ncnv.pas 74 KB

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  1. {
  2. $Id$
  3. Copyright (c) 2000-2002 by Florian Klaempfl
  4. Type checking and register allocation for type converting nodes
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. ****************************************************************************
  17. }
  18. unit ncnv;
  19. {$i fpcdefs.inc}
  20. interface
  21. uses
  22. node,
  23. symtype,symppu,
  24. defutil,defcmp,
  25. nld
  26. {$ifdef Delphi}
  27. ,dmisc
  28. {$endif}
  29. ;
  30. type
  31. ttypeconvnode = class(tunarynode)
  32. totype : ttype;
  33. convtype : tconverttype;
  34. constructor create(node : tnode;const t : ttype);virtual;
  35. constructor create_explicit(node : tnode;const t : ttype);
  36. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  37. procedure ppuwrite(ppufile:tcompilerppufile);override;
  38. procedure derefimpl;override;
  39. function getcopy : tnode;override;
  40. function pass_1 : tnode;override;
  41. function det_resulttype:tnode;override;
  42. procedure mark_write;override;
  43. function docompare(p: tnode) : boolean; override;
  44. private
  45. function resulttype_cord_to_pointer : tnode;
  46. function resulttype_chararray_to_string : tnode;
  47. function resulttype_string_to_chararray : tnode;
  48. function resulttype_string_to_string : tnode;
  49. function resulttype_char_to_string : tnode;
  50. function resulttype_char_to_chararray : tnode;
  51. function resulttype_int_to_real : tnode;
  52. function resulttype_real_to_real : tnode;
  53. function resulttype_cchar_to_pchar : tnode;
  54. function resulttype_cstring_to_pchar : tnode;
  55. function resulttype_char_to_char : tnode;
  56. function resulttype_arrayconstructor_to_set : tnode;
  57. function resulttype_pchar_to_string : tnode;
  58. function resulttype_interface_to_guid : tnode;
  59. function resulttype_dynarray_to_openarray : tnode;
  60. function resulttype_pwchar_to_string : tnode;
  61. function resulttype_variant_to_dynarray : tnode;
  62. function resulttype_dynarray_to_variant : tnode;
  63. function resulttype_call_helper(c : tconverttype) : tnode;
  64. protected
  65. function first_int_to_int : tnode;virtual;
  66. function first_cstring_to_pchar : tnode;virtual;
  67. function first_string_to_chararray : tnode;virtual;
  68. function first_char_to_string : tnode;virtual;
  69. function first_nothing : tnode;virtual;
  70. function first_array_to_pointer : tnode;virtual;
  71. function first_int_to_real : tnode;virtual;
  72. function first_real_to_real : tnode;virtual;
  73. function first_pointer_to_array : tnode;virtual;
  74. function first_cchar_to_pchar : tnode;virtual;
  75. function first_bool_to_int : tnode;virtual;
  76. function first_int_to_bool : tnode;virtual;
  77. function first_bool_to_bool : tnode;virtual;
  78. function first_proc_to_procvar : tnode;virtual;
  79. function first_load_smallset : tnode;virtual;
  80. function first_cord_to_pointer : tnode;virtual;
  81. function first_ansistring_to_pchar : tnode;virtual;
  82. function first_arrayconstructor_to_set : tnode;virtual;
  83. function first_class_to_intf : tnode;virtual;
  84. function first_char_to_char : tnode;virtual;
  85. function first_call_helper(c : tconverttype) : tnode;
  86. { these wrapper are necessary, because the first_* stuff is called }
  87. { through a table. Without the wrappers override wouldn't have }
  88. { any effect }
  89. function _first_int_to_int : tnode;
  90. function _first_cstring_to_pchar : tnode;
  91. function _first_string_to_chararray : tnode;
  92. function _first_char_to_string : tnode;
  93. function _first_nothing : tnode;
  94. function _first_array_to_pointer : tnode;
  95. function _first_int_to_real : tnode;
  96. function _first_real_to_real : tnode;
  97. function _first_pointer_to_array : tnode;
  98. function _first_cchar_to_pchar : tnode;
  99. function _first_bool_to_int : tnode;
  100. function _first_int_to_bool : tnode;
  101. function _first_bool_to_bool : tnode;
  102. function _first_proc_to_procvar : tnode;
  103. function _first_load_smallset : tnode;
  104. function _first_cord_to_pointer : tnode;
  105. function _first_ansistring_to_pchar : tnode;
  106. function _first_arrayconstructor_to_set : tnode;
  107. function _first_class_to_intf : tnode;
  108. function _first_char_to_char : tnode;
  109. procedure second_int_to_int;virtual;abstract;
  110. procedure second_string_to_string;virtual;abstract;
  111. procedure second_cstring_to_pchar;virtual;abstract;
  112. procedure second_string_to_chararray;virtual;abstract;
  113. procedure second_array_to_pointer;virtual;abstract;
  114. procedure second_pointer_to_array;virtual;abstract;
  115. procedure second_chararray_to_string;virtual;abstract;
  116. procedure second_char_to_string;virtual;abstract;
  117. procedure second_int_to_real;virtual;abstract;
  118. procedure second_real_to_real;virtual;abstract;
  119. procedure second_cord_to_pointer;virtual;abstract;
  120. procedure second_proc_to_procvar;virtual;abstract;
  121. procedure second_bool_to_int;virtual;abstract;
  122. procedure second_int_to_bool;virtual;abstract;
  123. procedure second_bool_to_bool;virtual;abstract;
  124. procedure second_load_smallset;virtual;abstract;
  125. procedure second_ansistring_to_pchar;virtual;abstract;
  126. procedure second_class_to_intf;virtual;abstract;
  127. procedure second_char_to_char;virtual;abstract;
  128. procedure second_nothing; virtual;abstract;
  129. end;
  130. ttypeconvnodeclass = class of ttypeconvnode;
  131. tasnode = class(tbinarynode)
  132. constructor create(l,r : tnode);virtual;
  133. function pass_1 : tnode;override;
  134. function det_resulttype:tnode;override;
  135. function getcopy: tnode;override;
  136. destructor destroy; override;
  137. protected
  138. call: tnode;
  139. end;
  140. tasnodeclass = class of tasnode;
  141. tisnode = class(tbinarynode)
  142. constructor create(l,r : tnode);virtual;
  143. function pass_1 : tnode;override;
  144. function det_resulttype:tnode;override;
  145. procedure pass_2;override;
  146. end;
  147. tisnodeclass = class of tisnode;
  148. var
  149. ctypeconvnode : ttypeconvnodeclass;
  150. casnode : tasnodeclass;
  151. cisnode : tisnodeclass;
  152. procedure inserttypeconv(var p:tnode;const t:ttype);
  153. procedure inserttypeconv_explicit(var p:tnode;const t:ttype);
  154. procedure arrayconstructor_to_set(var p : tnode);
  155. implementation
  156. uses
  157. globtype,systems,tokens,
  158. cutils,verbose,globals,widestr,
  159. symconst,symdef,symsym,symtable,
  160. ncon,ncal,nset,nadd,ninl,nmem,nmat,
  161. cgbase,
  162. htypechk,pass_1,cpubase,cpuinfo;
  163. {*****************************************************************************
  164. Helpers
  165. *****************************************************************************}
  166. procedure inserttypeconv(var p:tnode;const t:ttype);
  167. begin
  168. if not assigned(p.resulttype.def) then
  169. begin
  170. resulttypepass(p);
  171. if codegenerror then
  172. exit;
  173. end;
  174. { don't insert obsolete type conversions }
  175. if equal_defs(p.resulttype.def,t.def) and
  176. not ((p.resulttype.def.deftype=setdef) and
  177. (tsetdef(p.resulttype.def).settype <>
  178. tsetdef(t.def).settype)) then
  179. begin
  180. p.resulttype:=t;
  181. end
  182. else
  183. begin
  184. p:=ctypeconvnode.create(p,t);
  185. resulttypepass(p);
  186. end;
  187. end;
  188. procedure inserttypeconv_explicit(var p:tnode;const t:ttype);
  189. begin
  190. if not assigned(p.resulttype.def) then
  191. begin
  192. resulttypepass(p);
  193. if codegenerror then
  194. exit;
  195. end;
  196. { don't insert obsolete type conversions }
  197. if equal_defs(p.resulttype.def,t.def) and
  198. not ((p.resulttype.def.deftype=setdef) and
  199. (tsetdef(p.resulttype.def).settype <>
  200. tsetdef(t.def).settype)) then
  201. begin
  202. p.resulttype:=t;
  203. end
  204. else
  205. begin
  206. p:=ctypeconvnode.create_explicit(p,t);
  207. resulttypepass(p);
  208. end;
  209. end;
  210. {*****************************************************************************
  211. Array constructor to Set Conversion
  212. *****************************************************************************}
  213. procedure arrayconstructor_to_set(var p : tnode);
