defutil.pas 28 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl
  3. This unit provides some help routines for type handling
  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 defutil;
  18. {$i fpcdefs.inc}
  19. interface
  20. uses
  21. cclasses,
  22. globtype,globals,
  23. symconst,symbase,symtype,symdef,
  24. cgbase,cpubase;
  25. type
  26. tmmxtype = (mmxno,mmxu8bit,mmxs8bit,mmxu16bit,mmxs16bit,
  27. mmxu32bit,mmxs32bit,mmxfixed16,mmxsingle);
  28. {*****************************************************************************
  29. Basic type functions
  30. *****************************************************************************}
  31. {# Returns true, if definition defines an ordinal type }
  32. function is_ordinal(def : tdef) : boolean;
  33. {# Returns the minimal integer value of the type }
  34. function get_min_value(def : tdef) : TConstExprInt;
  35. {# Returns basetype of the specified integer range }
  36. function range_to_basetype(l,h:TConstExprInt):tbasetype;
  37. procedure range_to_type(l,h:TConstExprInt;var tt:ttype);
  38. procedure int_to_type(v:TConstExprInt;var tt:ttype);
  39. {# Returns true, if definition defines an integer type }
  40. function is_integer(def : tdef) : boolean;
  41. {# Returns true if definition is a boolean }
  42. function is_boolean(def : tdef) : boolean;
  43. {# Returns true if definition is a char
  44. This excludes the unicode char.
  45. }
  46. function is_char(def : tdef) : boolean;
  47. {# Returns true if definition is a widechar }
  48. function is_widechar(def : tdef) : boolean;
  49. {# Returns true if definition is a void}
  50. function is_void(def : tdef) : boolean;
  51. {# Returns true if definition is a smallset}
  52. function is_smallset(p : tdef) : boolean;
  53. {# Returns true, if def defines a signed data type
  54. (only for ordinal types)
  55. }
  56. function is_signed(def : tdef) : boolean;
  57. {# Returns true whether def_from's range is comprised in def_to's if both are
  58. orddefs, false otherwise }
  59. function is_in_limit(def_from,def_to : tdef) : boolean;
  60. function is_in_limit_value(val_from:TConstExprInt;def_from,def_to : tdef) : boolean;
  61. {*****************************************************************************
  62. Array helper functions
  63. *****************************************************************************}
  64. {# Returns true, if p points to a zero based (non special like open or
  65. dynamic array def).
  66. This is mainly used to see if the array
  67. is convertable to a pointer
  68. }
  69. function is_zero_based_array(p : tdef) : boolean;
  70. {# Returns true if p points to an open array definition }
  71. function is_open_array(p : tdef) : boolean;
  72. {# Returns true if p points to a dynamic array definition }
  73. function is_dynamic_array(p : tdef) : boolean;
  74. {# Returns true, if p points to an array of const definition }
  75. function is_array_constructor(p : tdef) : boolean;
  76. {# Returns true, if p points to a variant array }
  77. function is_variant_array(p : tdef) : boolean;
  78. {# Returns true, if p points to an array of const }
  79. function is_array_of_const(p : tdef) : boolean;
  80. {# Returns true, if p points any kind of special array
  81. That is if the array is an open array, a variant
  82. array, an array constants constructor, or an
  83. array of const.
