ninl.pas 116 KB

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  1. {
  2. Copyright (c) 1998-2007 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 ninl;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. node,htypechk,cpuinfo,symtype;
  22. {$i compinnr.inc}
  23. type
  24. tinlinenode = class(tunarynode)
  25. inlinenumber : byte;
  26. constructor create(number : byte;is_const:boolean;l : tnode);virtual;
  27. constructor ppuload(t:tnodetype;ppufile:tcompilerppufile);override;
  28. procedure ppuwrite(ppufile:tcompilerppufile);override;
  29. function dogetcopy : tnode;override;
  30. function pass_1 : tnode;override;
  31. function pass_typecheck:tnode;override;
  32. function docompare(p: tnode): boolean; override;
  33. { pack and unpack are changed into for-loops by the compiler }
  34. function first_pack_unpack: tnode; virtual;
  35. { All the following routines currently
  36. call compilerprocs, unless they are
  37. overriden in which case, the code
  38. generator handles them.
  39. }
  40. function first_pi: tnode ; virtual;
  41. function first_arctan_real: tnode; virtual;
  42. function first_abs_real: tnode; virtual;
  43. function first_sqr_real: tnode; virtual;
  44. function first_sqrt_real: tnode; virtual;
  45. function first_ln_real: tnode; virtual;
  46. function first_cos_real: tnode; virtual;
  47. function first_sin_real: tnode; virtual;
  48. function first_exp_real: tnode; virtual;
  49. function first_frac_real: tnode; virtual;
  50. function first_round_real: tnode; virtual;
  51. function first_trunc_real: tnode; virtual;
  52. function first_int_real: tnode; virtual;
  53. private
  54. function handle_str: tnode;
  55. function handle_reset_rewrite_typed: tnode;
  56. function handle_text_read_write(filepara,params:Ttertiarynode;var newstatement:Tnode):boolean;
  57. function handle_typed_read_write(filepara,params:Ttertiarynode;var newstatement:Tnode):boolean;
  58. function handle_read_write: tnode;
  59. function handle_val: tnode;
  60. end;
  61. tinlinenodeclass = class of tinlinenode;
  62. var
  63. cinlinenode : tinlinenodeclass;
  64. function geninlinenode(number : byte;is_const:boolean;l : tnode) : tinlinenode;
  65. implementation
  66. uses
  67. verbose,globals,systems,
  68. globtype, cutils,
  69. symconst,symdef,symsym,symtable,paramgr,defutil,
  70. pass_1,
  71. ncal,ncon,ncnv,nadd,nld,nbas,nflw,nmem,nmat,nutils,
  72. cgbase,procinfo
  73. ;
  74. function geninlinenode(number : byte;is_const:boolean;l : tnode) : tinlinenode;
  75. begin
  76. geninlinenode:=cinlinenode.create(number,is_const,l);
  77. end;
  78. {*****************************************************************************
  79. TINLINENODE
  80. *****************************************************************************}
  81. constructor tinlinenode.create(number : byte;is_const:boolean;l : tnode);
  82. begin
  83. inherited create(inlinen,l);
  84. if is_const then
  85. include(flags,nf_inlineconst);
  86. inlinenumber:=number;
  87. end;
  88. constructor tinlinenode.ppuload(t:tnodetype;ppufile:tcompilerppufile);
  89. begin
  90. inherited ppuload(t,ppufile);
  91. inlinenumber:=ppufile.getbyte;
  92. end;
  93. procedure tinlinenode.ppuwrite(ppufile:tcompilerppufile);
  94. begin
  95. inherited ppuwrite(ppufile);
  96. ppufile.putbyte(inlinenumber);
  97. end;
  98. function tinlinenode.dogetcopy : tnode;
  99. var
  100. n : tinlinenode;
  101. begin
  102. n:=tinlinenode(inherited dogetcopy);
  103. n.inlinenumber:=inlinenumber;
  104. result:=n;
  105. end;
  106. function tinlinenode.handle_str : tnode;
  107. var
  108. lenpara,
  109. fracpara,
  110. newparas,
  111. tmppara,
  112. dest,
  113. source : tcallparanode;
  114. procname: string;
  115. is_real,is_enum : boolean;
  116. rt : aint;
  117. begin
  118. result := cerrornode.create;
  119. { make sure we got at least two parameters (if we got only one, }
  120. { this parameter may not be encapsulated in a callparan) }
  121. if not assigned(left) or
  122. (left.nodetype <> callparan) then
  123. begin
  124. CGMessage1(parser_e_wrong_parameter_size,'Str');
  125. exit;
  126. end;
  127. { get destination string }
  128. dest := tcallparanode(left);
  129. { get source para (number) }
  130. source := dest;
  131. while assigned(source.right) do
  132. source := tcallparanode(source.right);
  133. { destination parameter must be a normal (not a colon) parameter, this
  134. check is needed because str(v:len) also has 2 parameters }
  135. if (source=dest) or
  136. (cpf_is_colon_para in tcallparanode(dest).callparaflags) then
  137. begin
  138. CGMessage1(parser_e_wrong_parameter_size,'Str');
  139. exit;
  140. end;
  141. is_real:=(source.resultdef.typ = floatdef) or is_currency(source.resultdef);
  142. is_enum:=source.left.resultdef.typ=enumdef;
  143. if ((dest.left.resultdef.typ<>stringdef) and
  144. not(is_chararray(dest.left.resultdef))) or
  145. not(is_real or is_enum or
  146. (source.left.resultdef.typ=orddef)) then
  147. begin
  148. CGMessagePos(fileinfo,parser_e_illegal_expression);
  149. exit;
  150. end;
  151. { get len/frac parameters }
  152. lenpara := nil;
  153. fracpara := nil;
  154. if (cpf_is_colon_para in tcallparanode(dest.right).callparaflags) then
  155. begin
  156. lenpara := tcallparanode(dest.right);
  157. { we can let the callnode do the type checking of these parameters too, }
  158. { but then the error messages aren't as nice }
  159. if not is_integer(lenpara.resultdef) then
  160. begin
  161. CGMessagePos1(lenpara.fileinfo,
  162. type_e_integer_expr_expected,lenpara.resultdef.typename);
  163. exit;
  164. end;
  165. if (cpf_is_colon_para in tcallparanode(lenpara.right).callparaflags) then
  166. begin
  167. { parameters are in reverse order! }
  168. fracpara := lenpara;
  169. lenpara := tcallparanode(lenpara.right);
  170. if not is_real then
  171. begin
  172. CGMessagePos(lenpara.fileinfo,parser_e_illegal_colon_qualifier);
  173. exit
  174. end;
  175. if not is_integer(lenpara.resultdef) then
  176. begin
  177. CGMessagePos1(lenpara.fileinfo,
  178. type_e_integer_expr_expected,lenpara.resultdef.typename);
  179. exit;
  180. end;
  181. end;
  182. end;
  183. { generate the parameter list for the compilerproc }
  184. newparas := dest;
  185. { if we have a float parameter, insert the realtype, len and fracpara parameters }
  186. if is_real then
  187. begin
  188. { insert realtype parameter }
  189. if not is_currency(source.resultdef) then
  190. begin
  191. rt:=ord(tfloatdef(source.left.resultdef).floattype);
  192. newparas.right := ccallparanode.create(cordconstnode.create(
  193. rt,s32inttype,true),newparas.right);
  194. tmppara:=tcallparanode(newparas.right);
  195. end
  196. else
  197. tmppara:=newparas;
  198. { if necessary, insert a fraction parameter }
  199. if not assigned(fracpara) then
  200. begin
  201. tmppara.right := ccallparanode.create(
  202. cordconstnode.create(-1,s32inttype,false),
  203. tmppara.right);
  204. fracpara := tcallparanode(tmppara.right);
  205. end;
  206. { if necessary, insert a length para }
  207. if not assigned(lenpara) then
  208. fracpara.right := ccallparanode.create(
  209. cordconstnode.create(-32767,s32inttype,false),
  210. fracpara.right);
  211. end
  212. else if is_enum then
  213. begin
  214. {Insert a reference to the ord2string index.}
  215. newparas.right:=Ccallparanode.create(
  216. Caddrnode.create_internal(
  217. Crttinode.create(Tenumdef(source.left.resultdef),fullrtti,rdt_normal)
  218. ),
  219. newparas.right);
  220. {Insert a reference to the typinfo.}
  221. newparas.right:=Ccallparanode.create(
  222. Caddrnode.create_internal(
  223. Crttinode.create(Tenumdef(source.left.resultdef),fullrtti,rdt_ord2str)
  224. ),
  225. newparas.right);
  226. {Insert a type conversion from the enumeration to longint.}
  227. source.left:=Ctypeconvnode.create_internal(source.left,s32inttype);
  228. typecheckpass(source.left);
  229. { if necessary, insert a length para }
  230. if not assigned(lenpara) then
  231. Tcallparanode(Tcallparanode(newparas.right).right).right:=
  232. Ccallparanode.create(
  233. cordconstnode.create(-1,s32inttype,false),
  234. Tcallparanode(Tcallparanode(newparas.right).right).right
  235. );
  236. end
  237. else
  238. { for a normal parameter, insert a only length parameter if one is missing }
  239. if not assigned(lenpara) then
  240. newparas.right := ccallparanode.create(cordconstnode.create(-1,s32inttype,false),
  241. newparas.right);
  242. { remove the parameters from the original node so they won't get disposed, }
  243. { since they're reused }
  244. left := nil;
  245. { create procedure name }
  246. if is_chararray(dest.resultdef) then
  247. procname:='fpc_chararray_'
  248. else
  249. procname := 'fpc_' + tstringdef(dest.resultdef).stringtypname+'_';
  250. if is_real then
  251. if is_currency(source.resultdef) then
  252. procname := procname + 'currency'
  253. else
  254. procname := procname + 'float'
  255. else if is_enum then
  256. procname:=procname+'enum'
  257. else
  258. case torddef(source.resultdef).ordtype of
  259. {$ifdef cpu64bit}
  260. u64bit:
  261. procname := procname + 'uint';
  262. {$else}
  263. u32bit:
  264. procname := procname + 'uint';
  265. u64bit:
  266. procname := procname + 'qword';
  267. scurrency,
  268. s64bit:
  269. procname := procname + 'int64';
  270. {$endif}
  271. else
  272. procname := procname + 'sint';
  273. end;
  274. { free the errornode we generated in the beginning }
  275. result.free;
  276. { create the call node, }
  277. result := ccallnode.createintern(procname,newparas);
  278. end;
  279. function tinlinenode.handle_reset_rewrite_typed: tnode;
  280. begin
  281. { since this is a "in_xxxx_typedfile" node, we can be sure we have }
  282. { a typed file as argument and we don't have to check it again (JM) }
  283. { add the recsize parameter }
  284. { note: for some reason, the parameter of intern procedures with only one }
  285. { parameter is gets lifted out of its original tcallparanode (see round }
  286. { line 1306 of ncal.pas), so recreate a tcallparanode here (JM) }
  287. left := ccallparanode.create(cordconstnode.create(
  288. tfiledef(left.resultdef).typedfiledef.size,s32inttype,true),
  289. ccallparanode.create(left,nil));
  290. { create the correct call }
  291. if inlinenumber=in_reset_typedfile then
  292. result := ccallnode.createintern('fpc_reset_typed',left)
  293. else
  294. result := ccallnode.createintern('fpc_rewrite_typed',left);
  295. { make sure left doesn't get disposed, since we use it in the new call }
  296. left := nil;
  297. end;
  298. function Tinlinenode.handle_text_read_write(filepara,params:Ttertiarynode;var newstatement:Tnode):boolean;
  299. {Read(ln)/write(ln) for text files.}
  300. const procprefixes:array[boolean] of string[15]=('fpc_write_text_','fpc_read_text_');
  301. var error_para,is_real,special_handling,found_error,do_read:boolean;
  302. p1:Tnode;
  303. nextpara,
  304. indexpara,
  305. lenpara,
  306. para,
  307. fracpara:Tcallparanode;
  308. temp:Ttempcreatenode;
  309. readfunctype:Tdef;
  310. name:string[31];
  311. begin
  312. para:=Tcallparanode(params);
  313. found_error:=false;
  314. do_read:=inlinenumber in [in_read_x,in_readln_x,in_readstr_x];
  315. while assigned(para) do
  316. begin
  317. { is this parameter faulty? }
  318. error_para:=false;
  319. { is this parameter a real? }
  320. is_real:=false;
  321. { type used for the read(), this is used to check
  322. whether a temp is needed for range checking }
  323. readfunctype:=nil;
  324. { can't read/write types }
  325. if para.left.nodetype=typen then
  326. begin
  327. CGMessagePos(para.fileinfo,type_e_cant_read_write_type);
  328. error_para := true;
  329. end;
  330. { support writeln(procvar) }
  331. if para.left.resultdef.typ=procvardef then
  332. begin
  333. p1:=ccallnode.create_procvar(nil,para.left);
  334. typecheckpass(p1);
  335. para.left:=p1;
  336. end;
  337. case para.left.resultdef.typ of
  338. stringdef :
  339. name:=procprefixes[do_read]+tstringdef(para.left.resultdef).stringtypname;
  340. pointerdef :
  341. begin
  342. if (not is_pchar(para.left.resultdef)) or do_read then
  343. begin
  344. CGMessagePos(para.fileinfo,type_e_cant_read_write_type);
  345. error_para := true;
  346. end
  347. else
  348. name:=procprefixes[do_read]+'pchar_as_pointer';
  349. end;
  350. floatdef :
  351. begin
  352. is_real:=true;
  353. if Tfloatdef(para.left.resultdef).floattype=s64currency then
  354. name := procprefixes[do_read]+'currency'
  355. else
  356. begin
  357. name := procprefixes[do_read]+'float';
  358. readfunctype:=pbestrealtype^;
  359. end;
  360. end;
  361. enumdef:
  362. begin
  363. name:=procprefixes[do_read]+'enum';
  364. readfunctype:=s32inttype;
  365. end;
  366. orddef :
  367. begin
  368. case Torddef(para.left.resultdef).ordtype of
  369. {$ifdef cpu64bit}
  370. s64bit,
  371. {$endif cpu64bit}
  372. s8bit,
  373. s16bit,
  374. s32bit :
  375. begin
  376. name := procprefixes[do_read]+'sint';
  377. readfunctype:=sinttype;
  378. end;
  379. {$ifdef cpu64bit}
  380. u64bit,
  381. {$endif cpu64bit}
  382. u8bit,
  383. u16bit,
  384. u32bit :
  385. begin
  386. name := procprefixes[do_read]+'uint';
  387. readfunctype:=uinttype;
  388. end;
  389. uchar :
  390. begin
  391. name := procprefixes[do_read]+'char';
  392. readfunctype:=cchartype;
  393. end;
  394. uwidechar :
  395. begin
  396. name := procprefixes[do_read]+'widechar';
  397. readfunctype:=cwidechartype;
  398. end;
