cgi386.pas 270 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1993-98 by Florian Klaempfl
  4. This unit generates i386 (or better) assembler from the parse tree
  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+,D+,L+,Y-}
  20. {$endif}
  21. unit cgi386;
  22. interface
  23. uses
  24. tree;
  25. { produces assembler for the expression in variable p }
  26. { and produces an assembler node at the end }
  27. procedure generatecode(var p : ptree);
  28. { produces the actual code }
  29. function do_secondpass(var p : ptree) : boolean;
  30. procedure secondpass(var p : ptree);
  31. {$ifdef test_dest_loc}
  32. const
  33. { used to avoid temporary assignments }
  34. dest_loc_known : boolean = false;
  35. in_dest_loc : boolean = false;
  36. dest_loc_tree : ptree = nil;
  37. var
  38. dest_loc : tlocation;
  39. procedure mov_reg_to_dest(p : ptree; s : topsize; reg : tregister);
  40. {$endif test_dest_loc}
  41. implementation
  42. uses
  43. verbose,cobjects,systems,globals,files,
  44. symtable,types,aasm,i386,
  45. pass_1,hcodegen,tgeni386,cgai386
  46. {$ifdef GDB}
  47. ,gdb
  48. {$endif}
  49. {$ifdef TP}
  50. ,cgi3862
  51. {$endif}
  52. ,cg386con
  53. ;
  54. const
  55. never_copy_const_param : boolean = false;
  56. {$ifdef test_dest_loc}
  57. procedure mov_reg_to_dest(p : ptree; s : topsize; reg : tregister);
  58. begin
  59. if (dest_loc.loc=LOC_CREGISTER) or (dest_loc.loc=LOC_REGISTER) then
  60. begin
  61. emit_reg_reg(A_MOV,s,reg,dest_loc.register);
  62. p^.location:=dest_loc;
  63. in_dest_loc:=true;
  64. end
  65. else
  66. if (dest_loc.loc=LOC_REFERENCE) or (dest_loc.loc=LOC_MEM) then
  67. begin
  68. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,s,reg,newreference(dest_loc.reference))));
  69. p^.location:=dest_loc;
  70. in_dest_loc:=true;
  71. end
  72. else
  73. internalerror(20080);
  74. end;
  75. {$endif test_dest_loc}
  76. const
  77. bytes2Sxx:array[1..4] of Topsize=(S_B,S_W,S_NO,S_L);
  78. procedure message(const t : tmsgconst);
  79. var
  80. olderrorcount : longint;
  81. begin
  82. if not(codegenerror) then
  83. begin
  84. olderrorcount:=status.errorcount;
  85. verbose.Message(t);
  86. codegenerror:=olderrorcount<>status.errorcount;
  87. end;
  88. end;
  89. procedure message1(const t : tmsgconst;const s : string);
  90. var
  91. olderrorcount : longint;
  92. begin
  93. if not(codegenerror) then
  94. begin
  95. olderrorcount:=status.errorcount;
  96. verbose.Message1(t,s);
  97. codegenerror:=olderrorcount<>status.errorcount;
  98. end;
  99. end;
  100. procedure message2(const t : tmsgconst;const s1,s2 : string);
  101. var
  102. olderrorcount : longint;
  103. begin
  104. if not(codegenerror) then
  105. begin
  106. olderrorcount:=status.errorcount;
  107. verbose.Message2(t,s1,s2);
  108. codegenerror:=olderrorcount<>status.errorcount;
  109. end;
  110. end;
  111. procedure message3(const t : tmsgconst;const s1,s2,s3 : string);
  112. var
  113. olderrorcount : longint;
  114. begin
  115. if not(codegenerror) then
  116. begin
  117. olderrorcount:=status.errorcount;
  118. verbose.Message3(t,s1,s2,s3);
  119. codegenerror:=olderrorcount<>status.errorcount;
  120. end;
  121. end;
  122. type
  123. secondpassproc = procedure(var p : ptree);
  124. procedure seconderror(var p : ptree);
  125. begin
  126. p^.error:=true;
  127. codegenerror:=true;
  128. end;
  129. var
  130. { this is for open arrays and strings }
  131. { but be careful, this data is in the }
  132. { generated code destroyed quick, and also }
  133. { the next call of secondload destroys this }
  134. { data }
  135. { So be careful using the informations }
  136. { provided by this variables }
  137. highframepointer : tregister;
  138. highoffset : longint;
  139. {$ifndef TP}
  140. {$I cgi386ad.inc}
  141. {$endif TP}
  142. procedure secondload(var p : ptree);
  143. var
  144. hregister : tregister;
  145. symtabletype : tsymtabletype;
  146. i : longint;
  147. hp : preference;
  148. begin
  149. simple_loadn:=true;
  150. reset_reference(p^.location.reference);
  151. case p^.symtableentry^.typ of
  152. { this is only for toasm and toaddr }
  153. absolutesym :
  154. begin
  155. stringdispose(p^.location.reference.symbol);
  156. if (pabsolutesym(p^.symtableentry)^.abstyp=toaddr) then
  157. begin
  158. if pabsolutesym(p^.symtableentry)^.absseg then
  159. p^.location.reference.segment:=R_FS;
  160. p^.location.reference.offset:=pabsolutesym(p^.symtableentry)^.address;
  161. end
  162. else
  163. p^.location.reference.symbol:=stringdup(p^.symtableentry^.mangledname);
  164. maybe_concat_external(p^.symtableentry^.owner,p^.symtableentry^.mangledname);
  165. end;
  166. varsym :
  167. begin
  168. hregister:=R_NO;
  169. symtabletype:=p^.symtable^.symtabletype;
  170. { in case it is a register variable: }
  171. if pvarsym(p^.symtableentry)^.reg<>R_NO then
  172. begin
  173. p^.location.loc:=LOC_CREGISTER;
  174. p^.location.register:=pvarsym(p^.symtableentry)^.reg;
  175. unused:=unused-[pvarsym(p^.symtableentry)^.reg];
  176. end
  177. else
  178. begin
  179. { first handle local and temporary variables }
  180. if (symtabletype=parasymtable) or
  181. (symtabletype=inlinelocalsymtable) or
  182. (symtabletype=inlineparasymtable) or
  183. (symtabletype=localsymtable) then
  184. begin
  185. p^.location.reference.base:=procinfo.framepointer;
  186. p^.location.reference.offset:=pvarsym(p^.symtableentry)^.address;
  187. if (symtabletype=localsymtable) or (symtabletype=inlinelocalsymtable) then
  188. p^.location.reference.offset:=-p^.location.reference.offset;
  189. if (symtabletype=parasymtable) or (symtabletype=inlineparasymtable) then
  190. inc(p^.location.reference.offset,p^.symtable^.call_offset);
  191. if (lexlevel>(p^.symtable^.symtablelevel)) then
  192. begin
  193. hregister:=getregister32;
  194. { make a reference }
  195. hp:=new_reference(procinfo.framepointer,
  196. procinfo.framepointer_offset);
  197. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,hp,hregister)));
  198. simple_loadn:=false;
  199. i:=lexlevel-1;
  200. while i>(p^.symtable^.symtablelevel) do
  201. begin
  202. { make a reference }
  203. hp:=new_reference(hregister,8);
  204. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,hp,hregister)));
  205. dec(i);
  206. end;
  207. p^.location.reference.base:=hregister;
  208. end;
  209. end
  210. else
  211. case symtabletype of
  212. unitsymtable,globalsymtable,
  213. staticsymtable : begin
  214. stringdispose(p^.location.reference.symbol);
  215. p^.location.reference.symbol:=stringdup(p^.symtableentry^.mangledname);
  216. if symtabletype=unitsymtable then
  217. concat_external(p^.symtableentry^.mangledname,EXT_NEAR);
  218. end;
  219. objectsymtable : begin
  220. if (pvarsym(p^.symtableentry)^.properties and sp_static)<>0 then
  221. begin
  222. stringdispose(p^.location.reference.symbol);
  223. p^.location.reference.symbol:=stringdup(p^.symtableentry^.mangledname);
  224. if p^.symtable^.defowner^.owner^.symtabletype=unitsymtable then
  225. concat_external(p^.symtableentry^.mangledname,EXT_NEAR);
  226. end
  227. else
  228. begin
  229. p^.location.reference.base:=R_ESI;
  230. p^.location.reference.offset:=pvarsym(p^.symtableentry)^.address;
  231. end;
  232. end;
  233. withsymtable:
  234. begin
  235. hregister:=getregister32;
  236. p^.location.reference.base:=hregister;
  237. { make a reference }
  238. { symtable datasize field
  239. contains the offset of the temp
  240. stored }
  241. hp:=new_reference(procinfo.framepointer,
  242. p^.symtable^.datasize);
  243. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,hp,hregister)));
  244. p^.location.reference.offset:=
  245. pvarsym(p^.symtableentry)^.address;
  246. end;
  247. end;
  248. { in case call by reference, then calculate: }
  249. if (pvarsym(p^.symtableentry)^.varspez=vs_var) or
  250. ((pvarsym(p^.symtableentry)^.varspez=vs_const) and
  251. dont_copy_const_param(pvarsym(p^.symtableentry)^.definition)) or
  252. { call by value open arrays are also indirect addressed }
  253. is_open_array(pvarsym(p^.symtableentry)^.definition) then
  254. begin
  255. simple_loadn:=false;
  256. if hregister=R_NO then
  257. hregister:=getregister32;
  258. if (p^.location.reference.base=procinfo.framepointer) then
  259. begin
  260. highframepointer:=p^.location.reference.base;
  261. highoffset:=p^.location.reference.offset;
  262. end
  263. else
  264. begin
  265. highframepointer:=R_EDI;
  266. highoffset:=p^.location.reference.offset;
  267. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,
  268. p^.location.reference.base,R_EDI)));
  269. end;
  270. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.location.reference),
  271. hregister)));
  272. clear_reference(p^.location.reference);
  273. p^.location.reference.base:=hregister;
  274. end;
  275. {
  276. if (pvarsym(p^.symtableentry)^.definition^.deftype=objectdef) and
  277. ((pobjectdef(pvarsym(p^.symtableentry)^.definition)^.options and oois_class)<>0) then
  278. begin
  279. simple_loadn:=false;
  280. if hregister=R_NO then
  281. hregister:=getregister32;
  282. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.location.reference),
  283. hregister)));
  284. clear_reference(p^.location.reference);
  285. p^.location.reference.base:=hregister;
  286. end;
  287. }
  288. end;
  289. end;
  290. procsym:
  291. begin
  292. {!!!!! Be aware, work on virtual methods too }
  293. stringdispose(p^.location.reference.symbol);
  294. p^.location.reference.symbol:=
  295. stringdup(pprocsym(p^.symtableentry)^.definition^.mangledname);
  296. maybe_concat_external(p^.symtable,p^.symtableentry^.mangledname);
  297. end;
  298. typedconstsym :
  299. begin
  300. stringdispose(p^.location.reference.symbol);
  301. p^.location.reference.symbol:=stringdup(p^.symtableentry^.mangledname);
  302. maybe_concat_external(p^.symtable,p^.symtableentry^.mangledname);
  303. end;
  304. else internalerror(4);
  305. end;
  306. end;
  307. procedure secondmoddiv(var p : ptree);
  308. var
  309. hreg1 : tregister;
  310. pushed,popeax,popedx : boolean;
  311. power : longint;
  312. hl : plabel;
  313. begin
  314. secondpass(p^.left);
  315. set_location(p^.location,p^.left^.location);
  316. pushed:=maybe_push(p^.right^.registers32,p);
  317. secondpass(p^.right);
  318. if pushed then restore(p);
  319. { put numerator in register }
  320. if p^.left^.location.loc<>LOC_REGISTER then
  321. begin
  322. if p^.left^.location.loc=LOC_CREGISTER then
  323. begin
  324. hreg1:=getregister32;
  325. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,hreg1);
  326. end
  327. else
  328. begin
  329. del_reference(p^.left^.location.reference);
  330. hreg1:=getregister32;
  331. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
  332. hreg1)));
  333. end;
  334. p^.left^.location.loc:=LOC_REGISTER;
  335. p^.left^.location.register:=hreg1;
  336. end
  337. else hreg1:=p^.left^.location.register;
  338. if (p^.treetype=divn) and (p^.right^.treetype=ordconstn) and
  339. ispowerof2(p^.right^.value,power) then
  340. begin
  341. exprasmlist^.concat(new(pai386,op_reg_reg(A_OR,S_L,hreg1,hreg1)));
  342. getlabel(hl);
  343. emitl(A_JNS,hl);
  344. if power=1 then
  345. exprasmlist^.concat(new(pai386,op_reg(A_INC,S_L,hreg1)))
  346. else exprasmlist^.concat(new(pai386,op_const_reg(A_ADD,S_L,p^.right^.value-1,hreg1)));
  347. emitl(A_LABEL,hl);
  348. exprasmlist^.concat(new(pai386,op_const_reg(A_SAR,S_L,power,hreg1)));
  349. end
  350. else
  351. begin
  352. { bring denominator to EDI }
  353. { EDI is always free, it's }
  354. { only used for temporary }
  355. { purposes }
  356. if (p^.right^.location.loc<>LOC_REGISTER) and
  357. (p^.right^.location.loc<>LOC_CREGISTER) then
  358. begin
  359. del_reference(p^.right^.location.reference);
  360. p^.left^.location.loc:=LOC_REGISTER;
  361. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.right^.location.reference),R_EDI)));
  362. end
  363. else
  364. begin
  365. ungetregister32(p^.right^.location.register);
  366. emit_reg_reg(A_MOV,S_L,p^.right^.location.register,R_EDI);
  367. end;
  368. popedx:=false;
  369. popeax:=false;
  370. if hreg1=R_EDX then
  371. begin
  372. if not(R_EAX in unused) then
  373. begin
  374. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EAX)));
  375. popeax:=true;
  376. end;
  377. emit_reg_reg(A_MOV,S_L,R_EDX,R_EAX);
  378. end
  379. else
  380. begin
  381. if not(R_EDX in unused) then
  382. begin
  383. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EDX)));
  384. popedx:=true;
  385. end;
  386. if hreg1<>R_EAX then
  387. begin
  388. if not(R_EAX in unused) then
  389. begin
  390. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EAX)));
  391. popeax:=true;
  392. end;
  393. emit_reg_reg(A_MOV,S_L,hreg1,R_EAX);
  394. end;
  395. end;
  396. exprasmlist^.concat(new(pai386,op_none(A_CLTD,S_NO)));
  397. exprasmlist^.concat(new(pai386,op_reg(A_IDIV,S_L,R_EDI)));
  398. if p^.treetype=divn then
  399. begin
  400. { if result register is busy then copy }
  401. if popeax then
  402. begin
  403. if hreg1=R_EAX then
  404. internalerror(112);
  405. emit_reg_reg(A_MOV,S_L,R_EAX,hreg1)
  406. end
  407. else
  408. if hreg1<>R_EAX then
  409. emit_reg_reg(A_MOV,S_L,R_EAX,hreg1);
  410. end
  411. else
  412. emit_reg_reg(A_MOV,S_L,R_EDX,hreg1);
  413. if popeax then
  414. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EAX)));
  415. if popedx then
  416. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EDX)));
  417. end;
  418. { this registers are always used when div/mod are present }
  419. usedinproc:=usedinproc or ($80 shr byte(R_EAX));
  420. usedinproc:=usedinproc or ($80 shr byte(R_EDX));
  421. p^.location.loc:=LOC_REGISTER;
  422. p^.location.register:=hreg1;
  423. end;
  424. procedure secondshlshr(var p : ptree);
  425. var
  426. hregister1,hregister2,hregister3 : tregister;
  427. pushed,popecx : boolean;
  428. op : tasmop;
  429. begin
  430. popecx:=false;
  431. secondpass(p^.left);
  432. pushed:=maybe_push(p^.right^.registers32,p);
  433. secondpass(p^.right);
  434. if pushed then restore(p);
  435. { load left operators in a register }
  436. if p^.left^.location.loc<>LOC_REGISTER then
  437. begin
  438. if p^.left^.location.loc=LOC_CREGISTER then
  439. begin
  440. hregister1:=getregister32;
  441. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,
  442. hregister1);
  443. end
  444. else
  445. begin
  446. del_reference(p^.left^.location.reference);
  447. hregister1:=getregister32;
  448. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
  449. hregister1)));
  450. end;
  451. end
  452. else hregister1:=p^.left^.location.register;
  453. { determine operator }
  454. if p^.treetype=shln then
  455. op:=A_SHL
  456. else
  457. op:=A_SHR;
  458. { shifting by a constant directly decode: }
  459. if (p^.right^.treetype=ordconstn) then
  460. begin
  461. exprasmlist^.concat(new(pai386,op_const_reg(op,S_L,p^.right^.location.reference.offset and 31,
  462. hregister1)));
  463. p^.location.loc:=LOC_REGISTER;
  464. p^.location.register:=hregister1;
  465. end
  466. else
  467. begin
  468. { load right operators in a register }
  469. if p^.right^.location.loc<>LOC_REGISTER then
  470. begin
  471. if p^.right^.location.loc=LOC_CREGISTER then
  472. begin
  473. hregister2:=getregister32;
  474. emit_reg_reg(A_MOV,S_L,p^.right^.location.register,
  475. hregister2);
  476. end
  477. else
  478. begin
  479. del_reference(p^.right^.location.reference);
  480. hregister2:=getregister32;
  481. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.right^.location.reference),
  482. hregister2)));
  483. end;
  484. end
  485. else hregister2:=p^.right^.location.register;
  486. { left operator is already in a register }
  487. { hence are both in a register }
  488. { is it in the case ECX ? }
  489. if (hregister1=R_ECX) then
  490. begin
  491. { then only swap }
  492. emit_reg_reg(A_XCHG,S_L,hregister1,
  493. hregister2);
  494. hregister3:=hregister1;
  495. hregister1:=hregister2;
  496. hregister2:=hregister3;
  497. end
  498. { if second operator not in ECX ? }
  499. else if (hregister2<>R_ECX) then
  500. begin
  501. { ECX not occupied then swap with right register }
  502. if R_ECX in unused then
  503. begin
  504. emit_reg_reg(A_MOV,S_L,hregister2,R_ECX);
  505. ungetregister32(hregister2);
  506. end
  507. else
  508. begin
  509. { else save ECX and then copy it }
  510. popecx:=true;
  511. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ECX)));
  512. emit_reg_reg(A_MOV,S_L,hregister2,R_ECX);
  513. ungetregister32(hregister2);
  514. end;
  515. end;
  516. { right operand is in ECX }
  517. emit_reg_reg(op,S_L,R_CL,hregister1);
  518. { maybe ECX back }
  519. if popecx then
  520. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_ECX)));
  521. p^.location.register:=hregister1;
  522. end;
  523. { this register is always used when shl/shr are present }
  524. usedinproc:=usedinproc or ($80 shr byte(R_ECX));
  525. end;
  526. procedure secondumminus(var p : ptree);
  527. {$ifdef SUPPORT_MMX}
  528. procedure do_mmx_neg;
  529. var
  530. op : tasmop;
  531. begin
  532. p^.location.loc:=LOC_MMXREGISTER;
  533. if cs_mmx_saturation in aktswitches then
  534. case mmx_type(p^.resulttype) of
  535. mmxs8bit:
  536. op:=A_PSUBSB;
  537. mmxu8bit:
  538. op:=A_PSUBUSB;
  539. mmxs16bit,mmxfixed16:
  540. op:=A_PSUBSW;
  541. mmxu16bit:
  542. op:=A_PSUBUSW;
  543. end
  544. else
  545. case mmx_type(p^.resulttype) of
  546. mmxs8bit,mmxu8bit:
  547. op:=A_PSUBB;
  548. mmxs16bit,mmxu16bit,mmxfixed16:
  549. op:=A_PSUBW;
  550. mmxs32bit,mmxu32bit:
  551. op:=A_PSUBD;
  552. end;
  553. emit_reg_reg(op,S_NO,p^.location.register,R_MM7);
  554. emit_reg_reg(A_MOVQ,S_NO,R_MM7,p^.location.register);
  555. end;
  556. {$endif}
  557. begin
  558. secondpass(p^.left);
  559. p^.location.loc:=LOC_REGISTER;
  560. case p^.left^.location.loc of
  561. LOC_REGISTER:
  562. begin
  563. p^.location.register:=p^.left^.location.register;
  564. exprasmlist^.concat(new(pai386,op_reg(A_NEG,S_L,p^.location.register)));
  565. end;
  566. LOC_CREGISTER:
  567. begin
  568. p^.location.register:=getregister32;
  569. emit_reg_reg(A_MOV,S_L,p^.location.register,
  570. p^.location.register);
  571. exprasmlist^.concat(new(pai386,op_reg(A_NEG,S_L,p^.location.register)));
  572. end;
  573. {$ifdef SUPPORT_MMX}
  574. LOC_MMXREGISTER:
  575. begin
  576. p^.location:=p^.left^.location;
  577. emit_reg_reg(A_PXOR,S_NO,R_MM7,R_MM7);
  578. do_mmx_neg;
  579. end;
  580. LOC_CMMXREGISTER:
  581. begin
  582. p^.location.register:=getregistermmx;
  583. emit_reg_reg(A_PXOR,S_NO,R_MM7,R_MM7);
  584. emit_reg_reg(A_MOVQ,S_NO,p^.left^.location.register,
  585. p^.location.register);
  586. do_mmx_neg;
  587. end;
  588. {$endif SUPPORT_MMX}
  589. LOC_REFERENCE,LOC_MEM:
  590. begin
  591. del_reference(p^.left^.location.reference);
  592. if (p^.left^.resulttype^.deftype=floatdef) and
  593. (pfloatdef(p^.left^.resulttype)^.typ<>f32bit) then
  594. begin
  595. p^.location.loc:=LOC_FPU;
  596. floatload(pfloatdef(p^.left^.resulttype)^.typ,
  597. p^.left^.location.reference);
  598. exprasmlist^.concat(new(pai386,op_none(A_FCHS,S_NO)));
  599. end
  600. {$ifdef SUPPORT_MMX}
  601. else if (cs_mmx in aktswitches) and is_mmx_able_array(p^.left^.resulttype) then
  602. begin
  603. p^.location.register:=getregistermmx;
  604. emit_reg_reg(A_PXOR,S_NO,R_MM7,R_MM7);
  605. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVQ,S_NO,
  606. newreference(p^.left^.location.reference),
  607. p^.location.register)));
  608. do_mmx_neg;
  609. end
  610. {$endif SUPPORT_MMX}
