cg68kcnv.pas 57 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1993-98 by Florian Klaempfl
  4. Generate m68k assembler for type converting nodes
  5. This program is free software; you can redistribute it and/or modify
  6. it under the terms of the GNU General Public License as published by
  7. the Free Software Foundation; either version 2 of the License, or
  8. (at your option) any later version.
  9. This program is distributed in the hope that it will be useful,
  10. but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. GNU General Public License for more details.
  13. You should have received a copy of the GNU General Public License
  14. along with this program; if not, write to the Free Software
  15. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  16. ****************************************************************************
  17. }
  18. {$ifdef TP}
  19. {$E+,F+,N+}
  20. {$endif}
  21. unit cg68kcnv;
  22. interface
  23. uses
  24. tree;
  25. procedure secondtypeconv(var p : ptree);
  26. procedure secondas(var p : ptree);
  27. procedure secondis(var p : ptree);
  28. implementation
  29. uses
  30. cobjects,verbose,globals,systems,
  31. symtable,aasm,types,
  32. hcodegen,temp_gen,pass_2,
  33. m68k,cga68k,tgen68k;
  34. {*****************************************************************************
  35. SecondTypeConv
  36. *****************************************************************************}
  37. procedure maybe_rangechecking(p : ptree;p2,p1 : pdef);
  38. var
  39. hp : preference;
  40. hregister : tregister;
  41. neglabel,poslabel : plabel;
  42. begin
  43. { convert from p2 to p1 }
  44. { range check from enums is not made yet !!}
  45. { and its probably not easy }
  46. if (p1^.deftype<>orddef) or (p2^.deftype<>orddef) then
  47. exit;
  48. { range checking is different for u32bit }
  49. { lets try to generate it allways }
  50. if (cs_check_range in aktlocalswitches) and
  51. { with $R+ explicit type conversations in TP aren't range checked! }
  52. (not(p^.explizit) {or not(cs_tp_compatible in aktmoduleswitches)}) and
  53. ((porddef(p1)^.low>porddef(p2)^.low) or
  54. (porddef(p1)^.high<porddef(p2)^.high) or
  55. (porddef(p1)^.typ=u32bit) or
  56. (porddef(p2)^.typ=u32bit)) then
  57. begin
  58. porddef(p1)^.genrangecheck;
  59. if porddef(p2)^.typ=u8bit then
  60. begin
  61. if (p^.location.loc=LOC_REGISTER) or
  62. (p^.location.loc=LOC_CREGISTER) then
  63. begin
  64. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_B,p^.location.register,R_D6)));
  65. exprasmlist^.concat(new(pai68k,op_const_reg(A_AND,S_L,$FF,R_D6)));
  66. end
  67. else
  68. begin
  69. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_B,newreference(p^.location.reference),R_D6)));
  70. exprasmlist^.concat(new(pai68k,op_const_reg(A_AND,S_L,$FF,R_D6)));
  71. end;
  72. hregister:=R_D6;
  73. end
  74. else if porddef(p2)^.typ=s8bit then
  75. begin
  76. if (p^.location.loc=LOC_REGISTER) or
  77. (p^.location.loc=LOC_CREGISTER) then
  78. begin
  79. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_B,p^.location.register,R_D6)));
  80. { byte to long }
  81. if aktoptprocessor = MC68020 then
  82. exprasmlist^.concat(new(pai68k,op_reg(A_EXTB,S_L,R_D6)))
  83. else
  84. begin
  85. exprasmlist^.concat(new(pai68k,op_reg(A_EXT,S_W,R_D6)));
  86. exprasmlist^.concat(new(pai68k,op_reg(A_EXT,S_L,R_D6)));
  87. end;
  88. end
  89. else
  90. begin
  91. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_B,newreference(p^.location.reference),R_D6)));
  92. { byte to long }
  93. if aktoptprocessor = MC68020 then
  94. exprasmlist^.concat(new(pai68k,op_reg(A_EXTB,S_L,R_D6)))
  95. else
  96. begin
  97. exprasmlist^.concat(new(pai68k,op_reg(A_EXT,S_W,R_D6)));
  98. exprasmlist^.concat(new(pai68k,op_reg(A_EXT,S_L,R_D6)));
  99. end;
  100. end; { end outermost else }
  101. hregister:=R_D6;
  102. end
  103. { rangechecking for u32bit ?? !!!!!!}
  104. { lets try }
  105. else if (porddef(p2)^.typ=s32bit) or (porddef(p2)^.typ=u32bit) then
  106. begin
  107. if (p^.location.loc=LOC_REGISTER) or
  108. (p^.location.loc=LOC_CREGISTER) then
  109. hregister:=p^.location.register
  110. else
  111. begin
  112. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(p^.location.reference),R_D6)));
  113. hregister:=R_D6;
  114. end;
  115. end
  116. { rangechecking for u32bit ?? !!!!!!}
  117. else if porddef(p2)^.typ=u16bit then
  118. begin
  119. if (p^.location.loc=LOC_REGISTER) or
  120. (p^.location.loc=LOC_CREGISTER) then
  121. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_W,p^.location.register,R_D6)))
  122. else
  123. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_W,newreference(p^.location.reference),R_D6)));
  124. { unisgned extend }
  125. exprasmlist^.concat(new(pai68k,op_const_reg(A_AND,S_L,$FFFF,R_D6)));
  126. hregister:=R_D6;
  127. end
  128. else if porddef(p2)^.typ=s16bit then
  129. begin
  130. if (p^.location.loc=LOC_REGISTER) or
  131. (p^.location.loc=LOC_CREGISTER) then
  132. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_W,p^.location.register,R_D6)))
  133. else
  134. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_W,newreference(p^.location.reference),R_D6)));
  135. { sign extend }
  136. exprasmlist^.concat(new(pai68k,op_reg(A_EXT,S_L,R_D6)));
  137. hregister:=R_D6;
  138. end
  139. else internalerror(6);
  140. new(hp);
  141. reset_reference(hp^);
  142. hp^.symbol:=stringdup('R_'+tostr(porddef(p1)^.rangenr));
