nutils.pas 57 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl
  3. Type checking and register allocation for inline nodes
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. unit nutils;
  18. {$i fpcdefs.inc}
  19. {$modeswitch nestedprocvars}
  20. interface
  21. uses
  22. globtype,constexp,
  23. symtype,symsym,symbase,symtable,
  24. node,compinnr,
  25. nbas;
  26. const
  27. NODE_COMPLEXITY_INF = 255;
  28. type
  29. { resultdef of functions that process on all nodes in a (sub)tree }
  30. foreachnoderesult = (
  31. { false, continue recursion }
  32. fen_false,
  33. { false, stop recursion }
  34. fen_norecurse_false,
  35. { true, continue recursion }
  36. fen_true,
  37. { true, stop recursion }
  38. fen_norecurse_true
  39. );
  40. tforeachprocmethod = ({ children are processed before the parent node }
  41. pm_preprocess,
  42. { children are processed after the parent node }
  43. pm_postprocess,
  44. { children are processed after the parent node and
  45. then the parent node is processed again }
  46. pm_postandagain);
  47. tmhs_flag = (
  48. { exceptions (overflow, sigfault etc.) are considered as side effect }
  49. mhs_exceptions
  50. );
  51. tmhs_flags = set of tmhs_flag;
  52. pmhs_flags = ^tmhs_flags;
  53. foreachnodefunction = function(var n: tnode; arg: pointer): foreachnoderesult of object;
  54. staticforeachnodefunction = function(var n: tnode; arg: pointer): foreachnoderesult;
  55. function foreachnode(var n: tnode; f: foreachnodefunction; arg: pointer): boolean;
  56. function foreachnode(procmethod : tforeachprocmethod; var n: tnode; f: foreachnodefunction; arg: pointer): boolean;
  57. function foreachnodestatic(var n: tnode; f: staticforeachnodefunction; arg: pointer): boolean;
  58. function foreachnodestatic(procmethod : tforeachprocmethod; var n: tnode; f: staticforeachnodefunction; arg: pointer): boolean;
  59. { checks if the given node tree contains only nodes of the given type,
  60. if this isn't the case, an ie is thrown
  61. }
  62. procedure checktreenodetypes(n : tnode;typeset : tnodetypeset);
  63. procedure load_procvar_from_calln(var p1:tnode);
  64. function get_local_or_para_sym(const aname: string): tsym;
  65. function maybe_call_procvar(var p1:tnode;tponly:boolean):boolean;
  66. function load_high_value_node(vs:tparavarsym):tnode;
  67. function load_self_node:tnode;
  68. function load_result_node:tnode;
  69. function load_self_pointer_node:tnode;
  70. function load_vmt_pointer_node:tnode;
  71. function is_self_node(p:tnode):boolean;
  72. { create a tree that loads the VMT based on a self-node of an object/class/
  73. interface }
  74. function load_vmt_for_self_node(self_node: tnode): tnode;
  75. function node_complexity(p: tnode): cardinal;
  76. function node_resources_fpu(p: tnode): cardinal;
  77. procedure node_tree_set_filepos(var n:tnode;const filepos:tfileposinfo);
  78. { tries to simplify the given node after inlining }
  79. procedure doinlinesimplify(var n : tnode);
  80. { creates an ordinal constant, optionally based on the result from a
  81. simplify operation: normally the type is the smallest integer type
  82. that can hold the value, but when inlining the "def" will be used instead,
  83. which was determined during an earlier typecheck pass (because the value
  84. may e.g. be a parameter to a call, which needs to be of the declared
  85. parameter type) }
  86. function create_simplified_ord_const(const value: tconstexprint; def: tdef; forinline, rangecheck: boolean): tnode;
  87. { returns true if n is only a tree of administrative nodes
  88. containing no code }
  89. function has_no_code(n : tnode) : boolean;
  90. procedure propaccesslist_to_node(var p1:tnode;st:TSymtable;pl:tpropaccesslist);
  91. function node_to_propaccesslist(p1:tnode):tpropaccesslist;
  92. { checks whether sym is a static field and if so, translates the access
  93. to the appropriate node tree }
  94. function handle_staticfield_access(sym: tsym; var p1: tnode): boolean;
  95. { returns true if n is an array element access of a bitpacked array with
  96. elements of the which the vitsize mod 8 <> 0, or if is a field access
  97. with bitsize mod 8 <> 0 or bitoffset mod 8 <> 0 of an element in a
  98. bitpacked structure }
  99. function is_bitpacked_access(n: tnode): boolean;
  100. { creates a load of field 'fieldname' in the record/class/...
  101. represented by n }
  102. function genloadfield(n: tnode; const fieldname: string): tnode;
  103. { returns true, if the tree given might have side effects }
  104. function might_have_sideeffects(n : tnode;const flags : tmhs_flags = []) : boolean;
  105. { returns true, if n contains nodes which might be conditionally executed }
  106. function has_conditional_nodes(n : tnode) : boolean;
  107. { count the number of nodes in the node tree,
  108. rough estimation how large the tree "node" is }
  109. function node_count(node : tnode) : dword;
  110. function node_count_weighted(node : tnode) : dword;
  111. { returns true, if the value described by node is constant/immutable, this approximation is safe
  112. if no dirty tricks like buffer overflows or pointer magic are used }
  113. function is_const(node : tnode) : boolean;
  114. { returns a pointer to the real node a node refers to,
  115. skipping (absolute) equal type conversions. Returning
  116. a pointer allows the caller to move/remove/replace this
  117. node
  118. }
  119. function actualtargetnode(n : pnode) : pnode;
  120. { moves src into dest, before doing so, right is set to nil and dest is freed.
