pstatmnt.pas 48 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1998-2000 by Florian Klaempfl
  4. Does the parsing of the statements
  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 pstatmnt;
  19. {$i defines.inc}
  20. interface
  21. uses
  22. tokens,node;
  23. function statement_block(starttoken : ttoken) : tnode;
  24. { reads an assembler block }
  25. function assembler_block : tnode;
  26. implementation
  27. uses
  28. { common }
  29. cutils,
  30. { global }
  31. globtype,globals,verbose,
  32. systems,cpuinfo,
  33. { aasm }
  34. cpubase,aasm,
  35. { symtable }
  36. symconst,symbase,symtype,symdef,symsym,symtable,types,
  37. { pass 1 }
  38. pass_1,htypechk,
  39. nbas,nmat,nadd,ncal,nmem,nset,ncnv,ninl,ncon,nld,nflw,
  40. { parser }
  41. scanner,
  42. pbase,pexpr,
  43. { codegen }
  44. tgcpu,cgbase
  45. {$ifdef i386}
  46. {$ifndef NoRa386Int}
  47. ,ra386int
  48. {$endif NoRa386Int}
  49. {$ifndef NoRa386Att}
  50. ,ra386att
  51. {$endif NoRa386Att}
  52. {$ifndef NoRa386Dir}
  53. ,ra386dir
  54. {$endif NoRa386Dir}
  55. {$endif i386}
  56. {$ifdef m68k}
  57. {$ifndef NoRa68kMot}
  58. ,ra68kmot
  59. {$endif NoRa68kMot}
  60. {$endif m68k}
  61. { codegen }
  62. {$ifdef newcg}
  63. ,cgbase
  64. {$endif newcg}
  65. ;
  66. function statement : tnode;forward;
  67. function if_statement : tnode;
  68. var
  69. ex,if_a,else_a : tnode;
  70. begin
  71. consume(_IF);
  72. ex:=comp_expr(true);
  73. consume(_THEN);
  74. if token<>_ELSE then
  75. if_a:=statement
  76. else
  77. if_a:=nil;
  78. if try_to_consume(_ELSE) then
  79. else_a:=statement
  80. else
  81. else_a:=nil;
  82. if_statement:=genloopnode(ifn,ex,if_a,else_a,false);
  83. end;
  84. { creates a block (list) of statements, til the next END token }
  85. function statements_til_end : tnode;
  86. var
  87. first,last : tstatementnode;
  88. begin
  89. first:=nil;
  90. while token<>_END do
  91. begin
  92. if first=nil then
  93. begin
  94. last:=cstatementnode.create(nil,statement);
  95. first:=last;
  96. end
  97. else
  98. begin
  99. last.left:=cstatementnode.create(nil,statement);
  100. last:=tstatementnode(last.left);
  101. end;
  102. if not try_to_consume(_SEMICOLON) then
  103. break;
  104. consume_emptystats;
  105. end;
  106. consume(_END);
  107. statements_til_end:=cblocknode.create(first);
  108. end;
  109. function case_statement : tnode;
  110. var
  111. { contains the label number of currently parsed case block }
  112. aktcaselabel : tasmlabel;
  113. firstlabel : boolean;
  114. root : pcaserecord;
  115. { the typ of the case expression }
  116. casedef : tdef;
  117. procedure newcaselabel(l,h : TConstExprInt;first:boolean);
  118. var
  119. hcaselabel : pcaserecord;
  120. procedure insertlabel(var p : pcaserecord);
  121. begin
  122. if p=nil then p:=hcaselabel
  123. else
  124. if (p^._low>hcaselabel^._low) and
  125. (p^._low>hcaselabel^._high) then
  126. if (hcaselabel^.statement = p^.statement) and
  127. (p^._low = hcaselabel^._high + 1) then
  128. begin
  129. p^._low := hcaselabel^._low;
  130. dispose(hcaselabel);
  131. end
  132. else
  133. insertlabel(p^.less)
  134. else
  135. if (p^._high<hcaselabel^._low) and
  136. (p^._high<hcaselabel^._high) then
  137. if (hcaselabel^.statement = p^.statement) and
  138. (p^._high+1 = hcaselabel^._low) then
  139. begin
  140. p^._high := hcaselabel^._high;
  141. dispose(hcaselabel);
  142. end
  143. else
  144. insertlabel(p^.greater)
  145. else Message(parser_e_double_caselabel);
  146. end;
  147. begin
  148. new(hcaselabel);
  149. hcaselabel^.less:=nil;
  150. hcaselabel^.greater:=nil;
  151. hcaselabel^.statement:=aktcaselabel;
  152. hcaselabel^.firstlabel:=first;
  153. getlabel(hcaselabel^._at);
  154. hcaselabel^._low:=l;
  155. hcaselabel^._high:=h;
  156. insertlabel(root);
  157. end;
  158. var
  159. code,caseexpr,p,instruc,elseblock : tnode;
  160. hl1,hl2 : TConstExprInt;
  161. casedeferror : boolean;
  162. begin
  163. consume(_CASE);
  164. caseexpr:=comp_expr(true);
  165. { determines result type }
  166. cleartempgen;
  167. do_resulttypepass(caseexpr);
  168. casedeferror:=false;
  169. casedef:=caseexpr.resulttype.def;
  170. if (not assigned(casedef)) or
  171. not(is_ordinal(casedef)) then
  172. begin
  173. CGMessage(type_e_ordinal_expr_expected);
  174. { create a correct tree }
  175. caseexpr.free;
  176. caseexpr:=cordconstnode.create(0,u32bittype);
  177. { set error flag so no rangechecks are done }
  178. casedeferror:=true;
  179. end;
  180. consume(_OF);
  181. inc(statement_level);
  182. root:=nil;
  183. instruc:=nil;
  184. repeat
  185. getlabel(aktcaselabel);
  186. firstlabel:=true;
  187. { may be an instruction has more case labels }
  188. repeat
  189. p:=expr;
  190. hl1:=0;
  191. hl2:=0;
  192. if (p.nodetype=rangen) then
  193. begin
  194. { type checking for case statements }
  195. if is_subequal(casedef, trangenode(p).left.resulttype.def) and
