tccal.pas 55 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1998-2000 by Florian Klaempfl
  4. Type checking and register allocation for call 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. {$ifdef FPC}
  19. {$goto on}
  20. {$endif FPC}
  21. unit tccal;
  22. interface
  23. uses
  24. symtable,tree;
  25. procedure gen_high_tree(p:ptree;openstring:boolean);
  26. procedure firstcallparan(var p : ptree;defcoll : pparaitem;do_count : boolean);
  27. procedure firstcalln(var p : ptree);
  28. procedure firstprocinline(var p : ptree);
  29. implementation
  30. uses
  31. globtype,systems,
  32. cobjects,verbose,globals,
  33. symconst,aasm,types,
  34. htypechk,pass_1,cpubase
  35. {$ifdef newcg}
  36. ,cgbase
  37. ,tgobj
  38. {$else newcg}
  39. ,hcodegen
  40. {$ifdef i386}
  41. ,tgeni386
  42. {$endif}
  43. {$ifdef m68k}
  44. ,tgen68k
  45. {$endif m68k}
  46. {$endif newcg}
  47. ;
  48. {*****************************************************************************
  49. FirstCallParaN
  50. *****************************************************************************}
  51. procedure gen_high_tree(p:ptree;openstring:boolean);
  52. var
  53. len : longint;
  54. st : psymtable;
  55. loadconst : boolean;
  56. begin
  57. if assigned(p^.hightree) then
  58. exit;
  59. len:=-1;
  60. loadconst:=true;
  61. case p^.left^.resulttype^.deftype of
  62. arraydef :
  63. begin
  64. if is_open_array(p^.left^.resulttype) or
  65. is_array_of_const(p^.left^.resulttype) then
  66. begin
  67. st:=p^.left^.symtable;
  68. getsymonlyin(st,'high'+pvarsym(p^.left^.symtableentry)^.name);
  69. p^.hightree:=genloadnode(pvarsym(srsym),st);
  70. loadconst:=false;
  71. end
  72. else
  73. begin
  74. { this is an empty constructor }
  75. len:=parraydef(p^.left^.resulttype)^.highrange-
  76. parraydef(p^.left^.resulttype)^.lowrange;
  77. end;
  78. end;
  79. stringdef :
  80. begin
  81. if openstring then
  82. begin
  83. if is_open_string(p^.left^.resulttype) then
  84. begin
  85. st:=p^.left^.symtable;
  86. getsymonlyin(st,'high'+pvarsym(p^.left^.symtableentry)^.name);
  87. p^.hightree:=genloadnode(pvarsym(srsym),st);
  88. loadconst:=false;
  89. end
  90. else
  91. len:=pstringdef(p^.left^.resulttype)^.len;
  92. end
  93. else
  94. { passing a string to an array of char }
  95. begin
  96. if (p^.left^.treetype=stringconstn) then
  97. begin
  98. len:=str_length(p^.left);
  99. if len>0 then
  100. dec(len);
  101. end
  102. else
  103. begin
  104. p^.hightree:=gennode(subn,geninlinenode(in_length_string,false,getcopy(p^.left)),
  105. genordinalconstnode(1,s32bitdef));
  106. firstpass(p^.hightree);
  107. p^.hightree:=gentypeconvnode(p^.hightree,s32bitdef);
  108. loadconst:=false;
  109. end;
  110. end;
  111. end;
  112. else
  113. len:=0;
  114. end;
  115. if loadconst then
  116. p^.hightree:=genordinalconstnode(len,s32bitdef);
  117. firstpass(p^.hightree);
  118. end;
  119. procedure firstcallparan(var p : ptree;defcoll : pparaitem;do_count : boolean);
  120. var
  121. old_get_para_resulttype : boolean;
  122. old_array_constructor : boolean;
  123. oldtype : pdef;
  124. {$ifdef extdebug}
  125. store_count_ref : boolean;
  126. {$endif def extdebug}
  127. {convtyp : tconverttype;}
  128. begin
  129. inc(parsing_para_level);
  130. {$ifdef extdebug}
  131. if do_count then
  132. begin
  133. store_count_ref:=count_ref;
  134. count_ref:=true;
  135. end;
  136. {$endif def extdebug}
  137. if assigned(p^.right) then
  138. begin
  139. if defcoll=nil then
  140. firstcallparan(p^.right,nil,do_count)
  141. else
  142. firstcallparan(p^.right,pparaitem(defcoll^.next),do_count);
  143. p^.registers32:=p^.right^.registers32;
  144. p^.registersfpu:=p^.right^.registersfpu;
  145. {$ifdef SUPPORT_MMX}
  146. p^.registersmmx:=p^.right^.registersmmx;
  147. {$endif}
  148. end;
  149. if defcoll=nil then
  150. begin
  151. old_array_constructor:=allow_array_constructor;
  152. old_get_para_resulttype:=get_para_resulttype;
  153. get_para_resulttype:=true;
  154. allow_array_constructor:=true;
  155. firstpass(p^.left);
  156. get_para_resulttype:=old_get_para_resulttype;
  157. allow_array_constructor:=old_array_constructor;
  158. if codegenerror then
  159. begin
  160. dec(parsing_para_level);
  161. exit;
  162. end;
  163. p^.resulttype:=p^.left^.resulttype;
  164. end
  165. { if we know the routine which is called, then the type }
  166. { conversions are inserted }
  167. else
  168. begin
  169. { Do we need arrayconstructor -> set conversion, then insert
  170. it here before the arrayconstructor node breaks the tree
  171. with its conversions of enum->ord }
  172. if (p^.left^.treetype=arrayconstructn) and
  173. (defcoll^.paratype.def^.deftype=setdef) then
  174. p^.left:=gentypeconvnode(p^.left,defcoll^.paratype.def);
  175. { set some settings needed for arrayconstructor }
  176. if is_array_constructor(p^.left^.resulttype) then
  177. begin
  178. if is_array_of_const(defcoll^.paratype.def) then
  179. begin
  180. if assigned(aktcallprocsym) and
  181. (pocall_cdecl in aktcallprocsym^.definition^.proccalloptions) and
  182. (po_external in aktcallprocsym^.definition^.procoptions) then