  611. else
  612. begin
  613. p^.location.register:=getregister32;
  614. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  615. newreference(p^.left^.location.reference),
  616. p^.location.register)));
  617. exprasmlist^.concat(new(pai386,op_reg(A_NEG,S_L,p^.location.register)));
  618. end;
  619. end;
  620. LOC_FPU:
  621. begin
  622. p^.location.loc:=LOC_FPU;
  623. exprasmlist^.concat(new(pai386,op_none(A_FCHS,S_NO)));
  624. end;
  625. end;
  626. { Here was a problem... }
  627. { Operand to be negated always }
  628. { seems to be converted to signed }
  629. { 32-bit before doing neg!! }
  630. { So this is useless... }
  631. { emitoverflowcheck(p);}
  632. end;
  633. procedure secondaddr(var p : ptree);
  634. begin
  635. secondpass(p^.left);
  636. p^.location.loc:=LOC_REGISTER;
  637. del_reference(p^.left^.location.reference);
  638. p^.location.register:=getregister32;
  639. {@ on a procvar means returning an address to the procedure that
  640. is stored in it.}
  641. { yes but p^.left^.symtableentry can be nil
  642. for example on @self !! }
  643. { symtableentry can be also invalid, if left is no tree node }
  644. if (p^.left^.treetype=loadn) and
  645. assigned(p^.left^.symtableentry) and
  646. (p^.left^.symtableentry^.typ=varsym) and
  647. (pvarsym(p^.left^.symtableentry)^.definition^.deftype=procvardef) then
  648. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  649. newreference(p^.left^.location.reference),
  650. p^.location.register)))
  651. else
  652. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  653. newreference(p^.left^.location.reference),
  654. p^.location.register)));
  655. { for use of other segments }
  656. if p^.left^.location.reference.segment<>R_DEFAULT_SEG then
  657. p^.location.segment:=p^.left^.location.reference.segment;
  658. end;
  659. procedure seconddoubleaddr(var p : ptree);
  660. begin
  661. secondpass(p^.left);
  662. p^.location.loc:=LOC_REGISTER;
  663. del_reference(p^.left^.location.reference);
  664. p^.location.register:=getregister32;
  665. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  666. newreference(p^.left^.location.reference),
  667. p^.location.register)));
  668. end;
  669. procedure secondnot(var p : ptree);
  670. const
  671. flagsinvers : array[F_E..F_BE] of tresflags =
  672. (F_NE,F_E,F_LE,F_GE,F_L,F_G,F_NC,F_C,
  673. F_A,F_AE,F_B,F_BE);
  674. var
  675. hl : plabel;
  676. begin
  677. if (p^.resulttype^.deftype=orddef) and
  678. (porddef(p^.resulttype)^.typ=bool8bit) then
  679. begin
  680. case p^.location.loc of
  681. LOC_JUMP : begin
  682. hl:=truelabel;
  683. truelabel:=falselabel;
  684. falselabel:=hl;
  685. secondpass(p^.left);
  686. maketojumpbool(p^.left);
  687. hl:=truelabel;
  688. truelabel:=falselabel;
  689. falselabel:=hl;
  690. end;
  691. LOC_FLAGS : begin
  692. secondpass(p^.left);
  693. p^.location.resflags:=flagsinvers[p^.left^.location.resflags];
  694. end;
  695. LOC_REGISTER : begin
  696. secondpass(p^.left);
  697. p^.location.register:=p^.left^.location.register;
  698. exprasmlist^.concat(new(pai386,op_const_reg(A_XOR,S_B,1,p^.location.register)));
  699. end;
  700. LOC_CREGISTER : begin
  701. secondpass(p^.left);
  702. p^.location.loc:=LOC_REGISTER;
  703. p^.location.register:=reg32toreg8(getregister32);
  704. emit_reg_reg(A_MOV,S_B,p^.left^.location.register,
  705. p^.location.register);
  706. exprasmlist^.concat(new(pai386,op_const_reg(A_XOR,S_B,1,p^.location.register)));
  707. end;
  708. LOC_REFERENCE,LOC_MEM : begin
  709. secondpass(p^.left);
  710. del_reference(p^.left^.location.reference);
  711. p^.location.loc:=LOC_REGISTER;
  712. p^.location.register:=reg32toreg8(getregister32);
  713. if p^.left^.location.loc=LOC_CREGISTER then
  714. emit_reg_reg(A_MOV,S_B,p^.left^.location.register,
  715. p^.location.register)
  716. else
  717. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_B,
  718. newreference(p^.left^.location.reference),
  719. p^.location.register)));
  720. exprasmlist^.concat(new(pai386,op_const_reg(A_XOR,S_B,1,p^.location.register)));
  721. end;
  722. end;
  723. end
  724. {$ifdef SUPPORT_MMX}
  725. else if (cs_mmx in aktswitches) and is_mmx_able_array(p^.left^.resulttype) then
  726. begin
  727. secondpass(p^.left);
  728. p^.location.loc:=LOC_MMXREGISTER;
  729. { prepare EDI }
  730. exprasmlist^.concat(new(pai386,op_const_reg(A_MOV,S_L,$ffffffff,R_EDI)));
  731. { load operand }
  732. case p^.left^.location.loc of
  733. LOC_MMXREGISTER:
  734. p^.location:=p^.left^.location;
  735. LOC_CMMXREGISTER:
  736. begin
  737. p^.location.register:=getregistermmx;
  738. emit_reg_reg(A_MOVQ,S_NO,p^.left^.location.register,
  739. p^.location.register);
  740. end;
  741. LOC_REFERENCE,LOC_MEM:
  742. begin
  743. del_reference(p^.left^.location.reference);
  744. p^.location.register:=getregistermmx;
  745. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVQ,S_NO,
  746. newreference(p^.left^.location.reference),
  747. p^.location.register)));
  748. end;
  749. end;
  750. { load mask }
  751. emit_reg_reg(A_MOV,S_D,R_EDI,R_MM7);
  752. { lower 32 bit }
  753. emit_reg_reg(A_PXOR,S_D,R_MM7,p^.location.register);
  754. { shift mask }
  755. exprasmlist^.concat(new(pai386,op_const_reg(A_PSLLQ,S_NO,
  756. 32,R_MM7)));
  757. { higher 32 bit }
  758. emit_reg_reg(A_PXOR,S_D,R_MM7,p^.location.register);
  759. end
  760. {$endif SUPPORT_MMX}
  761. else
  762. begin
  763. secondpass(p^.left);
  764. p^.location.loc:=LOC_REGISTER;
  765. case p^.left^.location.loc of
  766. LOC_REGISTER : begin
  767. p^.location.register:=p^.left^.location.register;
  768. exprasmlist^.concat(new(pai386,op_reg(A_NOT,S_L,p^.location.register)));
  769. end;
  770. LOC_CREGISTER : begin
  771. p^.location.register:=getregister32;
  772. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,
  773. p^.location.register);
  774. exprasmlist^.concat(new(pai386,op_reg(A_NOT,S_L,p^.location.register)));
  775. end;
  776. LOC_REFERENCE,LOC_MEM :
  777. begin
  778. del_reference(p^.left^.location.reference);
  779. p^.location.register:=getregister32;
  780. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  781. newreference(p^.left^.location.reference),
  782. p^.location.register)));
  783. exprasmlist^.concat(new(pai386,op_reg(A_NOT,S_L,p^.location.register)));
  784. end;
  785. end;
  786. {if p^.left^.location.loc=loc_register then
  787. p^.location.register:=p^.left^.location.register
  788. else
  789. begin
  790. del_locref(p^.left^.location);
  791. p^.location.register:=getregister32;
  792. exprasmlist^.concat(new(pai386,op_loc_reg(A_MOV,S_L,
  793. p^.left^.location,
  794. p^.location.register)));
  795. end;
  796. exprasmlist^.concat(new(pai386,op_reg(A_NOT,S_L,p^.location.register)));}
  797. end;
  798. end;
  799. procedure secondnothing(var p : ptree);
  800. begin
  801. end;
  802. procedure secondderef(var p : ptree);
  803. var
  804. hr : tregister;
  805. begin
  806. secondpass(p^.left);
  807. clear_reference(p^.location.reference);
  808. case p^.left^.location.loc of
  809. LOC_REGISTER:
  810. p^.location.reference.base:=p^.left^.location.register;
  811. LOC_CREGISTER:
  812. begin
  813. { ... and reserve one for the pointer }
  814. hr:=getregister32;
  815. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,hr);
  816. p^.location.reference.base:=hr;
  817. end;
  818. else
  819. begin
  820. { free register }
  821. del_reference(p^.left^.location.reference);
  822. { ...and reserve one for the pointer }
  823. hr:=getregister32;
  824. exprasmlist^.concat(new(pai386,op_ref_reg(
  825. A_MOV,S_L,newreference(p^.left^.location.reference),
  826. hr)));
  827. p^.location.reference.base:=hr;
  828. end;
  829. end;
  830. end;
  831. procedure secondvecn(var p : ptree);
  832. var
  833. pushed : boolean;
  834. ind,hr : tregister;
  835. _p : ptree;
  836. function get_mul_size:longint;
  837. begin
  838. if p^.memindex then
  839. get_mul_size:=1
  840. else
  841. get_mul_size:=p^.resulttype^.size;
  842. end;
  843. procedure calc_emit_mul;
  844. var
  845. l1,l2 : longint;
  846. begin
  847. l1:=get_mul_size;
  848. case l1 of
  849. 1,2,4,8 : p^.location.reference.scalefactor:=l1;
  850. else
  851. begin
  852. if ispowerof2(l1,l2) then
  853. exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_L,l2,ind)))
  854. else
  855. exprasmlist^.concat(new(pai386,op_const_reg(A_IMUL,S_L,l1,ind)));
  856. end;
  857. end;
  858. end;
  859. var
  860. extraoffset : longint;
  861. t : ptree;
  862. hp : preference;
  863. tai:Pai386;
  864. begin
  865. secondpass(p^.left);
  866. set_location(p^.location,p^.left^.location);
  867. { in ansistrings S[1] is pchar(S)[0] !! }
  868. if is_ansistring(p^.left^.resulttype) then
  869. dec(p^.location.reference.offset);
  870. { offset can only differ from 0 if arraydef }
  871. if p^.left^.resulttype^.deftype=arraydef then
  872. dec(p^.location.reference.offset,
  873. get_mul_size*parraydef(p^.left^.resulttype)^.lowrange);
  874. if p^.right^.treetype=ordconstn then
  875. begin
  876. { offset can only differ from 0 if arraydef }
  877. if (p^.left^.resulttype^.deftype=arraydef) then
  878. begin
  879. if not(is_open_array(p^.left^.resulttype)) then
  880. begin
  881. if (p^.right^.value>parraydef(p^.left^.resulttype)^.highrange) or
  882. (p^.right^.value<parraydef(p^.left^.resulttype)^.lowrange) then
  883. Message(parser_e_range_check_error);
  884. dec(p^.left^.location.reference.offset,
  885. get_mul_size*parraydef(p^.left^.resulttype)^.lowrange);
  886. end
  887. else
  888. begin
  889. { range checking for open arrays }
  890. end;
  891. end;
  892. inc(p^.left^.location.reference.offset,
  893. get_mul_size*p^.right^.value);
  894. if p^.memseg then
  895. p^.left^.location.reference.segment:=R_FS;
  896. p^.left^.resulttype:=p^.resulttype;
  897. disposetree(p^.right);
  898. _p:=p^.left;
  899. putnode(p);
  900. p:=_p;
  901. end
  902. else
  903. begin
  904. { quick hack, to overcome Delphi 2 }
  905. if (cs_maxoptimieren in aktswitches) and
  906. (p^.left^.resulttype^.deftype=arraydef) then
  907. begin
  908. extraoffset:=0;
  909. if (p^.right^.treetype=addn) then
  910. begin
  911. if p^.right^.right^.treetype=ordconstn then
  912. begin
  913. extraoffset:=p^.right^.right^.value;
  914. t:=p^.right^.left;
  915. putnode(p^.right);
  916. putnode(p^.right^.right);
  917. p^.right:=t
  918. end
  919. else if p^.right^.left^.treetype=ordconstn then
  920. begin
  921. extraoffset:=p^.right^.left^.value;
  922. t:=p^.right^.right;
  923. putnode(p^.right);
  924. putnode(p^.right^.left);
  925. p^.right:=t
  926. end;
  927. end
  928. else if (p^.right^.treetype=subn) then
  929. begin
  930. if p^.right^.right^.treetype=ordconstn then
  931. begin
  932. extraoffset:=p^.right^.right^.value;
  933. t:=p^.right^.left;
  934. putnode(p^.right);
  935. putnode(p^.right^.right);
  936. p^.right:=t
  937. end
  938. else if p^.right^.left^.treetype=ordconstn then
  939. begin
  940. extraoffset:=p^.right^.left^.value;
  941. t:=p^.right^.right;
  942. putnode(p^.right);
  943. putnode(p^.right^.left);
  944. p^.right:=t
  945. end;
  946. end;
  947. inc(p^.location.reference.offset,
  948. get_mul_size*extraoffset);
  949. end;
  950. { calculate from left to right }
  951. if (p^.location.loc<>LOC_REFERENCE) and
  952. (p^.location.loc<>LOC_MEM) then
  953. Message(cg_e_illegal_expression);
  954. pushed:=maybe_push(p^.right^.registers32,p);
  955. secondpass(p^.right);
  956. if pushed then restore(p);
  957. case p^.right^.location.loc of
  958. LOC_REGISTER:
  959. begin
  960. ind:=p^.right^.location.register;
  961. case p^.right^.resulttype^.size of
  962. 1:
  963. begin
  964. hr:=reg8toreg32(ind);
  965. emit_reg_reg(A_MOVZX,S_BL,ind,hr);
  966. ind:=hr;
  967. end;
  968. 2:
  969. begin
  970. hr:=reg16toreg32(ind);
  971. emit_reg_reg(A_MOVZX,S_WL,ind,hr);
  972. ind:=hr;
  973. end;
  974. end;
  975. end;
  976. LOC_CREGISTER:
  977. begin
  978. ind:=getregister32;
  979. case p^.right^.resulttype^.size of
  980. 1:
  981. emit_reg_reg(A_MOVZX,S_BL,p^.right^.location.register,ind);
  982. 2:
  983. emit_reg_reg(A_MOVZX,S_WL,p^.right^.location.register,ind);
  984. 4:
  985. emit_reg_reg(A_MOV,S_L,p^.right^.location.register,ind);
  986. end;
  987. end;
  988. LOC_FLAGS:
  989. begin
  990. ind:=getregister32;
  991. exprasmlist^.concat(new(pai386,op_reg(flag_2_set[p^.right^.location.resflags],S_B,reg32toreg8(ind))));
  992. emit_reg_reg(A_MOVZX,S_BL,reg32toreg8(ind),ind);
  993. end
  994. else
  995. begin
  996. del_reference(p^.right^.location.reference);
  997. ind:=getregister32;
  998. { Booleans are stored in an 8 bit memory location, so
  999. the use of MOVL is not correct }
  1000. case p^.right^.resulttype^.size of
  1001. 1:
  1002. tai:=new(pai386,op_ref_reg(A_MOVZX,S_BL,newreference(p^.right^.location.reference),ind));
  1003. 2:
  1004. tai:=new(Pai386,op_ref_reg(A_MOVZX,S_WL,newreference(p^.right^.location.reference),ind));
  1005. 4:
  1006. tai:=new(Pai386,op_ref_reg(A_MOV,S_L,newreference(p^.right^.location.reference),ind));
  1007. end;
  1008. exprasmlist^.concat(tai);
  1009. end;
  1010. end;
  1011. { produce possible range check code: }
  1012. if cs_rangechecking in aktswitches then
  1013. begin
  1014. if p^.left^.resulttype^.deftype=arraydef then
  1015. begin
  1016. hp:=new_reference(R_NO,0);
  1017. parraydef(p^.left^.resulttype)^.genrangecheck;
  1018. hp^.symbol:=stringdup('R_'+tostr(parraydef(p^.left^.resulttype)^.rangenr));
  1019. exprasmlist^.concat(new(pai386,op_reg_ref(A_BOUND,S_L,ind,hp)));
  1020. end;
  1021. end;
  1022. if p^.location.reference.index=R_NO then
  1023. begin
  1024. p^.location.reference.index:=ind;
  1025. calc_emit_mul;
  1026. end
  1027. else
  1028. begin
  1029. if p^.location.reference.base=R_NO then
  1030. begin
  1031. case p^.location.reference.scalefactor of
  1032. 2 : exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_L,1,p^.location.reference.index)));
  1033. 4 : exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_L,2,p^.location.reference.index)));
  1034. 8 : exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_L,3,p^.location.reference.index)));
  1035. end;
  1036. calc_emit_mul;
  1037. p^.location.reference.base:=p^.location.reference.index;
  1038. p^.location.reference.index:=ind;
  1039. end
  1040. else
  1041. begin
  1042. exprasmlist^.concat(new(pai386,op_ref_reg(
  1043. A_LEA,S_L,newreference(p^.location.reference),
  1044. p^.location.reference.index)));
  1045. ungetregister32(p^.location.reference.base);
  1046. { the symbol offset is loaded, }
  1047. { so release the symbol name and set symbol }
  1048. { to nil }
  1049. stringdispose(p^.location.reference.symbol);
  1050. p^.location.reference.offset:=0;
  1051. calc_emit_mul;
  1052. p^.location.reference.base:=p^.location.reference.index;
  1053. p^.location.reference.index:=ind;
  1054. end;
  1055. end;
  1056. if p^.memseg then
  1057. p^.location.reference.segment:=R_FS;
  1058. end;
  1059. end;
  1060. { *************** Converting Types **************** }
  1061. { produces if necessary rangecheckcode }
  1062. procedure maybe_rangechecking(p : ptree;p2,p1 : pdef);
  1063. var
  1064. hp : preference;
  1065. hregister : tregister;
  1066. neglabel,poslabel : plabel;
  1067. is_register : boolean;
  1068. begin
  1069. { convert from p2 to p1 }
  1070. { range check from enums is not made yet !!}
  1071. { and its probably not easy }
  1072. if (p1^.deftype<>orddef) or (p2^.deftype<>orddef) then
  1073. exit;
  1074. { range checking is different for u32bit }
  1075. { lets try to generate it allways }
  1076. if (cs_rangechecking in aktswitches) and
  1077. { with $R+ explicit type conversations in TP aren't range checked! }
  1078. (not(p^.explizit) or not(cs_tp_compatible in aktswitches)) and
  1079. ((porddef(p1)^.von>porddef(p2)^.von) or
  1080. (porddef(p1)^.bis<porddef(p2)^.bis) or
  1081. (porddef(p1)^.typ=u32bit) or
  1082. (porddef(p2)^.typ=u32bit)) then
  1083. begin
  1084. porddef(p1)^.genrangecheck;
  1085. is_register:=(p^.left^.location.loc=LOC_REGISTER) or
  1086. (p^.left^.location.loc=LOC_CREGISTER);
  1087. if porddef(p2)^.typ=u8bit then
  1088. begin
  1089. if is_register then
  1090. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BL,p^.left^.location.register,R_EDI)))
  1091. else
  1092. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_BL,newreference(p^.left^.location.reference),R_EDI)));
  1093. hregister:=R_EDI;
  1094. end
  1095. else if porddef(p2)^.typ=s8bit then
  1096. begin
  1097. if is_register then
  1098. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVSX,S_BL,p^.left^.location.register,R_EDI)))
  1099. else
  1100. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_BL,newreference(p^.left^.location.reference),R_EDI)));
  1101. hregister:=R_EDI;
  1102. end
  1103. { rangechecking for u32bit ?? !!!!!!}
  1104. { lets try }
  1105. else if (porddef(p2)^.typ=s32bit) or (porddef(p2)^.typ=u32bit) then
  1106. begin
  1107. if is_register then
  1108. hregister:=p^.location.register
  1109. else
  1110. begin
  1111. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),R_EDI)));
  1112. hregister:=R_EDI;
  1113. end;
  1114. end
  1115. else if porddef(p2)^.typ=u16bit then
  1116. begin
  1117. if is_register then
  1118. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_WL,p^.left^.location.register,R_EDI)))
  1119. else
  1120. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_WL,newreference(p^.left^.location.reference),R_EDI)));
  1121. hregister:=R_EDI;
  1122. end
  1123. else if porddef(p2)^.typ=s16bit then
  1124. begin
  1125. if is_register then
  1126. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVSX,S_WL,p^.left^.location.register,R_EDI)))
  1127. else
  1128. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_WL,newreference(p^.left^.location.reference),R_EDI)));
  1129. hregister:=R_EDI;
  1130. end
  1131. else internalerror(6);
  1132. hp:=new_reference(R_NO,0);
  1133. hp^.symbol:=stringdup('R_'+tostr(porddef(p1)^.rangenr));
  1134. if porddef(p1)^.von>porddef(p1)^.bis then
  1135. begin
  1136. getlabel(neglabel);
  1137. getlabel(poslabel);
  1138. exprasmlist^.concat(new(pai386,op_reg_reg(A_OR,S_L,hregister,hregister)));
  1139. emitl(A_JL,neglabel);
  1140. end;
  1141. exprasmlist^.concat(new(pai386,op_reg_ref(A_BOUND,S_L,hregister,hp)));
  1142. if porddef(p1)^.von>porddef(p1)^.bis then
  1143. begin
  1144. hp:=new_reference(R_NO,0);
  1145. hp^.symbol:=stringdup('R_'+tostr(porddef(p1)^.rangenr+1));
  1146. emitl(A_JMP,poslabel);
  1147. emitl(A_LABEL,neglabel);
  1148. exprasmlist^.concat(new(pai386,op_reg_ref(A_BOUND,S_L,hregister,hp)));
  1149. emitl(A_LABEL,poslabel);
  1150. end;
  1151. end;
  1152. end;
  1153. type
  1154. tsecondconvproc = procedure(p,hp : ptree;convtyp : tconverttype);
  1155. procedure second_nothing(p,hp : ptree;convtyp : tconverttype);
  1156. begin
  1157. end;
  1158. procedure second_only_rangecheck(p,hp : ptree;convtyp : tconverttype);
  1159. begin
  1160. maybe_rangechecking(p,hp^.resulttype,p^.resulttype);
  1161. end;
  1162. procedure second_bigger(p,hp : ptree;convtyp : tconverttype);
  1163. var
  1164. hregister : tregister;
  1165. opsize : topsize;
  1166. op : tasmop;
  1167. is_register : boolean;
  1168. begin
  1169. is_register:=p^.left^.location.loc=LOC_REGISTER;
  1170. if not(is_register) and (p^.left^.location.loc<>LOC_CREGISTER) then
  1171. begin
  1172. del_reference(p^.left^.location.reference);
  1173. { we can do this here as we need no temp inside second_bigger }
  1174. ungetiftemp(p^.left^.location.reference);
  1175. end;
  1176. { this is wrong !!!