  121. Because dest and src are var parameters, this can be done inline in an existing
  122. node tree }
  123. procedure replacenode(var dest,src : tnode);
  124. { strip off deref/addr combinations when looking for a the load node of an open array/array of const
  125. since there is no possiblity to defined a pointer to an open array/array of const, we have not to
  126. take care of type casts, further, it means also that deref/addr nodes must always appear coupled
  127. }
  128. function get_open_const_array(p : tnode) : tnode;
  129. { excludes the flags passed in nf from the node tree passed }
  130. procedure node_reset_flags(p : tnode;nf : tnodeflags);
  131. { include or exclude cs from p.localswitches }
  132. procedure node_change_local_switch(p : tnode;cs : tlocalswitch;enable : boolean);
  133. { returns true, if p is a node which shall be short boolean evaluated,
  134. if it is not an orn/andn with boolean operans, the result is undefined }
  135. function doshortbooleval(p : tnode) : Boolean;
  136. { returns true if the node has the int value l }
  137. function is_constintvalue(p : tnode;l : Tconstexprint) : Boolean;
  138. { returns true if the node is an inline node of type i }
  139. function is_inlinefunction(p : tnode;i : tinlinenumber) : Boolean;
  140. { checks if p is a series of length(a) statments, if yes, they are returned
  141. in a and the function returns true }
  142. function GetStatements(p : tnode;var a : array of tstatementnode) : Boolean;
  143. type
  144. TMatchProc2 = function(n1,n2 : tnode) : Boolean is nested;
  145. TTransformProc2 = function(n1,n2 : tnode) : tnode is nested;
  146. { calls matchproc with n1 and n2 as parameters, if it returns true, transformproc is called, does the same with the nodes swapped,
  147. the result of transformproc is assigned to res }
  148. function MatchAndTransformNodesCommutative(n1,n2 : tnode;matchproc : TMatchProc2;transformproc : TTransformProc2;var res : tnode) : Boolean;
  149. implementation
  150. uses
  151. cutils,verbose,globals,
  152. symconst,symdef,
  153. defcmp,defutil,
  154. ncon,ncnv,nld,nflw,nset,ncal,nadd,nmem,ninl,
  155. cpubase,cgbase,procinfo,
  156. pass_1;
  157. function foreachnode(procmethod : tforeachprocmethod;var n: tnode; f: foreachnodefunction; arg: pointer): boolean;
  158. function process_children(res : boolean) : boolean;
  159. var
  160. i: longint;
  161. begin
  162. result:=res;
  163. case n.nodetype of
  164. asn:
  165. if assigned(tasnode(n).call) then
  166. begin
  167. result := foreachnode(procmethod,tasnode(n).call,f,arg);
  168. exit
  169. end;
  170. calln:
  171. begin
  172. result := foreachnode(procmethod,tnode(tcallnode(n).callinitblock),f,arg) or result;
  173. result := foreachnode(procmethod,tcallnode(n).methodpointer,f,arg) or result;
  174. result := foreachnode(procmethod,tcallnode(n).funcretnode,f,arg) or result;
  175. result := foreachnode(procmethod,tnode(tcallnode(n).callcleanupblock),f,arg) or result;
  176. end;
  177. callparan:
  178. begin
  179. result := foreachnode(procmethod,tnode(tcallparanode(n).fparainit),f,arg) or result;
  180. result := foreachnode(procmethod,tcallparanode(n).fparacopyback,f,arg) or result;
  181. end;
  182. ifn, whilerepeatn, forn, tryexceptn:
  183. begin
  184. { not in one statement, won't work because of b- }
  185. result := foreachnode(procmethod,tloopnode(n).t1,f,arg) or result;
  186. result := foreachnode(procmethod,tloopnode(n).t2,f,arg) or result;
  187. end;
  188. raisen, tryfinallyn:
  189. { frame tree/copy of finally code }
  190. result := foreachnode(ttertiarynode(n).third,f,arg) or result;
  191. tempcreaten:
  192. { temp. initialization code }
  193. if assigned(ttempcreatenode(n).tempinfo^.tempinitcode) then
  194. result := foreachnode(ttempcreatenode(n).tempinfo^.tempinitcode,f,arg) or result;
  195. casen:
  196. begin
  197. for i := 0 to tcasenode(n).blocks.count-1 do
  198. if assigned(tcasenode(n).blocks[i]) then
  199. result := foreachnode(procmethod,pcaseblock(tcasenode(n).blocks[i])^.statement,f,arg) or result;
  200. result := foreachnode(procmethod,tcasenode(n).elseblock,f,arg) or result;
  201. end;
  202. else
  203. ;
  204. end;
  205. if n.inheritsfrom(tbinarynode) then
  206. begin
  207. { first process the "payload" of statementnodes }
  208. result := foreachnode(procmethod,tbinarynode(n).left,f,arg) or result;
  209. result := foreachnode(procmethod,tbinarynode(n).right,f,arg) or result;
  210. end
  211. else if n.inheritsfrom(tunarynode) then
  212. result := foreachnode(procmethod,tunarynode(n).left,f,arg) or result;
  213. end;
  214. begin
  215. result := false;
  216. if not assigned(n) then
  217. exit;
  218. if procmethod=pm_preprocess then
  219. result:=process_children(result);
  220. case f(n,arg) of
  221. fen_norecurse_false:
  222. exit;
  223. fen_norecurse_true:
  224. begin
  225. result := true;
  226. exit;
  227. end;
  228. fen_true:
  229. result := true;
  230. { result is already false
  231. fen_false:
  232. result := false; }
  233. else
  234. ;
  235. end;
  236. if (procmethod=pm_postprocess) or (procmethod=pm_postandagain) then
  237. result:=process_children(result);
  238. if procmethod=pm_postandagain then
  239. begin
  240. case f(n,arg) of
  241. fen_norecurse_false:
  242. exit;
  243. fen_norecurse_true:
  244. begin
  245. result := true;
  246. exit;
  247. end;
  248. fen_true:
  249. result := true;
  250. else
  251. ;
  252. end;
  253. end;
  254. end;
  255. function foreachnode(var n: tnode; f: foreachnodefunction; arg: pointer): boolean;
  256. begin
  257. result:=foreachnode(pm_postprocess,n,f,arg);
  258. end;
  259. function foreachnodestatic(procmethod : tforeachprocmethod;var n: tnode; f: staticforeachnodefunction; arg: pointer): boolean;
  260. function process_children(res : boolean) : boolean;
  261. var
  262. i: longint;
  263. begin
  264. result:=res;
  265. case n.nodetype of
  266. asn:
  267. if assigned(tasnode(n).call) then
  268. begin
  269. result := foreachnodestatic(procmethod,tasnode(n).call,f,arg);
  270. exit
  271. end;
  272. calln:
  273. begin
  274. result := foreachnodestatic(procmethod,tnode(tcallnode(n).callinitblock),f,arg) or result;
  275. result := foreachnodestatic(procmethod,tcallnode(n).methodpointer,f,arg) or result;
  276. result := foreachnodestatic(procmethod,tcallnode(n).funcretnode,f,arg) or result;
  277. result := foreachnodestatic(procmethod,tnode(tcallnode(n).callcleanupblock),f,arg) or result;
  278. end;
  279. callparan:
  280. begin
  281. result := foreachnodestatic(procmethod,tnode(tcallparanode(n).fparainit),f,arg) or result;
  282. result := foreachnodestatic(procmethod,tcallparanode(n).fparacopyback,f,arg) or result;
  283. end;
  284. ifn, whilerepeatn, forn, tryexceptn:
  285. begin
  286. { not in one statement, won't work because of b- }
  287. result := foreachnodestatic(procmethod,tloopnode(n).t1,f,arg) or result;
