode;
  1165. var
  1166. newstatement : tstatementnode;
  1167. temp : ttempcreatenode;
  1168. temp2 : ttempcreatenode;
  1169. begin
  1170. { create statements with call to getmem+initialize }
  1171. result:=internalstatements(newstatement);
  1172. { create temp for result }
  1173. temp:=ctempcreatenode.create(resultdef,resultdef.size,tt_persistent,true);
  1174. addstatement(newstatement,temp);
  1175. { get temp for array of lengths }
  1176. temp2:=ctempcreatenode.create(sinttype,sinttype.size,tt_persistent,false);
  1177. addstatement(newstatement,temp2);
  1178. { one dimensional }
  1179. addstatement(newstatement,cassignmentnode.create(
  1180. ctemprefnode.create_offset(temp2,0),
  1181. cordconstnode.create
  1182. (tarraydef(left.resultdef).highrange+1,s32inttype,true)));
  1183. { create call to fpc_dynarr_setlength }
  1184. addstatement(newstatement,ccallnode.createintern('fpc_dynarray_setlength',
  1185. ccallparanode.create(caddrnode.create_internal
  1186. (ctemprefnode.create(temp2)),
  1187. ccallparanode.create(cordconstnode.create
  1188. (1,s32inttype,true),
  1189. ccallparanode.create(caddrnode.create_internal
  1190. (crttinode.create(tstoreddef(resultdef),initrtti,rdt_normal)),
  1191. ccallparanode.create(
  1192. ctypeconvnode.create_internal(
  1193. ctemprefnode.create(temp),voidpointertype),
  1194. nil))))
  1195. ));
  1196. addstatement(newstatement,ctempdeletenode.create(temp2));
  1197. { copy ... }
  1198. addstatement(newstatement,cassignmentnode.create(
  1199. ctypeconvnode.create_internal(cderefnode.create(ctypeconvnode.create_internal(ctemprefnode.create(temp),voidpointertype)),left.resultdef),
  1200. left
  1201. ));
  1202. { left is reused }
  1203. left:=nil;
  1204. { the last statement should return the value as
  1205. location and type, this is done be referencing the
  1206. temp and converting it first from a persistent temp to
  1207. normal temp }
  1208. addstatement(newstatement,ctempdeletenode.create_normal_temp(temp));
  1209. addstatement(newstatement,ctemprefnode.create(temp));
  1210. end;
  1211. procedure copyparasym(p:TObject;arg:pointer);
  1212. var
  1213. newparast : TSymtable absolute arg;
  1214. vs : tparavarsym;
  1215. begin
  1216. if tsym(p).typ<>paravarsym then
  1217. exit;
  1218. with tparavarsym(p) do
  1219. begin
  1220. vs:=tparavarsym.create(realname,paranr,varspez,vardef,varoptions);
  1221. vs.defaultconstsym:=defaultconstsym;
  1222. newparast.insert(vs);
  1223. end;
  1224. end;
  1225. function ttypeconvnode.typecheck_proc_to_procvar : tnode;
  1226. var
  1227. pd : tabstractprocdef;
  1228. begin
  1229. result:=nil;
  1230. pd:=tabstractprocdef(left.resultdef);
  1231. { create procvardef }
  1232. resultdef:=tprocvardef.create(pd.parast.symtablelevel);
  1233. tprocvardef(resultdef).proctypeoption:=pd.proctypeoption;
  1234. tprocvardef(resultdef).proccalloption:=pd.proccalloption;
  1235. tprocvardef(resultdef).procoptions:=pd.procoptions;
  1236. tprocvardef(resultdef).returndef:=pd.returndef;
  1237. { method ? then set the methodpointer flag }
  1238. if (pd.owner.symtabletype=ObjectSymtable) then
  1239. include(tprocvardef(resultdef).procoptions,po_methodpointer);
  1240. { was it a local procedure? }
  1241. if (pd.owner.symtabletype=localsymtable) then
  1242. include(tprocvardef(resultdef).procoptions,po_local);
  1243. { only need the address of the method? this is needed
  1244. for @tobject.create. In this case there will be a loadn without
  1245. a methodpointer. }
  1246. if (left.nodetype=loadn) and
  1247. not assigned(tloadnode(left).left) then
  1248. include(tprocvardef(resultdef).procoptions,po_addressonly);
  1249. { Add parameters use only references, we don't need to keep the
  1250. parast. We use the parast from the original function to calculate
  1251. our parameter data and reset it afterwards }
  1252. pd.parast.SymList.ForEachCall(@copyparasym,tprocvardef(resultdef).parast);
  1253. tprocvardef(resultdef).calcparas;
  1254. end;
  1255. function ttypeconvnode.typecheck_call_helper(c : tconverttype) : tnode;
  1256. const
  1257. resultdefconvert : array[tconverttype] of pointer = (
  1258. {none} nil,
  1259. {equal} nil,
  1260. {not_possible} nil,
  1261. { string_2_string } @ttypeconvnode.typecheck_string_to_string,
  1262. { char_2_string } @ttypeconvnode.typecheck_char_to_string,
  1263. { char_2_chararray } @ttypeconvnode.typecheck_char_to_chararray,
  1264. { pchar_2_string } @ttypeconvnode.typecheck_pchar_to_string,
  1265. { cchar_2_pchar } @ttypeconvnode.typecheck_cchar_to_pchar,
  1266. { cstring_2_pchar } @ttypeconvnode.typecheck_cstring_to_pchar,
  1267. { cstring_2_int } @ttypeconvnode.typecheck_cstring_to_int,
  1268. { ansistring_2_pchar } nil,
  1269. { string_2_chararray } @ttypeconvnode.typecheck_string_to_chararray,
  1270. { chararray_2_string } @ttypeconvnode.typecheck_chararray_to_string,
  1271. { array_2_pointer } nil,
  1272. { pointer_2_array } nil,
  1273. { int_2_int } @ttypeconvnode.typecheck_int_to_int,
  1274. { int_2_bool } nil,
  1275. { bool_2_bool } nil,
  1276. { bool_2_int } nil,
  1277. { real_2_real } @ttypeconvnode.typecheck_real_to_real,
  1278. { int_2_real } @ttypeconvnode.typecheck_int_to_real,
  1279. { real_2_currency } @ttypeconvnode.typecheck_real_to_currency,
  1280. { proc_2_procvar } @ttypeconvnode.typecheck_proc_to_procvar,
  1281. { arrayconstructor_2_set } @ttypeconvnode.typecheck_arrayconstructor_to_set,
  1282. { set_to_set } @ttypeconvnode.typecheck_set_to_set,
  1283. { cord_2_pointer } @ttypeconvnode.typecheck_cord_to_pointer,
  1284. { intf_2_string } nil,
  1285. { intf_2_guid } @ttypeconvnode.typecheck_interface_to_guid,
  1286. { class_2_intf } nil,
  1287. { char_2_char } @ttypeconvnode.typecheck_char_to_char,
  1288. { dynarray_2_openarray} @ttypeconvnode.typecheck_dynarray_to_openarray,
  1289. { pwchar_2_string} @ttypeconvnode.typecheck_pwchar_to_string,
  1290. { variant_2_dynarray} @ttypeconvnode.typecheck_variant_to_dynarray,
  1291. { dynarray_2_variant} @ttypeconvnode.typecheck_dynarray_to_variant,
  1292. { variant_2_enum} @ttypeconvnode.typecheck_variant_to_enum,
  1293. { enum_2_variant} @ttypeconvnode.typecheck_enum_to_variant,
  1294. { variant_2_interface} @ttypeconvnode.typecheck_interface_to_variant,
  1295. { interface_2_variant} @ttypeconvnode.typecheck_variant_to_interface,
  1296. { array_2_dynarray} @ttypeconvnode.typecheck_array_2_dynarray
  1297. );
  1298. type