  1177. gives me movl (%eax),%eax
  1178. for the length(string !!!
  1179. use only for constant values }
  1180. {Constanst cannot be loaded into registers using MOVZX!}
  1181. if (p^.left^.location.loc<>LOC_MEM) or (not p^.left^.location.reference.isintvalue) then
  1182. case convtyp of
  1183. tc_u8bit_2_s32bit,tc_u8bit_2_u32bit :
  1184. begin
  1185. if is_register then
  1186. hregister:=reg8toreg32(p^.left^.location.register)
  1187. else hregister:=getregister32;
  1188. op:=A_MOVZX;
  1189. opsize:=S_BL;
  1190. end;
  1191. { here what do we do for negative values ? }
  1192. tc_s8bit_2_s32bit,tc_s8bit_2_u32bit :
  1193. begin
  1194. if is_register then
  1195. hregister:=reg8toreg32(p^.left^.location.register)
  1196. else hregister:=getregister32;
  1197. op:=A_MOVSX;
  1198. opsize:=S_BL;
  1199. end;
  1200. tc_u16bit_2_s32bit,tc_u16bit_2_u32bit :
  1201. begin
  1202. if is_register then
  1203. hregister:=reg16toreg32(p^.left^.location.register)
  1204. else hregister:=getregister32;
  1205. op:=A_MOVZX;
  1206. opsize:=S_WL;
  1207. end;
  1208. tc_s16bit_2_s32bit,tc_s16bit_2_u32bit :
  1209. begin
  1210. if is_register then
  1211. hregister:=reg16toreg32(p^.left^.location.register)
  1212. else hregister:=getregister32;
  1213. op:=A_MOVSX;
  1214. opsize:=S_WL;
  1215. end;
  1216. tc_s8bit_2_u16bit,
  1217. tc_u8bit_2_s16bit,
  1218. tc_u8bit_2_u16bit :
  1219. begin
  1220. if is_register then
  1221. hregister:=reg8toreg16(p^.left^.location.register)
  1222. else hregister:=reg32toreg16(getregister32);
  1223. op:=A_MOVZX;
  1224. opsize:=S_BW;
  1225. end;
  1226. tc_s8bit_2_s16bit :
  1227. begin
  1228. if is_register then
  1229. hregister:=reg8toreg16(p^.left^.location.register)
  1230. else hregister:=reg32toreg16(getregister32);
  1231. op:=A_MOVSX;
  1232. opsize:=S_BW;
  1233. end;
  1234. end
  1235. else
  1236. case convtyp of
  1237. tc_u8bit_2_s32bit,
  1238. tc_s8bit_2_s32bit,
  1239. tc_u16bit_2_s32bit,
  1240. tc_s16bit_2_s32bit,
  1241. tc_u8bit_2_u32bit,
  1242. tc_s8bit_2_u32bit,
  1243. tc_u16bit_2_u32bit,
  1244. tc_s16bit_2_u32bit:
  1245. begin
  1246. hregister:=getregister32;
  1247. op:=A_MOV;
  1248. opsize:=S_L;
  1249. end;
  1250. tc_s8bit_2_u16bit,
  1251. tc_s8bit_2_s16bit,
  1252. tc_u8bit_2_s16bit,
  1253. tc_u8bit_2_u16bit:
  1254. begin
  1255. hregister:=reg32toreg16(getregister32);
  1256. op:=A_MOV;
  1257. opsize:=S_W;
  1258. end;
  1259. end;
  1260. if is_register then
  1261. begin
  1262. emit_reg_reg(op,opsize,p^.left^.location.register,hregister);
  1263. end
  1264. else
  1265. begin
  1266. if p^.left^.location.loc=LOC_CREGISTER then
  1267. emit_reg_reg(op,opsize,p^.left^.location.register,hregister)
  1268. else exprasmlist^.concat(new(pai386,op_ref_reg(op,opsize,
  1269. newreference(p^.left^.location.reference),hregister)));
  1270. end;
  1271. p^.location.loc:=LOC_REGISTER;
  1272. p^.location.register:=hregister;
  1273. maybe_rangechecking(p,p^.left^.resulttype,p^.resulttype);
  1274. end;
  1275. procedure second_string_string(p,hp : ptree;convtyp : tconverttype);
  1276. begin
  1277. {$ifdef UseAnsiString}
  1278. if is_ansistring(p^.resulttype) and not is_ansistring(p^.left^.resulttype) then
  1279. begin
  1280. { call shortstring to ansistring conversion }
  1281. { result is in register }
  1282. del_reference(p^.left^.location.reference);
  1283. {!!!!
  1284. copyshortstringtoansistring(p^.location,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  1285. }
  1286. ungetiftemp(p^.left^.location.reference);
  1287. end
  1288. else if not is_ansistring(p^.resulttype) and is_ansistring(p^.left^.resulttype) then
  1289. begin
  1290. { call ansistring to shortstring conversion }
  1291. { result is in mem }
  1292. stringdispose(p^.location.reference.symbol);
  1293. gettempofsizereference(p^.resulttype^.size,p^.location.reference);
  1294. if p^.left^.location.loc in [LOC_MEM,LOC_REFERENCE] then
  1295. del_reference(p^.left^.location.reference);
  1296. copyansistringtoshortstring(p^.location.reference,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  1297. ungetiftemp(p^.left^.location.reference);
  1298. end
  1299. else
  1300. {$endif UseAnsiString}
  1301. begin
  1302. stringdispose(p^.location.reference.symbol);
  1303. gettempofsizereference(p^.resulttype^.size,p^.location.reference);
  1304. del_reference(p^.left^.location.reference);
  1305. copystring(p^.location.reference,p^.left^.location.reference,pstringdef(p^.resulttype)^.len);
  1306. ungetiftemp(p^.left^.location.reference);
  1307. end;
  1308. end;
  1309. procedure second_cstring_charpointer(p,hp : ptree;convtyp : tconverttype);
  1310. begin
  1311. p^.location.loc:=LOC_REGISTER;
  1312. p^.location.register:=getregister32;
  1313. inc(p^.left^.location.reference.offset);
  1314. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,newreference(p^.left^.location.reference),
  1315. p^.location.register)));
  1316. end;
  1317. procedure second_string_chararray(p,hp : ptree;convtyp : tconverttype);
  1318. begin
  1319. inc(p^.location.reference.offset);
  1320. end;
  1321. procedure second_array_to_pointer(p,hp : ptree;convtyp : tconverttype);
  1322. begin
  1323. del_reference(p^.left^.location.reference);
  1324. p^.location.loc:=LOC_REGISTER;
  1325. p^.location.register:=getregister32;
  1326. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,newreference(p^.left^.location.reference),
  1327. p^.location.register)));
  1328. end;
  1329. procedure second_pointer_to_array(p,hp : ptree;convtyp : tconverttype);
  1330. begin
  1331. p^.location.loc:=LOC_REFERENCE;
  1332. clear_reference(p^.location.reference);
  1333. if p^.left^.location.loc=LOC_REGISTER then
  1334. p^.location.reference.base:=p^.left^.location.register
  1335. else
  1336. begin
  1337. if p^.left^.location.loc=LOC_CREGISTER then
  1338. begin
  1339. p^.location.reference.base:=getregister32;
  1340. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,
  1341. p^.location.reference.base);
  1342. end
  1343. else
  1344. begin
  1345. del_reference(p^.left^.location.reference);
  1346. p^.location.reference.base:=getregister32;
  1347. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
  1348. p^.location.reference.base)));
  1349. end;
  1350. end;
  1351. end;
  1352. { generates the code for the type conversion from an array of char }
  1353. { to a string }
  1354. procedure second_chararray_to_string(p,hp : ptree;convtyp : tconverttype);
  1355. var
  1356. l : longint;
  1357. begin
  1358. { this is a type conversion which copies the data, so we can't }
  1359. { return a reference }
  1360. p^.location.loc:=LOC_MEM;
  1361. { first get the memory for the string }
  1362. stringdispose(p^.location.reference.symbol);
  1363. gettempofsizereference(256,p^.location.reference);
  1364. { calc the length of the array }
  1365. l:=parraydef(p^.left^.resulttype)^.highrange-
  1366. parraydef(p^.left^.resulttype)^.lowrange+1;
  1367. if l>255 then
  1368. Message(sym_e_type_mismatch);
  1369. { write the length }
  1370. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,S_B,l,
  1371. newreference(p^.location.reference))));
  1372. { copy to first char of string }
  1373. inc(p^.location.reference.offset);
  1374. { generates the copy code }
  1375. { and we need the source never }
  1376. concatcopy(p^.left^.location.reference,p^.location.reference,l,true);
  1377. { correct the string location }
  1378. dec(p^.location.reference.offset);
  1379. end;
  1380. procedure second_char_to_string(p,hp : ptree;convtyp : tconverttype);
  1381. begin
  1382. stringdispose(p^.location.reference.symbol);
  1383. gettempofsizereference(256,p^.location.reference);
  1384. { call loadstring with correct left and right }
  1385. p^.right:=p^.left;
  1386. p^.left:=p;
  1387. loadstring(p);
  1388. p^.left:=nil; { reset left tree, which is empty }
  1389. end;
  1390. procedure second_int_real(p,hp : ptree;convtyp : tconverttype);
  1391. var
  1392. r : preference;
  1393. begin
  1394. if (p^.left^.location.loc=LOC_REGISTER) or
  1395. (p^.left^.location.loc=LOC_CREGISTER) then
  1396. begin
  1397. case porddef(p^.left^.resulttype)^.typ of
  1398. s8bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVSX,S_BL,p^.left^.location.register,R_EDI)));
  1399. u8bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BL,p^.left^.location.register,R_EDI)));
  1400. s16bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVSX,S_WL,p^.left^.location.register,R_EDI)));
  1401. u16bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_WL,p^.left^.location.register,R_EDI)));
  1402. u32bit,s32bit : exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,p^.left^.location.register,R_EDI)));
  1403. {!!!! u32bit }
  1404. end;
  1405. ungetregister(p^.left^.location.register);
  1406. end
  1407. else
  1408. begin
  1409. r:=newreference(p^.left^.location.reference);
  1410. case porddef(p^.left^.resulttype)^.typ of
  1411. s8bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_BL,r,R_EDI)));
  1412. u8bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_BL,r,R_EDI)));
  1413. s16bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_WL,r,R_EDI)));
  1414. u16bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_WL,r,R_EDI)));
  1415. u32bit,s32bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_EDI)));
  1416. {!!!! u32bit }
  1417. end;
  1418. del_reference(p^.left^.location.reference);
  1419. ungetiftemp(p^.left^.location.reference);
  1420. end;
  1421. if porddef(p^.left^.resulttype)^.typ=u32bit then
  1422. push_int(0);
  1423. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EDI)));
  1424. r:=new_reference(R_ESP,0);
  1425. { for u32bit a solution is to push $0 and to load a
  1426. comp }
  1427. if porddef(p^.left^.resulttype)^.typ=u32bit then
  1428. exprasmlist^.concat(new(pai386,op_ref(A_FILD,S_IQ,r)))
  1429. else
  1430. exprasmlist^.concat(new(pai386,op_ref(A_FILD,S_IL,r)));
  1431. { better than an add on all processors }
  1432. if porddef(p^.left^.resulttype)^.typ=u32bit then
  1433. exprasmlist^.concat(new(pai386,op_const_reg(A_ADD,S_L,8,R_ESP)))
  1434. else
  1435. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EDI)));
  1436. p^.location.loc:=LOC_FPU;
  1437. end;
  1438. procedure second_real_fix(p,hp : ptree;convtyp : tconverttype);
  1439. var
  1440. {hs : string;}
  1441. rreg : tregister;
  1442. ref : treference;
  1443. begin
  1444. { real must be on fpu stack }
  1445. if (p^.left^.location.loc<>LOC_FPU) then
  1446. exprasmlist^.concat(new(pai386,op_ref(A_FLD,S_FL,newreference(p^.left^.location.reference))));
  1447. push_int($1f3f);
  1448. push_int(65536);
  1449. reset_reference(ref);
  1450. ref.base:=R_ESP;
  1451. exprasmlist^.concat(new(pai386,op_ref(A_FIMUL,S_IL,newreference(ref))));
  1452. ref.offset:=4;
  1453. exprasmlist^.concat(new(pai386,op_ref(A_FSTCW,S_L,newreference(ref))));
  1454. ref.offset:=6;
  1455. exprasmlist^.concat(new(pai386,op_ref(A_FLDCW,S_L,newreference(ref))));
  1456. ref.offset:=0;
  1457. exprasmlist^.concat(new(pai386,op_ref(A_FISTP,S_IL,newreference(ref))));
  1458. ref.offset:=4;
  1459. exprasmlist^.concat(new(pai386,op_ref(A_FLDCW,S_L,newreference(ref))));
  1460. rreg:=getregister32;
  1461. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,rreg)));
  1462. { better than an add on all processors }
  1463. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EDI)));
  1464. p^.location.loc:=LOC_REGISTER;
  1465. p^.location.register:=rreg;
  1466. end;
  1467. procedure second_float_float(p,hp : ptree;convtyp : tconverttype);
  1468. begin
  1469. case p^.left^.location.loc of
  1470. LOC_FPU : ;
  1471. LOC_MEM,
  1472. LOC_REFERENCE:
  1473. begin
  1474. floatload(pfloatdef(p^.left^.resulttype)^.typ,
  1475. p^.left^.location.reference);
  1476. { we have to free the reference }
  1477. del_reference(p^.left^.location.reference);
  1478. end;
  1479. end;
  1480. p^.location.loc:=LOC_FPU;
  1481. end;
  1482. procedure second_fix_real(p,hp : ptree;convtyp : tconverttype);
  1483. var popeax,popebx,popecx,popedx : boolean;
  1484. startreg : tregister;
  1485. hl : plabel;
  1486. r : treference;
  1487. begin
  1488. if (p^.left^.location.loc=LOC_REGISTER) or
  1489. (p^.left^.location.loc=LOC_CREGISTER) then
  1490. begin
  1491. startreg:=p^.left^.location.register;
  1492. ungetregister(startreg);
  1493. popeax:=(startreg<>R_EAX) and not (R_EAX in unused);
  1494. if popeax then
  1495. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EAX)));
  1496. { mov eax,eax is removed by emit_reg_reg }
  1497. emit_reg_reg(A_MOV,S_L,startreg,R_EAX);
  1498. end
  1499. else
  1500. begin
  1501. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(
  1502. p^.left^.location.reference),R_EAX)));
  1503. del_reference(p^.left^.location.reference);
  1504. startreg:=R_NO;
  1505. end;
  1506. popebx:=(startreg<>R_EBX) and not (R_EBX in unused);
  1507. if popebx then
  1508. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EBX)));
  1509. popecx:=(startreg<>R_ECX) and not (R_ECX in unused);
  1510. if popecx then
  1511. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ECX)));
  1512. popedx:=(startreg<>R_EDX) and not (R_EDX in unused);
  1513. if popedx then
  1514. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EDX)));
  1515. exprasmlist^.concat(new(pai386,op_none(A_CDQ,S_NO)));
  1516. emit_reg_reg(A_XOR,S_L,R_EDX,R_EAX);
  1517. emit_reg_reg(A_MOV,S_L,R_EAX,R_EBX);
  1518. emit_reg_reg(A_SUB,S_L,R_EDX,R_EAX);
  1519. getlabel(hl);
  1520. emitl(A_JZ,hl);
  1521. exprasmlist^.concat(new(pai386,op_const_reg(A_RCL,S_L,1,R_EBX)));
  1522. emit_reg_reg(A_BSR,S_L,R_EAX,R_EDX);
  1523. exprasmlist^.concat(new(pai386,op_const_reg(A_MOV,S_B,32,R_CL)));
  1524. emit_reg_reg(A_SUB,S_B,R_DL,R_CL);
  1525. emit_reg_reg(A_SHL,S_L,R_CL,R_EAX);
  1526. exprasmlist^.concat(new(pai386,op_const_reg(A_ADD,S_W,1007,R_DX)));
  1527. exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_W,5,R_DX)));
  1528. exprasmlist^.concat(new(pai386,op_const_reg_reg(A_SHLD,S_W,11,R_DX,R_BX)));
  1529. exprasmlist^.concat(new(pai386,op_const_reg_reg(A_SHLD,S_W,20,R_EAX,R_EBX)));
  1530. exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_L,20,R_EAX)));
  1531. emitl(A_LABEL,hl);
  1532. { better than an add on all processors }
  1533. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EBX)));
  1534. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_EAX)));
  1535. reset_reference(r);
  1536. r.base:=R_ESP;
  1537. exprasmlist^.concat(new(pai386,op_ref(A_FLD,S_FL,newreference(r))));
  1538. exprasmlist^.concat(new(pai386,op_const_reg(A_ADD,S_L,8,R_ESP)));
  1539. if popedx then
  1540. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EDX)));
  1541. if popecx then
  1542. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_ECX)));
  1543. if popebx then
  1544. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EBX)));
  1545. if popeax then
  1546. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EAX)));
  1547. p^.location.loc:=LOC_FPU;
  1548. end;
  1549. procedure second_int_fix(p,hp : ptree;convtyp : tconverttype);
  1550. var
  1551. {hs : string;}
  1552. hregister : tregister;
  1553. begin
  1554. if (p^.left^.location.loc=LOC_REGISTER) then
  1555. hregister:=p^.left^.location.register
  1556. else if (p^.left^.location.loc=LOC_CREGISTER) then
  1557. hregister:=getregister32
  1558. else
  1559. begin
  1560. del_reference(p^.left^.location.reference);
  1561. hregister:=getregister32;
  1562. case porddef(p^.left^.resulttype)^.typ of
  1563. s8bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_BL,newreference(p^.left^.location.reference),
  1564. hregister)));
  1565. u8bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_BL,newreference(p^.left^.location.reference),
  1566. hregister)));
  1567. s16bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_WL,newreference(p^.left^.location.reference),
  1568. hregister)));
  1569. u16bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_WL,newreference(p^.left^.location.reference),
  1570. hregister)));
  1571. u32bit,s32bit : exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
  1572. hregister)));
  1573. {!!!! u32bit }
  1574. end;
  1575. end;
  1576. exprasmlist^.concat(new(pai386,op_const_reg(A_SHL,S_L,16,hregister)));
  1577. p^.location.loc:=LOC_REGISTER;
  1578. p^.location.register:=hregister;
  1579. end;
  1580. procedure second_smaller(p,hp : ptree;convtyp : tconverttype);
  1581. var
  1582. hregister,destregister : tregister;
  1583. ref : boolean;
  1584. hpp : preference;
  1585. begin
  1586. ref:=false;
  1587. { problems with enums !! }
  1588. if (cs_rangechecking in aktswitches) and
  1589. { with $R+ explicit type conversations in TP aren't range checked! }
  1590. (not(p^.explizit) or not(cs_tp_compatible in aktswitches)) and
  1591. (p^.resulttype^.deftype=orddef) and
  1592. (hp^.resulttype^.deftype=orddef) then
  1593. begin
  1594. if porddef(hp^.resulttype)^.typ=u32bit then
  1595. begin
  1596. { when doing range checking for u32bit, we have some trouble }
  1597. { because BOUND assumes signed values }
  1598. { first, we check if the values is greater than 2^31: }
  1599. { the u32bit rangenr contains the appropriate rangenr }
  1600. porddef(hp^.resulttype)^.genrangecheck;
  1601. hregister:=R_EDI;
  1602. if (p^.location.loc=LOC_REGISTER) or
  1603. (p^.location.loc=LOC_CREGISTER) then
  1604. hregister:=p^.location.register
  1605. else
  1606. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  1607. newreference(p^.location.reference),R_EDI)));
  1608. hpp:=new_reference(R_NO,0);
  1609. hpp^.symbol:=stringdup('R_'+tostr(porddef(hp^.resulttype)^.rangenr));
  1610. exprasmlist^.concat(new(pai386,op_reg_ref(A_BOUND,S_L,hregister,hpp)));
  1611. { then we do a normal range check }
  1612. porddef(p^.resulttype)^.genrangecheck;
  1613. hpp:=new_reference(R_NO,0);
  1614. hpp^.symbol:=stringdup('R_'+tostr(porddef(p^.resulttype)^.rangenr));
  1615. exprasmlist^.concat(new(pai386,op_reg_ref(A_BOUND,S_L,hregister,hpp)));
  1616. end
  1617. else
  1618. if ((porddef(p^.resulttype)^.von>porddef(hp^.resulttype)^.von) or
  1619. (porddef(p^.resulttype)^.bis<porddef(hp^.resulttype)^.bis)) then
  1620. begin
  1621. porddef(p^.resulttype)^.genrangecheck;
  1622. { per default the var is copied to EDI }
  1623. hregister:=R_EDI;
  1624. if porddef(hp^.resulttype)^.typ=s32bit then
  1625. begin
  1626. if (p^.location.loc=LOC_REGISTER) or
  1627. (p^.location.loc=LOC_CREGISTER) then
  1628. hregister:=p^.location.register
  1629. else
  1630. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.location.reference),R_EDI)));
  1631. end
  1632. else if porddef(hp^.resulttype)^.typ=u16bit then
  1633. begin
  1634. if (p^.location.loc=LOC_REGISTER) or
  1635. (p^.location.loc=LOC_CREGISTER) then
  1636. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_WL,p^.location.register,R_EDI)))
  1637. else
  1638. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_WL,newreference(p^.location.reference),R_EDI)));
  1639. end
  1640. else if porddef(hp^.resulttype)^.typ=s16bit then
  1641. begin
  1642. if (p^.location.loc=LOC_REGISTER) or
  1643. (p^.location.loc=LOC_CREGISTER) then
  1644. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVSX,S_WL,p^.location.register,R_EDI)))
  1645. else
  1646. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVSX,S_WL,newreference(p^.location.reference),R_EDI)));
  1647. end
  1648. else internalerror(6);
  1649. hpp:=new_reference(R_NO,0);
  1650. hpp^.symbol:=stringdup('R_'+tostr(porddef(p^.resulttype)^.rangenr));
  1651. exprasmlist^.concat(new(pai386,op_reg_ref(A_BOUND,S_L,hregister,hpp)));
  1652. (*
  1653. if (p^.location.loc=LOC_REGISTER) or
  1654. (p^.location.loc=LOC_CREGISTER) then
  1655. begin
  1656. destregister:=p^.left^.location.register;
  1657. case convtyp of
  1658. tc_s32bit_2_s8bit,
  1659. tc_s32bit_2_u8bit:
  1660. destregister:=reg32toreg8(destregister);
  1661. tc_s32bit_2_s16bit,