  288. result := foreachnodestatic(procmethod,tloopnode(n).t2,f,arg) or result;
  289. end;
  290. raisen, tryfinallyn:
  291. { frame tree/copy of finally code }
  292. result := foreachnodestatic(ttertiarynode(n).third,f,arg) or result;
  293. tempcreaten:
  294. { temp. initialization code }
  295. if assigned(ttempcreatenode(n).tempinfo^.tempinitcode) then
  296. result := foreachnodestatic(ttempcreatenode(n).tempinfo^.tempinitcode,f,arg) or result;
  297. casen:
  298. begin
  299. for i := 0 to tcasenode(n).blocks.count-1 do
  300. if assigned(tcasenode(n).blocks[i]) then
  301. result := foreachnodestatic(procmethod,pcaseblock(tcasenode(n).blocks[i])^.statement,f,arg) or result;
  302. result := foreachnodestatic(procmethod,tcasenode(n).elseblock,f,arg) or result;
  303. end;
  304. else
  305. ;
  306. end;
  307. if n.inheritsfrom(tbinarynode) then
  308. begin
  309. { first process the "payload" of statementnodes }
  310. result := foreachnodestatic(procmethod,tbinarynode(n).left,f,arg) or result;
  311. result := foreachnodestatic(procmethod,tbinarynode(n).right,f,arg) or result;
  312. end
  313. else if n.inheritsfrom(tunarynode) then
  314. result := foreachnodestatic(procmethod,tunarynode(n).left,f,arg) or result;
  315. end;
  316. begin
  317. result := false;
  318. if not assigned(n) then
  319. exit;
  320. if procmethod=pm_preprocess then
  321. result:=process_children(result);
  322. case f(n,arg) of
  323. fen_norecurse_false:
  324. exit;
  325. fen_norecurse_true:
  326. begin
  327. result := true;
  328. exit;
  329. end;
  330. fen_true:
  331. result := true;
  332. { result is already false
  333. fen_false:
  334. result := false; }
  335. else
  336. ;
  337. end;
  338. if (procmethod=pm_postprocess) or (procmethod=pm_postandagain) then
  339. result:=process_children(result);
  340. if procmethod=pm_postandagain then
  341. begin
  342. case f(n,arg) of
  343. fen_norecurse_false:
  344. exit;
  345. fen_norecurse_true:
  346. begin
  347. result := true;
  348. exit;
  349. end;
  350. fen_true:
  351. result := true;
  352. else
  353. ;
  354. end;
  355. end;
  356. end;
  357. function foreachnodestatic(var n: tnode; f: staticforeachnodefunction; arg: pointer): boolean;
  358. begin
  359. result:=foreachnodestatic(pm_postprocess,n,f,arg);
  360. end;
  361. function do_check(var n: tnode; arg: pointer): foreachnoderesult;
  362. begin
  363. if not(n.nodetype in pnodetypeset(arg)^) then
  364. internalerror(200610141);
  365. result:=fen_true;
  366. end;
  367. procedure checktreenodetypes(n : tnode;typeset : tnodetypeset);
  368. begin
  369. foreachnodestatic(n,@do_check,@typeset);
  370. end;
  371. procedure load_procvar_from_calln(var p1:tnode);
  372. var
  373. p2 : tnode;
  374. begin
  375. if p1.nodetype<>calln then
  376. internalerror(200212251);
  377. { was it a procvar, then we simply remove the calln and
  378. reuse the right }
  379. if assigned(tcallnode(p1).right) then
  380. begin
  381. p2:=tcallnode(p1).right;
  382. tcallnode(p1).right:=nil;
  383. end
  384. else
  385. begin
  386. p2:=cloadnode.create_procvar(tcallnode(p1).symtableprocentry,
  387. tprocdef(tcallnode(p1).procdefinition),tcallnode(p1).symtableproc);
  388. { when the methodpointer is typen we've something like:
  389. tobject.create. Then only the address is needed of the
  390. method without a self pointer }
  391. if assigned(tcallnode(p1).methodpointer) and
  392. (tcallnode(p1).methodpointer.nodetype<>typen) then
  393. tloadnode(p2).set_mp(tcallnode(p1).methodpointer.getcopy);
  394. end;
  395. typecheckpass(p2);
  396. p1.free;
  397. p1:=p2;
  398. end;
  399. function maybe_call_procvar(var p1:tnode;tponly:boolean):boolean;
  400. var
  401. hp : tnode;
  402. begin
  403. result:=false;
  404. if (p1.resultdef.typ<>procvardef) or
  405. (tponly and
  406. not(m_tp_procvar in current_settings.modeswitches)) then
  407. exit;
  408. { ignore vecn,subscriptn }
  409. hp:=p1;
  410. repeat
  411. case hp.nodetype of
  412. vecn,
  413. derefn,
  414. typeconvn,
  415. subscriptn :
  416. hp:=tunarynode(hp).left;
  417. blockn:
  418. hp:=laststatement(tblocknode(hp)).left
  419. else
  420. break;
  421. end;
  422. until false;
  423. { a tempref is used when it is loaded from a withsymtable }
  424. if (hp.nodetype in [calln,loadn,temprefn]) then
  425. begin
  426. hp:=ccallnode.create_procvar(nil,p1);
  427. typecheckpass(hp);
  428. p1:=hp;
  429. result:=true;
  430. end;
  431. end;
  432. function get_local_or_para_sym(const aname: string): tsym;
  433. var
  434. pd : tprocdef;
  435. begin
  436. result:=nil;
  437. { is not assigned while parsing a property }
  438. if not assigned(current_procinfo) then
  439. exit;
  440. { we can't use searchsym here, because the
  441. symtablestack is not fully setup when pass1
  442. is run for nested procedures }
  443. pd:=current_procinfo.procdef;
  444. repeat
  445. result := tsym(pd.localst.Find(aname));
  446. if assigned(result) then
  447. break;
  448. result := tsym(pd.parast.Find(aname));
  449. if assigned(result) then
  450. break;
  451. { try the parent of a nested function }
  452. if assigned(pd.owner.defowner) and
  453. (pd.owner.defowner.typ=procdef) then
  454. pd:=tprocdef(pd.owner.defowner)
  455. else
  456. break;
  457. until false;
  458. end;
  459. function load_high_value_node(vs:tparavarsym):tnode;
  460. var
  461. srsym : tsym;
  462. begin
  463. result:=nil;
  464. srsym:=get_high_value_sym(vs);
  465. if assigned(srsym) then
  466. begin
  467. result:=cloadnode.create(srsym,vs.owner);
  468. typecheckpass(result);
  469. end
  470. else
  471. CGMessage(parser_e_illegal_expression);
  472. end;
  473. function load_self_node:tnode;
  474. var
  475. srsym : tsym;
  476. begin
  477. result:=nil;
  478. srsym:=get_local_or_para_sym('self');
  479. if assigned(srsym) then
  480. begin
  481. result:=cloadnode.create(srsym,srsym.owner);
  482. include(tloadnode(result).loadnodeflags,loadnf_is_self);
  483. end
  484. else
  485. begin
  486. result:=cerrornode.create;
  487. CGMessage(parser_e_illegal_expression);
  488. end;
  489. typecheckpass(result);
  490. end;
  491. function load_result_node:tnode;
  492. var
  493. srsym : tsym;
  494. begin
  495. result:=nil;
  496. srsym:=get_local_or_para_sym('result');
  497. if assigned(srsym) then
  498. result:=cloadnode.create(srsym,srsym.owner)
  499. else
  500. begin
  501. result:=cerrornode.create;
  502. CGMessage(parser_e_illegal_expression);
  503. end;
  504. typecheckpass(result);
  505. end;
  506. function load_self_pointer_node:tnode;
  507. var
  508. srsym : tsym;
  509. begin
  510. result:=nil;
  511. srsym:=get_local_or_para_sym('self');
  512. if assigned(srsym) then
  513. begin
  514. result:=cloadnode.create(srsym,srsym.owner);
  515. if is_object(tabstractvarsym(srsym).vardef) or is_record(tabstractvarsym(srsym).vardef) then