  183. p^.left^.cargs:=true;
  184. { force variant array }
  185. p^.left^.forcevaria:=true;
  186. end
  187. else
  188. begin
  189. p^.left^.novariaallowed:=true;
  190. p^.left^.constructdef:=parraydef(defcoll^.paratype.def)^.elementtype.def;
  191. end;
  192. end;
  193. if do_count then
  194. begin
  195. { not completly proper, but avoids some warnings }
  196. if (defcoll^.paratyp=vs_var) then
  197. set_funcret_is_valid(p^.left);
  198. { protected has nothing to do with read/write
  199. if (defcoll^.paratyp=vs_var) then
  200. test_protected(p^.left);
  201. }
  202. { set_varstate(p^.left,defcoll^.paratyp<>vs_var);
  203. must only be done after typeconv PM }
  204. { only process typeconvn and arrayconstructn, else it will
  205. break other trees }
  206. { But this is need to get correct varstate !! PM }
  207. old_array_constructor:=allow_array_constructor;
  208. old_get_para_resulttype:=get_para_resulttype;
  209. allow_array_constructor:=true;
  210. get_para_resulttype:=false;
  211. if (p^.left^.treetype in [arrayconstructn,typeconvn]) then
  212. firstpass(p^.left);
  213. if not assigned(p^.resulttype) then
  214. p^.resulttype:=p^.left^.resulttype;
  215. get_para_resulttype:=old_get_para_resulttype;
  216. allow_array_constructor:=old_array_constructor;
  217. end;
  218. { check if local proc/func is assigned to procvar }
  219. if p^.left^.resulttype^.deftype=procvardef then
  220. test_local_to_procvar(pprocvardef(p^.left^.resulttype),defcoll^.paratype.def);
  221. { property is not allowed as var parameter }
  222. if (defcoll^.paratyp=vs_var) and
  223. (p^.left^.isproperty) then
  224. CGMessagePos(p^.left^.fileinfo,type_e_argument_cant_be_assigned);
  225. { generate the high() value tree }
  226. if push_high_param(defcoll^.paratype.def) then
  227. gen_high_tree(p,is_open_string(defcoll^.paratype.def));
  228. if not(is_shortstring(p^.left^.resulttype) and
  229. is_shortstring(defcoll^.paratype.def)) and
  230. (defcoll^.paratype.def^.deftype<>formaldef) then
  231. begin
  232. if (defcoll^.paratyp=vs_var) and
  233. { allows conversion from word to integer and
  234. byte to shortint }
  235. (not(
  236. (p^.left^.resulttype^.deftype=orddef) and
  237. (defcoll^.paratype.def^.deftype=orddef) and
  238. (p^.left^.resulttype^.size=defcoll^.paratype.def^.size)
  239. ) and
  240. { an implicit pointer conversion is allowed }
  241. not(
  242. (p^.left^.resulttype^.deftype=pointerdef) and
  243. (defcoll^.paratype.def^.deftype=pointerdef)
  244. ) and
  245. { child classes can be also passed }
  246. not(
  247. (p^.left^.resulttype^.deftype=objectdef) and
  248. (defcoll^.paratype.def^.deftype=objectdef) and
  249. pobjectdef(p^.left^.resulttype)^.is_related(pobjectdef(defcoll^.paratype.def))
  250. ) and
  251. { passing a single element to a openarray of the same type }
  252. not(
  253. (is_open_array(defcoll^.paratype.def) and
  254. is_equal(parraydef(defcoll^.paratype.def)^.elementtype.def,p^.left^.resulttype))
  255. ) and
  256. { an implicit file conversion is also allowed }
  257. { from a typed file to an untyped one }
  258. not(
  259. (p^.left^.resulttype^.deftype=filedef) and
  260. (defcoll^.paratype.def^.deftype=filedef) and
  261. (pfiledef(defcoll^.paratype.def)^.filetyp = ft_untyped) and
  262. (pfiledef(p^.left^.resulttype)^.filetyp = ft_typed)
  263. ) and
  264. not(is_equal(p^.left^.resulttype,defcoll^.paratype.def))) then
  265. begin
  266. CGMessagePos2(p^.left^.fileinfo,parser_e_call_by_ref_without_typeconv,
  267. p^.left^.resulttype^.typename,defcoll^.paratype.def^.typename);
  268. end;
  269. { Process open parameters }
  270. if push_high_param(defcoll^.paratype.def) then
  271. begin
  272. { insert type conv but hold the ranges of the array }
  273. oldtype:=p^.left^.resulttype;
  274. p^.left:=gentypeconvnode(p^.left,defcoll^.paratype.def);
  275. firstpass(p^.left);
  276. p^.left^.resulttype:=oldtype;
  277. end
  278. else
  279. begin
  280. p^.left:=gentypeconvnode(p^.left,defcoll^.paratype.def);
  281. firstpass(p^.left);
  282. end;
  283. if codegenerror then
  284. begin
  285. dec(parsing_para_level);
  286. exit;
  287. end;
  288. end;
  289. { check var strings }
  290. if (cs_strict_var_strings in aktlocalswitches) and
  291. is_shortstring(p^.left^.resulttype) and
  292. is_shortstring(defcoll^.paratype.def) and
  293. (defcoll^.paratyp=vs_var) and
  294. not(is_open_string(defcoll^.paratype.def)) and
  295. not(is_equal(p^.left^.resulttype,defcoll^.paratype.def)) then
  296. begin
  297. aktfilepos:=p^.left^.fileinfo;
  298. CGMessage(type_e_strict_var_string_violation);
  299. end;
  300. { Variablen for call by reference may not be copied }
  301. { into a register }
  302. { is this usefull here ? }
  303. { this was missing in formal parameter list }
  304. if (defcoll^.paratype.def=pdef(cformaldef)) then
  305. begin
  306. if defcoll^.paratyp=vs_var then
  307. begin
  308. if not valid_for_formal_var(p^.left) then
  309. begin
  310. aktfilepos:=p^.left^.fileinfo;
  311. CGMessage(parser_e_illegal_parameter_list);
  312. end;
  313. end;
  314. if defcoll^.paratyp=vs_const then
  315. begin
