types.pas 39 KB

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  1. {
  2. $Id$
  3. Copyright (C) 1993-98 by Florian Klaempfl
  4. This unit provides some help routines for type handling
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. ****************************************************************************
  17. }
  18. unit types;
  19. interface
  20. uses
  21. cobjects,symtable;
  22. type
  23. tmmxtype = (mmxno,mmxu8bit,mmxs8bit,mmxu16bit,mmxs16bit,
  24. mmxu32bit,mmxs32bit,mmxfixed16,mmxsingle);
  25. const
  26. { true if we must never copy this parameter }
  27. never_copy_const_param : boolean = false;
  28. {*****************************************************************************
  29. Basic type functions
  30. *****************************************************************************}
  31. { returns true, if def defines an ordinal type }
  32. function is_ordinal(def : pdef) : boolean;
  33. { returns the min. value of the type }
  34. function get_min_value(def : pdef) : longint;
  35. { returns true, if def defines an ordinal type }
  36. function is_integer(def : pdef) : boolean;
  37. { true if p is a boolean }
  38. function is_boolean(def : pdef) : boolean;
  39. { true if p is a char }
  40. function is_char(def : pdef) : boolean;
  41. { true if p is a smallset def }
  42. function is_smallset(p : pdef) : boolean;
  43. { returns true, if def defines a signed data type (only for ordinal types) }
  44. function is_signed(def : pdef) : boolean;
  45. {*****************************************************************************
  46. Array helper functions
  47. *****************************************************************************}
  48. { true, if p points to a zero based (non special like open or
  49. dynamic array def, mainly this is used to see if the array
  50. is convertable to a pointer }
  51. function is_zero_based_array(p : pdef) : boolean;
  52. { true if p points to an open array def }
  53. function is_open_array(p : pdef) : boolean;
  54. { true, if p points to an array of const def }
  55. function is_array_constructor(p : pdef) : boolean;
  56. { true, if p points to a variant array }
  57. function is_variant_array(p : pdef) : boolean;
  58. { true, if p points to an array of const }
  59. function is_array_of_const(p : pdef) : boolean;
  60. { true, if p points any kind of special array }
  61. function is_special_array(p : pdef) : boolean;
  62. { true if p is a char array def }
  63. function is_chararray(p : pdef) : boolean;
  64. {*****************************************************************************
  65. String helper functions
  66. *****************************************************************************}
  67. { true if p points to an open string def }
  68. function is_open_string(p : pdef) : boolean;
  69. { true if p is an ansi string def }
  70. function is_ansistring(p : pdef) : boolean;
  71. { true if p is a long string def }
  72. function is_longstring(p : pdef) : boolean;
  73. { true if p is a wide string def }
  74. function is_widestring(p : pdef) : boolean;
  75. { true if p is a short string def }
  76. function is_shortstring(p : pdef) : boolean;
  77. { true if p is a pchar def }
  78. function is_pchar(p : pdef) : boolean;
  79. { returns true, if def uses FPU }
  80. function is_fpu(def : pdef) : boolean;
  81. { true if the return value is in EAX }
  82. function ret_in_acc(def : pdef) : boolean;
  83. { true if uses a parameter as return value }
  84. function ret_in_param(def : pdef) : boolean;
  85. { true, if def is a 64 bit int type }
  86. function is_64bitint(def : pdef) : boolean;
  87. function push_high_param(def : pdef) : boolean;
  88. { true if a parameter is too large to copy and only the address is pushed }
  89. function push_addr_param(def : pdef) : boolean;
  90. { true, if def1 and def2 are semantical the same }
  91. function is_equal(def1,def2 : pdef) : boolean;
  92. { checks for type compatibility (subgroups of type) }
  93. { used for case statements... probably missing stuff }
  94. { to use on other types }
  95. function is_subequal(def1, def2: pdef): boolean;
  96. { same as is_equal, but with error message if failed }
  97. function CheckTypes(def1,def2 : pdef) : boolean;
  98. { true, if two parameter lists are equal }