  84. }
  85. function is_special_array(p : tdef) : boolean;
  86. {# Returns true if p is a char array def }
  87. function is_chararray(p : tdef) : boolean;
  88. {# Returns true if p is a wide char array def }
  89. function is_widechararray(p : tdef) : boolean;
  90. {# Returns true if p is a open char array def }
  91. function is_open_chararray(p : tdef) : boolean;
  92. {# Returns true if p is a open wide char array def }
  93. function is_open_widechararray(p : tdef) : boolean;
  94. {*****************************************************************************
  95. String helper functions
  96. *****************************************************************************}
  97. {# Returns true if p points to an open string type }
  98. function is_open_string(p : tdef) : boolean;
  99. {# Returns true if p is an ansi string type }
  100. function is_ansistring(p : tdef) : boolean;
  101. {# Returns true if p is a long string type }
  102. function is_longstring(p : tdef) : boolean;
  103. {# returns true if p is a wide string type }
  104. function is_widestring(p : tdef) : boolean;
  105. {# Returns true if p is a short string type }
  106. function is_shortstring(p : tdef) : boolean;
  107. {# Returns true if p is a pchar def }
  108. function is_pchar(p : tdef) : boolean;
  109. {# Returns true if p is a pwidechar def }
  110. function is_pwidechar(p : tdef) : boolean;
  111. {# Returns true if p is a voidpointer def }
  112. function is_voidpointer(p : tdef) : boolean;
  113. {# Returns true, if definition is a float }
  114. function is_fpu(def : tdef) : boolean;
  115. {# Returns true, if def is a currency type }
  116. function is_currency(def : tdef) : boolean;
  117. {# Returns true, if def is a single type }
  118. function is_single(def : tdef) : boolean;
  119. {# Returns true, if def is a double type }
  120. function is_double(def : tdef) : boolean;
  121. {# Returns true, if def is an extended type }
  122. function is_extended(def : tdef) : boolean;
  123. {# Returns true, if definition is a "real" real (i.e. single/double/extended) }
  124. function is_real(def : tdef) : boolean;
  125. {# Returns true, if def is a 32 bit integer type }
  126. function is_32bitint(def : tdef) : boolean;
  127. {# Returns true, if def is a 64 bit integer type }
  128. function is_64bitint(def : tdef) : boolean;
  129. {# Returns true, if def is a 64 bit type }
  130. function is_64bit(def : tdef) : boolean;
  131. {# If @var(l) isn't in the range of def a range check error (if not explicit) is generated and
  132. the value is placed within the range
  133. }
  134. procedure testrange(def : tdef;var l : tconstexprint;explicit:boolean);
  135. {# Returns the range of def, where @var(l) is the low-range and @var(h) is
  136. the high-range.
  137. }
  138. procedure getrange(def : tdef;var l : TConstExprInt;var h : TConstExprInt);
  139. { some type helper routines for MMX support }
  140. function is_mmx_able_array(p : tdef) : boolean;
  141. {# returns the mmx type }
  142. function mmx_type(p : tdef) : tmmxtype;
  143. {# From a definition return the abstract code generator size enum. It is
  144. to note that the value returned can be @var(OS_NO) }
  145. function def_cgsize(def: tdef): tcgsize;
  146. implementation
  147. uses
  148. systems,verbose;
  149. { returns true, if def uses FPU }
  150. function is_fpu(def : tdef) : boolean;
  151. begin
  152. is_fpu:=(def.deftype=floatdef);
  153. end;
  154. { returns true, if def is a currency type }
  155. function is_currency(def : tdef) : boolean;
  156. begin
  157. case s64currencytype.def.deftype of
  158. orddef :
  159. result:=(def.deftype=orddef) and
