tree.pas 48 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1993-98 by Florian Klaempfl
  4. This units exports some routines to manage the parse tree
  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. {$ifdef tp}
  19. {$E+,N+}
  20. {$endif}
  21. unit tree;
  22. interface
  23. uses
  24. globtype,cobjects,symtable,aasm
  25. {$I cpuunit.inc}
  26. ;
  27. type
  28. pconstset = ^tconstset;
  29. tconstset = array[0..31] of byte;
  30. ttreetyp = (
  31. addn, {Represents the + operator.}
  32. muln, {Represents the * operator.}
  33. subn, {Represents the - operator.}
  34. divn, {Represents the div operator.}
  35. symdifn, {Represents the >< operator.}
  36. modn, {Represents the mod operator.}
  37. assignn, {Represents an assignment.}
  38. loadn, {Represents the use of a variabele.}
  39. rangen, {Represents a range (i.e. 0..9).}
  40. ltn, {Represents the < operator.}
  41. lten, {Represents the <= operator.}
  42. gtn, {Represents the > operator.}
  43. gten, {Represents the >= operator.}
  44. equaln, {Represents the = operator.}
  45. unequaln, {Represents the <> operator.}
  46. inn, {Represents the in operator.}
  47. orn, {Represents the or operator.}
  48. xorn, {Represents the xor operator.}
  49. shrn, {Represents the shr operator.}
  50. shln, {Represents the shl operator.}
  51. slashn, {Represents the / operator.}
  52. andn, {Represents the and operator.}
  53. subscriptn, {access to a record/class/object field}
  54. derefn, {Dereferences a pointer.}
  55. addrn, {Represents the @ operator.}
  56. doubleaddrn, {Represents the @@ operator.}
  57. ordconstn, {Represents an ordinal value.}
  58. typeconvn, {Represents type-conversion/typecast.}
  59. calln, {Represents a call node.}
  60. callparan, {Represents a parameter.}
  61. realconstn, {Represents a real value.}
  62. fixconstn, {Represents a fixed value.}
  63. umminusn, {Represents a sign change (i.e. -2).}
  64. asmn, {Represents an assembler node }
  65. vecn, {Represents array indexing.}
  66. stringconstn, {Represents a string constant.}
  67. funcretn, {Represents the function result var.}
  68. selfn, {Represents the self parameter.}
  69. notn, {Represents the not operator.}
  70. inlinen, {Internal procedures (i.e. writeln).}
  71. niln, {Represents the nil pointer.}
  72. errorn, {This part of the tree could not be
  73. parsed because of a compiler error.}
  74. typen, {A type name. Used for i.e. typeof(obj).}
  75. hnewn, {The new operation, constructor call.}
  76. hdisposen, {The dispose operation with destructor call.}
  77. newn, {The new operation, constructor call.}
  78. simpledisposen, {The dispose operation.}
  79. setelementn, {A set element(s) (i.e. [a,b] and also [a..b]).}
  80. setconstn, {A set constant (i.e. [1,2]).}
  81. blockn, {A block of statements.}
  82. statementn, {One statement in a block of nodes.}
  83. loopn, { used in genloopnode, must be converted }
  84. ifn, {An if statement.}
  85. breakn, {A break statement.}
  86. continuen, {A continue statement.}
  87. repeatn, {A repeat until block.}
  88. whilen, {A while do statement.}
  89. forn, {A for loop.}
  90. exitn, {An exit statement.}
  91. withn, {A with statement.}
  92. casen, {A case statement.}
  93. labeln, {A label.}
  94. goton, {A goto statement.}
  95. simplenewn, {The new operation.}
  96. tryexceptn, {A try except block.}
  97. raisen, {A raise statement.}
  98. switchesn, {??? Currently unused...}
  99. tryfinallyn, {A try finally statement.}
  100. onn, { for an on statement in exception code }
  101. isn, {Represents the is operator.}
  102. asn, {Represents the as typecast.}
  103. caretn, {Represents the ^ operator.}
  104. failn, {Represents the fail statement.}
  105. starstarn, {Represents the ** operator exponentiation }
  106. procinlinen, {Procedures that can be inlined }
  107. arrayconstructn, {Construction node for [...] parsing}
  108. arrayconstructrangen, {Range element to allow sets in array construction tree}
  109. { added for optimizations where we cannot suppress }
  110. nothingn,
  111. loadvmtn
  112. );
  113. tconverttype = (
  114. tc_equal,
  115. tc_not_possible,
  116. tc_string_2_string,
  117. tc_char_2_string,
  118. tc_pchar_2_string,
  119. tc_cchar_2_pchar,
  120. tc_cstring_2_pchar,
  121. tc_ansistring_2_pchar,
  122. tc_string_2_chararray,
  123. tc_chararray_2_string,
  124. tc_array_2_pointer,
  125. tc_pointer_2_array,
  126. tc_int_2_int,
  127. tc_bool_2_int,
  128. tc_int_2_bool,
  129. tc_real_2_real,
  130. tc_int_2_real,
  131. tc_int_2_fix,
  132. tc_real_2_fix,
  133. tc_fix_2_real,
  134. tc_proc_2_procvar,
  135. tc_arrayconstructor_2_set,
  136. tc_load_smallset
  137. );
  138. { different assignment types }
  139. tassigntyp = (at_normal,at_plus,at_minus,at_star,at_slash);
  140. pcaserecord = ^tcaserecord;
  141. tcaserecord = record
  142. { range }
  143. _low,_high : longint;
  144. { only used by gentreejmp }
  145. _at : plabel;
  146. { label of instruction }
  147. statement : plabel;
  148. { is this the first of an case entry, needed to release statement
  149. label (PFV) }
  150. firstlabel : boolean;
  151. { left and right tree node }
  152. less,greater : pcaserecord;
  153. end;
  154. pnode = ^tnode;
  155. tnode = object
  156. treetype : ttreetyp;
  157. { the location of the result of this node }
  158. location : tlocation;
  159. { the number of registers needed to evalute the node }