  214. var
  215. constp : tsetconstnode;
  216. buildp,
  217. p2,p3,p4 : tnode;
  218. htype : ttype;
  219. constset : Pconstset;
  220. constsetlo,
  221. constsethi : longint;
  222. procedure update_constsethi(t:ttype);
  223. begin
  224. if ((t.def.deftype=orddef) and
  225. (torddef(t.def).high>=constsethi)) then
  226. begin
  227. constsethi:=torddef(t.def).high;
  228. if htype.def=nil then
  229. begin
  230. if (constsethi>255) or
  231. (torddef(t.def).low<0) then
  232. htype:=u8bittype
  233. else
  234. htype:=t;
  235. end;
  236. if constsethi>255 then
  237. constsethi:=255;
  238. end
  239. else if ((t.def.deftype=enumdef) and
  240. (tenumdef(t.def).max>=constsethi)) then
  241. begin
  242. if htype.def=nil then
  243. htype:=t;
  244. constsethi:=tenumdef(t.def).max;
  245. end;
  246. end;
  247. procedure do_set(pos : longint);
  248. {$ifdef oldset}
  249. var
  250. mask,l : longint;
  251. {$endif}
  252. begin
  253. if (pos and not $ff)<>0 then
  254. Message(parser_e_illegal_set_expr);
  255. if pos>constsethi then
  256. constsethi:=pos;
  257. if pos<constsetlo then
  258. constsetlo:=pos;
  259. {$ifdef oldset}
  260. { to do this correctly we use the 32bit array }
  261. l:=pos shr 5;
  262. mask:=1 shl (pos mod 32);
  263. { do we allow the same twice }
  264. if (pconst32bitset(constset)^[l] and mask)<>0 then
  265. Message(parser_e_illegal_set_expr);
  266. pconst32bitset(constset)^[l]:=pconst32bitset(constset)^[l] or mask;
  267. {$else}
  268. if pos in constset^ then
  269. Message(parser_e_illegal_set_expr);
  270. include(constset^,pos);
  271. {$endif}
  272. end;
  273. var
  274. l : Longint;
  275. lr,hr : TConstExprInt;
  276. hp : tarrayconstructornode;
  277. begin
  278. if p.nodetype<>arrayconstructorn then
  279. internalerror(200205105);
  280. new(constset);
  281. {$ifdef oldset}
  282. FillChar(constset^,sizeof(constset^),0);
  283. {$else}
  284. constset^:=[];
  285. {$endif}
  286. htype.reset;
  287. constsetlo:=0;
  288. constsethi:=0;
  289. constp:=csetconstnode.create(nil,htype);
  290. constp.value_set:=constset;
  291. buildp:=constp;
  292. hp:=tarrayconstructornode(p);
  293. if assigned(hp.left) then
  294. begin
  295. while assigned(hp) do
  296. begin
  297. p4:=nil; { will contain the tree to create the set }
  298. {split a range into p2 and p3 }
  299. if hp.left.nodetype=arrayconstructorrangen then
  300. begin
  301. p2:=tarrayconstructorrangenode(hp.left).left;
  302. p3:=tarrayconstructorrangenode(hp.left).right;
  303. tarrayconstructorrangenode(hp.left).left:=nil;
  304. tarrayconstructorrangenode(hp.left).right:=nil;
  305. end
  306. else
  307. begin
  308. p2:=hp.left;
  309. hp.left:=nil;
  310. p3:=nil;
  311. end;
  312. resulttypepass(p2);
  313. if assigned(p3) then
  314. resulttypepass(p3);
  315. if codegenerror then
  316. break;
  317. case p2.resulttype.def.deftype of
  318. enumdef,
  319. orddef:
  320. begin
  321. getrange(p2.resulttype.def,lr,hr);
  322. if assigned(p3) then
  323. begin
  324. { this isn't good, you'll get problems with
  325. type t010 = 0..10;
  326. ts = set of t010;
  327. var s : ts;b : t010
  328. begin s:=[1,2,b]; end.
  329. if is_integer(p3^.resulttype.def) then
  330. begin
  331. inserttypeconv(p3,u8bitdef);
  332. end;
  333. }
  334. if assigned(htype.def) and not(equal_defs(htype.def,p3.resulttype.def)) then
  335. begin
  336. aktfilepos:=p3.fileinfo;
  337. CGMessage(type_e_typeconflict_in_set);
  338. end
  339. else
  340. begin
  341. if (p2.nodetype=ordconstn) and (p3.nodetype=ordconstn) then
  342. begin
  343. if not(is_integer(p3.resulttype.def)) then
  344. htype:=p3.resulttype
  345. else
  346. begin
  347. inserttypeconv(p3,u8bittype);
  348. inserttypeconv(p2,u8bittype);
  349. end;
  350. for l:=tordconstnode(p2).value to tordconstnode(p3).value do
  351. do_set(l);
  352. p2.free;
  353. p3.free;
  354. end
  355. else
  356. begin
  357. update_constsethi(p2.resulttype);
  358. inserttypeconv(p2,htype);
  359. update_constsethi(p3.resulttype);
  360. inserttypeconv(p3,htype);
  361. if assigned(htype.def) then
  362. inserttypeconv(p3,htype)
  363. else
  364. inserttypeconv(p3,u8bittype);
  365. p4:=csetelementnode.create(p2,p3);
  366. end;
  367. end;
  368. end
  369. else
  370. begin
  371. { Single value }
  372. if p2.nodetype=ordconstn then
  373. begin
  374. if not(is_integer(p2.resulttype.def)) then
  375. update_constsethi(p2.resulttype)
  376. else
  377. inserttypeconv(p2,u8bittype);
  378. do_set(tordconstnode(p2).value);
  379. p2.free;
  380. end
  381. else
  382. begin
  383. update_constsethi(p2.resulttype);
  384. if assigned(htype.def) then
  385. inserttypeconv(p2,htype)
  386. else
  387. inserttypeconv(p2,u8bittype);
  388. p4:=csetelementnode.create(p2,nil);
  389. end;
  390. end;
  391. end;
  392. stringdef :
  393. begin
  394. { if we've already set elements which are constants }
  395. { throw an error }
  396. if ((htype.def=nil) and assigned(buildp)) or
  397. not(is_char(htype.def)) then
  398. CGMessage(type_e_typeconflict_in_set)
  399. else
  400. for l:=1 to length(pstring(tstringconstnode(p2).value_str)^) do
  401. do_set(ord(pstring(tstringconstnode(p2).value_str)^[l]));
  402. if htype.def=nil then
  403. htype:=cchartype;
  404. p2.free;
  405. end;
  406. else
  407. CGMessage(type_e_ordinal_expr_expected);
  408. end;
  409. { insert the set creation tree }
  410. if assigned(p4) then
  411. buildp:=caddnode.create(addn,buildp,p4);
  412. { load next and dispose current node }
  413. p2:=hp;
  414. hp:=tarrayconstructornode(tarrayconstructornode(p2).right);
  415. tarrayconstructornode(p2).right:=nil;
  416. p2.free;
  417. end;
  418. if (htype.def=nil) then
  419. htype:=u8bittype;
  420. end
  421. else
  422. begin
  423. { empty set [], only remove node }
  424. p.free;
  425. end;
  426. { set the initial set type }
  427. constp.resulttype.setdef(tsetdef.create(htype,constsethi));
  428. { determine the resulttype for the tree }
  429. resulttypepass(buildp);
  430. { set the new tree }
  431. p:=buildp;
  432. end;
  433. {*****************************************************************************
  434. TTYPECONVNODE
  435. *****************************************************************************}
  436. constructor ttypeconvnode.create(node : tnode;const t:ttype);
  437. begin
  438. inherited create(typeconvn,node);
  439. convtype:=tc_not_possible;
  440. totype:=t;
  441. if t.def=nil then
  442. internalerror(200103281);
  443. set_file_line(node);
  444. end;
  445. constructor ttypeconvnode.create_explicit(node : tnode;const t:ttype);
  446. begin
  447. self.create(node,t);
  448. toggleflag(nf_explizit);
  449. end;
  450. constructor ttypeconvnode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  451. begin
  452. inherited ppuload(t,ppufile);
  453. ppufile.gettype(totype);
  454. convtype:=tconverttype(ppufile.getbyte);
  455. end;
  456. procedure ttypeconvnode.ppuwrite(ppufile:tcompilerppufile);
  457. begin
  458. inherited ppuwrite(ppufile);
  459. ppufile.puttype(totype);
  460. ppufile.putbyte(byte(convtype));
  461. end;
  462. procedure ttypeconvnode.derefimpl;
  463. begin
  464. inherited derefimpl;
  465. totype.resolve;
  466. end;
  467. function ttypeconvnode.getcopy : tnode;
  468. var
  469. n : ttypeconvnode;
  470. begin
  471. n:=ttypeconvnode(inherited getcopy);
  472. n.convtype:=convtype;
  473. getcopy:=n;
  474. end;
  475. function ttypeconvnode.resulttype_cord_to_pointer : tnode;
  476. var
  477. t : tnode;
  478. begin
  479. result:=nil;
  480. if left.nodetype=ordconstn then
  481. begin
  482. { check if we have a valid pointer constant (JM) }
  483. if (sizeof(pointer) > sizeof(TConstPtrUInt)) then
  484. if (sizeof(TConstPtrUInt) = 4) then
  485. begin
  486. if (tordconstnode(left).value < low(longint)) or
  487. (tordconstnode(left).value > high(cardinal)) then
  488. CGMessage(parser_e_range_check_error);
  489. end
  490. else if (sizeof(TConstPtrUInt) = 8) then
  491. begin
  492. if (tordconstnode(left).value < low(int64)) or
  493. (tordconstnode(left).value > high(qword)) then
  494. CGMessage(parser_e_range_check_error);
  495. end
  496. else
  497. internalerror(2001020801);
  498. t:=cpointerconstnode.create(TConstPtrUInt(tordconstnode(left).value),resulttype);
  499. result:=t;
  500. end