  160. (torddef(s64currencytype.def).typ=torddef(def).typ);
  161. floatdef :
  162. result:=(def.deftype=floatdef) and
  163. (tfloatdef(s64currencytype.def).typ=tfloatdef(def).typ);
  164. else
  165. internalerror(200304222);
  166. end;
  167. end;
  168. { returns true, if def is a single type }
  169. function is_single(def : tdef) : boolean;
  170. begin
  171. result:=(def.deftype=floatdef) and
  172. (tfloatdef(def).typ=s32real);
  173. end;
  174. { returns true, if def is a double type }
  175. function is_double(def : tdef) : boolean;
  176. begin
  177. result:=(def.deftype=floatdef) and
  178. (tfloatdef(def).typ=s64real);
  179. end;
  180. function is_extended(def : tdef) : boolean;
  181. begin
  182. result:=(def.deftype=floatdef) and
  183. (tfloatdef(def).typ=s80real);
  184. end;
  185. { returns true, if definition is a "real" real (i.e. single/double/extended) }
  186. function is_real(def : tdef) : boolean;
  187. begin
  188. result:=(def.deftype=floatdef) and
  189. (tfloatdef(def).typ in [s32real,s64real,s80real]);
  190. end;
  191. function range_to_basetype(l,h:TConstExprInt):tbasetype;
  192. begin
  193. { prefer signed over unsigned }
  194. if (l>=-128) and (h<=127) then
  195. range_to_basetype:=s8bit
  196. else if (l>=0) and (h<=255) then
  197. range_to_basetype:=u8bit
  198. else if (l>=-32768) and (h<=32767) then
  199. range_to_basetype:=s16bit
  200. else if (l>=0) and (h<=65535) then
  201. range_to_basetype:=u16bit
  202. else if (l>=low(longint)) and (h<=high(longint)) then
  203. range_to_basetype:=s32bit
  204. else if (l>=low(cardinal)) and (h<=high(cardinal)) then
  205. range_to_basetype:=u32bit
  206. else
  207. range_to_basetype:=s64bit;
  208. end;
  209. procedure range_to_type(l,h:TConstExprInt;var tt:ttype);
  210. begin
  211. { prefer signed over unsigned }
  212. if (l>=-128) and (h<=127) then
  213. tt:=s8inttype
  214. else if (l>=0) and (h<=255) then
  215. tt:=u8inttype
  216. else if (l>=-32768) and (h<=32767) then
  217. tt:=s16inttype
  218. else if (l>=0) and (h<=65535) then
  219. tt:=u16inttype
  220. else if (l>=low(longint)) and (h<=high(longint)) then
  221. tt:=s32inttype
  222. else if (l>=low(cardinal)) and (h<=high(cardinal)) then
  223. tt:=u32inttype
  224. else
  225. tt:=s64inttype;
  226. end;
  227. procedure int_to_type(v:TConstExprInt;var tt:ttype);
  228. begin
  229. range_to_type(v,v,tt);
  230. end;
  231. { true if p is an ordinal }
  232. function is_ordinal(def : tdef) : boolean;
  233. var
  234. dt : tbasetype;
  235. begin
  236. case def.deftype of
  237. orddef :
  238. begin
  239. dt:=torddef(def).typ;
  240. is_ordinal:=dt in [uchar,uwidechar,
  241. u8bit,u16bit,u32bit,u64bit,
  242. s8bit,s16bit,s32bit,s64bit,
  243. bool8bit,bool16bit,bool32bit];
  244. end;
  245. enumdef :
  246. is_ordinal:=true;
  247. else
  248. is_ordinal:=false;
  249. end;
  250. end;
  251. { returns the min. value of the type }
  252. function get_min_value(def : tdef) : TConstExprInt;
  253. begin
  254. case def.deftype of
  255. orddef:
  256. get_min_value:=torddef(def).low;
  257. enumdef:
  258. get_min_value:=tenumdef(def).min;
  259. else
  260. get_min_value:=0;
  261. end;
  262. end;
  263. { true if p is an integer }
  264. function is_integer(def : tdef) : boolean;
  265. begin
  266. is_integer:=(def.deftype=orddef) and
  267. (torddef(def).typ in [u8bit,u16bit,u32bit,u64bit,
  268. s8bit,s16bit,s32bit,s64bit]);
  269. end;
  270. { true if p is a boolean }
  271. function is_boolean(def : tdef) : boolean;
  272. begin
  273. is_boolean:=(def.deftype=orddef) and
  274. (torddef(def).typ in [bool8bit,bool16bit,bool32bit]);
  275. end;