  516. include(tloadnode(result).loadnodeflags,loadnf_load_addr);
  517. end
  518. else
  519. begin
  520. result:=cerrornode.create;
  521. CGMessage(parser_e_illegal_expression);
  522. end;
  523. typecheckpass(result);
  524. end;
  525. function load_vmt_pointer_node:tnode;
  526. var
  527. srsym : tsym;
  528. begin
  529. result:=nil;
  530. srsym:=get_local_or_para_sym('vmt');
  531. if assigned(srsym) then
  532. result:=cloadnode.create(srsym,srsym.owner)
  533. else
  534. begin
  535. result:=cerrornode.create;
  536. CGMessage(parser_e_illegal_expression);
  537. end;
  538. typecheckpass(result);
  539. end;
  540. function is_self_node(p:tnode):boolean;
  541. begin
  542. is_self_node:=(p.nodetype=loadn) and
  543. (tloadnode(p).symtableentry.typ=paravarsym) and
  544. (vo_is_self in tparavarsym(tloadnode(p).symtableentry).varoptions);
  545. end;
  546. function load_vmt_for_self_node(self_node: tnode): tnode;
  547. var
  548. self_resultdef: tdef;
  549. obj_def: tobjectdef;
  550. self_temp,
  551. vmt_temp: ttempcreatenode;
  552. check_self,n: tnode;
  553. stat: tstatementnode;
  554. block: tblocknode;
  555. paras: tcallparanode;
  556. docheck,is_typecasted_classref: boolean;
  557. begin
  558. self_resultdef:=self_node.resultdef;
  559. case self_resultdef.typ of
  560. classrefdef:
  561. begin
  562. obj_def:=tobjectdef(tclassrefdef(self_resultdef).pointeddef);
  563. end;
  564. objectdef:
  565. obj_def:=tobjectdef(self_resultdef);
  566. else
  567. internalerror(2015052701);
  568. end;
  569. n:=self_node;
  570. is_typecasted_classref:=false;
  571. if (n.nodetype=typeconvn) then
  572. begin
  573. while assigned(n) and (n.nodetype=typeconvn) and (nf_explicit in ttypeconvnode(n).flags) do
  574. n:=ttypeconvnode(n).left;
  575. if assigned(n) and (n.resultdef.typ=classrefdef) then
  576. is_typecasted_classref:=true;
  577. end;
  578. if is_classhelper(obj_def) then
  579. obj_def:=tobjectdef(tobjectdef(obj_def).extendeddef);
  580. docheck:=
  581. not(is_interface(obj_def)) and
  582. not(is_cppclass(obj_def)) and
  583. not(is_objc_class_or_protocol(obj_def)) and
  584. (([cs_check_object,cs_check_range]*current_settings.localswitches)<>[]);
  585. block:=nil;
  586. stat:=nil;
  587. self_temp:=nil;
  588. if docheck then
  589. begin
  590. { check for nil self-pointer }
  591. block:=internalstatements(stat);
  592. if is_object(self_resultdef) then
  593. begin
  594. self_temp:=ctempcreatenode.create_value(
  595. cpointerdef.getreusable(self_resultdef),cpointerdef.getreusable(self_resultdef).size,tt_persistent,true,
  596. caddrnode.create(self_node));
  597. end
  598. else
  599. self_temp:=ctempcreatenode.create_value(
  600. self_resultdef,self_resultdef.size,tt_persistent,true,
  601. self_node);
  602. addstatement(stat,self_temp);
  603. { in case of an object, self can only be nil if it's a dereferenced
  604. node somehow
  605. }
  606. if not is_object(self_resultdef) or
  607. (actualtargetnode(@self_node)^.nodetype=derefn) then
  608. begin
  609. check_self:=ctemprefnode.create(self_temp);
  610. addstatement(stat,cifnode.create(
  611. caddnode.create(equaln,
  612. ctypeconvnode.create_explicit(
  613. check_self,
  614. voidpointertype
  615. ),
  616. cnilnode.create),
  617. ccallnode.createintern('fpc_objecterror',nil),
  618. nil)
  619. );
  620. end;
  621. if is_object(self_resultdef) then
  622. self_node:=cderefnode.create(ctemprefnode.create(self_temp))
  623. else
  624. self_node:=ctemprefnode.create(self_temp)
  625. end;
  626. { in case of a classref, the "instance" is a pointer
  627. to pointer to a VMT and there is no vmt field }
  628. if is_typecasted_classref or (self_resultdef.typ=classrefdef) then
  629. result:=self_node
  630. { get the VMT field in case of a class/object }
  631. else if (self_resultdef.typ=objectdef) and
  632. assigned(tobjectdef(self_resultdef).vmt_field) then
  633. result:=csubscriptnode.create(tobjectdef(self_resultdef).vmt_field,self_node)
  634. { in case of an interface, the "instance" is a pointer to a pointer
  635. to a VMT -> dereference once already }
  636. else
  637. { in case of an interface/classref, the "instance" is a pointer
  638. to pointer to a VMT and there is no vmt field }
  639. result:=cderefnode.create(
  640. ctypeconvnode.create_explicit(
  641. self_node,
  642. cpointerdef.getreusable(voidpointertype)
  643. )
  644. );
  645. result:=ctypeconvnode.create_explicit(
  646. result,
  647. cpointerdef.getreusable(obj_def.vmt_def));
  648. typecheckpass(result);
  649. if docheck then
  650. begin
  651. { add a vmt validity check }
  652. vmt_temp:=ctempcreatenode.create_value(result.resultdef,result.resultdef.size,tt_persistent,true,result);
  653. addstatement(stat,vmt_temp);
  654. paras:=ccallparanode.create(ctemprefnode.create(vmt_temp),nil);
  655. if cs_check_object in current_settings.localswitches then
  656. begin
  657. paras:=ccallparanode.create(
  658. cloadvmtaddrnode.create(ctypenode.create(obj_def)),
  659. paras
  660. );
  661. addstatement(stat,
  662. ccallnode.createintern(
  663. 'fpc_check_object_ext',paras
  664. )
  665. );
  666. end
  667. else
  668. addstatement(stat,
  669. ccallnode.createintern(
  670. 'fpc_check_object',paras
  671. )
  672. );
  673. addstatement(stat,ctempdeletenode.create_normal_temp(vmt_temp));
  674. addstatement(stat,ctempdeletenode.create(self_temp));
  675. addstatement(stat,ctemprefnode.create(vmt_temp));
  676. result:=block;
  677. end
  678. end;
  679. { this function must return a very high value ("infinity") for }
  680. { trees containing a call, the rest can be balanced more or less }
  681. { at will, probably best mainly in terms of required memory }
  682. { accesses }
  683. function node_complexity(p: tnode): cardinal;
  684. var
  685. correction: byte;
  686. {$ifdef ARM}
  687. dummy : byte;
  688. {$endif ARM}
  689. begin
  690. result := 0;
  691. while assigned(p) do
  692. begin
  693. case p.nodetype of
  694. { floating point constants usually need loading from memory }
  695. realconstn:
  696. begin
  697. result:=2;
  698. exit;
  699. end;
  700. rttin,
  701. setconstn,
  702. stringconstn,
  703. temprefn,
  704. loadvmtaddrn,
  705. { main reason for the next one: we can't take the address of }
  706. { loadparentfpnode, so replacing it by a temp which is the }
  707. { address of this node's location and then dereferencing }
  708. { doesn't work. If changed, check whether webtbs/tw0935 }
  709. { still works with nodeinlining (JM) }
  710. loadparentfpn:
  711. begin
  712. result := 1;
  713. exit;
  714. end;
  715. loadn:
  716. begin
  717. if assigned(tloadnode(p).left) then
  718. inc(result,node_complexity(tloadnode(p).left));
  719. { threadvars need a helper call }
  720. if (tloadnode(p).symtableentry.typ=staticvarsym) and
  721. (vo_is_thread_var in tstaticvarsym(tloadnode(p).symtableentry).varoptions) then