  160. registersint,registersfpu : longint; { must be longint !!!! }
  161. {$ifdef SUPPORT_MMX}
  162. registersmmx : longint;
  163. {$endif SUPPORT_MMX}
  164. resulttype : pdef;
  165. fileinfo : tfileposinfo;
  166. localswitches : tlocalswitches;
  167. {$ifdef extdebug}
  168. firstpasscount : longint;
  169. {$endif extdebug}
  170. error : boolean;
  171. constructor init;
  172. destructor done;virtual;
  173. end;
  174. ploadnode = object(tnode)
  175. symtableentry : psym;
  176. symtable : psymtable;
  177. is_absolute,is_first,is_methodpointer : boolean;
  178. constructor init;
  179. destructor done;virtual;
  180. end;
  181. left,right : ptree;
  182. { is true, if the right and left operand are swaped }
  183. swaped : boolean;
  184. case treetype : ttreetyp of
  185. addn : (use_strconcat : boolean;string_typ : tstringtype);
  186. callparan : (is_colon_para : boolean;exact_match_found : boolean);
  187. assignn : (assigntyp : tassigntyp;concat_string : boolean);
  188. calln : (symtableprocentry : psym;
  189. symtableproc : psymtable;procdefinition : pprocdef;
  190. methodpointer : ptree;
  191. no_check,unit_specific,return_value_used : boolean);
  192. ordconstn : (value : longint);
  193. realconstn : (value_real : bestreal;lab_real : plabel;realtyp : tait);
  194. fixconstn : (value_fix: longint);
  195. funcretn : (funcretprocinfo : pointer;retdef : pdef);
  196. subscriptn : (vs : pvarsym);
  197. vecn : (memindex,memseg:boolean;callunique : boolean);
  198. stringconstn : (value_str : pchar;length : longint; lab_str : plabel;stringtype : tstringtype);
  199. typeconvn : (convtyp : tconverttype;explizit : boolean);
  200. typen : (typenodetype : pdef);
  201. inlinen : (inlinenumber : byte;inlineconst:boolean);
  202. procinlinen : (inlineprocdef : pprocdef;
  203. retoffset,para_offset,para_size : longint);
  204. setconstn : (value_set : pconstset;lab_set:plabel);
  205. loopn : (t1,t2 : ptree;backward : boolean);
  206. asmn : (p_asm : paasmoutput;object_preserved : boolean);
  207. casen : (nodes : pcaserecord;elseblock : ptree);
  208. labeln,goton : (labelnr : plabel);
  209. withn : (withsymtable : psymtable;tablecount : longint);
  210. onn : (exceptsymtable : psymtable;excepttype : pobjectdef);
  211. arrayconstructn : (cargs,cargswap: boolean);
  212. function gennode(t : ttreetyp;l,r : ptree) : ptree;
  213. function genlabelnode(t : ttreetyp;nr : plabel) : ptree;
  214. function genloadnode(v : pvarsym;st : psymtable) : ptree;
  215. function genloadcallnode(v: pprocsym;st: psymtable): ptree;
  216. function gensinglenode(t : ttreetyp;l : ptree) : ptree;
  217. function gensubscriptnode(varsym : pvarsym;l : ptree) : ptree;
  218. function genordinalconstnode(v : longint;def : pdef) : ptree;
  219. function genfixconstnode(v : longint;def : pdef) : ptree;
  220. function gentypeconvnode(node : ptree;t : pdef) : ptree;
  221. function gentypenode(t : pdef) : ptree;
  222. function gencallparanode(expr,next : ptree) : ptree;
  223. function genrealconstnode(v : bestreal) : ptree;
  224. function gencallnode(v : pprocsym;st : psymtable) : ptree;
  225. function genmethodcallnode(v : pprocsym;st : psymtable;mp : ptree) : ptree;
  226. { allow pchar or string for defining a pchar node }
  227. function genstringconstnode(const s : string) : ptree;
  228. { length is required for ansistrings }
  229. function genpcharconstnode(s : pchar;length : longint) : ptree;
  230. { helper routine for conststring node }
  231. function getpcharcopy(p : ptree) : pchar;
  232. function genzeronode(t : ttreetyp) : ptree;
  233. function geninlinenode(number : byte;is_const:boolean;l : ptree) : ptree;
  234. function genprocinlinenode(callp,code : ptree) : ptree;
  235. function gentypedconstloadnode(sym : ptypedconstsym;st : psymtable) : ptree;
  236. function genenumnode(v : penumsym) : ptree;
  237. function genselfnode(_class : pdef) : ptree;
  238. function gensetconstnode(s : pconstset;settype : psetdef) : ptree;
  239. function genloopnode(t : ttreetyp;l,r,n1: ptree;back : boolean) : ptree;
  240. function genasmnode(p_asm : paasmoutput) : ptree;
  241. function gencasenode(l,r : ptree;nodes : pcaserecord) : ptree;
  242. function genwithnode(symtable : psymtable;l,r : ptree;count : longint) : ptree;
  243. function getcopy(p : ptree) : ptree;
  244. function equal_trees(t1,t2 : ptree) : boolean;
  245. procedure swaptree(p:Ptree);
  246. procedure disposetree(p : ptree);
  247. procedure putnode(p : ptree);
  248. function getnode : ptree;
  249. procedure set_file_line(from,_to : ptree);
  250. procedure set_tree_filepos(p : ptree;const filepos : tfileposinfo);
  251. {$ifdef extdebug}
  252. procedure compare_trees(oldp,p : ptree);
  253. const
  254. maxfirstpasscount : longint = 0;
  255. {$endif extdebug}
  256. { sets the callunique flag, if the node is a vecn, }
  257. { takes care of type casts etc. }
  258. procedure set_unique(p : ptree);
  259. { gibt den ordinalen Werten der Node zurueck oder falls sie }
  260. { keinen ordinalen Wert hat, wird ein Fehler erzeugt }
  261. function get_ordinal_value(p : ptree) : longint;
  262. function is_constnode(p : ptree) : boolean;
  263. { true, if p is a pointer to a const int value }
  264. function is_constintnode(p : ptree) : boolean;
  265. function is_constboolnode(p : ptree) : boolean;
  266. function is_constrealnode(p : ptree) : boolean;
  267. function is_constcharnode(p : ptree) : boolean;