  276. { true if p is a void }
  277. function is_void(def : tdef) : boolean;
  278. begin
  279. is_void:=(def.deftype=orddef) and
  280. (torddef(def).typ=uvoid);
  281. end;
  282. { true if p is a char }
  283. function is_char(def : tdef) : boolean;
  284. begin
  285. is_char:=(def.deftype=orddef) and
  286. (torddef(def).typ=uchar);
  287. end;
  288. { true if p is a wchar }
  289. function is_widechar(def : tdef) : boolean;
  290. begin
  291. is_widechar:=(def.deftype=orddef) and
  292. (torddef(def).typ=uwidechar);
  293. end;
  294. { true if p is signed (integer) }
  295. function is_signed(def : tdef) : boolean;
  296. var
  297. dt : tbasetype;
  298. begin
  299. case def.deftype of
  300. orddef :
  301. begin
  302. dt:=torddef(def).typ;
  303. is_signed:=(dt in [s8bit,s16bit,s32bit,s64bit,scurrency]);
  304. end;
  305. enumdef :
  306. is_signed:=tenumdef(def).min < 0;
  307. arraydef :
  308. is_signed:=is_signed(tarraydef(def).rangetype.def);
  309. else
  310. is_signed:=false;
  311. end;
  312. end;
  313. function is_in_limit(def_from,def_to : tdef) : boolean;
  314. var
  315. fromqword, toqword: boolean;
  316. begin
  317. if (def_from.deftype <> orddef) or
  318. (def_to.deftype <> orddef) then
  319. begin
  320. is_in_limit := false;
  321. exit;
  322. end;
  323. fromqword := torddef(def_from).typ = u64bit;
  324. toqword := torddef(def_to).typ = u64bit;
  325. is_in_limit:=(toqword and is_signed(def_from)) or
  326. ((not fromqword) and
  327. (torddef(def_from).low>=torddef(def_to).low) and
  328. (torddef(def_from).high<=torddef(def_to).high));
  329. end;
  330. function is_in_limit_value(val_from:TConstExprInt;def_from,def_to : tdef) : boolean;
  331. begin
  332. if (def_from.deftype <> orddef) and
  333. (def_to.deftype <> orddef) then
  334. internalerror(200210062);
  335. if (torddef(def_to).typ = u64bit) then
  336. begin
  337. is_in_limit_value:=((TConstExprUInt(val_from)>=TConstExprUInt(torddef(def_to).low)) and
  338. (TConstExprUInt(val_from)<=TConstExprUInt(torddef(def_to).high)));
  339. end
  340. else
  341. begin;
  342. is_in_limit_value:=((val_from>=torddef(def_to).low) and
  343. (val_from<=torddef(def_to).high));
  344. end;
  345. end;
  346. { true, if p points to an open array def }
  347. function is_open_string(p : tdef) : boolean;
  348. begin
  349. is_open_string:=(p.deftype=stringdef) and
  350. (tstringdef(p).string_typ=st_shortstring) and
  351. (tstringdef(p).len=0);
  352. end;
  353. { true, if p points to a zero based array def }
  354. function is_zero_based_array(p : tdef) : boolean;
  355. begin
  356. result:=(p.deftype=arraydef) and
  357. (tarraydef(p).lowrange=0) and
  358. not(is_special_array(p));
  359. end;
  360. { true if p points to a dynamic array def }
  361. function is_dynamic_array(p : tdef) : boolean;
  362. begin
  363. result:=(p.deftype=arraydef) and
  364. (ado_IsDynamicArray in tarraydef(p).arrayoptions);
  365. end;
  366. { true, if p points to an open array def }
  367. function is_open_array(p : tdef) : boolean;
  368. begin
  369. { check for s32inttype is needed, because for u32bit the high
  370. range is also -1 ! (PFV) }
  371. result:=(p.deftype=arraydef) and
  372. (tarraydef(p).rangetype.def=s32inttype.def) and
  373. (tarraydef(p).lowrange=0) and
  374. (tarraydef(p).highrange=-1) and
  375. ((tarraydef(p).arrayoptions * [ado_IsVariant,ado_IsArrayOfConst,ado_IsConstructor,ado_IsDynamicArray])=[]);
  376. end;
  377. { true, if p points to an array of const def }
  378. function is_array_constructor(p : tdef) : boolean;
  379. begin
  380. result:=(p.deftype=arraydef) and
  381. (ado_IsConstructor in tarraydef(p).arrayoptions);