  722. inc(result,5)
  723. else if not((tloadnode(p).symtableentry.typ in [staticvarsym,localvarsym,paravarsym,fieldvarsym]) and
  724. (tabstractvarsym(tloadnode(p).symtableentry).varregable in [vr_intreg,vr_mmreg,vr_fpureg])) then
  725. inc(result);
  726. if (tloadnode(p).symtableentry.typ=paravarsym) and
  727. not(tabstractvarsym(tloadnode(p).symtableentry).varregable=vr_addr) and
  728. tloadnode(p).is_addr_param_load then
  729. inc(result);
  730. if (result >= NODE_COMPLEXITY_INF) then
  731. result := NODE_COMPLEXITY_INF;
  732. exit;
  733. end;
  734. subscriptn:
  735. begin
  736. if is_implicit_pointer_object_type(tunarynode(p).left.resultdef) or
  737. is_bitpacked_access(p) then
  738. inc(result,2)
  739. { non-packed, int. regable records cause no extra
  740. overhead no overhead if the fields are aligned to register boundaries }
  741. else if tstoreddef(p.resultdef).is_intregable and (tsubscriptnode(p).vs.fieldoffset mod sizeof(aint)<>0) then
  742. inc(result,1);
  743. if (result = NODE_COMPLEXITY_INF) then
  744. exit;
  745. p := tunarynode(p).left;
  746. end;
  747. labeln,
  748. blockn:
  749. p := tunarynode(p).left;
  750. callparan:
  751. begin
  752. { call to decr? }
  753. if is_managed_type(tunarynode(p).left.resultdef) and
  754. assigned(tcallparanode(p).parasym) and (tcallparanode(p).parasym.varspez=vs_out) then
  755. begin
  756. result:=NODE_COMPLEXITY_INF;
  757. exit;
  758. end
  759. else
  760. begin
  761. inc(result);
  762. if (result = NODE_COMPLEXITY_INF) then
  763. exit;
  764. p := tunarynode(p).left;
  765. end;
  766. end;
  767. notn,
  768. derefn :
  769. begin
  770. inc(result);
  771. if (result = NODE_COMPLEXITY_INF) then
  772. exit;
  773. p := tunarynode(p).left;
  774. end;
  775. addrn:
  776. begin
  777. inc(result);
  778. if (result = NODE_COMPLEXITY_INF) then
  779. exit;
  780. p := tunarynode(p).left;
  781. end;
  782. typeconvn:
  783. begin
  784. { may be more complex in some cases }
  785. if not(ttypeconvnode(p).retains_value_location) and
  786. not((ttypeconvnode(p).convtype=tc_pointer_2_array) and (ttypeconvnode(p).left.expectloc in [LOC_CREGISTER,LOC_REGISTER,LOC_CONSTANT])) then
  787. inc(result);
  788. if result = NODE_COMPLEXITY_INF then
  789. exit;
  790. p := tunarynode(p).left;
  791. end;
  792. vecn:
  793. begin
  794. inc(result,node_complexity(tbinarynode(p).left));
  795. inc(result);
  796. if (result >= NODE_COMPLEXITY_INF) then
  797. begin
  798. result := NODE_COMPLEXITY_INF;
  799. exit;
  800. end;
  801. p := tbinarynode(p).right;
  802. end;
  803. statementn:
  804. begin
  805. inc(result,node_complexity(tbinarynode(p).left));
  806. if (result >= NODE_COMPLEXITY_INF) then
  807. begin
  808. result := NODE_COMPLEXITY_INF;
  809. exit;
  810. end;
  811. p := tbinarynode(p).right;
  812. end;
  813. addn,subn,orn,andn,xorn,muln,divn,modn,symdifn,
  814. shln,shrn,
  815. equaln,unequaln,gtn,gten,ltn,lten,
  816. assignn,
  817. slashn:
  818. begin
  819. {$ifdef CPU64BITALU}
  820. correction:=1;
  821. {$else CPU64BITALU}
  822. correction:=2;
  823. {$endif CPU64BITALU}
  824. inc(result,node_complexity(tbinarynode(p).left)+1*correction);
  825. if (p.nodetype in [divn,modn,slashn]) then
  826. inc(result,10*correction*correction)
  827. else if p.nodetype=muln then
  828. inc(result,4*correction*correction);
  829. if (result >= NODE_COMPLEXITY_INF) then
  830. begin
  831. result := NODE_COMPLEXITY_INF;
  832. exit;
  833. end;
  834. p := tbinarynode(p).right;
  835. end;
  836. ordconstn:
  837. begin
  838. {$ifdef ARM}
  839. if not(is_shifter_const(aint(tordconstnode(p).value.svalue),dummy)) then
  840. result:=2;
  841. {$endif ARM}
  842. exit;
  843. end;
  844. exitn:
  845. begin
  846. inc(result,2);
  847. if (result >= NODE_COMPLEXITY_INF) then
  848. begin
  849. result := NODE_COMPLEXITY_INF;
  850. exit;
  851. end;
  852. p:=texitnode(p).left;
  853. end;
  854. tempcreaten,
  855. tempdeleten,
  856. pointerconstn,
  857. nothingn,
  858. niln:
  859. exit;
  860. inlinen:
  861. begin
  862. { this code assumes that the inline node has }
  863. { already been firstpassed, and consequently }
  864. { that inline nodes which are transformed into }
  865. { calls already have been transformed }
  866. case tinlinenode(p).inlinenumber of
  867. in_lo_qword,
  868. in_hi_qword,
  869. in_lo_long,
  870. in_hi_long,
  871. in_lo_word,
  872. in_hi_word,
  873. in_length_x,
  874. in_assigned_x,
  875. in_pred_x,
  876. in_succ_x,
  877. in_round_real,
  878. in_trunc_real,
  879. in_int_real,
  880. in_frac_real,
  881. in_pi_real,
  882. in_abs_real,
  883. in_aligned_x,
  884. in_unaligned_x,
  885. in_volatile_x,
  886. in_prefetch_var:
  887. begin
  888. inc(result);
  889. p:=tunarynode(p).left;
  890. end;
  891. in_cos_real,
  892. in_sin_real,
  893. in_arctan_real,
  894. in_sqr_real,
  895. in_sqrt_real,
  896. in_ln_real:
  897. begin
  898. inc(result,2);
  899. if (result >= NODE_COMPLEXITY_INF) then
  900. begin
  901. result:=NODE_COMPLEXITY_INF;
  902. exit;
  903. end;
  904. p:=tunarynode(p).left;
  905. end;
  906. in_abs_long:
  907. begin
  908. inc(result,3);
  909. if (result >= NODE_COMPLEXITY_INF) then
  910. begin
  911. result:=NODE_COMPLEXITY_INF;
  912. exit;
  913. end;
  914. p:=tunarynode(p).left;
  915. end;
  916. in_sizeof_x,
  917. in_typeof_x:
  918. begin
  919. inc(result);
  920. if (tinlinenode(p).left.nodetype<>typen) then
  921. { get instance vmt }
  922. p:=tunarynode(p).left
  923. else
  924. { type vmt = global symbol, result is }
  925. { already increased above }
  926. exit;
  927. end;
  928. {$ifdef SUPPORT_MMX}
  929. in_mmx_pcmpeqb..in_mmx_pcmpgtw,
  930. {$endif SUPPORT_MMX}
  931. { load from global symbol }
  932. in_typeinfo_x,
  933. { load frame pointer }
  934. in_get_frame,
  935. in_get_caller_frame,
  936. in_get_caller_addr:
  937. begin
  938. inc(result);
  939. exit;
  940. end;
  941. in_inc_x,
  942. in_dec_x,
  943. in_include_x_y,
  944. in_exclude_x_y,
  945. in_assert_x_y :
  946. begin
  947. { operation (add, sub, or, and }
  948. inc(result);
  949. { left expression }
  950. inc(result,node_complexity(tcallparanode(tunarynode(p).left).left));
  951. if (result >= NODE_COMPLEXITY_INF) then
  952. begin
  953. result := NODE_COMPLEXITY_INF;
  954. exit;
  955. end;
  956. p:=tcallparanode(tunarynode(p).left).right;
  957. if assigned(p) then
  958. p:=tcallparanode(p).left;
  959. end;
  960. else
  961. begin
  962. result := NODE_COMPLEXITY_INF;
  963. exit;
  964. end;
  965. end;
  966. end;
  967. finalizetempsn:
  968. begin
  969. result:=NODE_COMPLEXITY_INF;
  970. exit;
  971. end;
  972. else
  973. begin
  974. result := NODE_COMPLEXITY_INF;
  975. exit;
  976. end;
  977. end;
  978. end;
  979. end;
  980. { this function returns an indication how much fpu registers
  981. will be required.