  1662. tc_s32bit_2_u16bit:
  1663. destregister:=reg32toreg16(destregister);
  1664. { this was false because destregister is allways a 32bitreg }
  1665. tc_s16bit_2_s8bit,
  1666. tc_s16bit_2_u8bit,
  1667. tc_u16bit_2_s8bit,
  1668. tc_u16bit_2_u8bit:
  1669. destregister:=reg32toreg8(destregister);
  1670. end;
  1671. p^.location.register:=destregister;
  1672. exit;
  1673. *)
  1674. end;
  1675. end;
  1676. { p^.location.loc is already set! }
  1677. if (p^.location.loc=LOC_REGISTER) or
  1678. (p^.location.loc=LOC_CREGISTER) then
  1679. begin
  1680. destregister:=p^.left^.location.register;
  1681. case convtyp of
  1682. tc_s32bit_2_s8bit,
  1683. tc_s32bit_2_u8bit:
  1684. destregister:=reg32toreg8(destregister);
  1685. tc_s32bit_2_s16bit,
  1686. tc_s32bit_2_u16bit:
  1687. destregister:=reg32toreg16(destregister);
  1688. tc_s16bit_2_s8bit,
  1689. tc_s16bit_2_u8bit,
  1690. tc_u16bit_2_s8bit,
  1691. tc_u16bit_2_u8bit:
  1692. destregister:=reg16toreg8(destregister);
  1693. end;
  1694. p^.location.register:=destregister;
  1695. end;
  1696. end;
  1697. procedure second_proc_to_procvar(p,hp : ptree;convtyp : tconverttype);
  1698. begin
  1699. secondpass(hp);
  1700. p^.location.loc:=LOC_REGISTER;
  1701. del_reference(hp^.location.reference);
  1702. p^.location.register:=getregister32;
  1703. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  1704. newreference(hp^.location.reference),p^.location.register)));
  1705. end;
  1706. procedure second_bool_to_byte(p,hp : ptree;convtyp : tconverttype);
  1707. var
  1708. oldtruelabel,oldfalselabel,hlabel : plabel;
  1709. begin
  1710. oldtruelabel:=truelabel;
  1711. oldfalselabel:=falselabel;
  1712. getlabel(truelabel);
  1713. getlabel(falselabel);
  1714. secondpass(hp);
  1715. p^.location.loc:=LOC_REGISTER;
  1716. del_reference(hp^.location.reference);
  1717. p^.location.register:=reg32toreg8(getregister32);
  1718. case hp^.location.loc of
  1719. LOC_MEM,LOC_REFERENCE :
  1720. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_B,
  1721. newreference(hp^.location.reference),p^.location.register)));
  1722. LOC_REGISTER,LOC_CREGISTER :
  1723. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_B,
  1724. hp^.location.register,p^.location.register)));
  1725. LOC_FLAGS:
  1726. begin
  1727. exprasmlist^.concat(new(pai386,op_reg(flag_2_set[hp^.location.resflags],S_B,
  1728. p^.location.register)))
  1729. end;
  1730. LOC_JUMP:
  1731. begin
  1732. getlabel(hlabel);
  1733. emitl(A_LABEL,truelabel);
  1734. exprasmlist^.concat(new(pai386,op_const_reg(A_MOV,S_B,
  1735. 1,p^.location.register)));
  1736. emitl(A_JMP,hlabel);
  1737. emitl(A_LABEL,falselabel);
  1738. exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_B,
  1739. p^.location.register,
  1740. p^.location.register)));
  1741. emitl(A_LABEL,hlabel);
  1742. end;
  1743. else
  1744. internalerror(10060);
  1745. end;
  1746. truelabel:=oldtruelabel;
  1747. falselabel:=oldfalselabel;
  1748. end;
  1749. procedure secondtypeconv(var p : ptree);
  1750. const
  1751. secondconvert : array[tc_u8bit_2_s32bit..tc_cchar_charpointer] of
  1752. tsecondconvproc = (second_bigger,second_only_rangecheck,
  1753. second_bigger,second_bigger,second_bigger,
  1754. second_smaller,second_smaller,
  1755. second_smaller,second_string_string,
  1756. second_cstring_charpointer,second_string_chararray,
  1757. second_array_to_pointer,second_pointer_to_array,
  1758. second_char_to_string,second_bigger,
  1759. second_bigger,second_bigger,
  1760. second_smaller,second_smaller,
  1761. second_smaller,second_smaller,
  1762. second_bigger,second_smaller,
  1763. second_only_rangecheck,second_bigger,
  1764. second_bigger,second_bigger,
  1765. second_bigger,second_only_rangecheck,
  1766. second_smaller,second_smaller,
  1767. second_smaller,second_smaller,
  1768. second_int_real,second_real_fix,
  1769. second_fix_real,second_int_fix,second_float_float,
  1770. second_chararray_to_string,second_bool_to_byte,
  1771. second_proc_to_procvar,
  1772. { is constant char to pchar, is done by firstpass }
  1773. second_nothing);
  1774. begin
  1775. { this isn't good coding, I think tc_bool_2_u8bit, shouldn't be }
  1776. { type conversion (FK) }
  1777. { this is necessary, because second_bool_byte, have to change }
  1778. { true- and false label before calling secondpass }
  1779. if p^.convtyp<>tc_bool_2_u8bit then
  1780. begin
  1781. secondpass(p^.left);
  1782. set_location(p^.location,p^.left^.location);
  1783. end;
  1784. if (p^.convtyp<>tc_equal) and (p^.convtyp<>tc_not_possible) then
  1785. {the second argument only is for maybe_range_checking !}
  1786. secondconvert[p^.convtyp](p,p^.left,p^.convtyp)
  1787. end;
  1788. procedure secondassignment(var p : ptree);
  1789. var
  1790. opsize : topsize;
  1791. otlabel,hlabel,oflabel : plabel;
  1792. hregister : tregister;
  1793. loc : tloc;
  1794. begin
  1795. otlabel:=truelabel;
  1796. oflabel:=falselabel;
  1797. getlabel(truelabel);
  1798. getlabel(falselabel);
  1799. { calculate left sides }
  1800. if not(p^.concat_string) then
  1801. secondpass(p^.left);
  1802. if codegenerror then
  1803. exit;
  1804. case p^.left^.location.loc of
  1805. LOC_REFERENCE : begin
  1806. { in case left operator uses to register }
  1807. { but to few are free then LEA }
  1808. if (p^.left^.location.reference.base<>R_NO) and
  1809. (p^.left^.location.reference.index<>R_NO) and
  1810. (usablereg32<p^.right^.registers32) then
  1811. begin
  1812. del_reference(p^.left^.location.reference);
  1813. hregister:=getregister32;
  1814. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,newreference(
  1815. p^.left^.location.reference),
  1816. hregister)));
  1817. clear_reference(p^.left^.location.reference);
  1818. p^.left^.location.reference.base:=hregister;
  1819. p^.left^.location.reference.index:=R_NO;
  1820. end;
  1821. loc:=LOC_REFERENCE;
  1822. end;
  1823. LOC_CREGISTER:
  1824. loc:=LOC_CREGISTER;
  1825. LOC_MMXREGISTER:
  1826. loc:=LOC_MMXREGISTER;
  1827. LOC_CMMXREGISTER:
  1828. loc:=LOC_CMMXREGISTER;
  1829. else
  1830. begin
  1831. Message(cg_e_illegal_expression);
  1832. exit;
  1833. end;
  1834. end;
  1835. { lets try to optimize this (PM) }
  1836. { define a dest_loc that is the location }
  1837. { and a ptree to verify that it is the right }
  1838. { place to insert it }
  1839. {$ifdef test_dest_loc}
  1840. if (aktexprlevel<4) then
  1841. begin
  1842. dest_loc_known:=true;
  1843. dest_loc:=p^.left^.location;
  1844. dest_loc_tree:=p^.right;
  1845. end;
  1846. {$endif test_dest_loc}
  1847. if (p^.right^.treetype=realconstn) then
  1848. begin
  1849. if p^.left^.resulttype^.deftype=floatdef then
  1850. begin
  1851. case pfloatdef(p^.left^.resulttype)^.typ of
  1852. s32real : p^.right^.realtyp:=ait_real_32bit;
  1853. s64real : p^.right^.realtyp:=ait_real_64bit;
  1854. s80real : p^.right^.realtyp:=ait_real_extended;
  1855. { what about f32bit and s64bit }
  1856. end;
  1857. end;
  1858. end;
  1859. secondpass(p^.right);
  1860. if codegenerror then
  1861. exit;
  1862. {$ifdef test_dest_loc}
  1863. dest_loc_known:=false;
  1864. if in_dest_loc then
  1865. begin
  1866. truelabel:=otlabel;
  1867. falselabel:=oflabel;
  1868. in_dest_loc:=false;
  1869. exit;
  1870. end;
  1871. {$endif test_dest_loc}
  1872. if p^.left^.resulttype^.deftype=stringdef then
  1873. begin
  1874. {$ifdef UseAnsiString}
  1875. if is_ansistring(p^.left^.resulttype) then
  1876. begin
  1877. { the source and destinations are released
  1878. in loadansistring, because an ansi string can
  1879. also be in a register
  1880. }
  1881. loadansistring(p);
  1882. end
  1883. else
  1884. {$endif UseAnsiString}
  1885. if not (p^.concat_string) then
  1886. begin
  1887. { we do not need destination anymore }
  1888. del_reference(p^.left^.location.reference);
  1889. del_reference(p^.right^.location.reference);
  1890. loadstring(p);
  1891. ungetiftemp(p^.right^.location.reference);
  1892. end
  1893. else
  1894. begin
  1895. { its the only thing we have to do }
  1896. del_reference(p^.right^.location.reference);
  1897. end
  1898. end
  1899. else case p^.right^.location.loc of
  1900. LOC_REFERENCE,
  1901. LOC_MEM : begin
  1902. { handle ordinal constants trimmed }
  1903. if (p^.right^.treetype in [ordconstn,fixconstn]) or
  1904. (loc=LOC_CREGISTER) then
  1905. begin
  1906. case p^.left^.resulttype^.size of
  1907. 1 : opsize:=S_B;
  1908. 2 : opsize:=S_W;
  1909. 4 : opsize:=S_L;
  1910. end;
  1911. if loc=LOC_CREGISTER then
  1912. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,opsize,
  1913. newreference(p^.right^.location.reference),
  1914. p^.left^.location.register)))
  1915. else
  1916. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,opsize,
  1917. p^.right^.location.reference.offset,
  1918. newreference(p^.left^.location.reference))));
  1919. {exprasmlist^.concat(new(pai386,op_const_loc(A_MOV,opsize,
  1920. p^.right^.location.reference.offset,
  1921. p^.left^.location)));}
  1922. end
  1923. else
  1924. begin
  1925. concatcopy(p^.right^.location.reference,
  1926. p^.left^.location.reference,p^.left^.resulttype^.size,false);
  1927. ungetiftemp(p^.right^.location.reference);
  1928. end;
  1929. end;
  1930. {$ifdef SUPPORT_MMX}
  1931. LOC_CMMXREGISTER,
  1932. LOC_MMXREGISTER:
  1933. begin
  1934. if loc=LOC_CMMXREGISTER then
  1935. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVQ,S_NO,
  1936. p^.right^.location.register,p^.left^.location.register)))
  1937. else
  1938. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOVQ,S_NO,
  1939. p^.right^.location.register,newreference(p^.left^.location.reference))));
  1940. end;
  1941. {$endif SUPPORT_MMX}
  1942. LOC_REGISTER,
  1943. LOC_CREGISTER : begin
  1944. case p^.right^.resulttype^.size of
  1945. 1 : opsize:=S_B;
  1946. 2 : opsize:=S_W;
  1947. 4 : opsize:=S_L;
  1948. end;
  1949. { simplified with op_reg_loc }
  1950. if loc=LOC_CREGISTER then
  1951. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,opsize,
  1952. p^.right^.location.register,
  1953. p^.left^.location.register)))
  1954. else
  1955. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,opsize,
  1956. p^.right^.location.register,
  1957. newreference(p^.left^.location.reference))));
  1958. {exprasmlist^.concat(new(pai386,op_reg_loc(A_MOV,opsize,
  1959. p^.right^.location.register,
  1960. p^.left^.location))); }
  1961. end;
  1962. LOC_FPU : begin
  1963. if loc<>LOC_REFERENCE then
  1964. internalerror(10010)
  1965. else
  1966. floatstore(pfloatdef(p^.left^.resulttype)^.typ,
  1967. p^.left^.location.reference);
  1968. end;
  1969. LOC_JUMP : begin
  1970. getlabel(hlabel);
  1971. emitl(A_LABEL,truelabel);
  1972. if loc=LOC_CREGISTER then
  1973. exprasmlist^.concat(new(pai386,op_const_reg(A_MOV,S_B,
  1974. 1,p^.left^.location.register)))
  1975. else
  1976. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,S_B,
  1977. 1,newreference(p^.left^.location.reference))));
  1978. {exprasmlist^.concat(new(pai386,op_const_loc(A_MOV,S_B,
  1979. 1,p^.left^.location)));}
  1980. emitl(A_JMP,hlabel);
  1981. emitl(A_LABEL,falselabel);
  1982. if loc=LOC_CREGISTER then
  1983. exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_B,
  1984. p^.left^.location.register,
  1985. p^.left^.location.register)))
  1986. else
  1987. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,S_B,
  1988. 0,newreference(p^.left^.location.reference))));
  1989. emitl(A_LABEL,hlabel);
  1990. end;
  1991. LOC_FLAGS : begin
  1992. if loc=LOC_CREGISTER then
  1993. exprasmlist^.concat(new(pai386,op_reg(flag_2_set[p^.right^.location.resflags],S_B,
  1994. p^.left^.location.register)))
  1995. else
  1996. exprasmlist^.concat(new(pai386,op_ref(flag_2_set[p^.right^.location.resflags],S_B,
  1997. newreference(p^.left^.location.reference))));
  1998. end;
  1999. end;
  2000. truelabel:=otlabel;
  2001. falselabel:=oflabel;
  2002. end;
  2003. { save the size of pushed parameter }
  2004. var
  2005. pushedparasize : longint;
  2006. procedure secondcallparan(var p : ptree;defcoll : pdefcoll;
  2007. push_from_left_to_right : boolean
  2008. ;inlined : boolean;
  2009. para_offset : longint
  2010. );
  2011. procedure maybe_push_open_array_high;
  2012. var
  2013. r : preference;
  2014. begin
  2015. { open array ? }
  2016. { defcoll^.data can be nil for read/write }
  2017. if assigned(defcoll^.data) and
  2018. is_open_array(defcoll^.data) then
  2019. begin
  2020. inc(pushedparasize,4);
  2021. { push high }
  2022. if is_open_array(p^.left^.resulttype) then
  2023. begin
  2024. r:=new_reference(highframepointer,highoffset+4);
  2025. if inlined then
  2026. begin
  2027. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_EDI)));
  2028. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2029. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,R_EDI,r)));
  2030. end
  2031. else
  2032. exprasmlist^.concat(new(pai386,op_ref(A_PUSH,S_L,r)));
  2033. end
  2034. else
  2035. if inlined then
  2036. begin
  2037. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2038. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,S_L,
  2039. parraydef(p^.left^.resulttype)^.highrange-
  2040. parraydef(p^.left^.resulttype)^.lowrange,r)));
  2041. end
  2042. else
  2043. push_int(parraydef(p^.left^.resulttype)^.highrange-
  2044. parraydef(p^.left^.resulttype)^.lowrange);
  2045. end;
  2046. end;
  2047. var
  2048. size : longint;
  2049. stackref : treference;
  2050. otlabel,hlabel,oflabel : plabel;
  2051. { temporary variables: }
  2052. tempdeftype : tdeftype;
  2053. tempreference : treference;
  2054. r : preference;
  2055. s : topsize;
  2056. op : tasmop;
  2057. begin
  2058. { push from left to right if specified }
  2059. if push_from_left_to_right and assigned(p^.right) then
  2060. secondcallparan(p^.right,defcoll^.next,push_from_left_to_right
  2061. ,inlined,para_offset
  2062. );
  2063. otlabel:=truelabel;
  2064. oflabel:=falselabel;
  2065. getlabel(truelabel);
  2066. getlabel(falselabel);
  2067. secondpass(p^.left);
  2068. { in codegen.handleread.. defcoll^.data is set to nil }
  2069. if assigned(defcoll^.data) and
  2070. (defcoll^.data^.deftype=formaldef) then
  2071. begin
  2072. { allow @var }
  2073. inc(pushedparasize,4);
  2074. if p^.left^.treetype=addrn then
  2075. begin
  2076. { always a register }
  2077. if inlined then
  2078. begin
  2079. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2080. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2081. p^.left^.location.register,r)));
  2082. end
  2083. else
  2084. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,p^.left^.location.register)));
  2085. ungetregister32(p^.left^.location.register);
  2086. end
  2087. else
  2088. begin
  2089. if (p^.left^.location.loc<>LOC_REFERENCE) and
  2090. (p^.left^.location.loc<>LOC_MEM) then
  2091. Message(sym_e_type_mismatch)
  2092. else
  2093. begin
  2094. if inlined then
  2095. begin
  2096. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2097. newreference(p^.left^.location.reference),R_EDI)));
  2098. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2099. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2100. R_EDI,r)));
  2101. end
  2102. else
  2103. emitpushreferenceaddr(p^.left^.location.reference);
  2104. del_reference(p^.left^.location.reference);
  2105. end;
  2106. end;
  2107. end
  2108. { handle call by reference parameter }
  2109. else if (defcoll^.paratyp=vs_var) then
  2110. begin
  2111. if (p^.left^.location.loc<>LOC_REFERENCE) then
  2112. Message(cg_e_var_must_be_reference);
  2113. maybe_push_open_array_high;
  2114. inc(pushedparasize,4);
  2115. if inlined then
  2116. begin
  2117. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2118. newreference(p^.left^.location.reference),R_EDI)));
  2119. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2120. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2121. R_EDI,r)));
  2122. end
  2123. else
  2124. emitpushreferenceaddr(p^.left^.location.reference);
  2125. del_reference(p^.left^.location.reference);
  2126. end
  2127. else
  2128. begin
  2129. tempdeftype:=p^.resulttype^.deftype;
  2130. if tempdeftype=filedef then
  2131. Message(cg_e_file_must_call_by_reference);
  2132. if (defcoll^.paratyp=vs_const) and
  2133. dont_copy_const_param(p^.resulttype) then
  2134. begin
  2135. maybe_push_open_array_high;
  2136. inc(pushedparasize,4);
  2137. if inlined then
  2138. begin
  2139. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2140. newreference(p^.left^.location.reference),R_EDI)));
  2141. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2142. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2143. R_EDI,r)));
  2144. end
  2145. else
  2146. emitpushreferenceaddr(p^.left^.location.reference);
  2147. del_reference(p^.left^.location.reference);
  2148. end
  2149. else
  2150. case p^.left^.location.loc of
  2151. LOC_REGISTER,
  2152. LOC_CREGISTER:
  2153. begin
  2154. case p^.left^.location.register of
  2155. R_EAX,R_EBX,R_ECX,R_EDX,R_ESI,
  2156. R_EDI,R_ESP,R_EBP :
  2157. begin
  2158. inc(pushedparasize,4);
  2159. if inlined then
  2160. begin
  2161. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2162. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2163. p^.left^.location.register,r)));
  2164. end
  2165. else
  2166. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,p^.left^.location.register)));
  2167. ungetregister32(p^.left^.location.register);
  2168. end;
  2169. R_AX,R_BX,R_CX,R_DX,R_SI,R_DI:
  2170. begin
  2171. inc(pushedparasize,2);
  2172. if inlined then
  2173. begin
  2174. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2175. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_W,
  2176. p^.left^.location.register,r)));
  2177. end
  2178. else
  2179. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_W,p^.left^.location.register)));
  2180. ungetregister32(reg16toreg32(p^.left^.location.register));
  2181. end;
  2182. R_AL,R_BL,R_CL,R_DL:
  2183. begin
  2184. inc(pushedparasize,2);
  2185. { we must push always 16 bit }
  2186. if inlined then
  2187. begin
  2188. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2189. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2190. reg8toreg16(p^.left^.location.register),r)));
  2191. end
  2192. else
  2193. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_W,
  2194. reg8toreg16(p^.left^.location.register))));
  2195. ungetregister32(reg8toreg32(p^.left^.location.register));
  2196. end;
  2197. end;
  2198. end;
  2199. LOC_FPU:
  2200. begin
  2201. size:=pfloatdef(p^.left^.resulttype)^.size;
  2202. inc(pushedparasize,size); { must be before for inlined }
  2203. if not inlined then
  2204. exprasmlist^.concat(new(pai386,op_const_reg(A_SUB,S_L,size,R_ESP)));
  2205. r:=new_reference(R_ESP,0);
  2206. floatstoreops(pfloatdef(p^.left^.resulttype)^.typ,op,s);
  2207. { this is the easiest case for inlined !! }
  2208. if inlined then
  2209. begin
  2210. r^.base:=procinfo.framepointer;
  2211. r^.offset:=para_offset-pushedparasize;
  2212. end;
  2213. exprasmlist^.concat(new(pai386,op_ref(op,s,r)));
  2214. end;
  2215. LOC_REFERENCE,LOC_MEM:
  2216. begin
  2217. tempreference:=p^.left^.location.reference;
  2218. del_reference(p^.left^.location.reference);
  2219. case p^.resulttype^.deftype of
  2220. orddef :
  2221. begin
  2222. case porddef(p^.resulttype)^.typ of
  2223. s32bit,u32bit :
  2224. begin
  2225. inc(pushedparasize,4);
  2226. if inlined then
  2227. begin
  2228. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2229. newreference(tempreference),R_EDI)));
  2230. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2231. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2232. R_EDI,r)));
  2233. end
  2234. else
  2235. emit_push_mem(tempreference);
  2236. end;
  2237. s8bit,u8bit,uchar,bool8bit,s16bit,u16bit :
  2238. begin
  2239. inc(pushedparasize,2);
  2240. if inlined then
  2241. begin