  316. if not valid_for_formal_const(p^.left) then
  317. begin
  318. aktfilepos:=p^.left^.fileinfo;
  319. CGMessage(parser_e_illegal_parameter_list);
  320. end;
  321. end;
  322. end;
  323. if defcoll^.paratyp=vs_var then
  324. begin
  325. set_unique(p^.left);
  326. make_not_regable(p^.left);
  327. end;
  328. if do_count then
  329. set_varstate(p^.left,defcoll^.paratyp<>vs_var);
  330. { must only be done after typeconv PM }
  331. p^.resulttype:=defcoll^.paratype.def;
  332. end;
  333. if p^.left^.registers32>p^.registers32 then
  334. p^.registers32:=p^.left^.registers32;
  335. if p^.left^.registersfpu>p^.registersfpu then
  336. p^.registersfpu:=p^.left^.registersfpu;
  337. {$ifdef SUPPORT_MMX}
  338. if p^.left^.registersmmx>p^.registersmmx then
  339. p^.registersmmx:=p^.left^.registersmmx;
  340. {$endif SUPPORT_MMX}
  341. dec(parsing_para_level);
  342. {$ifdef extdebug}
  343. if do_count then
  344. count_ref:=store_count_ref;
  345. {$endif def extdebug}
  346. end;
  347. {*****************************************************************************
  348. FirstCallN
  349. *****************************************************************************}
  350. procedure firstcalln(var p : ptree);
  351. type
  352. pprocdefcoll = ^tprocdefcoll;
  353. tprocdefcoll = record
  354. data : pprocdef;
  355. nextpara : pparaitem;
  356. firstpara : pparaitem;
  357. next : pprocdefcoll;
  358. end;
  359. var
  360. hp,procs,hp2 : pprocdefcoll;
  361. pd : pprocdef;
  362. oldcallprocsym : pprocsym;
  363. def_from,def_to,conv_to : pdef;
  364. hpt,pt,inlinecode : ptree;
  365. exactmatch,inlined : boolean;
  366. paralength,lastpara : longint;
  367. lastparatype : pdef;
  368. pdc : pparaitem;
  369. {$ifdef TEST_PROCSYMS}
  370. nextprocsym : pprocsym;
  371. symt : psymtable;
  372. {$endif TEST_PROCSYMS}
  373. { only Dummy }
  374. hcvt : tconverttype;
  375. regi : tregister;
  376. method_must_be_valid : boolean;
  377. label
  378. errorexit;
  379. { check if the resulttype from tree p is equal with def, needed
  380. for stringconstn and formaldef }
  381. function is_equal(p:ptree;def:pdef) : boolean;
  382. begin
  383. { safety check }
  384. if not (assigned(def) or assigned(p^.resulttype)) then
  385. begin
  386. is_equal:=false;
  387. exit;
  388. end;
  389. { all types can be passed to a formaldef }
  390. is_equal:=(def^.deftype=formaldef) or
  391. (types.is_equal(p^.resulttype,def))
  392. { to support ansi/long/wide strings in a proper way }
  393. { string and string[10] are assumed as equal }
  394. { when searching the correct overloaded procedure }
  395. or
  396. (
  397. (def^.deftype=stringdef) and (p^.resulttype^.deftype=stringdef) and
  398. (pstringdef(def)^.string_typ=pstringdef(p^.resulttype)^.string_typ)
  399. )
  400. or
  401. (
  402. (p^.left^.treetype=stringconstn) and
  403. (is_ansistring(p^.resulttype) and is_pchar(def))
  404. )
  405. or
  406. (
  407. (p^.left^.treetype=ordconstn) and
  408. (is_char(p^.resulttype) and (is_shortstring(def) or is_ansistring(def)))
  409. )
  410. { set can also be a not yet converted array constructor }
  411. or
  412. (
  413. (def^.deftype=setdef) and (p^.resulttype^.deftype=arraydef) and
  414. (parraydef(p^.resulttype)^.IsConstructor) and not(parraydef(p^.resulttype)^.IsVariant)
  415. )
  416. { in tp7 mode proc -> procvar is allowed }
  417. or
  418. (
  419. (m_tp_procvar in aktmodeswitches) and
  420. (def^.deftype=procvardef) and (p^.left^.treetype=calln) and
  421. (proc_to_procvar_equal(pprocdef(p^.left^.procdefinition),pprocvardef(def)))
  422. )
  423. ;
  424. end;
  425. function is_in_limit(def_from,def_to : pdef) : boolean;
  426. begin
  427. is_in_limit:=(def_from^.deftype = orddef) and
  428. (def_to^.deftype = orddef) and
  429. (porddef(def_from)^.low>porddef(def_to)^.low) and
  430. (porddef(def_from)^.high<porddef(def_to)^.high);
  431. end;
  432. var
  433. is_const : boolean;
  434. begin
  435. { release registers! }
  436. { if procdefinition<>nil then we called firstpass already }
  437. { it seems to be bad because of the registers }
  438. { at least we can avoid the overloaded search !! }
  439. procs:=nil;
  440. { made this global for disposing !! }
  441. oldcallprocsym:=aktcallprocsym;
  442. aktcallprocsym:=nil;
  443. inlined:=false;
  444. if assigned(p^.procdefinition) and
  445. (pocall_inline in p^.procdefinition^.proccalloptions) then
  446. begin
  447. inlinecode:=p^.right;
  448. if assigned(inlinecode) then
  449. begin
  450. inlined:=true;
  451. {$ifdef INCLUDEOK}
  452. exclude(p^.procdefinition^.proccalloptions,pocall_inline);
  453. {$else}
  454. p^.procdefinition^.proccalloptions:=p^.procdefinition^.proccalloptions-[pocall_inline];
  455. {$endif}
  456. end;
  457. p^.right:=nil;
  458. end;
  459. if assigned(p^.procdefinition) and
  460. (po_containsself in p^.procdefinition^.procoptions) then
  461. message(cg_e_cannot_call_message_direct);
  462. { procedure variable ? }
  463. if assigned(p^.right) then
  464. begin
  465. { procedure does a call }
  466. procinfo^.flags:=procinfo^.flags or pi_do_call;
  467. {$ifndef newcg}
  468. { calc the correture value for the register }