  196. is_subequal(casedef, trangenode(p).right.resulttype.def) then
  197. begin
  198. hl1:=get_ordinal_value(trangenode(p).left);
  199. hl2:=get_ordinal_value(trangenode(p).right);
  200. if hl1>hl2 then
  201. CGMessage(parser_e_case_lower_less_than_upper_bound);
  202. if not casedeferror then
  203. begin
  204. testrange(casedef,hl1,false);
  205. testrange(casedef,hl2,false);
  206. end;
  207. end
  208. else
  209. CGMessage(parser_e_case_mismatch);
  210. newcaselabel(hl1,hl2,firstlabel);
  211. end
  212. else
  213. begin
  214. { type checking for case statements }
  215. if not is_subequal(casedef, p.resulttype.def) then
  216. CGMessage(parser_e_case_mismatch);
  217. hl1:=get_ordinal_value(p);
  218. if not casedeferror then
  219. testrange(casedef,hl1,false);
  220. newcaselabel(hl1,hl1,firstlabel);
  221. end;
  222. p.free;
  223. if token=_COMMA then
  224. consume(_COMMA)
  225. else
  226. break;
  227. firstlabel:=false;
  228. until false;
  229. consume(_COLON);
  230. { handles instruction block }
  231. p:=clabelnode.createcase(aktcaselabel,statement);
  232. { concats instruction }
  233. instruc:=cstatementnode.create(instruc,p);
  234. if not((token=_ELSE) or (token=_OTHERWISE) or (token=_END)) then
  235. consume(_SEMICOLON);
  236. until (token=_ELSE) or (token=_OTHERWISE) or (token=_END);
  237. if (token=_ELSE) or (token=_OTHERWISE) then
  238. begin
  239. if not try_to_consume(_ELSE) then
  240. consume(_OTHERWISE);
  241. elseblock:=statements_til_end;
  242. end
  243. else
  244. begin
  245. elseblock:=nil;
  246. consume(_END);
  247. end;
  248. dec(statement_level);
  249. code:=ccasenode.create(caseexpr,instruc,root);
  250. tcasenode(code).elseblock:=elseblock;
  251. case_statement:=code;
  252. end;
  253. function repeat_statement : tnode;
  254. var
  255. first,last,p_e : tnode;
  256. begin
  257. consume(_REPEAT);
  258. first:=nil;
  259. inc(statement_level);
  260. while token<>_UNTIL do
  261. begin
  262. if first=nil then
  263. begin
  264. last:=cstatementnode.create(nil,statement);
  265. first:=last;
  266. end
  267. else
  268. begin
  269. tstatementnode(last).left:=cstatementnode.create(nil,statement);
  270. last:=tstatementnode(last).left;
  271. end;
  272. if not try_to_consume(_SEMICOLON) then
  273. break;
  274. consume_emptystats;
  275. end;
  276. consume(_UNTIL);
  277. dec(statement_level);
  278. first:=cblocknode.create(first);
  279. p_e:=comp_expr(true);
  280. repeat_statement:=genloopnode(repeatn,p_e,first,nil,false);
  281. end;
  282. function while_statement : tnode;
  283. var
  284. p_e,p_a : tnode;
  285. begin
  286. consume(_WHILE);
  287. p_e:=comp_expr(true);
  288. consume(_DO);
  289. p_a:=statement;
  290. while_statement:=genloopnode(whilen,p_e,p_a,nil,false);
  291. end;
  292. function for_statement : tnode;
  293. var
  294. p_e,tovalue,p_a : tnode;
  295. backward : boolean;
  296. begin
  297. { parse loop header }
  298. consume(_FOR);
  299. p_e:=expr;
  300. if token=_DOWNTO then
  301. begin
  302. consume(_DOWNTO);
  303. backward:=true;
  304. end
  305. else
  306. begin
  307. consume(_TO);
  308. backward:=false;
  309. end;
  310. tovalue:=comp_expr(true);
  311. consume(_DO);
  312. { ... now the instruction }
  313. p_a:=statement;
  314. for_statement:=genloopnode(forn,p_e,tovalue,p_a,backward);
  315. end;
  316. function _with_statement : tnode;
  317. var
  318. right,p : tnode;
  319. i,levelcount : longint;
  320. withsymtable,symtab : tsymtable;
  321. obj : tobjectdef;
  322. hp : tnode;
  323. begin
  324. p:=comp_expr(true);
  325. do_resulttypepass(p);
  326. set_varstate(p,false);
  327. right:=nil;
  328. if (not codegenerror) and
  329. (p.resulttype.def.deftype in [objectdef,recorddef]) then
  330. begin
  331. case p.resulttype.def.deftype of
  332. objectdef : begin
  333. obj:=tobjectdef(p.resulttype.def);
  334. symtab:=twithsymtable.Create(obj,obj.symtable.symsearch);
  335. withsymtable:=symtab;
  336. if (p.nodetype=loadn) and
  337. (tloadnode(p).symtable=aktprocsym.definition.localst) then
  338. twithsymtable(symtab).direct_with:=true;
  339. twithsymtable(symtab).withrefnode:=p;
  340. levelcount:=1;
  341. obj:=obj.childof;
  342. while assigned(obj) do
  343. begin
  344. symtab.next:=twithsymtable.create(obj,obj.symtable.symsearch);
  345. symtab:=symtab.next;
  346. if (p.nodetype=loadn) and
  347. (tloadnode(p).symtable=aktprocsym.definition.localst) then
  348. twithsymtable(symtab).direct_with:=true;
  349. twithsymtable(symtab).withrefnode:=p;
  350. obj:=obj.childof;
  351. inc(levelcount);
  352. end;
  353. symtab.next:=symtablestack;
  354. symtablestack:=withsymtable;
  355. end;
  356. recorddef : begin
  357. symtab:=trecorddef(p.resulttype.def).symtable;
  358. levelcount:=1;
  359. withsymtable:=twithsymtable.create(trecorddef(p.resulttype.def),symtab.symsearch);
  360. if (p.nodetype=loadn) and
  361. (tloadnode(p).symtable=aktprocsym.definition.localst) then
  362. twithsymtable(withsymtable).direct_with:=true;