  1299. tprocedureofobject = function : tnode of object;
  1300. var
  1301. r : packed record
  1302. proc : pointer;
  1303. obj : pointer;
  1304. end;
  1305. begin
  1306. result:=nil;
  1307. { this is a little bit dirty but it works }
  1308. { and should be quite portable too }
  1309. r.proc:=resultdefconvert[c];
  1310. r.obj:=self;
  1311. if assigned(r.proc) then
  1312. result:=tprocedureofobject(r)();
  1313. end;
  1314. function ttypeconvnode.pass_typecheck:tnode;
  1315. var
  1316. hdef : tdef;
  1317. hp : tnode;
  1318. currprocdef : tabstractprocdef;
  1319. aprocdef : tprocdef;
  1320. eq : tequaltype;
  1321. cdoptions : tcompare_defs_options;
  1322. newblock: tblocknode;
  1323. newstatement: tstatementnode;
  1324. tempnode: ttempcreatenode;
  1325. begin
  1326. result:=nil;
  1327. resultdef:=totypedef;
  1328. typecheckpass(left);
  1329. if codegenerror then
  1330. exit;
  1331. { When absolute force tc_equal }
  1332. if (nf_absolute in flags) then
  1333. begin
  1334. convtype:=tc_equal;
  1335. if not(tstoreddef(resultdef).is_intregable) and
  1336. not(tstoreddef(resultdef).is_fpuregable) then
  1337. make_not_regable(left,vr_addr);
  1338. exit;
  1339. end;
  1340. { tp procvar support. Skip typecasts to procvar, record or set. Those
  1341. convert on the procvar value. This is used to access the
  1342. fields of a methodpointer }
  1343. if not(nf_load_procvar in flags) and
  1344. not(resultdef.typ in [procvardef,recorddef,setdef]) then
  1345. maybe_call_procvar(left,true);
  1346. { convert array constructors to sets, because there is no conversion
  1347. possible for array constructors }
  1348. if (resultdef.typ<>arraydef) and
  1349. is_array_constructor(left.resultdef) then
  1350. begin
  1351. arrayconstructor_to_set(left);
  1352. typecheckpass(left);
  1353. end;
  1354. if convtype=tc_none then
  1355. begin
  1356. cdoptions:=[cdo_check_operator,cdo_allow_variant];
  1357. if nf_explicit in flags then
  1358. include(cdoptions,cdo_explicit);
  1359. if nf_internal in flags then
  1360. include(cdoptions,cdo_internal);
  1361. eq:=compare_defs_ext(left.resultdef,resultdef,left.nodetype,convtype,aprocdef,cdoptions);
  1362. case eq of
  1363. te_exact,
  1364. te_equal :
  1365. begin
  1366. result := simplify;
  1367. if assigned(result) then
  1368. exit;
  1369. { Only leave when there is no conversion to do.
  1370. We can still need to call a conversion routine,
  1371. like the routine to convert a stringconstnode }
  1372. if convtype in [tc_equal,tc_not_possible] then
  1373. begin
  1374. left.resultdef:=resultdef;
  1375. if (nf_explicit in flags) and (left.nodetype = addrn) then
  1376. include(left.flags, nf_typedaddr);
  1377. result:=left;
  1378. left:=nil;
  1379. exit;
  1380. end;
  1381. end;
  1382. te_convert_l1,
  1383. te_convert_l2,
  1384. te_convert_l3 :
  1385. begin
  1386. result := simplify;
  1387. if assigned(result) then
  1388. exit;
  1389. { nothing to do }
  1390. end;
  1391. te_convert_operator :
  1392. begin
  1393. include(current_procinfo.flags,pi_do_call);
  1394. aprocdef.procsym.IncRefCountBy(1);
  1395. hp:=ccallnode.create(ccallparanode.create(left,nil),Tprocsym(aprocdef.procsym),nil,nil,[]);
  1396. { tell explicitly which def we must use !! (PM) }
  1397. tcallnode(hp).procdefinition:=aprocdef;
  1398. left:=nil;
  1399. result:=hp;
  1400. exit;
  1401. end;
  1402. te_incompatible :
  1403. begin
  1404. { Procedures have a resultdef of voiddef and functions of their
  1405. own resultdef. They will therefore always be incompatible with
  1406. a procvar. Because isconvertable cannot check for procedures we
  1407. use an extra check for them.}
  1408. if (left.nodetype=calln) and
  1409. (tcallnode(left).para_count=0) and
  1410. (resultdef.typ=procvardef) and
  1411. (
  1412. (m_tp_procvar in current_settings.modeswitches) or
  1413. (m_mac_procvar in current_settings.modeswitches)
  1414. ) then
  1415. begin
  1416. if assigned(tcallnode(left).right) then
  1417. begin
  1418. { this is already a procvar, if it is really equal
  1419. is checked below }
  1420. convtype:=tc_equal;
  1421. hp:=tcallnode(left).right.getcopy;
  1422. currprocdef:=tabstractprocdef(hp.resultdef);
  1423. end
  1424. else
  1425. begin
  1426. convtype:=tc_proc_2_procvar;
  1427. currprocdef:=Tprocsym(Tcallnode(left).symtableprocentry).Find_procdef_byprocvardef(Tprocvardef(resultdef));
  1428. hp:=cloadnode.create_procvar(tprocsym(tcallnode(left).symtableprocentry),
  1429. tprocdef(currprocdef),tcallnode(left).symtableproc);
  1430. if (tcallnode(left).symtableprocentry.owner.symtabletype=ObjectSymtable) then
  1431. begin
  1432. if assigned(tcallnode(left).methodpointer) then
  1433. tloadnode(hp).set_mp(tcallnode(left).get_load_methodpointer)
  1434. else
  1435. tloadnode(hp).set_mp(load_self_node);
  1436. end;
  1437. typecheckpass(hp);
  1438. end;
  1439. left.free;
  1440. left:=hp;
  1441. { Now check if the procedure we are going to assign to
  1442. the procvar, is compatible with the procvar's type }
  1443. if not(nf_explicit in flags) and
  1444. (proc_to_procvar_equal(currprocdef,tprocvardef(resultdef))=te_incompatible) then
  1445. IncompatibleTypes(left.resultdef,resultdef);
  1446. exit;
  1447. end;
  1448. { Handle explicit type conversions }
  1449. if nf_explicit in flags then
  1450. begin
  1451. { do common tc_equal cast }
  1452. convtype:=tc_equal;
  1453. { ordinal constants can be resized to 1,2,4,8 bytes }
  1454. if (left.nodetype=ordconstn) then
  1455. begin
  1456. { Insert typeconv for ordinal to the correct size first on left, after
  1457. that the other conversion can be done }
  1458. hdef:=nil;
  1459. case longint(resultdef.size) of
  1460. 1 :
  1461. hdef:=s8inttype;
  1462. 2 :
  1463. hdef:=s16inttype;
  1464. 4 :
  1465. hdef:=s32inttype;
  1466. 8 :
  1467. hdef:=s64inttype;
  1468. end;
  1469. { we need explicit, because it can also be an enum }
  1470. if assigned(hdef) then
  1471. inserttypeconv_internal(left,hdef)
  1472. else
  1473. CGMessage2(type_e_illegal_type_conversion,left.resultdef.GetTypeName,resultdef.GetTypeName);
  1474. end;
  1475. { check if the result could be in a register }
  1476. if (not(tstoreddef(resultdef).is_intregable) and
  1477. not(tstoreddef(resultdef).is_fpuregable)) or
  1478. ((left.resultdef.typ = floatdef) and
  1479. (resultdef.typ <> floatdef)) then
  1480. make_not_regable(left,vr_addr);