  469. {$ifdef i386}
  470. incrementregisterpushed($ff);
  471. {$endif}
  472. {$ifdef m68k}
  473. for regi:=R_D0 to R_A6 do
  474. inc(reg_pushes[regi],t_times*2);
  475. {$endif}
  476. {$endif newcg}
  477. { calculate the type of the parameters }
  478. if assigned(p^.left) then
  479. begin
  480. firstcallparan(p^.left,nil,false);
  481. if codegenerror then
  482. goto errorexit;
  483. end;
  484. firstpass(p^.right);
  485. set_varstate(p^.right,true);
  486. { check the parameters }
  487. pdc:=pparaitem(pprocvardef(p^.right^.resulttype)^.para^.first);
  488. pt:=p^.left;
  489. while assigned(pdc) and assigned(pt) do
  490. begin
  491. pt:=pt^.right;
  492. pdc:=pparaitem(pdc^.next);
  493. end;
  494. if assigned(pt) or assigned(pdc) then
  495. begin
  496. if assigned(pt) then
  497. aktfilepos:=pt^.fileinfo;
  498. CGMessage(parser_e_illegal_parameter_list);
  499. end;
  500. { insert type conversions }
  501. if assigned(p^.left) then
  502. begin
  503. firstcallparan(p^.left,pparaitem(pprocvardef(p^.right^.resulttype)^.para^.first),true);
  504. if codegenerror then
  505. goto errorexit;
  506. end;
  507. p^.resulttype:=pprocvardef(p^.right^.resulttype)^.rettype.def;
  508. { this was missing, leads to a bug below if
  509. the procvar is a function }
  510. p^.procdefinition:=pabstractprocdef(p^.right^.resulttype);
  511. end
  512. else
  513. { not a procedure variable }
  514. begin
  515. { determine the type of the parameters }
  516. if assigned(p^.left) then
  517. begin
  518. firstcallparan(p^.left,nil,false);
  519. if codegenerror then
  520. goto errorexit;
  521. end;
  522. aktcallprocsym:=pprocsym(p^.symtableprocentry);
  523. { do we know the procedure to call ? }
  524. if not(assigned(p^.procdefinition)) then
  525. begin
  526. {$ifdef TEST_PROCSYMS}
  527. if (p^.unit_specific) or
  528. assigned(p^.methodpointer) then
  529. nextprocsym:=nil
  530. else while not assigned(procs) do
  531. begin
  532. symt:=p^.symtableproc;
  533. srsym:=nil;
  534. while assigned(symt^.next) and not assigned(srsym) do
  535. begin
  536. symt:=symt^.next;
  537. getsymonlyin(symt,actprocsym^.name);
  538. if assigned(srsym) then
  539. if srsym^.typ<>procsym then
  540. begin
  541. { reject all that is not a procedure }
  542. srsym:=nil;
  543. { don't search elsewhere }
  544. while assigned(symt^.next) do
  545. symt:=symt^.next;
  546. end;
  547. end;
  548. nextprocsym:=srsym;
  549. end;
  550. {$endif TEST_PROCSYMS}
  551. { determine length of parameter list }
  552. pt:=p^.left;
  553. paralength:=0;
  554. while assigned(pt) do
  555. begin
  556. inc(paralength);
  557. pt:=pt^.right;
  558. end;
  559. { link all procedures which have the same # of parameters }
  560. pd:=aktcallprocsym^.definition;
  561. while assigned(pd) do
  562. begin
  563. { only when the # of parameter are equal }
  564. if (pd^.para^.count=paralength) then
  565. begin
  566. new(hp);
  567. hp^.data:=pd;
  568. hp^.next:=procs;
  569. hp^.nextpara:=pparaitem(pd^.para^.first);
  570. hp^.firstpara:=pparaitem(pd^.para^.first);
  571. procs:=hp;
  572. end;
  573. pd:=pd^.nextoverloaded;
  574. end;
  575. { no procedures found? then there is something wrong
  576. with the parameter size }
  577. if not assigned(procs) then
  578. begin
  579. { in tp mode we can try to convert to procvar if
  580. there are no parameters specified }
  581. if not(assigned(p^.left)) and
  582. (m_tp_procvar in aktmodeswitches) then
  583. begin
  584. if (p^.symtableprocentry^.owner^.symtabletype=objectsymtable) and
  585. (pobjectdef(p^.symtableprocentry^.owner^.defowner)^.is_class) then
  586. hpt:=genloadmethodcallnode(pprocsym(p^.symtableprocentry),p^.symtableproc,
  587. getcopy(p^.methodpointer))
  588. else
  589. hpt:=genloadcallnode(pprocsym(p^.symtableprocentry),p^.symtableproc);
  590. disposetree(p);
  591. firstpass(hpt);
  592. p:=hpt;
  593. end
  594. else
  595. begin
  596. if assigned(p^.left) then
  597. aktfilepos:=p^.left^.fileinfo;
  598. CGMessage(parser_e_wrong_parameter_size);
  599. aktcallprocsym^.write_parameter_lists;
  600. end;
  601. goto errorexit;
  602. end;
  603. { now we can compare parameter after parameter }
  604. pt:=p^.left;
  605. { we start with the last parameter }
  606. lastpara:=paralength+1;
  607. lastparatype:=nil;
  608. while assigned(pt) do
  609. begin
  610. dec(lastpara);
  611. { walk all procedures and determine how this parameter matches and set:
  612. 1. pt^.exact_match_found if one parameter has an exact match
  613. 2. exactmatch if an equal or exact match is found
  614. 3. para^.argconvtyp to exact,equal or convertable
  615. (when convertable then also convertlevel is set)
  616. 4. pt^.convlevel1found if there is a convertlevel=1
  617. 5. pt^.convlevel2found if there is a convertlevel=2
  618. }
  619. exactmatch:=false;
  620. hp:=procs;
  621. while assigned(hp) do
  622. begin
  623. if is_equal(pt,hp^.nextpara^.paratype.def) then
  624. begin
  625. if hp^.nextpara^.paratype.def=pt^.resulttype then
  626. begin
  627. pt^.exact_match_found:=true;
  628. hp^.nextpara^.argconvtyp:=act_exact;
  629. end
  630. else