  363. twithsymtable(withsymtable).withrefnode:=p;
  364. withsymtable.next:=symtablestack;
  365. symtablestack:=withsymtable;
  366. end;
  367. end;
  368. if token=_COMMA then
  369. begin
  370. consume(_COMMA);
  371. right:=_with_statement{$ifdef FPCPROCVAR}(){$endif};
  372. end
  373. else
  374. begin
  375. consume(_DO);
  376. if token<>_SEMICOLON then
  377. right:=statement
  378. else
  379. right:=nil;
  380. end;
  381. for i:=1 to levelcount do
  382. symtablestack:=symtablestack.next;
  383. _with_statement:=cwithnode.create(twithsymtable(withsymtable),p,right,levelcount);
  384. end
  385. else
  386. begin
  387. Message(parser_e_false_with_expr);
  388. { try to recover from error }
  389. if token=_COMMA then
  390. begin
  391. consume(_COMMA);
  392. hp:=_with_statement{$ifdef FPCPROCVAR}(){$endif};
  393. if (hp=nil) then; { remove warning about unused }
  394. end
  395. else
  396. begin
  397. consume(_DO);
  398. { ignore all }
  399. if token<>_SEMICOLON then
  400. statement;
  401. end;
  402. _with_statement:=nil;
  403. end;
  404. end;
  405. function with_statement : tnode;
  406. begin
  407. consume(_WITH);
  408. with_statement:=_with_statement;
  409. end;
  410. function raise_statement : tnode;
  411. var
  412. p,pobj,paddr,pframe : tnode;
  413. begin
  414. pobj:=nil;
  415. paddr:=nil;
  416. pframe:=nil;
  417. consume(_RAISE);
  418. if not(token in [_SEMICOLON,_END]) then
  419. begin
  420. { object }
  421. pobj:=comp_expr(true);
  422. if try_to_consume(_AT) then
  423. begin
  424. paddr:=comp_expr(true);
  425. if try_to_consume(_COMMA) then
  426. pframe:=comp_expr(true);
  427. end;
  428. end
  429. else
  430. begin
  431. if (block_type<>bt_except) then
  432. Message(parser_e_no_reraise_possible);
  433. end;
  434. p:=craisenode.create(pobj,paddr,pframe);
  435. raise_statement:=p;
  436. end;
  437. function try_statement : tnode;
  438. var
  439. p_try_block,p_finally_block,first,last,
  440. p_default,p_specific,hp : tnode;
  441. ot : ttype;
  442. sym : tvarsym;
  443. old_block_type : tblock_type;
  444. exceptsymtable : tsymtable;
  445. objname,objrealname : stringid;
  446. srsym : tsym;
  447. srsymtable : tsymtable;
  448. begin
  449. procinfo^.flags:=procinfo^.flags or pi_uses_exceptions;
  450. p_default:=nil;
  451. p_specific:=nil;
  452. { read statements to try }
  453. consume(_TRY);
  454. first:=nil;
  455. inc(aktexceptblock);
  456. inc(statement_level);
  457. while (token<>_FINALLY) and (token<>_EXCEPT) do
  458. begin
  459. if first=nil then
  460. begin
  461. last:=cstatementnode.create(nil,statement);
  462. first:=last;
  463. end
  464. else
  465. begin
  466. tstatementnode(last).left:=cstatementnode.create(nil,statement);
  467. last:=tstatementnode(last).left;
  468. end;
  469. if not try_to_consume(_SEMICOLON) then
  470. break;
  471. consume_emptystats;
  472. end;
  473. p_try_block:=cblocknode.create(first);
  474. if try_to_consume(_FINALLY) then
  475. begin
  476. inc(aktexceptblock);
  477. p_finally_block:=statements_til_end;
  478. try_statement:=ctryfinallynode.create(p_try_block,p_finally_block);
  479. dec(statement_level);
  480. end
  481. else
  482. begin
  483. consume(_EXCEPT);
  484. old_block_type:=block_type;
  485. block_type:=bt_except;
  486. inc(aktexceptblock);
  487. ot:=generrortype;
  488. p_specific:=nil;
  489. if (idtoken=_ON) then
  490. { catch specific exceptions }
  491. begin
  492. repeat
  493. consume(_ID);
  494. if token=_ID then
  495. begin
  496. objname:=pattern;
  497. objrealname:=orgpattern;
  498. { can't use consume_sym here, because we need already
  499. to check for the colon }
  500. searchsym(objname,srsym,srsymtable);
  501. consume(_ID);
  502. { is a explicit name for the exception given ? }
  503. if try_to_consume(_COLON) then
  504. begin
  505. consume_sym(srsym,srsymtable);
  506. if (srsym.typ=typesym) and
  507. is_class(ttypesym(srsym).restype.def) then
  508. begin
  509. ot:=ttypesym(srsym).restype;
  510. sym:=tvarsym.create(objrealname,ot);
  511. end
  512. else
  513. begin
  514. sym:=tvarsym.create(objrealname,generrortype);
  515. if (srsym.typ=typesym) then
  516. Message1(type_e_class_type_expected,ttypesym(srsym).restype.def.typename)
  517. else
  518. Message1(type_e_class_type_expected,ot.def.typename);
  519. end;
  520. exceptsymtable:=tstt_exceptsymtable.create;
  521. exceptsymtable.insert(sym);
  522. { insert the exception symtable stack }
  523. exceptsymtable.next:=symtablestack;
  524. symtablestack:=exceptsymtable;
  525. end
  526. else
  527. begin
  528. { check if type is valid, must be done here because
  529. with "e: Exception" the e is not necessary }
  530. if srsym=nil then
  531. begin
  532. identifier_not_found(objrealname);
  533. srsym:=generrorsym;
  534. end;
  535. { support unit.identifier }
  536. if srsym.typ=unitsym then
  537. begin
  538. consume(_POINT);
  539. srsym:=searchsymonlyin(tunitsym(srsym).unitsymtable,pattern);