  982. Note: The algorithms need to be pessimistic to prevent a
  983. fpu stack overflow on i386 }
  984. function node_resources_fpu(p: tnode): cardinal;
  985. var
  986. res1,res2,res3 : cardinal;
  987. begin
  988. result:=0;
  989. res1:=0;
  990. res2:=0;
  991. res3:=0;
  992. if p.inheritsfrom(tunarynode) then
  993. begin
  994. if assigned(tunarynode(p).left) then
  995. res1:=node_resources_fpu(tunarynode(p).left);
  996. if p.inheritsfrom(tbinarynode) then
  997. begin
  998. if assigned(tbinarynode(p).right) then
  999. res2:=node_resources_fpu(tbinarynode(p).right);
  1000. if p.inheritsfrom(ttertiarynode) and assigned(ttertiarynode(p).third) then
  1001. res3:=node_resources_fpu(ttertiarynode(p).third)
  1002. end;
  1003. end;
  1004. result:=max(max(res1,res2),res3);
  1005. case p.nodetype of
  1006. calln:
  1007. { it could be a recursive call, so we never really know the number of used fpu registers }
  1008. result:=maxfpuregs;
  1009. realconstn,
  1010. typeconvn,
  1011. loadn :
  1012. begin
  1013. if p.expectloc in [LOC_CFPUREGISTER,LOC_FPUREGISTER] then
  1014. result:=max(result,1);
  1015. end;
  1016. assignn,
  1017. addn,subn,muln,slashn,
  1018. equaln,unequaln,gtn,gten,ltn,lten :
  1019. begin
  1020. if (tbinarynode(p).left.expectloc in [LOC_CFPUREGISTER,LOC_FPUREGISTER]) or
  1021. (tbinarynode(p).right.expectloc in [LOC_CFPUREGISTER,LOC_FPUREGISTER])then
  1022. result:=max(result,2);
  1023. if(p.expectloc in [LOC_CFPUREGISTER,LOC_FPUREGISTER]) then
  1024. inc(result);
  1025. end;
  1026. else
  1027. ;
  1028. end;
  1029. end;
  1030. function setnodefilepos(var n: tnode; arg: pointer): foreachnoderesult;
  1031. begin
  1032. result:=fen_true;
  1033. n.fileinfo:=pfileposinfo(arg)^;
  1034. end;
  1035. procedure node_tree_set_filepos(var n:tnode;const filepos:tfileposinfo);
  1036. begin
  1037. foreachnodestatic(n,@setnodefilepos,@filepos);
  1038. end;
  1039. function callsimplify(var n: tnode; arg: pointer): foreachnoderesult;
  1040. var
  1041. hn : tnode;
  1042. treechanged : ^boolean;
  1043. begin
  1044. result:=fen_false;
  1045. if n.inheritsfrom(tloopnode) and
  1046. not (lnf_simplify_processing in tloopnode(n).loopflags) then
  1047. begin
  1048. // Try to simplify condition
  1049. doinlinesimplify(tloopnode(n).left);
  1050. // call directly second part below,
  1051. // which might change the loopnode into
  1052. // something else if the conditino is a constant node
  1053. include(tloopnode(n).loopflags,lnf_simplify_processing);
  1054. callsimplify(n,arg);
  1055. // Be careful, n might have change node type
  1056. if n.inheritsfrom(tloopnode) then
  1057. exclude(tloopnode(n).loopflags,lnf_simplify_processing);
  1058. end
  1059. else
  1060. begin
  1061. hn:=n.simplify(true);
  1062. if assigned(hn) then
  1063. begin
  1064. treechanged := arg;
  1065. if assigned(treechanged) then
  1066. treechanged^:=true
  1067. else
  1068. internalerror (201008181);
  1069. n.free;
  1070. n:=hn;
  1071. typecheckpass(n);
  1072. end;
  1073. end;
  1074. end;
  1075. { tries to simplify the given node calling the simplify method recursively }
  1076. procedure doinlinesimplify(var n : tnode);
  1077. var
  1078. treechanged : boolean;
  1079. begin
  1080. // Optimize if code first
  1081. repeat
  1082. treechanged:=false;
  1083. foreachnodestatic(pm_postandagain,n,@callsimplify,@treechanged);
  1084. until not(treechanged);
  1085. end;
  1086. function create_simplified_ord_const(const value: tconstexprint; def: tdef; forinline, rangecheck: boolean): tnode;
  1087. begin
  1088. if not forinline then
  1089. result:=genintconstnode(value)
  1090. else
  1091. result:=cordconstnode.create(value,def,rangecheck);
  1092. end;
  1093. procedure propaccesslist_to_node(var p1:tnode;st:TSymtable;pl:tpropaccesslist);
  1094. var
  1095. plist : ppropaccesslistitem;
  1096. begin
  1097. plist:=pl.firstsym;
  1098. while assigned(plist) do
  1099. begin
  1100. case plist^.sltype of
  1101. sl_load :
  1102. begin
  1103. addsymref(plist^.sym);
  1104. if not assigned(st) then
  1105. st:=plist^.sym.owner;
  1106. if (plist^.sym.typ<>staticvarsym) then
  1107. begin
  1108. { p1 can already contain the loadnode of
  1109. the class variable. When there is no tree yet we
  1110. may need to load it for with or objects }
  1111. if not assigned(p1) then
  1112. begin
  1113. case st.symtabletype of
  1114. withsymtable :
  1115. p1:=tnode(twithsymtable(st).withrefnode).getcopy;
  1116. ObjectSymtable :
  1117. p1:=load_self_node;
  1118. else
  1119. ;
  1120. end;
  1121. end
  1122. end
  1123. else
  1124. begin
  1125. p1.free;
  1126. p1:=nil;
  1127. end;
  1128. if assigned(p1) then
  1129. p1:=csubscriptnode.create(plist^.sym,p1)
  1130. else
  1131. p1:=cloadnode.create(plist^.sym,st);
  1132. end;
  1133. sl_subscript :
  1134. begin
  1135. addsymref(plist^.sym);
  1136. p1:=csubscriptnode.create(plist^.sym,p1);
  1137. end;
  1138. sl_typeconv :
  1139. p1:=ctypeconvnode.create_explicit(p1,plist^.def);
  1140. sl_absolutetype :
  1141. begin
  1142. p1:=ctypeconvnode.create(p1,plist^.def);
  1143. include(p1.flags,nf_absolute);
  1144. end;
  1145. sl_vec :
  1146. p1:=cvecnode.create(p1,cordconstnode.create(plist^.value,plist^.valuedef,true));
  1147. else
  1148. internalerror(200110205);
  1149. end;
  1150. plist:=plist^.next;
  1151. end;
  1152. end;
  1153. function node_to_propaccesslist(p1:tnode):tpropaccesslist;
  1154. var
  1155. sl : tpropaccesslist;
  1156. procedure addnode(p:tnode);
  1157. begin
  1158. case p.nodetype of
  1159. subscriptn :
  1160. begin
  1161. addnode(tsubscriptnode(p).left);
  1162. sl.addsym(sl_subscript,tsubscriptnode(p).vs);
  1163. end;
  1164. typeconvn :
  1165. begin
  1166. addnode(ttypeconvnode(p).left);
  1167. if nf_absolute in ttypeconvnode(p).flags then
  1168. sl.addtype(sl_absolutetype,ttypeconvnode(p).totypedef)
  1169. else