  501. else
  502. internalerror(200104023);
  503. end;
  504. function ttypeconvnode.resulttype_chararray_to_string : tnode;
  505. begin
  506. result := ccallnode.createinternres(
  507. 'fpc_chararray_to_'+tstringdef(resulttype.def).stringtypname,
  508. ccallparanode.create(left,nil),resulttype);
  509. left := nil;
  510. end;
  511. function ttypeconvnode.resulttype_string_to_chararray : tnode;
  512. var
  513. arrsize: longint;
  514. begin
  515. with tarraydef(resulttype.def) do
  516. begin
  517. if highrange<lowrange then
  518. internalerror(75432653);
  519. arrsize := highrange-lowrange+1;
  520. end;
  521. if (left.nodetype = stringconstn) and
  522. { left.length+1 since there's always a terminating #0 character (JM) }
  523. (tstringconstnode(left).len+1 >= arrsize) and
  524. (tstringdef(left.resulttype.def).string_typ=st_shortstring) then
  525. begin
  526. { handled separately }
  527. result := nil;
  528. exit;
  529. end;
  530. result := ccallnode.createinternres(
  531. 'fpc_'+tstringdef(left.resulttype.def).stringtypname+
  532. '_to_chararray',ccallparanode.create(left,ccallparanode.create(
  533. cordconstnode.create(arrsize,s32bittype,true),nil)),resulttype);
  534. left := nil;
  535. end;
  536. function ttypeconvnode.resulttype_string_to_string : tnode;
  537. var
  538. procname: string[31];
  539. stringpara : tcallparanode;
  540. pw : pcompilerwidestring;
  541. pc : pchar;
  542. begin
  543. result:=nil;
  544. if left.nodetype=stringconstn then
  545. begin
  546. { convert ascii 2 unicode }
  547. if (tstringdef(resulttype.def).string_typ=st_widestring) and
  548. (tstringconstnode(left).st_type in [st_ansistring,st_shortstring,st_longstring]) then
  549. begin
  550. initwidestring(pw);
  551. ascii2unicode(tstringconstnode(left).value_str,tstringconstnode(left).len,pw);
  552. ansistringdispose(tstringconstnode(left).value_str,tstringconstnode(left).len);
  553. pcompilerwidestring(tstringconstnode(left).value_str):=pw;
  554. end
  555. else
  556. { convert unicode 2 ascii }
  557. if (tstringconstnode(left).st_type=st_widestring) and
  558. (tstringdef(resulttype.def).string_typ in [st_ansistring,st_shortstring,st_longstring]) then
  559. begin
  560. pw:=pcompilerwidestring(tstringconstnode(left).value_str);
  561. getmem(pc,getlengthwidestring(pw)+1);
  562. unicode2ascii(pw,pc);
  563. donewidestring(pw);
  564. tstringconstnode(left).value_str:=pc;
  565. end;
  566. tstringconstnode(left).st_type:=tstringdef(resulttype.def).string_typ;
  567. tstringconstnode(left).resulttype:=resulttype;
  568. result:=left;
  569. left:=nil;
  570. end
  571. else
  572. begin
  573. { get the correct procedure name }
  574. procname := 'fpc_'+tstringdef(left.resulttype.def).stringtypname+
  575. '_to_'+tstringdef(resulttype.def).stringtypname;
  576. { create parameter (and remove left node from typeconvnode }
  577. { since it's reused as parameter) }
  578. stringpara := ccallparanode.create(left,nil);
  579. left := nil;
  580. { when converting to shortstrings, we have to pass high(destination) too }
  581. if (tstringdef(resulttype.def).string_typ = st_shortstring) then
  582. stringpara.right := ccallparanode.create(cinlinenode.create(
  583. in_high_x,false,self.getcopy),nil);
  584. { and create the callnode }
  585. result := ccallnode.createinternres(procname,stringpara,resulttype);
  586. end;
  587. end;
  588. function ttypeconvnode.resulttype_char_to_string : tnode;
  589. var
  590. procname: string[31];
  591. para : tcallparanode;
  592. hp : tstringconstnode;
  593. ws : pcompilerwidestring;
  594. begin
  595. result:=nil;
  596. if left.nodetype=ordconstn then
  597. begin
  598. if tstringdef(resulttype.def).string_typ=st_widestring then
  599. begin
  600. initwidestring(ws);
  601. concatwidestringchar(ws,tcompilerwidechar(chr(tordconstnode(left).value)));
  602. hp:=cstringconstnode.createwstr(ws);
  603. donewidestring(ws);
  604. end
  605. else
  606. hp:=cstringconstnode.createstr(chr(tordconstnode(left).value),tstringdef(resulttype.def).string_typ);
  607. result:=hp;
  608. end
  609. else
  610. { shortstrings are handled 'inline' }
  611. if tstringdef(resulttype.def).string_typ <> st_shortstring then
  612. begin
  613. { create the parameter }
  614. para := ccallparanode.create(left,nil);
  615. left := nil;
  616. { and the procname }
  617. procname := 'fpc_char_to_' +tstringdef(resulttype.def).stringtypname;
  618. { and finally the call }
  619. result := ccallnode.createinternres(procname,para,resulttype);
  620. end
  621. else
  622. begin
  623. { create word(byte(char) shl 8 or 1) for litte endian machines }
  624. { and word(byte(char) or 256) for big endian machines }
  625. left := ctypeconvnode.create(left,u8bittype);
  626. left.toggleflag(nf_explizit);
  627. if (target_info.endian = endian_little) then
  628. left := caddnode.create(orn,
  629. cshlshrnode.create(shln,left,cordconstnode.create(8,s32bittype,false)),
  630. cordconstnode.create(1,s32bittype,false))
  631. else
  632. left := caddnode.create(orn,left,
  633. cordconstnode.create(1 shl 8,s32bittype,false));
  634. left := ctypeconvnode.create(left,u16bittype);
  635. left.toggleflag(nf_explizit);
  636. resulttypepass(left);
  637. end;
  638. end;
  639. function ttypeconvnode.resulttype_char_to_chararray : tnode;
  640. begin
  641. if resulttype.def.size <> 1 then
  642. begin
  643. { convert first to string, then to chararray }
  644. inserttypeconv(left,cshortstringtype);
  645. inserttypeconv(left,resulttype);
  646. result:=left;
  647. left := nil;
  648. exit;
  649. end;
  650. result := nil;
  651. end;
  652. function ttypeconvnode.resulttype_char_to_char : tnode;
  653. var
  654. hp : tordconstnode;
  655. begin
  656. result:=nil;
  657. if left.nodetype=ordconstn then
  658. begin
  659. if (torddef(resulttype.def).typ=uchar) and
  660. (torddef(left.resulttype.def).typ=uwidechar) then
  661. begin
  662. hp:=cordconstnode.create(
  663. ord(unicode2asciichar(tcompilerwidechar(tordconstnode(left).value))),
  664. cchartype,true);
  665. result:=hp;
  666. end
  667. else if (torddef(resulttype.def).typ=uwidechar) and
  668. (torddef(left.resulttype.def).typ=uchar) then
  669. begin
  670. hp:=cordconstnode.create(
  671. asciichar2unicode(chr(tordconstnode(left).value)),
  672. cwidechartype,true);
  673. result:=hp;
  674. end
  675. else
  676. internalerror(200105131);
  677. exit;
  678. end;
  679. end;
  680. function ttypeconvnode.resulttype_int_to_real : tnode;
  681. var
  682. t : trealconstnode;
  683. rv : bestreal;
  684. begin
  685. result:=nil;
  686. if left.nodetype=ordconstn then
  687. begin
  688. rv:=tordconstnode(left).value;
  689. if is_currency(resulttype.def) then
  690. rv:=rv*10000.0;
  691. t:=crealconstnode.create(rv,resulttype);
  692. result:=t;
  693. end
  694. else
  695. begin
  696. { multiply by 10000 for currency. We need to use getcopy to pass
  697. the argument because the current node is always disposed. Only
  698. inserting the multiply in the left node is not possible because
  699. it'll get in an infinite loop to convert int->currency }
  700. if is_currency(resulttype.def) then
  701. begin
  702. result:=caddnode.create(muln,getcopy,crealconstnode.create(10000.0,resulttype));
  703. include(result.flags,nf_explizit);
  704. end;
  705. end;
  706. end;
  707. function ttypeconvnode.resulttype_real_to_real : tnode;
  708. var
  709. t : tnode;
  710. begin
  711. result:=nil;
  712. if is_currency(left.resulttype.def) and not(is_currency(resulttype.def)) then
  713. begin
  714. left:=caddnode.create(slashn,left,crealconstnode.create(10000.0,left.resulttype));
  715. include(left.flags,nf_explizit);
  716. resulttypepass(left);
  717. end
  718. else
  719. if is_currency(resulttype.def) and not(is_currency(left.resulttype.def)) then
  720. begin
  721. left:=caddnode.create(muln,left,crealconstnode.create(10000.0,left.resulttype));
  722. include(left.flags,nf_explizit);
  723. resulttypepass(left);
  724. end;
  725. if left.nodetype=realconstn then
  726. begin
  727. t:=crealconstnode.create(trealconstnode(left).value_real,resulttype);
  728. result:=t;
  729. end;
  730. end;
  731. function ttypeconvnode.resulttype_cchar_to_pchar : tnode;
  732. begin
  733. result:=nil;
  734. if is_pwidechar(resulttype.def) then
  735. inserttypeconv(left,cwidestringtype)