  540. if srsym=nil then
  541. begin
  542. identifier_not_found(orgpattern);
  543. srsym:=generrorsym;
  544. end;
  545. consume(_ID);
  546. end;
  547. { check if type is valid, must be done here because
  548. with "e: Exception" the e is not necessary }
  549. if (srsym.typ=typesym) and
  550. is_class(ttypesym(srsym).restype.def) then
  551. ot:=ttypesym(srsym).restype
  552. else
  553. begin
  554. ot:=generrortype;
  555. if (srsym.typ=typesym) then
  556. Message1(type_e_class_type_expected,ttypesym(srsym).restype.def.typename)
  557. else
  558. Message1(type_e_class_type_expected,ot.def.typename);
  559. end;
  560. exceptsymtable:=nil;
  561. end;
  562. end
  563. else
  564. consume(_ID);
  565. consume(_DO);
  566. hp:=connode.create(nil,statement);
  567. if ot.def.deftype=errordef then
  568. begin
  569. hp.free;
  570. hp:=cerrornode.create;
  571. end;
  572. if p_specific=nil then
  573. begin
  574. last:=hp;
  575. p_specific:=last;
  576. end
  577. else
  578. begin
  579. tonnode(last).left:=hp;
  580. last:=tonnode(last).left;
  581. end;
  582. { set the informations }
  583. { only if the creation of the onnode was succesful, it's possible }
  584. { that last and hp are errornodes (JM) }
  585. if last.nodetype = onn then
  586. begin
  587. tonnode(last).excepttype:=tobjectdef(ot.def);
  588. tonnode(last).exceptsymtable:=exceptsymtable;
  589. end;
  590. { remove exception symtable }
  591. if assigned(exceptsymtable) then
  592. begin
  593. dellexlevel;
  594. if last.nodetype <> onn then
  595. exceptsymtable.free;
  596. end;
  597. if not try_to_consume(_SEMICOLON) then
  598. break;
  599. consume_emptystats;
  600. until (token=_END) or (token=_ELSE);
  601. if token=_ELSE then
  602. { catch the other exceptions }
  603. begin
  604. consume(_ELSE);
  605. p_default:=statements_til_end;
  606. end
  607. else
  608. consume(_END);
  609. end
  610. else
  611. { catch all exceptions }
  612. begin
  613. p_default:=statements_til_end;
  614. end;
  615. dec(statement_level);
  616. block_type:=old_block_type;
  617. try_statement:=ctryexceptnode.create(p_try_block,p_specific,p_default);
  618. end;
  619. end;
  620. function exit_statement : tnode;
  621. var
  622. p : tnode;
  623. begin
  624. consume(_EXIT);
  625. if try_to_consume(_LKLAMMER) then
  626. begin
  627. p:=comp_expr(true);
  628. consume(_RKLAMMER);
  629. if (block_type=bt_except) then
  630. Message(parser_e_exit_with_argument_not__possible);
  631. if is_void(aktprocsym.definition.rettype.def) then
  632. Message(parser_e_void_function);
  633. end
  634. else
  635. p:=nil;
  636. p:=cexitnode.create(p);
  637. do_resulttypepass(p);
  638. exit_statement:=p;
  639. end;
  640. function _asm_statement : tnode;
  641. var
  642. asmstat : tasmnode;
  643. Marker : tai;
  644. begin
  645. Inside_asm_statement:=true;
  646. case aktasmmode of
  647. asmmode_none : ; { just be there to allow to a compile without
  648. any assembler readers }
  649. {$ifdef i386}
  650. {$ifndef NoRA386Att}
  651. asmmode_i386_att:
  652. asmstat:=tasmnode(ra386att.assemble);
  653. {$endif NoRA386Att}
  654. {$ifndef NoRA386Int}
  655. asmmode_i386_intel:
  656. asmstat:=tasmnode(ra386int.assemble);
  657. {$endif NoRA386Int}
  658. {$ifndef NoRA386Dir}
  659. asmmode_i386_direct:
  660. begin
  661. if not target_asm.allowdirect then
  662. Message(parser_f_direct_assembler_not_allowed);
  663. if (pocall_inline in aktprocsym.definition.proccalloptions) then
  664. Begin
  665. Message1(parser_w_not_supported_for_inline,'direct asm');
  666. Message(parser_w_inlining_disabled);
  667. exclude(aktprocsym.definition.proccalloptions,pocall_inline);
  668. End;
  669. asmstat:=tasmnode(ra386dir.assemble);
  670. end;
  671. {$endif NoRA386Dir}
  672. {$endif}
  673. {$ifdef m68k}
  674. {$ifndef NoRA68kMot}
  675. asmmode_m68k_mot:
  676. asmstat:=tasmnode(ra68kmot.assemble);
  677. {$endif NoRA68kMot}
  678. {$endif}
  679. else
  680. Message(parser_f_assembler_reader_not_supported);
  681. end;
  682. { Read first the _ASM statement }
  683. consume(_ASM);
  684. {$ifndef newcg}
  685. { END is read }
  686. if try_to_consume(_LECKKLAMMER) then
  687. begin
  688. { it's possible to specify the modified registers }
  689. include(asmstat.flags,nf_object_preserved);
  690. if token<>_RECKKLAMMER then
  691. repeat
  692. { uppercase, because it's a CSTRING }
  693. uppervar(pattern);
  694. {$ifdef i386}
  695. if pattern='EAX' then
  696. usedinproc:=usedinproc or ($80 shr byte(R_EAX))
  697. else if pattern='EBX' then
  698. usedinproc:=usedinproc or ($80 shr byte(R_EBX))
  699. else if pattern='ECX' then
  700. usedinproc:=usedinproc or ($80 shr byte(R_ECX))
  701. else if pattern='EDX' then
  702. usedinproc:=usedinproc or ($80 shr byte(R_EDX))
  703. else if pattern='ESI' then
  704. begin
  705. usedinproc:=usedinproc or ($80 shr byte(R_ESI));
  706. exclude(asmstat.flags,nf_object_preserved);
  707. end
  708. else if pattern='EDI' then