  99. { if value_equal_const is true, call by value }
  100. { and call by const parameter are assumed as }
  101. { equal }
  102. function equal_paras(def1,def2 : pdefcoll;value_equal_const : boolean) : boolean;
  103. { true if a function can be assigned to a procvar }
  104. function proc_to_procvar_equal(def1,def2 : pabstractprocdef) : boolean;
  105. { if l isn't in the range of def a range check error is generated }
  106. procedure testrange(def : pdef;l : longint);
  107. { returns the range of def }
  108. procedure getrange(def : pdef;var l : longint;var h : longint);
  109. { some type helper routines for MMX support }
  110. function is_mmx_able_array(p : pdef) : boolean;
  111. { returns the mmx type }
  112. function mmx_type(p : pdef) : tmmxtype;
  113. implementation
  114. uses
  115. strings,
  116. globtype,globals,verbose;
  117. function equal_paras(def1,def2 : pdefcoll;value_equal_const : boolean) : boolean;
  118. begin
  119. while (assigned(def1)) and (assigned(def2)) do
  120. begin
  121. if value_equal_const then
  122. begin
  123. if not(is_equal(def1^.data,def2^.data)) or
  124. ((def1^.paratyp<>def2^.paratyp) and
  125. ((def1^.paratyp=vs_var) or
  126. (def1^.paratyp=vs_var)
  127. )
  128. ) then
  129. begin
  130. equal_paras:=false;
  131. exit;
  132. end;
  133. end
  134. else
  135. begin
  136. if not(is_equal(def1^.data,def2^.data)) or
  137. (def1^.paratyp<>def2^.paratyp) then
  138. begin
  139. equal_paras:=false;
  140. exit;
  141. end;
  142. end;
  143. def1:=def1^.next;
  144. def2:=def2^.next;
  145. end;
  146. if (def1=nil) and (def2=nil) then
  147. equal_paras:=true
  148. else
  149. equal_paras:=false;
  150. end;
  151. { true if a function can be assigned to a procvar }
  152. function proc_to_procvar_equal(def1,def2 : pabstractprocdef) : boolean;
  153. begin
  154. if is_equal(def1^.retdef,def2^.retdef) and
  155. equal_paras(def1^.para1,def2^.para1,false) and
  156. ((def1^.options and po_compatibility_options)=
  157. (def2^.options and po_compatibility_options)) then
  158. proc_to_procvar_equal:=true
  159. else
  160. proc_to_procvar_equal:=false;
  161. end;
  162. { returns true, if def uses FPU }
  163. function is_fpu(def : pdef) : boolean;
  164. begin
  165. is_fpu:=(def^.deftype=floatdef) and (pfloatdef(def)^.typ<>f32bit);
  166. end;
  167. { true if p is an ordinal }
  168. function is_ordinal(def : pdef) : boolean;
  169. var
  170. dt : tbasetype;
  171. begin
  172. case def^.deftype of
  173. orddef : begin
  174. dt:=porddef(def)^.typ;
  175. is_ordinal:=dt in [uchar,u8bit,u16bit,u32bit,u64bit,s8bit,s16bit,s32bit,
  176. s64bitint,bool8bit,bool16bit,bool32bit];
  177. end;
  178. enumdef : is_ordinal:=true;
  179. else
  180. is_ordinal:=false;
  181. end;
  182. end;
  183. { returns the min. value of the type }
  184. function get_min_value(def : pdef) : longint;
  185. begin
  186. case def^.deftype of
  187. orddef:
  188. get_min_value:=porddef(def)^.low;
  189. enumdef:
  190. get_min_value:=penumdef(def)^.min;
  191. else
  192. get_min_value:=0;
  193. end;
  194. end;
  195. { true if p is an integer }
  196. function is_integer(def : pdef) : boolean;
  197. begin
  198. is_integer:=(def^.deftype=orddef) and
  199. (porddef(def)^.typ in [uauto,u8bit,u16bit,u32bit,s8bit,s16bit,s32bit]);
  200. end;
  201. { true if p is a boolean }
  202. function is_boolean(def : pdef) : boolean;
  203. begin
  204. is_boolean:=(def^.deftype=orddef) and
  205. (porddef(def)^.typ in [bool8bit,bool16bit,bool32bit]);
  206. end;
  207. { true if p is a char }
  208. function is_char(def : pdef) : boolean;
  209. begin
  210. is_char:=(def^.deftype=orddef) and
  211. (porddef(def)^.typ=uchar);
  212. end;
  213. { true if p is signed (integer) }
  214. function is_signed(def : pdef) : boolean;
  215. var
  216. dt : tbasetype;
  217. begin
  218. case def^.deftype of
  219. orddef : begin
  220. dt:=porddef(def)^.typ;
  221. is_signed:=(dt in [s8bit,s16bit,s32bit]);
  222. end;
  223. enumdef : is_signed:=false;
  224. else
  225. is_signed:=false;
  226. end;
  227. end;
  228. { true, if p points to an open array def }
  229. function is_open_string(p : pdef) : boolean;
  230. begin
  231. is_open_string:=(p^.deftype=stringdef) and
  232. (pstringdef(p)^.string_typ=st_shortstring) and