  736. else
  737. inserttypeconv(left,cshortstringtype);
  738. { evaluate again, reset resulttype so the convert_typ
  739. will be calculated again and cstring_to_pchar will
  740. be used for futher conversion }
  741. result:=det_resulttype;
  742. end;
  743. function ttypeconvnode.resulttype_cstring_to_pchar : tnode;
  744. begin
  745. result:=nil;
  746. if is_pwidechar(resulttype.def) then
  747. inserttypeconv(left,cwidestringtype);
  748. end;
  749. function ttypeconvnode.resulttype_arrayconstructor_to_set : tnode;
  750. var
  751. hp : tnode;
  752. begin
  753. result:=nil;
  754. if left.nodetype<>arrayconstructorn then
  755. internalerror(5546);
  756. { remove typeconv node }
  757. hp:=left;
  758. left:=nil;
  759. { create a set constructor tree }
  760. arrayconstructor_to_set(hp);
  761. result:=hp;
  762. end;
  763. function ttypeconvnode.resulttype_pchar_to_string : tnode;
  764. begin
  765. result := ccallnode.createinternres(
  766. 'fpc_pchar_to_'+tstringdef(resulttype.def).stringtypname,
  767. ccallparanode.create(left,nil),resulttype);
  768. left := nil;
  769. end;
  770. function ttypeconvnode.resulttype_interface_to_guid : tnode;
  771. begin
  772. if assigned(tobjectdef(left.resulttype.def).iidguid) then
  773. result:=cguidconstnode.create(tobjectdef(left.resulttype.def).iidguid^);
  774. end;
  775. function ttypeconvnode.resulttype_dynarray_to_openarray : tnode;
  776. begin
  777. { a dynamic array is a pointer to an array, so to convert it to }
  778. { an open array, we have to dereference it (JM) }
  779. result := ctypeconvnode.create(left,voidpointertype);
  780. { left is reused }
  781. left := nil;
  782. result.toggleflag(nf_explizit);
  783. result := cderefnode.create(result);
  784. result.resulttype := resulttype;
  785. end;
  786. function ttypeconvnode.resulttype_pwchar_to_string : tnode;
  787. begin
  788. result := ccallnode.createinternres(
  789. 'fpc_pwidechar_to_'+tstringdef(resulttype.def).stringtypname,
  790. ccallparanode.create(left,nil),resulttype);
  791. left := nil;
  792. end;
  793. function ttypeconvnode.resulttype_variant_to_dynarray : tnode;
  794. begin
  795. result := ccallnode.createinternres(
  796. 'fpc_variant_to_dynarray',
  797. ccallparanode.create(caddrnode.create(crttinode.create(tstoreddef(resulttype.def),initrtti)),
  798. ccallparanode.create(left,nil)
  799. ),resulttype);
  800. left := nil;
  801. end;
  802. function ttypeconvnode.resulttype_dynarray_to_variant : tnode;
  803. begin
  804. result:=nil;
  805. end;
  806. function ttypeconvnode.resulttype_call_helper(c : tconverttype) : tnode;
  807. {$ifdef fpc}
  808. const
  809. resulttypeconvert : array[tconverttype] of pointer = (
  810. {equal} nil,
  811. {not_possible} nil,
  812. { string_2_string } @ttypeconvnode.resulttype_string_to_string,
  813. { char_2_string } @ttypeconvnode.resulttype_char_to_string,
  814. { char_2_chararray } @ttypeconvnode.resulttype_char_to_chararray,
  815. { pchar_2_string } @ttypeconvnode.resulttype_pchar_to_string,
  816. { cchar_2_pchar } @ttypeconvnode.resulttype_cchar_to_pchar,
  817. { cstring_2_pchar } @ttypeconvnode.resulttype_cstring_to_pchar,
  818. { ansistring_2_pchar } nil,
  819. { string_2_chararray } @ttypeconvnode.resulttype_string_to_chararray,
  820. { chararray_2_string } @ttypeconvnode.resulttype_chararray_to_string,
  821. { array_2_pointer } nil,
  822. { pointer_2_array } nil,
  823. { int_2_int } nil,
  824. { int_2_bool } nil,
  825. { bool_2_bool } nil,
  826. { bool_2_int } nil,
  827. { real_2_real } @ttypeconvnode.resulttype_real_to_real,
  828. { int_2_real } @ttypeconvnode.resulttype_int_to_real,
  829. { proc_2_procvar } nil,
  830. { arrayconstructor_2_set } @ttypeconvnode.resulttype_arrayconstructor_to_set,
  831. { load_smallset } nil,
  832. { cord_2_pointer } @ttypeconvnode.resulttype_cord_to_pointer,
  833. { intf_2_string } nil,
  834. { intf_2_guid } @ttypeconvnode.resulttype_interface_to_guid,
  835. { class_2_intf } nil,
  836. { char_2_char } @ttypeconvnode.resulttype_char_to_char,
  837. { normal_2_smallset} nil,
  838. { dynarray_2_openarray} @resulttype_dynarray_to_openarray,
  839. { pwchar_2_string} @resulttype_pwchar_to_string,
  840. { variant_2_dynarray} @resulttype_variant_to_dynarray,
  841. { dynarray_2_variant} @resulttype_dynarray_to_variant
  842. );
  843. type
  844. tprocedureofobject = function : tnode of object;
  845. var
  846. r : packed record
  847. proc : pointer;
  848. obj : pointer;
  849. end;
  850. begin
  851. result:=nil;
  852. { this is a little bit dirty but it works }
  853. { and should be quite portable too }
  854. r.proc:=resulttypeconvert[c];
  855. r.obj:=self;
  856. if assigned(r.proc) then
  857. result:=tprocedureofobject(r){$ifdef FPC}();{$endif FPC}
  858. end;
  859. {$else}
  860. begin
  861. case c of
  862. tc_string_2_string: resulttype_string_to_string;
  863. tc_char_2_string : resulttype_char_to_string;
  864. tc_char_2_chararray: resulttype_char_to_chararray;
  865. tc_pchar_2_string : resulttype_pchar_to_string;
  866. tc_cchar_2_pchar : resulttype_cchar_to_pchar;
  867. tc_cstring_2_pchar : resulttype_cstring_to_pchar;
  868. tc_string_2_chararray : resulttype_string_to_chararray;
  869. tc_chararray_2_string : resulttype_chararray_to_string;
  870. tc_real_2_real : resulttype_real_to_real;
  871. tc_int_2_real : resulttype_int_to_real;
  872. tc_arrayconstructor_2_set : resulttype_arrayconstructor_to_set;
  873. tc_cord_2_pointer : resulttype_cord_to_pointer;
  874. tc_intf_2_guid : resulttype_interface_to_guid;
  875. tc_char_2_char : resulttype_char_to_char;
  876. tc_dynarray_2_openarray : resulttype_dynarray_to_openarray;
  877. tc_pwchar_2_string : resulttype_pwchar_to_string;
  878. tc_variant_2_dynarray : resulttype_variant_to_dynarray;
  879. tc_dynarray_2_variant : resulttype_dynarray_to_variant;
  880. end;
  881. end;
  882. {$Endif fpc}
  883. function ttypeconvnode.det_resulttype:tnode;
  884. var
  885. hp : tnode;
  886. currprocdef,
  887. aprocdef : tprocdef;
  888. eq : tequaltype;
  889. begin
  890. result:=nil;
  891. resulttype:=totype;
  892. resulttypepass(left);
  893. if codegenerror then
  894. exit;
  895. eq:=compare_defs_ext(left.resulttype.def,resulttype.def,left.nodetype,
  896. nf_explizit in flags,true,convtype,aprocdef);
  897. case eq of
  898. te_exact,
  899. te_equal :
  900. begin
  901. { because is_equal only checks the basetype for sets we need to
  902. check here if we are loading a smallset into a normalset }
  903. if (resulttype.def.deftype=setdef) and
  904. (left.resulttype.def.deftype=setdef) and
  905. ((tsetdef(resulttype.def).settype = smallset) xor
  906. (tsetdef(left.resulttype.def).settype = smallset)) then
  907. begin
  908. { constant sets can be converted by changing the type only }
  909. if (left.nodetype=setconstn) then
  910. begin
  911. tsetdef(left.resulttype.def).changesettype(tsetdef(resulttype.def).settype);
  912. result:=left;
  913. left:=nil;
  914. exit;
  915. end;
  916. if (tsetdef(resulttype.def).settype <> smallset) then
  917. convtype:=tc_load_smallset
  918. else
  919. convtype := tc_normal_2_smallset;
  920. exit;
  921. end
  922. else
  923. begin
  924. left.resulttype:=resulttype;
  925. result:=left;
  926. left:=nil;
  927. exit;
  928. end;
  929. end;
  930. te_convert_l1,
  931. te_convert_l2 :
  932. begin
  933. { nothing to do }
  934. end;
  935. te_convert_operator :
  936. begin
  937. procinfo.flags:=procinfo.flags or pi_do_call;
  938. hp:=ccallnode.create(ccallparanode.create(left,nil),
  939. overloaded_operators[_assignment],nil,nil);
  940. { tell explicitly which def we must use !! (PM) }
  941. tcallnode(hp).procdefinition:=aprocdef;
  942. left:=nil;
  943. result:=hp;
  944. exit;
  945. end;
  946. te_incompatible :
  947. begin
  948. { Procedures have a resulttype.def of voiddef and functions of their
  949. own resulttype.def. They will therefore always be incompatible with
  950. a procvar. Because isconvertable cannot check for procedures we
  951. use an extra check for them.}
  952. if (m_tp_procvar in aktmodeswitches) and
  953. (resulttype.def.deftype=procvardef) then
  954. begin
  955. if is_procsym_load(left) then
  956. begin
  957. if (left.nodetype<>addrn) then
  958. begin
  959. convtype:=tc_proc_2_procvar;