  1170. sl.addtype(sl_typeconv,ttypeconvnode(p).totypedef);
  1171. end;
  1172. vecn :
  1173. begin
  1174. addnode(tvecnode(p).left);
  1175. if tvecnode(p).right.nodetype=ordconstn then
  1176. sl.addconst(sl_vec,tordconstnode(tvecnode(p).right).value,tvecnode(p).right.resultdef)
  1177. else
  1178. begin
  1179. Message(parser_e_illegal_expression);
  1180. { recovery }
  1181. sl.addconst(sl_vec,0,tvecnode(p).right.resultdef);
  1182. end;
  1183. end;
  1184. loadn :
  1185. sl.addsym(sl_load,tloadnode(p).symtableentry);
  1186. else
  1187. internalerror(200310282);
  1188. end;
  1189. end;
  1190. begin
  1191. sl:=tpropaccesslist.create;
  1192. addnode(p1);
  1193. result:=sl;
  1194. end;
  1195. function handle_staticfield_access(sym: tsym; var p1: tnode): boolean;
  1196. function handle_generic_staticfield_access:boolean;
  1197. var
  1198. tmp : tstoreddef;
  1199. pd : tprocdef;
  1200. begin
  1201. { in case we have a specialization inside a generic (thus the static var sym does not
  1202. exist) we simply simulate a non static access to avoid unnecessary errors }
  1203. if assigned(sym.owner.defowner) and (df_specialization in tstoreddef(sym.owner.defowner).defoptions) then
  1204. begin
  1205. tmp:=tstoreddef(sym.owner.defowner);
  1206. while assigned(tmp) do
  1207. begin
  1208. if df_generic in tmp.defoptions then
  1209. begin
  1210. p1.free;
  1211. if assigned(current_procinfo) then
  1212. begin
  1213. pd:=current_procinfo.get_normal_proc.procdef;
  1214. if assigned(pd) and pd.no_self_node then
  1215. p1:=cloadvmtaddrnode.create(ctypenode.create(pd.struct))
  1216. else
  1217. p1:=load_self_node;
  1218. end
  1219. else
  1220. p1:=load_self_node;
  1221. p1:=csubscriptnode.create(sym,p1);
  1222. exit(true);
  1223. end;
  1224. tmp:=tstoreddef(tmp.owner.defowner);
  1225. end;
  1226. end;
  1227. result:=false;
  1228. end;
  1229. var
  1230. static_name: shortstring;
  1231. srsymtable: tsymtable;
  1232. begin
  1233. result:=false;
  1234. { generate access code }
  1235. if (sp_static in sym.symoptions) then
  1236. begin
  1237. result:=true;
  1238. if handle_generic_staticfield_access then
  1239. exit;
  1240. static_name:=lower(generate_nested_name(sym.owner,'_'))+'_'+sym.name;
  1241. if sym.owner.defowner.typ=objectdef then
  1242. searchsym_in_class(tobjectdef(sym.owner.defowner),tobjectdef(sym.owner.defowner),static_name,sym,srsymtable,[ssf_search_helper])
  1243. else
  1244. searchsym_in_record(trecorddef(sym.owner.defowner),static_name,sym,srsymtable);
  1245. if assigned(sym) then
  1246. check_hints(sym,sym.symoptions,sym.deprecatedmsg);
  1247. p1.free;
  1248. p1:=nil;
  1249. { static syms are always stored as absolutevarsym to handle scope and storage properly }
  1250. propaccesslist_to_node(p1,nil,tabsolutevarsym(sym).ref);
  1251. end;
  1252. end;
  1253. function is_bitpacked_access(n: tnode): boolean;
  1254. begin
  1255. case n.nodetype of
  1256. vecn:
  1257. result:=
  1258. is_packed_array(tvecnode(n).left.resultdef) and
  1259. { only orddefs and enumdefs are actually bitpacked. Don't consider
  1260. e.g. an access to a 3-byte record as "bitpacked", since it
  1261. isn't }
  1262. (tvecnode(n).left.resultdef.typ = arraydef) and
  1263. (tarraydef(tvecnode(n).left.resultdef).elementdef.typ in [orddef,enumdef]) and
  1264. not(tarraydef(tvecnode(n).left.resultdef).elepackedbitsize in [8,16,32,64]);
  1265. subscriptn:
  1266. result:=
  1267. is_packed_record_or_object(tsubscriptnode(n).left.resultdef) and
  1268. { see above }
  1269. (tsubscriptnode(n).vs.vardef.typ in [orddef,enumdef]) and
  1270. (not(tsubscriptnode(n).vs.vardef.packedbitsize in [8,16,32,64]) or
  1271. (tsubscriptnode(n).vs.fieldoffset mod 8 <> 0));
  1272. else
  1273. result:=false;
  1274. end;
  1275. end;
  1276. function genloadfield(n: tnode; const fieldname: string): tnode;
  1277. var
  1278. vs : tsym;
  1279. begin
  1280. if not assigned(n.resultdef) then
  1281. typecheckpass(n);
  1282. vs:=tsym(tabstractrecorddef(n.resultdef).symtable.find(fieldname));
  1283. if not assigned(vs) or
  1284. (vs.typ<>fieldvarsym) then
  1285. internalerror(2010061902);
  1286. result:=csubscriptnode.create(vs,n);
  1287. end;
  1288. function has_no_code(n : tnode) : boolean;
  1289. begin
  1290. if n=nil then
  1291. begin
  1292. result:=true;
  1293. exit;
  1294. end;
  1295. case n.nodetype of
  1296. nothingn:
  1297. begin
  1298. result:=true;
  1299. exit;
  1300. end;
  1301. blockn:
  1302. begin
  1303. result:=has_no_code(tblocknode(n).left);
  1304. exit;
  1305. end;
  1306. statementn:
  1307. begin
  1308. repeat
  1309. result:=has_no_code(tstatementnode(n).left);
  1310. n:=tstatementnode(n).right;
  1311. until not(result) or not assigned(n);
  1312. exit;
  1313. end;
  1314. else
  1315. result:=false;
  1316. end;
  1317. end;
  1318. function check_for_sideeffect(var n: tnode; arg: pointer): foreachnoderesult;
  1319. begin
  1320. result:=fen_false;
  1321. if (n.nodetype in [assignn,calln,asmn,finalizetempsn]) or
  1322. ((n.nodetype=inlinen) and
  1323. tinlinenode(n).may_have_sideeffect_norecurse
  1324. ) or
  1325. ((mhs_exceptions in pmhs_flags(arg)^) and
  1326. ((n.nodetype in [derefn,vecn,divn,slashn]) or
  1327. ((n.nodetype=subscriptn) and is_implicit_pointer_object_type(tsubscriptnode(n).left.resultdef)) or
  1328. ((n.nodetype in [addn,subn,muln,unaryminusn]) and (n.localswitches*[cs_check_overflow,cs_check_range]<>[])) or
  1329. { float operations could throw an exception }
  1330. ((n.nodetype in [addn,subn,muln,slashn,unaryminusn,equaln,unequaln,gten,gtn,lten,ltn]) and is_real_or_cextended(tunarynode(n).left.resultdef))
  1331. )
  1332. ) or
  1333. ((n.nodetype=loadn) and
  1334. (
  1335. ((tloadnode(n).symtableentry.typ=absolutevarsym) and (tabsolutevarsym(tloadnode(n).symtableentry).abstyp=toaddr)) or
  1336. ((tloadnode(n).symtableentry.typ in [paravarsym,localvarsym,staticvarsym]) and