  233. (pstringdef(p)^.len=0);
  234. end;
  235. { true, if p points to a zero based array def }
  236. function is_zero_based_array(p : pdef) : boolean;
  237. begin
  238. is_zero_based_array:=(p^.deftype=arraydef) and
  239. (parraydef(p)^.lowrange=0) and
  240. not(is_special_array(p));
  241. end;
  242. { true, if p points to an open array def }
  243. function is_open_array(p : pdef) : boolean;
  244. begin
  245. is_open_array:=(p^.deftype=arraydef) and
  246. (parraydef(p)^.lowrange=0) and
  247. (parraydef(p)^.highrange=-1) and
  248. not(parraydef(p)^.IsConstructor) and
  249. not(parraydef(p)^.IsVariant) and
  250. not(parraydef(p)^.IsArrayOfConst);
  251. end;
  252. { true, if p points to an array of const def }
  253. function is_array_constructor(p : pdef) : boolean;
  254. begin
  255. is_array_constructor:=(p^.deftype=arraydef) and
  256. (parraydef(p)^.IsConstructor);
  257. end;
  258. { true, if p points to a variant array }
  259. function is_variant_array(p : pdef) : boolean;
  260. begin
  261. is_variant_array:=(p^.deftype=arraydef) and
  262. (parraydef(p)^.IsVariant);
  263. end;
  264. { true, if p points to an array of const }
  265. function is_array_of_const(p : pdef) : boolean;
  266. begin
  267. is_array_of_const:=(p^.deftype=arraydef) and
  268. (parraydef(p)^.IsArrayOfConst);
  269. end;
  270. { true, if p points to a special array }
  271. function is_special_array(p : pdef) : boolean;
  272. begin
  273. is_special_array:=(p^.deftype=arraydef) and
  274. ((parraydef(p)^.IsVariant) or
  275. (parraydef(p)^.IsArrayOfConst) or
  276. (parraydef(p)^.IsConstructor) or
  277. is_open_array(p)
  278. );
  279. end;
  280. { true if p is an ansi string def }
  281. function is_ansistring(p : pdef) : boolean;
  282. begin
  283. is_ansistring:=(p^.deftype=stringdef) and
  284. (pstringdef(p)^.string_typ=st_ansistring);
  285. end;
  286. { true if p is an long string def }
  287. function is_longstring(p : pdef) : boolean;
  288. begin
  289. is_longstring:=(p^.deftype=stringdef) and
  290. (pstringdef(p)^.string_typ=st_longstring);
  291. end;
  292. { true if p is an wide string def }
  293. function is_widestring(p : pdef) : boolean;
  294. begin
  295. is_widestring:=(p^.deftype=stringdef) and
  296. (pstringdef(p)^.string_typ=st_widestring);
  297. end;
  298. { true if p is an short string def }
  299. function is_shortstring(p : pdef) : boolean;
  300. begin
  301. is_shortstring:=(p^.deftype=stringdef) and
  302. (pstringdef(p)^.string_typ=st_shortstring);
  303. end;
  304. { true if p is a char array def }
  305. function is_chararray(p : pdef) : boolean;
  306. begin
  307. is_chararray:=(p^.deftype=arraydef) and
  308. is_equal(parraydef(p)^.definition,cchardef) and
  309. not(is_special_array(p));
  310. end;
  311. { true if p is a pchar def }
  312. function is_pchar(p : pdef) : boolean;
  313. begin
  314. is_pchar:=(p^.deftype=pointerdef) and
  315. is_equal(Ppointerdef(p)^.definition,cchardef);
  316. end;
  317. { true if p is a smallset def }
  318. function is_smallset(p : pdef) : boolean;
  319. begin
  320. is_smallset:=(p^.deftype=setdef) and
  321. (psetdef(p)^.settype=smallset);
  322. end;
  323. { true if the return value is in accumulator (EAX for i386), D0 for 68k }
  324. function ret_in_acc(def : pdef) : boolean;
  325. begin
  326. ret_in_acc:=(def^.deftype in [orddef,pointerdef,enumdef,classrefdef]) or
  327. ((def^.deftype=stringdef) and (pstringdef(def)^.string_typ in [st_ansistring,st_widestring])) or
  328. ((def^.deftype=procvardef) and ((pprocvardef(def)^.options and pomethodpointer)=0)) or
  329. ((def^.deftype=objectdef) and pobjectdef(def)^.isclass) or
  330. ((def^.deftype=setdef) and (psetdef(def)^.settype=smallset)) or
  331. ((def^.deftype=floatdef) and (pfloatdef(def)^.typ=f32bit));
  332. end;
  333. { true, if def is a 64 bit int type }
  334. function is_64bitint(def : pdef) : boolean;
  335. begin
  336. is_64bitint:=(def^.deftype=orddef) and (porddef(def)^.typ in [u64bit,s64bitint])
  337. end;
  338. { true if uses a parameter as return value }
  339. function ret_in_param(def : pdef) : boolean;
  340. begin
  341. ret_in_param:=(def^.deftype in [arraydef,recorddef]) or
  342. ((def^.deftype=stringdef) and (pstringdef(def)^.string_typ in [st_shortstring,st_longstring])) or