  631. hp^.nextpara^.argconvtyp:=act_equal;
  632. exactmatch:=true;
  633. end
  634. else
  635. begin
  636. hp^.nextpara^.argconvtyp:=act_convertable;
  637. hp^.nextpara^.convertlevel:=isconvertable(pt^.resulttype,hp^.nextpara^.paratype.def,
  638. hcvt,pt^.left^.treetype,false);
  639. case hp^.nextpara^.convertlevel of
  640. 1 : pt^.convlevel1found:=true;
  641. 2 : pt^.convlevel2found:=true;
  642. end;
  643. end;
  644. hp:=hp^.next;
  645. end;
  646. { If there was an exactmatch then delete all convertables }
  647. if exactmatch then
  648. begin
  649. hp:=procs;
  650. procs:=nil;
  651. while assigned(hp) do
  652. begin
  653. hp2:=hp^.next;
  654. { keep if not convertable }
  655. if (hp^.nextpara^.argconvtyp<>act_convertable) then
  656. begin
  657. hp^.next:=procs;
  658. procs:=hp;
  659. end
  660. else
  661. dispose(hp);
  662. hp:=hp2;
  663. end;
  664. end
  665. else
  666. { No exact match was found, remove all procedures that are
  667. not convertable (convertlevel=0) }
  668. begin
  669. hp:=procs;
  670. procs:=nil;
  671. while assigned(hp) do
  672. begin
  673. hp2:=hp^.next;
  674. { keep if not convertable }
  675. if (hp^.nextpara^.convertlevel<>0) then
  676. begin
  677. hp^.next:=procs;
  678. procs:=hp;
  679. end
  680. else
  681. begin
  682. { save the type for nice error message }
  683. lastparatype:=hp^.nextpara^.paratype.def;
  684. dispose(hp);
  685. end;
  686. hp:=hp2;
  687. end;
  688. end;
  689. { update nextpara for all procedures }
  690. hp:=procs;
  691. while assigned(hp) do
  692. begin
  693. hp^.nextpara:=pparaitem(hp^.nextpara^.next);
  694. hp:=hp^.next;
  695. end;
  696. { load next parameter or quit loop if no procs left }
  697. if assigned(procs) then
  698. pt:=pt^.right
  699. else
  700. break;
  701. end;
  702. { All parameters are checked, check if there are any
  703. procedures left }
  704. if not assigned(procs) then
  705. begin
  706. { there is an error, must be wrong type, because
  707. wrong size is already checked (PFV) }
  708. if (not assigned(lastparatype)) or
  709. (not assigned(pt)) or
  710. (not assigned(pt^.resulttype)) then
  711. internalerror(39393)
  712. else
  713. begin
  714. aktfilepos:=pt^.fileinfo;
  715. CGMessage3(type_e_wrong_parameter_type,tostr(lastpara),
  716. pt^.resulttype^.typename,lastparatype^.typename);
  717. end;
  718. aktcallprocsym^.write_parameter_lists;
  719. goto errorexit;
  720. end;
  721. { if there are several choices left then for orddef }
  722. { if a type is totally included in the other }
  723. { we don't fear an overflow , }
  724. { so we can do as if it is an exact match }
  725. { this will convert integer to longint }
  726. { rather than to words }
  727. { conversion of byte to integer or longint }
  728. {would still not be solved }
  729. if assigned(procs) and assigned(procs^.next) then
  730. begin
  731. hp:=procs;
  732. while assigned(hp) do
  733. begin
  734. hp^.nextpara:=hp^.firstpara;
  735. hp:=hp^.next;
  736. end;
  737. pt:=p^.left;
  738. while assigned(pt) do
  739. begin
  740. { matches a parameter of one procedure exact ? }
  741. exactmatch:=false;
  742. def_from:=pt^.resulttype;
  743. hp:=procs;
  744. while assigned(hp) do
  745. begin
  746. if not is_equal(pt,hp^.nextpara^.paratype.def) then
  747. begin
  748. def_to:=hp^.nextpara^.paratype.def;
  749. if ((def_from^.deftype=orddef) and (def_to^.deftype=orddef)) and
  750. (is_in_limit(def_from,def_to) or
  751. ((hp^.nextpara^.paratyp=vs_var) and
  752. (def_from^.size=def_to^.size))) then
  753. begin
  754. exactmatch:=true;
  755. conv_to:=def_to;
  756. end;
  757. end;
  758. hp:=hp^.next;
  759. end;
  760. { .... if yes, del all the other procedures }
  761. if exactmatch then
  762. begin
  763. { the first .... }
  764. while (assigned(procs)) and not(is_in_limit(def_from,procs^.nextpara^.paratype.def)) do
  765. begin
  766. hp:=procs^.next;
  767. dispose(procs);
  768. procs:=hp;
  769. end;
  770. { and the others }
  771. hp:=procs;
  772. while (assigned(hp)) and assigned(hp^.next) do
  773. begin
  774. if not(is_in_limit(def_from,hp^.next^.nextpara^.paratype.def)) then
  775. begin
  776. hp2:=hp^.next^.next;
  777. dispose(hp^.next);
  778. hp^.next:=hp2;
  779. end
  780. else
  781. begin
  782. def_to:=hp^.next^.nextpara^.paratype.def;
  783. if (conv_to^.size>def_to^.size) or
  784. ((porddef(conv_to)^.low<porddef(def_to)^.low) and
  785. (porddef(conv_to)^.high>porddef(def_to)^.high)) then
  786. begin
  787. hp2:=procs;
  788. procs:=hp;
  789. conv_to:=def_to;
  790. dispose(hp2);
  791. end
  792. else
  793. hp:=hp^.next;
  794. end;
  795. end;
  796. end;
  797. { update nextpara for all procedures }
  798. hp:=procs;
  799. while assigned(hp) do
  800. begin
  801. hp^.nextpara:=pparaitem(hp^.nextpara^.next);
  802. hp:=hp^.next;
  803. end;
  804. pt:=pt^.right;
  805. end;
  806. end;
  807. { let's try to eliminate equal if there is an exact match
  808. is there }
  809. if assigned(procs) and assigned(procs^.next) then
  810. begin
  811. { reset nextpara for all procs left }
  812. hp:=procs;
  813. while assigned(hp) do
  814. begin
  815. hp^.nextpara:=hp^.firstpara;