  143. if porddef(p1)^.low>porddef(p1)^.high then
  144. begin
  145. getlabel(neglabel);
  146. getlabel(poslabel);
  147. exprasmlist^.concat(new(pai68k,op_reg(A_TST,S_L,hregister)));
  148. emitl(A_BLT,neglabel);
  149. end;
  150. emit_bounds_check(hp^,hregister);
  151. if porddef(p1)^.low>porddef(p1)^.high then
  152. begin
  153. new(hp);
  154. reset_reference(hp^);
  155. hp^.symbol:=stringdup('R_'+tostr(porddef(p1)^.rangenr+1));
  156. emitl(A_JMP,poslabel);
  157. emitl(A_LABEL,neglabel);
  158. emit_bounds_check(hp^,hregister);
  159. emitl(A_LABEL,poslabel);
  160. end;
  161. end;
  162. end;
  163. type
  164. tsecondconvproc = procedure(p,hp : ptree;convtyp : tconverttype);
  165. procedure second_only_rangecheck(p,hp : ptree;convtyp : tconverttype);
  166. begin
  167. maybe_rangechecking(p,hp^.resulttype,p^.resulttype);
  168. end;
  169. procedure second_smaller(p,hp : ptree;convtyp : tconverttype);
  170. var
  171. hregister,destregister : tregister;
  172. {opsize : topsize;}
  173. ref : boolean;
  174. hpp : preference;
  175. begin
  176. { !!!!!!!! Rangechecking }
  177. ref:=false;
  178. { problems with enums !! }
  179. { with $R+ explicit type conversations in TP aren't range checked! }
  180. if (p^.resulttype^.deftype=orddef) and
  181. (hp^.resulttype^.deftype=orddef) and
  182. ((porddef(p^.resulttype)^.low>porddef(hp^.resulttype)^.low) or
  183. (porddef(p^.resulttype)^.high<porddef(hp^.resulttype)^.high)) then
  184. begin
  185. if (cs_check_range in aktlocalswitches) and
  186. (not(p^.explizit) {or not(cs_tp_compatible in aktmoduleswitches)}) then
  187. porddef(p^.resulttype)^.genrangecheck;
  188. if porddef(hp^.resulttype)^.typ=s32bit then
  189. begin
  190. if (p^.location.loc=LOC_REGISTER) or
  191. (p^.location.loc=LOC_CREGISTER) then
  192. hregister:=p^.location.register
  193. else
  194. begin
  195. hregister:=getregister32;
  196. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(p^.location.reference),hregister)));
  197. end;
  198. end
  199. { rangechecking for u32bit ?? !!!!!!}
  200. else if porddef(hp^.resulttype)^.typ=u16bit then
  201. begin
  202. hregister:=getregister32;
  203. if (p^.location.loc=LOC_REGISTER) or
  204. (p^.location.loc=LOC_CREGISTER) then
  205. begin
  206. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_W,p^.location.register,hregister)));
  207. end
  208. else
  209. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_W,newreference(p^.location.reference),hregister)));
  210. { clear unused bits i.e unsigned extend}
  211. exprasmlist^.concat(new(pai68k,op_const_reg(A_AND,S_L, $FFFF, hregister)));
  212. end
  213. else if porddef(hp^.resulttype)^.typ=s16bit then
  214. begin
  215. hregister:=getregister32;
  216. if (p^.location.loc=LOC_REGISTER) or
  217. (p^.location.loc=LOC_CREGISTER) then
  218. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_W,p^.location.register,hregister)))
  219. else
  220. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_W,newreference(p^.location.reference),hregister)));
  221. { sign extend }
  222. exprasmlist^.concat(new(pai68k,op_reg(A_EXT, S_L, hregister)));
  223. end
  224. else internalerror(6);
  225. if (cs_check_range in aktlocalswitches) and
  226. (not(p^.explizit) {or not(cs_tp_compatible in aktmoduleswitches)}) then
  227. Begin
  228. new(hpp);
  229. reset_reference(hpp^);
  230. hpp^.symbol:=stringdup('R_'+tostr(porddef(p^.resulttype)^.rangenr));
  231. emit_bounds_check(hpp^, hregister);
  232. end;
  233. clear_location(p^.location);
  234. p^.location.loc:=LOC_REGISTER;
  235. p^.location.register:=hregister;
  236. exit;
  237. end
  238. { -------------- endian problems once again --------------------}
  239. { If RIGHT enumdef (32-bit) and we do a typecase to a smaller }
  240. { type we must absolutely load it into a register first. }
  241. { --------------------------------------------------------------}
  242. { ------------ supposing enumdef is always 32-bit --------------}
  243. { --------------------------------------------------------------}
  244. else
  245. if (hp^.resulttype^.deftype = enumdef) and (p^.resulttype^.deftype = orddef) then
  246. begin
  247. if (hp^.location.loc=LOC_REGISTER) or (hp^.location.loc=LOC_CREGISTER) then
  248. hregister:=hp^.location.register
  249. else
  250. begin
  251. hregister:=getregister32;
  252. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(hp^.location.reference),hregister)));
  253. end;
  254. clear_location(p^.location);
  255. p^.location.loc:=LOC_REGISTER;
  256. p^.location.register:=hregister;
  257. exit;
  258. end;
  259. if (p^.left^.location.loc=LOC_REGISTER) or
  260. (p^.left^.location.loc=LOC_CREGISTER) then
  261. begin
  262. { handled by secondpas by called routine ??? }
  263. p^.location.register:=p^.left^.location.register;
  264. end;
  265. end;
  266. procedure second_bigger(p,hp : ptree;convtyp : tconverttype);
  267. var
  268. hregister : tregister;
  269. opsize : topsize;
  270. op : tasmop;
  271. is_register : boolean;
  272. begin
  273. is_register:=p^.left^.location.loc=LOC_REGISTER;
  274. if not(is_register) and (p^.left^.location.loc<>LOC_CREGISTER) then
  275. begin
  276. del_reference(p^.left^.location.reference);
  277. { we can do this here as we need no temp inside second_bigger }
  278. ungetiftemp(p^.left^.location.reference);
  279. end;
  280. { this is wrong !!!
  281. gives me movl (%eax),%eax
  282. for the length(string !!!