  709. usedinproc:=usedinproc or ($80 shr byte(R_EDI))
  710. {$endif i386}
  711. {$ifdef m68k}
  712. if pattern='D0' then
  713. usedinproc:=usedinproc +[R_D0]
  714. else if pattern='D1' then
  715. usedinproc:=usedinproc + [R_D1]
  716. else if pattern='D2' then
  717. usedinproc:=usedinproc + [R_D2]
  718. else if pattern='D3' then
  719. usedinproc:=usedinproc + [R_D3]
  720. else if pattern='D4' then
  721. usedinproc:=usedinproc + [R_D4]
  722. else if pattern='D5' then
  723. usedinproc:=usedinproc + [R_D5]
  724. else if pattern='D6' then
  725. usedinproc:=usedinproc + [R_D6]
  726. else if pattern='D7' then
  727. usedinproc:=usedinproc + [R_D7]
  728. else if pattern='A0' then
  729. usedinproc:=usedinproc + [R_A0]
  730. else if pattern='A1' then
  731. usedinproc:=usedinproc + [R_A1]
  732. else if pattern='A2' then
  733. usedinproc:=usedinproc + [R_A2]
  734. else if pattern='A3' then
  735. usedinproc:=usedinproc + [R_A3]
  736. else if pattern='A4' then
  737. usedinproc:=usedinproc + [R_A4]
  738. else if pattern='A5' then
  739. usedinproc:=usedinproc + [R_A5]
  740. {$endif m68k}
  741. {$ifdef powerpc}
  742. if pattern<>'' then
  743. internalerror(200108251)
  744. {$endif powerpc}
  745. else consume(_RECKKLAMMER);
  746. consume(_CSTRING);
  747. if not try_to_consume(_COMMA) then
  748. break;
  749. until false;
  750. consume(_RECKKLAMMER);
  751. end
  752. {$ifdef i386}
  753. else usedinproc:=$ff;
  754. {$else}
  755. {$ifdef powerpc}
  756. else usedinproc := 0;
  757. {$else powerpc}
  758. else usedinproc := ALL_REGISTERS;
  759. {$endif powerpc}
  760. {$endif i386}
  761. {$endif newcg}
  762. { mark the start and the end of the assembler block
  763. this is needed for the optimizer }
  764. If Assigned(AsmStat.p_asm) Then
  765. Begin
  766. Marker := Tai_Marker.Create(AsmBlockStart);
  767. AsmStat.p_asm.Insert(Marker);
  768. Marker := Tai_Marker.Create(AsmBlockEnd);
  769. AsmStat.p_asm.Concat(Marker);
  770. End;
  771. Inside_asm_statement:=false;
  772. _asm_statement:=asmstat;
  773. end;
  774. function new_dispose_statement : tnode;
  775. var
  776. p,p2 : tnode;
  777. again : boolean; { dummy for do_proc_call }
  778. destructorname : stringid;
  779. sym : tsym;
  780. classh : tobjectdef;
  781. destructorpos,
  782. storepos : tfileposinfo;
  783. is_new : boolean;
  784. begin
  785. if try_to_consume(_NEW) then
  786. is_new:=true
  787. else
  788. begin
  789. consume(_DISPOSE);
  790. is_new:=false;
  791. end;
  792. consume(_LKLAMMER);
  793. p:=comp_expr(true);
  794. { calc return type }
  795. cleartempgen;
  796. set_varstate(p,(not is_new));
  797. { constructor,destructor specified }
  798. if try_to_consume(_COMMA) then
  799. begin
  800. { extended syntax of new and dispose }
  801. { function styled new is handled in factor }
  802. { destructors have no parameters }
  803. destructorname:=pattern;
  804. destructorpos:=akttokenpos;
  805. consume(_ID);
  806. if (p.resulttype.def.deftype<>pointerdef) then
  807. begin
  808. Message1(type_e_pointer_type_expected,p.resulttype.def.typename);
  809. p.free;
  810. p:=factor(false);
  811. p.free;
  812. consume(_RKLAMMER);
  813. new_dispose_statement:=cerrornode.create;
  814. exit;
  815. end;
  816. { first parameter must be an object or class }
  817. if tpointerdef(p.resulttype.def).pointertype.def.deftype<>objectdef then
  818. begin
  819. Message(parser_e_pointer_to_class_expected);
  820. p.free;
  821. new_dispose_statement:=factor(false);
  822. consume_all_until(_RKLAMMER);
  823. consume(_RKLAMMER);
  824. exit;
  825. end;
  826. { check, if the first parameter is a pointer to a _class_ }
  827. classh:=tobjectdef(tpointerdef(p.resulttype.def).pointertype.def);
  828. if is_class(classh) then
  829. begin
  830. Message(parser_e_no_new_or_dispose_for_classes);
  831. new_dispose_statement:=factor(false);
  832. consume_all_until(_RKLAMMER);
  833. consume(_RKLAMMER);
  834. exit;
  835. end;
  836. { search cons-/destructor, also in parent classes }
  837. storepos:=akttokenpos;
  838. akttokenpos:=destructorpos;
  839. sym:=search_class_member(classh,destructorname);
  840. akttokenpos:=storepos;
  841. { the second parameter of new/dispose must be a call }
  842. { to a cons-/destructor }
  843. if (not assigned(sym)) or (sym.typ<>procsym) then
  844. begin
  845. if is_new then
  846. Message(parser_e_expr_have_to_be_constructor_call)
  847. else
  848. Message(parser_e_expr_have_to_be_destructor_call);
  849. p.free;
  850. new_dispose_statement:=cerrornode.create;
  851. end
  852. else
  853. begin
  854. if is_new then
  855. p2:=chnewnode.create
  856. else
  857. p2:=chdisposenode.create(p);
  858. do_resulttypepass(p2);
  859. p2.resulttype:=tpointerdef(p.resulttype.def).pointertype;
  860. if is_new then
  861. do_member_read(false,sym,p2,again)
  862. else
  863. begin
  864. if (m_tp in aktmodeswitches) then
  865. do_member_read(false,sym,p2,again)
  866. else
  867. begin