  399. {$ifndef cpu64bit}
  400. s64bit :
  401. begin
  402. name := procprefixes[do_read]+'int64';
  403. readfunctype:=s64inttype;
  404. end;
  405. u64bit :
  406. begin
  407. name := procprefixes[do_read]+'qword';
  408. readfunctype:=u64inttype;
  409. end;
  410. {$endif cpu64bit}
  411. scurrency:
  412. begin
  413. name := procprefixes[do_read]+'currency';
  414. readfunctype:=s64currencytype;
  415. is_real:=true;
  416. end;
  417. bool8bit,
  418. bool16bit,
  419. bool32bit,
  420. bool64bit:
  421. if do_read then
  422. begin
  423. CGMessagePos(para.fileinfo,type_e_cant_read_write_type);
  424. error_para := true;
  425. end
  426. else
  427. begin
  428. name := procprefixes[do_read]+'boolean';
  429. readfunctype:=booltype;
  430. end
  431. else
  432. CGMessagePos(para.fileinfo,type_e_cant_read_write_type);
  433. error_para := true;
  434. end;
  435. end;
  436. variantdef :
  437. name:=procprefixes[do_read]+'variant';
  438. arraydef :
  439. begin
  440. if is_chararray(para.left.resultdef) then
  441. name := procprefixes[do_read]+'pchar_as_array'
  442. else
  443. begin
  444. CGMessagePos(para.fileinfo,type_e_cant_read_write_type);
  445. error_para := true;
  446. end
  447. end
  448. else
  449. CGMessagePos(para.fileinfo,type_e_cant_read_write_type);
  450. error_para := true;
  451. end;
  452. { check for length/fractional colon para's }
  453. fracpara:=nil;
  454. lenpara:=nil;
  455. indexpara:=nil;
  456. if assigned(para.right) and
  457. (cpf_is_colon_para in tcallparanode(para.right).callparaflags) then
  458. begin
  459. lenpara := tcallparanode(para.right);
  460. if assigned(lenpara.right) and
  461. (cpf_is_colon_para in tcallparanode(lenpara.right).callparaflags) then
  462. fracpara:=tcallparanode(lenpara.right);
  463. end;
  464. { get the next parameter now already, because we're going }
  465. { to muck around with the pointers }
  466. if assigned(fracpara) then
  467. nextpara := tcallparanode(fracpara.right)
  468. else if assigned(lenpara) then
  469. nextpara := tcallparanode(lenpara.right)
  470. else
  471. nextpara := tcallparanode(para.right);
  472. { check if a fracpara is allowed }
  473. if assigned(fracpara) and not is_real then
  474. begin
  475. CGMessagePos(fracpara.fileinfo,parser_e_illegal_colon_qualifier);
  476. error_para := true;
  477. end
  478. else if assigned(lenpara) and do_read then
  479. begin
  480. { I think this is already filtered out by parsing, but I'm not sure (JM) }
  481. CGMessagePos(lenpara.fileinfo,parser_e_illegal_colon_qualifier);
  482. error_para := true;
  483. end;
  484. { adjust found_error }
  485. found_error := found_error or error_para;
  486. if not error_para then
  487. begin
  488. special_handling:=false;
  489. { create dummy frac/len para's if necessary }
  490. if not do_read then
  491. begin
  492. { difference in default value for floats and the rest :( }
  493. if not is_real then
  494. begin
  495. if not assigned(lenpara) then
  496. lenpara := ccallparanode.create(
  497. cordconstnode.create(0,s32inttype,false),nil)
  498. else
  499. { make sure we don't pass the successive }
  500. { parameters too. We also already have a }
  501. { reference to the next parameter in }
  502. { nextpara }
  503. lenpara.right := nil;
  504. end
  505. else
  506. begin
  507. if not assigned(lenpara) then
  508. lenpara := ccallparanode.create(
  509. cordconstnode.create(-32767,s32inttype,false),nil);
  510. { also create a default fracpara if necessary }
  511. if not assigned(fracpara) then
  512. fracpara := ccallparanode.create(
  513. cordconstnode.create(-1,s32inttype,false),nil);
  514. { add it to the lenpara }
  515. lenpara.right := fracpara;
  516. if not is_currency(para.left.resultdef) then
  517. begin
  518. { and add the realtype para (this also removes the link }
  519. { to any parameters coming after it) }
  520. fracpara.right := ccallparanode.create(
  521. cordconstnode.create(ord(tfloatdef(para.left.resultdef).floattype),
  522. s32inttype,true),nil);
  523. end;
  524. end;
  525. if para.left.resultdef.typ=enumdef then
  526. begin
  527. {To write(ln) an enum we need a some extra parameters.}
  528. {Insert a reference to the ord2string index.}
  529. indexpara:=Ccallparanode.create(
  530. Caddrnode.create_internal(
  531. Crttinode.create(Tenumdef(para.left.resultdef),fullrtti,rdt_normal)
  532. ),
  533. nil);
  534. {Insert a reference to the typinfo.}
  535. indexpara:=Ccallparanode.create(
  536. Caddrnode.create_internal(
  537. Crttinode.create(Tenumdef(para.left.resultdef),fullrtti,rdt_ord2str)
  538. ),
  539. indexpara);
  540. {Insert a type conversion to to convert the enum to longint.}
  541. para.left:=Ctypeconvnode.create_internal(para.left,s32inttype);
  542. typecheckpass(para.left);
  543. end;
  544. end
  545. else
  546. begin
  547. {To read(ln) an enum we need a an extra parameter.}
  548. if para.left.resultdef.typ=enumdef then
  549. begin
  550. {Insert a reference to the string2ord index.}
  551. indexpara:=Ccallparanode.create(Caddrnode.create_internal(
  552. Crttinode.create(Tenumdef(para.left.resultdef),fullrtti,rdt_str2ord)
  553. ),nil);
  554. {Insert a type conversion to to convert the enum to longint.}
  555. para.left:=Ctypeconvnode.create_internal(para.left,s32inttype);
  556. typecheckpass(para.left);
  557. end;
  558. { special handling of reading small numbers, because the helpers }
  559. { expect a longint/card/bestreal var parameter. Use a temp. can't }
  560. { use functions because then the call to FPC_IOCHECK destroys }
  561. { their result before we can store it }
  562. if (readfunctype<>nil) and (para.left.resultdef<>readfunctype) then
  563. special_handling:=true;
  564. end;
  565. if special_handling then
  566. begin
  567. { since we're not going to pass the parameter as var-parameter }
  568. { to the read function, manually check whether the parameter }
  569. { can be used as var-parameter (e.g., whether it isn't a }
  570. { property) }
  571. valid_for_var(para.left,true);
  572. { create the parameter list: the temp ... }
  573. temp := ctempcreatenode.create(readfunctype,readfunctype.size,tt_persistent,false);
  574. addstatement(Tstatementnode(newstatement),temp);
  575. { ... and the file }
  576. p1 := ccallparanode.create(ctemprefnode.create(temp),
  577. filepara.getcopy);
  578. Tcallparanode(Tcallparanode(p1).right).right:=indexpara;
  579. { create the call to the helper }
  580. addstatement(Tstatementnode(newstatement),
  581. ccallnode.createintern(name,tcallparanode(p1)));
  582. { assign the result to the original var (this automatically }
  583. { takes care of range checking) }
  584. addstatement(Tstatementnode(newstatement),
  585. cassignmentnode.create(para.left,
  586. ctemprefnode.create(temp)));
  587. { release the temp location }
  588. addstatement(Tstatementnode(newstatement),ctempdeletenode.create(temp));
  589. { statement of para is used }
  590. para.left := nil;
  591. { free the enclosing tcallparanode, but not the }
  592. { parameters coming after it }
  593. para.right := nil;
  594. para.free;
  595. end
  596. else
  597. { read of non s/u-8/16bit, or a write }
  598. begin
  599. { add the filepara to the current parameter }
  600. para.right := filepara.getcopy;
  601. {Add the lenpara and the indexpara(s) (fracpara and realtype are
  602. already linked with the lenpara if necessary).}
  603. if indexpara=nil then
  604. Tcallparanode(para.right).right:=lenpara
  605. else
  606. begin
  607. if lenpara=nil then
  608. Tcallparanode(para.right).right:=indexpara
  609. else
  610. begin
  611. Tcallparanode(para.right).right:=lenpara;
  612. lenpara.right:=indexpara;
  613. end;
  614. { indexpara.right:=lenpara;}
  615. end;
  616. { in case of writing a chararray, add whether it's }
  617. { zero-based }
  618. if para.left.resultdef.typ=arraydef then
  619. para := ccallparanode.create(cordconstnode.create(
  620. ord(tarraydef(para.left.resultdef).lowrange=0),booltype,false),para);
  621. { create the call statement }
  622. addstatement(Tstatementnode(newstatement),
  623. ccallnode.createintern(name,para));
  624. end
  625. end
  626. else
  627. { error_para = true }
  628. begin
  629. { free the parameter, since it isn't referenced anywhere anymore }
  630. para.right := nil;
  631. para.free;
  632. if assigned(lenpara) then
  633. begin
  634. lenpara.right := nil;
  635. lenpara.free;
  636. end;
  637. if assigned(fracpara) then
  638. begin
  639. fracpara.right := nil;
  640. fracpara.free;
  641. end;
  642. end;
  643. { process next parameter }
  644. para := nextpara;
  645. end;
  646. { if no error, add the write(ln)/read(ln) end calls }
  647. if not found_error then
  648. begin
  649. case inlinenumber of
  650. in_read_x,
  651. in_readstr_x:
  652. name:='fpc_read_end';
  653. in_write_x,
  654. in_writestr_x:
  655. name:='fpc_write_end';
  656. in_readln_x:
  657. name:='fpc_readln_end';
  658. in_writeln_x:
  659. name:='fpc_writeln_end';
  660. end;
  661. addstatement(Tstatementnode(newstatement),ccallnode.createintern(name,filepara));
  662. end;
  663. handle_text_read_write:=found_error;
  664. end;
  665. function Tinlinenode.handle_typed_read_write(filepara,params:Ttertiarynode;var newstatement:Tnode):boolean;
  666. {Read/write for typed files.}
  667. const procprefixes:array[boolean] of string[15]=('fpc_typed_write','fpc_typed_read');
  668. procnamesdisplay:array[boolean,boolean] of string[8] = (('Write','Read'),('WriteStr','ReadStr'));
  669. var found_error,do_read,is_rwstr:boolean;
  670. para,nextpara:Tcallparanode;
  671. p1:Tnode;
  672. temp:Ttempcreatenode;
  673. begin
  674. found_error:=false;
  675. para:=Tcallparanode(params);
  676. do_read:=inlinenumber in [in_read_x,in_readln_x,in_readstr_x];
  677. is_rwstr := inlinenumber in [in_readstr_x,in_writestr_x];
  678. { add the typesize to the filepara }
  679. if filepara.resultdef.typ=filedef then
  680. filepara.right := ccallparanode.create(cordconstnode.create(
  681. tfiledef(filepara.resultdef).typedfiledef.size,s32inttype,true),nil);
  682. { check for "no parameters" (you need at least one extra para for typed files) }
  683. if not assigned(para) then
  684. begin
  685. CGMessage1(parser_e_wrong_parameter_size,procnamesdisplay[is_rwstr,do_read]);
  686. found_error := true;
  687. end;
  688. { process all parameters }
  689. while assigned(para) do
  690. begin
  691. { check if valid parameter }
  692. if para.left.nodetype=typen then
  693. begin
  694. CGMessagePos(para.left.fileinfo,type_e_cant_read_write_type);
  695. found_error := true;
  696. end;
  697. { support writeln(procvar) }
  698. if (para.left.resultdef.typ=procvardef) then
  699. begin
  700. p1:=ccallnode.create_procvar(nil,para.left);
  701. typecheckpass(p1);
  702. para.left:=p1;
  703. end;
  704. if filepara.resultdef.typ=filedef then
  705. inserttypeconv(para.left,tfiledef(filepara.resultdef).typedfiledef);
  706. if assigned(para.right) and
  707. (cpf_is_colon_para in tcallparanode(para.right).callparaflags) then
  708. begin
  709. CGMessagePos(para.right.fileinfo,parser_e_illegal_colon_qualifier);
  710. { skip all colon para's }
  711. nextpara := tcallparanode(tcallparanode(para.right).right);
  712. while assigned(nextpara) and (cpf_is_colon_para in nextpara.callparaflags) do
  713. nextpara := tcallparanode(nextpara.right);
  714. found_error := true;
  715. end
  716. else
  717. { get next parameter }
  718. nextpara := tcallparanode(para.right);
  719. { When we have a call, we have a problem: you can't pass the }
  720. { result of a call as a formal const parameter. Solution: }
  721. { assign the result to a temp and pass this temp as parameter }
  722. { This is not very efficient, but write(typedfile,x) is }
  723. { already slow by itself anyway (no buffering) (JM) }
  724. { Actually, thge same goes for every non-simple expression }
  725. { (such as an addition, ...) -> put everything but load nodes }
  726. { into temps (JM) }
  727. { of course, this must only be allowed for writes!!! (JM) }
  728. if not(do_read) and (para.left.nodetype <> loadn) then
  729. begin
  730. { create temp for result }
  731. temp := ctempcreatenode.create(para.left.resultdef,
  732. para.left.resultdef.size,tt_persistent,false);
  733. addstatement(Tstatementnode(newstatement),temp);
  734. { assign result to temp }
  735. addstatement(Tstatementnode(newstatement),
  736. cassignmentnode.create(ctemprefnode.create(temp),
  737. para.left));
  738. { replace (reused) paranode with temp }
  739. para.left := ctemprefnode.create(temp);
  740. end;
  741. { add fileparameter }
  742. para.right := filepara.getcopy;
  743. { create call statment }
  744. { since the parameters are in the correct order, we have to insert }
  745. { the statements always at the end of the current block }
  746. addstatement(Tstatementnode(newstatement),
  747. Ccallnode.createintern(procprefixes[do_read],para
  748. ));
  749. { if we used a temp, free it }
  750. if para.left.nodetype = temprefn then
  751. addstatement(Tstatementnode(newstatement),ctempdeletenode.create(temp));
  752. { process next parameter }
  753. para := nextpara;
  754. end;
  755. { free the file parameter }
  756. filepara.free;
  757. handle_typed_read_write:=found_error;
  758. end;
  759. function tinlinenode.handle_read_write: tnode;
  760. var
  761. filepara,
  762. nextpara,
  763. params : tcallparanode;
  764. newstatement : tstatementnode;
  765. newblock : tblocknode;
  766. filetemp : Ttempcreatenode;
  767. name : string[31];
  768. textsym : ttypesym;