  268. function str_length(p : ptree) : longint;
  269. function is_emptyset(p : ptree):boolean;
  270. {$I innr.inc}
  271. implementation
  272. uses
  273. systems,
  274. globals,verbose,files,types;
  275. {****************************************************************************
  276. TNODE
  277. ****************************************************************************}
  278. constructor tnode.init;
  279. begin
  280. treetype:=nothingn;
  281. { this allows easier error tracing }
  282. location.loc:=LOC_INVALID;
  283. { save local info }
  284. fileinfo:=aktfilepos;
  285. localswitches:=aktlocalswitches;
  286. resulttype:=nil;
  287. registersint:=0;
  288. registersfpu:=0;
  289. {$ifdef SUPPORT_MMX}
  290. registersmmx:=0;
  291. {$endif SUPPORT_MMX}
  292. end;
  293. destructor tnode.done;
  294. begin
  295. { reference info }
  296. if (location.loc in [LOC_MEM,LOC_REFERENCE]) and
  297. assigned(location.reference.symbol) then
  298. stringdispose(location.reference.symbol);
  299. {$ifdef extdebug}
  300. if firstpasscount>maxfirstpasscount then
  301. maxfirstpasscount:=firstpasscount;
  302. {$endif extdebug}
  303. end;
  304. {****************************************************************************
  305. TLOADNODE
  306. ****************************************************************************}
  307. constructor tloadnode.init(v : pvarsym;st : psymtable) : ptree;
  308. var
  309. p : ptree;
  310. begin
  311. inherited init;
  312. p^.treetype:=loadn;
  313. resulttype:=v^.definition;
  314. symtableentry:=v;
  315. symtable:=st;
  316. p^.is_first := False;
  317. p^.is_methodpointer:=false;
  318. { method pointer load nodes can use the left subtree }
  319. { !!!!! p^.left:=nil; }
  320. end;
  321. destructor tloadnode.done;
  322. begin
  323. inherited done;
  324. { method pointer load nodes can use the left subtree }
  325. { !!!!! dispose(left,done); }
  326. end;
  327. {$ifdef dummy}
  328. { clean up the contents of a node }
  329. case p^.treetype of
  330. asmn : if assigned(p^.p_asm) then
  331. dispose(p^.p_asm,done);
  332. stringconstn : begin
  333. ansistringdispose(p^.value_str,p^.length);
  334. end;
  335. setconstn : begin
  336. if assigned(p^.value_set) then
  337. dispose(p^.value_set);
  338. end;
  339. end;
  340. procedure deletecaselabels(p : pcaserecord);
  341. begin
  342. if assigned(p^.greater) then
  343. deletecaselabels(p^.greater);
  344. if assigned(p^.less) then
  345. deletecaselabels(p^.less);
  346. freelabel(p^._at);
  347. if p^.firstlabel then
  348. freelabel(p^.statement);
  349. dispose(p);
  350. end;
  351. procedure swaptree(p:Ptree);
  352. var swapp:Ptree;
  353. begin
  354. swapp:=p^.right;
  355. p^.right:=p^.left;
  356. p^.left:=swapp;
  357. p^.swaped:=not(p^.swaped);
  358. end;
  359. procedure disposetree(p : ptree);
  360. var
  361. symt : psymtable;
  362. i : longint;
  363. begin
  364. if not(assigned(p)) then
  365. exit;
  366. case p^.disposetyp of
  367. dt_leftright :
  368. begin
  369. if assigned(p^.left) then
  370. disposetree(p^.left);
  371. if assigned(p^.right) then
  372. disposetree(p^.right);
  373. end;
  374. dt_case :
  375. begin
  376. if assigned(p^.left) then
  377. disposetree(p^.left);
  378. if assigned(p^.right) then
  379. disposetree(p^.right);
  380. if assigned(p^.nodes) then
  381. deletecaselabels(p^.nodes);
  382. if assigned(p^.elseblock) then
  383. disposetree(p^.elseblock);
  384. end;
  385. dt_nothing : ;
  386. dt_left :
  387. if assigned(p^.left) then
  388. disposetree(p^.left);
  389. dt_mbleft :
  390. if assigned(p^.left) then
  391. disposetree(p^.left);
  392. dt_mbleft_and_method :
  393. begin
  394. if assigned(p^.left) then disposetree(p^.left);
  395. disposetree(p^.methodpointer);
  396. end;
  397. dt_typeconv : disposetree(p^.left);
  398. dt_inlinen :
  399. if assigned(p^.left) then
  400. disposetree(p^.left);
  401. dt_loop :
  402. begin
  403. if assigned(p^.left) then
  404. disposetree(p^.left);
  405. if assigned(p^.right) then
  406. disposetree(p^.right);
  407. if assigned(p^.t1) then
  408. disposetree(p^.t1);
  409. if assigned(p^.t2) then
  410. disposetree(p^.t2);
  411. end;
  412. dt_onn:
  413. begin
  414. if assigned(p^.left) then
  415. disposetree(p^.left);
  416. if assigned(p^.right) then
  417. disposetree(p^.right);
  418. if assigned(p^.exceptsymtable) then
  419. dispose(p^.exceptsymtable,done);
  420. end;
  421. dt_with :
  422. begin
  423. if assigned(p^.left) then
  424. disposetree(p^.left);
  425. if assigned(p^.right) then
  426. disposetree(p^.right);
  427. symt:=p^.withsymtable;
  428. for i:=1 to p^.tablecount do
  429. begin
  430. if assigned(symt) then
  431. begin
  432. p^.withsymtable:=symt^.next;
  433. dispose(symt,done);
  434. end;
  435. symt:=p^.withsymtable;
  436. end;
  437. end;
  438. else internalerror(12);
  439. end;
  440. putnode(p);
  441. end;
  442. procedure set_file_line(from,_to : ptree);
  443. begin
  444. if assigned(from) then
  445. _to^.fileinfo:=from^.fileinfo;
  446. end;
  447. procedure set_tree_filepos(p : ptree;const filepos : tfileposinfo);
  448. begin
  449. p^.fileinfo:=filepos;
  450. end;
  451. function genwithnode(symtable : psymtable;l,r : ptree;count : longint) : ptree;
  452. var
  453. p : ptree;
  454. begin
  455. p:=getnode;
  456. p^.disposetyp:=dt_with;
  457. p^.treetype:=withn;