  868. p2:=ccallnode.create(nil,tprocsym(sym),sym.owner,p2);
  869. { support dispose(p,done()); }
  870. if try_to_consume(_LKLAMMER) then
  871. begin
  872. if not try_to_consume(_RKLAMMER) then
  873. begin
  874. Message(parser_e_no_paras_for_destructor);
  875. consume_all_until(_RKLAMMER);
  876. consume(_RKLAMMER);
  877. end;
  878. end;
  879. end;
  880. end;
  881. { we need the real called method }
  882. cleartempgen;
  883. do_resulttypepass(p2);
  884. if not codegenerror then
  885. begin
  886. if is_new then
  887. begin
  888. if (tcallnode(p2).procdefinition.proctypeoption<>potype_constructor) then
  889. Message(parser_e_expr_have_to_be_constructor_call);
  890. p2:=cnewnode.create(p2);
  891. do_resulttypepass(p2);
  892. p2.resulttype:=p.resulttype;
  893. p2:=cassignmentnode.create(p,p2);
  894. end
  895. else
  896. begin
  897. if (tcallnode(p2).procdefinition.proctypeoption<>potype_destructor) then
  898. Message(parser_e_expr_have_to_be_destructor_call);
  899. end;
  900. end;
  901. new_dispose_statement:=p2;
  902. end;
  903. end
  904. else
  905. begin
  906. if (p.resulttype.def.deftype<>pointerdef) then
  907. Begin
  908. Message1(type_e_pointer_type_expected,p.resulttype.def.typename);
  909. new_dispose_statement:=cerrornode.create;
  910. end
  911. else
  912. begin
  913. if (tpointerdef(p.resulttype.def).pointertype.def.deftype=objectdef) and
  914. (oo_has_vmt in tobjectdef(tpointerdef(p.resulttype.def).pointertype.def).objectoptions) then
  915. Message(parser_w_use_extended_syntax_for_objects);
  916. if (tpointerdef(p.resulttype.def).pointertype.def.deftype=orddef) and
  917. (torddef(tpointerdef(p.resulttype.def).pointertype.def).typ=uvoid) then
  918. begin
  919. if (m_tp in aktmodeswitches) or
  920. (m_delphi in aktmodeswitches) then
  921. Message(parser_w_no_new_dispose_on_void_pointers)
  922. else
  923. Message(parser_e_no_new_dispose_on_void_pointers);
  924. end;
  925. if is_new then
  926. new_dispose_statement:=csimplenewdisposenode.create(simplenewn,p)
  927. else
  928. new_dispose_statement:=csimplenewdisposenode.create(simpledisposen,p);
  929. end;
  930. end;
  931. consume(_RKLAMMER);
  932. end;
  933. function statement : tnode;
  934. var
  935. p : tnode;
  936. code : tnode;
  937. filepos : tfileposinfo;
  938. srsym : tsym;
  939. srsymtable : tsymtable;
  940. begin
  941. filepos:=akttokenpos;
  942. case token of
  943. _GOTO :
  944. begin
  945. if not(cs_support_goto in aktmoduleswitches)then
  946. Message(sym_e_goto_and_label_not_supported);
  947. consume(_GOTO);
  948. if (token<>_INTCONST) and (token<>_ID) then
  949. begin
  950. Message(sym_e_label_not_found);
  951. code:=cerrornode.create;
  952. end
  953. else
  954. begin
  955. consume_sym(srsym,srsymtable);
  956. if srsym.typ<>labelsym then
  957. begin
  958. Message(sym_e_id_is_no_label_id);
  959. code:=cerrornode.create;
  960. end
  961. else
  962. begin
  963. code:=cgotonode.create(tlabelsym(srsym));
  964. tgotonode(code).labsym:=tlabelsym(srsym);
  965. { set flag that this label is used }
  966. tlabelsym(srsym).used:=true;
  967. end;
  968. end;
  969. end;
  970. _BEGIN :
  971. code:=statement_block(_BEGIN);
  972. _IF :
  973. code:=if_statement;
  974. _CASE :
  975. code:=case_statement;
  976. _REPEAT :
  977. code:=repeat_statement;
  978. _WHILE :
  979. code:=while_statement;
  980. _FOR :
  981. code:=for_statement;
  982. _WITH :
  983. code:=with_statement;
  984. _TRY :
  985. code:=try_statement;
  986. _RAISE :
  987. code:=raise_statement;
  988. { semicolons,else until and end are ignored }
  989. _SEMICOLON,
  990. _ELSE,
  991. _UNTIL,
  992. _END:
  993. code:=cnothingnode.create;
  994. _FAIL :
  995. begin
  996. if (aktprocsym.definition.proctypeoption<>potype_constructor) then
  997. Message(parser_e_fail_only_in_constructor);
  998. consume(_FAIL);
  999. code:=cfailnode.create;
  1000. end;
  1001. _EXIT :
  1002. code:=exit_statement;
  1003. _ASM :
  1004. code:=_asm_statement;
  1005. _EOF :
  1006. Message(scan_f_end_of_file);
  1007. else
  1008. begin
  1009. if (idtoken=_NEW) or (idtoken=_DISPOSE) then
  1010. code:=new_dispose_statement
  1011. else
  1012. begin
  1013. p:=expr;
  1014. if p.nodetype=labeln then
  1015. begin
  1016. { the pointer to the following instruction }
  1017. { isn't a very clean way }
  1018. tlabelnode(p).left:=statement{$ifdef FPCPROCVAR}(){$endif};
  1019. { be sure to have left also resulttypepass }
  1020. resulttypepass(tlabelnode(p).left);
  1021. end;
  1022. { blockn support because a read/write is changed into a blocknode }
  1023. { with a separate statement for each read/write operation (JM) }
  1024. { the same is true for val() if the third parameter is not 32 bit }
  1025. if not(p.nodetype in [calln,assignn,breakn,inlinen,continuen,labeln,blockn]) then
  1026. Message(cg_e_illegal_expression);
  1027. { specify that we don't use the value returned by the call }
  1028. { Question : can this be also improtant
  1029. for inlinen ??