  283. use only for constant values }
  284. {Constanst cannot be loaded into registers using MOVZX!}
  285. if (p^.left^.location.loc<>LOC_MEM) or (not p^.left^.location.reference.isintvalue) then
  286. case convtyp of
  287. tc_u8bit_2_s32bit,
  288. tc_u8bit_2_u32bit,
  289. tc_s8bit_2_u32bit,
  290. tc_s8bit_2_s16bit,
  291. tc_s8bit_2_s32bit,
  292. tc_u8bit_2_u16bit,
  293. tc_s8bit_2_u16bit,
  294. tc_u8bit_2_s16bit: begin
  295. if is_register then
  296. hregister := p^.left^.location.register
  297. else
  298. hregister := getregister32;
  299. if is_register then
  300. emit_reg_reg(A_MOVE,S_B,p^.left^.location.register, hregister)
  301. else
  302. begin
  303. if p^.left^.location.loc = LOC_CREGISTER then
  304. emit_reg_reg(A_MOVE,S_B,p^.left^.location.register,hregister)
  305. else
  306. exprasmlist^.concat(new(pai68k, op_ref_reg(A_MOVE,S_B,
  307. newreference(P^.left^.location.reference), hregister)));
  308. end;
  309. case convtyp of
  310. tc_u8bit_2_s32bit,
  311. tc_u8bit_2_u32bit:
  312. exprasmlist^.concat(new(pai68k, op_const_reg(
  313. A_AND,S_L,$FF,hregister)));
  314. tc_s8bit_2_u32bit,
  315. tc_s8bit_2_s32bit:
  316. begin
  317. if aktoptprocessor = MC68020 then
  318. exprasmlist^.concat(new(pai68k,op_reg
  319. (A_EXTB,S_L,hregister)))
  320. else { else if aktoptprocessor }
  321. begin
  322. { byte to word }
  323. exprasmlist^.concat(new(pai68k,op_reg
  324. (A_EXT,S_W,hregister)));
  325. { word to long }
  326. exprasmlist^.concat(new(pai68k,op_reg
  327. (A_EXT,S_L,hregister)));
  328. end;
  329. end;
  330. tc_s8bit_2_u16bit,
  331. tc_u8bit_2_s16bit,
  332. tc_u8bit_2_u16bit:
  333. exprasmlist^.concat(new(pai68k, op_const_reg(
  334. A_AND,S_W,$FF,hregister)));
  335. tc_s8bit_2_s16bit:
  336. exprasmlist^.concat(new(pai68k, op_reg(
  337. A_EXT, S_W, hregister)));
  338. end; { inner case }
  339. end;
  340. tc_u16bit_2_u32bit,
  341. tc_u16bit_2_s32bit,
  342. tc_s16bit_2_u32bit,
  343. tc_s16bit_2_s32bit: begin
  344. if is_register then
  345. hregister := p^.left^.location.register
  346. else
  347. hregister := getregister32;
  348. if is_register then
  349. emit_reg_reg(A_MOVE,S_W,p^.left^.location.register, hregister)
  350. else
  351. begin
  352. if p^.left^.location.loc = LOC_CREGISTER then
  353. emit_reg_reg(A_MOVE,S_W,p^.left^.location.register,hregister)
  354. else
  355. exprasmlist^.concat(new(pai68k, op_ref_reg(A_MOVE,S_W,
  356. newreference(P^.left^.location.reference), hregister)));
  357. end;
  358. if (convtyp = tc_u16bit_2_s32bit) or
  359. (convtyp = tc_u16bit_2_u32bit) then
  360. exprasmlist^.concat(new(pai68k, op_const_reg(
  361. A_AND, S_L, $ffff, hregister)))
  362. else { tc_s16bit_2_s32bit }
  363. { tc_s16bit_2_u32bit }
  364. exprasmlist^.concat(new(pai68k, op_reg(A_EXT,S_L,
  365. hregister)));
  366. end;
  367. end { end case }
  368. else
  369. begin
  370. case convtyp of
  371. tc_u8bit_2_s32bit,
  372. tc_s8bit_2_s32bit,
  373. tc_u16bit_2_s32bit,
  374. tc_s16bit_2_s32bit,
  375. tc_u8bit_2_u32bit,
  376. tc_s8bit_2_u32bit,
  377. tc_u16bit_2_u32bit,
  378. tc_s16bit_2_u32bit:
  379. begin
  380. hregister:=getregister32;
  381. op:=A_MOVE;
  382. opsize:=S_L;
  383. end;
  384. tc_s8bit_2_u16bit,
  385. tc_s8bit_2_s16bit,
  386. tc_u8bit_2_s16bit,
  387. tc_u8bit_2_u16bit:
  388. begin
  389. hregister:=getregister32;
  390. op:=A_MOVE;
  391. opsize:=S_W;
  392. end;
  393. end;
  394. if is_register then
  395. begin
  396. emit_reg_reg(op,opsize,p^.left^.location.register,hregister);
  397. end
  398. else
  399. begin
  400. if p^.left^.location.loc=LOC_CREGISTER then
  401. emit_reg_reg(op,opsize,p^.left^.location.register,hregister)
  402. else exprasmlist^.concat(new(pai68k,op_ref_reg(op,opsize,
  403. newreference(p^.left^.location.reference),hregister)));
  404. end;
  405. end; { end elseif }
  406. clear_location(p^.location);
  407. p^.location.loc:=LOC_REGISTER;
  408. p^.location.register:=hregister;
  409. maybe_rangechecking(p,p^.left^.resulttype,p^.resulttype);
  410. end;
  411. procedure second_string_string(p,hp : ptree;convtyp : tconverttype);
  412. {$ifdef UseAnsiString}
  413. var
  414. pushed : tpushed;
  415. {$endif UseAnsiString}
  416. begin
  417. {$ifdef UseAnsiString}
  418. { does anybody know a better solution than this big case statement ? }
  419. { ok, a proc table would do the job }
  420. case pstringdef(p)^.string_typ of
  421. st_shortstring:
  422. case pstringdef(p^.left)^.string_typ of
  423. st_shortstring:
  424. begin
  425. stringdispose(p^.location.reference.symbol);
  426. gettempofsizereference(p^.resulttype^.size,p^.location.reference);
  427. del_reference(p^.left^.location.reference);
  428. copystring(p^.location.reference,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  429. ungetiftemp(p^.left^.location.reference);
  430. end;
  431. st_longstring:
  432. begin
  433. {!!!!!!!}
  434. internalerror(8888);
  435. end;
  436. st_ansistring:
  437. begin
  438. {!!!!!!!}
  439. internalerror(8888);
  440. end;
  441. st_widestring:
  442. begin
  443. {!!!!!!!}
  444. internalerror(8888);
  445. end;
  446. end;
  447. st_longstring:
  448. case pstringdef(p^.left)^.string_typ of
  449. st_shortstring:
  450. begin
  451. {!!!!!!!}
  452. internalerror(8888);
  453. end;
  454. st_ansistring:
  455. begin
  456. {!!!!!!!}
  457. internalerror(8888);
  458. end;
  459. st_widestring:
  460. begin
  461. {!!!!!!!}
  462. internalerror(8888);
  463. end;
  464. end;
  465. st_ansistring:
  466. case pstringdef(p^.left)^.string_typ of
  467. st_shortstring:
  468. begin
  469. pushusedregisters(pushed,$ff);
  470. push_int(p^.resulttype^.size-1);
  471. gettempofsizereference(p^.resulttype^.size,p^.location.reference);
  472. emitpushreferenceaddr(exprasmlist,p^.location.reference);
  473. case p^.right^.location.loc of
  474. LOC_REGISTER,LOC_CREGISTER:
  475. begin
  476. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,p^.right^.location.register)));
  477. ungetregister32(p^.left^.location.register);
  478. end;
  479. LOC_REFERENCE,LOC_MEM:
  480. begin
  481. emit_push_mem(p^.left^.location.reference);
  482. del_reference(p^.left^.location.reference);
  483. end;
  484. end;
  485. emitcall('FPC_ANSI_TO_SHORTSTRING',true);
  486. maybe_loadesi;
  487. popusedregisters(pushed);
  488. end;
  489. st_longstring:
  490. begin
  491. {!!!!!!!}
  492. internalerror(8888);
  493. end;
  494. st_widestring:
  495. begin
  496. {!!!!!!!}
  497. internalerror(8888);
  498. end;
  499. end;
  500. st_widestring:
  501. case pstringdef(p^.left)^.string_typ of
  502. st_shortstring:
  503. begin
  504. {!!!!!!!}
  505. internalerror(8888);
  506. end;
  507. st_longstring:
  508. begin
  509. {!!!!!!!}
  510. internalerror(8888);
  511. end;
  512. st_ansistring:
  513. begin
  514. {!!!!!!!}
  515. internalerror(8888);
  516. end;
  517. st_widestring:
  518. begin
  519. {!!!!!!!}
  520. internalerror(8888);
  521. end;
  522. end;
  523. end;
  524. {$ifdef dummy}
  525. if is_ansistring(p^.resulttype) and not is_ansistring(p^.left^.resulttype) then
  526. begin
  527. { call shortstring to ansistring conversion }
  528. { result is in register }
  529. del_reference(p^.left^.location.reference);
  530. {!!!!