  458. p^.left:=l;
  459. p^.right:=r;
  460. p^.registers32:=0;
  461. { p^.registers16:=0;
  462. p^.registers8:=0; }
  463. p^.registersfpu:=0;
  464. {$ifdef SUPPORT_MMX}
  465. p^.registersmmx:=0;
  466. {$endif SUPPORT_MMX}
  467. p^.resulttype:=nil;
  468. p^.withsymtable:=symtable;
  469. p^.tablecount:=count;
  470. set_file_line(l,p);
  471. genwithnode:=p;
  472. end;
  473. function genfixconstnode(v : longint;def : pdef) : ptree;
  474. var
  475. p : ptree;
  476. begin
  477. p:=getnode;
  478. p^.disposetyp:=dt_nothing;
  479. p^.treetype:=fixconstn;
  480. p^.registers32:=0;
  481. { p^.registers16:=0;
  482. p^.registers8:=0; }
  483. p^.registersfpu:=0;
  484. {$ifdef SUPPORT_MMX}
  485. p^.registersmmx:=0;
  486. {$endif SUPPORT_MMX}
  487. p^.resulttype:=def;
  488. p^.value:=v;
  489. genfixconstnode:=p;
  490. end;
  491. function gencallparanode(expr,next : ptree) : ptree;
  492. var
  493. p : ptree;
  494. begin
  495. p:=getnode;
  496. p^.disposetyp:=dt_leftright;
  497. p^.treetype:=callparan;
  498. p^.left:=expr;
  499. p^.right:=next;
  500. p^.registers32:=0;
  501. { p^.registers16:=0;
  502. p^.registers8:=0; }
  503. {$ifdef SUPPORT_MMX}
  504. p^.registersmmx:=0;
  505. {$endif SUPPORT_MMX}
  506. p^.registersfpu:=0;
  507. p^.resulttype:=nil;
  508. p^.exact_match_found:=false;
  509. p^.is_colon_para:=false;
  510. set_file_line(expr,p);
  511. gencallparanode:=p;
  512. end;
  513. function gennode(t : ttreetyp;l,r : ptree) : ptree;
  514. var
  515. p : ptree;
  516. begin
  517. p:=getnode;
  518. p^.disposetyp:=dt_leftright;
  519. p^.treetype:=t;
  520. p^.left:=l;
  521. p^.right:=r;
  522. p^.registers32:=0;
  523. { p^.registers16:=0;
  524. p^.registers8:=0; }
  525. p^.registersfpu:=0;
  526. {$ifdef SUPPORT_MMX}
  527. p^.registersmmx:=0;
  528. {$endif SUPPORT_MMX}
  529. p^.resulttype:=nil;
  530. gennode:=p;
  531. end;
  532. function gencasenode(l,r : ptree;nodes : pcaserecord) : ptree;
  533. var
  534. p : ptree;
  535. begin
  536. p:=getnode;
  537. p^.disposetyp:=dt_case;
  538. p^.treetype:=casen;
  539. p^.left:=l;
  540. p^.right:=r;
  541. p^.nodes:=nodes;
  542. p^.registers32:=0;
  543. p^.registersfpu:=0;
  544. {$ifdef SUPPORT_MMX}
  545. p^.registersmmx:=0;
  546. {$endif SUPPORT_MMX}
  547. p^.resulttype:=nil;
  548. set_file_line(l,p);
  549. gencasenode:=p;
  550. end;
  551. function genloopnode(t : ttreetyp;l,r,n1 : ptree;back : boolean) : ptree;
  552. var
  553. p : ptree;
  554. begin
  555. p:=getnode;
  556. p^.disposetyp:=dt_loop;
  557. p^.treetype:=t;
  558. p^.left:=l;
  559. p^.right:=r;
  560. p^.t1:=n1;
  561. p^.t2:=nil;
  562. p^.registers32:=0;
  563. p^.backward:=back;
  564. { p^.registers16:=0;
  565. p^.registers8:=0; }
  566. p^.registersfpu:=0;
  567. {$ifdef SUPPORT_MMX}
  568. p^.registersmmx:=0;
  569. {$endif SUPPORT_MMX}
  570. p^.resulttype:=nil;
  571. set_file_line(l,p);
  572. genloopnode:=p;
  573. end;
  574. function genordinalconstnode(v : longint;def : pdef) : ptree;
  575. var
  576. p : ptree;
  577. begin
  578. p:=getnode;
  579. p^.disposetyp:=dt_nothing;
  580. p^.treetype:=ordconstn;
  581. p^.registers32:=0;
  582. { p^.registers16:=0;
  583. p^.registers8:=0; }
  584. p^.registersfpu:=0;
  585. {$ifdef SUPPORT_MMX}
  586. p^.registersmmx:=0;
  587. {$endif SUPPORT_MMX}
  588. p^.resulttype:=def;
  589. p^.value:=v;
  590. if p^.resulttype^.deftype=orddef then
  591. testrange(p^.resulttype,p^.value);
  592. genordinalconstnode:=p;
  593. end;
  594. function genenumnode(v : penumsym) : ptree;
  595. var
  596. p : ptree;
  597. begin
  598. p:=getnode;
  599. p^.disposetyp:=dt_nothing;
  600. p^.treetype:=ordconstn;
  601. p^.registers32:=0;
  602. { p^.registers16:=0;
  603. p^.registers8:=0; }
  604. p^.registersfpu:=0;
  605. {$ifdef SUPPORT_MMX}
  606. p^.registersmmx:=0;
  607. {$endif SUPPORT_MMX}
  608. p^.resulttype:=v^.definition;
  609. p^.value:=v^.value;
  610. testrange(p^.resulttype,p^.value);
  611. genenumnode:=p;
  612. end;
  613. function genrealconstnode(v : bestreal) : ptree;
  614. var
  615. p : ptree;
  616. begin
  617. p:=getnode;
  618. p^.disposetyp:=dt_nothing;
  619. p^.treetype:=realconstn;
  620. p^.registers32:=0;
  621. { p^.registers16:=0;
  622. p^.registers8:=0; }
  623. p^.registersfpu:=0;
  624. {$ifdef SUPPORT_MMX}
  625. p^.registersmmx:=0;
  626. {$endif SUPPORT_MMX}
  627. {$ifdef i386}
  628. p^.resulttype:=c64floatdef;
  629. p^.value_real:=v;
  630. { default value is double }
  631. p^.realtyp:=ait_real_64bit;
  632. {$endif}
  633. {$ifdef m68k}
  634. p^.resulttype:=new(pfloatdef,init(s32real));
  635. p^.value_real:=v;
  636. { default value is double }
  637. p^.realtyp:=ait_real_32bit;
  638. {$endif}
  639. p^.lab_real:=nil;
  640. genrealconstnode:=p;
  641. end;
  642. function genstringconstnode(const s : string) : ptree;
  643. var
  644. p : ptree;
  645. l : longint;
  646. begin
  647. p:=getnode;
  648. p^.disposetyp:=dt_nothing;
  649. p^.treetype:=stringconstn;
  650. p^.registers32:=0;
  651. { p^.registers16:=0;
  652. p^.registers8:=0; }
  653. p^.registersfpu:=0;
  654. {$ifdef SUPPORT_MMX}
  655. p^.registersmmx:=0;
  656. {$endif SUPPORT_MMX}
  657. l:=length(s);
  658. p^.length:=l;
  659. { stringdup write even past a #0 }
  660. getmem(p^.value_str,l+1);
  661. move(s[1],p^.value_str^,l);
  662. p^.value_str[l]:=#0;
  663. p^.lab_str:=nil;
  664. if cs_ansistrings in aktlocalswitches then