  343. ((def^.deftype=procvardef) and ((pprocvardef(def)^.options and pomethodpointer)<>0)) or
  344. ((def^.deftype=objectdef) and not(pobjectdef(def)^.isclass)) or
  345. ((def^.deftype=setdef) and (psetdef(def)^.settype<>smallset));
  346. end;
  347. function push_high_param(def : pdef) : boolean;
  348. begin
  349. push_high_param:=is_open_array(def) or is_open_string(def) or
  350. is_array_of_const(def);
  351. end;
  352. { true if a parameter is too large to copy and only the address is pushed }
  353. function push_addr_param(def : pdef) : boolean;
  354. begin
  355. push_addr_param:=never_copy_const_param or
  356. (def^.deftype = formaldef) or
  357. { copy directly small records or arrays unless array of const ! PM }
  358. ((def^.deftype in [arraydef,recorddef]) and
  359. ((def^.size>4) or
  360. ((def^.deftype=arraydef) and
  361. (parraydef(def)^.IsConstructor or
  362. parraydef(def)^.isArrayOfConst or
  363. is_open_array(def)
  364. )
  365. )
  366. )
  367. ) or
  368. ((def^.deftype=objectdef) and not(pobjectdef(def)^.isclass)) or
  369. ((def^.deftype=stringdef) and (pstringdef(def)^.string_typ in [st_shortstring,st_longstring])) or
  370. ((def^.deftype=procvardef) and ((pprocvardef(def)^.options and pomethodpointer)<>0)) or
  371. ((def^.deftype=setdef) and (psetdef(def)^.settype<>smallset));
  372. end;
  373. { test if l is in the range of def, outputs error if out of range }
  374. procedure testrange(def : pdef;l : longint);
  375. var
  376. lv,hv: longint;
  377. begin
  378. getrange(def,lv,hv);
  379. if (def^.deftype=orddef) and
  380. (porddef(def)^.typ=u32bit) then
  381. begin
  382. if lv<=hv then
  383. begin
  384. if (l<lv) or (l>hv) then
  385. begin
  386. if (cs_check_range in aktlocalswitches) then
  387. Message(parser_e_range_check_error)
  388. else
  389. Message(parser_w_range_check_error);
  390. end;
  391. end
  392. else
  393. { this happens with the wrap around problem }
  394. { if lv is positive and hv is over $7ffffff }
  395. { so it seems negative }
  396. begin
  397. if ((l>=0) and (l<lv)) or
  398. ((l<0) and (l>hv)) then
  399. begin
  400. if (cs_check_range in aktlocalswitches) then
  401. Message(parser_e_range_check_error)
  402. else
  403. Message(parser_w_range_check_error);
  404. end;
  405. end;
  406. end
  407. else if (l<lv) or (l>hv) then
  408. begin
  409. if (cs_check_range in aktlocalswitches) then
  410. Message(parser_e_range_check_error)
  411. else
  412. Message(parser_w_range_check_error);
  413. end;
  414. end;
  415. { return the range from def in l and h }
  416. procedure getrange(def : pdef;var l : longint;var h : longint);
  417. begin
  418. case def^.deftype of
  419. orddef :
  420. begin
  421. l:=porddef(def)^.low;
  422. h:=porddef(def)^.high;
  423. end;
  424. enumdef :
  425. begin
  426. l:=penumdef(def)^.min;
  427. h:=penumdef(def)^.max;
  428. end;
  429. arraydef :
  430. begin
  431. l:=parraydef(def)^.lowrange;
  432. h:=parraydef(def)^.highrange;
  433. end;
  434. else
  435. internalerror(987);
  436. end;
  437. end;
  438. function mmx_type(p : pdef) : tmmxtype;
  439. begin
  440. mmx_type:=mmxno;
  441. if is_mmx_able_array(p) then
  442. begin
  443. if parraydef(p)^.definition^.deftype=floatdef then
  444. case pfloatdef(parraydef(p)^.definition)^.typ of
  445. s32real:
  446. mmx_type:=mmxsingle;
  447. f16bit:
  448. mmx_type:=mmxfixed16
  449. end
  450. else
  451. case porddef(parraydef(p)^.definition)^.typ of
  452. u8bit:
  453. mmx_type:=mmxu8bit;
  454. s8bit:
  455. mmx_type:=mmxs8bit;
  456. u16bit:
  457. mmx_type:=mmxu16bit;
  458. s16bit:
  459. mmx_type:=mmxs16bit;
  460. u32bit:
  461. mmx_type:=mmxu32bit;
  462. s32bit:
  463. mmx_type:=mmxs32bit;
  464. end;
  465. end;
  466. end;
  467. function is_mmx_able_array(p : pdef) : boolean;
  468. begin
  469. {$ifdef SUPPORT_MMX}
  470. if (cs_mmx_saturation in aktlocalswitches) then
  471. begin
  472. is_mmx_able_array:=(p^.deftype=arraydef) and
  473. not(is_special_array(p)) and
  474. (
  475. (
  476. (parraydef(p)^.definition^.deftype=orddef) and
  477. (
  478. (
  479. (parraydef(p)^.lowrange=0) and
  480. (parraydef(p)^.highrange=1) and
  481. (porddef(parraydef(p)^.definition)^.typ in [u32bit,s32bit])
  482. )
  483. or
  484. (
  485. (parraydef(p)^.lowrange=0) and