  531. copyshortstringtoansistring(p^.location,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  532. }
  533. ungetiftemp(p^.left^.location.reference);
  534. end
  535. else if not is_ansistring(p^.resulttype) and is_ansistring(p^.left^.resulttype) then
  536. begin
  537. { call ansistring to shortstring conversion }
  538. { result is in mem }
  539. stringdispose(p^.location.reference.symbol);
  540. gettempofsizereference(p^.resulttype^.size,p^.location.reference);
  541. if p^.left^.location.loc in [LOC_MEM,LOC_REFERENCE] then
  542. del_reference(p^.left^.location.reference);
  543. copyansistringtoshortstring(p^.location.reference,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  544. ungetiftemp(p^.left^.location.reference);
  545. end
  546. else
  547. {$endif dummy}
  548. {$else UseAnsiString}
  549. begin
  550. stringdispose(p^.location.reference.symbol);
  551. gettempofsizereference(p^.resulttype^.size,p^.location.reference);
  552. del_reference(p^.left^.location.reference);
  553. copystring(p^.location.reference,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  554. ungetiftemp(p^.left^.location.reference);
  555. end;
  556. {$endif UseAnsiString}
  557. end;
  558. procedure second_cstring_charpointer(p,hp : ptree;convtyp : tconverttype);
  559. begin
  560. clear_location(p^.location);
  561. p^.location.loc:=LOC_REGISTER;
  562. p^.location.register:=getregister32;
  563. inc(p^.left^.location.reference.offset);
  564. exprasmlist^.concat(new(pai68k,op_ref_reg(A_LEA,S_L,newreference(p^.left^.location.reference),
  565. R_A0)));
  566. emit_reg_reg(A_MOVE, S_L, R_A0, p^.location.register);
  567. end;
  568. procedure second_string_chararray(p,hp : ptree;convtyp : tconverttype);
  569. begin
  570. inc(p^.location.reference.offset);
  571. end;
  572. procedure second_array_to_pointer(p,hp : ptree;convtyp : tconverttype);
  573. begin
  574. del_reference(p^.left^.location.reference);
  575. clear_location(p^.location);
  576. p^.location.loc:=LOC_REGISTER;
  577. p^.location.register:=getregister32;
  578. exprasmlist^.concat(new(pai68k,op_ref_reg(A_LEA,S_L,newreference(p^.left^.location.reference),
  579. R_A0)));
  580. emit_reg_reg(A_MOVE,S_L,R_A0, P^.location.register);
  581. end;
  582. procedure second_pointer_to_array(p,hp : ptree;convtyp : tconverttype);
  583. var
  584. reg: tregister;
  585. begin
  586. clear_location(p^.location);
  587. p^.location.loc:=LOC_REFERENCE;
  588. clear_reference(p^.location.reference);
  589. { here, after doing some arithmetic on the pointer }
  590. { we put it back in an address register }
  591. if p^.left^.location.loc=LOC_REGISTER then
  592. begin
  593. reg := getaddressreg;
  594. { move the pointer in a data register back into }
  595. { an address register. }
  596. emit_reg_reg(A_MOVE, S_L, p^.left^.location.register,reg);
  597. p^.location.reference.base:=reg;
  598. ungetregister32(p^.left^.location.register);
  599. end
  600. else
  601. begin
  602. if p^.left^.location.loc=LOC_CREGISTER then
  603. begin
  604. p^.location.reference.base:=getaddressreg;
  605. emit_reg_reg(A_MOVE,S_L,p^.left^.location.register,
  606. p^.location.reference.base);
  607. end
  608. else
  609. begin
  610. del_reference(p^.left^.location.reference);
  611. p^.location.reference.base:=getaddressreg;
  612. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(p^.left^.location.reference),
  613. p^.location.reference.base)));
  614. end;
  615. end;
  616. end;
  617. { generates the code for the type conversion from an array of char }
  618. { to a string }
  619. procedure second_chararray_to_string(p,hp : ptree;convtyp : tconverttype);
  620. var
  621. l : longint;
  622. begin
  623. { this is a type conversion which copies the data, so we can't }
  624. { return a reference }
  625. clear_location(p^.location);
  626. p^.location.loc:=LOC_MEM;
  627. { first get the memory for the string }
  628. stringdispose(p^.location.reference.symbol);
  629. gettempofsizereference(256,p^.location.reference);
  630. { calc the length of the array }
  631. l:=parraydef(p^.left^.resulttype)^.highrange-
  632. parraydef(p^.left^.resulttype)^.lowrange+1;
  633. if l>255 then
  634. CGMessage(type_e_mismatch);
  635. { write the length }
  636. exprasmlist^.concat(new(pai68k,op_const_ref(A_MOVE,S_B,l,
  637. newreference(p^.location.reference))));
  638. { copy to first char of string }
  639. inc(p^.location.reference.offset);
  640. { generates the copy code }
  641. { and we need the source never }
  642. concatcopy(p^.left^.location.reference,p^.location.reference,l,true);
  643. { correct the string location }
  644. dec(p^.location.reference.offset);
  645. end;
  646. procedure second_char_to_string(p,hp : ptree;convtyp : tconverttype);
  647. begin
  648. stringdispose(p^.location.reference.symbol);
  649. gettempofsizereference(256,p^.location.reference);
  650. { call loadstring with correct left and right }
  651. p^.right:=p^.left;
  652. p^.left:=p;
  653. loadstring(p);
  654. p^.left:=nil; { reset left tree, which is empty }
  655. { p^.right is not disposed for typeconv !! PM }
  656. disposetree(p^.right);
  657. p^.right:=nil;
  658. end;
  659. procedure second_int_real(p,hp : ptree;convtyp : tconverttype);
  660. var
  661. r : preference;
  662. begin
  663. emitloadord2reg(p^.left^.location, porddef(p^.left^.resulttype), R_D6, true);
  664. ungetiftemp(p^.left^.location.reference);
  665. if porddef(p^.left^.resulttype)^.typ=u32bit then
  666. push_int(0);
  667. emit_reg_reg(A_MOVE, S_L, R_D6, R_SPPUSH);
  668. new(r);
  669. reset_reference(r^);
  670. r^.base := R_SP;