  1481. { class/interface to class/interface, with checkobject support }
  1482. if is_class_or_interface(resultdef) and
  1483. is_class_or_interface(left.resultdef) then
  1484. begin
  1485. { check if the types are related }
  1486. if not(nf_internal in flags) and
  1487. (not(tobjectdef(left.resultdef).is_related(tobjectdef(resultdef)))) and
  1488. (not(tobjectdef(resultdef).is_related(tobjectdef(left.resultdef)))) then
  1489. begin
  1490. { Give an error when typecasting class to interface, this is compatible
  1491. with delphi }
  1492. if is_interface(resultdef) and
  1493. not is_interface(left.resultdef) then
  1494. CGMessage2(type_e_classes_not_related,
  1495. FullTypeName(left.resultdef,resultdef),
  1496. FullTypeName(resultdef,left.resultdef))
  1497. else
  1498. CGMessage2(type_w_classes_not_related,
  1499. FullTypeName(left.resultdef,resultdef),
  1500. FullTypeName(resultdef,left.resultdef))
  1501. end;
  1502. { Add runtime check? }
  1503. if (cs_check_object in current_settings.localswitches) and
  1504. not(nf_internal in flags) then
  1505. begin
  1506. { we can translate the typeconvnode to 'as' when
  1507. typecasting to a class or interface }
  1508. { we need to make sure the result can still be
  1509. passed as a var parameter }
  1510. newblock:=internalstatements(newstatement);
  1511. if (valid_for_var(left,false)) then
  1512. begin
  1513. tempnode:=ctempcreatenode.create(voidpointertype,voidpointertype.size,tt_persistent,true);
  1514. addstatement(newstatement,tempnode);
  1515. addstatement(newstatement,cassignmentnode.create(
  1516. ctemprefnode.create(tempnode),
  1517. caddrnode.create_internal(left)));
  1518. left:=ctypeconvnode.create_internal(cderefnode.create(ctemprefnode.create(tempnode)),left.resultdef);
  1519. end
  1520. else
  1521. begin
  1522. tempnode:=ctempcreatenode.create(left.resultdef,left.resultdef.size,tt_persistent,true);
  1523. addstatement(newstatement,tempnode);
  1524. addstatement(newstatement,cassignmentnode.create(
  1525. ctemprefnode.create(tempnode),
  1526. left));
  1527. left:=ctemprefnode.create(tempnode);
  1528. end;
  1529. addstatement(newstatement,casnode.create(left.getcopy,cloadvmtaddrnode.create(ctypenode.create(resultdef))));
  1530. addstatement(newstatement,ctempdeletenode.create_normal_temp(tempnode));
  1531. addstatement(newstatement,ctypeconvnode.create_internal(left,resultdef));
  1532. left:=nil;
  1533. result:=newblock;
  1534. exit;
  1535. end;
  1536. end
  1537. else
  1538. begin
  1539. { only if the same size or formal def }
  1540. if not(
  1541. (left.resultdef.typ=formaldef) or
  1542. (
  1543. not(is_open_array(left.resultdef)) and
  1544. not(is_array_constructor(left.resultdef)) and
  1545. (left.resultdef.size=resultdef.size)
  1546. ) or
  1547. (
  1548. is_void(left.resultdef) and
  1549. (left.nodetype=derefn)
  1550. )
  1551. ) then
  1552. CGMessage2(type_e_illegal_type_conversion,left.resultdef.GetTypeName,resultdef.GetTypeName);
  1553. end;
  1554. end
  1555. else
  1556. IncompatibleTypes(left.resultdef,resultdef);
  1557. end;
  1558. else
  1559. internalerror(200211231);
  1560. end;
  1561. end;
  1562. { Give hint or warning for unportable code, exceptions are
  1563. - typecasts from constants
  1564. - void }
  1565. if not(nf_internal in flags) and
  1566. (left.nodetype<>ordconstn) and
  1567. not(is_void(left.resultdef)) and
  1568. (((left.resultdef.typ=orddef) and
  1569. (resultdef.typ in [pointerdef,procvardef,classrefdef])) or
  1570. ((resultdef.typ=orddef) and
  1571. (left.resultdef.typ in [pointerdef,procvardef,classrefdef]))) then
  1572. begin
  1573. { Give a warning when sizes don't match, because then info will be lost }
  1574. if left.resultdef.size=resultdef.size then
  1575. CGMessage(type_h_pointer_to_longint_conv_not_portable)
  1576. else
  1577. CGMessage(type_w_pointer_to_longint_conv_not_portable);
  1578. end;
  1579. result := simplify;
  1580. if assigned(result) then
  1581. exit;
  1582. { now call the resultdef helper to do constant folding }
  1583. result:=typecheck_call_helper(convtype);
  1584. end;
  1585. function ttypeconvnode.simplify: tnode;
  1586. var
  1587. hp: tnode;
  1588. begin
  1589. result := nil;
  1590. { Constant folding and other node transitions to
  1591. remove the typeconv node }
  1592. case left.nodetype of
  1593. realconstn :
  1594. begin
  1595. if (convtype = tc_real_2_currency) then
  1596. result := typecheck_real_to_currency
  1597. else if (convtype = tc_real_2_real) then
  1598. result := typecheck_real_to_real
  1599. else
  1600. exit;
  1601. if not(assigned(result)) then
  1602. begin
  1603. result := left;
  1604. left := nil;
  1605. end;
  1606. if (result.nodetype = realconstn) then
  1607. begin
  1608. hp:=result;
  1609. result:=crealconstnode.create(trealconstnode(hp).value_real,resultdef);
  1610. if ([nf_explicit,nf_internal] * flags <> []) then
  1611. include(result.flags, nf_explicit);
  1612. hp.free;
  1613. end;
  1614. end;
  1615. niln :
  1616. begin
  1617. { nil to ordinal node }
  1618. if (resultdef.typ=orddef) then
  1619. begin
  1620. hp:=cordconstnode.create(0,resultdef,true);
  1621. if ([nf_explicit,nf_internal] * flags <> []) then
  1622. include(hp.flags, nf_explicit);
  1623. result:=hp;
  1624. exit;
  1625. end
  1626. else
  1627. { fold nil to any pointer type }
  1628. if (resultdef.typ=pointerdef) then
  1629. begin
  1630. hp:=cnilnode.create;
  1631. hp.resultdef:=resultdef;
  1632. if ([nf_explicit,nf_internal] * flags <> []) then
  1633. include(hp.flags, nf_explicit);
  1634. result:=hp;
  1635. exit;
  1636. end
  1637. else
  1638. { remove typeconv after niln, but not when the result is a
  1639. methodpointer. The typeconv of the methodpointer will then
  1640. take care of updateing size of niln to OS_64 }
  1641. if not((resultdef.typ=procvardef) and
  1642. (po_methodpointer in tprocvardef(resultdef).procoptions)) then
  1643. begin
  1644. left.resultdef:=resultdef;
  1645. if ([nf_explicit,nf_internal] * flags <> []) then
  1646. include(left.flags, nf_explicit);
  1647. result:=left;
  1648. left:=nil;
  1649. exit;
  1650. end;
  1651. end;
  1652. ordconstn :
  1653. begin
  1654. { ordinal contants can be directly converted }
  1655. { but not char to char because it is a widechar to char or via versa }
  1656. { which needs extra code to do the code page transistion }
  1657. { constant ordinal to pointer }