  1030. it is used for :
  1031. - dispose of temp stack space
  1032. - dispose on FPU stack }
  1033. if p.nodetype=calln then
  1034. exclude(p.flags,nf_return_value_used);
  1035. code:=p;
  1036. end;
  1037. end;
  1038. end;
  1039. if assigned(code) then
  1040. code.set_tree_filepos(filepos);
  1041. statement:=code;
  1042. end;
  1043. function statement_block(starttoken : ttoken) : tnode;
  1044. var
  1045. first,last : tnode;
  1046. filepos : tfileposinfo;
  1047. begin
  1048. first:=nil;
  1049. filepos:=akttokenpos;
  1050. consume(starttoken);
  1051. inc(statement_level);
  1052. while not(token in [_END,_FINALIZATION]) do
  1053. begin
  1054. if first=nil then
  1055. begin
  1056. last:=cstatementnode.create(nil,statement);
  1057. first:=last;
  1058. end
  1059. else
  1060. begin
  1061. tstatementnode(last).left:=cstatementnode.create(nil,statement);
  1062. last:=tstatementnode(last).left;
  1063. end;
  1064. if (token in [_END,_FINALIZATION]) then
  1065. break
  1066. else
  1067. begin
  1068. { if no semicolon, then error and go on }
  1069. if token<>_SEMICOLON then
  1070. begin
  1071. consume(_SEMICOLON);
  1072. consume_all_until(_SEMICOLON);
  1073. end;
  1074. consume(_SEMICOLON);
  1075. end;
  1076. consume_emptystats;
  1077. end;
  1078. { don't consume the finalization token, it is consumed when
  1079. reading the finalization block, but allow it only after
  1080. an initalization ! }
  1081. if (starttoken<>_INITIALIZATION) or (token<>_FINALIZATION) then
  1082. consume(_END);
  1083. dec(statement_level);
  1084. last:=cblocknode.create(first);
  1085. last.set_tree_filepos(filepos);
  1086. statement_block:=last;
  1087. end;
  1088. function assembler_block : tnode;
  1089. begin
  1090. { temporary space is set, while the BEGIN of the procedure }
  1091. if symtablestack.symtabletype=localsymtable then
  1092. procinfo^.firsttemp_offset := -symtablestack.datasize
  1093. else
  1094. procinfo^.firsttemp_offset := 0;
  1095. { assembler code does not allocate }
  1096. { space for the return value }
  1097. if not is_void(aktprocsym.definition.rettype.def) then
  1098. begin
  1099. aktprocsym.definition.funcretsym:=tfuncretsym.create(aktprocsym.name,aktprocsym.definition.rettype);
  1100. if ret_in_acc(aktprocsym.definition.rettype.def) then
  1101. begin
  1102. { in assembler code the result should be directly in %eax
  1103. procinfo^.retoffset:=procinfo^.firsttemp-procinfo^.retdef.size;
  1104. procinfo^.firsttemp:=procinfo^.retoffset; }
  1105. {$ifndef newcg}
  1106. {$ifdef i386}
  1107. usedinproc:=usedinproc or ($80 shr byte(R_EAX))
  1108. {$else}
  1109. {$ifdef POWERPC}
  1110. usedinproc:=0;
  1111. {$else POWERPC}
  1112. usedinproc:=usedinproc + [accumulator];
  1113. {$endif POWERPC}
  1114. {$endif i386}
  1115. {$endif newcg}
  1116. end
  1117. {
  1118. else if not is_fpu(procinfo^.retdef) then
  1119. should we allow assembler functions of big elements ?
  1120. YES (FK)!!
  1121. Message(parser_e_asm_incomp_with_function_return);
  1122. }
  1123. end;
  1124. { set the framepointer to esp for assembler functions }
  1125. { but only if the are no local variables }
  1126. { added no parameter also (PM) }
  1127. { disable for methods, because self pointer is expected }
  1128. { at -8(%ebp) (JM) }
  1129. { why if se use %esp then self is still at the correct address PM }
  1130. if {not(assigned(procinfo^._class)) and}
  1131. (po_assembler in aktprocsym.definition.procoptions) and
  1132. (aktprocsym.definition.localst.datasize=0) and
  1133. (aktprocsym.definition.parast.datasize=0) and
  1134. not(ret_in_param(aktprocsym.definition.rettype.def)) then
  1135. begin
  1136. procinfo^.framepointer:=stack_pointer;
  1137. { set the right value for parameters }
  1138. dec(aktprocsym.definition.parast.address_fixup,target_info.size_of_pointer);
  1139. dec(procinfo^.para_offset,target_info.size_of_pointer);
  1140. end;
  1141. { only insert now in the symtable, otherwise the }
  1142. { "aktprocsym.definition.localst.datasize=0" check above will }
  1143. { always fail (JM) }
  1144. if not is_void(aktprocsym.definition.rettype.def) then
  1145. begin
  1146. { insert in local symtable }
  1147. symtablestack.insert(aktprocsym.definition.funcretsym);
  1148. end;
  1149. { force the asm statement }
  1150. if token<>_ASM then
  1151. consume(_ASM);
  1152. procinfo^.Flags := procinfo^.Flags Or pi_is_assembler;
  1153. assembler_block:=_asm_statement;
  1154. { becuase the END is already read we need to get the
  1155. last_endtoken_filepos here (PFV) }
  1156. last_endtoken_filepos:=akttokenpos;
  1157. end;
  1158. end.