  671. { no emulation }
  672. { for u32bit a solution would be to push $0 and to load a
  673. + comp
  674. + if porddef(p^.left^.resulttype)^.typ=u32bit then
  675. + exprasmlist^.concat(new(pai386,op_ref(A_FILD,S_IQ,r)))
  676. + else}
  677. clear_location(p^.location);
  678. p^.location.loc := LOC_FPU;
  679. { get floating point register. }
  680. if (cs_fp_emulation in aktmoduleswitches) then
  681. begin
  682. p^.location.fpureg := getregister32;
  683. exprasmlist^.concat(new(pai68k, op_ref_reg(A_MOVE, S_L, r, R_D0)));
  684. emitcall('FPC_LONG2SINGLE',true);
  685. emit_reg_reg(A_MOVE,S_L,R_D0,p^.location.fpureg);
  686. end
  687. else
  688. begin
  689. p^.location.fpureg := getfloatreg;
  690. exprasmlist^.concat(new(pai68k, op_ref_reg(A_FMOVE, S_L, r, p^.location.fpureg)))
  691. end;
  692. if porddef(p^.left^.resulttype)^.typ=u32bit then
  693. exprasmlist^.concat(new(pai68k,op_const_reg(A_ADD,S_L,8,R_SP)))
  694. else
  695. { restore the stack to the previous address }
  696. exprasmlist^.concat(new(pai68k, op_const_reg(A_ADDQ, S_L, 4, R_SP)));
  697. end;
  698. procedure second_real_fix(p,hp : ptree;convtyp : tconverttype);
  699. var
  700. rreg : tregister;
  701. ref : treference;
  702. begin
  703. rreg:=getregister32;
  704. { Are we in a LOC_FPU, if not then use scratch registers }
  705. { instead of allocating reserved registers. }
  706. if (p^.left^.location.loc<>LOC_FPU) then
  707. begin
  708. if (cs_fp_emulation in aktmoduleswitches) then
  709. begin
  710. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(p^.left^.location.reference),R_D0)));
  711. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_L,65536,R_D1)));
  712. emitcall('FPC_LONGMUL',true);
  713. emit_reg_reg(A_MOVE,S_L,R_D0,rreg);
  714. end
  715. else
  716. begin
  717. exprasmlist^.concat(new(pai68k,op_ref_reg(A_FMOVE,S_L,newreference(p^.left^.location.reference),R_FP0)));
  718. exprasmlist^.concat(new(pai68k,op_const_reg(A_FMUL,S_L,65536,R_FP0)));
  719. exprasmlist^.concat(new(pai68k,op_reg_reg(A_FMOVE,S_L,R_FP0,rreg)));
  720. end;
  721. end
  722. else
  723. begin
  724. if (cs_fp_emulation in aktmoduleswitches) then
  725. begin
  726. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,p^.left^.location.fpureg,R_D0)));
  727. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_L,65536,R_D1)));
  728. emitcall('FPC_LONGMUL',true);
  729. emit_reg_reg(A_MOVE,S_L,R_D0,rreg);
  730. end
  731. else
  732. begin
  733. exprasmlist^.concat(new(pai68k,op_const_reg(A_FMUL,S_L,65536,p^.left^.location.fpureg)));
  734. exprasmlist^.concat(new(pai68k,op_reg_reg(A_FMOVE,S_L,p^.left^.location.fpureg,rreg)));
  735. end;
  736. end;
  737. clear_location(p^.location);
  738. p^.location.loc:=LOC_REGISTER;
  739. p^.location.register:=rreg;
  740. end;
  741. procedure second_float_float(p,hp : ptree;convtyp : tconverttype);
  742. begin
  743. case p^.left^.location.loc of
  744. LOC_FPU : begin
  745. { reload }
  746. clear_location(p^.location);
  747. p^.location.loc := LOC_FPU;
  748. p^.location.fpureg := p^.left^.location.fpureg;
  749. end;
  750. LOC_MEM,
  751. LOC_REFERENCE : floatload(pfloatdef(p^.left^.resulttype)^.typ,
  752. p^.left^.location.reference,p^.location);
  753. end;
  754. { ALREADY HANDLED BY FLOATLOAD }
  755. { p^.location.loc:=LOC_FPU; }
  756. end;
  757. procedure second_fix_real(p,hp : ptree;convtyp : tconverttype);
  758. var
  759. startreg : tregister;
  760. hl : plabel;
  761. r : treference;
  762. reg1: tregister;
  763. hl1,hl2,hl3,hl4,hl5,hl6,hl7,hl8,hl9: plabel;
  764. begin
  765. if (p^.left^.location.loc=LOC_REGISTER) or
  766. (p^.left^.location.loc=LOC_CREGISTER) then
  767. begin
  768. startreg:=p^.left^.location.register;
  769. ungetregister(startreg);
  770. { move d0,d0 is removed by emit_reg_reg }
  771. emit_reg_reg(A_MOVE,S_L,startreg,R_D0);
  772. end
  773. else
  774. begin
  775. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(
  776. p^.left^.location.reference),R_D0)));
  777. del_reference(p^.left^.location.reference);
  778. startreg:=R_NO;
  779. end;
  780. reg1 := getregister32;
  781. { Motorola 68000 equivalent of CDQ }
  782. { we choose d1:d0 pair for quad word }
  783. exprasmlist^.concat(new(pai68k,op_reg(A_TST,S_L,R_D0)));
  784. getlabel(hl1);
  785. emitl(A_BPL,hl1);
  786. { we copy all bits (-ve number) }
  787. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_L,$ffffffff,R_D1)));
  788. getlabel(hl2);
  789. emitl(A_BRA,hl2);
  790. emitl(A_LABEL,hl1);
  791. exprasmlist^.concat(new(pai68k,op_reg(A_CLR,S_L,R_D0)));
  792. emitl(A_LABEL,hl2);
  793. { end CDQ }
  794. exprasmlist^.concat(new(pai68k,op_reg_reg(A_EOR,S_L,R_D1,R_D0)));
  795. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_D0,reg1)));
  796. getlabel(hl3);
  797. emitl(A_BEQ,hl3);
  798. { Motorola 68000 equivalent of RCL }
  799. getlabel(hl4);
  800. emitl(A_BCC,hl4);
  801. exprasmlist^.concat(new(pai68k,op_const_reg(A_LSL,S_L,1,reg1)));
  802. exprasmlist^.concat(new(pai68k,op_const_reg(A_OR,S_L,1,reg1)));
  803. getlabel(hl5);
  804. emitl(A_BRA,hl5);
  805. emitl(A_LABEL,hl4);
  806. exprasmlist^.concat(new(pai68k,op_const_reg(A_LSL,S_L,1,reg1)));
  807. emitl(A_LABEL,hl5);
  808. { end RCL }
  809. { Motorola 68000 equivalent of BSR }
  810. { save register }
  811. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_D0,R_D6)));
  812. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_B,31,R_D0)));
  813. getlabel(hl6);
  814. emitl(A_LABEL,hl6);
  815. exprasmlist^.concat(new(pai68k,op_reg_reg(A_BTST,S_L,R_D0,R_D1)));
  816. getlabel(hl7);
  817. emitl(A_BNE,hl7);
  818. exprasmlist^.concat(new(pai68k,op_const_reg(A_SUBQ,S_B,1,R_D0)));