  769. readfunctype : tdef;
  770. is_typed,
  771. do_read,
  772. is_rwstr,
  773. found_error : boolean;
  774. begin
  775. filepara := nil;
  776. is_typed := false;
  777. filetemp := nil;
  778. do_read := inlinenumber in [in_read_x,in_readln_x,in_readstr_x];
  779. is_rwstr := inlinenumber in [in_readstr_x,in_writestr_x];
  780. { if we fail, we can quickly exit this way. We must generate something }
  781. { instead of the inline node, because firstpass will bomb with an }
  782. { internalerror if it encounters a read/write }
  783. result := cerrornode.create;
  784. { reverse the parameters (needed to get the colon parameters in the }
  785. { correct order when processing write(ln) }
  786. left := reverseparameters(tcallparanode(left));
  787. if is_rwstr then
  788. begin
  789. filepara := tcallparanode(left);
  790. { needs at least two parameters: source/dest string + min. 1 value }
  791. if not(assigned(filepara)) or
  792. not(assigned(filepara.right)) then
  793. begin
  794. CGMessagePos1(fileinfo,parser_e_wrong_parameter_size,'ReadStr/WriteStr');
  795. exit;
  796. end
  797. else if (filepara.resultdef.typ <> stringdef) then
  798. begin
  799. { convert chararray to string, or give an appropriate error message }
  800. { (if you want to optimize to use shortstring, keep in mind that }
  801. { readstr internally always uses ansistring, and to account for }
  802. { chararrays with > 255 characters) }
  803. inserttypeconv(filepara.left,cansistringtype);
  804. if codegenerror then
  805. exit;
  806. end
  807. end
  808. else if assigned(left) then
  809. begin
  810. { check if we have a file parameter and if yes, what kind it is }
  811. filepara := tcallparanode(left);
  812. if (filepara.resultdef.typ=filedef) then
  813. begin
  814. if (tfiledef(filepara.resultdef).filetyp=ft_untyped) then
  815. begin
  816. CGMessagePos(fileinfo,type_e_no_read_write_for_untyped_file);
  817. exit;
  818. end
  819. else
  820. begin
  821. if (tfiledef(filepara.resultdef).filetyp=ft_typed) then
  822. begin
  823. if (inlinenumber in [in_readln_x,in_writeln_x]) then
  824. begin
  825. CGMessagePos(fileinfo,type_e_no_readln_writeln_for_typed_file);
  826. exit;
  827. end;
  828. is_typed := true;
  829. end
  830. end;
  831. end
  832. else
  833. filepara := nil;
  834. end;
  835. { create a blocknode in which the successive write/read statements will be }
  836. { put, since they belong together. Also create a dummy statement already to }
  837. { make inserting of additional statements easier }
  838. newblock:=internalstatements(newstatement);
  839. { if we don't have a filepara, create one containing the default }
  840. if not assigned(filepara) or
  841. is_rwstr then
  842. begin
  843. { since the input/output variables are threadvars loading them into
  844. a temp once is faster. Create a temp which will hold a pointer to the file }
  845. filetemp := ctempcreatenode.create(voidpointertype,voidpointertype.size,tt_persistent,true);
  846. addstatement(newstatement,filetemp);
  847. { make sure the resultdef of the temp (and as such of the }
  848. { temprefs coming after it) is set (necessary because the }
  849. { temprefs will be part of the filepara, of which we need }
  850. { the resultdef later on and temprefs can only be }
  851. { typecheckpassed if the resultdef of the temp is known) }
  852. typecheckpass(tnode(filetemp));
  853. if not is_rwstr then
  854. begin
  855. { assign the address of the file to the temp }
  856. if do_read then
  857. name := 'input'
  858. else
  859. name := 'output';
  860. addstatement(newstatement,
  861. cassignmentnode.create(ctemprefnode.create(filetemp),
  862. ccallnode.createintern('fpc_get_'+name,nil)));
  863. end
  864. else
  865. begin
  866. if (do_read) then
  867. name := 'fpc_setupreadstr_'
  868. else
  869. name := 'fpc_setupwritestr_';
  870. name:=name+tstringdef(filepara.resultdef).stringtypname;
  871. { remove the source/destination string parameter from the }
  872. { parameter chain }
  873. left:=filepara.right;
  874. filepara.right:=nil;
  875. { pass the source/destination string to the setup routine, which }
  876. { will store the string's address in the returned textrec }
  877. addstatement(newstatement,
  878. cassignmentnode.create(ctemprefnode.create(filetemp),
  879. ccallnode.createintern(name,filepara)));
  880. end;
  881. { create a new fileparameter as follows: file_type(temp^) }
  882. { (so that we pass the value and not the address of the temp }
  883. { to the read/write routine) }
  884. textsym:=search_system_type('TEXT');
  885. filepara := ccallparanode.create(ctypeconvnode.create_internal(
  886. cderefnode.create(ctemprefnode.create(filetemp)),textsym.typedef),nil);
  887. end
  888. else
  889. { remove filepara from the parameter chain }
  890. begin
  891. left := filepara.right;
  892. filepara.right := nil;
  893. { the file para is a var parameter, but it must be valid already }
  894. set_varstate(filepara.left,vs_readwritten,[vsf_must_be_valid]);
  895. { check if we should make a temp to store the result of a complex }
  896. { expression (better heuristics, anyone?) (JM) }
  897. if (filepara.left.nodetype <> loadn) then
  898. begin
  899. { create a temp which will hold a pointer to the file }
  900. filetemp := ctempcreatenode.create(voidpointertype,voidpointertype.size,tt_persistent,true);
  901. { add it to the statements }
  902. addstatement(newstatement,filetemp);
  903. { make sure the resultdef of the temp (and as such of the }
  904. { temprefs coming after it) is set (necessary because the }
  905. { temprefs will be part of the filepara, of which we need }
  906. { the resultdef later on and temprefs can only be }
  907. { typecheckpassed if the resultdef of the temp is known) }
  908. typecheckpass(tnode(filetemp));
  909. { assign the address of the file to the temp }
  910. addstatement(newstatement,
  911. cassignmentnode.create(ctemprefnode.create(filetemp),
  912. caddrnode.create_internal(filepara.left)));
  913. typecheckpass(newstatement.left);
  914. { create a new fileparameter as follows: file_type(temp^) }
  915. { (so that we pass the value and not the address of the temp }
  916. { to the read/write routine) }
  917. nextpara := ccallparanode.create(ctypeconvnode.create_internal(
  918. cderefnode.create(ctemprefnode.create(filetemp)),filepara.left.resultdef),nil);
  919. { replace the old file para with the new one }
  920. filepara.left := nil;
  921. filepara.free;
  922. filepara := nextpara;
  923. end;
  924. end;
  925. { the resultdef of the filepara must be set since it's }
  926. { used below }
  927. filepara.get_paratype;
  928. { now, filepara is nowhere referenced anymore, so we can safely dispose it }
  929. { if something goes wrong or at the end of the procedure }
  930. { we're going to reuse the paranodes, so make sure they don't get freed }
  931. { twice }
  932. params:=Tcallparanode(left);
  933. left := nil;
  934. if is_typed then
  935. found_error:=handle_typed_read_write(filepara,Ttertiarynode(params),newstatement)
  936. else
  937. found_error:=handle_text_read_write(filepara,Ttertiarynode(params),newstatement);
  938. { if we found an error, simply delete the generated blocknode }
  939. if found_error then
  940. newblock.free
  941. else
  942. begin
  943. { deallocate the temp for the file para if we used one }
  944. if assigned(filetemp) then
  945. addstatement(newstatement,ctempdeletenode.create(filetemp));
  946. { otherwise return the newly generated block of instructions, }
  947. { but first free the errornode we generated at the beginning }
  948. result.free;
  949. result := newblock
  950. end;
  951. end;
  952. function tinlinenode.handle_val: tnode;
  953. var
  954. procname,
  955. suffix : string[31];
  956. sourcepara,
  957. destpara,
  958. codepara,
  959. sizepara,
  960. newparas : tcallparanode;
  961. orgcode,tc : tnode;
  962. newstatement : tstatementnode;
  963. newblock : tblocknode;
  964. tempcode : ttempcreatenode;
  965. begin
  966. { for easy exiting if something goes wrong }
  967. result := cerrornode.create;
  968. { check the amount of parameters }
  969. if not(assigned(left)) or
  970. not(assigned(tcallparanode(left).right)) then
  971. begin
  972. CGMessage1(parser_e_wrong_parameter_size,'Val');
  973. exit;
  974. end;
  975. { reverse parameters for easier processing }
  976. left := reverseparameters(tcallparanode(left));
  977. { get the parameters }
  978. tempcode := nil;
  979. orgcode := nil;
  980. sizepara := nil;
  981. sourcepara := tcallparanode(left);
  982. destpara := tcallparanode(sourcepara.right);
  983. codepara := tcallparanode(destpara.right);
  984. { check if codepara is valid }
  985. if assigned(codepara) and
  986. (
  987. (codepara.resultdef.typ <> orddef)
  988. {$ifndef cpu64bit}
  989. or is_64bitint(codepara.resultdef)
  990. {$endif cpu64bit}
  991. ) then
  992. begin
  993. CGMessagePos1(codepara.fileinfo,type_e_integer_expr_expected,codepara.resultdef.typename);
  994. exit;
  995. end;
  996. { check if dest para is valid }
  997. if not(destpara.resultdef.typ in [orddef,floatdef,enumdef]) then
  998. begin
  999. CGMessagePos(destpara.fileinfo,type_e_integer_or_real_expr_expected);
  1000. exit;
  1001. end;
  1002. { we're going to reuse the exisiting para's, so make sure they }
  1003. { won't be disposed }
  1004. left := nil;
  1005. { create the blocknode which will hold the generated statements + }
  1006. { an initial dummy statement }
  1007. newblock:=internalstatements(newstatement);
  1008. { do we need a temp for code? Yes, if no code specified, or if }
  1009. { code is not a 32bit parameter (we already checked whether the }
  1010. { the code para, if specified, was an orddef) }
  1011. if not assigned(codepara) or
  1012. (codepara.resultdef.size<>sinttype.size) then
  1013. begin
  1014. tempcode := ctempcreatenode.create(sinttype,sinttype.size,tt_persistent,false);
  1015. addstatement(newstatement,tempcode);
  1016. { set the resultdef of the temp (needed to be able to get }
  1017. { the resultdef of the tempref used in the new code para) }
  1018. typecheckpass(tnode(tempcode));
  1019. { create a temp codepara, but save the original code para to }
  1020. { assign the result to later on }
  1021. if assigned(codepara) then
  1022. begin
  1023. orgcode := codepara.left;
  1024. codepara.left := ctemprefnode.create(tempcode);
  1025. end
  1026. else
  1027. codepara := ccallparanode.create(ctemprefnode.create(tempcode),nil);
  1028. { we need its resultdef later on }
  1029. codepara.get_paratype;
  1030. end
  1031. else if (torddef(codepara.resultdef).ordtype = torddef(sinttype).ordtype) then
  1032. { because code is a var parameter, it must match types exactly }
  1033. { however, since it will return values in [0..255], both longints }
  1034. { and cardinals are fine. Since the formal code para type is }
  1035. { longint, insert a typecoversion to longint for cardinal para's }
  1036. begin
  1037. codepara.left := ctypeconvnode.create_internal(codepara.left,sinttype);
  1038. { make it explicit, oterwise you may get a nonsense range }
  1039. { check error if the cardinal already contained a value }
  1040. { > $7fffffff }
  1041. codepara.get_paratype;
  1042. end;
  1043. { create the procedure name }
  1044. procname := 'fpc_val_';
  1045. case destpara.resultdef.typ of
  1046. orddef:
  1047. begin
  1048. case torddef(destpara.resultdef).ordtype of
  1049. {$ifdef cpu64bit}
  1050. s64bit,
  1051. {$endif cpu64bit}
  1052. s8bit,
  1053. s16bit,
  1054. s32bit:
  1055. begin
  1056. suffix := 'sint_';
  1057. { we also need a destsize para in this case }
  1058. sizepara := ccallparanode.create(cordconstnode.create
  1059. (destpara.resultdef.size,s32inttype,true),nil);
  1060. end;
  1061. {$ifdef cpu64bit}
  1062. u64bit,
  1063. {$endif cpu64bit}
  1064. u8bit,
  1065. u16bit,
  1066. u32bit:
  1067. suffix := 'uint_';
  1068. {$ifndef cpu64bit}
  1069. s64bit: suffix := 'int64_';
  1070. u64bit: suffix := 'qword_';
  1071. {$endif cpu64bit}
  1072. scurrency: suffix := 'currency_';
  1073. else
  1074. internalerror(200304225);
  1075. end;
  1076. end;
  1077. floatdef:
  1078. suffix:='real_';
  1079. enumdef:
  1080. begin
  1081. suffix:='enum_';
  1082. sizepara:=Ccallparanode.create(Caddrnode.create_internal(
  1083. Crttinode.create(Tenumdef(destpara.resultdef),fullrtti,rdt_str2ord)
  1084. ),nil);
  1085. end;
  1086. end;
  1087. procname := procname + suffix;
  1088. { play a trick to have tcallnode handle invalid source parameters: }
  1089. { the shortstring-longint val routine by default }
  1090. if (sourcepara.resultdef.typ = stringdef) then
  1091. procname := procname + tstringdef(sourcepara.resultdef).stringtypname
  1092. { zero-based arrays (of char) can be implicitely converted to ansistring }
  1093. else if is_zero_based_array(sourcepara.resultdef) then
  1094. procname := procname + 'ansistr'
  1095. else
  1096. procname := procname + 'shortstr';
  1097. { set up the correct parameters for the call: the code para... }
  1098. newparas := codepara;
  1099. { and the source para }
  1100. codepara.right := sourcepara;
  1101. { sizepara either contains nil if none is needed (which is ok, since }
  1102. { then the next statement severes any possible links with other paras }
  1103. { that sourcepara may have) or it contains the necessary size para and }
  1104. { its right field is nil }
  1105. sourcepara.right := sizepara;
  1106. { create the call and assign the result to dest (val helpers are functions).