  1337. (vo_volatile in tabstractvarsym(tloadnode(n).symtableentry).varoptions)
  1338. )
  1339. )
  1340. ) or
  1341. { foreachonode does not recurse into the init code for temprefnode as this is done for
  1342. by the tempcreatenode but the considered tree might not contain the tempcreatenode so play
  1343. save and recurce into the init code if there is any }
  1344. ((n.nodetype=temprefn) and (ti_executeinitialisation in ttemprefnode(n).tempflags) and
  1345. might_have_sideeffects(ttemprefnode(n).tempinfo^.tempinitcode,pmhs_flags(arg)^)) then
  1346. result:=fen_norecurse_true
  1347. end;
  1348. function might_have_sideeffects(n : tnode; const flags : tmhs_flags) : boolean;
  1349. begin
  1350. result:=foreachnodestatic(n,@check_for_sideeffect,@flags);
  1351. end;
  1352. function check_for_conditional_nodes(var n: tnode; arg: pointer): foreachnoderesult;
  1353. begin
  1354. result:=fen_false;
  1355. { this check is not complete yet, but sufficent to cover the current use case: swapping
  1356. of trees in expressions }
  1357. if (n.nodetype in [ifn,whilerepeatn,forn,tryexceptn]) or
  1358. ((n.nodetype in [orn,andn]) and is_boolean(n.resultdef) and doshortbooleval(n)) then
  1359. result:=fen_norecurse_true;
  1360. end;
  1361. function has_conditional_nodes(n : tnode) : boolean;
  1362. begin
  1363. result:=foreachnodestatic(n,@check_for_conditional_nodes,nil);
  1364. end;
  1365. var
  1366. nodecount : dword;
  1367. function donodecount(var n: tnode; arg: pointer): foreachnoderesult;
  1368. begin
  1369. inc(nodecount);
  1370. result:=fen_false;
  1371. end;
  1372. function node_count(node : tnode) : dword;
  1373. begin
  1374. nodecount:=0;
  1375. foreachnodestatic(node,@donodecount,nil);
  1376. result:=nodecount;
  1377. end;
  1378. function donodecount_weighted(var n: tnode; arg: pointer): foreachnoderesult;
  1379. begin
  1380. if not(n.nodetype in [blockn,statementn,callparan,nothingn]) then
  1381. inc(nodecount);
  1382. result:=fen_false;
  1383. end;
  1384. function node_count_weighted(node : tnode) : dword;
  1385. begin
  1386. nodecount:=0;
  1387. foreachnodestatic(node,@donodecount_weighted,nil);
  1388. result:=nodecount;
  1389. end;
  1390. function is_const(node : tnode) : boolean;
  1391. begin
  1392. result:=is_constnode(node) or
  1393. ((node.nodetype=temprefn) and (ti_const in ttemprefnode(node).tempflags)) or
  1394. ((node.nodetype=loadn) and (tloadnode(node).symtableentry.typ=paravarsym) and (tparavarsym(tloadnode(node).symtableentry).varspez in [vs_const,vs_constref]));
  1395. end;
  1396. function actualtargetnode(n : pnode) : pnode;
  1397. begin
  1398. result:=n;
  1399. case n^.nodetype of
  1400. typeconvn:
  1401. if ttypeconvnode(n^).retains_value_location then
  1402. result:=actualtargetnode(@ttypeconvnode(n^).left);
  1403. else
  1404. ;
  1405. end;
  1406. end;
  1407. procedure replacenode(var dest,src : tnode);
  1408. var
  1409. t : tnode;
  1410. begin
  1411. t:=src;
  1412. { set src nil before free'ing dest because
  1413. src could be part of dest }
  1414. src:=nil;
  1415. dest.Free;
  1416. dest:=t;
  1417. end;
  1418. function get_open_const_array(p : tnode) : tnode;
  1419. begin
  1420. result:=p;
  1421. if (p.nodetype=derefn) and (tderefnode(p).left.nodetype=addrn) then
  1422. result:=get_open_const_array(taddrnode(tderefnode(result).left).left);
  1423. end;
  1424. function do_node_reset_flags(var n: tnode; arg: pointer): foreachnoderesult;
  1425. begin
  1426. result:=fen_false;
  1427. n.flags:=n.flags-tnodeflags(arg^);
  1428. end;
  1429. procedure node_reset_flags(p : tnode; nf : tnodeflags);
  1430. begin
  1431. foreachnodestatic(p,@do_node_reset_flags,@nf);
  1432. end;
  1433. type
  1434. tlocalswitchchange = record
  1435. cs : tlocalswitch;
  1436. enable : boolean;
  1437. end;
  1438. plocalswitchchange = ^tlocalswitchchange;
  1439. function do_change_local_settings(var p : tnode;plsc : pointer) : foreachnoderesult;
  1440. begin
  1441. if plocalswitchchange(plsc)^.enable then
  1442. include(p.localswitches, plocalswitchchange(plsc)^.cs)
  1443. else
  1444. exclude(p.localswitches, plocalswitchchange(plsc)^.cs);
  1445. result:=fen_true;
  1446. end;
  1447. procedure node_change_local_switch(p : tnode;cs : tlocalswitch;enable : boolean);
  1448. var
  1449. lsc : tlocalswitchchange;
  1450. begin
  1451. lsc.cs:=cs;
  1452. lsc.enable:=enable;
  1453. foreachnodestatic(p,@do_change_local_settings,@lsc);
  1454. end;
  1455. function doshortbooleval(p : tnode) : Boolean;
  1456. begin
  1457. Result:=(p.nodetype in [orn,andn]) and ((nf_short_bool in taddnode(p).flags) or not(cs_full_boolean_eval in p.localswitches));
  1458. end;
  1459. function is_constintvalue(p: tnode; l: Tconstexprint): Boolean;
  1460. begin
  1461. Result:=is_constintnode(p) and (tordconstnode(p).value=l);
  1462. end;
  1463. function is_inlinefunction(p: tnode; i: tinlinenumber): Boolean;
  1464. begin
  1465. Result:=(p.nodetype=inlinen) and (tinlinenode(p).inlinenumber=i);
  1466. end;
  1467. { checks if p is a series of length(a) statments, if yes, they are returned
  1468. in a and the function returns true }
  1469. function GetStatements(p : tnode;var a : array of tstatementnode) : Boolean;
  1470. var
  1471. i: Integer;
  1472. begin
  1473. Result:=false;
  1474. for i:=0 to high(a) do
  1475. begin
  1476. if not(assigned(p)) or not(p.nodetype=statementn) then
  1477. exit;
  1478. a[i]:=tstatementnode(p);
  1479. p:=tstatementnode(p).right;
  1480. end;
  1481. Result:=true;
  1482. end;
  1483. function MatchAndTransformNodesCommutative(n1,n2 : tnode;matchproc : TMatchProc2;transformproc : TTransformProc2;var res : tnode) : Boolean;
  1484. begin
  1485. res:=nil;
  1486. result:=true;
  1487. if matchproc(n1,n2) then
  1488. res:=transformproc(n1,n2)
  1489. else if matchproc(n2,n1) then
  1490. res:=transformproc(n2,n1)
  1491. else
  1492. result:=false;
  1493. end;
  1494. end.