  486. (parraydef(p)^.highrange=3) and
  487. (porddef(parraydef(p)^.definition)^.typ in [u16bit,s16bit])
  488. )
  489. )
  490. )
  491. or
  492. (
  493. (
  494. (parraydef(p)^.definition^.deftype=floatdef) and
  495. (
  496. (parraydef(p)^.lowrange=0) and
  497. (parraydef(p)^.highrange=3) and
  498. (pfloatdef(parraydef(p)^.definition)^.typ=f16bit)
  499. ) or
  500. (
  501. (parraydef(p)^.lowrange=0) and
  502. (parraydef(p)^.highrange=1) and
  503. (pfloatdef(parraydef(p)^.definition)^.typ=s32real)
  504. )
  505. )
  506. )
  507. );
  508. end
  509. else
  510. begin
  511. is_mmx_able_array:=(p^.deftype=arraydef) and
  512. (
  513. (
  514. (parraydef(p)^.definition^.deftype=orddef) and
  515. (
  516. (
  517. (parraydef(p)^.lowrange=0) and
  518. (parraydef(p)^.highrange=1) and
  519. (porddef(parraydef(p)^.definition)^.typ in [u32bit,s32bit])
  520. )
  521. or
  522. (
  523. (parraydef(p)^.lowrange=0) and
  524. (parraydef(p)^.highrange=3) and
  525. (porddef(parraydef(p)^.definition)^.typ in [u16bit,s16bit])
  526. )
  527. or
  528. (
  529. (parraydef(p)^.lowrange=0) and
  530. (parraydef(p)^.highrange=7) and
  531. (porddef(parraydef(p)^.definition)^.typ in [u8bit,s8bit])
  532. )
  533. )
  534. )
  535. or
  536. (
  537. (parraydef(p)^.definition^.deftype=floatdef) and
  538. (
  539. (
  540. (parraydef(p)^.lowrange=0) and
  541. (parraydef(p)^.highrange=3) and
  542. (pfloatdef(parraydef(p)^.definition)^.typ=f32bit)
  543. )
  544. or
  545. (
  546. (parraydef(p)^.lowrange=0) and
  547. (parraydef(p)^.highrange=1) and
  548. (pfloatdef(parraydef(p)^.definition)^.typ=s32real)
  549. )
  550. )
  551. )
  552. );
  553. end;
  554. {$else SUPPORT_MMX}
  555. is_mmx_able_array:=false;
  556. {$endif SUPPORT_MMX}
  557. end;
  558. function is_equal(def1,def2 : pdef) : boolean;
  559. const
  560. procvarmask = not(poassembler or pomethodpointer or povirtualmethod or
  561. pooverridingmethod or pomsgint or pomsgstr);
  562. var
  563. b : boolean;
  564. hd : pdef;
  565. hp1,hp2 : pdefcoll;
  566. begin
  567. { both types must exists }
  568. if not (assigned(def1) and assigned(def2)) then
  569. begin
  570. is_equal:=false;
  571. exit;
  572. end;
  573. { be sure, that if there is a stringdef, that this is def1 }
  574. if def2^.deftype=stringdef then
  575. begin
  576. hd:=def1;
  577. def1:=def2;
  578. def2:=hd;
  579. end;
  580. b:=false;
  581. { both point to the same definition ? }
  582. if def1=def2 then
  583. b:=true
  584. else
  585. { pointer with an equal definition are equal }
  586. if (def1^.deftype=pointerdef) and (def2^.deftype=pointerdef) then
  587. begin
  588. { here a problem detected in tabsolutesym }
  589. { the types can be forward type !! }
  590. if assigned(def1^.sym) and ((def1^.sym^.properties and sp_forwarddef)<>0) then
  591. b:=(def1^.sym=def2^.sym)
  592. else
  593. b:=ppointerdef(def1)^.definition=ppointerdef(def2)^.definition;
  594. end
  595. else
  596. { ordinals are equal only when the ordinal type is equal }
  597. if (def1^.deftype=orddef) and (def2^.deftype=orddef) then
  598. begin
  599. case porddef(def1)^.typ of
  600. u8bit,u16bit,u32bit,
  601. s8bit,s16bit,s32bit:
  602. b:=((porddef(def1)^.typ=porddef(def2)^.typ) and
  603. (porddef(def1)^.low=porddef(def2)^.low) and
  604. (porddef(def1)^.high=porddef(def2)^.high));
  605. uvoid,uchar,
  606. bool8bit,bool16bit,bool32bit:
  607. b:=(porddef(def1)^.typ=porddef(def2)^.typ);
  608. end;
  609. end
  610. else
  611. if (def1^.deftype=floatdef) and (def2^.deftype=floatdef) then
  612. b:=pfloatdef(def1)^.typ=pfloatdef(def2)^.typ
  613. else
  614. { strings with the same length are equal }
  615. if (def1^.deftype=stringdef) and (def2^.deftype=stringdef) and
  616. (pstringdef(def1)^.string_typ=pstringdef(def2)^.string_typ) then
  617. begin
  618. b:=not(is_shortstring(def1)) or
  619. (pstringdef(def1)^.len=pstringdef(def2)^.len);
  620. end
  621. else
  622. if (def1^.deftype=formaldef) and (def2^.deftype=formaldef) then
  623. b:=true
  624. { file types with the same file element type are equal }
  625. { this is a problem for assign !! }
  626. { changed to allow if one is untyped }
  627. { all typed files are equal to the special }
  628. { typed file that has voiddef as elemnt type }
  629. { but must NOT match for text file !!! }