  960. { Now check if the procedure we are going to assign to
  961. the procvar, is compatible with the procvar's type }
  962. if proc_to_procvar_equal(tprocsym(tloadnode(left).symtableentry).first_procdef,
  963. tprocvardef(resulttype.def))=te_incompatible then
  964. CGMessage2(type_e_incompatible_types,tprocsym(tloadnode(left).symtableentry).first_procdef.typename,resulttype.def.typename);
  965. exit;
  966. end;
  967. end
  968. else
  969. if (left.nodetype=calln) and
  970. not assigned(tcallnode(left).left) then
  971. begin
  972. if assigned(tcallnode(left).right) then
  973. hp:=tcallnode(left).right.getcopy
  974. else
  975. begin
  976. currprocdef:=Tprocsym(Tcallnode(left).symtableprocentry).search_procdef_byprocvardef(Tprocvardef(resulttype.def));
  977. hp:=cloadnode.create_procvar(tprocsym(tcallnode(left).symtableprocentry),
  978. currprocdef,tcallnode(left).symtableproc);
  979. if (tcallnode(left).symtableprocentry.owner.symtabletype=objectsymtable) and
  980. assigned(tcallnode(left).methodpointer) then
  981. tloadnode(hp).set_mp(tcallnode(left).methodpointer.getcopy);
  982. end;
  983. resulttypepass(hp);
  984. left.free;
  985. left:=hp;
  986. convtype:=tc_proc_2_procvar;
  987. { Now check if the procedure we are going to assign to
  988. the procvar, is compatible with the procvar's type }
  989. if proc_to_procvar_equal(tprocdef(left.resulttype.def),
  990. tprocvardef(resulttype.def))=te_incompatible then
  991. CGMessage2(type_e_incompatible_types,tprocdef(left.resulttype.def).typename,resulttype.def.typename);
  992. exit;
  993. end;
  994. end;
  995. { Handle explicit type conversions }
  996. if nf_explizit in flags then
  997. begin
  998. { do common tc_equal cast }
  999. convtype:=tc_equal;
  1000. { check if the result could be in a register }
  1001. if not(tstoreddef(resulttype.def).is_intregable) and
  1002. not(tstoreddef(resulttype.def).is_fpuregable) then
  1003. make_not_regable(left);
  1004. { class to class or object to object, with checkobject support }
  1005. if (resulttype.def.deftype=objectdef) and
  1006. (left.resulttype.def.deftype=objectdef) then
  1007. begin
  1008. if (cs_check_object in aktlocalswitches) then
  1009. begin
  1010. if is_class_or_interface(resulttype.def) then
  1011. begin
  1012. { we can translate the typeconvnode to 'as' when
  1013. typecasting to a class or interface }
  1014. hp:=casnode.create(left,cloadvmtnode.create(ctypenode.create(resulttype)));
  1015. left:=nil;
  1016. result:=hp;
  1017. exit;
  1018. end;
  1019. end
  1020. else
  1021. begin
  1022. { check if the types are related }
  1023. if (not(tobjectdef(left.resulttype.def).is_related(tobjectdef(resulttype.def)))) and
  1024. (not(tobjectdef(resulttype.def).is_related(tobjectdef(left.resulttype.def)))) then
  1025. CGMessage2(type_w_classes_not_related,left.resulttype.def.typename,resulttype.def.typename);
  1026. end;
  1027. end
  1028. else
  1029. begin
  1030. { only if the same size or formal def }
  1031. if not(
  1032. (left.resulttype.def.deftype=formaldef) or
  1033. (
  1034. not(is_open_array(left.resulttype.def)) and
  1035. (left.resulttype.def.size=resulttype.def.size)
  1036. ) or
  1037. (
  1038. is_void(left.resulttype.def) and
  1039. (left.nodetype=derefn)
  1040. )
  1041. ) or
  1042. (left.resulttype.def.deftype=classrefdef) then
  1043. CGMessage(cg_e_illegal_type_conversion);
  1044. end;
  1045. end
  1046. else
  1047. CGMessage2(type_e_incompatible_types,left.resulttype.def.typename,resulttype.def.typename);
  1048. end;
  1049. else
  1050. internalerror(200211231);
  1051. end;
  1052. { Give hint for unportable code }
  1053. if ((left.resulttype.def.deftype=orddef) and
  1054. (resulttype.def.deftype in [pointerdef,procvardef,classrefdef])) or
  1055. ((resulttype.def.deftype=orddef) and
  1056. (left.resulttype.def.deftype in [pointerdef,procvardef,classrefdef])) then
  1057. CGMessage(cg_h_pointer_to_longint_conv_not_portable);
  1058. { Constant folding and other node transitions to
  1059. remove the typeconv node }
  1060. case left.nodetype of
  1061. loadn :
  1062. begin
  1063. { tp7 procvar support, when right is not a procvardef and we got a
  1064. loadn of a procvar then convert to a calln, the check for the
  1065. result is already done in is_convertible, also no conflict with
  1066. @procvar is here because that has an extra addrn }
  1067. if (m_tp_procvar in aktmodeswitches) and
  1068. (resulttype.def.deftype<>procvardef) and
  1069. (left.resulttype.def.deftype=procvardef) then
  1070. begin
  1071. hp:=ccallnode.create(nil,nil,nil,nil);
  1072. tcallnode(hp).set_procvar(left);
  1073. resulttypepass(hp);
  1074. left:=hp;
  1075. end;
  1076. end;
  1077. niln :
  1078. begin
  1079. { nil to ordinal node }
  1080. if (resulttype.def.deftype=orddef) then
  1081. begin
  1082. hp:=cordconstnode.create(0,resulttype,true);
  1083. result:=hp;
  1084. exit;
  1085. end
  1086. else
  1087. { fold nil to any pointer type }
  1088. if (resulttype.def.deftype=pointerdef) then
  1089. begin
  1090. hp:=cnilnode.create;
  1091. hp.resulttype:=resulttype;
  1092. result:=hp;
  1093. exit;
  1094. end
  1095. else
  1096. { remove typeconv after niln, but not when the result is a
  1097. methodpointer. The typeconv of the methodpointer will then
  1098. take care of updateing size of niln to OS_64 }
  1099. if not((resulttype.def.deftype=procvardef) and
  1100. (po_methodpointer in tprocvardef(resulttype.def).procoptions)) then
  1101. begin
  1102. left.resulttype:=resulttype;
  1103. result:=left;
  1104. left:=nil;
  1105. exit;
  1106. end;
  1107. end;
  1108. ordconstn :
  1109. begin
  1110. { ordinal contants can be directly converted }
  1111. { but not char to char because it is a widechar to char or via versa }
  1112. { which needs extra code to do the code page transistion }
  1113. if is_ordinal(resulttype.def) and
  1114. not(convtype=tc_char_2_char) then
  1115. begin
  1116. { replace the resulttype and recheck the range }
  1117. left.resulttype:=resulttype;
  1118. testrange(left.resulttype.def,tordconstnode(left).value,(nf_explizit in flags));
  1119. result:=left;
  1120. left:=nil;
  1121. exit;
  1122. end;
  1123. end;
  1124. pointerconstn :
  1125. begin
  1126. { pointerconstn to any pointer is folded too }
  1127. if (resulttype.def.deftype=pointerdef) then
  1128. begin
  1129. left.resulttype:=resulttype;
  1130. result:=left;
  1131. left:=nil;
  1132. exit;
  1133. end
  1134. { constant pointer to ordinal }
  1135. else if is_ordinal(resulttype.def) then
  1136. begin
  1137. hp:=cordconstnode.create(tpointerconstnode(left).value,
  1138. resulttype,true);
  1139. result:=hp;
  1140. exit;
  1141. end;
  1142. end;
  1143. end;
  1144. { now call the resulttype helper to do constant folding }
  1145. result:=resulttype_call_helper(convtype);
  1146. end;
  1147. procedure Ttypeconvnode.mark_write;
  1148. begin
  1149. left.mark_write;
  1150. end;
  1151. function ttypeconvnode.first_cord_to_pointer : tnode;
  1152. begin
  1153. result:=nil;
  1154. internalerror(200104043);
  1155. end;
  1156. function ttypeconvnode.first_int_to_int : tnode;
  1157. begin
  1158. first_int_to_int:=nil;
  1159. if (left.location.loc<>LOC_REGISTER) and
  1160. (resulttype.def.size>left.resulttype.def.size) then
  1161. location.loc:=LOC_REGISTER;
  1162. if is_64bitint(resulttype.def) then
  1163. registers32:=max(registers32,2)
  1164. else
  1165. registers32:=max(registers32,1);
  1166. end;
  1167. function ttypeconvnode.first_cstring_to_pchar : tnode;
  1168. begin
  1169. first_cstring_to_pchar:=nil;
  1170. registers32:=1;
  1171. location.loc:=LOC_REGISTER;
  1172. end;
  1173. function ttypeconvnode.first_string_to_chararray : tnode;
  1174. begin
  1175. first_string_to_chararray:=nil;
  1176. registers32:=1;
  1177. location.loc:=LOC_REGISTER;
  1178. end;
  1179. function ttypeconvnode.first_char_to_string : tnode;
  1180. begin
  1181. first_char_to_string:=nil;
  1182. location.loc:=LOC_CREFERENCE;
  1183. end;
  1184. function ttypeconvnode.first_nothing : tnode;
  1185. begin
  1186. first_nothing:=nil;
  1187. end;
  1188. function ttypeconvnode.first_array_to_pointer : tnode;
  1189. begin
  1190. first_array_to_pointer:=nil;
  1191. if registers32<1 then
  1192. registers32:=1;
  1193. location.loc:=LOC_REGISTER;
  1194. end;