  1107. Use a trick to prevent a type size mismatch warning to be generated by the
  1108. assignment node. First convert implicitly to the resultdef. This will insert
  1109. the range check. The Second conversion is done explicitly to hide the implicit conversion
  1110. for the assignment node and therefor preventing the warning (PFV)
  1111. The implicit conversion is avoided for enums because implicit conversion between
  1112. longint (which is what fpc_val_enum_shortstr returns) and enumerations is not
  1113. possible. (DM).}
  1114. if destpara.resultdef.typ=enumdef then
  1115. tc:=ccallnode.createintern(procname,newparas)
  1116. else
  1117. tc:=ctypeconvnode.create(ccallnode.createintern(procname,newparas),destpara.left.resultdef);
  1118. addstatement(newstatement,cassignmentnode.create(
  1119. destpara.left,ctypeconvnode.create_internal(tc,destpara.left.resultdef)));
  1120. { dispose of the enclosing paranode of the destination }
  1121. destpara.left := nil;
  1122. destpara.right := nil;
  1123. destpara.free;
  1124. { check if we used a temp for code and whether we have to store }
  1125. { it to the real code parameter }
  1126. if assigned(orgcode) then
  1127. addstatement(newstatement,cassignmentnode.create(
  1128. orgcode,
  1129. ctypeconvnode.create_internal(
  1130. ctemprefnode.create(tempcode),orgcode.resultdef)));
  1131. { release the temp if we allocated one }
  1132. if assigned(tempcode) then
  1133. addstatement(newstatement,ctempdeletenode.create(tempcode));
  1134. { free the errornode }
  1135. result.free;
  1136. { and return it }
  1137. result := newblock;
  1138. end;
  1139. {$maxfpuregisters 0}
  1140. function getpi : bestreal;
  1141. begin
  1142. {$ifdef x86}
  1143. { x86 has pi in hardware }
  1144. result:=pi;
  1145. {$else x86}
  1146. {$ifdef cpuextended}
  1147. result:=MathPiExtended.Value;
  1148. {$else cpuextended}
  1149. result:=MathPi.Value;
  1150. {$endif cpuextended}
  1151. {$endif x86}
  1152. end;
  1153. function tinlinenode.pass_typecheck:tnode;
  1154. function do_lowhigh(def:tdef) : tnode;
  1155. var
  1156. v : tconstexprint;
  1157. enum : tenumsym;
  1158. hp : tnode;
  1159. begin
  1160. case def.typ of
  1161. orddef:
  1162. begin
  1163. set_varstate(left,vs_read,[]);
  1164. if inlinenumber=in_low_x then
  1165. v:=torddef(def).low
  1166. else
  1167. v:=torddef(def).high;
  1168. { low/high of torddef are longints, so we need special }
  1169. { handling for cardinal and 64bit types (JM) }
  1170. { 1.0.x doesn't support int64($ffffffff) correct, it'll expand
  1171. to -1 instead of staying $ffffffff. Therefor we use $ffff with
  1172. shl twice (PFV) }
  1173. case torddef(def).ordtype of
  1174. s64bit,scurrency :
  1175. begin
  1176. if (inlinenumber=in_low_x) then
  1177. v := int64($80000000) shl 32
  1178. else
  1179. v := (int64($7fffffff) shl 32) or int64($ffff) shl 16 or int64($ffff)
  1180. end;
  1181. u64bit :
  1182. begin
  1183. { we have to use a dirty trick for high(qword), }
  1184. { because it's bigger than high(tconstexprint) (JM) }
  1185. v := 0
  1186. end
  1187. else
  1188. begin
  1189. if not is_signed(def) then
  1190. v := cardinal(v);
  1191. end;
  1192. end;
  1193. hp:=cordconstnode.create(v,def,true);
  1194. typecheckpass(hp);
  1195. { fix high(qword) }
  1196. if (torddef(def).ordtype=u64bit) and
  1197. (inlinenumber = in_high_x) then
  1198. tordconstnode(hp).value := -1; { is the same as qword($ffffffffffffffff) }
  1199. do_lowhigh:=hp;
  1200. end;
  1201. enumdef:
  1202. begin
  1203. set_varstate(left,vs_read,[]);
  1204. enum:=tenumsym(tenumdef(def).firstenum);
  1205. v:=tenumdef(def).maxval;
  1206. if inlinenumber=in_high_x then
  1207. while assigned(enum) and (enum.value <> v) do
  1208. enum:=enum.nextenum;
  1209. if not assigned(enum) then
  1210. internalerror(309993)
  1211. else
  1212. hp:=genenumnode(enum);
  1213. do_lowhigh:=hp;
  1214. end;
  1215. else
  1216. internalerror(87);
  1217. end;
  1218. end;
  1219. function getconstrealvalue : bestreal;
  1220. begin
  1221. case left.nodetype of
  1222. ordconstn:
  1223. getconstrealvalue:=tordconstnode(left).value;
  1224. realconstn:
  1225. getconstrealvalue:=trealconstnode(left).value_real;
  1226. else
  1227. internalerror(309992);
  1228. end;
  1229. end;
  1230. procedure setconstrealvalue(r : bestreal);
  1231. begin
  1232. result:=crealconstnode.create(r,pbestrealtype^);
  1233. end;
  1234. function handle_ln_const(r : bestreal) : tnode;
  1235. begin
  1236. if r<=0.0 then
  1237. if (cs_check_range in current_settings.localswitches) or
  1238. (cs_check_overflow in current_settings.localswitches) then
  1239. begin
  1240. result:=crealconstnode.create(0,pbestrealtype^);
  1241. CGMessage(type_e_wrong_math_argument)
  1242. end
  1243. else
  1244. begin
  1245. if r=0.0 then
  1246. result:=crealconstnode.create(MathQNaN.Value,pbestrealtype^)
  1247. else
  1248. result:=crealconstnode.create(MathNegInf.Value,pbestrealtype^)
  1249. end
  1250. else
  1251. result:=crealconstnode.create(ln(r),pbestrealtype^)
  1252. end;
  1253. function handle_sqrt_const(r : bestreal) : tnode;
  1254. begin
  1255. if r<0.0 then
  1256. if (cs_check_range in current_settings.localswitches) or
  1257. (cs_check_overflow in current_settings.localswitches) then
  1258. begin
  1259. result:=crealconstnode.create(0,pbestrealtype^);
  1260. CGMessage(type_e_wrong_math_argument)
  1261. end
  1262. else
  1263. result:=crealconstnode.create(MathQNaN.Value,pbestrealtype^)
  1264. else
  1265. result:=crealconstnode.create(sqrt(r),pbestrealtype^)
  1266. end;
  1267. procedure setfloatresultdef;
  1268. begin
  1269. if (left.resultdef.typ=floatdef) and
  1270. (tfloatdef(left.resultdef).floattype in [s32real,s64real,s80real,s128real]) then
  1271. resultdef:=left.resultdef
  1272. else
  1273. begin
  1274. inserttypeconv(left,pbestrealtype^);
  1275. resultdef:=pbestrealtype^;
  1276. end;
  1277. end;
  1278. procedure handle_pack_unpack;
  1279. var
  1280. source, target, index: tcallparanode;
  1281. unpackedarraydef, packedarraydef: tarraydef;
  1282. tempindex: TConstExprInt;
  1283. begin
  1284. resultdef:=voidtype;
  1285. unpackedarraydef := nil;
  1286. packedarraydef := nil;
  1287. source := tcallparanode(left);
  1288. if (inlinenumber = in_unpack_x_y_z) then
  1289. begin
  1290. target := tcallparanode(source.right);
  1291. index := tcallparanode(target.right);
  1292. { source must be a packed array }
  1293. if not is_packed_array(source.left.resultdef) then
  1294. CGMessagePos2(source.left.fileinfo,type_e_got_expected_packed_array,'1',source.left.resultdef.GetTypeName)
  1295. else
  1296. packedarraydef := tarraydef(source.left.resultdef);
  1297. { target can be any kind of array, as long as it's not packed }
  1298. if (target.left.resultdef.typ <> arraydef) or
  1299. is_packed_array(target.left.resultdef) then
  1300. CGMessagePos2(target.left.fileinfo,type_e_got_expected_unpacked_array,'2',target.left.resultdef.GetTypeName)
  1301. else
  1302. unpackedarraydef := tarraydef(target.left.resultdef);
  1303. end
  1304. else
  1305. begin
  1306. index := tcallparanode(source.right);
  1307. target := tcallparanode(index.right);
  1308. { source can be any kind of array, as long as it's not packed }
  1309. if (source.left.resultdef.typ <> arraydef) or
  1310. is_packed_array(source.left.resultdef) then
  1311. CGMessagePos2(source.left.fileinfo,type_e_got_expected_unpacked_array,'1',source.left.resultdef.GetTypeName)
  1312. else
  1313. unpackedarraydef := tarraydef(source.left.resultdef);
  1314. { target must be a packed array }
  1315. if not is_packed_array(target.left.resultdef) then
  1316. CGMessagePos2(target.left.fileinfo,type_e_got_expected_packed_array,'3',target.left.resultdef.GetTypeName)
  1317. else
  1318. packedarraydef := tarraydef(target.left.resultdef);
  1319. end;
  1320. if assigned(unpackedarraydef) then
  1321. begin
  1322. { index must be compatible with the unpacked array's indextype }
  1323. inserttypeconv(index.left,unpackedarraydef.rangedef);
  1324. { range check at compile time if possible }
  1325. if assigned(packedarraydef) and
  1326. (index.left.nodetype = ordconstn) and
  1327. not is_special_array(unpackedarraydef) then
  1328. begin
  1329. testrange(index.left.resultdef,unpackedarraydef,tordconstnode(index.left).value,false);
  1330. tempindex := tordconstnode(index.left).value + packedarraydef.highrange-packedarraydef.lowrange;
  1331. testrange(index.left.resultdef,unpackedarraydef,tempindex,false);
  1332. end;
  1333. end;
  1334. { source array is read and must be valid }
  1335. set_varstate(source.left,vs_read,[vsf_must_be_valid]);
  1336. { target array is written }
  1337. valid_for_assignment(target.left,true);
  1338. set_varstate(target.left,vs_written,[]);
  1339. { index in the unpacked array is read and must be valid }
  1340. set_varstate(index.left,vs_read,[vsf_must_be_valid]);
  1341. { if the size of the arrays is 0 (array of empty records), }
  1342. { do nothing }
  1343. if (source.resultdef.size = 0) then
  1344. result:=cnothingnode.create;
  1345. end;
  1346. var
  1347. vl,vl2 : TConstExprInt;
  1348. vr : bestreal;
  1349. hightree,
  1350. hp : tnode;
  1351. checkrange : boolean;
  1352. label
  1353. myexit;
  1354. begin
  1355. result:=nil;
  1356. { if we handle writeln; left contains no valid address }
  1357. if assigned(left) then
  1358. begin
  1359. if left.nodetype=callparan then
  1360. tcallparanode(left).get_paratype
  1361. else
  1362. typecheckpass(left);
  1363. end;
  1364. inc(parsing_para_level);
  1365. { handle intern constant functions in separate case }
  1366. if nf_inlineconst in flags then
  1367. begin
  1368. { no parameters? }
  1369. if not assigned(left) then
  1370. internalerror(200501231)
  1371. else
  1372. begin
  1373. vl:=0;
  1374. vl2:=0; { second parameter Ex: ptr(vl,vl2) }
  1375. case left.nodetype of
  1376. realconstn :
  1377. begin
  1378. { Real functions are all handled with internproc below }
  1379. CGMessage1(type_e_integer_expr_expected,left.resultdef.typename)
  1380. end;
  1381. ordconstn :
  1382. vl:=tordconstnode(left).value;
  1383. callparan :
  1384. begin
  1385. { both exists, else it was not generated }
  1386. vl:=tordconstnode(tcallparanode(left).left).value;
  1387. vl2:=tordconstnode(tcallparanode(tcallparanode(left).right).left).value;
  1388. end;
  1389. else
  1390. CGMessage(parser_e_illegal_expression);
  1391. end;
  1392. case inlinenumber of
  1393. in_const_abs :
  1394. hp:=genintconstnode(abs(vl));
  1395. in_const_sqr :
  1396. hp:=genintconstnode(sqr(vl));
  1397. in_const_odd :
  1398. hp:=cordconstnode.create(byte(odd(vl)),booltype,true);
  1399. in_const_swap_word :
  1400. hp:=cordconstnode.create((vl and $ff) shl 8+(vl shr 8),left.resultdef,true);