  382. end;
  383. { true, if p points to a variant array }
  384. function is_variant_array(p : tdef) : boolean;
  385. begin
  386. result:=(p.deftype=arraydef) and
  387. (ado_IsVariant in tarraydef(p).arrayoptions);
  388. end;
  389. { true, if p points to an array of const }
  390. function is_array_of_const(p : tdef) : boolean;
  391. begin
  392. result:=(p.deftype=arraydef) and
  393. (ado_IsArrayOfConst in tarraydef(p).arrayoptions);
  394. end;
  395. { true, if p points to a special array }
  396. function is_special_array(p : tdef) : boolean;
  397. begin
  398. result:=(p.deftype=arraydef) and
  399. (
  400. ((tarraydef(p).arrayoptions * [ado_IsVariant,ado_IsArrayOfConst,ado_IsConstructor,ado_IsDynamicArray])<>[]) or
  401. is_open_array(p)
  402. );
  403. end;
  404. { true if p is an ansi string def }
  405. function is_ansistring(p : tdef) : boolean;
  406. begin
  407. is_ansistring:=(p.deftype=stringdef) and
  408. (tstringdef(p).string_typ=st_ansistring);
  409. end;
  410. { true if p is an long string def }
  411. function is_longstring(p : tdef) : boolean;
  412. begin
  413. is_longstring:=(p.deftype=stringdef) and
  414. (tstringdef(p).string_typ=st_longstring);
  415. end;
  416. { true if p is an wide string def }
  417. function is_widestring(p : tdef) : boolean;
  418. begin
  419. is_widestring:=(p.deftype=stringdef) and
  420. (tstringdef(p).string_typ=st_widestring);
  421. end;
  422. { true if p is an short string def }
  423. function is_shortstring(p : tdef) : boolean;
  424. begin
  425. is_shortstring:=(p.deftype=stringdef) and
  426. (tstringdef(p).string_typ=st_shortstring);
  427. end;
  428. { true if p is a char array def }
  429. function is_chararray(p : tdef) : boolean;
  430. begin
  431. is_chararray:=(p.deftype=arraydef) and
  432. is_char(tarraydef(p).elementtype.def) and
  433. not(is_special_array(p));
  434. end;
  435. { true if p is a widechar array def }
  436. function is_widechararray(p : tdef) : boolean;
  437. begin
  438. is_widechararray:=(p.deftype=arraydef) and
  439. is_widechar(tarraydef(p).elementtype.def) and
  440. not(is_special_array(p));
  441. end;
  442. { true if p is a open char array def }
  443. function is_open_chararray(p : tdef) : boolean;
  444. begin
  445. is_open_chararray:= is_open_array(p) and
  446. is_char(tarraydef(p).elementtype.def);
  447. end;
  448. { true if p is a open wide char array def }
  449. function is_open_widechararray(p : tdef) : boolean;
  450. begin
  451. is_open_widechararray:= is_open_array(p) and
  452. is_widechar(tarraydef(p).elementtype.def);
  453. end;
  454. { true if p is a pchar def }
  455. function is_pchar(p : tdef) : boolean;
  456. begin
  457. is_pchar:=(p.deftype=pointerdef) and
  458. (is_char(tpointerdef(p).pointertype.def) or
  459. (is_zero_based_array(tpointerdef(p).pointertype.def) and
  460. is_chararray(tpointerdef(p).pointertype.def)));
  461. end;
  462. { true if p is a pchar def }
  463. function is_pwidechar(p : tdef) : boolean;
  464. begin
  465. is_pwidechar:=(p.deftype=pointerdef) and
  466. (is_widechar(tpointerdef(p).pointertype.def) or
  467. (is_zero_based_array(tpointerdef(p).pointertype.def) and
  468. is_widechararray(tpointerdef(p).pointertype.def)));
  469. end;
  470. { true if p is a voidpointer def }
  471. function is_voidpointer(p : tdef) : boolean;
  472. begin
  473. is_voidpointer:=(p.deftype=pointerdef) and
  474. (tpointerdef(p).pointertype.def.deftype=orddef) and
  475. (torddef(tpointerdef(p).pointertype.def).typ=uvoid);
  476. end;
  477. { true if p is a smallset def }
  478. function is_smallset(p : tdef) : boolean;
  479. begin
  480. is_smallset:=(p.deftype=setdef) and