  1195. function ttypeconvnode.first_int_to_real: tnode;
  1196. var
  1197. fname: string[19];
  1198. typname : string[12];
  1199. begin
  1200. { Get the type name }
  1201. { Normally the typename should be one of the following:
  1202. single, double - carl
  1203. }
  1204. typname := lower(pbestrealtype^.def.gettypename);
  1205. { converting a 64bit integer to a float requires a helper }
  1206. if is_64bitint(left.resulttype.def) then
  1207. begin
  1208. if is_signed(left.resulttype.def) then
  1209. fname := 'fpc_int64_to_'+typname
  1210. else
  1211. fname := 'fpc_qword_to_'+typname;
  1212. result := ccallnode.createintern(fname,ccallparanode.create(
  1213. left,nil));
  1214. left:=nil;
  1215. firstpass(result);
  1216. exit;
  1217. end
  1218. else
  1219. { other integers are supposed to be 32 bit }
  1220. begin
  1221. if is_signed(left.resulttype.def) then
  1222. fname := 'fpc_longint_to_'+typname
  1223. else
  1224. fname := 'fpc_longword_to_'+typname;
  1225. result := ccallnode.createintern(fname,ccallparanode.create(
  1226. left,nil));
  1227. left:=nil;
  1228. firstpass(result);
  1229. exit;
  1230. end;
  1231. end;
  1232. function ttypeconvnode.first_real_to_real : tnode;
  1233. begin
  1234. first_real_to_real:=nil;
  1235. { comp isn't a floating type }
  1236. {$ifdef i386}
  1237. if (tfloatdef(resulttype.def).typ=s64comp) and
  1238. (tfloatdef(left.resulttype.def).typ<>s64comp) and
  1239. not (nf_explizit in flags) then
  1240. CGMessage(type_w_convert_real_2_comp);
  1241. {$endif}
  1242. if registersfpu<1 then
  1243. registersfpu:=1;
  1244. location.loc:=LOC_FPUREGISTER;
  1245. end;
  1246. function ttypeconvnode.first_pointer_to_array : tnode;
  1247. begin
  1248. first_pointer_to_array:=nil;
  1249. if registers32<1 then
  1250. registers32:=1;
  1251. location.loc:=LOC_REFERENCE;
  1252. end;
  1253. function ttypeconvnode.first_cchar_to_pchar : tnode;
  1254. begin
  1255. first_cchar_to_pchar:=nil;
  1256. internalerror(200104021);
  1257. end;
  1258. function ttypeconvnode.first_bool_to_int : tnode;
  1259. begin
  1260. first_bool_to_int:=nil;
  1261. { byte(boolean) or word(wordbool) or longint(longbool) must
  1262. be accepted for var parameters }
  1263. if (nf_explizit in flags) and
  1264. (left.resulttype.def.size=resulttype.def.size) and
  1265. (left.location.loc in [LOC_REFERENCE,LOC_CREFERENCE,LOC_CREGISTER]) then
  1266. exit;
  1267. { when converting to 64bit, first convert to a 32bit int and then }
  1268. { convert to a 64bit int (only necessary for 32bit processors) (JM) }
  1269. if resulttype.def.size > sizeof(aword) then
  1270. begin
  1271. result := ctypeconvnode.create(left,u32bittype);
  1272. result.toggleflag(nf_explizit);
  1273. result := ctypeconvnode.create(result,resulttype);
  1274. left := nil;
  1275. firstpass(result);
  1276. exit;
  1277. end;
  1278. location.loc:=LOC_REGISTER;
  1279. if registers32<1 then
  1280. registers32:=1;
  1281. end;
  1282. function ttypeconvnode.first_int_to_bool : tnode;
  1283. begin
  1284. first_int_to_bool:=nil;
  1285. { byte(boolean) or word(wordbool) or longint(longbool) must
  1286. be accepted for var parameters }
  1287. if (nf_explizit in flags) and
  1288. (left.resulttype.def.size=resulttype.def.size) and
  1289. (left.location.loc in [LOC_REFERENCE,LOC_CREFERENCE,LOC_CREGISTER]) then
  1290. exit;
  1291. location.loc:=LOC_REGISTER;
  1292. { need if bool to bool !!
  1293. not very nice !!
  1294. insertypeconv(left,s32bittype);
  1295. left.explizit:=true;
  1296. firstpass(left); }
  1297. if registers32<1 then
  1298. registers32:=1;
  1299. end;
  1300. function ttypeconvnode.first_bool_to_bool : tnode;
  1301. begin
  1302. first_bool_to_bool:=nil;
  1303. location.loc:=LOC_REGISTER;
  1304. if registers32<1 then
  1305. registers32:=1;
  1306. end;
  1307. function ttypeconvnode.first_char_to_char : tnode;
  1308. begin
  1309. first_char_to_char:=nil;
  1310. location.loc:=LOC_REGISTER;
  1311. if registers32<1 then
  1312. registers32:=1;
  1313. end;
  1314. function ttypeconvnode.first_proc_to_procvar : tnode;
  1315. begin
  1316. first_proc_to_procvar:=nil;
  1317. if (left.location.loc<>LOC_REFERENCE) then
  1318. CGMessage(cg_e_illegal_expression);
  1319. registers32:=left.registers32;
  1320. if registers32<1 then
  1321. registers32:=1;
  1322. location.loc:=LOC_REGISTER;
  1323. end;
  1324. function ttypeconvnode.first_load_smallset : tnode;
  1325. var
  1326. srsym: ttypesym;
  1327. p: tcallparanode;
  1328. begin
  1329. if not searchsystype('FPC_SMALL_SET',srsym) then
  1330. internalerror(200108313);
  1331. p := ccallparanode.create(left,nil);
  1332. { reused }
  1333. left := nil;
  1334. { convert parameter explicitely to fpc_small_set }
  1335. p.left := ctypeconvnode.create(p.left,srsym.restype);
  1336. p.left.toggleflag(nf_explizit);
  1337. { create call, adjust resulttype }
  1338. result :=
  1339. ccallnode.createinternres('fpc_set_load_small',p,resulttype);
  1340. firstpass(result);
  1341. end;
  1342. function ttypeconvnode.first_ansistring_to_pchar : tnode;
  1343. begin
  1344. first_ansistring_to_pchar:=nil;
  1345. location.loc:=LOC_REGISTER;
  1346. if registers32<1 then
  1347. registers32:=1;
  1348. end;
  1349. function ttypeconvnode.first_arrayconstructor_to_set : tnode;
  1350. begin
  1351. first_arrayconstructor_to_set:=nil;
  1352. internalerror(200104022);
  1353. end;
  1354. function ttypeconvnode.first_class_to_intf : tnode;
  1355. begin
  1356. first_class_to_intf:=nil;
  1357. location.loc:=LOC_REFERENCE;
  1358. if registers32<1 then
  1359. registers32:=1;
  1360. end;
  1361. function ttypeconvnode._first_int_to_int : tnode;
  1362. begin
  1363. result:=first_int_to_int;
  1364. end;
  1365. function ttypeconvnode._first_cstring_to_pchar : tnode;
  1366. begin
  1367. result:=first_cstring_to_pchar;
  1368. end;
  1369. function ttypeconvnode._first_string_to_chararray : tnode;
  1370. begin
  1371. result:=first_string_to_chararray;
  1372. end;
  1373. function ttypeconvnode._first_char_to_string : tnode;
  1374. begin
  1375. result:=first_char_to_string;
  1376. end;
  1377. function ttypeconvnode._first_nothing : tnode;
  1378. begin
  1379. result:=first_nothing;
  1380. end;
  1381. function ttypeconvnode._first_array_to_pointer : tnode;
  1382. begin
  1383. result:=first_array_to_pointer;
  1384. end;
  1385. function ttypeconvnode._first_int_to_real : tnode;
  1386. begin
  1387. result:=first_int_to_real;
  1388. end;
  1389. function ttypeconvnode._first_real_to_real : tnode;
  1390. begin
  1391. result:=first_real_to_real;
  1392. end;
  1393. function ttypeconvnode._first_pointer_to_array : tnode;
  1394. begin
  1395. result:=first_pointer_to_array;
  1396. end;
  1397. function ttypeconvnode._first_cchar_to_pchar : tnode;
  1398. begin
  1399. result:=first_cchar_to_pchar;
  1400. end;
  1401. function ttypeconvnode._first_bool_to_int : tnode;
  1402. begin
  1403. result:=first_bool_to_int;
  1404. end;
  1405. function ttypeconvnode._first_int_to_bool : tnode;
  1406. begin
  1407. result:=first_int_to_bool;
  1408. end;
  1409. function ttypeconvnode._first_bool_to_bool : tnode;
  1410. begin
  1411. result:=first_bool_to_bool;
  1412. end;
  1413. function ttypeconvnode._first_proc_to_procvar : tnode;
  1414. begin
  1415. result:=first_proc_to_procvar;
  1416. end;
  1417. function ttypeconvnode._first_load_smallset : tnode;
  1418. begin
  1419. result:=first_load_smallset;
  1420. end;
  1421. function ttypeconvnode._first_cord_to_pointer : tnode;
  1422. begin
  1423. result:=first_cord_to_pointer;
  1424. end;
  1425. function ttypeconvnode._first_ansistring_to_pchar : tnode;
  1426. begin
  1427. result:=first_ansistring_to_pchar;
  1428. end;
  1429. function ttypeconvnode._first_arrayconstructor_to_set : tnode;
  1430. begin
  1431. result:=first_arrayconstructor_to_set;
  1432. end;
  1433. function ttypeconvnode._first_class_to_intf : tnode;
  1434. begin
  1435. result:=first_class_to_intf;
  1436. end;
  1437. function ttypeconvnode._first_char_to_char : tnode;
  1438. begin
  1439. result:=first_char_to_char;
  1440. end;
  1441. function ttypeconvnode.first_call_helper(c : tconverttype) : tnode;
  1442. const
  1443. firstconvert : array[tconverttype] of pointer = (
  1444. @ttypeconvnode._first_nothing, {equal}