  819. emitl(A_BPL,hl6);
  820. { restore register }
  821. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_D6,R_D0)));
  822. emitl(A_LABEL,hl7);
  823. { end BSR }
  824. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_B,32,R_D6)));
  825. exprasmlist^.concat(new(pai68k,op_reg_reg(A_SUB,S_B,R_D1,R_D6)));
  826. exprasmlist^.concat(new(pai68k,op_reg_reg(A_LSL,S_L,R_D6,R_D0)));
  827. exprasmlist^.concat(new(pai68k,op_const_reg(A_ADD,S_W,1007,R_D1)));
  828. exprasmlist^.concat(new(pai68k,op_const_reg(A_LSL,S_L,5,R_D1)));
  829. { Motorola 68000 equivalent of SHLD }
  830. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_W,11,R_D6)));
  831. { save register }
  832. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_D1,R_A0)));
  833. getlabel(hl8);
  834. emitl(A_LABEL,hl8);
  835. exprasmlist^.concat(new(pai68k,op_const_reg(A_ROXL,S_W,1,R_D1)));
  836. exprasmlist^.concat(new(pai68k,op_const_reg(A_ROXL,S_W,1,reg1)));
  837. exprasmlist^.concat(new(pai68k,op_const_reg(A_SUBQ,S_B,1,R_D6)));
  838. emitl(A_BNE,hl8);
  839. { restore register }
  840. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_A0,R_D1)));
  841. { end Motorola equivalent of SHLD }
  842. { Motorola 68000 equivalent of SHLD }
  843. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_W,20,R_D6)));
  844. { save register }
  845. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_D0,R_A0)));
  846. getlabel(hl9);
  847. emitl(A_LABEL,hl9);
  848. exprasmlist^.concat(new(pai68k,op_const_reg(A_ROXL,S_W,1,R_D0)));
  849. exprasmlist^.concat(new(pai68k,op_const_reg(A_ROXL,S_W,1,reg1)));
  850. exprasmlist^.concat(new(pai68k,op_const_reg(A_SUBQ,S_B,1,R_D6)));
  851. emitl(A_BNE,hl9);
  852. { restore register }
  853. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_A0,R_D0)));
  854. { end Motorola equivalent of SHLD }
  855. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,S_B,20,R_D6)));
  856. exprasmlist^.concat(new(pai68k,op_reg_reg(A_SUB,S_L,R_D6,R_D0)));
  857. emitl(A_LABEL, hl3);
  858. { create temp values and put on stack }
  859. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,reg1,R_SPPUSH)));
  860. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,S_L,R_D0,R_SPPUSH)));
  861. reset_reference(r);
  862. r.base:=R_SP;
  863. if (cs_fp_emulation in aktmoduleswitches) then
  864. begin
  865. clear_location(p^.location);
  866. p^.location.loc:=LOC_FPU;
  867. p^.location.fpureg := getregister32;
  868. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(r),
  869. p^.left^.location.fpureg)))
  870. end
  871. else
  872. begin
  873. clear_location(p^.location);
  874. p^.location.loc:=LOC_FPU;
  875. p^.location.fpureg := getfloatreg;
  876. exprasmlist^.concat(new(pai68k,op_ref_reg(A_FMOVE,S_L,newreference(r),
  877. p^.left^.location.fpureg)))
  878. end;
  879. { clear temporary space }
  880. exprasmlist^.concat(new(pai68k,op_const_reg(A_ADDQ,S_L,8,R_SP)));
  881. ungetregister32(reg1);
  882. { Alreadu handled above... }
  883. { p^.location.loc:=LOC_FPU; }
  884. end;
  885. procedure second_int_fix(p,hp : ptree;convtyp : tconverttype);
  886. var
  887. {hs : string;}
  888. hregister : tregister;
  889. begin
  890. if (p^.left^.location.loc=LOC_REGISTER) then
  891. hregister:=p^.left^.location.register
  892. else if (p^.left^.location.loc=LOC_CREGISTER) then
  893. hregister:=getregister32
  894. else
  895. begin
  896. del_reference(p^.left^.location.reference);
  897. hregister:=getregister32;
  898. case porddef(p^.left^.resulttype)^.typ of
  899. s8bit : begin
  900. exprasmlist^.concat(new(pai68k, op_ref_reg(A_MOVE,S_B,
  901. newreference(p^.left^.location.reference),hregister)));
  902. if aktoptprocessor = MC68020 then
  903. exprasmlist^.concat(new(pai68k, op_reg(A_EXTB,S_L,hregister)))
  904. else
  905. begin
  906. exprasmlist^.concat(new(pai68k, op_reg(A_EXT,S_W,hregister)));
  907. exprasmlist^.concat(new(pai68k, op_reg(A_EXT,S_L,hregister)));
  908. end;
  909. end;
  910. u8bit : begin
  911. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_B,newreference(p^.left^.location.reference),
  912. hregister)));
  913. exprasmlist^.concat(new(pai68k,op_const_reg(A_AND,S_L,$ff,hregister)));
  914. end;
  915. s16bit :begin
  916. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_W,newreference(p^.left^.location.reference),
  917. hregister)));
  918. exprasmlist^.concat(new(pai68k,op_reg(A_EXT,S_L,hregister)));
  919. end;
  920. u16bit : begin
  921. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_W,newreference(p^.left^.location.reference),
  922. hregister)));
  923. exprasmlist^.concat(new(pai68k,op_const_reg(A_AND,S_L,$ffff,hregister)));
  924. end;
  925. s32bit,u32bit : exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,newreference(p^.left^.location.reference),
  926. hregister)));
  927. {!!!! u32bit }
  928. end;
  929. end;
  930. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVEQ,S_L,16,R_D1)));
  931. exprasmlist^.concat(new(pai68k,op_reg_reg(A_LSL,S_L,R_D1,hregister)));
  932. clear_location(p^.location);
  933. p^.location.loc:=LOC_REGISTER;
  934. p^.location.register:=hregister;
  935. end;
  936. procedure second_proc_to_procvar(p,hp : ptree;convtyp : tconverttype);
  937. begin
  938. secondpass(hp);
  939. clear_location(p^.location);
  940. p^.location.loc:=LOC_REGISTER;
  941. del_reference(hp^.location.reference);
  942. p^.location.register:=getregister32;
  943. exprasmlist^.concat(new(pai68k,op_ref_reg(A_LEA,S_L,
  944. newreference(hp^.location.reference),R_A0)));
  945. emit_reg_reg(A_MOVE, S_L, R_A0, P^.location.register);
  946. end;