  1658. if (resultdef.typ=pointerdef) and
  1659. (convtype<>tc_cchar_2_pchar) then
  1660. begin
  1661. hp:=cpointerconstnode.create(TConstPtrUInt(tordconstnode(left).value),resultdef);
  1662. if ([nf_explicit,nf_internal] * flags <> []) then
  1663. include(hp.flags, nf_explicit);
  1664. result:=hp;
  1665. exit;
  1666. end
  1667. else if is_ordinal(resultdef) and
  1668. not(convtype=tc_char_2_char) then
  1669. begin
  1670. { replace the resultdef and recheck the range }
  1671. if ([nf_explicit,nf_internal] * flags <> []) then
  1672. include(left.flags, nf_explicit);
  1673. testrange(left.resultdef,resultdef,tordconstnode(left).value,(nf_explicit in flags));
  1674. left.resultdef:=resultdef;
  1675. result:=left;
  1676. left:=nil;
  1677. exit;
  1678. end;
  1679. end;
  1680. pointerconstn :
  1681. begin
  1682. { pointerconstn to any pointer is folded too }
  1683. if (resultdef.typ=pointerdef) then
  1684. begin
  1685. left.resultdef:=resultdef;
  1686. if ([nf_explicit,nf_internal] * flags <> []) then
  1687. include(left.flags, nf_explicit);
  1688. result:=left;
  1689. left:=nil;
  1690. exit;
  1691. end
  1692. { constant pointer to ordinal }
  1693. else if is_ordinal(resultdef) then
  1694. begin
  1695. hp:=cordconstnode.create(TConstExprInt(tpointerconstnode(left).value),
  1696. resultdef,not(nf_explicit in flags));
  1697. if ([nf_explicit,nf_internal] * flags <> []) then
  1698. include(hp.flags, nf_explicit);
  1699. result:=hp;
  1700. exit;
  1701. end;
  1702. end;
  1703. end;
  1704. end;
  1705. procedure Ttypeconvnode.mark_write;
  1706. begin
  1707. left.mark_write;
  1708. end;
  1709. function ttypeconvnode.first_cord_to_pointer : tnode;
  1710. begin
  1711. result:=nil;
  1712. internalerror(200104043);
  1713. end;
  1714. function ttypeconvnode.first_int_to_int : tnode;
  1715. begin
  1716. first_int_to_int:=nil;
  1717. expectloc:=left.expectloc;
  1718. if not is_void(left.resultdef) then
  1719. begin
  1720. if (left.expectloc<>LOC_REGISTER) and
  1721. (resultdef.size>left.resultdef.size) then
  1722. expectloc:=LOC_REGISTER
  1723. else
  1724. if (left.expectloc=LOC_CREGISTER) and
  1725. (resultdef.size<left.resultdef.size) then
  1726. expectloc:=LOC_REGISTER;
  1727. end;
  1728. {$ifndef cpu64bit}
  1729. if is_64bit(resultdef) then
  1730. registersint:=max(registersint,2)
  1731. else
  1732. {$endif cpu64bit}
  1733. registersint:=max(registersint,1);
  1734. end;
  1735. function ttypeconvnode.first_cstring_to_pchar : tnode;
  1736. begin
  1737. result:=nil;
  1738. registersint:=1;
  1739. expectloc:=LOC_REGISTER;
  1740. end;
  1741. function ttypeconvnode.first_cstring_to_int : tnode;
  1742. begin
  1743. result:=nil;
  1744. internalerror(200510014);
  1745. end;
  1746. function ttypeconvnode.first_string_to_chararray : tnode;
  1747. begin
  1748. first_string_to_chararray:=nil;
  1749. expectloc:=left.expectloc;
  1750. end;
  1751. function ttypeconvnode.first_char_to_string : tnode;
  1752. begin
  1753. first_char_to_string:=nil;
  1754. expectloc:=LOC_REFERENCE;
  1755. end;
  1756. function ttypeconvnode.first_nothing : tnode;
  1757. begin
  1758. first_nothing:=nil;
  1759. end;
  1760. function ttypeconvnode.first_array_to_pointer : tnode;
  1761. begin
  1762. first_array_to_pointer:=nil;
  1763. if registersint<1 then
  1764. registersint:=1;
  1765. expectloc:=LOC_REGISTER;
  1766. end;
  1767. function ttypeconvnode.first_int_to_real: tnode;
  1768. var
  1769. fname: string[32];
  1770. begin
  1771. if target_info.system in system_wince then
  1772. begin
  1773. { converting a 64bit integer to a float requires a helper }
  1774. if is_64bitint(left.resultdef) or
  1775. is_currency(left.resultdef) then
  1776. begin
  1777. { hack to avoid double division by 10000, as it's
  1778. already done by typecheckpass.resultdef_int_to_real }
  1779. if is_currency(left.resultdef) then
  1780. left.resultdef := s64inttype;
  1781. if is_signed(left.resultdef) then
  1782. fname:='I64TOD'
  1783. else
  1784. fname:='UI64TOD';
  1785. end
  1786. else
  1787. { other integers are supposed to be 32 bit }
  1788. begin
  1789. if is_signed(left.resultdef) then
  1790. fname:='ITOD'
  1791. else
  1792. fname:='UTOD';
  1793. firstpass(left);
  1794. end;
  1795. result:=ccallnode.createintern(fname,ccallparanode.create(
  1796. left,nil));
  1797. left:=nil;
  1798. firstpass(result);
  1799. exit;
  1800. end
  1801. else
  1802. begin
  1803. { converting a 64bit integer to a float requires a helper }
  1804. if is_64bitint(left.resultdef) or
  1805. is_currency(left.resultdef) then
  1806. begin
  1807. { hack to avoid double division by 10000, as it's
  1808. already done by typecheckpass.resultdef_int_to_real }
  1809. if is_currency(left.resultdef) then
  1810. left.resultdef := s64inttype;
  1811. if is_signed(left.resultdef) then
  1812. fname:='int64_to_'
  1813. else
  1814. { we can't do better currently }
  1815. fname:='int64_to_';
  1816. end
  1817. else
  1818. { other integers are supposed to be 32 bit }
  1819. begin
  1820. if is_signed(left.resultdef) then
  1821. fname:='int32_to_'
  1822. else
  1823. { we can't do better currently }
  1824. fname:='int32_to_';
  1825. firstpass(left);
  1826. end;
  1827. if tfloatdef(resultdef).floattype=s64real then
  1828. fname:=fname+'float64'
  1829. else
  1830. fname:=fname+'float32';
  1831. result:=ctypeconvnode.create_internal(ccallnode.createintern(fname,ccallparanode.create(
  1832. left,nil)),resultdef);
  1833. left:=nil;
  1834. firstpass(result);
  1835. exit;
  1836. end;
  1837. end;
  1838. function ttypeconvnode.first_real_to_real : tnode;
  1839. begin
  1840. {$ifdef cpufpemu}
  1841. if cs_fp_emulation in current_settings.moduleswitches then
  1842. begin
  1843. if target_info.system in system_wince then
  1844. begin
  1845. case tfloatdef(left.resultdef).floattype of
  1846. s32real:
  1847. case tfloatdef(resultdef).floattype of
  1848. s64real:
  1849. result:=ccallnode.createintern('STOD',ccallparanode.create(left,nil));
  1850. s32real:
  1851. begin
  1852. result:=left;
  1853. left:=nil;
  1854. end;
  1855. else
  1856. internalerror(2005082704);
  1857. end;
  1858. s64real:
  1859. case tfloatdef(resultdef).floattype of
  1860. s32real:
  1861. result:=ccallnode.createintern('DTOS',ccallparanode.create(left,nil));
  1862. s64real:
  1863. begin
  1864. result:=left;
  1865. left:=nil;
  1866. end;
  1867. else