  1401. in_const_swap_long :
  1402. hp:=cordconstnode.create((vl and $ffff) shl 16+(vl shr 16),left.resultdef,true);
  1403. in_const_swap_qword :
  1404. hp:=cordconstnode.create((vl and $ffff) shl 32+(vl shr 32),left.resultdef,true);
  1405. in_const_ptr :
  1406. hp:=cpointerconstnode.create((vl2 shl 4)+vl,voidfarpointertype);
  1407. else
  1408. internalerror(88);
  1409. end;
  1410. end;
  1411. if hp=nil then
  1412. hp:=cerrornode.create;
  1413. result:=hp;
  1414. goto myexit;
  1415. end
  1416. else
  1417. begin
  1418. case inlinenumber of
  1419. in_lo_long,
  1420. in_hi_long,
  1421. in_lo_qword,
  1422. in_hi_qword,
  1423. in_lo_word,
  1424. in_hi_word :
  1425. begin
  1426. { give warning for incompatibility with tp and delphi }
  1427. if (inlinenumber in [in_lo_long,in_hi_long,in_lo_qword,in_hi_qword]) and
  1428. ((m_tp7 in current_settings.modeswitches) or
  1429. (m_delphi in current_settings.modeswitches)) then
  1430. CGMessage(type_w_maybe_wrong_hi_lo);
  1431. { constant folding }
  1432. if left.nodetype=ordconstn then
  1433. begin
  1434. case inlinenumber of
  1435. in_lo_word :
  1436. hp:=cordconstnode.create(tordconstnode(left).value and $ff,left.resultdef,true);
  1437. in_hi_word :
  1438. hp:=cordconstnode.create(tordconstnode(left).value shr 8,left.resultdef,true);
  1439. in_lo_long :
  1440. hp:=cordconstnode.create(tordconstnode(left).value and $ffff,left.resultdef,true);
  1441. in_hi_long :
  1442. hp:=cordconstnode.create(tordconstnode(left).value shr 16,left.resultdef,true);
  1443. in_lo_qword :
  1444. hp:=cordconstnode.create(tordconstnode(left).value and $ffffffff,left.resultdef,true);
  1445. in_hi_qword :
  1446. hp:=cordconstnode.create(tordconstnode(left).value shr 32,left.resultdef,true);
  1447. end;
  1448. result:=hp;
  1449. goto myexit;
  1450. end;
  1451. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1452. if not is_integer(left.resultdef) then
  1453. CGMessage1(type_e_integer_expr_expected,left.resultdef.typename);
  1454. case inlinenumber of
  1455. in_lo_word,
  1456. in_hi_word :
  1457. resultdef:=u8inttype;
  1458. in_lo_long,
  1459. in_hi_long :
  1460. resultdef:=u16inttype;
  1461. in_lo_qword,
  1462. in_hi_qword :
  1463. resultdef:=u32inttype;
  1464. end;
  1465. end;
  1466. in_sizeof_x:
  1467. begin
  1468. set_varstate(left,vs_read,[]);
  1469. if paramanager.push_high_param(vs_value,left.resultdef,current_procinfo.procdef.proccalloption) then
  1470. begin
  1471. hightree:=load_high_value_node(tparavarsym(tloadnode(left).symtableentry));
  1472. if assigned(hightree) then
  1473. begin
  1474. hp:=caddnode.create(addn,hightree,
  1475. cordconstnode.create(1,sinttype,false));
  1476. if (left.resultdef.typ=arraydef) then
  1477. if not is_packed_array(tarraydef(left.resultdef)) then
  1478. begin
  1479. if (tarraydef(left.resultdef).elesize<>1) then
  1480. hp:=caddnode.create(muln,hp,cordconstnode.create(tarraydef(
  1481. left.resultdef).elesize,sinttype,true));
  1482. end
  1483. else if (tarraydef(left.resultdef).elepackedbitsize <> 8) then
  1484. begin
  1485. { no packed open array support yet }
  1486. if (hp.nodetype <> ordconstn) then
  1487. internalerror(2006081511);
  1488. hp.free;
  1489. hp := cordconstnode.create(left.resultdef.size,sinttype,true);
  1490. {
  1491. hp:=
  1492. ctypeconvnode.create_explicit(sinttype,
  1493. cmoddivnode.create(divn,
  1494. caddnode.create(addn,
  1495. caddnode.create(muln,hp,cordconstnode.create(tarraydef(
  1496. left.resultdef).elepackedbitsize,s64inttype,true)),
  1497. cordconstnode.create(a,s64inttype,true)),
  1498. cordconstnode.create(8,s64inttype,true)),
  1499. sinttype);
  1500. }
  1501. end;
  1502. result:=hp;
  1503. end;
  1504. end
  1505. else
  1506. resultdef:=sinttype;
  1507. end;
  1508. in_typeof_x:
  1509. begin
  1510. set_varstate(left,vs_read,[]);
  1511. resultdef:=voidpointertype;
  1512. end;
  1513. in_ord_x:
  1514. begin
  1515. if (left.nodetype=ordconstn) then
  1516. begin
  1517. hp:=cordconstnode.create(
  1518. tordconstnode(left).value,sinttype,true);
  1519. result:=hp;
  1520. goto myexit;
  1521. end;
  1522. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1523. case left.resultdef.typ of
  1524. orddef :
  1525. begin
  1526. case torddef(left.resultdef).ordtype of
  1527. bool8bit,
  1528. uchar:
  1529. begin
  1530. { change to byte() }
  1531. hp:=ctypeconvnode.create_internal(left,u8inttype);
  1532. left:=nil;
  1533. result:=hp;
  1534. end;
  1535. bool16bit,
  1536. uwidechar :
  1537. begin
  1538. { change to word() }
  1539. hp:=ctypeconvnode.create_internal(left,u16inttype);
  1540. left:=nil;
  1541. result:=hp;
  1542. end;
  1543. bool32bit :
  1544. begin
  1545. { change to dword() }
  1546. hp:=ctypeconvnode.create_internal(left,u32inttype);
  1547. left:=nil;
  1548. result:=hp;
  1549. end;
  1550. bool64bit :
  1551. begin
  1552. { change to qword() }
  1553. hp:=ctypeconvnode.create_internal(left,u64inttype);
  1554. left:=nil;
  1555. result:=hp;
  1556. end;
  1557. uvoid :
  1558. CGMessage1(type_e_ordinal_expr_expected,left.resultdef.typename);
  1559. else
  1560. begin
  1561. { all other orddef need no transformation }
  1562. hp:=left;
  1563. left:=nil;
  1564. result:=hp;
  1565. end;
  1566. end;
  1567. end;
  1568. enumdef :
  1569. begin
  1570. hp:=ctypeconvnode.create_internal(left,s32inttype);
  1571. left:=nil;
  1572. result:=hp;
  1573. end;
  1574. pointerdef :
  1575. begin
  1576. if m_mac in current_settings.modeswitches then
  1577. begin
  1578. hp:=ctypeconvnode.create_internal(left,ptruinttype);
  1579. left:=nil;
  1580. result:=hp;
  1581. end
  1582. else
  1583. CGMessage1(type_e_ordinal_expr_expected,left.resultdef.typename);
  1584. end
  1585. else
  1586. CGMessage1(type_e_ordinal_expr_expected,left.resultdef.typename);
  1587. end;
  1588. end;
  1589. in_chr_byte:
  1590. begin
  1591. { convert to explicit char() }
  1592. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1593. hp:=ctypeconvnode.create_internal(left,cchartype);
  1594. left:=nil;
  1595. result:=hp;
  1596. end;
  1597. in_length_x:
  1598. begin
  1599. if ((left.resultdef.typ=arraydef) and
  1600. (not is_special_array(left.resultdef) or
  1601. is_open_array(left.resultdef))) or
  1602. (left.resultdef.typ=orddef) then
  1603. set_varstate(left,vs_read,[])
  1604. else
  1605. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1606. case left.resultdef.typ of
  1607. variantdef:
  1608. begin
  1609. inserttypeconv(left,cansistringtype);
  1610. end;
  1611. stringdef :
  1612. begin
  1613. { we don't need string convertions here }
  1614. if (left.nodetype=typeconvn) and
  1615. (ttypeconvnode(left).left.resultdef.typ=stringdef) then
  1616. begin
  1617. hp:=ttypeconvnode(left).left;
  1618. ttypeconvnode(left).left:=nil;
  1619. left.free;
  1620. left:=hp;
  1621. end;
  1622. { evaluates length of constant strings direct }
  1623. if (left.nodetype=stringconstn) then
  1624. begin
  1625. hp:=cordconstnode.create(
  1626. tstringconstnode(left).len,s32inttype,true);
  1627. result:=hp;
  1628. goto myexit;
  1629. end;
  1630. end;
  1631. orddef :
  1632. begin
  1633. { length of char is one allways }
  1634. if is_char(left.resultdef) or
  1635. is_widechar(left.resultdef) then
  1636. begin
  1637. hp:=cordconstnode.create(1,s32inttype,false);
  1638. result:=hp;
  1639. goto myexit;
  1640. end
  1641. else
  1642. CGMessage(type_e_mismatch);
  1643. end;
  1644. pointerdef :
  1645. begin
  1646. if is_pchar(left.resultdef) then
  1647. begin
  1648. hp := ccallparanode.create(left,nil);
  1649. result := ccallnode.createintern('fpc_pchar_length',hp);
  1650. { make sure the left node doesn't get disposed, since it's }
  1651. { reused in the new node (JM) }
  1652. left:=nil;
  1653. goto myexit;
  1654. end
  1655. else if is_pwidechar(left.resultdef) then
  1656. begin
  1657. hp := ccallparanode.create(left,nil);
  1658. result := ccallnode.createintern('fpc_pwidechar_length',hp);
  1659. { make sure the left node doesn't get disposed, since it's }
  1660. { reused in the new node (JM) }
  1661. left:=nil;
  1662. goto myexit;
  1663. end
  1664. else
  1665. CGMessage(type_e_mismatch);
  1666. end;
  1667. arraydef :
  1668. begin
  1669. if is_open_array(left.resultdef) or
  1670. is_array_of_const(left.resultdef) then
  1671. begin
  1672. hightree:=load_high_value_node(tparavarsym(tloadnode(left).symtableentry));
  1673. if assigned(hightree) then
  1674. begin
  1675. hp:=caddnode.create(addn,hightree,
  1676. cordconstnode.create(1,s32inttype,false));
  1677. result:=hp;
  1678. end;
  1679. goto myexit;
  1680. end
  1681. else
  1682. if not is_dynamic_array(left.resultdef) then
  1683. begin
  1684. hp:=cordconstnode.create(tarraydef(left.resultdef).highrange-
  1685. tarraydef(left.resultdef).lowrange+1,
  1686. s32inttype,true);
  1687. result:=hp;
  1688. goto myexit;
  1689. end
  1690. else
  1691. begin
  1692. hp := ccallparanode.create(ctypeconvnode.create_internal(left,voidpointertype),nil);
  1693. result := ccallnode.createintern('fpc_dynarray_length',hp);
  1694. { make sure the left node doesn't get disposed, since it's }
  1695. { reused in the new node (JM) }
  1696. left:=nil;
  1697. goto myexit;
  1698. end;
  1699. end;
  1700. else
  1701. CGMessage(type_e_mismatch);
  1702. end;
  1703. { shortstring return an 8 bit value as the length
  1704. is the first byte of the string }
  1705. if is_shortstring(left.resultdef) then
  1706. resultdef:=u8inttype
  1707. else
  1708. resultdef:=sinttype;
  1709. end;
  1710. in_typeinfo_x:
  1711. begin
  1712. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1713. resultdef:=voidpointertype;
  1714. end;
  1715. in_assigned_x:
  1716. begin
  1717. { the parser has already made sure the expression is valid }
  1718. { handle constant expressions }
  1719. if is_constnode(tcallparanode(left).left) or
  1720. (tcallparanode(left).left.nodetype = pointerconstn) then
  1721. begin
  1722. { let an add node figure it out }
  1723. result := caddnode.create(unequaln,tcallparanode(left).left,cnilnode.create);
  1724. tcallparanode(left).left := nil;
  1725. { free left, because otherwise some code at 'myexit' tries }
  1726. { to run get_paratype for it, which crashes since left.left }
  1727. { is now nil }
  1728. left.free;
  1729. left := nil;
  1730. goto myexit;
  1731. end;
  1732. { otherwise handle separately, because there could be a procvar, which }
  1733. { is 2*sizeof(pointer), while we must only check the first pointer }
  1734. set_varstate(tcallparanode(left).left,vs_read,[vsf_must_be_valid]);
  1735. resultdef:=booltype;
  1736. end;
  1737. in_ofs_x :
  1738. internalerror(2000101001);
  1739. in_seg_x :
  1740. begin
  1741. set_varstate(left,vs_read,[]);