  947. procedure second_bool_to_int(p,hp : ptree;convtyp : tconverttype);
  948. var
  949. oldtruelabel,oldfalselabel,hlabel : plabel;
  950. hregister : tregister;
  951. newsize,
  952. opsize : topsize;
  953. op : tasmop;
  954. begin
  955. oldtruelabel:=truelabel;
  956. oldfalselabel:=falselabel;
  957. getlabel(truelabel);
  958. getlabel(falselabel);
  959. secondpass(hp);
  960. clear_location(p^.location);
  961. p^.location.loc:=LOC_REGISTER;
  962. del_reference(hp^.location.reference);
  963. hregister:=getregister32;
  964. case porddef(hp^.resulttype)^.typ of
  965. bool8bit : begin
  966. case porddef(p^.resulttype)^.typ of
  967. u8bit,s8bit,
  968. bool8bit : opsize:=S_B;
  969. u16bit,s16bit,
  970. bool16bit : opsize:=S_BW;
  971. u32bit,s32bit,
  972. bool32bit : opsize:=S_BL;
  973. end;
  974. end;
  975. bool16bit : begin
  976. case porddef(p^.resulttype)^.typ of
  977. u8bit,s8bit,
  978. bool8bit : opsize:=S_B;
  979. u16bit,s16bit,
  980. bool16bit : opsize:=S_W;
  981. u32bit,s32bit,
  982. bool32bit : opsize:=S_WL;
  983. end;
  984. end;
  985. bool32bit : begin
  986. case porddef(p^.resulttype)^.typ of
  987. u8bit,s8bit,
  988. bool8bit : opsize:=S_B;
  989. u16bit,s16bit,
  990. bool16bit : opsize:=S_W;
  991. u32bit,s32bit,
  992. bool32bit : opsize:=S_L;
  993. end;
  994. end;
  995. end;
  996. op:=A_MOVE;
  997. { if opsize in [S_B,S_W,S_L] then
  998. op:=A_MOVE
  999. else
  1000. if (porddef(p^.resulttype)^.typ in [s8bit,s16bit,s32bit]) then
  1001. op:=A_MOVSX
  1002. else
  1003. op:=A_MOVZX; }
  1004. case porddef(p^.resulttype)^.typ of
  1005. bool8bit,u8bit,s8bit : begin
  1006. p^.location.register:=hregister;
  1007. newsize:=S_B;
  1008. end;
  1009. bool16bit,u16bit,s16bit : begin
  1010. p^.location.register:=hregister;
  1011. newsize:=S_W;
  1012. end;
  1013. bool32bit,u32bit,s32bit : begin
  1014. p^.location.register:=hregister;
  1015. newsize:=S_L;
  1016. end;
  1017. else
  1018. internalerror(10060);
  1019. end;
  1020. case hp^.location.loc of
  1021. LOC_MEM,
  1022. LOC_REFERENCE : exprasmlist^.concat(new(pai68k,op_ref_reg(op,opsize,
  1023. newreference(hp^.location.reference),p^.location.register)));
  1024. LOC_REGISTER,
  1025. LOC_CREGISTER : exprasmlist^.concat(new(pai68k,op_reg_reg(op,opsize,
  1026. hp^.location.register,p^.location.register)));
  1027. LOC_FLAGS : begin
  1028. { hregister:=reg32toreg8(hregister); }
  1029. exprasmlist^.concat(new(pai68k,op_reg(flag_2_set[hp^.location.resflags],S_B,hregister)));
  1030. { !!!!!!!!
  1031. case porddef(p^.resulttype)^.typ of
  1032. bool16bit,
  1033. u16bit,s16bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BW,hregister,p^.location.register)));
  1034. bool32bit,
  1035. u32bit,s32bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BL,hregister,p^.location.register)));
  1036. end; }
  1037. end;
  1038. LOC_JUMP : begin
  1039. getlabel(hlabel);
  1040. emitl(A_LABEL,truelabel);
  1041. exprasmlist^.concat(new(pai68k,op_const_reg(A_MOVE,newsize,1,hregister)));
  1042. emitl(A_JMP,hlabel);
  1043. emitl(A_LABEL,falselabel);
  1044. exprasmlist^.concat(new(pai68k,op_reg(A_CLR,newsize,hregister)));
  1045. emitl(A_LABEL,hlabel);
  1046. end;
  1047. else
  1048. internalerror(10061);
  1049. end;
  1050. truelabel:=oldtruelabel;
  1051. falselabel:=oldfalselabel;
  1052. end;
  1053. procedure second_int_to_bool(p,hp : ptree;convtyp : tconverttype);
  1054. var
  1055. hregister : tregister;
  1056. begin
  1057. clear_location(p^.location);
  1058. p^.location.loc:=LOC_REGISTER;
  1059. del_reference(hp^.location.reference);
  1060. case hp^.location.loc of
  1061. LOC_MEM,LOC_REFERENCE :
  1062. begin
  1063. hregister:=getregister32;
  1064. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,S_L,
  1065. newreference(hp^.location.reference),hregister)));
  1066. end;
  1067. LOC_REGISTER,LOC_CREGISTER :
  1068. begin
  1069. hregister:=hp^.location.register;
  1070. end;
  1071. else
  1072. internalerror(10062);
  1073. end;
  1074. exprasmlist^.concat(new(pai68k,op_reg_reg(A_OR,S_L,hregister,hregister)));
  1075. { hregister:=reg32toreg8(hregister); }
  1076. exprasmlist^.concat(new(pai68k,op_reg(flag_2_set[hp^.location.resflags],S_B,hregister)));
  1077. case porddef(p^.resulttype)^.typ of
  1078. bool8bit : p^.location.register:=hregister;
  1079. { !!!!!!!!!!!
  1080. bool16bit : begin
  1081. p^.location.register:=reg8toreg16(hregister);
  1082. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BW,hregister,p^.location.register)));
  1083. end;
  1084. bool32bit : begin
  1085. p^.location.register:=reg16toreg32(hregister);
  1086. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BL,hregister,p^.location.register)));
  1087. end; }
  1088. else
  1089. internalerror(10064);
  1090. end;
  1091. end;
  1092. procedure second_load_smallset(p,hp : ptree;convtyp : tconverttype);
  1093. var
  1094. href : treference;
  1095. pushedregs : tpushed;
  1096. begin
  1097. href.symbol:=nil;
  1098. pushusedregisters(pushedregs,$ff);
  1099. gettempofsizereference(32,href);
  1100. emitpushreferenceaddr(p^.left^.location.reference);
  1101. emitpushreferenceaddr(href);
  1102. emitcall('FPC_SET_LOAD_SMALL',true);
  1103. maybe_loada5;
  1104. popusedregisters(pushedregs);
  1105. clear_location(p^.location);
  1106. p^.location.loc:=LOC_MEM;
  1107. stringdispose(p^.location.reference.symbol);
  1108. p^.location.reference:=href;
  1109. end;
  1110. procedure second_ansistring_to_pchar(p,hp : ptree;convtyp : tconverttype);
  1111. var
  1112. l1,l2 : plabel;
  1113. hr : preference;
  1114. begin
  1115. InternalError(342132);
  1116. {!!!!!!!!!!!