  1868. internalerror(2005082703);
  1869. end;
  1870. else
  1871. internalerror(2005082702);
  1872. end;
  1873. left:=nil;
  1874. firstpass(result);
  1875. exit;
  1876. end
  1877. else
  1878. begin
  1879. case tfloatdef(left.resultdef).floattype of
  1880. s32real:
  1881. case tfloatdef(resultdef).floattype of
  1882. s64real:
  1883. result:=ctypeconvnode.create_explicit(ccallnode.createintern('float32_to_float64',ccallparanode.create(
  1884. ctypeconvnode.create_internal(left,search_system_type('FLOAT32REC').typedef),nil)),resultdef);
  1885. s32real:
  1886. begin
  1887. result:=left;
  1888. left:=nil;
  1889. end;
  1890. else
  1891. internalerror(200610151);
  1892. end;
  1893. s64real:
  1894. case tfloatdef(resultdef).floattype of
  1895. s32real:
  1896. result:=ctypeconvnode.create_explicit(ccallnode.createintern('float64_to_float32',ccallparanode.create(
  1897. ctypeconvnode.create_internal(left,search_system_type('FLOAT64').typedef),nil)),resultdef);
  1898. s64real:
  1899. begin
  1900. result:=left;
  1901. left:=nil;
  1902. end;
  1903. else
  1904. internalerror(200610152);
  1905. end;
  1906. else
  1907. internalerror(200610153);
  1908. end;
  1909. left:=nil;
  1910. firstpass(result);
  1911. exit;
  1912. end;
  1913. end
  1914. else
  1915. {$endif cpufpemu}
  1916. begin
  1917. first_real_to_real:=nil;
  1918. if registersfpu<1 then
  1919. registersfpu:=1;
  1920. expectloc:=LOC_FPUREGISTER;
  1921. end;
  1922. end;
  1923. function ttypeconvnode.first_pointer_to_array : tnode;
  1924. begin
  1925. first_pointer_to_array:=nil;
  1926. if registersint<1 then
  1927. registersint:=1;
  1928. expectloc:=LOC_REFERENCE;
  1929. end;
  1930. function ttypeconvnode.first_cchar_to_pchar : tnode;
  1931. begin
  1932. first_cchar_to_pchar:=nil;
  1933. internalerror(200104021);
  1934. end;
  1935. function ttypeconvnode.first_bool_to_int : tnode;
  1936. begin
  1937. first_bool_to_int:=nil;
  1938. { byte(boolean) or word(wordbool) or longint(longbool) must
  1939. be accepted for var parameters }
  1940. if (nf_explicit in flags) and
  1941. (left.resultdef.size=resultdef.size) and
  1942. (left.expectloc in [LOC_REFERENCE,LOC_CREFERENCE,LOC_CREGISTER]) then
  1943. exit;
  1944. { when converting to 64bit, first convert to a 32bit int and then }
  1945. { convert to a 64bit int (only necessary for 32bit processors) (JM) }
  1946. if resultdef.size > sizeof(aint) then
  1947. begin
  1948. result := ctypeconvnode.create_internal(left,u32inttype);
  1949. result := ctypeconvnode.create(result,resultdef);
  1950. left := nil;
  1951. firstpass(result);
  1952. exit;
  1953. end;
  1954. expectloc:=LOC_REGISTER;
  1955. if registersint<1 then
  1956. registersint:=1;
  1957. end;
  1958. function ttypeconvnode.first_int_to_bool : tnode;
  1959. begin
  1960. first_int_to_bool:=nil;
  1961. { byte(boolean) or word(wordbool) or longint(longbool) must
  1962. be accepted for var parameters }
  1963. if (nf_explicit in flags) and
  1964. (left.resultdef.size=resultdef.size) and
  1965. (left.expectloc in [LOC_REFERENCE,LOC_CREFERENCE,LOC_CREGISTER]) then
  1966. exit;
  1967. expectloc:=LOC_REGISTER;
  1968. { need if bool to bool !!
  1969. not very nice !!
  1970. insertypeconv(left,s32inttype);
  1971. left.explizit:=true;
  1972. firstpass(left); }
  1973. if registersint<1 then
  1974. registersint:=1;
  1975. end;
  1976. function ttypeconvnode.first_bool_to_bool : tnode;
  1977. begin
  1978. first_bool_to_bool:=nil;
  1979. if (left.expectloc in [LOC_FLAGS,LOC_JUMP]) then
  1980. expectloc := left.expectloc
  1981. else
  1982. begin
  1983. expectloc:=LOC_REGISTER;
  1984. if registersint<1 then
  1985. registersint:=1;
  1986. end;
  1987. end;
  1988. function ttypeconvnode.first_char_to_char : tnode;
  1989. begin
  1990. first_char_to_char:=first_int_to_int;
  1991. end;
  1992. function ttypeconvnode.first_proc_to_procvar : tnode;
  1993. begin
  1994. first_proc_to_procvar:=nil;
  1995. { if we take the address of a nested function, it'll }
  1996. { probably be used in a foreach() construct and then }
  1997. { the parent needs a stackframe }
  1998. if (tprocdef(left.resultdef).parast.symtablelevel>=normal_function_level) then
  1999. include(current_procinfo.flags,pi_needs_stackframe);
  2000. if tabstractprocdef(resultdef).is_addressonly then
  2001. begin
  2002. registersint:=left.registersint;
  2003. if registersint<1 then
  2004. registersint:=1;
  2005. expectloc:=LOC_REGISTER;
  2006. end
  2007. else
  2008. begin
  2009. if not(left.expectloc in [LOC_CREFERENCE,LOC_REFERENCE]) then
  2010. CGMessage(parser_e_illegal_expression);
  2011. registersint:=left.registersint;
  2012. expectloc:=left.expectloc
  2013. end
  2014. end;
  2015. function ttypeconvnode.first_set_to_set : tnode;
  2016. var
  2017. srsym: ttypesym;
  2018. newstatement : tstatementnode;
  2019. temp : ttempcreatenode;
  2020. begin
  2021. { in theory, we should do range checking here,
  2022. but Delphi doesn't do it either (FK) }
  2023. if left.nodetype=setconstn then
  2024. begin
  2025. left.resultdef:=resultdef;
  2026. result:=left;
  2027. end
  2028. { equal sets for the code generator? }
  2029. else if (left.resultdef.size=resultdef.size) and
  2030. (tsetdef(left.resultdef).setbase=tsetdef(resultdef).setbase) then
  2031. result:=left
  2032. else
  2033. // if is_varset(resultdef) then
  2034. begin
  2035. result:=internalstatements(newstatement);
  2036. { create temp for result }
  2037. temp:=ctempcreatenode.create(resultdef,resultdef.size,tt_persistent,true);
  2038. addstatement(newstatement,temp);
  2039. addstatement(newstatement,ccallnode.createintern('fpc_varset_load',
  2040. ccallparanode.create(cordconstnode.create(resultdef.size,sinttype,false),
  2041. ccallparanode.create(ctemprefnode.create(temp),
  2042. ccallparanode.create(cordconstnode.create(left.resultdef.size,sinttype,false),
  2043. ccallparanode.create(left,nil)))))
  2044. );
  2045. addstatement(newstatement,ctempdeletenode.create_normal_temp(temp));
  2046. addstatement(newstatement,ctemprefnode.create(temp));
  2047. end;
  2048. {
  2049. else
  2050. begin
  2051. srsym:=search_system_type('FPC_SMALL_SET');
  2052. result :=
  2053. ccallnode.createinternres('fpc_set_load_small',
  2054. ccallparanode.create(ctypeconvnode.create_internal(left,srsym.typedef),nil),resultdef);
  2055. end;
  2056. }
  2057. { reused }
  2058. left:=nil;
  2059. end;