  1742. result:=cordconstnode.create(0,s32inttype,false);
  1743. goto myexit;
  1744. end;
  1745. in_pred_x,
  1746. in_succ_x:
  1747. begin
  1748. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1749. resultdef:=left.resultdef;
  1750. if not is_ordinal(resultdef) then
  1751. CGMessage(type_e_ordinal_expr_expected)
  1752. else
  1753. begin
  1754. if (resultdef.typ=enumdef) and
  1755. (tenumdef(resultdef).has_jumps) and
  1756. not(m_delphi in current_settings.modeswitches) then
  1757. CGMessage(type_e_succ_and_pred_enums_with_assign_not_possible);
  1758. end;
  1759. { only if the result is an enum do we do range checking }
  1760. if (resultdef.typ=enumdef) then
  1761. checkrange := true
  1762. else
  1763. checkrange := false;
  1764. { do constant folding after check for jumps }
  1765. if left.nodetype=ordconstn then
  1766. begin
  1767. if inlinenumber=in_succ_x then
  1768. result:=cordconstnode.create(tordconstnode(left).value+1,left.resultdef,checkrange)
  1769. else
  1770. result:=cordconstnode.create(tordconstnode(left).value-1,left.resultdef,checkrange);
  1771. end;
  1772. end;
  1773. in_initialize_x,
  1774. in_finalize_x,
  1775. in_setlength_x:
  1776. begin
  1777. { inlined from pinline }
  1778. internalerror(200204231);
  1779. end;
  1780. in_inc_x,
  1781. in_dec_x:
  1782. begin
  1783. resultdef:=voidtype;
  1784. if assigned(left) then
  1785. begin
  1786. { first param must be var }
  1787. valid_for_var(tcallparanode(left).left,true);
  1788. set_varstate(tcallparanode(left).left,vs_readwritten,[vsf_must_be_valid]);
  1789. if (left.resultdef.typ in [enumdef,pointerdef]) or
  1790. is_ordinal(left.resultdef) or
  1791. is_currency(left.resultdef) then
  1792. begin
  1793. { value of left gets changed -> must be unique }
  1794. set_unique(tcallparanode(left).left);
  1795. { two paras ? }
  1796. if assigned(tcallparanode(left).right) then
  1797. begin
  1798. if is_integer(tcallparanode(left).right.resultdef) then
  1799. begin
  1800. set_varstate(tcallparanode(tcallparanode(left).right).left,vs_read,[vsf_must_be_valid]);
  1801. inserttypeconv_internal(tcallparanode(tcallparanode(left).right).left,tcallparanode(left).left.resultdef);
  1802. if assigned(tcallparanode(tcallparanode(left).right).right) then
  1803. { should be handled in the parser (JM) }
  1804. internalerror(2006020901);
  1805. end
  1806. else
  1807. CGMessagePos(tcallparanode(left).right.fileinfo,type_e_ordinal_expr_expected);
  1808. end;
  1809. end
  1810. else
  1811. CGMessagePos(left.fileinfo,type_e_ordinal_expr_expected);
  1812. end
  1813. else
  1814. CGMessagePos(fileinfo,type_e_mismatch);
  1815. end;
  1816. in_read_x,
  1817. in_readln_x,
  1818. in_readstr_x,
  1819. in_write_x,
  1820. in_writeln_x,
  1821. in_writestr_x :
  1822. begin
  1823. result := handle_read_write;
  1824. end;
  1825. in_settextbuf_file_x :
  1826. begin
  1827. resultdef:=voidtype;
  1828. { now we know the type of buffer }
  1829. hp:=ccallparanode.create(cordconstnode.create(
  1830. tcallparanode(left).left.resultdef.size,s32inttype,true),left);
  1831. result:=ccallnode.createintern('SETTEXTBUF',hp);
  1832. left:=nil;
  1833. end;
  1834. { the firstpass of the arg has been done in firstcalln ? }
  1835. in_reset_typedfile,
  1836. in_rewrite_typedfile :
  1837. begin
  1838. result := handle_reset_rewrite_typed;
  1839. end;
  1840. in_str_x_string :
  1841. begin
  1842. result := handle_str;
  1843. end;
  1844. in_val_x :
  1845. begin
  1846. result := handle_val;
  1847. end;
  1848. in_include_x_y,
  1849. in_exclude_x_y:
  1850. begin
  1851. resultdef:=voidtype;
  1852. { the parser already checks whether we have two (and exactly two) }
  1853. { parameters (JM) }
  1854. { first param must be var }
  1855. valid_for_var(tcallparanode(left).left,true);
  1856. set_varstate(tcallparanode(left).left,vs_readwritten,[vsf_must_be_valid]);
  1857. { check type }
  1858. if (left.resultdef.typ=setdef) then
  1859. begin
  1860. { insert a type conversion }
  1861. { to the type of the set elements }
  1862. set_varstate(tcallparanode(tcallparanode(left).right).left,vs_read,[vsf_must_be_valid]);
  1863. inserttypeconv(tcallparanode(tcallparanode(left).right).left,
  1864. tsetdef(left.resultdef).elementdef);
  1865. end
  1866. else
  1867. CGMessage(type_e_mismatch);
  1868. end;
  1869. in_pack_x_y_z,
  1870. in_unpack_x_y_z :
  1871. begin
  1872. handle_pack_unpack;
  1873. end;
  1874. in_slice_x:
  1875. begin
  1876. result:=nil;
  1877. resultdef:=tcallparanode(left).left.resultdef;
  1878. if (resultdef.typ <> arraydef) then
  1879. CGMessagePos(left.fileinfo,type_e_mismatch)
  1880. else if is_packed_array(resultdef) then
  1881. CGMessagePos2(left.fileinfo,type_e_got_expected_unpacked_array,'1',resultdef.typename);
  1882. if not(is_integer(tcallparanode(tcallparanode(left).right).left.resultdef)) then
  1883. CGMessagePos1(tcallparanode(left).right.fileinfo,
  1884. type_e_integer_expr_expected,
  1885. tcallparanode(tcallparanode(left).right).left.resultdef.typename);
  1886. end;
  1887. in_low_x,
  1888. in_high_x:
  1889. begin
  1890. case left.resultdef.typ of
  1891. orddef,
  1892. enumdef:
  1893. begin
  1894. result:=do_lowhigh(left.resultdef);
  1895. end;
  1896. setdef:
  1897. begin
  1898. result:=do_lowhigh(tsetdef(left.resultdef).elementdef);
  1899. end;
  1900. arraydef:
  1901. begin
  1902. if inlinenumber=in_low_x then
  1903. begin
  1904. set_varstate(left,vs_read,[]);
  1905. result:=cordconstnode.create(tarraydef(
  1906. left.resultdef).lowrange,tarraydef(left.resultdef).rangedef,true);
  1907. end
  1908. else
  1909. begin
  1910. if is_open_array(left.resultdef) or
  1911. is_array_of_const(left.resultdef) then
  1912. begin
  1913. set_varstate(left,vs_read,[]);
  1914. result:=load_high_value_node(tparavarsym(tloadnode(left).symtableentry));
  1915. end
  1916. else
  1917. if is_dynamic_array(left.resultdef) then
  1918. begin
  1919. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1920. { can't use inserttypeconv because we need }
  1921. { an explicit type conversion (JM) }
  1922. hp := ccallparanode.create(ctypeconvnode.create_internal(left,voidpointertype),nil);
  1923. result := ccallnode.createintern('fpc_dynarray_high',hp);
  1924. { make sure the left node doesn't get disposed, since it's }
  1925. { reused in the new node (JM) }
  1926. left:=nil;
  1927. end
  1928. else
  1929. begin
  1930. set_varstate(left,vs_read,[]);
  1931. result:=cordconstnode.create(tarraydef(
  1932. left.resultdef).highrange,tarraydef(left.resultdef).rangedef,true);
  1933. end;
  1934. end;
  1935. end;
  1936. stringdef:
  1937. begin
  1938. if inlinenumber=in_low_x then
  1939. begin
  1940. result:=cordconstnode.create(0,u8inttype,false);
  1941. end
  1942. else
  1943. begin
  1944. if is_open_string(left.resultdef) then
  1945. begin
  1946. set_varstate(left,vs_read,[]);
  1947. result:=load_high_value_node(tparavarsym(tloadnode(left).symtableentry))
  1948. end
  1949. else
  1950. result:=cordconstnode.create(tstringdef(left.resultdef).len,u8inttype,true);
  1951. end;
  1952. end;
  1953. else
  1954. CGMessage(type_e_mismatch);
  1955. end;
  1956. end;
  1957. in_exp_real :
  1958. begin
  1959. if left.nodetype in [ordconstn,realconstn] then
  1960. begin
  1961. result:=crealconstnode.create(exp(getconstrealvalue),pbestrealtype^);
  1962. if (trealconstnode(result).value_real=MathInf.Value) and
  1963. ((cs_check_range in current_settings.localswitches) or
  1964. (cs_check_overflow in current_settings.localswitches)) then
  1965. begin
  1966. result:=crealconstnode.create(0,pbestrealtype^);
  1967. CGMessage(parser_e_range_check_error);
  1968. end;
  1969. end
  1970. else
  1971. begin
  1972. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1973. inserttypeconv(left,pbestrealtype^);
  1974. resultdef:=pbestrealtype^;
  1975. end;
  1976. end;
  1977. in_trunc_real :
  1978. begin
  1979. if left.nodetype in [ordconstn,realconstn] then
  1980. begin
  1981. vr:=getconstrealvalue;
  1982. if (vr>=9223372036854775807.5) or (vr<=-9223372036854775808.5) then
  1983. begin
  1984. CGMessage(parser_e_range_check_error);
  1985. result:=cordconstnode.create(1,s64inttype,false)
  1986. end
  1987. else
  1988. result:=cordconstnode.create(trunc(vr),s64inttype,true)
  1989. end
  1990. else
  1991. begin
  1992. set_varstate(left,vs_read,[vsf_must_be_valid]);
  1993. { for direct float rounding, no best real type cast should be necessary }
  1994. if not((left.resultdef.typ=floatdef) and
  1995. (tfloatdef(left.resultdef).floattype in [s32real,s64real,s80real,s128real])) then
  1996. inserttypeconv(left,pbestrealtype^);
  1997. resultdef:=s64inttype;
  1998. end;
  1999. end;
  2000. in_round_real :
  2001. begin
  2002. if left.nodetype in [ordconstn,realconstn] then
  2003. begin
  2004. vr:=getconstrealvalue;
  2005. if (vr>=9223372036854775807.5) or (vr<=-9223372036854775808.5) then
  2006. begin
  2007. CGMessage(parser_e_range_check_error);
  2008. result:=cordconstnode.create(1,s64inttype,false)
  2009. end
  2010. else
  2011. result:=cordconstnode.create(round(vr),s64inttype,true)
  2012. end
  2013. else
  2014. begin
  2015. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2016. { for direct float rounding, no best real type cast should be necessary }
  2017. if not((left.resultdef.typ=floatdef) and
  2018. (tfloatdef(left.resultdef).floattype in [s32real,s64real,s80real,s128real])) then
  2019. inserttypeconv(left,pbestrealtype^);
  2020. resultdef:=s64inttype;
  2021. end;
  2022. end;
  2023. in_frac_real :
  2024. begin
  2025. if left.nodetype in [ordconstn,realconstn] then
  2026. setconstrealvalue(frac(getconstrealvalue))
  2027. else
  2028. begin
  2029. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2030. inserttypeconv(left,pbestrealtype^);
  2031. resultdef:=pbestrealtype^;
  2032. end;
  2033. end;
  2034. in_int_real :
  2035. begin
  2036. if left.nodetype in [ordconstn,realconstn] then
  2037. setconstrealvalue(int(getconstrealvalue))
  2038. else
  2039. begin
  2040. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2041. inserttypeconv(left,pbestrealtype^);
  2042. resultdef:=pbestrealtype^;
  2043. end;
  2044. end;
  2045. in_pi_real :
  2046. begin
  2047. if block_type=bt_const then
  2048. setconstrealvalue(getpi)
  2049. else
  2050. resultdef:=pbestrealtype^;
  2051. end;
  2052. in_cos_real :
  2053. begin
  2054. if left.nodetype in [ordconstn,realconstn] then
  2055. setconstrealvalue(cos(getconstrealvalue))
  2056. else
  2057. begin
  2058. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2059. inserttypeconv(left,pbestrealtype^);
  2060. resultdef:=pbestrealtype^;
  2061. end;
  2062. end;
  2063. in_sin_real :
  2064. begin
  2065. if left.nodetype in [ordconstn,realconstn] then