  630. else
  631. if (def1^.deftype=filedef) and (def2^.deftype=filedef) then
  632. b:=(pfiledef(def1)^.filetype=pfiledef(def2)^.filetype) and
  633. ((
  634. ((pfiledef(def1)^.typed_as=nil) and
  635. (pfiledef(def2)^.typed_as=nil)) or
  636. (
  637. (pfiledef(def1)^.typed_as<>nil) and
  638. (pfiledef(def2)^.typed_as<>nil) and
  639. is_equal(pfiledef(def1)^.typed_as,pfiledef(def2)^.typed_as)
  640. ) or
  641. ( (pfiledef(def1)^.typed_as=pdef(voiddef)) or
  642. (pfiledef(def2)^.typed_as=pdef(voiddef))
  643. )))
  644. { sets with the same element type are equal }
  645. else
  646. if (def1^.deftype=setdef) and (def2^.deftype=setdef) then
  647. begin
  648. if assigned(psetdef(def1)^.setof) and
  649. assigned(psetdef(def2)^.setof) then
  650. b:=(psetdef(def1)^.setof^.deftype=psetdef(def2)^.setof^.deftype)
  651. else
  652. b:=true;
  653. end
  654. else
  655. if (def1^.deftype=procvardef) and (def2^.deftype=procvardef) then
  656. begin
  657. { poassembler isn't important for compatibility }
  658. { if a method is assigned to a methodpointer }
  659. { is checked before }
  660. b:=((pprocvardef(def1)^.options and procvarmask)=(pprocvardef(def2)^.options and procvarmask)) and
  661. is_equal(pprocvardef(def1)^.retdef,pprocvardef(def2)^.retdef);
  662. { now evalute the parameters }
  663. if b then
  664. begin
  665. hp1:=pprocvardef(def1)^.para1;
  666. hp2:=pprocvardef(def1)^.para1;
  667. while assigned(hp1) and assigned(hp2) do
  668. begin
  669. if not(is_equal(hp1^.data,hp2^.data)) or
  670. not(hp1^.paratyp=hp2^.paratyp) then
  671. begin
  672. b:=false;
  673. break;
  674. end;
  675. hp1:=hp1^.next;
  676. hp2:=hp2^.next;
  677. end;
  678. b:=(hp1=nil) and (hp2=nil);
  679. end;
  680. end
  681. else
  682. if (def1^.deftype=arraydef) and (def2^.deftype=arraydef) and
  683. (is_open_array(def1) or is_open_array(def2) or
  684. is_array_of_const(def1) or is_array_of_const(def2)) then
  685. begin
  686. if parraydef(def1)^.IsArrayOfConst or parraydef(def2)^.IsArrayOfConst then
  687. b:=true
  688. else
  689. b:=is_equal(parraydef(def1)^.definition,parraydef(def2)^.definition);
  690. end
  691. else
  692. if (def1^.deftype=classrefdef) and (def2^.deftype=classrefdef) then
  693. begin
  694. { similar to pointerdef: }
  695. if assigned(def1^.sym) and ((def1^.sym^.properties and sp_forwarddef)<>0) then
  696. b:=(def1^.sym=def2^.sym)
  697. else
  698. b:=is_equal(pclassrefdef(def1)^.definition,pclassrefdef(def2)^.definition);
  699. end;
  700. is_equal:=b;
  701. end;
  702. function is_subequal(def1, def2: pdef): boolean;
  703. Begin
  704. if assigned(def1) and assigned(def2) then
  705. Begin
  706. is_subequal := FALSE;
  707. if (def1^.deftype = orddef) and (def2^.deftype = orddef) then
  708. Begin
  709. { see p.47 of Turbo Pascal 7.01 manual for the separation of types }
  710. { range checking for case statements is done with testrange }
  711. case porddef(def1)^.typ of
  712. u8bit,u16bit,u32bit,
  713. s8bit,s16bit,s32bit :
  714. is_subequal:=(porddef(def2)^.typ in [s32bit,u32bit,u8bit,s8bit,s16bit,u16bit]);
  715. bool8bit,bool16bit,bool32bit :
  716. is_subequal:=(porddef(def2)^.typ in [bool8bit,bool16bit,bool32bit]);
  717. uchar :
  718. is_subequal:=(porddef(def2)^.typ=uchar);
  719. end;
  720. end
  721. else
  722. Begin
  723. { I assume that both enumerations are equal when the first }
  724. { pointers are equal. }
  725. if (def1^.deftype = enumdef) and (def2^.deftype =enumdef) then
  726. Begin
  727. if penumdef(def1)^.firstenum = penumdef(def2)^.firstenum then
  728. is_subequal := TRUE;
  729. end;
  730. end;
  731. end; { endif assigned ... }
  732. end;
  733. function CheckTypes(def1,def2 : pdef) : boolean;
  734. var
  735. s1,s2 : string;
  736. begin
  737. if not is_equal(def1,def2) then
  738. begin
  739. { Crash prevention }
  740. if (not assigned(def1)) or (not assigned(def2)) then
  741. Message(type_e_mismatch)
  742. else
  743. begin
  744. s1:=def1^.typename;
  745. s2:=def2^.typename;
  746. if (s1<>'<unknown type>') and (s2<>'<unknown type>') then
  747. Message2(type_e_not_equal_types,def1^.typename,def2^.typename)
  748. else
  749. Message(type_e_mismatch);
  750. end;
  751. CheckTypes:=false;
  752. end
  753. else
  754. CheckTypes:=true;
  755. end;
  756. end.