  2060. function ttypeconvnode.first_ansistring_to_pchar : tnode;
  2061. begin
  2062. first_ansistring_to_pchar:=nil;
  2063. expectloc:=LOC_REGISTER;
  2064. if registersint<1 then
  2065. registersint:=1;
  2066. end;
  2067. function ttypeconvnode.first_arrayconstructor_to_set : tnode;
  2068. begin
  2069. first_arrayconstructor_to_set:=nil;
  2070. internalerror(200104022);
  2071. end;
  2072. function ttypeconvnode.first_class_to_intf : tnode;
  2073. begin
  2074. first_class_to_intf:=nil;
  2075. expectloc:=LOC_REGISTER;
  2076. if registersint<1 then
  2077. registersint:=1;
  2078. end;
  2079. function ttypeconvnode._first_int_to_int : tnode;
  2080. begin
  2081. result:=first_int_to_int;
  2082. end;
  2083. function ttypeconvnode._first_cstring_to_pchar : tnode;
  2084. begin
  2085. result:=first_cstring_to_pchar;
  2086. end;
  2087. function ttypeconvnode._first_cstring_to_int : tnode;
  2088. begin
  2089. result:=first_cstring_to_int;
  2090. end;
  2091. function ttypeconvnode._first_string_to_chararray : tnode;
  2092. begin
  2093. result:=first_string_to_chararray;
  2094. end;
  2095. function ttypeconvnode._first_char_to_string : tnode;
  2096. begin
  2097. result:=first_char_to_string;
  2098. end;
  2099. function ttypeconvnode._first_nothing : tnode;
  2100. begin
  2101. result:=first_nothing;
  2102. end;
  2103. function ttypeconvnode._first_array_to_pointer : tnode;
  2104. begin
  2105. result:=first_array_to_pointer;
  2106. end;
  2107. function ttypeconvnode._first_int_to_real : tnode;
  2108. begin
  2109. result:=first_int_to_real;
  2110. end;
  2111. function ttypeconvnode._first_real_to_real : tnode;
  2112. begin
  2113. result:=first_real_to_real;
  2114. end;
  2115. function ttypeconvnode._first_pointer_to_array : tnode;
  2116. begin
  2117. result:=first_pointer_to_array;
  2118. end;
  2119. function ttypeconvnode._first_cchar_to_pchar : tnode;
  2120. begin
  2121. result:=first_cchar_to_pchar;
  2122. end;
  2123. function ttypeconvnode._first_bool_to_int : tnode;
  2124. begin
  2125. result:=first_bool_to_int;
  2126. end;
  2127. function ttypeconvnode._first_int_to_bool : tnode;
  2128. begin
  2129. result:=first_int_to_bool;
  2130. end;
  2131. function ttypeconvnode._first_bool_to_bool : tnode;
  2132. begin
  2133. result:=first_bool_to_bool;
  2134. end;
  2135. function ttypeconvnode._first_proc_to_procvar : tnode;
  2136. begin
  2137. result:=first_proc_to_procvar;
  2138. end;
  2139. function ttypeconvnode._first_set_to_set : tnode;
  2140. begin
  2141. result:=first_set_to_set;
  2142. end;
  2143. function ttypeconvnode._first_cord_to_pointer : tnode;
  2144. begin
  2145. result:=first_cord_to_pointer;
  2146. end;
  2147. function ttypeconvnode._first_ansistring_to_pchar : tnode;
  2148. begin
  2149. result:=first_ansistring_to_pchar;
  2150. end;
  2151. function ttypeconvnode._first_arrayconstructor_to_set : tnode;
  2152. begin
  2153. result:=first_arrayconstructor_to_set;
  2154. end;
  2155. function ttypeconvnode._first_class_to_intf : tnode;
  2156. begin
  2157. result:=first_class_to_intf;
  2158. end;
  2159. function ttypeconvnode._first_char_to_char : tnode;
  2160. begin
  2161. result:=first_char_to_char;
  2162. end;
  2163. function ttypeconvnode.first_call_helper(c : tconverttype) : tnode;
  2164. const
  2165. firstconvert : array[tconverttype] of pointer = (
  2166. nil, { none }
  2167. @ttypeconvnode._first_nothing, {equal}
  2168. @ttypeconvnode._first_nothing, {not_possible}
  2169. nil, { removed in typecheck_string_to_string }
  2170. @ttypeconvnode._first_char_to_string,
  2171. @ttypeconvnode._first_nothing, { char_2_chararray, needs nothing extra }
  2172. nil, { removed in typecheck_chararray_to_string }
  2173. @ttypeconvnode._first_cchar_to_pchar,
  2174. @ttypeconvnode._first_cstring_to_pchar,
  2175. @ttypeconvnode._first_cstring_to_int,
  2176. @ttypeconvnode._first_ansistring_to_pchar,
  2177. @ttypeconvnode._first_string_to_chararray,
  2178. nil, { removed in typecheck_chararray_to_string }
  2179. @ttypeconvnode._first_array_to_pointer,
  2180. @ttypeconvnode._first_pointer_to_array,
  2181. @ttypeconvnode._first_int_to_int,
  2182. @ttypeconvnode._first_int_to_bool,
  2183. @ttypeconvnode._first_bool_to_bool,
  2184. @ttypeconvnode._first_bool_to_int,
  2185. @ttypeconvnode._first_real_to_real,
  2186. @ttypeconvnode._first_int_to_real,
  2187. nil, { removed in typecheck_real_to_currency }
  2188. @ttypeconvnode._first_proc_to_procvar,
  2189. @ttypeconvnode._first_arrayconstructor_to_set,
  2190. @ttypeconvnode._first_set_to_set,
  2191. @ttypeconvnode._first_cord_to_pointer,
  2192. @ttypeconvnode._first_nothing,
  2193. @ttypeconvnode._first_nothing,
  2194. @ttypeconvnode._first_class_to_intf,
  2195. @ttypeconvnode._first_char_to_char,
  2196. @ttypeconvnode._first_nothing,
  2197. @ttypeconvnode._first_nothing,
  2198. nil,
  2199. nil,
  2200. nil,
  2201. nil,
  2202. nil,
  2203. nil,
  2204. nil
  2205. );
  2206. type
  2207. tprocedureofobject = function : tnode of object;
  2208. var
  2209. r : packed record
  2210. proc : pointer;
  2211. obj : pointer;
  2212. end;
  2213. begin
  2214. { this is a little bit dirty but it works }
  2215. { and should be quite portable too }
  2216. r.proc:=firstconvert[c];
  2217. r.obj:=self;
  2218. if not assigned(r.proc) then
  2219. internalerror(200312081);
  2220. first_call_helper:=tprocedureofobject(r)()
  2221. end;
  2222. function ttypeconvnode.pass_1 : tnode;
  2223. begin
  2224. result:=nil;
  2225. firstpass(left);
  2226. if codegenerror then
  2227. exit;
  2228. { load the value_str from the left part }
  2229. registersint:=left.registersint;
  2230. registersfpu:=left.registersfpu;
  2231. {$ifdef SUPPORT_MMX}
  2232. registersmmx:=left.registersmmx;
  2233. {$endif}
  2234. expectloc:=left.expectloc;
  2235. result:=first_call_helper(convtype);
  2236. end;
  2237. function ttypeconvnode.assign_allowed:boolean;
  2238. begin
  2239. result:=(convtype=tc_equal) or
  2240. { typecasting from void is always allowed }
  2241. is_void(left.resultdef) or
  2242. (left.resultdef.typ=formaldef) or
  2243. { int 2 int with same size reuses same location, or for
  2244. tp7 mode also allow size < orignal size }
  2245. (
  2246. (convtype=tc_int_2_int) and
  2247. (
  2248. (resultdef.size=left.resultdef.size) or
  2249. ((m_tp7 in current_settings.modeswitches) and
  2250. (resultdef.size<left.resultdef.size))