  2066. setconstrealvalue(sin(getconstrealvalue))
  2067. else
  2068. begin
  2069. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2070. inserttypeconv(left,pbestrealtype^);
  2071. resultdef:=pbestrealtype^;
  2072. end;
  2073. end;
  2074. in_arctan_real :
  2075. begin
  2076. if left.nodetype in [ordconstn,realconstn] then
  2077. setconstrealvalue(arctan(getconstrealvalue))
  2078. else
  2079. begin
  2080. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2081. inserttypeconv(left,pbestrealtype^);
  2082. resultdef:=pbestrealtype^;
  2083. end;
  2084. end;
  2085. in_abs_real :
  2086. begin
  2087. if left.nodetype in [ordconstn,realconstn] then
  2088. setconstrealvalue(abs(getconstrealvalue))
  2089. else
  2090. begin
  2091. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2092. inserttypeconv(left,pbestrealtype^);
  2093. resultdef:=pbestrealtype^;
  2094. end;
  2095. end;
  2096. in_sqr_real :
  2097. begin
  2098. if left.nodetype in [ordconstn,realconstn] then
  2099. setconstrealvalue(sqr(getconstrealvalue))
  2100. else
  2101. begin
  2102. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2103. setfloatresultdef;
  2104. end;
  2105. end;
  2106. in_sqrt_real :
  2107. begin
  2108. if left.nodetype in [ordconstn,realconstn] then
  2109. begin
  2110. vr:=getconstrealvalue;
  2111. if vr<0.0 then
  2112. result:=handle_sqrt_const(vr)
  2113. else
  2114. setconstrealvalue(sqrt(vr));
  2115. end
  2116. else
  2117. begin
  2118. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2119. setfloatresultdef;
  2120. end;
  2121. end;
  2122. in_ln_real :
  2123. begin
  2124. if left.nodetype in [ordconstn,realconstn] then
  2125. begin
  2126. vr:=getconstrealvalue;
  2127. if vr<=0.0 then
  2128. result:=handle_ln_const(vr)
  2129. else
  2130. setconstrealvalue(ln(vr));
  2131. end
  2132. else
  2133. begin
  2134. set_varstate(left,vs_read,[vsf_must_be_valid]);
  2135. inserttypeconv(left,pbestrealtype^);
  2136. resultdef:=pbestrealtype^;
  2137. end;
  2138. end;
  2139. {$ifdef SUPPORT_MMX}
  2140. in_mmx_pcmpeqb..in_mmx_pcmpgtw:
  2141. begin
  2142. end;
  2143. {$endif SUPPORT_MMX}
  2144. in_prefetch_var:
  2145. begin
  2146. resultdef:=voidtype;
  2147. end;
  2148. {$ifdef SUPPORT_UNALIGNED}
  2149. in_unaligned_x:
  2150. begin
  2151. resultdef:=left.resultdef;
  2152. end;
  2153. {$endif SUPPORT_UNALIGNED}
  2154. in_assert_x_y :
  2155. begin
  2156. resultdef:=voidtype;
  2157. if assigned(left) then
  2158. begin
  2159. set_varstate(tcallparanode(left).left,vs_read,[vsf_must_be_valid]);
  2160. { check type }
  2161. if is_boolean(left.resultdef) then
  2162. begin
  2163. set_varstate(tcallparanode(tcallparanode(left).right).left,vs_read,[vsf_must_be_valid]);
  2164. { must always be a string }
  2165. inserttypeconv(tcallparanode(tcallparanode(left).right).left,cshortstringtype);
  2166. end
  2167. else
  2168. CGMessage1(type_e_boolean_expr_expected,left.resultdef.typename);
  2169. end
  2170. else
  2171. CGMessage(type_e_mismatch);
  2172. { We've checked the whole statement for correctness, now we
  2173. can remove it if assertions are off }
  2174. if not(cs_do_assertion in current_settings.localswitches) then
  2175. begin
  2176. { we need a valid node, so insert a nothingn }
  2177. result:=cnothingnode.create;
  2178. end
  2179. else
  2180. include(current_procinfo.flags,pi_do_call);
  2181. end;
  2182. in_get_frame,
  2183. in_get_caller_frame,
  2184. in_get_caller_addr:
  2185. begin
  2186. resultdef:=voidpointertype;
  2187. end;
  2188. else
  2189. internalerror(8);
  2190. end;
  2191. end;
  2192. myexit:
  2193. { Run get_paratype again to update maybe inserted typeconvs }
  2194. if not codegenerror then
  2195. begin
  2196. if assigned(left) and
  2197. (left.nodetype=callparan) then
  2198. tcallparanode(left).get_paratype;
  2199. end;
  2200. dec(parsing_para_level);
  2201. end;
  2202. function tinlinenode.pass_1 : tnode;
  2203. var
  2204. hp,hpp,resultnode : tnode;
  2205. shiftconst: longint;
  2206. tempnode: ttempcreatenode;
  2207. newstatement: tstatementnode;
  2208. newblock: tblocknode;
  2209. begin
  2210. result:=nil;
  2211. { if we handle writeln; left contains no valid address }
  2212. if assigned(left) then
  2213. begin
  2214. if left.nodetype=callparan then
  2215. tcallparanode(left).firstcallparan
  2216. else
  2217. firstpass(left);
  2218. left_max;
  2219. end;
  2220. inc(parsing_para_level);
  2221. { intern const should already be handled }
  2222. if nf_inlineconst in flags then
  2223. internalerror(200104044);
  2224. case inlinenumber of
  2225. in_lo_qword,
  2226. in_hi_qword,
  2227. in_lo_long,
  2228. in_hi_long,
  2229. in_lo_word,
  2230. in_hi_word:
  2231. begin
  2232. shiftconst := 0;
  2233. case inlinenumber of
  2234. in_hi_qword:
  2235. shiftconst := 32;
  2236. in_hi_long:
  2237. shiftconst := 16;
  2238. in_hi_word:
  2239. shiftconst := 8;
  2240. end;
  2241. if shiftconst <> 0 then
  2242. result := ctypeconvnode.create_internal(cshlshrnode.create(shrn,left,
  2243. cordconstnode.create(shiftconst,u32inttype,false)),resultdef)
  2244. else
  2245. result := ctypeconvnode.create_internal(left,resultdef);
  2246. left := nil;
  2247. firstpass(result);
  2248. end;
  2249. in_sizeof_x:
  2250. begin
  2251. if registersint<1 then
  2252. registersint:=1;
  2253. expectloc:=LOC_REGISTER;
  2254. end;
  2255. in_typeof_x:
  2256. begin
  2257. if registersint<1 then
  2258. registersint:=1;
  2259. expectloc:=LOC_REGISTER;
  2260. end;
  2261. in_length_x:
  2262. begin
  2263. if is_shortstring(left.resultdef) then
  2264. expectloc:=left.expectloc
  2265. else
  2266. begin
  2267. { ansi/wide string }
  2268. if registersint<1 then
  2269. registersint:=1;
  2270. expectloc:=LOC_REGISTER;
  2271. end;
  2272. end;
  2273. in_typeinfo_x:
  2274. begin
  2275. expectloc:=LOC_REGISTER;
  2276. registersint:=1;
  2277. end;
  2278. in_assigned_x:
  2279. begin
  2280. expectloc := LOC_JUMP;
  2281. registersint:=1;
  2282. end;
  2283. in_pred_x,
  2284. in_succ_x:
  2285. begin
  2286. if is_64bit(resultdef) then
  2287. begin
  2288. if (registersint<2) then
  2289. registersint:=2
  2290. end
  2291. else
  2292. begin
  2293. if (registersint<1) then
  2294. registersint:=1;
  2295. end;
  2296. expectloc:=LOC_REGISTER;
  2297. end;
  2298. in_setlength_x,
  2299. in_initialize_x,
  2300. in_finalize_x:
  2301. begin
  2302. expectloc:=LOC_VOID;
  2303. end;
  2304. in_inc_x,
  2305. in_dec_x:
  2306. begin
  2307. expectloc:=LOC_VOID;
  2308. { range/overflow checking doesn't work properly }
  2309. { with the inc/dec code that's generated (JM) }
  2310. if (current_settings.localswitches * [cs_check_overflow,cs_check_range] <> []) and
  2311. { No overflow check for pointer operations, because inc(pointer,-1) will always
  2312. trigger an overflow. For uint32 it works because then the operation is done
  2313. in 64bit. Range checking is not applicable to pointers either }
  2314. (tcallparanode(left).left.resultdef.typ<>pointerdef) then
  2315. { convert to simple add (JM) }
  2316. begin
  2317. newblock := internalstatements(newstatement);
  2318. { extra parameter? }
  2319. if assigned(tcallparanode(left).right) then
  2320. begin
  2321. { Yes, use for add node }
  2322. hpp := tcallparanode(tcallparanode(left).right).left;
  2323. tcallparanode(tcallparanode(left).right).left := nil;
  2324. if assigned(tcallparanode(tcallparanode(left).right).right) then
  2325. CGMessage(parser_e_illegal_expression);
  2326. end
  2327. else
  2328. begin
  2329. { no, create constant 1 }
  2330. hpp := cordconstnode.create(1,tcallparanode(left).left.resultdef,false);
  2331. end;
  2332. typecheckpass(hpp);
  2333. if not((hpp.resultdef.typ=orddef) and
  2334. {$ifndef cpu64bit}
  2335. (torddef(hpp.resultdef).ordtype<>u32bit)) then
  2336. {$else not cpu64bit}
  2337. (torddef(hpp.resultdef).ordtype<>u64bit)) then
  2338. {$endif not cpu64bit}
  2339. inserttypeconv_internal(hpp,sinttype);
  2340. { make sure we don't call functions part of the left node twice (and generally }
  2341. { optimize the code generation) }
  2342. if node_complexity(tcallparanode(left).left) > 1 then
  2343. begin
  2344. tempnode := ctempcreatenode.create(voidpointertype,voidpointertype.size,tt_persistent,true);
  2345. addstatement(newstatement,tempnode);
  2346. addstatement(newstatement,cassignmentnode.create(ctemprefnode.create(tempnode),
  2347. caddrnode.create_internal(tcallparanode(left).left.getcopy)));
  2348. hp := cderefnode.create(ctemprefnode.create(tempnode));
  2349. inserttypeconv_internal(hp,tcallparanode(left).left.resultdef);
  2350. end
  2351. else
  2352. begin
  2353. hp := tcallparanode(left).left.getcopy;
  2354. tempnode := nil;
  2355. end;
  2356. resultnode := hp.getcopy;
  2357. { avoid type errors from the addn/subn }
  2358. if not is_integer(resultnode.resultdef) then
  2359. begin
  2360. inserttypeconv_internal(hp,sinttype);
  2361. inserttypeconv_internal(hpp,sinttype);
  2362. end;
  2363. { addition/substraction depending on inc/dec }
  2364. if inlinenumber = in_inc_x then
  2365. hpp := caddnode.create(addn,hp,hpp)
  2366. else
  2367. hpp := caddnode.create(subn,hp,hpp);
  2368. { assign result of addition }
  2369. if not(is_integer(resultnode.resultdef)) then
  2370. inserttypeconv(hpp,torddef.create(
  2371. {$ifdef cpu64bit}
  2372. s64bit,
  2373. {$else cpu64bit}
  2374. s32bit,
  2375. {$endif cpu64bit}
  2376. get_min_value(resultnode.resultdef),
  2377. get_max_value(resultnode.resultdef)))
  2378. else
  2379. inserttypeconv(hpp,resultnode.resultdef);
  2380. { avoid any possible warnings }
  2381. inserttypeconv_internal(hpp,resultnode.resultdef);
  2382. addstatement(newstatement,cassignmentnode.create(resultnode,hpp));
  2383. { deallocate the temp }
  2384. if assigned(tempnode) then
  2385. addstatement(newstatement,ctempdeletenode.create(tempnode));
  2386. { firstpass it }
  2387. firstpass(newblock);
  2388. { return new node }
  2389. result := newblock;
  2390. end
  2391. else if (left.resultdef.typ in [enumdef,pointerdef]) or
  2392. is_ordinal(left.resultdef) then
  2393. begin
  2394. { two paras ? }
  2395. if assigned(tcallparanode(left).right) then
  2396. begin
  2397. { need we an additional register ? }
  2398. if not(is_constintnode(tcallparanode(tcallparanode(left).right).left)) and
  2399. (tcallparanode(tcallparanode(left).right).left.expectloc in [LOC_CREFERENCE,LOC_REFERENCE]) and
  2400. (tcallparanode(tcallparanode(left).right).left.registersint<=1) then
  2401. inc(registersint);
  2402. { do we need an additional register to restore the first parameter? }
  2403. if tcallparanode(tcallparanode(left).right).left.registersint>=registersint then
  2404. inc(registersint);
  2405. end;
  2406. end;
  2407. end;
  2408. in_include_x_y,