  757. {
  758. $Log$
  759. Revision 1.66 1999-05-28 11:00:51 peter
  760. * removed ungettempoftype
  761. Revision 1.65 1999/05/23 18:42:23 florian
  762. * better error recovering in typed constants
  763. * some problems with arrays of const fixed, some problems
  764. due my previous
  765. - the location type of array constructor is now LOC_MEM
  766. - the pushing of high fixed
  767. - parameter copying fixed
  768. - zero temp. allocation removed
  769. * small problem in the assembler writers fixed:
  770. ref to nil wasn't written correctly
  771. Revision 1.64 1999/05/19 20:55:08 florian
  772. * fix of my previous commit
  773. Revision 1.63 1999/05/19 20:40:15 florian
  774. * fixed a couple of array related bugs:
  775. - var a : array[0..1] of char; p : pchar; p:=a+123; works now
  776. - open arrays with an odd size doesn't work: movsb wasn't generated
  777. - introduced some new array type helper routines (is_special_array) etc.
  778. - made the array type checking in isconvertable more strict, often
  779. open array can be used where is wasn't allowed etc...
  780. Revision 1.62 1999/05/19 16:48:29 florian
  781. * tdef.typename: returns a now a proper type name for the most types
  782. Revision 1.61 1999/05/19 10:31:56 florian
  783. * two bugs reported by Romio (bugs 13) are fixed:
  784. - empty array constructors are now handled correctly (e.g. for sysutils.format)
  785. - comparsion of ansistrings was sometimes coded wrong
  786. Revision 1.60 1999/05/18 14:16:01 peter
  787. * containsself fixes
  788. * checktypes()
  789. Revision 1.59 1999/05/18 09:52:24 peter
  790. * procedure of object and addrn fixes
  791. Revision 1.58 1999/04/19 09:29:51 pierre
  792. + ungettempoftype(pdef) boolean function
  793. returns true (can call ungetiftemp )
  794. unless the temp should be "unget" with temptoremove
  795. (currently ansistring or widestring !)
  796. Revision 1.57 1999/04/14 09:15:08 peter
  797. * first things to store the symbol/def number in the ppu
  798. Revision 1.56 1999/03/24 23:17:42 peter
  799. * fixed bugs 212,222,225,227,229,231,233
  800. Revision 1.55 1999/03/09 11:45:42 pierre
  801. * small arrays and records (size <=4) are copied directly
  802. Revision 1.54 1999/03/02 22:52:20 peter
  803. * fixed char array, which can start with all possible values
  804. Revision 1.53 1999/02/25 21:02:57 peter
  805. * ag386bin updates
  806. + coff writer
  807. Revision 1.52 1999/02/24 09:51:44 florian
  808. * wrong warning fixed, if a non-virtual method was hidden by a virtual
  809. method (repoerted by Matthias Koeppe)
  810. Revision 1.51 1999/02/22 23:33:31 florian
  811. + message directive for integers added
  812. Revision 1.50 1999/02/22 20:13:42 florian
  813. + first implementation of message keyword
  814. Revision 1.49 1999/02/16 00:45:30 peter
  815. * fixed crashes by forgotten strpnew() for init_symbol
  816. Revision 1.48 1999/02/09 23:03:08 florian
  817. * check for duplicate field names in inherited classes/objects
  818. * bug with self from the mailing list solved (the problem
  819. was that classes were sometimes pushed wrong)
  820. Revision 1.47 1999/01/27 00:14:01 florian
  821. * "procedure of object"-stuff fixed
  822. Revision 1.46 1999/01/21 22:10:54 peter
  823. * fixed array of const
  824. * generic platform independent high() support
  825. Revision 1.45 1999/01/20 12:34:22 peter
  826. * fixed typed file read/write
  827. Revision 1.44 1999/01/15 11:33:03 pierre
  828. * bug in mmx code removed
  829. Revision 1.43 1998/12/30 13:41:20 peter
  830. * released valuepara
  831. Revision 1.42 1998/12/11 00:04:03 peter
  832. + globtype,tokens,version unit splitted from globals
  833. Revision 1.41 1998/12/10 09:47:33 florian
  834. + basic operations with int64/qord (compiler with -dint64)
  835. + rtti of enumerations extended: names are now written
  836. Revision 1.40 1998/12/04 10:18:14 florian
  837. * some stuff for procedures of object added
  838. * bug with overridden virtual constructors fixed (reported by Italo Gomes)
  839. Revision 1.39 1998/11/27 14:50:55 peter
  840. + open strings, $P switch support
  841. Revision 1.38 1998/11/18 15:44:24 peter
  842. * VALUEPARA for tp7 compatible value parameters
  843. Revision 1.37 1998/11/13 10:15:50 peter
  844. * fixed ptr() with constants
  845. Revision 1.36 1998/11/10 10:09:21 peter
  846. * va_list -> array of const
  847. Revision 1.35 1998/10/19 08:55:13 pierre
  848. * wrong stabs info corrected once again !!
  849. + variable vmt offset with vmt field only if required
  850. implemented now !!!