  1445. @ttypeconvnode._first_nothing, {not_possible}
  1446. nil, { removed in resulttype_string_to_string }
  1447. @ttypeconvnode._first_char_to_string,
  1448. @ttypeconvnode._first_nothing, { char_2_chararray, needs nothing extra }
  1449. nil, { removed in resulttype_chararray_to_string }
  1450. @ttypeconvnode._first_cchar_to_pchar,
  1451. @ttypeconvnode._first_cstring_to_pchar,
  1452. @ttypeconvnode._first_ansistring_to_pchar,
  1453. @ttypeconvnode._first_string_to_chararray,
  1454. nil, { removed in resulttype_chararray_to_string }
  1455. @ttypeconvnode._first_array_to_pointer,
  1456. @ttypeconvnode._first_pointer_to_array,
  1457. @ttypeconvnode._first_int_to_int,
  1458. @ttypeconvnode._first_int_to_bool,
  1459. @ttypeconvnode._first_bool_to_bool,
  1460. @ttypeconvnode._first_bool_to_int,
  1461. @ttypeconvnode._first_real_to_real,
  1462. @ttypeconvnode._first_int_to_real,
  1463. @ttypeconvnode._first_proc_to_procvar,
  1464. @ttypeconvnode._first_arrayconstructor_to_set,
  1465. @ttypeconvnode._first_load_smallset,
  1466. @ttypeconvnode._first_cord_to_pointer,
  1467. @ttypeconvnode._first_nothing,
  1468. @ttypeconvnode._first_nothing,
  1469. @ttypeconvnode._first_class_to_intf,
  1470. @ttypeconvnode._first_char_to_char,
  1471. @ttypeconvnode._first_nothing,
  1472. @ttypeconvnode._first_nothing,
  1473. nil,
  1474. nil,
  1475. nil
  1476. );
  1477. type
  1478. tprocedureofobject = function : tnode of object;
  1479. var
  1480. r : packed record
  1481. proc : pointer;
  1482. obj : pointer;
  1483. end;
  1484. begin
  1485. { this is a little bit dirty but it works }
  1486. { and should be quite portable too }
  1487. r.proc:=firstconvert[c];
  1488. r.obj:=self;
  1489. first_call_helper:=tprocedureofobject(r){$ifdef FPC}();{$endif FPC}
  1490. end;
  1491. function ttypeconvnode.pass_1 : tnode;
  1492. begin
  1493. result:=nil;
  1494. firstpass(left);
  1495. if codegenerror then
  1496. exit;
  1497. { load the value_str from the left part }
  1498. registers32:=left.registers32;
  1499. registersfpu:=left.registersfpu;
  1500. {$ifdef SUPPORT_MMX}
  1501. registersmmx:=left.registersmmx;
  1502. {$endif}
  1503. location.loc:=left.location.loc;
  1504. if nf_explizit in flags then
  1505. begin
  1506. { check if the result could be in a register }
  1507. if not(tstoreddef(resulttype.def).is_intregable) and
  1508. not(tstoreddef(resulttype.def).is_fpuregable) then
  1509. make_not_regable(left);
  1510. end;
  1511. result:=first_call_helper(convtype);
  1512. end;
  1513. function ttypeconvnode.docompare(p: tnode) : boolean;
  1514. begin
  1515. docompare :=
  1516. inherited docompare(p) and
  1517. (convtype = ttypeconvnode(p).convtype);
  1518. end;
  1519. {*****************************************************************************
  1520. TISNODE
  1521. *****************************************************************************}
  1522. constructor tisnode.create(l,r : tnode);
  1523. begin
  1524. inherited create(isn,l,r);
  1525. end;
  1526. function tisnode.det_resulttype:tnode;
  1527. var
  1528. paras: tcallparanode;
  1529. begin
  1530. result:=nil;
  1531. resulttypepass(left);
  1532. resulttypepass(right);
  1533. set_varstate(left,true);
  1534. set_varstate(right,true);
  1535. if codegenerror then
  1536. exit;
  1537. if (right.resulttype.def.deftype=classrefdef) then
  1538. begin
  1539. { left must be a class }
  1540. if is_class(left.resulttype.def) then
  1541. begin
  1542. { the operands must be related }
  1543. if (not(tobjectdef(left.resulttype.def).is_related(
  1544. tobjectdef(tclassrefdef(right.resulttype.def).pointertype.def)))) and
  1545. (not(tobjectdef(tclassrefdef(right.resulttype.def).pointertype.def).is_related(
  1546. tobjectdef(left.resulttype.def)))) then
  1547. CGMessage2(type_e_classes_not_related,left.resulttype.def.typename,
  1548. tclassrefdef(right.resulttype.def).pointertype.def.typename);
  1549. end
  1550. else
  1551. CGMessage1(type_e_class_type_expected,left.resulttype.def.typename);
  1552. { call fpc_do_is helper }
  1553. paras := ccallparanode.create(
  1554. left,
  1555. ccallparanode.create(
  1556. right,nil));
  1557. result := ccallnode.createintern('fpc_do_is',paras);
  1558. left := nil;
  1559. right := nil;
  1560. end
  1561. else if is_interface(right.resulttype.def) then
  1562. begin
  1563. { left is a class }
  1564. if is_class(left.resulttype.def) then
  1565. begin
  1566. { the operands must be related }
  1567. if not(assigned(tobjectdef(left.resulttype.def).implementedinterfaces) and
  1568. (tobjectdef(left.resulttype.def).implementedinterfaces.searchintf(right.resulttype.def)<>-1)) then
  1569. CGMessage2(type_e_classes_not_related,left.resulttype.def.typename,right.resulttype.def.typename);
  1570. end
  1571. { left is an interface }
  1572. else if is_interface(left.resulttype.def) then
  1573. begin
  1574. { the operands must be related }
  1575. if (not(tobjectdef(left.resulttype.def).is_related(tobjectdef(right.resulttype.def)))) and
  1576. (not(tobjectdef(right.resulttype.def).is_related(tobjectdef(left.resulttype.def)))) then
  1577. CGMessage(type_e_mismatch);
  1578. end
  1579. else
  1580. CGMessage1(type_e_class_type_expected,left.resulttype.def.typename);
  1581. { call fpc_do_is helper }
  1582. paras := ccallparanode.create(
  1583. left,
  1584. ccallparanode.create(
  1585. right,nil));
  1586. result := ccallnode.createintern('fpc_do_is',paras);
  1587. left := nil;
  1588. right := nil;
  1589. end
  1590. else
  1591. CGMessage1(type_e_class_or_interface_type_expected,right.resulttype.def.typename);
  1592. resulttype:=booltype;
  1593. end;
  1594. function tisnode.pass_1 : tnode;
  1595. begin
  1596. internalerror(200204254);
  1597. result:=nil;
  1598. end;
  1599. { dummy pass_2, it will never be called, but we need one since }
  1600. { you can't instantiate an abstract class }
  1601. procedure tisnode.pass_2;
  1602. begin
  1603. end;
  1604. {*****************************************************************************
  1605. TASNODE
  1606. *****************************************************************************}
  1607. constructor tasnode.create(l,r : tnode);
  1608. begin
  1609. inherited create(asn,l,r);
  1610. call := nil;
  1611. end;
  1612. destructor tasnode.destroy;
  1613. begin
  1614. call.free;
  1615. inherited destroy;
  1616. end;
  1617. function tasnode.det_resulttype:tnode;
  1618. var
  1619. hp : tnode;
  1620. begin
  1621. result:=nil;
  1622. resulttypepass(right);
  1623. resulttypepass(left);
  1624. set_varstate(right,true);
  1625. set_varstate(left,true);
  1626. if codegenerror then
  1627. exit;
  1628. if (right.resulttype.def.deftype=classrefdef) then
  1629. begin
  1630. { left must be a class }
  1631. if is_class(left.resulttype.def) then
  1632. begin
  1633. { the operands must be related }
  1634. if (not(tobjectdef(left.resulttype.def).is_related(
  1635. tobjectdef(tclassrefdef(right.resulttype.def).pointertype.def)))) and
  1636. (not(tobjectdef(tclassrefdef(right.resulttype.def).pointertype.def).is_related(
  1637. tobjectdef(left.resulttype.def)))) then
  1638. CGMessage2(type_e_classes_not_related,left.resulttype.def.typename,
  1639. tclassrefdef(right.resulttype.def).pointertype.def.typename);
  1640. end
  1641. else
  1642. CGMessage1(type_e_class_type_expected,left.resulttype.def.typename);
  1643. resulttype:=tclassrefdef(right.resulttype.def).pointertype;
  1644. end
  1645. else if is_interface(right.resulttype.def) then
  1646. begin
  1647. { left is a class }
  1648. if is_class(left.resulttype.def) then
  1649. begin
  1650. { the operands must be related
  1651. no, because the class instance could be a child class of the current one which
  1652. implements additional interfaces (FK)
  1653. b:=false;
  1654. o:=tobjectdef(left.resulttype.def);
  1655. while assigned(o) do
  1656. begin
  1657. if assigned(o.implementedinterfaces) and
  1658. (o.implementedinterfaces.searchintf(right.resulttype.def)<>-1) then
  1659. begin
  1660. b:=true;
  1661. break;
  1662. end;
  1663. o:=o.childof;
  1664. end;
  1665. if not(b) then
  1666. CGMessage2(type_e_classes_not_related,left.resulttype.def.typename,right.resulttype.def.typename);
  1667. }
  1668. end
  1669. { left is an interface }
  1670. else if is_interface(left.resulttype.def) then