  2242. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_W,
  2243. newreference(tempreference),R_DI)));
  2244. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2245. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_W,
  2246. R_DI,r)));
  2247. end
  2248. else
  2249. exprasmlist^.concat(new(pai386,op_ref(A_PUSH,S_W,
  2250. newreference(tempreference))));
  2251. end;
  2252. end;
  2253. end;
  2254. floatdef :
  2255. begin
  2256. case pfloatdef(p^.resulttype)^.typ of
  2257. f32bit,
  2258. s32real :
  2259. begin
  2260. inc(pushedparasize,4);
  2261. if inlined then
  2262. begin
  2263. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2264. newreference(tempreference),R_EDI)));
  2265. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2266. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2267. R_EDI,r)));
  2268. end
  2269. else
  2270. emit_push_mem(tempreference);
  2271. end;
  2272. s64real,
  2273. s64bit : begin
  2274. inc(pushedparasize,4);
  2275. inc(tempreference.offset,4);
  2276. if inlined then
  2277. begin
  2278. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2279. newreference(tempreference),R_EDI)));
  2280. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2281. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2282. R_EDI,r)));
  2283. end
  2284. else
  2285. emit_push_mem(tempreference);
  2286. inc(pushedparasize,4);
  2287. dec(tempreference.offset,4);
  2288. if inlined then
  2289. begin
  2290. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2291. newreference(tempreference),R_EDI)));
  2292. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2293. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2294. R_EDI,r)));
  2295. end
  2296. else
  2297. emit_push_mem(tempreference);
  2298. end;
  2299. s80real : begin
  2300. inc(pushedparasize,4);
  2301. inc(tempreference.offset,6);
  2302. if inlined then
  2303. begin
  2304. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2305. newreference(tempreference),R_EDI)));
  2306. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2307. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2308. R_EDI,r)));
  2309. end
  2310. else
  2311. emit_push_mem(tempreference);
  2312. dec(tempreference.offset,4);
  2313. inc(pushedparasize,4);
  2314. if inlined then
  2315. begin
  2316. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2317. newreference(tempreference),R_EDI)));
  2318. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2319. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2320. R_EDI,r)));
  2321. end
  2322. else
  2323. emit_push_mem(tempreference);
  2324. dec(tempreference.offset,2);
  2325. inc(pushedparasize,2);
  2326. if inlined then
  2327. begin
  2328. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_W,
  2329. newreference(tempreference),R_DI)));
  2330. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2331. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_W,
  2332. R_DI,r)));
  2333. end
  2334. else
  2335. exprasmlist^.concat(new(pai386,op_ref(A_PUSH,S_W,
  2336. newreference(tempreference))));
  2337. end;
  2338. end;
  2339. end;
  2340. pointerdef,procvardef,
  2341. enumdef,classrefdef:
  2342. begin
  2343. inc(pushedparasize,4);
  2344. if inlined then
  2345. begin
  2346. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2347. newreference(tempreference),R_EDI)));
  2348. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2349. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2350. R_EDI,r)));
  2351. end
  2352. else
  2353. emit_push_mem(tempreference);
  2354. end;
  2355. arraydef,recorddef,stringdef,setdef,objectdef :
  2356. begin
  2357. { small set ? }
  2358. if ((p^.resulttype^.deftype=setdef) and
  2359. (psetdef(p^.resulttype)^.settype=smallset)) then
  2360. begin
  2361. inc(pushedparasize,4);
  2362. if inlined then
  2363. begin
  2364. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2365. concatcopy(tempreference,r^,4,false);
  2366. end
  2367. else
  2368. emit_push_mem(tempreference);
  2369. end
  2370. { call by value open array ? }
  2371. else if (p^.resulttype^.deftype=arraydef) and
  2372. assigned(defcoll^.data) and
  2373. is_open_array(defcoll^.data) then
  2374. begin
  2375. { first, push high }
  2376. maybe_push_open_array_high;
  2377. inc(pushedparasize,4);
  2378. if inlined then
  2379. begin
  2380. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2381. newreference(p^.left^.location.reference),R_EDI)));
  2382. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2383. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2384. R_EDI,r)));
  2385. end
  2386. else
  2387. emitpushreferenceaddr(p^.left^.location.reference);
  2388. end
  2389. else
  2390. begin
  2391. size:=p^.resulttype^.size;
  2392. { Alignment }
  2393. {
  2394. if (size>=4) and ((size and 3)<>0) then
  2395. inc(size,4-(size and 3))
  2396. else if (size>=2) and ((size and 1)<>0) then
  2397. inc(size,2-(size and 1))
  2398. else
  2399. if size=1 then size:=2;
  2400. }
  2401. { create stack space }
  2402. if not inlined then
  2403. exprasmlist^.concat(new(pai386,op_const_reg(A_SUB,S_L,size,R_ESP)));
  2404. inc(pushedparasize,size);
  2405. { create stack reference }
  2406. stackref.symbol := nil;
  2407. if not inlined then
  2408. begin
  2409. clear_reference(stackref);
  2410. stackref.base:=R_ESP;
  2411. end
  2412. else
  2413. begin
  2414. clear_reference(stackref);
  2415. stackref.base:=procinfo.framepointer;
  2416. stackref.offset:=para_offset-pushedparasize;
  2417. end;
  2418. { produce copy }
  2419. if p^.resulttype^.deftype=stringdef then
  2420. begin
  2421. copystring(stackref,p^.left^.location.reference,
  2422. pstringdef(p^.resulttype)^.len);
  2423. end
  2424. else
  2425. begin
  2426. concatcopy(p^.left^.location.reference,
  2427. stackref,p^.resulttype^.size,true);
  2428. end;
  2429. end;
  2430. end;
  2431. else Message(cg_e_illegal_expression);
  2432. end;
  2433. end;
  2434. LOC_JUMP:
  2435. begin
  2436. getlabel(hlabel);
  2437. inc(pushedparasize,2);
  2438. emitl(A_LABEL,truelabel);
  2439. if inlined then
  2440. begin
  2441. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2442. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,S_W,
  2443. 1,r)));
  2444. end
  2445. else
  2446. exprasmlist^.concat(new(pai386,op_const(A_PUSH,S_W,1)));
  2447. emitl(A_JMP,hlabel);
  2448. emitl(A_LABEL,falselabel);
  2449. if inlined then
  2450. begin
  2451. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2452. exprasmlist^.concat(new(pai386,op_const_ref(A_MOV,S_W,
  2453. 0,r)));
  2454. end
  2455. else
  2456. exprasmlist^.concat(new(pai386,op_const(A_PUSH,S_W,0)));
  2457. emitl(A_LABEL,hlabel);
  2458. end;
  2459. LOC_FLAGS:
  2460. begin
  2461. if not(R_EAX in unused) then
  2462. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,R_EAX,R_EDI)));
  2463. { clear full EAX is faster }
  2464. { but dont you set the equal flag ? }
  2465. {exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_L,R_EAX,R_EAX)));}
  2466. exprasmlist^.concat(new(pai386,op_reg(flag_2_set[p^.left^.location.resflags],S_B,
  2467. R_AL)));
  2468. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BW,R_AL,R_AX)));
  2469. {exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_L,R_EAX,R_EAX)));}
  2470. inc(pushedparasize,2);
  2471. if inlined then
  2472. begin
  2473. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2474. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_W,
  2475. R_AX,r)));
  2476. end
  2477. else
  2478. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_W,R_AX)));
  2479. { this is also false !!!
  2480. if not(R_EAX in unused) then
  2481. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,R_EAX,R_EDI)));}
  2482. if not(R_EAX in unused) then
  2483. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,R_EDI,R_EAX)));
  2484. end;
  2485. {$ifdef SUPPORT_MMX}
  2486. LOC_MMXREGISTER,
  2487. LOC_CMMXREGISTER:
  2488. begin
  2489. inc(pushedparasize,8); { was missing !!! (PM) }
  2490. exprasmlist^.concat(new(pai386,op_const_reg(
  2491. A_SUB,S_L,8,R_ESP)));
  2492. if inlined then
  2493. begin
  2494. r:=new_reference(procinfo.framepointer,para_offset-pushedparasize);
  2495. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOVQ,S_NO,
  2496. p^.left^.location.register,r)));
  2497. end
  2498. else
  2499. begin
  2500. r:=new_reference(R_ESP,0);
  2501. exprasmlist^.concat(new(pai386,op_reg_ref(
  2502. A_MOVQ,S_NO,p^.left^.location.register,r)));
  2503. end;
  2504. {$endif SUPPORT_MMX}
  2505. end;
  2506. end;
  2507. truelabel:=otlabel;
  2508. falselabel:=oflabel;
  2509. { push from right to left }
  2510. if not push_from_left_to_right and assigned(p^.right) then
  2511. secondcallparan(p^.right,defcoll^.next,push_from_left_to_right
  2512. ,inlined,para_offset
  2513. );
  2514. end;
  2515. procedure secondcalln(var p : ptree);
  2516. var
  2517. unusedregisters : tregisterset;
  2518. pushed : tpushed;
  2519. funcretref : treference;
  2520. hregister : tregister;
  2521. oldpushedparasize : longint;
  2522. { true if ESI must be loaded again after the subroutine }
  2523. loadesi : boolean;
  2524. { true if a virtual method must be called directly }
  2525. no_virtual_call : boolean;
  2526. { true if we produce a con- or destrutor in a call }
  2527. is_con_or_destructor : boolean;
  2528. { true if a constructor is called again }
  2529. extended_new : boolean;
  2530. { adress returned from an I/O-error }
  2531. iolabel : plabel;
  2532. { lexlevel count }
  2533. i : longint;
  2534. { help reference pointer }
  2535. r : preference;
  2536. pp,params : ptree;
  2537. inlined : boolean;
  2538. inlinecode : ptree;
  2539. para_offset : longint;
  2540. { instruction for alignement correction }
  2541. corr : pai386;
  2542. { we must pop this size also after !! }
  2543. must_pop : boolean;
  2544. pop_size : longint;
  2545. label
  2546. dont_call;
  2547. begin
  2548. extended_new:=false;
  2549. iolabel:=nil;
  2550. inlinecode:=nil;
  2551. inlined:=false;
  2552. loadesi:=true;
  2553. no_virtual_call:=false;
  2554. unusedregisters:=unused;
  2555. if not assigned(p^.procdefinition) then
  2556. exit;
  2557. if (p^.procdefinition^.options and poinline)<>0 then
  2558. begin
  2559. inlined:=true;
  2560. inlinecode:=p^.right;
  2561. { set it to the same lexical level }
  2562. p^.procdefinition^.parast^.symtablelevel:=
  2563. aktprocsym^.definition^.parast^.symtablelevel;
  2564. if assigned(p^.left) then
  2565. inlinecode^.para_offset:=
  2566. gettempofsizepersistant(inlinecode^.para_size);
  2567. p^.procdefinition^.parast^.call_offset:=
  2568. inlinecode^.para_offset;
  2569. {$ifdef extdebug}
  2570. Comment(V_debug,
  2571. 'inlined parasymtable is at offset '
  2572. +tostr(p^.procdefinition^.parast^.call_offset));
  2573. exprasmlist^.concat(new(pai_asm_comment,init(
  2574. strpnew('inlined parasymtable is at offset '
  2575. +tostr(p^.procdefinition^.parast^.call_offset)))));
  2576. {$endif extdebug}
  2577. p^.right:=nil;
  2578. { disable further inlining of the same proc
  2579. in the args }
  2580. p^.procdefinition^.options:=p^.procdefinition^.options and (not poinline);
  2581. end;
  2582. { only if no proc var }
  2583. if not(assigned(p^.right)) then
  2584. is_con_or_destructor:=((p^.procdefinition^.options and poconstructor)<>0)
  2585. or ((p^.procdefinition^.options and podestructor)<>0);
  2586. { proc variables destroy all registers }
  2587. if (p^.right=nil) and
  2588. { virtual methods too }
  2589. ((p^.procdefinition^.options and povirtualmethod)=0) then
  2590. begin
  2591. if ((p^.procdefinition^.options and poiocheck)<>0)
  2592. and (cs_iocheck in aktswitches) then
  2593. begin
  2594. getlabel(iolabel);
  2595. emitl(A_LABEL,iolabel);
  2596. end
  2597. else iolabel:=nil;
  2598. { save all used registers }
  2599. pushusedregisters(pushed,p^.procdefinition^.usedregisters);
  2600. { give used registers through }
  2601. usedinproc:=usedinproc or p^.procdefinition^.usedregisters;
  2602. end
  2603. else
  2604. begin
  2605. pushusedregisters(pushed,$ff);
  2606. usedinproc:=$ff;
  2607. { no IO check for methods and procedure variables }
  2608. iolabel:=nil;
  2609. end;
  2610. { generate the code for the parameter and push them }
  2611. oldpushedparasize:=pushedparasize;
  2612. pushedparasize:=0;
  2613. corr:=new(pai386,op_const_reg(A_SUB,S_L,0,R_ESP));
  2614. exprasmlist^.concat(corr);
  2615. if (p^.resulttype<>pdef(voiddef)) and
  2616. ret_in_param(p^.resulttype) then
  2617. begin
  2618. funcretref.symbol:=nil;
  2619. {$ifdef test_dest_loc}
  2620. if dest_loc_known and (dest_loc_tree=p) and
  2621. (dest_loc.loc in [LOC_REFERENCE,LOC_MEM]) then
  2622. begin
  2623. funcretref:=dest_loc.reference;
  2624. if assigned(dest_loc.reference.symbol) then
  2625. funcretref.symbol:=stringdup(dest_loc.reference.symbol^);
  2626. in_dest_loc:=true;
  2627. end
  2628. else
  2629. {$endif test_dest_loc}
  2630. if inlined then
  2631. begin
  2632. reset_reference(funcretref);
  2633. funcretref.offset:=gettempofsizepersistant(p^.procdefinition^.retdef^.size);
  2634. funcretref.base:=procinfo.framepointer;
  2635. end
  2636. else
  2637. gettempofsizereference(p^.procdefinition^.retdef^.size,funcretref);
  2638. end;
  2639. if assigned(p^.left) then
  2640. begin
  2641. pushedparasize:=0;
  2642. { be found elsewhere }
  2643. if inlined then
  2644. para_offset:=p^.procdefinition^.parast^.call_offset+
  2645. p^.procdefinition^.parast^.datasize
  2646. else
  2647. para_offset:=0;
  2648. if assigned(p^.right) then
  2649. secondcallparan(p^.left,pprocvardef(p^.right^.resulttype)^.para1,
  2650. (p^.procdefinition^.options and poleftright)<>0
  2651. ,inlined,
  2652. para_offset
  2653. )
  2654. else
  2655. secondcallparan(p^.left,p^.procdefinition^.para1,
  2656. (p^.procdefinition^.options and poleftright)<>0
  2657. ,inlined,
  2658. para_offset
  2659. );
  2660. end;
  2661. params:=p^.left;
  2662. p^.left:=nil;
  2663. if inlined then
  2664. inlinecode^.retoffset:=gettempofsizepersistant(4);
  2665. if ret_in_param(p^.resulttype) then
  2666. begin
  2667. inc(pushedparasize,4);
  2668. if inlined then
  2669. begin
  2670. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2671. newreference(funcretref),R_EDI)));
  2672. r:=new_reference(procinfo.framepointer,inlinecode^.retoffset);
  2673. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  2674. R_EDI,r)));
  2675. end
  2676. else
  2677. emitpushreferenceaddr(funcretref);
  2678. end;
  2679. { procedure variable ? }
  2680. if (p^.right=nil) then
  2681. begin
  2682. { overloaded operator have no symtable }
  2683. { push self }
  2684. if assigned(p^.symtable) and
  2685. (p^.symtable^.symtabletype=withsymtable) then
  2686. begin
  2687. { dirty trick to avoid the secondcall below }
  2688. p^.methodpointer:=genzeronode(callparan);
  2689. p^.methodpointer^.location.loc:=LOC_REGISTER;
  2690. p^.methodpointer^.location.register:=R_ESI;
  2691. { make a reference }
  2692. new(r);
  2693. reset_reference(r^);
  2694. r^.offset:=p^.symtable^.datasize;
  2695. r^.base:=procinfo.framepointer;
  2696. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_ESI)));
  2697. end;
  2698. { push self }
  2699. if assigned(p^.symtable) and
  2700. ((p^.symtable^.symtabletype=objectsymtable) or
  2701. (p^.symtable^.symtabletype=withsymtable)) then
  2702. begin
  2703. if assigned(p^.methodpointer) then
  2704. begin
  2705. {
  2706. if p^.methodpointer^.resulttype=classrefdef then
  2707. begin
  2708. two possibilities:
  2709. 1. constructor
  2710. 2. class method
  2711. end
  2712. else }
  2713. begin
  2714. case p^.methodpointer^.treetype of
  2715. typen:
  2716. begin
  2717. { direct call to inherited method }
  2718. if (p^.procdefinition^.options and poabstractmethod)<>0 then
  2719. begin
  2720. Message(cg_e_cant_call_abstract_method);
  2721. goto dont_call;
  2722. end;
  2723. { generate no virtual call }
  2724. no_virtual_call:=true;
  2725. if (p^.symtableprocentry^.properties and sp_static)<>0 then
  2726. begin
  2727. { well lets put the VMT address directly into ESI }
  2728. { it is kind of dirty but that is the simplest }
  2729. { way to accept virtual static functions (PM) }
  2730. loadesi:=true;
  2731. exprasmlist^.concat(new(pai386,op_csymbol_reg(A_MOV,S_L,
  2732. newcsymbol(pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname,0),R_ESI)));
  2733. maybe_concat_external(pobjectdef(p^.methodpointer^.resulttype)^.owner,
  2734. pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname);
  2735. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2736. end
  2737. else
  2738. { this is a member call, so ESI isn't modfied }
  2739. loadesi:=false;
  2740. if not(is_con_or_destructor and
  2741. pobjectdef(p^.methodpointer^.resulttype)^.isclass and
  2742. assigned(aktprocsym) and
  2743. ((aktprocsym^.definition^.options and
  2744. (poconstructor or podestructor))<>0)) then
  2745. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2746. { if an inherited con- or destructor should be }
  2747. { called in a con- or destructor then a warning }
  2748. { will be made }
  2749. { con- and destructors need a pointer to the vmt }
  2750. if is_con_or_destructor and
  2751. not(pobjectdef(p^.methodpointer^.resulttype)^.isclass) and
  2752. assigned(aktprocsym) then
  2753. begin
  2754. if not ((aktprocsym^.definition^.options
  2755. and (poconstructor or podestructor))<>0) then
  2756. Message(cg_w_member_cd_call_from_method);
  2757. end;
  2758. if is_con_or_destructor then
  2759. push_int(0)
  2760. end;
  2761. hnewn:
  2762. begin
  2763. { extended syntax of new }
  2764. { ESI must be zero }
  2765. exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_L,R_ESI,R_ESI)));
  2766. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2767. { insert the vmt }
  2768. exprasmlist^.concat(new(pai386,op_csymbol(A_PUSH,S_L,
  2769. newcsymbol(pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname,0))));
  2770. maybe_concat_external(pobjectdef(p^.methodpointer^.resulttype)^.owner,
  2771. pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname);
  2772. extended_new:=true;
  2773. end;
  2774. hdisposen:
  2775. begin
  2776. secondpass(p^.methodpointer);
  2777. { destructor with extended syntax called from dispose }
  2778. { hdisposen always deliver LOC_REFERENCE }
  2779. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2780. newreference(p^.methodpointer^.location.reference),R_ESI)));
  2781. del_reference(p^.methodpointer^.location.reference);
  2782. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2783. exprasmlist^.concat(new(pai386,op_csymbol(A_PUSH,S_L,
  2784. newcsymbol(pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname,0))));
  2785. maybe_concat_external(pobjectdef(p^.methodpointer^.resulttype)^.owner,
  2786. pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname);
  2787. end;
  2788. else
  2789. begin
  2790. { call to an instance member }
  2791. if (p^.symtable^.symtabletype<>withsymtable) then
  2792. begin
  2793. secondpass(p^.methodpointer);
  2794. case p^.methodpointer^.location.loc of
  2795. LOC_REGISTER:
  2796. begin
  2797. ungetregister32(p^.methodpointer^.location.register);
  2798. emit_reg_reg(A_MOV,S_L,p^.methodpointer^.location.register,R_ESI);
  2799. end;
  2800. else
  2801. begin
  2802. if (p^.methodpointer^.resulttype^.deftype=objectdef) and
  2803. pobjectdef(p^.methodpointer^.resulttype)^.isclass then
  2804. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  2805. newreference(p^.methodpointer^.location.reference),R_ESI)))
  2806. else
  2807. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  2808. newreference(p^.methodpointer^.location.reference),R_ESI)));
  2809. del_reference(p^.methodpointer^.location.reference);
  2810. end;
  2811. end;
  2812. end;
  2813. { when calling a class method, we have
  2814. to load ESI with the VMT !