  1117. clear_location(p^.location);
  1118. p^.location.loc:=LOC_REGISTER;
  1119. getlabel(l1);
  1120. getlabel(l2);
  1121. case hp^.location.loc of
  1122. LOC_CREGISTER,LOC_REGISTER:
  1123. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,S_L,0,
  1124. hp^.location.register)));
  1125. LOC_MEM,LOC_REFERENCE:
  1126. begin
  1127. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_L,0,
  1128. newreference(hp^.location.reference))));
  1129. del_reference(hp^.location.reference);
  1130. p^.location.register:=getregister32;
  1131. end;
  1132. end;
  1133. emitl(A_JZ,l1);
  1134. if hp^.location.loc in [LOC_MEM,LOC_REFERENCE] then
  1135. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(
  1136. hp^.location.reference),
  1137. p^.location.register)));
  1138. emitl(A_JMP,l2);
  1139. emitl(A_LABEL,l1);
  1140. new(hr);
  1141. reset_reference(hr^);
  1142. hr^.symbol:=stringdup('FPC_EMPTYCHAR');
  1143. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,hr,
  1144. p^.location.register)));
  1145. emitl(A_LABEL,l2); }
  1146. end;
  1147. procedure second_pchar_to_string(p,hp : ptree;convtyp : tconverttype);
  1148. begin
  1149. internalerror(12121);
  1150. end;
  1151. procedure second_nothing(p,hp : ptree;convtyp : tconverttype);
  1152. begin
  1153. end;
  1154. {****************************************************************************
  1155. SecondTypeConv
  1156. ****************************************************************************}
  1157. procedure secondtypeconv(var p : ptree);
  1158. const
  1159. secondconvert : array[tconverttype] of
  1160. tsecondconvproc = (second_nothing,second_nothing,
  1161. second_bigger,second_only_rangecheck,
  1162. second_bigger,second_bigger,second_bigger,
  1163. second_smaller,second_smaller,
  1164. second_smaller,second_string_string,
  1165. second_cstring_charpointer,second_string_chararray,
  1166. second_array_to_pointer,second_pointer_to_array,
  1167. second_char_to_string,second_bigger,
  1168. second_bigger,second_bigger,
  1169. second_smaller,second_smaller,
  1170. second_smaller,second_smaller,
  1171. second_bigger,second_smaller,
  1172. second_only_rangecheck,second_bigger,
  1173. second_bigger,second_bigger,
  1174. second_bigger,second_only_rangecheck,
  1175. second_smaller,second_smaller,
  1176. second_smaller,second_smaller,
  1177. second_bool_to_int,second_int_to_bool,
  1178. second_int_real,second_real_fix,
  1179. second_fix_real,second_int_fix,second_float_float,
  1180. second_chararray_to_string,
  1181. second_proc_to_procvar,
  1182. { is constant char to pchar, is done by firstpass }
  1183. second_nothing,
  1184. second_load_smallset,
  1185. second_ansistring_to_pchar,
  1186. second_pchar_to_string,
  1187. second_nothing);
  1188. begin
  1189. { this isn't good coding, I think tc_bool_2_int, shouldn't be }
  1190. { type conversion (FK) }
  1191. { this is necessary, because second_bool_byte, have to change }
  1192. { true- and false label before calling secondpass }
  1193. if p^.convtyp<>tc_bool_2_int then
  1194. begin
  1195. secondpass(p^.left);
  1196. set_location(p^.location,p^.left^.location);
  1197. if codegenerror then
  1198. exit;
  1199. end;
  1200. if not(p^.convtyp in [tc_equal,tc_not_possible]) then
  1201. {the second argument only is for maybe_range_checking !}
  1202. secondconvert[p^.convtyp](p,p^.left,p^.convtyp)
  1203. end;
  1204. {*****************************************************************************
  1205. SecondIs
  1206. *****************************************************************************}
  1207. procedure secondis(var p : ptree);
  1208. var
  1209. pushed : tpushed;
  1210. begin
  1211. { save all used registers }
  1212. pushusedregisters(pushed,$ffff);
  1213. secondpass(p^.left);
  1214. clear_location(p^.location);
  1215. p^.location.loc:=LOC_FLAGS;
  1216. p^.location.resflags:=F_NE;
  1217. { push instance to check: }
  1218. case p^.left^.location.loc of
  1219. LOC_REGISTER,LOC_CREGISTER:
  1220. begin
  1221. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,
  1222. S_L,p^.left^.location.register,R_SPPUSH)));
  1223. ungetregister32(p^.left^.location.register);
  1224. end;
  1225. LOC_MEM,LOC_REFERENCE:
  1226. begin
  1227. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,
  1228. S_L,newreference(p^.left^.location.reference),R_SPPUSH)));
  1229. del_reference(p^.left^.location.reference);
  1230. end;
  1231. else internalerror(100);
  1232. end;
  1233. { generate type checking }
  1234. secondpass(p^.right);
  1235. case p^.right^.location.loc of
  1236. LOC_REGISTER,LOC_CREGISTER:
  1237. begin
  1238. exprasmlist^.concat(new(pai68k,op_reg_reg(A_MOVE,
  1239. S_L,p^.right^.location.register,R_SPPUSH)));
  1240. ungetregister32(p^.right^.location.register);
  1241. end;
  1242. LOC_MEM,LOC_REFERENCE:
  1243. begin
  1244. exprasmlist^.concat(new(pai68k,op_ref_reg(A_MOVE,
  1245. S_L,newreference(p^.right^.location.reference),R_SPPUSH)));
  1246. del_reference(p^.right^.location.reference);
  1247. end;
  1248. else internalerror(100);
  1249. end;
  1250. emitcall('FPC_DO_IS',true);
  1251. exprasmlist^.concat(new(pai68k,op_reg(A_TST,S_B,R_D0)));
  1252. popusedregisters(pushed);
  1253. end;
  1254. {*****************************************************************************
  1255. SecondAs
  1256. *****************************************************************************}
  1257. procedure secondas(var p : ptree);
  1258. var
  1259. pushed : tpushed;
  1260. begin
  1261. set_location(p^.location,p^.left^.location);
  1262. { save all used registers }
  1263. pushusedregisters(pushed,$ffff);
  1264. { push the vmt of the class }
  1265. exprasmlist^.concat(new(pai68k,op_csymbol_reg(A_MOVE,
  1266. S_L,newcsymbol(pobjectdef(p^.right^.resulttype)^.vmt_mangledname,0),R_SPPUSH)));
  1267. concat_external(pobjectdef(p^.right^.resulttype)^.vmt_mangledname,EXT_NEAR);
  1268. emitpushreferenceaddr(p^.location.reference);
  1269. emitcall('FPC_DO_AS',true);
  1270. popusedregisters(pushed);
  1271. end;
  1272. end.
  1273. {
  1274. $Log$
  1275. Revision 1.8 1998-10-14 10:45:05 pierre
  1276. * ppu problems for m68k fixed (at least in cross compiling)
  1277. * one last memory leak for sysamiga fixed
  1278. * the amiga RTL compiles now completely !!
  1279. Revision 1.7 1998/10/13 16:50:06 pierre
  1280. * undid some changes of Peter that made the compiler wrong
  1281. for m68k (I had to reinsert some ifdefs)
  1282. * removed several memory leaks under m68k
  1283. * removed the meory leaks for assembler readers
  1284. * cross compiling shoud work again better
  1285. ( crosscompiling sysamiga works
  1286. but as68k still complain about some code !)
  1287. Revision 1.6 1998/10/06 20:48:56 peter
  1288. * m68k compiler compiles again
  1289. Revision 1.5 1998/09/17 09:42:23 peter
  1290. + pass_2 for cg386
  1291. * Message() -> CGMessage() for pass_1/pass_2
  1292. Revision 1.4 1998/09/14 10:43:56 peter
  1293. * all internal RTL functions start with FPC_
  1294. Revision 1.3 1998/09/11 12:29:43 pierre
  1295. * removed explicit range_checking as it is buggy
  1296. Revision 1.2.2.1 1998/09/11 12:08:57 pierre
  1297. * removed explicit range_check was buggy
  1298. Revision 1.2 1998/09/04 08:41:45 peter
  1299. * updated some error messages
  1300. Revision 1.1 1998/09/01 09:07:09 peter
  1301. * m68k fixes, splitted cg68k like cgi386
  1302. }