  481. (tsetdef(p).settype=smallset);
  482. end;
  483. { true, if def is a 32 bit int type }
  484. function is_32bitint(def : tdef) : boolean;
  485. begin
  486. result:=(def.deftype=orddef) and (torddef(def).typ in [u32bit,s32bit])
  487. end;
  488. { true, if def is a 64 bit int type }
  489. function is_64bitint(def : tdef) : boolean;
  490. begin
  491. is_64bitint:=(def.deftype=orddef) and (torddef(def).typ in [u64bit,s64bit])
  492. end;
  493. { true, if def is a 64 bit type }
  494. function is_64bit(def : tdef) : boolean;
  495. begin
  496. is_64bit:=(def.deftype=orddef) and (torddef(def).typ in [u64bit,s64bit,scurrency])
  497. end;
  498. { if l isn't in the range of def a range check error (if not explicit) is generated and
  499. the value is placed within the range }
  500. procedure testrange(def : tdef;var l : tconstexprint;explicit:boolean);
  501. var
  502. lv,hv: TConstExprInt;
  503. error: boolean;
  504. begin
  505. error := false;
  506. { for 64 bit types we need only to check if it is less than }
  507. { zero, if def is a qword node }
  508. if is_64bitint(def) then
  509. begin
  510. if (l<0) and (torddef(def).typ=u64bit) then
  511. begin
  512. { don't zero the result, because it may come from hex notation
  513. like $ffffffffffffffff! (JM)
  514. l:=0; }
  515. if not explicit then
  516. begin
  517. if (cs_check_range in aktlocalswitches) then
  518. Message(parser_e_range_check_error)
  519. else
  520. Message(parser_w_range_check_error);
  521. end;
  522. error := true;
  523. end;
  524. end
  525. else
  526. begin
  527. getrange(def,lv,hv);
  528. if (l<lv) or (l>hv) then
  529. begin
  530. if not explicit then
  531. begin
  532. if ((def.deftype=enumdef) and
  533. { delphi allows range check errors in
  534. enumeration type casts FK }
  535. not(m_delphi in aktmodeswitches)) or
  536. (cs_check_range in aktlocalswitches) then
  537. Message(parser_e_range_check_error)
  538. else
  539. Message(parser_w_range_check_error);
  540. end;
  541. error := true;
  542. end;
  543. end;
  544. if error then
  545. begin
  546. { Fix the value to fit in the allocated space for this type of variable }
  547. case longint(def.size) of
  548. 1: l := l and $ff;
  549. 2: l := l and $ffff;
  550. { work around sign extension bug (to be fixed) (JM) }
  551. 4: l := l and (int64($fffffff) shl 4 + $f);
  552. end;
  553. { do sign extension if necessary (JM) }
  554. if is_signed(def) then
  555. begin
  556. case longint(def.size) of
  557. 1: l := shortint(l);
  558. 2: l := smallint(l);
  559. 4: l := longint(l);
  560. end;
  561. end;
  562. end;
  563. end;
  564. { return the range from def in l and h }
  565. procedure getrange(def : tdef;var l : TConstExprInt;var h : TConstExprInt);
  566. begin
  567. case def.deftype of
  568. orddef :
  569. begin
  570. l:=torddef(def).low;
  571. h:=torddef(def).high;
  572. end;
  573. enumdef :
  574. begin
  575. l:=tenumdef(def).min;
  576. h:=tenumdef(def).max;
  577. end;
  578. arraydef :
  579. begin
  580. l:=tarraydef(def).lowrange;
  581. h:=tarraydef(def).highrange;
  582. end;
  583. else
  584. internalerror(987);
  585. end;
  586. end;
  587. function mmx_type(p : tdef) : tmmxtype;
  588. begin
  589. mmx_type:=mmxno;
  590. if is_mmx_able_array(p) then
  591. begin
  592. if tarraydef(p).elementtype.def.deftype=floatdef then
  593. case tfloatdef(tarraydef(p).elementtype.def).typ of
  594. s32real:
  595. mmx_type:=mmxsingle;
  596. end
  597. else
  598. case torddef(tarraydef(p).elementtype.def).typ of
  599. u8bit:
  600. mmx_type:=mmxu8bit;
  601. s8bit:
  602. mmx_type:=mmxs8bit;
  603. u16bit:
  604. mmx_type:=mmxu16bit;
  605. s16bit:
  606. mmx_type:=mmxs16bit;
  607. u32bit:
  608. mmx_type:=mmxu32bit;
  609. s32bit:
  610. mmx_type:=mmxs32bit;
  611. end;
  612. end;
  613. end;
  614. function is_mmx_able_array(p : tdef) : boolean;
  615. begin
  616. {$ifdef SUPPORT_MMX}
  617. if (cs_mmx_saturation in aktlocalswitches) then
  618. begin
  619. is_mmx_able_array:=(p.deftype=arraydef) and
  620. not(is_special_array(p)) and
  621. (
  622. (
  623. (tarraydef(p).elementtype.def.deftype=orddef) and
  624. (
  625. (
  626. (tarraydef(p).lowrange=0) and
  627. (tarraydef(p).highrange=1) and
  628. (torddef(tarraydef(p).elementtype.def).typ in [u32bit,s32bit])
  629. )
  630. or
  631. (
  632. (tarraydef(p).lowrange=0) and
  633. (tarraydef(p).highrange=3) and
  634. (torddef(tarraydef(p).elementtype.def).typ in [u16bit,s16bit])
  635. )
  636. )
  637. )
  638. or
  639. (
  640. (
  641. (tarraydef(p).elementtype.def.deftype=floatdef) and
  642. (
  643. (tarraydef(p).lowrange=0) and
  644. (tarraydef(p).highrange=1) and
  645. (tfloatdef(tarraydef(p).elementtype.def).typ=s32real)
  646. )
  647. )
  648. )
  649. );
  650. end
  651. else
  652. begin
  653. is_mmx_able_array:=(p.deftype=arraydef) and
  654. (
  655. (
  656. (tarraydef(p).elementtype.def.deftype=orddef) and
  657. (
  658. (
  659. (tarraydef(p).lowrange=0) and
  660. (tarraydef(p).highrange=1) and
  661. (torddef(tarraydef(p).elementtype.def).typ in [u32bit,s32bit])
  662. )
  663. or
  664. (
  665. (tarraydef(p).lowrange=0) and
  666. (tarraydef(p).highrange=3) and
  667. (torddef(tarraydef(p).elementtype.def).typ in [u16bit,s16bit])
  668. )
  669. or
  670. (
  671. (tarraydef(p).lowrange=0) and
  672. (tarraydef(p).highrange=7) and
  673. (torddef(tarraydef(p).elementtype.def).typ in [u8bit,s8bit])
  674. )
  675. )
  676. )
  677. or
  678. (
  679. (tarraydef(p).elementtype.def.deftype=floatdef) and
  680. (
  681. (tarraydef(p).lowrange=0) and
  682. (tarraydef(p).highrange=1) and
  683. (tfloatdef(tarraydef(p).elementtype.def).typ=s32real)
  684. )
  685. )
  686. );
  687. end;
  688. {$else SUPPORT_MMX}
  689. is_mmx_able_array:=false;
  690. {$endif SUPPORT_MMX}
  691. end;
  692. function def_cgsize(def: tdef): tcgsize;
  693. begin
  694. case def.deftype of
  695. orddef,
  696. enumdef,
  697. setdef:
  698. begin
  699. result:=int_cgsize(def.size);
  700. if is_signed(def) then
  701. result:=tcgsize(ord(result)+(ord(OS_S8)-ord(OS_8)));
  702. end;
  703. classrefdef,
  704. pointerdef:
  705. result := OS_ADDR;
  706. procvardef:
  707. begin
  708. if tprocvardef(def).is_methodpointer and
  709. (not tprocvardef(def).is_addressonly) then
  710. result := OS_64
  711. else
  712. result := OS_ADDR;
  713. end;
  714. stringdef :
  715. begin
  716. if is_ansistring(def) or is_widestring(def) then
  717. result := OS_ADDR
  718. else
  719. result:=int_cgsize(def.size);
  720. end;
  721. objectdef :
  722. begin
  723. if is_class_or_interface(def) then
  724. result := OS_ADDR
  725. else
  726. result:=int_cgsize(def.size);
  727. end;
  728. floatdef:
  729. if cs_fp_emulation in aktmoduleswitches then
  730. result:=int_cgsize(def.size)
  731. else
  732. result:=tfloat2tcgsize[tfloatdef(def).typ];
  733. recorddef :
  734. result:=int_cgsize(def.size);
  735. arraydef :
  736. begin
  737. if not is_special_array(def) then
  738. result := int_cgsize(def.size)
  739. else
  740. begin
  741. if is_dynamic_array(def) then
  742. result := OS_ADDR
  743. else
  744. result := OS_NO;
  745. end;
  746. end;
  747. else
  748. begin
  749. { undefined size }
  750. result:=OS_NO;
  751. end;
  752. end;
  753. end;
  754. end.