  1159. {
  1160. $Log$
  1161. Revision 1.37 2001-09-22 11:11:43 peter
  1162. * "fpc -P?" command to query for used ppcXXX compiler
  1163. Revision 1.36 2001/09/06 10:21:50 jonas
  1164. * fixed superfluous generation of stackframes for assembler procedures
  1165. with no local vars or para's (this broke the backtrace printing in case
  1166. of an rte)
  1167. Revision 1.35 2001/09/03 13:19:12 jonas
  1168. * set funcretsym for assembler procedures too (otherwise using __RESULT
  1169. in assembler procedures causes a crash)
  1170. Revision 1.34 2001/08/26 13:36:46 florian
  1171. * some cg reorganisation
  1172. * some PPC updates
  1173. Revision 1.33 2001/08/23 14:28:36 jonas
  1174. + tempcreate/ref/delete nodes (allows the use of temps in the
  1175. resulttype and first pass)
  1176. * made handling of read(ln)/write(ln) processor independent
  1177. * moved processor independent handling for str and reset/rewrite-typed
  1178. from firstpass to resulttype pass
  1179. * changed names of helpers in text.inc to be generic for use as
  1180. compilerprocs + added "iocheck" directive for most of them
  1181. * reading of ordinals is done by procedures instead of functions
  1182. because otherwise FPC_IOCHECK overwrote the result before it could
  1183. be stored elsewhere (range checking still works)
  1184. * compilerprocs can now be used in the system unit before they are
  1185. implemented
  1186. * added note to errore.msg that booleans can't be read using read/readln
  1187. Revision 1.32 2001/08/06 21:40:47 peter
  1188. * funcret moved from tprocinfo to tprocdef
  1189. Revision 1.31 2001/06/03 21:57:37 peter
  1190. + hint directive parsing support
  1191. Revision 1.30 2001/05/17 13:25:24 jonas
  1192. * fixed web bugs 1480 and 1481
  1193. Revision 1.29 2001/05/04 15:52:04 florian
  1194. * some Delphi incompatibilities fixed:
  1195. - out, dispose and new can be used as idenfiers now
  1196. - const p = apointerype(nil); is supported now
  1197. + support for const p = apointertype(pointer(1234)); added
  1198. Revision 1.28 2001/04/21 12:03:11 peter
  1199. * m68k updates merged from fixes branch
  1200. Revision 1.27 2001/04/18 22:01:57 peter
  1201. * registration of targets and assemblers
  1202. Revision 1.26 2001/04/15 09:48:30 peter
  1203. * fixed crash in labelnode
  1204. * easier detection of goto and label in try blocks
  1205. Revision 1.25 2001/04/14 14:07:11 peter
  1206. * moved more code from pass_1 to det_resulttype
  1207. Revision 1.24 2001/04/13 01:22:13 peter
  1208. * symtable change to classes
  1209. * range check generation and errors fixed, make cycle DEBUG=1 works
  1210. * memory leaks fixed
  1211. Revision 1.23 2001/04/04 22:43:52 peter
  1212. * remove unnecessary calls to firstpass
  1213. Revision 1.22 2001/04/02 21:20:34 peter
  1214. * resulttype rewrite
  1215. Revision 1.21 2001/03/22 22:35:42 florian
  1216. + support for type a = (a=1); in Delphi mode added
  1217. + procedure p(); in Delphi mode supported
  1218. + on isn't keyword anymore, it can be used as
  1219. id etc. now
  1220. Revision 1.20 2001/03/11 22:58:50 peter
  1221. * getsym redesign, removed the globals srsym,srsymtable
  1222. Revision 1.19 2000/12/25 00:07:27 peter
  1223. + new tlinkedlist class (merge of old tstringqueue,tcontainer and
  1224. tlinkedlist objects)
  1225. Revision 1.18 2000/12/23 19:59:35 peter
  1226. * object to class for ow/og objects
  1227. * split objectdata from objectoutput
  1228. Revision 1.17 2000/12/16 22:45:55 jonas
  1229. * fixed case statements with int64 values
  1230. Revision 1.16 2000/11/29 00:30:37 florian
  1231. * unused units removed from uses clause
  1232. * some changes for widestrings
  1233. Revision 1.15 2000/11/27 15:47:19 jonas
  1234. * fix for web bug 1251 (example 1)
  1235. Revision 1.14 2000/11/22 22:43:34 peter
  1236. * fixed crash with exception without sysutils (merged)
  1237. Revision 1.13 2000/11/04 14:25:21 florian
  1238. + merged Attila's changes for interfaces, not tested yet
  1239. Revision 1.12 2000/10/31 22:02:50 peter
  1240. * symtable splitted, no real code changes
  1241. Revision 1.11 2000/10/14 21:52:56 peter
  1242. * fixed memory leaks
  1243. Revision 1.10 2000/10/14 10:14:52 peter
  1244. * moehrendorf oct 2000 rewrite
  1245. Revision 1.9 2000/10/01 19:48:25 peter
  1246. * lot of compile updates for cg11
  1247. Revision 1.8 2000/09/24 21:19:50 peter
  1248. * delphi compile fixes
  1249. Revision 1.7 2000/09/24 15:06:24 peter
  1250. * use defines.inc
  1251. Revision 1.6 2000/08/27 16:11:52 peter
  1252. * moved some util functions from globals,cobjects to cutils
  1253. * splitted files into finput,fmodule
  1254. Revision 1.5 2000/08/12 15:41:15 peter
  1255. * fixed bug 1096 (merged)
  1256. Revision 1.4 2000/08/12 06:46:06 florian
  1257. + case statement for int64/qword implemented
  1258. Revision 1.3 2000/07/13 12:08:27 michael
  1259. + patched to 1.1.0 with former 1.09patch from peter
  1260. Revision 1.2 2000/07/13 11:32:45 michael
  1261. + removed logs
  1262. }