  816. hp:=hp^.next;
  817. end;
  818. pt:=p^.left;
  819. while assigned(pt) do
  820. begin
  821. if pt^.exact_match_found then
  822. begin
  823. hp:=procs;
  824. procs:=nil;
  825. while assigned(hp) do
  826. begin
  827. hp2:=hp^.next;
  828. { keep the exact matches, dispose the others }
  829. if (hp^.nextpara^.argconvtyp=act_exact) then
  830. begin
  831. hp^.next:=procs;
  832. procs:=hp;
  833. end
  834. else
  835. dispose(hp);
  836. hp:=hp2;
  837. end;
  838. end;
  839. { update nextpara for all procedures }
  840. hp:=procs;
  841. while assigned(hp) do
  842. begin
  843. hp^.nextpara:=pparaitem(hp^.nextpara^.next);
  844. hp:=hp^.next;
  845. end;
  846. pt:=pt^.right;
  847. end;
  848. end;
  849. { Check if there are convertlevel 1 and 2 differences
  850. left for the parameters, then discard all convertlevel
  851. 2 procedures. The value of convlevelXfound can still
  852. be used, because all convertables are still here or
  853. not }
  854. if assigned(procs) and assigned(procs^.next) then
  855. begin
  856. { reset nextpara for all procs left }
  857. hp:=procs;
  858. while assigned(hp) do
  859. begin
  860. hp^.nextpara:=hp^.firstpara;
  861. hp:=hp^.next;
  862. end;
  863. pt:=p^.left;
  864. while assigned(pt) do
  865. begin
  866. if pt^.convlevel1found and pt^.convlevel2found then
  867. begin
  868. hp:=procs;
  869. procs:=nil;
  870. while assigned(hp) do
  871. begin
  872. hp2:=hp^.next;
  873. { keep all not act_convertable and all convertlevels=1 }
  874. if (hp^.nextpara^.argconvtyp<>act_convertable) or
  875. (hp^.nextpara^.convertlevel=1) then
  876. begin
  877. hp^.next:=procs;
  878. procs:=hp;
  879. end
  880. else
  881. dispose(hp);
  882. hp:=hp2;
  883. end;
  884. end;
  885. { update nextpara for all procedures }
  886. hp:=procs;
  887. while assigned(hp) do
  888. begin
  889. hp^.nextpara:=pparaitem(hp^.nextpara^.next);
  890. hp:=hp^.next;
  891. end;
  892. pt:=pt^.right;
  893. end;
  894. end;
  895. if not(assigned(procs)) or assigned(procs^.next) then
  896. begin
  897. CGMessage(cg_e_cant_choose_overload_function);
  898. aktcallprocsym^.write_parameter_lists;
  899. goto errorexit;
  900. end;
  901. {$ifdef TEST_PROCSYMS}
  902. if (procs=nil) and assigned(nextprocsym) then
  903. begin
  904. p^.symtableprocentry:=nextprocsym;
  905. p^.symtableproc:=symt;
  906. end;
  907. end ; { of while assigned(p^.symtableprocentry) do }
  908. {$endif TEST_PROCSYMS}
  909. if make_ref then
  910. begin
  911. procs^.data^.lastref:=new(pref,init(procs^.data^.lastref,@p^.fileinfo));
  912. inc(procs^.data^.refcount);
  913. if procs^.data^.defref=nil then
  914. procs^.data^.defref:=procs^.data^.lastref;
  915. end;
  916. p^.procdefinition:=procs^.data;
  917. p^.resulttype:=procs^.data^.rettype.def;
  918. { big error for with statements
  919. p^.symtableproc:=p^.procdefinition^.owner;
  920. but neede for overloaded operators !! }
  921. if p^.symtableproc=nil then
  922. p^.symtableproc:=p^.procdefinition^.owner;
  923. p^.location.loc:=LOC_MEM;
  924. {$ifdef CHAINPROCSYMS}
  925. { object with method read;
  926. call to read(x) will be a usual procedure call }
  927. if assigned(p^.methodpointer) and
  928. (p^.procdefinition^._class=nil) then
  929. begin
  930. { not ok for extended }
  931. case p^.methodpointer^.treetype of
  932. typen,hnewn : fatalerror(no_para_match);
  933. end;
  934. disposetree(p^.methodpointer);
  935. p^.methodpointer:=nil;
  936. end;
  937. {$endif CHAINPROCSYMS}
  938. end; { end of procedure to call determination }
  939. is_const:=(pocall_internconst in p^.procdefinition^.proccalloptions) and
  940. ((block_type=bt_const) or
  941. (assigned(p^.left) and (p^.left^.left^.treetype in [realconstn,ordconstn])));
  942. { handle predefined procedures }
  943. if (pocall_internproc in p^.procdefinition^.proccalloptions) or is_const then
  944. begin
  945. if assigned(p^.left) then
  946. begin
  947. { settextbuf needs two args }
  948. if assigned(p^.left^.right) then
  949. pt:=geninlinenode(pprocdef(p^.procdefinition)^.extnumber,is_const,p^.left)
  950. else
  951. begin
  952. pt:=geninlinenode(pprocdef(p^.procdefinition)^.extnumber,is_const,p^.left^.left);
  953. putnode(p^.left);
  954. end;
  955. end
  956. else
  957. begin
  958. pt:=geninlinenode(pprocdef(p^.procdefinition)^.extnumber,is_const,nil);
  959. end;
  960. putnode(p);
  961. firstpass(pt);
  962. p:=pt;
  963. goto errorexit;
  964. end
  965. else
  966. { no intern procedure => we do a call }
  967. { calc the correture value for the register }
  968. { handle predefined procedures }
  969. if (pocall_inline in p^.procdefinition^.proccalloptions) then
  970. begin
  971. if assigned(p^.methodpointer) then
  972. CGMessage(cg_e_unable_inline_object_methods);
  973. if assigned(p^.right) and (p^.right^.treetype<>procinlinen) then
  974. CGMessage(cg_e_unable_inline_procvar);
  975. { p^.treetype:=procinlinen; }
  976. if not assigned(p^.right) then
  977. begin
  978. if assigned(pprocdef(p^.procdefinition)^.code) then
  979. inlinecode:=genprocinlinenode(p,ptree(pprocdef(p^.procdefinition)^.code))
  980. else