  665. begin
  666. p^.stringtype:=st_ansistring;
  667. p^.resulttype:=cansistringdef;
  668. end
  669. else
  670. begin
  671. p^.stringtype:=st_shortstring;
  672. p^.resulttype:=cshortstringdef;
  673. end;
  674. genstringconstnode:=p;
  675. end;
  676. function getpcharcopy(p : ptree) : pchar;
  677. var
  678. pc : pchar;
  679. begin
  680. pc:=nil;
  681. getmem(pc,p^.length+1);
  682. if pc=nil then
  683. Message(general_f_no_memory_left);
  684. move(p^.value_str^,pc^,p^.length+1);
  685. getpcharcopy:=pc;
  686. end;
  687. function genpcharconstnode(s : pchar;length : longint) : ptree;
  688. var
  689. p : ptree;
  690. begin
  691. p:=getnode;
  692. p^.disposetyp:=dt_nothing;
  693. p^.treetype:=stringconstn;
  694. p^.registers32:=0;
  695. { p^.registers16:=0;
  696. p^.registers8:=0; }
  697. p^.registersfpu:=0;
  698. {$ifdef SUPPORT_MMX}
  699. p^.registersmmx:=0;
  700. {$endif SUPPORT_MMX}
  701. p^.resulttype:=cshortstringdef;
  702. p^.length:=length;
  703. p^.value_str:=s;
  704. p^.lab_str:=nil;
  705. genpcharconstnode:=p;
  706. end;
  707. function gensinglenode(t : ttreetyp;l : ptree) : ptree;
  708. var
  709. p : ptree;
  710. begin
  711. p:=getnode;
  712. p^.disposetyp:=dt_left;
  713. p^.treetype:=t;
  714. p^.left:=l;
  715. p^.registers32:=0;
  716. { p^.registers16:=0;
  717. p^.registers8:=0; }
  718. p^.registersfpu:=0;
  719. {$ifdef SUPPORT_MMX}
  720. p^.registersmmx:=0;
  721. {$endif SUPPORT_MMX}
  722. p^.resulttype:=nil;
  723. gensinglenode:=p;
  724. end;
  725. function genasmnode(p_asm : paasmoutput) : ptree;
  726. var
  727. p : ptree;
  728. begin
  729. p:=getnode;
  730. p^.disposetyp:=dt_nothing;
  731. p^.treetype:=asmn;
  732. p^.registers32:=4;
  733. p^.p_asm:=p_asm;
  734. p^.object_preserved:=false;
  735. { p^.registers16:=0;
  736. p^.registers8:=0; }
  737. p^.registersfpu:=8;
  738. {$ifdef SUPPORT_MMX}
  739. p^.registersmmx:=8;
  740. {$endif SUPPORT_MMX}
  741. p^.resulttype:=nil;
  742. genasmnode:=p;
  743. end;
  744. function genloadcallnode(v: pprocsym;st: psymtable): ptree;
  745. var
  746. p : ptree;
  747. begin
  748. p:=getnode;
  749. p^.registers32:=0;
  750. { p^.registers16:=0;
  751. p^.registers8:=0; }
  752. p^.registersfpu:=0;
  753. {$ifdef SUPPORT_MMX}
  754. p^.registersmmx:=0;
  755. {$endif SUPPORT_MMX}
  756. p^.treetype:=loadn;
  757. p^.resulttype:=v^.definition;
  758. p^.symtableentry:=v;
  759. p^.symtable:=st;
  760. p^.is_first := False;
  761. p^.disposetyp:=dt_nothing;
  762. genloadcallnode:=p;
  763. end;
  764. function gentypedconstloadnode(sym : ptypedconstsym;st : psymtable) : ptree;
  765. var
  766. p : ptree;
  767. begin
  768. p:=getnode;
  769. p^.registers32:=0;
  770. { p^.registers16:=0;
  771. p^.registers8:=0; }
  772. p^.registersfpu:=0;
  773. {$ifdef SUPPORT_MMX}
  774. p^.registersmmx:=0;
  775. {$endif SUPPORT_MMX}
  776. p^.treetype:=loadn;
  777. p^.resulttype:=sym^.definition;
  778. p^.symtableentry:=pvarsym(sym);
  779. p^.symtable:=st;
  780. p^.disposetyp:=dt_nothing;
  781. gentypedconstloadnode:=p;
  782. end;
  783. function gentypeconvnode(node : ptree;t : pdef) : ptree;
  784. var
  785. p : ptree;
  786. begin
  787. p:=getnode;
  788. p^.disposetyp:=dt_typeconv;
  789. p^.treetype:=typeconvn;
  790. p^.left:=node;
  791. p^.registers32:=0;
  792. { p^.registers16:=0;
  793. p^.registers8:=0; }
  794. p^.convtyp:=tc_equal;
  795. p^.registersfpu:=0;
  796. {$ifdef SUPPORT_MMX}
  797. p^.registersmmx:=0;
  798. {$endif SUPPORT_MMX}
  799. p^.resulttype:=t;
  800. p^.explizit:=false;
  801. set_file_line(node,p);
  802. gentypeconvnode:=p;
  803. end;
  804. function gentypenode(t : pdef) : ptree;
  805. var
  806. p : ptree;
  807. begin
  808. p:=getnode;
  809. p^.disposetyp:=dt_nothing;
  810. p^.treetype:=typen;
  811. p^.registers32:=0;
  812. { p^.registers16:=0;
  813. p^.registers8:=0; }
  814. p^.registersfpu:=0;
  815. {$ifdef SUPPORT_MMX}
  816. p^.registersmmx:=0;
  817. {$endif SUPPORT_MMX}
  818. p^.resulttype:=generrordef;
  819. p^.typenodetype:=t;
  820. gentypenode:=p;
  821. end;
  822. function gencallnode(v : pprocsym;st : psymtable) : ptree;
  823. var
  824. p : ptree;
  825. begin
  826. p:=getnode;
  827. p^.registers32:=0;
  828. { p^.registers16:=0;
  829. p^.registers8:=0; }
  830. p^.registersfpu:=0;
  831. {$ifdef SUPPORT_MMX}
  832. p^.registersmmx:=0;
  833. {$endif SUPPORT_MMX}
  834. p^.treetype:=calln;
  835. p^.symtableprocentry:=v;
  836. p^.symtableproc:=st;
  837. p^.unit_specific:=false;
  838. p^.no_check:=false;
  839. p^.return_value_used:=true;
  840. p^.disposetyp := dt_leftright;
  841. p^.methodpointer:=nil;
  842. p^.left:=nil;
  843. p^.right:=nil;
  844. p^.procdefinition:=nil;
  845. gencallnode:=p;
  846. end;
  847. function genmethodcallnode(v : pprocsym;st : psymtable;mp : ptree) : ptree;
  848. var
  849. p : ptree;
  850. begin
  851. p:=getnode;
  852. p^.registers32:=0;
  853. { p^.registers16:=0;
  854. p^.registers8:=0; }
  855. p^.registersfpu:=0;
  856. {$ifdef SUPPORT_MMX}
  857. p^.registersmmx:=0;
  858. {$endif SUPPORT_MMX}
  859. p^.treetype:=calln;
  860. p^.return_value_used:=true;
  861. p^.symtableprocentry:=v;
  862. p^.symtableproc:=st;
  863. p^.disposetyp:=dt_mbleft_and_method;
  864. p^.left:=nil;
  865. p^.right:=nil;
  866. p^.methodpointer:=mp;
  867. p^.procdefinition:=nil;
  868. genmethodcallnode:=p;
  869. end;