  2815. But that's wrong, if we call a class method via self
  2816. }
  2817. if ((p^.procdefinition^.options and poclassmethod)<>0)
  2818. and not(p^.methodpointer^.treetype=selfn) then
  2819. begin
  2820. { class method needs current VMT }
  2821. new(r);
  2822. reset_reference(r^);
  2823. r^.base:=R_ESI;
  2824. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_ESI)));
  2825. end;
  2826. { direct call to class constructor, don't allocate memory }
  2827. if is_con_or_destructor and (p^.methodpointer^.resulttype^.deftype=objectdef) and
  2828. (pobjectdef(p^.methodpointer^.resulttype)^.isclass) then
  2829. exprasmlist^.concat(new(pai386,op_const(A_PUSH,S_L,0)))
  2830. else
  2831. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2832. if is_con_or_destructor then
  2833. begin
  2834. { classes don't get a VMT pointer pushed }
  2835. if (p^.methodpointer^.resulttype^.deftype=objectdef) and
  2836. not(pobjectdef(p^.methodpointer^.resulttype)^.isclass) then
  2837. begin
  2838. if ((p^.procdefinition^.options and poconstructor)<>0) then
  2839. begin
  2840. { it's no bad idea, to insert the VMT }
  2841. exprasmlist^.concat(new(pai386,op_csymbol(A_PUSH,S_L,
  2842. newcsymbol(pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname,
  2843. 0))));
  2844. maybe_concat_external(pobjectdef(p^.methodpointer^.resulttype)^.owner,
  2845. pobjectdef(p^.methodpointer^.resulttype)^.vmt_mangledname);
  2846. end
  2847. { destructors haven't to dispose the instance, if this is }
  2848. { a direct call }
  2849. else
  2850. push_int(0);
  2851. end;
  2852. end;
  2853. end;
  2854. end;
  2855. end;
  2856. end
  2857. else
  2858. begin
  2859. if ((p^.procdefinition^.options and poclassmethod)<>0) and
  2860. not(
  2861. assigned(aktprocsym) and
  2862. ((aktprocsym^.definition^.options and poclassmethod)<>0)
  2863. ) then
  2864. begin
  2865. { class method needs current VMT }
  2866. new(r);
  2867. reset_reference(r^);
  2868. r^.base:=R_ESI;
  2869. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_ESI)));
  2870. end
  2871. else
  2872. begin
  2873. { member call, ESI isn't modified }
  2874. loadesi:=false;
  2875. end;
  2876. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2877. { but a con- or destructor here would probably almost }
  2878. { always be placed wrong }
  2879. if is_con_or_destructor then
  2880. begin
  2881. Message(cg_w_member_cd_call_from_method);
  2882. push_int(0);
  2883. end;
  2884. end;
  2885. end;
  2886. { push base pointer ?}
  2887. if (lexlevel>1) and assigned(pprocdef(p^.procdefinition)^.parast) and
  2888. ((p^.procdefinition^.parast^.symtablelevel)>2) then
  2889. begin
  2890. { if we call a nested function in a method, we must }
  2891. { push also SELF! }
  2892. { THAT'S NOT TRUE, we have to load ESI via frame pointer }
  2893. { access }
  2894. {
  2895. begin
  2896. loadesi:=false;
  2897. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,R_ESI)));
  2898. end;
  2899. }
  2900. if lexlevel=(p^.procdefinition^.parast^.symtablelevel) then
  2901. begin
  2902. new(r);
  2903. reset_reference(r^);
  2904. r^.offset:=procinfo.framepointer_offset;
  2905. r^.base:=procinfo.framepointer;
  2906. exprasmlist^.concat(new(pai386,op_ref(A_PUSH,S_L,r)))
  2907. end
  2908. { this is only true if the difference is one !!
  2909. but it cannot be more !! }
  2910. else if (lexlevel=p^.procdefinition^.parast^.symtablelevel-1) then
  2911. begin
  2912. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,procinfo.framepointer)))
  2913. end
  2914. else if (lexlevel>p^.procdefinition^.parast^.symtablelevel) then
  2915. begin
  2916. hregister:=getregister32;
  2917. new(r);
  2918. reset_reference(r^);
  2919. r^.offset:=procinfo.framepointer_offset;
  2920. r^.base:=procinfo.framepointer;
  2921. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,hregister)));
  2922. for i:=(p^.procdefinition^.parast^.symtablelevel) to lexlevel-1 do
  2923. begin
  2924. new(r);
  2925. reset_reference(r^);
  2926. {we should get the correct frame_pointer_offset at each level
  2927. how can we do this !!! }
  2928. r^.offset:=procinfo.framepointer_offset;
  2929. r^.base:=hregister;
  2930. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,hregister)));
  2931. end;
  2932. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,hregister)));
  2933. ungetregister32(hregister);
  2934. end
  2935. else
  2936. internalerror(25000);
  2937. end;
  2938. { exported methods should be never called direct.
  2939. Why? Bp7 Allows it (PFV)
  2940. if (p^.procdefinition^.options and poexports)<>0 then
  2941. Message(cg_e_dont_call_exported_direct); }
  2942. if (not inlined) and ((pushedparasize mod 4)<>0) then
  2943. begin
  2944. corr^.op1:=pointer(4-(pushedparasize mod 4));
  2945. must_pop:=true;
  2946. pop_size:=4-(pushedparasize mod 4);
  2947. end
  2948. else
  2949. begin
  2950. exprasmlist^.remove(corr);
  2951. must_pop:=false;
  2952. pop_size:=0;
  2953. end;
  2954. if ((p^.procdefinition^.options and povirtualmethod)<>0) and
  2955. not(no_virtual_call) then
  2956. begin
  2957. { static functions contain the vmt_address in ESI }
  2958. { also class methods }
  2959. if assigned(aktprocsym) then
  2960. begin
  2961. if ((aktprocsym^.properties and sp_static)<>0) or
  2962. ((aktprocsym^.definition^.options and poclassmethod)<>0) or
  2963. ((p^.procdefinition^.options and postaticmethod)<>0) or
  2964. ((p^.procdefinition^.options and poconstructor)<>0) or
  2965. { ESI is loaded earlier }
  2966. ((p^.procdefinition^.options and poclassmethod)<>0)then
  2967. begin
  2968. new(r);
  2969. reset_reference(r^);
  2970. r^.base:=R_ESI;
  2971. end
  2972. else
  2973. begin
  2974. new(r);
  2975. reset_reference(r^);
  2976. r^.base:=R_ESI;
  2977. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_EDI)));
  2978. new(r);
  2979. reset_reference(r^);
  2980. r^.base:=R_EDI;
  2981. end;
  2982. end
  2983. else
  2984. { aktprocsym should be assigned, also in main program }
  2985. internalerror(12345);
  2986. {
  2987. begin
  2988. new(r);
  2989. reset_reference(r^);
  2990. r^.base:=R_ESI;
  2991. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,R_EDI)));
  2992. new(r);
  2993. reset_reference(r^);
  2994. r^.base:=R_EDI;
  2995. end;
  2996. }
  2997. if p^.procdefinition^.extnumber=-1 then
  2998. internalerror($Da);
  2999. r^.offset:=p^.procdefinition^.extnumber*4+12;
  3000. if (cs_rangechecking in aktswitches) then
  3001. begin
  3002. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,r^.base)));
  3003. emitcall('CHECK_OBJECT',true);
  3004. end;
  3005. exprasmlist^.concat(new(pai386,op_ref(A_CALL,S_NO,r)));
  3006. end
  3007. else if not inlined then
  3008. emitcall(p^.procdefinition^.mangledname,
  3009. (p^.symtableproc^.symtabletype=unitsymtable) or
  3010. ((p^.symtableproc^.symtabletype=objectsymtable) and
  3011. (pobjectdef(p^.symtableproc^.defowner)^.owner^.symtabletype=unitsymtable)))
  3012. else { inlined proc }
  3013. { inlined code is in inlinecode }
  3014. begin
  3015. secondpass(inlinecode);
  3016. { set poinline again }
  3017. p^.procdefinition^.options:=p^.procdefinition^.options or poinline;
  3018. { free the args }
  3019. ungetpersistanttemp(p^.procdefinition^.parast^.call_offset,
  3020. p^.procdefinition^.parast^.datasize);
  3021. end;
  3022. if (not inlined) and ((p^.procdefinition^.options and poclearstack)<>0) then
  3023. begin
  3024. { consider the alignment with the rest (PM) }
  3025. pushedparasize:=pushedparasize+pop_size;
  3026. must_pop:=false;
  3027. if pushedparasize=4 then
  3028. { better than an add on all processors }
  3029. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EDI)))
  3030. { the pentium has two pipes and pop reg is pairable }
  3031. { but the registers must be different! }
  3032. else if (pushedparasize=8) and
  3033. not(cs_littlesize in aktswitches) and
  3034. (aktoptprocessor=pentium) and
  3035. (procinfo._class=nil) then
  3036. begin
  3037. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_EDI)));
  3038. exprasmlist^.concat(new(pai386,op_reg(A_POP,S_L,R_ESI)));
  3039. end
  3040. else exprasmlist^.concat(new(pai386,op_const_reg(A_ADD,S_L,pushedparasize,R_ESP)));
  3041. end;
  3042. end
  3043. else
  3044. begin
  3045. if (pushedparasize mod 4)<>0 then
  3046. begin
  3047. corr^.op1:=pointer(4-(pushedparasize mod 4));
  3048. must_pop:=true;
  3049. pop_size:=4-(pushedparasize mod 4);
  3050. end
  3051. else
  3052. begin
  3053. exprasmlist^.remove(corr);
  3054. must_pop:=false;
  3055. pop_size:=0;
  3056. end;
  3057. secondpass(p^.right);
  3058. { method pointer ? }
  3059. if (p^.procdefinition^.options and pomethodpointer)<>0 then
  3060. begin
  3061. { method pointer can't be in a register }
  3062. inc(p^.right^.location.reference.offset,4);
  3063. { push self pointer }
  3064. exprasmlist^.concat(new(pai386,op_ref(A_PUSH,S_L,newreference(p^.right^.location.reference))));
  3065. del_reference(p^.right^.location.reference);
  3066. dec(p^.right^.location.reference.offset,4);
  3067. end;
  3068. case p^.right^.location.loc of
  3069. LOC_REGISTER,LOC_CREGISTER:
  3070. begin
  3071. exprasmlist^.concat(new(pai386,op_reg(A_CALL,S_NO,p^.right^.location.register)));
  3072. ungetregister32(p^.right^.location.register);
  3073. end
  3074. else
  3075. exprasmlist^.concat(new(pai386,op_ref(A_CALL,S_NO,newreference(p^.right^.location.reference))));
  3076. del_reference(p^.right^.location.reference);
  3077. end;
  3078. end;
  3079. dont_call:
  3080. pushedparasize:=oldpushedparasize;
  3081. unused:=unusedregisters;
  3082. { handle function results }
  3083. { structured results are easy to handle.... }
  3084. { needed also when result_no_used !! }
  3085. if (p^.resulttype<>pdef(voiddef)) and ret_in_param(p^.resulttype) then
  3086. begin
  3087. p^.location.loc:=LOC_MEM;
  3088. stringdispose(p^.location.reference.symbol);
  3089. p^.location.reference:=funcretref;
  3090. end;
  3091. if (p^.resulttype<>pdef(voiddef)) and p^.return_value_used then
  3092. begin
  3093. { a contructor could be a function with boolean result }
  3094. if (p^.right=nil) and
  3095. ((p^.procdefinition^.options and poconstructor)<>0) and
  3096. { quick'n'dirty check if it is a class or an object }
  3097. (p^.resulttype^.deftype=orddef) then
  3098. begin
  3099. p^.location.loc:=LOC_FLAGS;
  3100. p^.location.resflags:=F_NE;
  3101. if extended_new then
  3102. begin
  3103. {$ifdef test_dest_loc}
  3104. if dest_loc_known and (dest_loc_tree=p) then
  3105. mov_reg_to_dest(p,S_L,R_EAX)
  3106. else
  3107. {$endif test_dest_loc}
  3108. begin
  3109. hregister:=getregister32;
  3110. emit_reg_reg(A_MOV,S_L,R_EAX,hregister);
  3111. p^.location.register:=hregister;
  3112. end;
  3113. end;
  3114. end
  3115. { structed results are easy to handle.... }
  3116. else if ret_in_param(p^.resulttype) then
  3117. begin
  3118. {p^.location.loc:=LOC_MEM;
  3119. stringdispose(p^.location.reference.symbol);
  3120. p^.location.reference:=funcretref;
  3121. already done above (PM) }
  3122. end
  3123. else
  3124. begin
  3125. if (p^.resulttype^.deftype=orddef) then
  3126. begin
  3127. p^.location.loc:=LOC_REGISTER;
  3128. case porddef(p^.resulttype)^.typ of
  3129. s32bit,u32bit :
  3130. begin
  3131. {$ifdef test_dest_loc}
  3132. if dest_loc_known and (dest_loc_tree=p) then
  3133. mov_reg_to_dest(p,S_L,R_EAX)
  3134. else
  3135. {$endif test_dest_loc}
  3136. begin
  3137. hregister:=getregister32;
  3138. emit_reg_reg(A_MOV,S_L,R_EAX,hregister);
  3139. p^.location.register:=hregister;
  3140. end;
  3141. end;
  3142. uchar,u8bit,bool8bit,s8bit :
  3143. begin
  3144. {$ifdef test_dest_loc}
  3145. if dest_loc_known and (dest_loc_tree=p) then
  3146. mov_reg_to_dest(p,S_B,R_AL)
  3147. else
  3148. {$endif test_dest_loc}
  3149. begin
  3150. hregister:=getregister32;
  3151. emit_reg_reg(A_MOV,S_B,R_AL,reg32toreg8(hregister));
  3152. p^.location.register:=reg32toreg8(hregister);
  3153. end;
  3154. end;
  3155. s16bit,u16bit :
  3156. begin
  3157. {$ifdef test_dest_loc}
  3158. if dest_loc_known and (dest_loc_tree=p) then
  3159. mov_reg_to_dest(p,S_W,R_AX)
  3160. else
  3161. {$endif test_dest_loc}
  3162. begin
  3163. hregister:=getregister32;
  3164. emit_reg_reg(A_MOV,S_W,R_AX,reg32toreg16(hregister));
  3165. p^.location.register:=reg32toreg16(hregister);
  3166. end;
  3167. end;
  3168. else internalerror(7);
  3169. end
  3170. end
  3171. else if (p^.resulttype^.deftype=floatdef) then
  3172. case pfloatdef(p^.resulttype)^.typ of
  3173. f32bit : begin
  3174. p^.location.loc:=LOC_REGISTER;
  3175. {$ifdef test_dest_loc}
  3176. if dest_loc_known and (dest_loc_tree=p) then
  3177. mov_reg_to_dest(p,S_L,R_EAX)
  3178. else
  3179. {$endif test_dest_loc}
  3180. begin
  3181. hregister:=getregister32;
  3182. emit_reg_reg(A_MOV,S_L,R_EAX,hregister);
  3183. p^.location.register:=hregister;
  3184. end;
  3185. end;
  3186. else
  3187. p^.location.loc:=LOC_FPU;
  3188. end
  3189. else
  3190. begin
  3191. p^.location.loc:=LOC_REGISTER;
  3192. {$ifdef test_dest_loc}
  3193. if dest_loc_known and (dest_loc_tree=p) then
  3194. mov_reg_to_dest(p,S_L,R_EAX)
  3195. else
  3196. {$endif test_dest_loc}
  3197. begin
  3198. hregister:=getregister32;
  3199. emit_reg_reg(A_MOV,S_L,R_EAX,hregister);
  3200. p^.location.register:=hregister;
  3201. end;
  3202. end;
  3203. end;
  3204. end;
  3205. { perhaps i/o check ? }
  3206. if iolabel<>nil then
  3207. begin
  3208. exprasmlist^.concat(new(pai386,op_csymbol(A_PUSH,S_L,newcsymbol(lab2str(iolabel),0))));
  3209. { this was wrong, probably an error due to diff3
  3210. emitcall(p^.procdefinition^.mangledname);}
  3211. emitcall('IOCHECK',true);
  3212. end;
  3213. { this should be optimized (PM) }
  3214. if must_pop then
  3215. exprasmlist^.concat(new(pai386,op_const_reg(A_ADD,S_L,pop_size,R_ESP)));
  3216. { restore registers }
  3217. popusedregisters(pushed);
  3218. { at last, restore instance pointer (SELF) }
  3219. if loadesi then
  3220. maybe_loadesi;
  3221. pp:=params;
  3222. while assigned(pp) do
  3223. begin
  3224. if assigned(pp^.left) then
  3225. if (pp^.left^.location.loc=LOC_REFERENCE) or
  3226. (pp^.left^.location.loc=LOC_MEM) then
  3227. ungetiftemp(pp^.left^.location.reference);
  3228. pp:=pp^.right;
  3229. end;
  3230. if inlined then
  3231. ungetpersistanttemp(inlinecode^.retoffset,4);
  3232. disposetree(params);
  3233. { from now on the result can be freed normally }
  3234. if inlined and ret_in_param(p^.resulttype) then
  3235. persistanttemptonormal(funcretref.offset);
  3236. { if return value is not used }
  3237. if (not p^.return_value_used) and (p^.resulttype<>pdef(voiddef)) then
  3238. begin
  3239. if p^.location.loc in [LOC_MEM,LOC_REFERENCE] then
  3240. { release unused temp }
  3241. ungetiftemp(p^.location.reference)
  3242. else if p^.location.loc=LOC_FPU then
  3243. { release FPU stack }
  3244. exprasmlist^.concat(new(pai386,op_none(A_FDECSTP,S_NO)));
  3245. end;
  3246. end;
  3247. { reverts the parameter list }
  3248. var nb_para : integer;
  3249. function reversparameter(p : ptree) : ptree;
  3250. var
  3251. hp1,hp2 : ptree;
  3252. begin
  3253. hp1:=nil;
  3254. nb_para := 0;
  3255. while assigned(p) do
  3256. begin
  3257. { pull out }
  3258. hp2:=p;
  3259. p:=p^.right;
  3260. inc(nb_para);
  3261. { pull in }
  3262. hp2^.right:=hp1;
  3263. hp1:=hp2;
  3264. end;
  3265. reversparameter:=hp1;
  3266. end;
  3267. procedure secondinline(var p : ptree);
  3268. const in2size:array[in_inc_byte..in_dec_dword] of Topsize=
  3269. (S_B,S_W,S_L,S_B,S_W,S_L);
  3270. in2instr:array[in_inc_byte..in_dec_dword] of Tasmop=
  3271. (A_INC,A_INC,A_INC,A_DEC,A_DEC,A_DEC);
  3272. ad2instr:array[in_inc_byte..in_dec_dword] of Tasmop=
  3273. (A_ADD,A_ADD,A_ADD,A_SUB,A_SUB,A_SUB);