  981. CGMessage(cg_e_no_code_for_inline_stored);
  982. if assigned(inlinecode) then
  983. begin
  984. { consider it has not inlined if called
  985. again inside the args }
  986. {$ifdef INCLUDEOK}
  987. exclude(p^.procdefinition^.proccalloptions,pocall_inline);
  988. {$else}
  989. p^.procdefinition^.proccalloptions:=p^.procdefinition^.proccalloptions-[pocall_inline];
  990. {$endif}
  991. firstpass(inlinecode);
  992. inlined:=true;
  993. end;
  994. end;
  995. end
  996. else
  997. procinfo^.flags:=procinfo^.flags or pi_do_call;
  998. if (po_interrupt in p^.procdefinition^.procoptions) then
  999. CGmessage1(cg_e_no_call_to_interrupt,p^.symtableprocentry^.name);
  1000. { work trough all parameters to insert the type conversions }
  1001. { !!! done now after internproc !! (PM) }
  1002. if assigned(p^.left) then
  1003. begin
  1004. firstcallparan(p^.left,pparaitem(p^.procdefinition^.para^.first),true);
  1005. end;
  1006. {$ifndef newcg}
  1007. {$ifdef i386}
  1008. incrementregisterpushed(pprocdef(p^.procdefinition)^.usedregisters);
  1009. {$endif}
  1010. {$ifdef m68k}
  1011. for regi:=R_D0 to R_A6 do
  1012. begin
  1013. if (pprocdef(p^.procdefinition)^.usedregisters and ($800 shr word(regi)))<>0 then
  1014. inc(reg_pushes[regi],t_times*2);
  1015. end;
  1016. {$endif}
  1017. {$endif newcg}
  1018. end;
  1019. { ensure that the result type is set }
  1020. p^.resulttype:=p^.procdefinition^.rettype.def;
  1021. { get a register for the return value }
  1022. if (p^.resulttype<>pdef(voiddef)) then
  1023. begin
  1024. if (p^.procdefinition^.proctypeoption=potype_constructor) then
  1025. begin
  1026. { extra handling of classes }
  1027. { p^.methodpointer should be assigned! }
  1028. if assigned(p^.methodpointer) and assigned(p^.methodpointer^.resulttype) and
  1029. (p^.methodpointer^.resulttype^.deftype=classrefdef) then
  1030. begin
  1031. p^.location.loc:=LOC_REGISTER;
  1032. p^.registers32:=1;
  1033. { the result type depends on the classref }
  1034. p^.resulttype:=pclassrefdef(p^.methodpointer^.resulttype)^.pointertype.def;
  1035. end
  1036. { a object constructor returns the result with the flags }
  1037. else
  1038. p^.location.loc:=LOC_FLAGS;
  1039. end
  1040. else
  1041. begin
  1042. {$ifdef SUPPORT_MMX}
  1043. if (cs_mmx in aktlocalswitches) and
  1044. is_mmx_able_array(p^.resulttype) then
  1045. begin
  1046. p^.location.loc:=LOC_MMXREGISTER;
  1047. p^.registersmmx:=1;
  1048. end
  1049. else
  1050. {$endif SUPPORT_MMX}
  1051. if ret_in_acc(p^.resulttype) then
  1052. begin
  1053. p^.location.loc:=LOC_REGISTER;
  1054. if is_64bitint(p^.resulttype) then
  1055. p^.registers32:=2
  1056. else
  1057. p^.registers32:=1;
  1058. { wide- and ansistrings are returned in EAX }
  1059. { but they are imm. moved to a memory location }
  1060. if is_widestring(p^.resulttype) or
  1061. is_ansistring(p^.resulttype) then
  1062. begin
  1063. p^.location.loc:=LOC_MEM;
  1064. { this is wrong we still need one register PM
  1065. p^.registers32:=0; }
  1066. { we use ansistrings so no fast exit here }
  1067. procinfo^.no_fast_exit:=true;
  1068. p^.registers32:=1;
  1069. end;
  1070. end
  1071. else if (p^.resulttype^.deftype=floatdef) then
  1072. begin
  1073. p^.location.loc:=LOC_FPU;
  1074. p^.registersfpu:=1;
  1075. end
  1076. else
  1077. p^.location.loc:=LOC_MEM;
  1078. end;
  1079. end;
  1080. { a fpu can be used in any procedure !! }
  1081. p^.registersfpu:=p^.procdefinition^.fpu_used;
  1082. { if this is a call to a method calc the registers }
  1083. if (p^.methodpointer<>nil) then
  1084. begin
  1085. case p^.methodpointer^.treetype of
  1086. { but only, if this is not a supporting node }
  1087. typen: ;
  1088. { we need one register for new return value PM }
  1089. hnewn : if p^.registers32=0 then
  1090. p^.registers32:=1;
  1091. else
  1092. begin
  1093. if (p^.procdefinition^.proctypeoption in [potype_constructor,potype_destructor]) and
  1094. assigned(p^.symtable) and (p^.symtable^.symtabletype=withsymtable) and
  1095. not pwithsymtable(p^.symtable)^.direct_with then
  1096. begin
  1097. CGmessage(cg_e_cannot_call_cons_dest_inside_with);
  1098. end; { Is accepted by Delphi !! }
  1099. { this is not a good reason to accept it in FPC if we produce
  1100. wrong code for it !!! (PM) }
  1101. { R.Assign is not a constructor !!! }
  1102. { but for R^.Assign, R must be valid !! }
  1103. if (p^.procdefinition^.proctypeoption=potype_constructor) or
  1104. ((p^.methodpointer^.treetype=loadn) and
  1105. (not(oo_has_virtual in pobjectdef(p^.methodpointer^.resulttype)^.objectoptions))) then
  1106. method_must_be_valid:=false
  1107. else
  1108. method_must_be_valid:=true;
  1109. firstpass(p^.methodpointer);
  1110. set_varstate(p^.methodpointer,method_must_be_valid);
  1111. { The object is already used ven if it is called once }
  1112. if (p^.methodpointer^.treetype=loadn) and
  1113. (p^.methodpointer^.symtableentry^.typ=varsym) then
  1114. pvarsym(p^.methodpointer^.symtableentry)^.varstate:=vs_used;
  1115. p^.registersfpu:=max(p^.methodpointer^.registersfpu,p^.registersfpu);
  1116. p^.registers32:=max(p^.methodpointer^.registers32,p^.registers32);