  870. function gensubscriptnode(varsym : pvarsym;l : ptree) : ptree;
  871. var
  872. p : ptree;
  873. begin
  874. p:=getnode;
  875. p^.disposetyp:=dt_left;
  876. p^.treetype:=subscriptn;
  877. p^.left:=l;
  878. p^.registers32:=0;
  879. p^.vs:=varsym;
  880. { p^.registers16:=0;
  881. p^.registers8:=0; }
  882. p^.registersfpu:=0;
  883. {$ifdef SUPPORT_MMX}
  884. p^.registersmmx:=0;
  885. {$endif SUPPORT_MMX}
  886. p^.resulttype:=nil;
  887. gensubscriptnode:=p;
  888. end;
  889. function genzeronode(t : ttreetyp) : ptree;
  890. var
  891. p : ptree;
  892. begin
  893. p:=getnode;
  894. p^.disposetyp:=dt_nothing;
  895. p^.treetype:=t;
  896. p^.registers32:=0;
  897. { p^.registers16:=0;
  898. p^.registers8:=0; }
  899. p^.registersfpu:=0;
  900. {$ifdef SUPPORT_MMX}
  901. p^.registersmmx:=0;
  902. {$endif SUPPORT_MMX}
  903. p^.resulttype:=nil;
  904. genzeronode:=p;
  905. end;
  906. function genlabelnode(t : ttreetyp;nr : plabel) : ptree;
  907. var
  908. p : ptree;
  909. begin
  910. p:=getnode;
  911. p^.disposetyp:=dt_nothing;
  912. p^.treetype:=t;
  913. p^.registers32:=0;
  914. { p^.registers16:=0;
  915. p^.registers8:=0; }
  916. p^.registersfpu:=0;
  917. {$ifdef SUPPORT_MMX}
  918. p^.registersmmx:=0;
  919. {$endif SUPPORT_MMX}
  920. p^.resulttype:=nil;
  921. { for security }
  922. { nr^.is_used:=true;}
  923. p^.labelnr:=nr;
  924. genlabelnode:=p;
  925. end;
  926. function genselfnode(_class : pdef) : ptree;
  927. var
  928. p : ptree;
  929. begin
  930. p:=getnode;
  931. p^.disposetyp:=dt_nothing;
  932. p^.treetype:=selfn;
  933. p^.registers32:=0;
  934. { p^.registers16:=0;
  935. p^.registers8:=0; }
  936. p^.registersfpu:=0;
  937. {$ifdef SUPPORT_MMX}
  938. p^.registersmmx:=0;
  939. {$endif SUPPORT_MMX}
  940. p^.resulttype:=_class;
  941. genselfnode:=p;
  942. end;
  943. function geninlinenode(number : byte;is_const:boolean;l : ptree) : ptree;
  944. var
  945. p : ptree;
  946. begin
  947. p:=getnode;
  948. p^.disposetyp:=dt_inlinen;
  949. p^.treetype:=inlinen;
  950. p^.left:=l;
  951. p^.inlinenumber:=number;
  952. p^.inlineconst:=is_const;
  953. p^.registers32:=0;
  954. { p^.registers16:=0;
  955. p^.registers8:=0; }
  956. p^.registersfpu:=0;
  957. {$ifdef SUPPORT_MMX}
  958. p^.registersmmx:=0;
  959. {$endif SUPPORT_MMX}
  960. p^.resulttype:=nil;
  961. geninlinenode:=p;
  962. end;
  963. { uses the callnode to create the new procinline node }
  964. function genprocinlinenode(callp,code : ptree) : ptree;
  965. var
  966. p : ptree;
  967. begin
  968. p:=getnode;
  969. p^.disposetyp:=dt_left;
  970. p^.treetype:=procinlinen;
  971. p^.inlineprocdef:=callp^.procdefinition;
  972. p^.retoffset:=-4; { less dangerous as zero (PM) }
  973. p^.para_offset:=0;
  974. p^.para_size:=p^.inlineprocdef^.para_size;
  975. if ret_in_param(p^.inlineprocdef^.retdef) then
  976. p^.para_size:=p^.para_size+target_os.size_of_pointer;
  977. { copy args }
  978. p^.left:=getcopy(code);
  979. p^.registers32:=code^.registers32;
  980. p^.registersfpu:=code^.registersfpu;
  981. {$ifdef SUPPORT_MMX}
  982. p^.registersmmx:=0;
  983. {$endif SUPPORT_MMX}
  984. p^.resulttype:=p^.inlineprocdef^.retdef;
  985. genprocinlinenode:=p;
  986. end;
  987. function gensetconstnode(s : pconstset;settype : psetdef) : ptree;
  988. var
  989. p : ptree;
  990. begin
  991. p:=getnode;
  992. p^.disposetyp:=dt_nothing;
  993. p^.treetype:=setconstn;
  994. p^.registers32:=0;
  995. p^.registersfpu:=0;
  996. {$ifdef SUPPORT_MMX}
  997. p^.registersmmx:=0;
  998. {$endif SUPPORT_MMX}
  999. p^.resulttype:=settype;
  1000. p^.left:=nil;
  1001. new(p^.value_set);
  1002. p^.value_set^:=s^;
  1003. gensetconstnode:=p;
  1004. end;
  1005. {$ifdef extdebug}
  1006. procedure compare_trees(oldp,p : ptree);
  1007. var
  1008. error_found : boolean;
  1009. begin
  1010. if oldp^.resulttype<>p^.resulttype then
  1011. begin
  1012. error_found:=true;
  1013. if is_equal(oldp^.resulttype,p^.resulttype) then
  1014. comment(v_debug,'resulttype fields are different but equal')
  1015. else
  1016. comment(v_warning,'resulttype fields are really different');
  1017. end;
  1018. if oldp^.treetype<>p^.treetype then
  1019. begin
  1020. comment(v_warning,'treetype field different');
  1021. error_found:=true;
  1022. end
  1023. else
  1024. comment(v_debug,' treetype '+tostr(longint(oldp^.treetype)));
  1025. if oldp^.error<>p^.error then
  1026. begin
  1027. comment(v_warning,'error field different');
  1028. error_found:=true;
  1029. end;
  1030. if oldp^.disposetyp<>p^.disposetyp then
  1031. begin
  1032. comment(v_warning,'disposetyp field different');
  1033. error_found:=true;
  1034. end;
  1035. { is true, if the right and left operand are swaped }
  1036. if oldp^.swaped<>p^.swaped then
  1037. begin
  1038. comment(v_warning,'swaped field different');
  1039. error_found:=true;
  1040. end;
  1041. { the location of the result of this node }
  1042. if oldp^.location.loc<>p^.location.loc then
  1043. begin
  1044. comment(v_warning,'location.loc field different');
  1045. error_found:=true;
  1046. end;
  1047. { the number of registers needed to evalute the node }
  1048. if oldp^.registers32<>p^.registers32 then
  1049. begin
  1050. comment(v_warning,'registers32 field different');
  1051. comment(v_warning,' old '+tostr(oldp^.registers32)+'<> new '+tostr(p^.registers32));
  1052. error_found:=true;
  1053. end;