  3274. { tfloattype = (f32bit,s32real,s64real,s80real,s64bit); }
  3275. float_name: array[tfloattype] of string[8]=
  3276. ('FIXED','SINGLE','REAL','EXTENDED','COMP','FIXED16');
  3277. var
  3278. aktfile : treference;
  3279. ft : tfiletype;
  3280. opsize : topsize;
  3281. asmop : tasmop;
  3282. pushed : tpushed;
  3283. { produces code for READ(LN) and WRITE(LN) }
  3284. procedure handlereadwrite(doread,callwriteln : boolean);
  3285. procedure loadstream;
  3286. const
  3287. io:array[0..1] of string[7]=('_OUTPUT','_INPUT');
  3288. var
  3289. r : preference;
  3290. begin
  3291. new(r);
  3292. reset_reference(r^);
  3293. r^.symbol:=stringdup('U_'+upper(target_info.system_unit)+io[byte(doread)]);
  3294. { if not (cs_compilesystem in aktswitches) then }
  3295. concat_external(r^.symbol^,EXT_NEAR);
  3296. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,r,R_EDI)))
  3297. end;
  3298. var
  3299. node,hp : ptree;
  3300. typedtyp,pararesult : pdef;
  3301. doflush,has_length : boolean;
  3302. dummycoll : tdefcoll;
  3303. iolabel : plabel;
  3304. npara : longint;
  3305. begin
  3306. { I/O check }
  3307. if cs_iocheck in aktswitches then
  3308. begin
  3309. getlabel(iolabel);
  3310. emitl(A_LABEL,iolabel);
  3311. end
  3312. else iolabel:=nil;
  3313. { no automatic call from flush }
  3314. doflush:=false;
  3315. { for write of real with the length specified }
  3316. has_length:=false;
  3317. hp:=nil;
  3318. { reserve temporary pointer to data variable }
  3319. aktfile.symbol:=nil;
  3320. gettempofsizereference(4,aktfile);
  3321. { first state text data }
  3322. ft:=ft_text;
  3323. { and state a parameter ? }
  3324. if p^.left=nil then
  3325. begin
  3326. { state screen address}
  3327. doflush:=true;
  3328. { the following instructions are for "writeln;" }
  3329. loadstream;
  3330. { save @Dateivarible in temporary variable }
  3331. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,R_EDI,newreference(aktfile))));
  3332. end
  3333. else
  3334. begin
  3335. { revers paramters }
  3336. node:=reversparameter(p^.left);
  3337. p^.left := node;
  3338. npara := nb_para;
  3339. { calculate data variable }
  3340. { is first parameter a file type ? }
  3341. if node^.left^.resulttype^.deftype=filedef then
  3342. begin
  3343. ft:=pfiledef(node^.left^.resulttype)^.filetype;
  3344. if ft=ft_typed then
  3345. typedtyp:=pfiledef(node^.left^.resulttype)^.typed_as;
  3346. secondpass(node^.left);
  3347. if codegenerror then
  3348. exit;
  3349. { save reference in temporary variables } { reference in tempor„re Variable retten }
  3350. if node^.left^.location.loc<>LOC_REFERENCE then
  3351. begin
  3352. Message(cg_e_illegal_expression);
  3353. exit;
  3354. end;
  3355. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,newreference(node^.left^.location.reference),R_EDI)));
  3356. { skip to the next parameter }
  3357. node:=node^.right;
  3358. end
  3359. else
  3360. begin
  3361. { if we write to stdout/in then flush after the write(ln) }
  3362. doflush:=true;
  3363. loadstream;
  3364. end;
  3365. { save @Dateivarible in temporary variable }
  3366. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,R_EDI,newreference(aktfile))));
  3367. if doread then
  3368. { parameter by READ gives call by reference }
  3369. dummycoll.paratyp:=vs_var
  3370. { an WRITE Call by "Const" }
  3371. else dummycoll.paratyp:=vs_const;
  3372. { because of secondcallparan, which otherwise attaches }
  3373. if ft=ft_typed then
  3374. begin
  3375. { this is to avoid copy of simple const parameters }
  3376. dummycoll.data:=new(pformaldef,init);
  3377. end
  3378. else
  3379. { I think, this isn't a good solution (FK) }
  3380. dummycoll.data:=nil;
  3381. while assigned(node) do
  3382. begin
  3383. pushusedregisters(pushed,$ff);
  3384. hp:=node;
  3385. node:=node^.right;
  3386. hp^.right:=nil;
  3387. if hp^.is_colon_para then
  3388. Message(parser_e_illegal_colon_qualifier);
  3389. if ft=ft_typed then
  3390. never_copy_const_param:=true;
  3391. secondcallparan(hp,@dummycoll,false
  3392. ,false,0
  3393. );
  3394. if ft=ft_typed then
  3395. never_copy_const_param:=false;
  3396. hp^.right:=node;
  3397. if codegenerror then
  3398. exit;
  3399. emit_push_mem(aktfile);
  3400. if (ft=ft_typed) then
  3401. begin
  3402. { OK let's try this }
  3403. { first we must only allow the right type }
  3404. { we have to call blockread or blockwrite }
  3405. { but the real problem is that }
  3406. { reset and rewrite should have set }
  3407. { the type size }
  3408. { as recordsize for that file !!!! }
  3409. { how can we make that }
  3410. { I think that is only possible by adding }
  3411. { reset and rewrite to the inline list a call }
  3412. { allways read only one record by element }
  3413. push_int(typedtyp^.size);
  3414. if doread then
  3415. emitcall('TYPED_READ',true)
  3416. else
  3417. emitcall('TYPED_WRITE',true)
  3418. {!!!!!!!}
  3419. end
  3420. else
  3421. begin
  3422. { save current position }
  3423. pararesult:=hp^.left^.resulttype;
  3424. { handle possible field width }
  3425. { of course only for write(ln) }
  3426. if not doread then
  3427. begin
  3428. { handle total width parameter }
  3429. if assigned(node) and node^.is_colon_para then
  3430. begin
  3431. hp:=node;
  3432. node:=node^.right;
  3433. hp^.right:=nil;
  3434. secondcallparan(hp,@dummycoll,false
  3435. ,false,0
  3436. );
  3437. hp^.right:=node;
  3438. if codegenerror then
  3439. exit;
  3440. has_length:=true;
  3441. end
  3442. else
  3443. if pararesult^.deftype<>floatdef then
  3444. push_int(0)
  3445. else
  3446. push_int(-32767);
  3447. { a second colon para for a float ? }
  3448. if assigned(node) and node^.is_colon_para then
  3449. begin
  3450. hp:=node;
  3451. node:=node^.right;
  3452. hp^.right:=nil;
  3453. secondcallparan(hp,@dummycoll,false
  3454. ,false,0
  3455. );
  3456. hp^.right:=node;
  3457. if pararesult^.deftype<>floatdef then
  3458. Message(parser_e_illegal_colon_qualifier);
  3459. if codegenerror then
  3460. exit;
  3461. end
  3462. else
  3463. begin
  3464. if pararesult^.deftype=floatdef then
  3465. push_int(-1);
  3466. end
  3467. end;
  3468. case pararesult^.deftype of
  3469. stringdef:
  3470. begin
  3471. if doread then
  3472. emitcall('READ_TEXT_STRING',true)
  3473. else
  3474. begin
  3475. emitcall('WRITE_TEXT_STRING',true);
  3476. {ungetiftemp(hp^.left^.location.reference);}
  3477. end;
  3478. end;
  3479. pointerdef : begin
  3480. if is_equal(ppointerdef(pararesult)^.definition,cchardef) then
  3481. begin
  3482. if doread then
  3483. emitcall('READ_TEXT_PCHAR_AS_POINTER',true)
  3484. else
  3485. emitcall('WRITE_TEXT_PCHAR_AS_POINTER',true);
  3486. end
  3487. else
  3488. Message(parser_e_illegal_parameter_list);
  3489. end;
  3490. arraydef : begin
  3491. if (parraydef(pararesult)^.lowrange=0)
  3492. and is_equal(parraydef(pararesult)^.definition,cchardef) then
  3493. begin
  3494. if doread then
  3495. emitcall('READ_TEXT_PCHAR_AS_ARRAY',true)
  3496. else
  3497. emitcall('WRITE_TEXT_PCHAR_AS_ARRAY',true);
  3498. end
  3499. else
  3500. Message(parser_e_illegal_parameter_list);
  3501. end;
  3502. floatdef:
  3503. begin
  3504. if doread then
  3505. emitcall('READ_TEXT_'+float_name[pfloatdef(pararesult)^.typ],true)
  3506. else
  3507. emitcall('WRITE_TEXT_'+float_name[pfloatdef(pararesult)^.typ],true);
  3508. end;
  3509. orddef : begin
  3510. case porddef(pararesult)^.typ of
  3511. u8bit : if doread then
  3512. emitcall('READ_TEXT_BYTE',true);
  3513. s8bit : if doread then
  3514. emitcall('READ_TEXT_SHORTINT',true);
  3515. u16bit : if doread then
  3516. emitcall('READ_TEXT_WORD',true);
  3517. s16bit : if doread then
  3518. emitcall('READ_TEXT_INTEGER',true);
  3519. s32bit : if doread then
  3520. emitcall('READ_TEXT_LONGINT',true)
  3521. else
  3522. emitcall('WRITE_TEXT_LONGINT',true);
  3523. u32bit : if doread then
  3524. emitcall('READ_TEXT_CARDINAL',true)
  3525. else
  3526. emitcall('WRITE_TEXT_CARDINAL',true);
  3527. uchar : if doread then
  3528. emitcall('READ_TEXT_CHAR',true)
  3529. else
  3530. emitcall('WRITE_TEXT_CHAR',true);
  3531. bool8bit : if doread then
  3532. { emitcall('READ_TEXT_BOOLEAN',true) }
  3533. Message(parser_e_illegal_parameter_list)
  3534. else
  3535. emitcall('WRITE_TEXT_BOOLEAN',true);
  3536. else Message(parser_e_illegal_parameter_list);
  3537. end;
  3538. end;
  3539. else Message(parser_e_illegal_parameter_list);
  3540. end;
  3541. end;
  3542. { load ESI in methods again }
  3543. popusedregisters(pushed);
  3544. maybe_loadesi;
  3545. end;
  3546. end;
  3547. if callwriteln then
  3548. begin
  3549. pushusedregisters(pushed,$ff);
  3550. emit_push_mem(aktfile);
  3551. { pushexceptlabel; }
  3552. if ft<>ft_text then
  3553. Message(parser_e_illegal_parameter_list) ;
  3554. emitcall('WRITELN_TEXT',true);
  3555. popusedregisters(pushed);
  3556. maybe_loadesi;
  3557. end;
  3558. if doflush and not(doread) then
  3559. begin
  3560. pushusedregisters(pushed,$ff);
  3561. { pushexceptlabel; }
  3562. emitcall('FLUSH_STDOUT',true);
  3563. popusedregisters(pushed);
  3564. maybe_loadesi;
  3565. end;
  3566. if iolabel<>nil then
  3567. begin
  3568. { registers are saved in the procedure }
  3569. exprasmlist^.concat(new(pai386,op_csymbol(A_PUSH,S_L,newcsymbol(lab2str(iolabel),0))));
  3570. emitcall('IOCHECK',true);
  3571. end;
  3572. ungetiftemp(aktfile);
  3573. if assigned(p^.left) then
  3574. begin
  3575. p^.left:=reversparameter(p^.left);
  3576. if npara<>nb_para then
  3577. Message(cg_f_internal_error_in_secondinline);
  3578. hp:=p^.left;
  3579. while assigned(hp) do
  3580. begin
  3581. if assigned(hp^.left) then
  3582. if (hp^.left^.location.loc=LOC_REFERENCE) or
  3583. (hp^.left^.location.loc=LOC_MEM) then
  3584. ungetiftemp(hp^.left^.location.reference);
  3585. hp:=hp^.right;
  3586. end;
  3587. end;
  3588. end;
  3589. procedure handle_str;
  3590. var
  3591. hp,node : ptree;
  3592. dummycoll : tdefcoll;
  3593. is_real,has_length : boolean;
  3594. begin
  3595. pushusedregisters(pushed,$ff);
  3596. node:=p^.left;
  3597. is_real:=false;
  3598. has_length:=false;
  3599. while assigned(node^.right) do node:=node^.right;
  3600. { if a real parameter somewhere then call REALSTR }
  3601. if (node^.left^.resulttype^.deftype=floatdef) then
  3602. is_real:=true;
  3603. node:=p^.left;
  3604. { we have at least two args }
  3605. { with at max 2 colon_para in between }
  3606. { first arg longint or float }
  3607. hp:=node;
  3608. node:=node^.right;
  3609. hp^.right:=nil;
  3610. dummycoll.data:=hp^.resulttype;
  3611. { string arg }
  3612. dummycoll.paratyp:=vs_var;
  3613. secondcallparan(hp,@dummycoll,false
  3614. ,false,0
  3615. );
  3616. if codegenerror then
  3617. exit;
  3618. dummycoll.paratyp:=vs_const;
  3619. { second arg }
  3620. hp:=node;
  3621. node:=node^.right;
  3622. hp^.right:=nil;
  3623. { frac para }
  3624. if hp^.is_colon_para and assigned(node) and
  3625. node^.is_colon_para then
  3626. begin
  3627. dummycoll.data:=hp^.resulttype;
  3628. secondcallparan(hp,@dummycoll,false
  3629. ,false,0
  3630. );
  3631. if codegenerror then
  3632. exit;
  3633. hp:=node;
  3634. node:=node^.right;
  3635. hp^.right:=nil;
  3636. has_length:=true;
  3637. end
  3638. else
  3639. if is_real then
  3640. push_int(-1);
  3641. { third arg, length only if is_real }
  3642. if hp^.is_colon_para then
  3643. begin
  3644. dummycoll.data:=hp^.resulttype;
  3645. secondcallparan(hp,@dummycoll,false
  3646. ,false,0
  3647. );
  3648. if codegenerror then
  3649. exit;
  3650. hp:=node;
  3651. node:=node^.right;
  3652. hp^.right:=nil;
  3653. end
  3654. else
  3655. if is_real then
  3656. push_int(-32767)
  3657. else
  3658. push_int(-1);
  3659. { last arg longint or real }
  3660. secondcallparan(hp,@dummycoll,false
  3661. ,false,0
  3662. );
  3663. if codegenerror then
  3664. exit;
  3665. if is_real then
  3666. emitcall('STR_'+float_name[pfloatdef(hp^.resulttype)^.typ],true)
  3667. else if porddef(hp^.resulttype)^.typ=u32bit then
  3668. emitcall('STR_CARDINAL',true)
  3669. else
  3670. emitcall('STR_LONGINT',true);
  3671. popusedregisters(pushed);
  3672. end;
  3673. var
  3674. r : preference;
  3675. l : longint;
  3676. ispushed : boolean;
  3677. hregister : tregister;
  3678. begin
  3679. case p^.inlinenumber of
  3680. in_lo_word,
  3681. in_hi_word :
  3682. begin
  3683. secondpass(p^.left);
  3684. p^.location.loc:=LOC_REGISTER;
  3685. if p^.left^.location.loc<>LOC_REGISTER then
  3686. begin
  3687. if p^.left^.location.loc=LOC_CREGISTER then
  3688. begin
  3689. p^.location.register:=reg32toreg16(getregister32);
  3690. emit_reg_reg(A_MOV,S_W,p^.left^.location.register,
  3691. p^.location.register);
  3692. end
  3693. else
  3694. begin
  3695. del_reference(p^.left^.location.reference);
  3696. p^.location.register:=reg32toreg16(getregister32);
  3697. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_W,newreference(p^.left^.location.reference),
  3698. p^.location.register)));
  3699. end;
  3700. end
  3701. else p^.location.register:=p^.left^.location.register;
  3702. if p^.inlinenumber=in_hi_word then
  3703. exprasmlist^.concat(new(pai386,op_const_reg(A_SHR,S_W,8,p^.location.register)));
  3704. p^.location.register:=reg16toreg8(p^.location.register);
  3705. end;
  3706. in_high_x :
  3707. begin
  3708. if is_open_array(p^.left^.resulttype) then
  3709. begin
  3710. secondpass(p^.left);
  3711. del_reference(p^.left^.location.reference);
  3712. p^.location.register:=getregister32;
  3713. new(r);
  3714. reset_reference(r^);
  3715. r^.base:=highframepointer;
  3716. r^.offset:=highoffset+4;
  3717. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  3718. r,p^.location.register)));
  3719. end
  3720. end;
  3721. in_sizeof_x,
  3722. in_typeof_x :
  3723. begin
  3724. { for both cases load vmt }
  3725. if p^.left^.treetype=typen then
  3726. begin
  3727. p^.location.register:=getregister32;
  3728. exprasmlist^.concat(new(pai386,op_csymbol_reg(A_MOV,
  3729. S_L,newcsymbol(pobjectdef(p^.left^.resulttype)^.vmt_mangledname,0),
  3730. p^.location.register)));
  3731. end
  3732. else
  3733. begin
  3734. secondpass(p^.left);
  3735. del_reference(p^.left^.location.reference);
  3736. p^.location.loc:=LOC_REGISTER;
  3737. p^.location.register:=getregister32;
  3738. { load VMT pointer }
  3739. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  3740. newreference(p^.left^.location.reference),
  3741. p^.location.register)));
  3742. end;
  3743. { in sizeof load size }
  3744. if p^.inlinenumber=in_sizeof_x then
  3745. begin
  3746. new(r);
  3747. reset_reference(r^);
  3748. r^.base:=p^.location.register;
  3749. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,r,
  3750. p^.location.register)));
  3751. end;
  3752. end;
  3753. in_lo_long,
  3754. in_hi_long :
  3755. begin
  3756. secondpass(p^.left);
  3757. p^.location.loc:=LOC_REGISTER;
  3758. if p^.left^.location.loc<>LOC_REGISTER then
  3759. begin
  3760. if p^.left^.location.loc=LOC_CREGISTER then
  3761. begin
  3762. p^.location.register:=getregister32;
  3763. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,
  3764. p^.location.register);
  3765. end
  3766. else
  3767. begin
  3768. del_reference(p^.left^.location.reference);
  3769. p^.location.register:=getregister32;
  3770. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
  3771. p^.location.register)));
  3772. end;
  3773. end
  3774. else p^.location.register:=p^.left^.location.register;
  3775. if p^.inlinenumber=in_hi_long then
  3776. exprasmlist^.concat(new(pai386,op_const_reg(A_SHR,S_L,16,p^.location.register)));
  3777. p^.location.register:=reg32toreg16(p^.location.register);
  3778. end;
  3779. {***CHARBUG}
  3780. {We can now comment them out, as they are handled as typecast.