  2251. )
  2252. ) or
  2253. { int 2 bool/bool 2 int, explicit typecast, see also nx86cnv }
  2254. ((convtype in [tc_int_2_bool,tc_bool_2_int]) and
  2255. (nf_explicit in flags) and
  2256. (resultdef.size=left.resultdef.size));
  2257. { When using only a part of the value it can't be in a register since
  2258. that will load the value in a new register first }
  2259. if (resultdef.size<left.resultdef.size) then
  2260. make_not_regable(left,vr_addr);
  2261. end;
  2262. function ttypeconvnode.docompare(p: tnode) : boolean;
  2263. begin
  2264. docompare :=
  2265. inherited docompare(p) and
  2266. (convtype = ttypeconvnode(p).convtype);
  2267. end;
  2268. procedure ttypeconvnode._second_int_to_int;
  2269. begin
  2270. second_int_to_int;
  2271. end;
  2272. procedure ttypeconvnode._second_string_to_string;
  2273. begin
  2274. second_string_to_string;
  2275. end;
  2276. procedure ttypeconvnode._second_cstring_to_pchar;
  2277. begin
  2278. second_cstring_to_pchar;
  2279. end;
  2280. procedure ttypeconvnode._second_cstring_to_int;
  2281. begin
  2282. second_cstring_to_int;
  2283. end;
  2284. procedure ttypeconvnode._second_string_to_chararray;
  2285. begin
  2286. second_string_to_chararray;
  2287. end;
  2288. procedure ttypeconvnode._second_array_to_pointer;
  2289. begin
  2290. second_array_to_pointer;
  2291. end;
  2292. procedure ttypeconvnode._second_pointer_to_array;
  2293. begin
  2294. second_pointer_to_array;
  2295. end;
  2296. procedure ttypeconvnode._second_chararray_to_string;
  2297. begin
  2298. second_chararray_to_string;
  2299. end;
  2300. procedure ttypeconvnode._second_char_to_string;
  2301. begin
  2302. second_char_to_string;
  2303. end;
  2304. procedure ttypeconvnode._second_int_to_real;
  2305. begin
  2306. second_int_to_real;
  2307. end;
  2308. procedure ttypeconvnode._second_real_to_real;
  2309. begin
  2310. second_real_to_real;
  2311. end;
  2312. procedure ttypeconvnode._second_cord_to_pointer;
  2313. begin
  2314. second_cord_to_pointer;
  2315. end;
  2316. procedure ttypeconvnode._second_proc_to_procvar;
  2317. begin
  2318. second_proc_to_procvar;
  2319. end;
  2320. procedure ttypeconvnode._second_bool_to_int;
  2321. begin
  2322. second_bool_to_int;
  2323. end;
  2324. procedure ttypeconvnode._second_int_to_bool;
  2325. begin
  2326. second_int_to_bool;
  2327. end;
  2328. procedure ttypeconvnode._second_bool_to_bool;
  2329. begin
  2330. second_bool_to_bool;
  2331. end;
  2332. procedure ttypeconvnode._second_set_to_set;
  2333. begin
  2334. second_set_to_set;
  2335. end;
  2336. procedure ttypeconvnode._second_ansistring_to_pchar;
  2337. begin
  2338. second_ansistring_to_pchar;
  2339. end;
  2340. procedure ttypeconvnode._second_class_to_intf;
  2341. begin
  2342. second_class_to_intf;
  2343. end;
  2344. procedure ttypeconvnode._second_char_to_char;
  2345. begin
  2346. second_char_to_char;
  2347. end;
  2348. procedure ttypeconvnode._second_nothing;
  2349. begin
  2350. second_nothing;
  2351. end;
  2352. procedure ttypeconvnode.second_call_helper(c : tconverttype);
  2353. const
  2354. secondconvert : array[tconverttype] of pointer = (
  2355. @ttypeconvnode._second_nothing, {none}
  2356. @ttypeconvnode._second_nothing, {equal}
  2357. @ttypeconvnode._second_nothing, {not_possible}
  2358. @ttypeconvnode._second_nothing, {second_string_to_string, handled in resultdef pass }
  2359. @ttypeconvnode._second_char_to_string,
  2360. @ttypeconvnode._second_nothing, {char_to_charray}
  2361. @ttypeconvnode._second_nothing, { pchar_to_string, handled in resultdef pass }
  2362. @ttypeconvnode._second_nothing, {cchar_to_pchar}
  2363. @ttypeconvnode._second_cstring_to_pchar,
  2364. @ttypeconvnode._second_cstring_to_int,
  2365. @ttypeconvnode._second_ansistring_to_pchar,
  2366. @ttypeconvnode._second_string_to_chararray,
  2367. @ttypeconvnode._second_nothing, { chararray_to_string, handled in resultdef pass }
  2368. @ttypeconvnode._second_array_to_pointer,
  2369. @ttypeconvnode._second_pointer_to_array,
  2370. @ttypeconvnode._second_int_to_int,
  2371. @ttypeconvnode._second_int_to_bool,
  2372. @ttypeconvnode._second_bool_to_bool,
  2373. @ttypeconvnode._second_bool_to_int,
  2374. @ttypeconvnode._second_real_to_real,
  2375. @ttypeconvnode._second_int_to_real,
  2376. @ttypeconvnode._second_nothing, { real_to_currency, handled in resultdef pass }
  2377. @ttypeconvnode._second_proc_to_procvar,
  2378. @ttypeconvnode._second_nothing, { arrayconstructor_to_set }
  2379. @ttypeconvnode._second_nothing, { second_set_to_set, handled in first pass }
  2380. @ttypeconvnode._second_cord_to_pointer,
  2381. @ttypeconvnode._second_nothing, { interface 2 string }
  2382. @ttypeconvnode._second_nothing, { interface 2 guid }
  2383. @ttypeconvnode._second_class_to_intf,
  2384. @ttypeconvnode._second_char_to_char,
  2385. @ttypeconvnode._second_nothing, { dynarray_2_openarray }
  2386. @ttypeconvnode._second_nothing, { pwchar_2_string }
  2387. @ttypeconvnode._second_nothing, { variant_2_dynarray }
  2388. @ttypeconvnode._second_nothing, { dynarray_2_variant}
  2389. @ttypeconvnode._second_nothing, { variant_2_enum }
  2390. @ttypeconvnode._second_nothing, { enum_2_variant }
  2391. @ttypeconvnode._second_nothing, { variant_2_interface }
  2392. @ttypeconvnode._second_nothing, { interface_2_variant }
  2393. @ttypeconvnode._second_nothing { array_2_dynarray }
  2394. );
  2395. type
  2396. tprocedureofobject = procedure of object;
  2397. var
  2398. r : packed record
  2399. proc : pointer;
  2400. obj : pointer;
  2401. end;
  2402. begin
  2403. { this is a little bit dirty but it works }
  2404. { and should be quite portable too }
  2405. r.proc:=secondconvert[c];
  2406. r.obj:=self;
  2407. tprocedureofobject(r)();
  2408. end;
  2409. {*****************************************************************************
  2410. TISNODE
  2411. *****************************************************************************}
  2412. constructor tisnode.create(l,r : tnode);
  2413. begin
  2414. inherited create(isn,l,r);
  2415. end;
  2416. function tisnode.pass_typecheck:tnode;
  2417. var
  2418. paras: tcallparanode;
  2419. begin
  2420. result:=nil;
  2421. typecheckpass(left);
  2422. typecheckpass(right);
  2423. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2424. set_varstate(right,vs_read,[vsf_must_be_valid]);
  2425. if codegenerror then
  2426. exit;