  2409. in_exclude_x_y:
  2410. begin
  2411. expectloc:=LOC_VOID;
  2412. registersint:=left.registersint;
  2413. registersfpu:=left.registersfpu;
  2414. {$ifdef SUPPORT_MMX}
  2415. registersmmx:=left.registersmmx;
  2416. {$endif SUPPORT_MMX}
  2417. end;
  2418. in_pack_x_y_z,
  2419. in_unpack_x_y_z:
  2420. begin
  2421. result:=first_pack_unpack;
  2422. end;
  2423. in_exp_real:
  2424. begin
  2425. result:= first_exp_real;
  2426. end;
  2427. in_round_real:
  2428. begin
  2429. result:= first_round_real;
  2430. end;
  2431. in_trunc_real:
  2432. begin
  2433. result:= first_trunc_real;
  2434. end;
  2435. in_int_real:
  2436. begin
  2437. result:= first_int_real;
  2438. end;
  2439. in_frac_real:
  2440. begin
  2441. result:= first_frac_real;
  2442. end;
  2443. in_cos_real:
  2444. begin
  2445. result:= first_cos_real;
  2446. end;
  2447. in_sin_real:
  2448. begin
  2449. result := first_sin_real;
  2450. end;
  2451. in_arctan_real:
  2452. begin
  2453. result := first_arctan_real;
  2454. end;
  2455. in_pi_real :
  2456. begin
  2457. result := first_pi;
  2458. end;
  2459. in_abs_real:
  2460. begin
  2461. result := first_abs_real;
  2462. end;
  2463. in_sqr_real:
  2464. begin
  2465. result := first_sqr_real;
  2466. end;
  2467. in_sqrt_real:
  2468. begin
  2469. result := first_sqrt_real;
  2470. end;
  2471. in_ln_real:
  2472. begin
  2473. result := first_ln_real;
  2474. end;
  2475. {$ifdef SUPPORT_MMX}
  2476. in_mmx_pcmpeqb..in_mmx_pcmpgtw:
  2477. begin
  2478. end;
  2479. {$endif SUPPORT_MMX}
  2480. in_assert_x_y :
  2481. begin
  2482. expectloc:=LOC_VOID;
  2483. registersint:=left.registersint;
  2484. registersfpu:=left.registersfpu;
  2485. {$ifdef SUPPORT_MMX}
  2486. registersmmx:=left.registersmmx;
  2487. {$endif SUPPORT_MMX}
  2488. end;
  2489. in_low_x,
  2490. in_high_x:
  2491. internalerror(200104047);
  2492. in_slice_x:
  2493. internalerror(2005101501);
  2494. in_ord_x,
  2495. in_chr_byte:
  2496. begin
  2497. { should not happend as it's converted to typeconv }
  2498. internalerror(200104045);
  2499. end;
  2500. in_ofs_x :
  2501. internalerror(2000101001);
  2502. in_seg_x :
  2503. internalerror(200104046);
  2504. in_settextbuf_file_x,
  2505. in_reset_typedfile,
  2506. in_rewrite_typedfile,
  2507. in_str_x_string,
  2508. in_val_x,
  2509. in_read_x,
  2510. in_readln_x,
  2511. in_write_x,
  2512. in_writeln_x :
  2513. begin
  2514. { should be handled by pass_typecheck }
  2515. internalerror(200108234);
  2516. end;
  2517. in_get_frame:
  2518. begin
  2519. include(current_procinfo.flags,pi_needs_stackframe);
  2520. expectloc:=LOC_CREGISTER;
  2521. end;
  2522. in_get_caller_frame:
  2523. begin
  2524. expectloc:=LOC_REGISTER;
  2525. registersint:=1;
  2526. end;
  2527. in_get_caller_addr:
  2528. begin
  2529. expectloc:=LOC_REGISTER;
  2530. registersint:=1;
  2531. end;
  2532. in_prefetch_var:
  2533. begin
  2534. expectloc:=LOC_VOID;
  2535. end;
  2536. {$ifdef SUPPORT_UNALIGNED}
  2537. in_unaligned_x:
  2538. begin
  2539. expectloc:=tcallparanode(left).left.expectloc;
  2540. end;
  2541. {$endif SUPPORT_UNALIGNED}
  2542. else
  2543. internalerror(89);
  2544. end;
  2545. dec(parsing_para_level);
  2546. end;
  2547. {$maxfpuregisters default}
  2548. function tinlinenode.docompare(p: tnode): boolean;
  2549. begin
  2550. docompare :=
  2551. inherited docompare(p) and
  2552. (inlinenumber = tinlinenode(p).inlinenumber);
  2553. end;
  2554. function tinlinenode.first_pi : tnode;
  2555. begin
  2556. result:=crealconstnode.create(getpi,pbestrealtype^);
  2557. end;
  2558. function tinlinenode.first_arctan_real : tnode;
  2559. begin
  2560. { create the call to the helper }
  2561. { on entry left node contains the parameter }
  2562. first_arctan_real := ccallnode.createintern('fpc_arctan_real',
  2563. ccallparanode.create(left,nil));
  2564. left := nil;
  2565. end;
  2566. function tinlinenode.first_abs_real : tnode;
  2567. begin
  2568. { create the call to the helper }
  2569. { on entry left node contains the parameter }
  2570. first_abs_real := ccallnode.createintern('fpc_abs_real',
  2571. ccallparanode.create(left,nil));
  2572. left := nil;
  2573. end;
  2574. function tinlinenode.first_sqr_real : tnode;
  2575. begin
  2576. { create the call to the helper }
  2577. { on entry left node contains the parameter }
  2578. first_sqr_real := ctypeconvnode.create(ccallnode.createintern('fpc_sqr_real',
  2579. ccallparanode.create(left,nil)),resultdef);
  2580. left := nil;
  2581. end;
  2582. function tinlinenode.first_sqrt_real : tnode;
  2583. begin
  2584. { create the call to the helper }
  2585. { on entry left node contains the parameter }
  2586. first_sqrt_real := ctypeconvnode.create(ccallnode.createintern('fpc_sqrt_real',
  2587. ccallparanode.create(left,nil)),resultdef);
  2588. left := nil;
  2589. end;
  2590. function tinlinenode.first_ln_real : tnode;
  2591. begin
  2592. { create the call to the helper }
  2593. { on entry left node contains the parameter }
  2594. first_ln_real := ccallnode.createintern('fpc_ln_real',
  2595. ccallparanode.create(left,nil));
  2596. left := nil;
  2597. end;
  2598. function tinlinenode.first_cos_real : tnode;
  2599. begin
  2600. { create the call to the helper }
  2601. { on entry left node contains the parameter }
  2602. first_cos_real := ccallnode.createintern('fpc_cos_real',
  2603. ccallparanode.create(left,nil));
  2604. left := nil;
  2605. end;
  2606. function tinlinenode.first_sin_real : tnode;
  2607. begin
  2608. { create the call to the helper }
  2609. { on entry left node contains the parameter }
  2610. first_sin_real := ccallnode.createintern('fpc_sin_real',
  2611. ccallparanode.create(left,nil));
  2612. left := nil;
  2613. end;
  2614. function tinlinenode.first_exp_real : tnode;
  2615. begin
  2616. { create the call to the helper }
  2617. { on entry left node contains the parameter }
  2618. result := ccallnode.createintern('fpc_exp_real',ccallparanode.create(left,nil));
  2619. left := nil;
  2620. end;
  2621. function tinlinenode.first_int_real : tnode;
  2622. begin
  2623. { create the call to the helper }
  2624. { on entry left node contains the parameter }
  2625. result := ccallnode.createintern('fpc_int_real',ccallparanode.create(left,nil));
  2626. left := nil;
  2627. end;
  2628. function tinlinenode.first_frac_real : tnode;
  2629. begin
  2630. { create the call to the helper }
  2631. { on entry left node contains the parameter }
  2632. result := ccallnode.createintern('fpc_frac_real',ccallparanode.create(left,nil));
  2633. left := nil;
  2634. end;
  2635. function tinlinenode.first_round_real : tnode;
  2636. begin
  2637. { create the call to the helper }
  2638. { on entry left node contains the parameter }
  2639. result := ccallnode.createintern('fpc_round_real',ccallparanode.create(left,nil));
  2640. left := nil;
  2641. end;
  2642. function tinlinenode.first_trunc_real : tnode;
  2643. begin
  2644. { create the call to the helper }
  2645. { on entry left node contains the parameter }
  2646. result := ccallnode.createintern('fpc_trunc_real',ccallparanode.create(left,nil));
  2647. left := nil;
  2648. end;
  2649. function tinlinenode.first_pack_unpack: tnode;
  2650. var
  2651. loopstatement : tstatementnode;
  2652. loop : tblocknode;
  2653. loopvar : ttempcreatenode;
  2654. tempnode,
  2655. source,
  2656. target,
  2657. index,
  2658. unpackednode,
  2659. packednode,
  2660. sourcevecindex,
  2661. targetvecindex,
  2662. loopbody : tnode;
  2663. temprangedef : tdef;
  2664. ulorange,
  2665. uhirange,
  2666. plorange,
  2667. phirange : TConstExprInt;
  2668. begin
  2669. { transform into a for loop which assigns the data of the (un)packed }
  2670. { array to the other one }
  2671. source := left;
  2672. if (inlinenumber = in_unpack_x_y_z) then
  2673. begin
  2674. target := tcallparanode(source).right;
  2675. index := tcallparanode(target).right;
  2676. packednode := tcallparanode(source).left;
  2677. unpackednode := tcallparanode(target).left;
  2678. end
  2679. else
  2680. begin
  2681. index := tcallparanode(source).right;
  2682. target := tcallparanode(index).right;
  2683. packednode := tcallparanode(target).left;
  2684. unpackednode := tcallparanode(source).left;
  2685. end;
  2686. source := tcallparanode(source).left;
  2687. target := tcallparanode(target).left;
  2688. index := tcallparanode(index).left;
  2689. loop := internalstatements(loopstatement);
  2690. loopvar := ctempcreatenode.create(
  2691. tarraydef(packednode.resultdef).rangedef,
  2692. tarraydef(packednode.resultdef).rangedef.size,
  2693. tt_persistent,true);
  2694. addstatement(loopstatement,loopvar);
  2695. { For range checking: we have to convert to an integer type (in case the index type }
  2696. { is an enum), add the index and loop variable together, convert the result }
  2697. { implicitly to an orddef with range equal to the rangedef to get range checking }
  2698. { and finally convert it explicitly back to the actual rangedef to avoid type }
  2699. { errors }
  2700. temprangedef:=nil;
  2701. getrange(unpackednode.resultdef,ulorange,uhirange);
  2702. getrange(packednode.resultdef,plorange,phirange);
  2703. temprangedef:=torddef.create(torddef(sinttype).ordtype,ulorange,uhirange);
  2704. sourcevecindex := ctemprefnode.create(loopvar);
  2705. targetvecindex := ctypeconvnode.create_internal(index.getcopy,sinttype);
  2706. targetvecindex := caddnode.create(subn,targetvecindex,cordconstnode.create(plorange,sinttype,true));
  2707. targetvecindex := caddnode.create(addn,targetvecindex,ctemprefnode.create(loopvar));
  2708. targetvecindex := ctypeconvnode.create(targetvecindex,temprangedef);
  2709. targetvecindex := ctypeconvnode.create_explicit(targetvecindex,tarraydef(unpackednode.resultdef).rangedef);
  2710. if (inlinenumber = in_pack_x_y_z) then
  2711. begin
  2712. { swap source and target vec indices }
  2713. tempnode := sourcevecindex;
  2714. sourcevecindex := targetvecindex;
  2715. targetvecindex := tempnode;
  2716. end;
  2717. { create the assignment in the loop body }
  2718. loopbody :=
  2719. cassignmentnode.create(
  2720. cvecnode.create(target.getcopy,targetvecindex),
  2721. cvecnode.create(source.getcopy,sourcevecindex)
  2722. );
  2723. { create the actual for loop }
  2724. tempnode := cfornode.create(
  2725. ctemprefnode.create(loopvar),
  2726. cinlinenode.create(in_low_x,false,packednode.getcopy),
  2727. cinlinenode.create(in_high_x,false,packednode.getcopy),
  2728. loopbody,
  2729. false);
  2730. addstatement(loopstatement,tempnode);
  2731. { free the loop counter }
  2732. addstatement(loopstatement,ctempdeletenode.create(loopvar));
  2733. result := loop;
  2734. end;
  2735. begin
  2736. cinlinenode:=tinlinenode;
  2737. end.