  1054. if oldp^.registersfpu<>p^.registersfpu then
  1055. begin
  1056. comment(v_warning,'registersfpu field different');
  1057. error_found:=true;
  1058. end;
  1059. {$ifdef SUPPORT_MMX}
  1060. if oldp^.registersmmx<>p^.registersmmx then
  1061. begin
  1062. comment(v_warning,'registersmmx field different');
  1063. error_found:=true;
  1064. end;
  1065. {$endif SUPPORT_MMX}
  1066. if oldp^.left<>p^.left then
  1067. begin
  1068. comment(v_warning,'left field different');
  1069. error_found:=true;
  1070. end;
  1071. if oldp^.right<>p^.right then
  1072. begin
  1073. comment(v_warning,'right field different');
  1074. error_found:=true;
  1075. end;
  1076. if oldp^.fileinfo.line<>p^.fileinfo.line then
  1077. begin
  1078. comment(v_warning,'fileinfo.line field different');
  1079. error_found:=true;
  1080. end;
  1081. if oldp^.fileinfo.column<>p^.fileinfo.column then
  1082. begin
  1083. comment(v_warning,'fileinfo.column field different');
  1084. error_found:=true;
  1085. end;
  1086. if oldp^.fileinfo.fileindex<>p^.fileinfo.fileindex then
  1087. begin
  1088. comment(v_warning,'fileinfo.fileindex field different');
  1089. error_found:=true;
  1090. end;
  1091. if oldp^.localswitches<>p^.localswitches then
  1092. begin
  1093. comment(v_warning,'localswitches field different');
  1094. error_found:=true;
  1095. end;
  1096. {$ifdef extdebug}
  1097. if oldp^.firstpasscount<>p^.firstpasscount then
  1098. begin
  1099. comment(v_warning,'firstpasscount field different');
  1100. error_found:=true;
  1101. end;
  1102. {$endif extdebug}
  1103. if oldp^.treetype=p^.treetype then
  1104. case oldp^.treetype of
  1105. addn :
  1106. begin
  1107. if oldp^.use_strconcat<>p^.use_strconcat then
  1108. begin
  1109. comment(v_warning,'use_strconcat field different');
  1110. error_found:=true;
  1111. end;
  1112. if oldp^.string_typ<>p^.string_typ then
  1113. begin
  1114. comment(v_warning,'stringtyp field different');
  1115. error_found:=true;
  1116. end;
  1117. end;
  1118. callparan :
  1119. {(is_colon_para : boolean;exact_match_found : boolean);}
  1120. begin
  1121. if oldp^.is_colon_para<>p^.is_colon_para then
  1122. begin
  1123. comment(v_warning,'use_strconcat field different');
  1124. error_found:=true;
  1125. end;
  1126. if oldp^.exact_match_found<>p^.exact_match_found then
  1127. begin
  1128. comment(v_warning,'exact_match_found field different');
  1129. error_found:=true;
  1130. end;
  1131. end;
  1132. assignn :
  1133. {(assigntyp : tassigntyp;concat_string : boolean);}
  1134. begin
  1135. if oldp^.assigntyp<>p^.assigntyp then
  1136. begin
  1137. comment(v_warning,'assigntyp field different');
  1138. error_found:=true;
  1139. end;
  1140. if oldp^.concat_string<>p^.concat_string then
  1141. begin
  1142. comment(v_warning,'concat_string field different');
  1143. error_found:=true;
  1144. end;
  1145. end;
  1146. loadn :
  1147. {(symtableentry : psym;symtable : psymtable;
  1148. is_absolute,is_first : boolean);}
  1149. begin
  1150. if oldp^.symtableentry<>p^.symtableentry then
  1151. begin
  1152. comment(v_warning,'symtableentry field different');
  1153. error_found:=true;
  1154. end;
  1155. if oldp^.symtable<>p^.symtable then
  1156. begin
  1157. comment(v_warning,'symtable field different');
  1158. error_found:=true;
  1159. end;
  1160. if oldp^.is_absolute<>p^.is_absolute then
  1161. begin
  1162. comment(v_warning,'is_absolute field different');
  1163. error_found:=true;
  1164. end;
  1165. if oldp^.is_first<>p^.is_first then
  1166. begin
  1167. comment(v_warning,'is_first field different');
  1168. error_found:=true;
  1169. end;
  1170. end;
  1171. calln :
  1172. {(symtableprocentry : pprocsym;
  1173. symtableproc : psymtable;procdefinition : pprocdef;
  1174. methodpointer : ptree;
  1175. no_check,unit_specific : boolean);}
  1176. begin
  1177. if oldp^.symtableprocentry<>p^.symtableprocentry then
  1178. begin
  1179. comment(v_warning,'symtableprocentry field different');
  1180. error_found:=true;
  1181. end;
  1182. if oldp^.symtableproc<>p^.symtableproc then
  1183. begin
  1184. comment(v_warning,'symtableproc field different');
  1185. error_found:=true;
  1186. end;
  1187. if oldp^.procdefinition<>p^.procdefinition then
  1188. begin
  1189. comment(v_warning,'procdefinition field different');
  1190. error_found:=true;
  1191. end;
  1192. if oldp^.methodpointer<>p^.methodpointer then
  1193. begin
  1194. comment(v_warning,'methodpointer field different');
  1195. error_found:=true;
  1196. end;
  1197. if oldp^.no_check<>p^.no_check then
  1198. begin
  1199. comment(v_warning,'no_check field different');
  1200. error_found:=true;
  1201. end;
  1202. if oldp^.unit_specific<>p^.unit_specific then
  1203. begin
  1204. error_found:=true;
  1205. comment(v_warning,'unit_specific field different');
  1206. end;
  1207. end;
  1208. ordconstn :
  1209. begin
  1210. if oldp^.value<>p^.value then
  1211. begin
  1212. comment(v_warning,'value field different');
  1213. error_found:=true;
  1214. end;
  1215. end;
  1216. realconstn :
  1217. begin
  1218. if oldp^.value_real<>p^.value_real then
  1219. begin
  1220. comment(v_warning,'valued field different');
  1221. error_found:=true;
  1222. end;
  1223. if oldp^.lab_real<>p^.lab_real then
  1224. begin
  1225. comment(v_warning,'labnumber field different');
  1226. error_found:=true;
  1227. end;
  1228. if oldp^.realtyp<>p^.realtyp then