  2427. if (right.resultdef.typ=classrefdef) then
  2428. begin
  2429. { left must be a class }
  2430. if is_class(left.resultdef) then
  2431. begin
  2432. { the operands must be related }
  2433. if (not(tobjectdef(left.resultdef).is_related(
  2434. tobjectdef(tclassrefdef(right.resultdef).pointeddef)))) and
  2435. (not(tobjectdef(tclassrefdef(right.resultdef).pointeddef).is_related(
  2436. tobjectdef(left.resultdef)))) then
  2437. CGMessage2(type_e_classes_not_related,left.resultdef.typename,
  2438. tclassrefdef(right.resultdef).pointeddef.typename);
  2439. end
  2440. else
  2441. CGMessage1(type_e_class_type_expected,left.resultdef.typename);
  2442. { call fpc_do_is helper }
  2443. paras := ccallparanode.create(
  2444. left,
  2445. ccallparanode.create(
  2446. right,nil));
  2447. result := ccallnode.createintern('fpc_do_is',paras);
  2448. left := nil;
  2449. right := nil;
  2450. end
  2451. else if is_interface(right.resultdef) then
  2452. begin
  2453. { left is a class }
  2454. if is_class(left.resultdef) then
  2455. begin
  2456. { the class must implement the interface }
  2457. if tobjectdef(left.resultdef).find_implemented_interface(tobjectdef(right.resultdef))=nil then
  2458. CGMessage2(type_e_classes_not_related,
  2459. FullTypeName(left.resultdef,right.resultdef),
  2460. FullTypeName(right.resultdef,left.resultdef))
  2461. end
  2462. { left is an interface }
  2463. else if is_interface(left.resultdef) then
  2464. begin
  2465. { the operands must be related }
  2466. if (not(tobjectdef(left.resultdef).is_related(tobjectdef(right.resultdef)))) and
  2467. (not(tobjectdef(right.resultdef).is_related(tobjectdef(left.resultdef)))) then
  2468. CGMessage2(type_e_classes_not_related,
  2469. FullTypeName(left.resultdef,right.resultdef),
  2470. FullTypeName(right.resultdef,left.resultdef));
  2471. end
  2472. else
  2473. CGMessage1(type_e_class_type_expected,left.resultdef.typename);
  2474. { call fpc_do_is helper }
  2475. paras := ccallparanode.create(
  2476. left,
  2477. ccallparanode.create(
  2478. right,nil));
  2479. result := ccallnode.createintern('fpc_do_is',paras);
  2480. left := nil;
  2481. right := nil;
  2482. end
  2483. else
  2484. CGMessage1(type_e_class_or_interface_type_expected,right.resultdef.typename);
  2485. resultdef:=booltype;
  2486. end;
  2487. function tisnode.pass_1 : tnode;
  2488. begin
  2489. internalerror(200204254);
  2490. result:=nil;
  2491. end;
  2492. { dummy pass_2, it will never be called, but we need one since }
  2493. { you can't instantiate an abstract class }
  2494. procedure tisnode.pass_generate_code;
  2495. begin
  2496. end;
  2497. {*****************************************************************************
  2498. TASNODE
  2499. *****************************************************************************}
  2500. constructor tasnode.create(l,r : tnode);
  2501. begin
  2502. inherited create(asn,l,r);
  2503. call := nil;
  2504. end;
  2505. destructor tasnode.destroy;
  2506. begin
  2507. call.free;
  2508. inherited destroy;
  2509. end;
  2510. function tasnode.pass_typecheck:tnode;
  2511. var
  2512. hp : tnode;
  2513. begin
  2514. result:=nil;
  2515. typecheckpass(right);
  2516. typecheckpass(left);
  2517. set_varstate(right,vs_read,[vsf_must_be_valid]);
  2518. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2519. if codegenerror then
  2520. exit;
  2521. if (right.resultdef.typ=classrefdef) then
  2522. begin
  2523. { left must be a class }
  2524. if is_class(left.resultdef) then
  2525. begin
  2526. { the operands must be related }
  2527. if (not(tobjectdef(left.resultdef).is_related(
  2528. tobjectdef(tclassrefdef(right.resultdef).pointeddef)))) and
  2529. (not(tobjectdef(tclassrefdef(right.resultdef).pointeddef).is_related(
  2530. tobjectdef(left.resultdef)))) then
  2531. CGMessage2(type_e_classes_not_related,
  2532. FullTypeName(left.resultdef,tclassrefdef(right.resultdef).pointeddef),
  2533. FullTypeName(tclassrefdef(right.resultdef).pointeddef,left.resultdef));
  2534. end
  2535. else
  2536. CGMessage1(type_e_class_type_expected,left.resultdef.typename);
  2537. resultdef:=tclassrefdef(right.resultdef).pointeddef;
  2538. end
  2539. else if is_interface(right.resultdef) then
  2540. begin
  2541. { left is a class }
  2542. if not(is_class(left.resultdef) or
  2543. is_interfacecom(left.resultdef)) then
  2544. CGMessage1(type_e_class_or_cominterface_type_expected,left.resultdef.typename);
  2545. resultdef:=right.resultdef;
  2546. { load the GUID of the interface }
  2547. if (right.nodetype=typen) then
  2548. begin
  2549. if assigned(tobjectdef(right.resultdef).iidguid) then
  2550. begin
  2551. hp:=cguidconstnode.create(tobjectdef(right.resultdef).iidguid^);
  2552. right.free;
  2553. right:=hp;
  2554. end
  2555. else
  2556. internalerror(200206282);
  2557. typecheckpass(right);
  2558. end;
  2559. end
  2560. else
  2561. CGMessage1(type_e_class_or_interface_type_expected,right.resultdef.typename);
  2562. end;
  2563. function tasnode.dogetcopy: tnode;
  2564. begin
  2565. result := inherited dogetcopy;
  2566. if assigned(call) then
  2567. tasnode(result).call := call.getcopy
  2568. else
  2569. tasnode(result).call := nil;
  2570. end;
  2571. function tasnode.pass_1 : tnode;
  2572. var
  2573. procname: string;
  2574. begin
  2575. result:=nil;
  2576. if not assigned(call) then
  2577. begin
  2578. if is_class(left.resultdef) and
  2579. (right.resultdef.typ=classrefdef) then
  2580. call := ccallnode.createinternres('fpc_do_as',
  2581. ccallparanode.create(left,ccallparanode.create(right,nil)),
  2582. resultdef)
  2583. else
  2584. begin
  2585. if is_class(left.resultdef) then
  2586. procname := 'fpc_class_as_intf'
  2587. else
  2588. procname := 'fpc_intf_as';
  2589. call := ccallnode.createintern(procname,
  2590. ccallparanode.create(right,ccallparanode.create(left,nil)));
  2591. call := ctypeconvnode.create_internal(call,resultdef);
  2592. end;
  2593. left := nil;
  2594. right := nil;
  2595. firstpass(call);
  2596. if codegenerror then
  2597. exit;
  2598. expectloc:=call.expectloc;
  2599. registersint:=call.registersint;
  2600. registersfpu:=call.registersfpu;
  2601. {$ifdef SUPPORT_MMX}
  2602. registersmmx:=call.registersmmx;
  2603. {$endif SUPPORT_MMX}
  2604. end;
  2605. end;
  2606. begin
  2607. ctypeconvnode:=ttypeconvnode;
  2608. casnode:=tasnode;
  2609. cisnode:=tisnode;
  2610. end.