  1117. {$ifdef SUPPORT_MMX}
  1118. p^.registersmmx:=max(p^.methodpointer^.registersmmx,p^.registersmmx);
  1119. {$endif SUPPORT_MMX}
  1120. end;
  1121. end;
  1122. end;
  1123. if inlined then
  1124. p^.right:=inlinecode;
  1125. { determine the registers of the procedure variable }
  1126. { is this OK for inlined procs also ?? (PM) }
  1127. if assigned(p^.right) then
  1128. begin
  1129. p^.registersfpu:=max(p^.right^.registersfpu,p^.registersfpu);
  1130. p^.registers32:=max(p^.right^.registers32,p^.registers32);
  1131. {$ifdef SUPPORT_MMX}
  1132. p^.registersmmx:=max(p^.right^.registersmmx,p^.registersmmx);
  1133. {$endif SUPPORT_MMX}
  1134. end;
  1135. { determine the registers of the procedure }
  1136. if assigned(p^.left) then
  1137. begin
  1138. p^.registersfpu:=max(p^.left^.registersfpu,p^.registersfpu);
  1139. p^.registers32:=max(p^.left^.registers32,p^.registers32);
  1140. {$ifdef SUPPORT_MMX}
  1141. p^.registersmmx:=max(p^.left^.registersmmx,p^.registersmmx);
  1142. {$endif SUPPORT_MMX}
  1143. end;
  1144. errorexit:
  1145. { Reset some settings back }
  1146. if assigned(procs) then
  1147. dispose(procs);
  1148. if inlined then
  1149. {$ifdef INCLUDEOK}
  1150. include(p^.procdefinition^.proccalloptions,pocall_inline);
  1151. {$else}
  1152. p^.procdefinition^.proccalloptions:=p^.procdefinition^.proccalloptions+[pocall_inline];
  1153. {$endif}
  1154. aktcallprocsym:=oldcallprocsym;
  1155. end;
  1156. {*****************************************************************************
  1157. FirstProcInlineN
  1158. *****************************************************************************}
  1159. procedure firstprocinline(var p : ptree);
  1160. begin
  1161. { left contains the code in tree form }
  1162. { but it has already been firstpassed }
  1163. { so firstpass(p^.left); does not seem required }
  1164. { might be required later if we change the arg handling !! }
  1165. end;
  1166. end.
  1167. {
  1168. $Log$
  1169. Revision 1.83 2000-04-02 18:30:12 florian
  1170. * fixed another problem with readln(<floating point register variable>);
  1171. * the register allocator takes now care of necessary pushes/pops for
  1172. readln/writeln
  1173. Revision 1.82 2000/02/29 22:13:41 pierre
  1174. + use $GOTO ON
  1175. Revision 1.81 2000/02/24 18:41:39 peter
  1176. * removed warnings/notes
  1177. Revision 1.80 2000/02/17 14:53:43 florian
  1178. * some updates for the newcg
  1179. Revision 1.79 2000/02/09 13:23:07 peter
  1180. * log truncated
  1181. Revision 1.78 2000/01/07 09:35:12 pierre
  1182. * set_varstate must be called after typeconv insertions
  1183. Revision 1.77 2000/01/07 01:14:44 peter
  1184. * updated copyright to 2000
  1185. Revision 1.76 1999/12/19 15:13:56 peter
  1186. * constant array type conversion fixed
  1187. Revision 1.75 1999/12/09 23:18:04 pierre
  1188. * no_fast_exit if procedure contains implicit termination code
  1189. Revision 1.74 1999/11/30 10:40:57 peter
  1190. + ttype, tsymlist
  1191. Revision 1.73 1999/11/18 15:34:49 pierre
  1192. * Notes/Hints for local syms changed to
  1193. Set_varstate function
  1194. Revision 1.72 1999/11/17 17:05:07 pierre
  1195. * Notes/hints changes
  1196. Revision 1.71 1999/11/06 14:34:29 peter
  1197. * truncated log to 20 revs
  1198. Revision 1.70 1999/10/26 12:30:46 peter
  1199. * const parameter is now checked
  1200. * better and generic check if a node can be used for assigning
  1201. * export fixes
  1202. * procvar equal works now (it never had worked at least from 0.99.8)
  1203. * defcoll changed to linkedlist with pparaitem so it can easily be
  1204. walked both directions
  1205. Revision 1.69 1999/10/22 14:37:30 peter
  1206. * error when properties are passed to var parameters
  1207. Revision 1.68 1999/10/13 10:35:27 peter
  1208. * var must match exactly error msg extended with got and expected type
  1209. * array constructor type check now gives error on wrong types
  1210. Revision 1.67 1999/10/12 15:50:54 pierre
  1211. * error if calling interrupt procedure
  1212. Revision 1.66 1999/09/27 23:45:00 peter
  1213. * procinfo is now a pointer
  1214. * support for result setting in sub procedure
  1215. Revision 1.65 1999/09/16 23:05:56 florian
  1216. * m68k compiler is again compilable (only gas writer, no assembler reader)
  1217. Revision 1.64 1999/09/14 07:59:48 florian
  1218. * finally!? fixed
  1219. with <function with result in temp> do
  1220. My last and also Peter's fix before were wrong :(
  1221. Revision 1.63 1999/09/10 18:48:11 florian
  1222. * some bug fixes (e.g. must_be_valid and procinfo^.funcret_is_valid)
  1223. * most things for stored properties fixed
  1224. Revision 1.62 1999/08/23 23:42:52 pierre
  1225. * hnewn reg allocation corrected
  1226. Revision 1.61 1999/08/17 13:26:08 peter
  1227. * arrayconstructor -> arrayofconst fixed when arraycosntructor was not
  1228. variant.
  1229. Revision 1.60 1999/08/16 23:23:39 peter
  1230. * arrayconstructor -> openarray type conversions for element types
  1231. Revision 1.59 1999/08/13 21:33:16 peter
  1232. * support for array constructors extended and more error checking
  1233. }