  1229. begin
  1230. comment(v_warning,'realtyp field different');
  1231. error_found:=true;
  1232. end;
  1233. end;
  1234. end;
  1235. if not error_found then
  1236. comment(v_warning,'did not find difference in trees');
  1237. end;
  1238. {$endif extdebug}
  1239. function equal_trees(t1,t2 : ptree) : boolean;
  1240. begin
  1241. if t1^.treetype=t2^.treetype then
  1242. begin
  1243. case t1^.treetype of
  1244. addn,
  1245. muln,
  1246. equaln,
  1247. orn,
  1248. xorn,
  1249. andn,
  1250. unequaln:
  1251. begin
  1252. equal_trees:=(equal_trees(t1^.left,t2^.left) and
  1253. equal_trees(t1^.right,t2^.right)) or
  1254. (equal_trees(t1^.right,t2^.left) and
  1255. equal_trees(t1^.left,t2^.right));
  1256. end;
  1257. subn,
  1258. divn,
  1259. modn,
  1260. assignn,
  1261. ltn,
  1262. lten,
  1263. gtn,
  1264. gten,
  1265. inn,
  1266. shrn,
  1267. shln,
  1268. slashn,
  1269. rangen:
  1270. begin
  1271. equal_trees:=(equal_trees(t1^.left,t2^.left) and
  1272. equal_trees(t1^.right,t2^.right));
  1273. end;
  1274. umminusn,
  1275. notn,
  1276. derefn,
  1277. addrn:
  1278. begin
  1279. equal_trees:=(equal_trees(t1^.left,t2^.left));
  1280. end;
  1281. loadn:
  1282. begin
  1283. equal_trees:=(t1^.symtableentry=t2^.symtableentry)
  1284. { not necessary
  1285. and (t1^.symtable=t2^.symtable)};
  1286. end;
  1287. {
  1288. subscriptn,
  1289. ordconstn,typeconvn,calln,callparan,
  1290. realconstn,asmn,vecn,
  1291. stringconstn,funcretn,selfn,
  1292. inlinen,niln,errorn,
  1293. typen,hnewn,hdisposen,newn,
  1294. disposen,setelen,setconstrn
  1295. }
  1296. else equal_trees:=false;
  1297. end;
  1298. end
  1299. else
  1300. equal_trees:=false;
  1301. end;
  1302. procedure set_unique(p : ptree);
  1303. begin
  1304. if assigned(p) then
  1305. begin
  1306. case p^.treetype of
  1307. vecn:
  1308. p^.callunique:=true;
  1309. typeconvn:
  1310. set_unique(p^.left);
  1311. end;
  1312. end;
  1313. end;
  1314. function get_ordinal_value(p : ptree) : longint;
  1315. begin
  1316. if p^.treetype=ordconstn then
  1317. get_ordinal_value:=p^.value
  1318. else
  1319. Message(type_e_ordinal_expr_expected);
  1320. end;
  1321. function is_constnode(p : ptree) : boolean;
  1322. begin
  1323. is_constnode:=(p^.treetype in [ordconstn,realconstn,stringconstn,fixconstn,setconstn]);
  1324. end;
  1325. function is_constintnode(p : ptree) : boolean;
  1326. begin
  1327. is_constintnode:=(p^.treetype=ordconstn) and is_integer(p^.resulttype);
  1328. end;
  1329. function is_constcharnode(p : ptree) : boolean;
  1330. begin
  1331. is_constcharnode:=((p^.treetype=ordconstn) and
  1332. (p^.resulttype^.deftype=orddef) and
  1333. (porddef(p^.resulttype)^.typ=uchar));
  1334. end;
  1335. function is_constrealnode(p : ptree) : boolean;
  1336. begin
  1337. is_constrealnode:=(p^.treetype=realconstn);
  1338. end;
  1339. function is_constboolnode(p : ptree) : boolean;
  1340. begin
  1341. is_constboolnode:=((p^.treetype=ordconstn) and
  1342. (p^.resulttype^.deftype=orddef) and
  1343. (porddef(p^.resulttype)^.typ in [bool8bit,bool16bit,bool32bit]));
  1344. end;
  1345. function str_length(p : ptree) : longint;
  1346. begin
  1347. str_length:=p^.length;
  1348. end;
  1349. function is_emptyset(p : ptree):boolean;
  1350. {
  1351. return true if set s is empty
  1352. }
  1353. var
  1354. i : longint;
  1355. begin
  1356. i:=0;
  1357. if p^.treetype=setconstn then
  1358. begin
  1359. while (i<32) and (p^.value_set^[i]=0) do
  1360. inc(i);
  1361. end;
  1362. is_emptyset:=(i=32);
  1363. end;
  1364. function getcopy(p : ptree) : ptree;
  1365. var
  1366. hp : ptree;
  1367. begin
  1368. hp:=getnode;
  1369. hp^:=p^;
  1370. if assigned(p^.location.reference.symbol) then
  1371. hp^.location.reference.symbol:=stringdup(p^.location.reference.symbol^);
  1372. case p^.disposetyp of
  1373. dt_leftright :
  1374. begin
  1375. if assigned(p^.left) then
  1376. hp^.left:=getcopy(p^.left);
  1377. if assigned(p^.right) then
  1378. hp^.right:=getcopy(p^.right);
  1379. end;
  1380. dt_nothing : ;
  1381. dt_left :
  1382. if assigned(p^.left) then
  1383. hp^.left:=getcopy(p^.left);
  1384. dt_mbleft :
  1385. if assigned(p^.left) then
  1386. hp^.left:=getcopy(p^.left);
  1387. dt_mbleft_and_method :
  1388. begin
  1389. if assigned(p^.left) then
  1390. hp^.left:=getcopy(p^.left);
  1391. hp^.methodpointer:=getcopy(p^.methodpointer);
  1392. end;
  1393. dt_loop :
  1394. begin
  1395. if assigned(p^.left) then
  1396. hp^.left:=getcopy(p^.left);
  1397. if assigned(p^.right) then
  1398. hp^.right:=getcopy(p^.right);
  1399. if assigned(p^.t1) then
  1400. hp^.t1:=getcopy(p^.t1);
  1401. if assigned(p^.t2) then
  1402. hp^.t2:=getcopy(p^.t2);
  1403. end;
  1404. dt_typeconv : hp^.left:=getcopy(p^.left);
  1405. dt_inlinen :
  1406. if assigned(p^.left) then
  1407. hp^.left:=getcopy(p^.left);
  1408. else internalerror(11);
  1409. end;
  1410. { now check treetype }
  1411. case p^.treetype of
  1412. stringconstn : begin
  1413. hp^.value_str:=getpcharcopy(p);
  1414. hp^.length:=p^.length;
  1415. end;
  1416. setconstn : begin
  1417. new(hp^.value_set);
  1418. hp^.value_set:=p^.value_set;
  1419. end;
  1420. end;
  1421. getcopy:=hp;
  1422. end;
  1423. {$endif dummy}
  1424. end.
  1425. {
  1426. $Log$
  1427. Revision 1.1 1998-12-15 22:21:53 florian
  1428. * first rough conversion
  1429. }