  851. Revision 1.34 1998/10/12 09:50:06 florian
  852. + support of <procedure var type>:=<pointer> in delphi mode added
  853. Revision 1.33 1998/10/06 20:43:30 peter
  854. * fixed set of bugs. like set of false..true set of #1..#255 and
  855. set of #1..true which was allowed
  856. Revision 1.32 1998/10/05 21:33:35 peter
  857. * fixed 161,165,166,167,168
  858. Revision 1.31 1998/09/23 09:58:56 peter
  859. * first working array of const things
  860. Revision 1.30 1998/09/22 15:40:58 peter
  861. * some extra ifdef GDB
  862. Revision 1.29 1998/09/16 12:37:31 michael
  863. Added FPC_ prefix to abstracterror
  864. Revision 1.28 1998/09/09 16:44:23 florian
  865. * I hope, the case bug is fixed now
  866. Revision 1.27 1998/09/07 17:37:07 florian
  867. * first fixes for published properties
  868. Revision 1.26 1998/09/04 12:24:31 florian
  869. * bug0159 fixed
  870. Revision 1.25 1998/09/04 09:06:36 florian
  871. * bug0132 fixed
  872. Revision 1.24 1998/09/04 08:36:49 peter
  873. * fixed boolean:=integer which is not explicit
  874. Revision 1.23 1998/09/01 17:39:55 peter
  875. + internal constant functions
  876. Revision 1.22 1998/09/01 12:53:28 peter
  877. + aktpackenum
  878. Revision 1.21 1998/08/19 00:42:45 peter
  879. + subrange types for enums
  880. + checking for bounds type with ranges
  881. Revision 1.20 1998/08/18 14:17:14 pierre
  882. * bug about assigning the return value of a function to
  883. a procvar fixed : warning
  884. assigning a proc to a procvar need @ in FPC mode !!
  885. * missing file/line info restored
  886. Revision 1.19 1998/08/18 09:24:48 pierre
  887. * small warning position bug fixed
  888. * support_mmx switches splitting was missing
  889. * rhide error and warning output corrected
  890. Revision 1.18 1998/08/14 18:18:49 peter
  891. + dynamic set contruction
  892. * smallsets are now working (always longint size)
  893. Revision 1.17 1998/08/05 16:00:17 florian
  894. * some fixes for ansi strings
  895. Revision 1.16 1998/07/20 23:35:50 michael
  896. Const ansistrings are not copied.
  897. Revision 1.15 1998/07/18 22:54:32 florian
  898. * some ansi/wide/longstring support fixed:
  899. o parameter passing
  900. o returning as result from functions
  901. Revision 1.14 1998/06/12 14:50:50 peter
  902. * removed the tree dependency to types.pas
  903. * long_fil.pas support (not fully tested yet)
  904. Revision 1.13 1998/06/03 22:49:07 peter
  905. + wordbool,longbool
  906. * rename bis,von -> high,low
  907. * moved some systemunit loading/creating to psystem.pas
  908. Revision 1.12 1998/05/12 10:47:00 peter
  909. * moved printstatus to verb_def
  910. + V_Normal which is between V_Error and V_Warning and doesn't have a
  911. prefix like error: warning: and is included in V_Default
  912. * fixed some messages
  913. * first time parameter scan is only for -v and -T
  914. - removed old style messages
  915. Revision 1.11 1998/05/01 16:38:46 florian
  916. * handling of private and protected fixed
  917. + change_keywords_to_tp implemented to remove
  918. keywords which aren't supported by tp
  919. * break and continue are now symbols of the system unit
  920. + widestring, longstring and ansistring type released
  921. Revision 1.10 1998/04/29 10:34:08 pierre
  922. + added some code for ansistring (not complete nor working yet)
  923. * corrected operator overloading
  924. * corrected nasm output
  925. + started inline procedures
  926. + added starstarn : use ** for exponentiation (^ gave problems)
  927. + started UseTokenInfo cond to get accurate positions
  928. Revision 1.9 1998/04/21 10:16:49 peter
  929. * patches from strasbourg
  930. * objects is not used anymore in the fpc compiled version
  931. Revision 1.8 1998/04/12 22:39:44 florian
  932. * problem with read access to properties solved
  933. * correct handling of hidding methods via virtual (COM)
  934. * correct result type of constructor calls (COM), the resulttype
  935. depends now on the type of the class reference
  936. Revision 1.7 1998/04/10 21:36:56 florian
  937. + some stuff to support method pointers (procedure of object) added
  938. (declaration, parameter handling)
  939. Revision 1.6 1998/04/10 15:39:49 florian
  940. * more fixes to get classes.pas compiled
  941. Revision 1.5 1998/04/09 23:02:16 florian
  942. * small problems solved to get remake3 work
  943. Revision 1.4 1998/04/08 16:58:09 pierre
  944. * several bugfixes
  945. ADD ADC and AND are also sign extended
  946. nasm output OK (program still crashes at end
  947. and creates wrong assembler files !!)
  948. procsym types sym in tdef removed !!
  949. Revision 1.3 1998/04/08 11:34:22 peter
  950. * nasm works (linux only tested)
  951. }