  1671. begin
  1672. { the operands must be related
  1673. we don't necessarily know how the both interfaces are implemented, so we can't do this check (FK)
  1674. if (not(tobjectdef(left.resulttype.def).is_related(tobjectdef(right.resulttype.def)))) and
  1675. (not(tobjectdef(right.resulttype.def).is_related(tobjectdef(left.resulttype.def)))) then
  1676. CGMessage2(type_e_classes_not_related,left.resulttype.def.typename,right.resulttype.def.typename);
  1677. }
  1678. end
  1679. else
  1680. CGMessage1(type_e_class_type_expected,left.resulttype.def.typename);
  1681. resulttype:=right.resulttype;
  1682. { load the GUID of the interface }
  1683. if (right.nodetype=typen) then
  1684. begin
  1685. if assigned(tobjectdef(right.resulttype.def).iidguid) then
  1686. begin
  1687. hp:=cguidconstnode.create(tobjectdef(right.resulttype.def).iidguid^);
  1688. right.free;
  1689. right:=hp;
  1690. end
  1691. else
  1692. internalerror(200206282);
  1693. resulttypepass(right);
  1694. end;
  1695. end
  1696. else
  1697. CGMessage1(type_e_class_or_interface_type_expected,right.resulttype.def.typename);
  1698. end;
  1699. function tasnode.getcopy: tnode;
  1700. begin
  1701. result := inherited getcopy;
  1702. if assigned(call) then
  1703. tasnode(result).call := call.getcopy
  1704. else
  1705. tasnode(result).call := nil;
  1706. end;
  1707. function tasnode.pass_1 : tnode;
  1708. var
  1709. procname: string;
  1710. begin
  1711. result:=nil;
  1712. if not assigned(call) then
  1713. begin
  1714. if is_class(left.resulttype.def) and
  1715. (right.resulttype.def.deftype=classrefdef) then
  1716. call := ccallnode.createinternres('fpc_do_as',
  1717. ccallparanode.create(left,ccallparanode.create(right,nil)),
  1718. resulttype)
  1719. else
  1720. begin
  1721. if is_class(left.resulttype.def) then
  1722. procname := 'fpc_class_as_intf'
  1723. else
  1724. procname := 'fpc_intf_as';
  1725. call := ccallnode.createinternres(procname,
  1726. ccallparanode.create(right,ccallparanode.create(left,nil)),
  1727. resulttype);
  1728. end;
  1729. left := nil;
  1730. right := nil;
  1731. firstpass(call);
  1732. if codegenerror then
  1733. exit;
  1734. location.loc:=call.location.loc;
  1735. registers32:=call.registers32;
  1736. registersfpu:=call.registersfpu;
  1737. {$ifdef SUPPORT_MMX}
  1738. registersmmx:=call.registersmmx;
  1739. {$endif SUPPORT_MMX}
  1740. end;
  1741. end;
  1742. begin
  1743. ctypeconvnode:=ttypeconvnode;
  1744. casnode:=tasnode;
  1745. cisnode:=tisnode;
  1746. end.
  1747. {
  1748. $Log$
  1749. Revision 1.98 2003-01-05 22:41:40 peter
  1750. * move code that checks for longint-pointer conversion hint
  1751. Revision 1.97 2003/01/03 12:15:56 daniel
  1752. * Removed ifdefs around notifications
  1753. ifdefs around for loop optimizations remain
  1754. Revision 1.96 2002/12/22 16:34:49 peter
  1755. * proc-procvar crash fixed (tw2277)
  1756. Revision 1.95 2002/12/20 16:01:26 peter
  1757. * don't allow class(classref) conversion
  1758. Revision 1.94 2002/12/05 14:27:26 florian
  1759. * some variant <-> dyn. array stuff
  1760. Revision 1.93 2002/11/30 10:45:14 carl
  1761. * fix bug with checking of duplicated items in sets (new sets bug only)
  1762. Revision 1.92 2002/11/27 19:43:21 carl
  1763. * updated notes and hints
  1764. Revision 1.91 2002/11/27 13:11:38 peter
  1765. * more currency fixes, taddcurr runs now successfull
  1766. Revision 1.90 2002/11/27 11:29:21 peter
  1767. * when converting from and to currency divide or multiple the
  1768. result by 10000
  1769. Revision 1.89 2002/11/25 17:43:18 peter
  1770. * splitted defbase in defutil,symutil,defcmp
  1771. * merged isconvertable and is_equal into compare_defs(_ext)
  1772. * made operator search faster by walking the list only once
  1773. Revision 1.88 2002/11/17 16:31:56 carl
  1774. * memory optimization (3-4%) : cleanup of tai fields,
  1775. cleanup of tdef and tsym fields.
  1776. * make it work for m68k
  1777. Revision 1.87 2002/10/10 16:07:57 florian
  1778. + several widestring/pwidechar related stuff added
  1779. Revision 1.86 2002/10/06 16:10:23 florian
  1780. * when compiling <interface> as <interface> we can't assume
  1781. anything about relation
  1782. Revision 1.85 2002/10/05 12:43:25 carl
  1783. * fixes for Delphi 6 compilation
  1784. (warning : Some features do not work under Delphi)
  1785. Revision 1.84 2002/10/02 20:23:50 florian
  1786. - removed the relation check for <class> as <interface> because we don't
  1787. know the runtime type of <class>! It could be a child class of the given type
  1788. which implements additional interfaces
  1789. Revision 1.83 2002/10/02 20:17:14 florian
  1790. + the as operator for <class> as <interface> has to check the parent classes as well
  1791. Revision 1.82 2002/09/30 07:00:47 florian
  1792. * fixes to common code to get the alpha compiler compiled applied
  1793. Revision 1.81 2002/09/16 14:11:13 peter
  1794. * add argument to equal_paras() to support default values or not
  1795. Revision 1.80 2002/09/07 20:40:23 carl
  1796. * cardinal -> longword
  1797. Revision 1.79 2002/09/07 15:25:03 peter
  1798. * old logs removed and tabs fixed
  1799. Revision 1.78 2002/09/07 12:16:04 carl
  1800. * second part bug report 1996 fix, testrange in cordconstnode
  1801. only called if option is set (also make parsing a tiny faster)
  1802. Revision 1.77 2002/09/05 05:56:07 jonas
  1803. - reverted my last commit, it was completely bogus :(
  1804. Revision 1.75 2002/09/02 19:24:42 peter
  1805. * array of char support for Str()
  1806. Revision 1.74 2002/09/01 08:01:16 daniel
  1807. * Removed sets from Tcallnode.det_resulttype
  1808. + Added read/write notifications of variables. These will be usefull
  1809. for providing information for several optimizations. For example
  1810. the value of the loop variable of a for loop does matter is the
  1811. variable is read after the for loop, but if it's no longer used
  1812. or written, it doesn't matter and this can be used to optimize
  1813. the loop code generation.
  1814. Revision 1.73 2002/08/23 16:14:49 peter
  1815. * tempgen cleanup
  1816. * tt_noreuse temp type added that will be used in genentrycode
  1817. Revision 1.72 2002/08/20 18:23:33 jonas
  1818. * the as node again uses a compilerproc
  1819. + (untested) support for interface "as" statements
  1820. Revision 1.71 2002/08/19 19:36:43 peter
  1821. * More fixes for cross unit inlining, all tnodes are now implemented
  1822. * Moved pocall_internconst to po_internconst because it is not a
  1823. calling type at all and it conflicted when inlining of these small
  1824. functions was requested
  1825. Revision 1.70 2002/08/17 09:23:36 florian
  1826. * first part of procinfo rewrite
  1827. Revision 1.69 2002/08/14 19:26:55 carl
  1828. + generic int_to_real type conversion
  1829. + generic unaryminus node
  1830. Revision 1.68 2002/08/11 16:08:55 florian
  1831. + support of explicit type case boolean->char
  1832. Revision 1.67 2002/08/11 15:28:00 florian
  1833. + support of explicit type case <any ordinal type>->pointer
  1834. (delphi mode only)
  1835. Revision 1.66 2002/08/09 07:33:01 florian
  1836. * a couple of interface related fixes
  1837. Revision 1.65 2002/07/29 21:23:42 florian
  1838. * more fixes for the ppc
  1839. + wrappers for the tcnvnode.first_* stuff introduced
  1840. Revision 1.64 2002/07/23 12:34:30 daniel
  1841. * Readded old set code. To use it define 'oldset'. Activated by default
  1842. for ppc.
  1843. Revision 1.63 2002/07/23 09:51:22 daniel
  1844. * Tried to make Tprocsym.defs protected. I didn't succeed but the cleanups
  1845. are worth comitting.
  1846. Revision 1.62 2002/07/22 11:48:04 daniel
  1847. * Sets are now internally sets.
  1848. Revision 1.61 2002/07/20 17:16:02 florian
  1849. + source code page support
  1850. Revision 1.60 2002/07/20 11:57:54 florian
  1851. * types.pas renamed to defbase.pas because D6 contains a types
  1852. unit so this would conflicts if D6 programms are compiled
  1853. + Willamette/SSE2 instructions to assembler added
  1854. Revision 1.59 2002/07/01 16:23:53 peter
  1855. * cg64 patch
  1856. * basics for currency
  1857. * asnode updates for class and interface (not finished)
  1858. Revision 1.58 2002/05/18 13:34:09 peter
  1859. * readded missing revisions
  1860. }