  3781. Saves an incredible amount of 8 bytes code.
  3782. I'am not lucky about this, because it's _not_ a type cast (FK) }
  3783. { in_ord_char,
  3784. in_chr_byte,}
  3785. {***}
  3786. in_length_string :
  3787. begin
  3788. secondpass(p^.left);
  3789. set_location(p^.location,p^.left^.location);
  3790. { length in ansi strings is at offset -8 }
  3791. {$ifdef UseAnsiString}
  3792. if is_ansistring(p^.left^.resulttype) then
  3793. dec(p^.location.reference.offset,8);
  3794. {$endif UseAnsiString}
  3795. end;
  3796. in_pred_x,
  3797. in_succ_x:
  3798. begin
  3799. secondpass(p^.left);
  3800. if p^.inlinenumber=in_pred_x then
  3801. asmop:=A_DEC
  3802. else
  3803. asmop:=A_INC;
  3804. case p^.resulttype^.size of
  3805. 4 : opsize:=S_L;
  3806. 2 : opsize:=S_W;
  3807. 1 : opsize:=S_B;
  3808. else
  3809. internalerror(10080);
  3810. end;
  3811. p^.location.loc:=LOC_REGISTER;
  3812. if p^.left^.location.loc<>LOC_REGISTER then
  3813. begin
  3814. p^.location.register:=getregister32;
  3815. if (p^.resulttype^.size=2) then
  3816. p^.location.register:=reg32toreg16(p^.location.register);
  3817. if (p^.resulttype^.size=1) then
  3818. p^.location.register:=reg32toreg8(p^.location.register);
  3819. if p^.left^.location.loc=LOC_CREGISTER then
  3820. emit_reg_reg(A_MOV,opsize,p^.left^.location.register,
  3821. p^.location.register)
  3822. else
  3823. if p^.left^.location.loc=LOC_FLAGS then
  3824. exprasmlist^.concat(new(pai386,op_reg(flag_2_set[p^.left^.location.resflags],S_B,
  3825. p^.location.register)))
  3826. else
  3827. begin
  3828. del_reference(p^.left^.location.reference);
  3829. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,opsize,newreference(p^.left^.location.reference),
  3830. p^.location.register)));
  3831. end;
  3832. end
  3833. else p^.location.register:=p^.left^.location.register;
  3834. exprasmlist^.concat(new(pai386,op_reg(asmop,opsize,
  3835. p^.location.register)))
  3836. { here we should insert bounds check ? }
  3837. { and direct call to bounds will crash the program }
  3838. { if we are at the limit }
  3839. { we could also simply say that pred(first)=first and succ(last)=last }
  3840. { could this be usefull I don't think so (PM)
  3841. emitoverflowcheck;}
  3842. end;
  3843. in_inc_byte..in_dec_dword:
  3844. begin
  3845. secondpass(p^.left);
  3846. if cs_check_overflow in aktswitches then
  3847. begin
  3848. { SINCE THE CARRY FLAG IS NEVER SET BY DEC/INC, we must use }
  3849. { ADD and SUB to check for overflow for unsigned operations. }
  3850. exprasmlist^.concat(new(pai386,op_const_ref(ad2instr[p^.inlinenumber],
  3851. in2size[p^.inlinenumber],1,newreference(p^.left^.location.reference))));
  3852. emitoverflowcheck(p^.left);
  3853. end
  3854. else
  3855. exprasmlist^.concat(new(pai386,op_ref(in2instr[p^.inlinenumber],
  3856. in2size[p^.inlinenumber],newreference(p^.left^.location.reference))));
  3857. end;
  3858. in_assigned_x :
  3859. begin
  3860. secondpass(p^.left^.left);
  3861. p^.location.loc:=LOC_FLAGS;
  3862. if (p^.left^.left^.location.loc=LOC_REGISTER) or
  3863. (p^.left^.left^.location.loc=LOC_CREGISTER) then
  3864. begin
  3865. exprasmlist^.concat(new(pai386,op_reg_reg(A_OR,S_L,
  3866. p^.left^.left^.location.register,
  3867. p^.left^.left^.location.register)));
  3868. ungetregister32(p^.left^.left^.location.register);
  3869. end
  3870. else
  3871. begin
  3872. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_L,0,
  3873. newreference(p^.left^.left^.location.reference))));
  3874. del_reference(p^.left^.left^.location.reference);
  3875. end;
  3876. p^.location.resflags:=F_NE;
  3877. end;
  3878. in_reset_typedfile,in_rewrite_typedfile :
  3879. begin
  3880. pushusedregisters(pushed,$ff);
  3881. exprasmlist^.concat(new(pai386,op_const(A_PUSH,S_L,pfiledef(p^.left^.resulttype)^.typed_as^.size)));
  3882. secondload(p^.left);
  3883. emitpushreferenceaddr(p^.left^.location.reference);
  3884. if p^.inlinenumber=in_reset_typedfile then
  3885. emitcall('RESET_TYPED',true)
  3886. else
  3887. emitcall('REWRITE_TYPED',true);
  3888. popusedregisters(pushed);
  3889. end;
  3890. in_write_x :
  3891. handlereadwrite(false,false);
  3892. in_writeln_x :
  3893. handlereadwrite(false,true);
  3894. in_read_x :
  3895. handlereadwrite(true,false);
  3896. in_readln_x :
  3897. begin
  3898. handlereadwrite(true,false);
  3899. pushusedregisters(pushed,$ff);
  3900. emit_push_mem(aktfile);
  3901. { pushexceptlabel; }
  3902. if ft<>ft_text then
  3903. Message(parser_e_illegal_parameter_list);
  3904. emitcall('READLN_TEXT',true);
  3905. popusedregisters(pushed);
  3906. maybe_loadesi;
  3907. end;
  3908. in_str_x_string :
  3909. begin
  3910. handle_str;
  3911. maybe_loadesi;
  3912. end;
  3913. in_include_x_y,
  3914. in_exclude_x_y:
  3915. begin
  3916. secondpass(p^.left^.left);
  3917. if p^.left^.right^.left^.treetype=ordconstn then
  3918. begin
  3919. { calculate bit position }
  3920. l:=1 shl (p^.left^.right^.left^.value mod 32);
  3921. { determine operator }
  3922. if p^.inlinenumber=in_include_x_y then
  3923. asmop:=A_OR
  3924. else
  3925. begin
  3926. asmop:=A_AND;
  3927. l:=not(l);
  3928. end;
  3929. if (p^.left^.left^.location.loc=LOC_REFERENCE) then
  3930. begin
  3931. inc(p^.left^.left^.location.reference.offset,(p^.left^.right^.left^.value div 32)*4);
  3932. exprasmlist^.concat(new(pai386,op_const_ref(asmop,S_L,
  3933. l,newreference(p^.left^.left^.location.reference))));
  3934. del_reference(p^.left^.left^.location.reference);
  3935. end
  3936. else
  3937. { LOC_CREGISTER }
  3938. exprasmlist^.concat(new(pai386,op_const_reg(asmop,S_L,
  3939. l,p^.left^.left^.location.register)));
  3940. end
  3941. else
  3942. begin
  3943. { generate code for the element to set }
  3944. ispushed:=maybe_push(p^.left^.right^.left^.registers32,p^.left^.left);
  3945. secondpass(p^.left^.right^.left);
  3946. if ispushed then
  3947. restore(p^.left^.left);
  3948. { determine asm operator }
  3949. if p^.inlinenumber=in_include_x_y then
  3950. asmop:=A_BTS
  3951. else
  3952. asmop:=A_BTR;
  3953. if psetdef(p^.left^.resulttype)^.settype=smallset then
  3954. begin
  3955. if p^.left^.right^.left^.location.loc in
  3956. [LOC_CREGISTER,LOC_REGISTER] then
  3957. hregister:=p^.left^.right^.left^.location.register
  3958. else
  3959. begin
  3960. hregister:=R_EDI;
  3961. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  3962. newreference(p^.left^.right^.left^.location.reference),
  3963. R_EDI)));
  3964. end;
  3965. if (p^.left^.left^.location.loc=LOC_REFERENCE) then
  3966. exprasmlist^.concat(new(pai386,op_reg_ref(asmop,S_L,R_EDI,
  3967. newreference(p^.left^.right^.left^.location.reference))))
  3968. else
  3969. exprasmlist^.concat(new(pai386,op_reg_reg(asmop,S_L,R_EDI,
  3970. p^.left^.right^.left^.location.register)));
  3971. end
  3972. else
  3973. begin
  3974. end;
  3975. end;
  3976. end;
  3977. else internalerror(9);
  3978. end;
  3979. end;
  3980. procedure secondsubscriptn(var p : ptree);
  3981. var
  3982. hr : tregister;
  3983. begin
  3984. secondpass(p^.left);
  3985. if codegenerror then
  3986. exit;
  3987. { classes must be dereferenced implicit }
  3988. if (p^.left^.resulttype^.deftype=objectdef) and
  3989. pobjectdef(p^.left^.resulttype)^.isclass then
  3990. begin
  3991. clear_reference(p^.location.reference);
  3992. case p^.left^.location.loc of
  3993. LOC_REGISTER:
  3994. p^.location.reference.base:=p^.left^.location.register;
  3995. LOC_CREGISTER:
  3996. begin
  3997. { ... and reserve one for the pointer }
  3998. hr:=getregister32;
  3999. emit_reg_reg(A_MOV,S_L,p^.left^.location.register,hr);
  4000. p^.location.reference.base:=hr;
  4001. end;
  4002. else
  4003. begin
  4004. { free register }
  4005. del_reference(p^.left^.location.reference);
  4006. { ... and reserve one for the pointer }
  4007. hr:=getregister32;
  4008. exprasmlist^.concat(new(pai386,op_ref_reg(
  4009. A_MOV,S_L,newreference(p^.left^.location.reference),
  4010. hr)));
  4011. p^.location.reference.base:=hr;
  4012. end;
  4013. end;
  4014. end
  4015. else
  4016. set_location(p^.location,p^.left^.location);
  4017. inc(p^.location.reference.offset,p^.vs^.address);
  4018. end;
  4019. procedure secondselfn(var p : ptree);
  4020. begin
  4021. clear_reference(p^.location.reference);
  4022. if (p^.resulttype^.deftype=classrefdef) or
  4023. ((p^.resulttype^.deftype=objectdef)
  4024. and pobjectdef(p^.resulttype)^.isclass
  4025. ) then
  4026. p^.location.register:=R_ESI
  4027. else
  4028. p^.location.reference.base:=R_ESI;
  4029. end;
  4030. procedure secondhdisposen(var p : ptree);
  4031. begin
  4032. secondpass(p^.left);
  4033. if codegenerror then
  4034. exit;
  4035. clear_reference(p^.location.reference);
  4036. case p^.left^.location.loc of
  4037. LOC_REGISTER,
  4038. LOC_CREGISTER:
  4039. begin
  4040. p^.location.reference.index:=getregister32;
  4041. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,
  4042. p^.left^.location.register,
  4043. p^.location.reference.index)));
  4044. end;
  4045. LOC_MEM,LOC_REFERENCE :
  4046. begin
  4047. del_reference(p^.left^.location.reference);
  4048. p^.location.reference.index:=getregister32;
  4049. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,newreference(p^.left^.location.reference),
  4050. p^.location.reference.index)));
  4051. end;
  4052. end;
  4053. end;
  4054. procedure secondhnewn(var p : ptree);
  4055. begin
  4056. end;
  4057. procedure secondnewn(var p : ptree);
  4058. begin
  4059. secondpass(p^.left);
  4060. if codegenerror then
  4061. exit;
  4062. p^.location.register:=p^.left^.location.register;
  4063. end;
  4064. procedure secondsimplenewdispose(var p : ptree);
  4065. var
  4066. pushed : tpushed;
  4067. begin
  4068. secondpass(p^.left);
  4069. if codegenerror then
  4070. exit;
  4071. pushusedregisters(pushed,$ff);
  4072. { determines the size of the mem block }
  4073. push_int(ppointerdef(p^.left^.resulttype)^.definition^.size);
  4074. { push pointer adress }
  4075. case p^.left^.location.loc of
  4076. LOC_CREGISTER : exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,
  4077. p^.left^.location.register)));
  4078. LOC_REFERENCE : emitpushreferenceaddr(p^.left^.location.reference);
  4079. end;
  4080. { call the mem handling procedures }
  4081. case p^.treetype of
  4082. simpledisposen:
  4083. emitcall('FREEMEM',true);
  4084. simplenewn:
  4085. emitcall('GETMEM',true);
  4086. end;
  4087. popusedregisters(pushed);
  4088. { may be load ESI }
  4089. maybe_loadesi;
  4090. end;
  4091. { copies p a set element on the stack }
  4092. procedure pushsetelement(var p : ptree);
  4093. var
  4094. hr : tregister;
  4095. begin
  4096. { copy the element on the stack, slightly complicated }
  4097. case p^.location.loc of
  4098. LOC_REGISTER,
  4099. LOC_CREGISTER : begin
  4100. hr:=p^.location.register;
  4101. case hr of
  4102. R_EAX,R_EBX,R_ECX,R_EDX,R_EDI,R_ESI,R_ESP :
  4103. begin
  4104. ungetregister32(hr);
  4105. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_W,reg32toreg16(hr))));
  4106. end;
  4107. R_AX,R_BX,R_CX,R_DX,R_DI,R_SI,R_SP :
  4108. begin
  4109. ungetregister32(reg16toreg32(hr));
  4110. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_W,hr)));
  4111. end;
  4112. R_AL,R_BL,R_CL,R_DL :
  4113. begin
  4114. ungetregister32(reg8toreg32(hr));
  4115. exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_W,reg8toreg16(hr))));
  4116. end;
  4117. end;
  4118. end;
  4119. else
  4120. begin
  4121. exprasmlist^.concat(new(pai386,op_ref(A_PUSH,S_W,newreference(p^.location.reference))));
  4122. del_reference(p^.location.reference);
  4123. end;
  4124. end;
  4125. end;
  4126. procedure secondsetcons(var p : ptree);
  4127. var
  4128. l : plabel;
  4129. i : longint;
  4130. hp : ptree;
  4131. href,sref : treference;
  4132. {$ifdef TestSmallSet}
  4133. smallsetvalue : longint;
  4134. hr,hr2 : tregister;
  4135. {$endif TestSmallSet}
  4136. begin
  4137. { this should be reimplemented for smallsets }
  4138. { differently (PM) }
  4139. { produce constant part }
  4140. {$ifdef TestSmallSet}
  4141. if psetdef(p^.resulttype)^.settype=smallset then
  4142. begin
  4143. smallsetvalue:=(p^.constset^[3]*256)+p^.constset^[2];
  4144. smallsetvalue:=(smallsetvalue*256+p^.constset^[1])*256+p^.constset^[0];
  4145. {consts^.concat(new(pai_const,init_32bit(smallsetvalue)));}
  4146. hr:=getregister32;
  4147. exprasmlist^.concat(new(pai386,op_const_reg(A_MOV,S_L,
  4148. smallsetvalue,hr)));
  4149. hp:=p^.left;
  4150. if assigned(hp) then
  4151. begin
  4152. while assigned(hp) do
  4153. begin
  4154. secondpass(hp^.left);
  4155. if codegenerror then
  4156. exit;
  4157. case hp^.left^.location.loc of
  4158. LOC_MEM,LOC_REFERENCE :
  4159. begin
  4160. hr2:=getregister32;
  4161. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  4162. newreference(hp^.left^.location.reference),hr2)));
  4163. exprasmlist^.concat(new(pai386,op_reg_reg(A_BTS,S_NO,
  4164. hr2,hr)));
  4165. ungetregister32(hr2);
  4166. end;
  4167. LOC_REGISTER,LOC_CREGISTER :
  4168. exprasmlist^.concat(new(pai386,op_reg_reg(A_BTS,S_NO,
  4169. hp^.left^.location.register,hr)));
  4170. else
  4171. internalerror(10567);
  4172. end;
  4173. hp:=hp^.right;
  4174. end;
  4175. end;
  4176. p^.location.loc:=LOC_REGISTER;
  4177. p^.location.register:=hr;
  4178. end
  4179. else
  4180. {$endif TestSmallSet}
  4181. begin
  4182. href.symbol := Nil;
  4183. clear_reference(href);
  4184. getlabel(l);
  4185. stringdispose(p^.location.reference.symbol);
  4186. href.symbol:=stringdup(constlabel2str(l,constseta));
  4187. concat_constlabel(l,constseta);
  4188. for i:=0 to 31 do
  4189. consts^.concat(new(pai_const,init_8bit(p^.constset^[i])));
  4190. hp:=p^.left;
  4191. if assigned(hp) then
  4192. begin
  4193. sref.symbol:=nil;
  4194. gettempofsizereference(32,sref);
  4195. concatcopy(href,sref,32,false);
  4196. while assigned(hp) do
  4197. begin
  4198. secondpass(hp^.left);
  4199. if codegenerror then
  4200. exit;
  4201. pushsetelement(hp^.left);
  4202. emitpushreferenceaddr(sref);
  4203. { register is save in subroutine }
  4204. emitcall('SET_SET_BYTE',true);
  4205. hp:=hp^.right;
  4206. end;
  4207. p^.location.reference:=sref;
  4208. end
  4209. else p^.location.reference:=href;
  4210. end;
  4211. end;
  4212. { could be built into secondadd but it }
  4213. { should be easy to read }
  4214. procedure secondin(var p : ptree);
  4215. type Tsetpart=record
  4216. range:boolean; {Part is a range.}
  4217. start,stop:byte; {Start/stop when range; Stop=element
  4218. when an element.}
  4219. end;
  4220. var
  4221. pushed,ranges : boolean;
  4222. hr,pleftreg : tregister;
  4223. opsize : topsize;
  4224. setparts:array[1..8] of Tsetpart;
  4225. i,numparts:byte;
  4226. href,href2:Treference;
  4227. l,l2 : plabel;
  4228. function analizeset(Aset:Pconstset):boolean;
  4229. var compares,maxcompares:word;
  4230. i:byte;
  4231. type byteset=set of byte;
  4232. begin
  4233. analizeset:=false;
  4234. ranges:=false;
  4235. numparts:=0;
  4236. compares:=0;
  4237. {Lots of comparisions take a lot of time, so do not allow
  4238. too much comparisions. 8 comparisions are, however, still
  4239. smalller than emitting the set.}
  4240. maxcompares:=5;
  4241. if cs_littlesize in aktswitches then
  4242. maxcompares:=8;
  4243. for i:=0 to 255 do
  4244. if i in byteset(Aset^) then
  4245. begin
  4246. if (numparts=0) or
  4247. (i<>setparts[numparts].stop+1) then
  4248. begin
  4249. {Set element is a separate element.}
  4250. inc(compares);
  4251. if compares>maxcompares then
  4252. exit;
  4253. inc(numparts);
  4254. setparts[numparts].range:=false;
  4255. setparts[numparts].stop:=i;
  4256. end
  4257. else
  4258. {Set element is part of a range.}
  4259. if not setparts[numparts].range then
  4260. begin
  4261. {Transform an element into a range.}
  4262. setparts[numparts].range:=true;
  4263. setparts[numparts].start:=
  4264. setparts[numparts].stop;
  4265. setparts[numparts].stop:=i;
  4266. inc(compares);
  4267. if compares>maxcompares then
  4268. exit;
  4269. end
  4270. else
  4271. begin
  4272. {Extend a range.}
  4273. setparts[numparts].stop:=i;
  4274. {A range of two elements can better
  4275. be checked as two separate ones.
  4276. When extending a range, our range
  4277. becomes larger than two elements.}
  4278. ranges:=true;
  4279. end;
  4280. end;
  4281. analizeset:=true;
  4282. end;
  4283. begin
  4284. if psetdef(p^.right^.resulttype)^.settype=smallset then
  4285. begin
  4286. if p^.left^.treetype=ordconstn then
  4287. begin
  4288. { only compulsory }
  4289. secondpass(p^.left);
  4290. secondpass(p^.right);
  4291. if codegenerror then
  4292. exit;
  4293. p^.location.resflags:=F_NE;
  4294. case p^.right^.location.loc of
  4295. LOC_REGISTER,LOC_CREGISTER:
  4296. begin
  4297. exprasmlist^.concat(new(pai386,op_const_reg(
  4298. A_TEST,S_L,1 shl (p^.left^.value and 31),
  4299. p^.right^.location.register)));
  4300. ungetregister32(p^.right^.location.register);
  4301. end
  4302. else
  4303. begin
  4304. exprasmlist^.concat(new(pai386,op_const_ref(A_TEST,S_L,1 shl (p^.left^.value and 31),
  4305. newreference(p^.right^.location.reference))));
  4306. del_reference(p^.right^.location.reference);
  4307. end;
  4308. end;
  4309. end
  4310. else
  4311. begin
  4312. { calculate both operators }
  4313. { the complex one first }
  4314. firstcomplex(p);
  4315. secondpass(p^.left);
  4316. { are too few registers free? }
  4317. pushed:=maybe_push(p^.right^.registers32,p^.left);
  4318. secondpass(p^.right);
  4319. if pushed then
  4320. restore(p^.left);
  4321. { of course not commutative }
  4322. if p^.swaped then
  4323. swaptree(p);
  4324. case p^.left^.location.loc of
  4325. LOC_REGISTER,
  4326. LOC_CREGISTER:
  4327. begin
  4328. hr:=p^.left^.location.register;
  4329. case p^.left^.location.register of
  4330. R_AX,R_BX,R_CX,R_DX,R_DI,R_SI,R_SP :
  4331. begin
  4332. hr:=reg16toreg32(p^.left^.location.register);
  4333. ungetregister32(hr);
  4334. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_WL,
  4335. p^.left^.location.register,hr)));
  4336. end;
  4337. R_AL,R_BL,R_CL,R_DL :
  4338. begin
  4339. hr:=reg8toreg32(p^.left^.location.register);
  4340. ungetregister32(hr);
  4341. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BL,
  4342. p^.left^.location.register,hr)));
  4343. end;
  4344. end;
  4345. end;
  4346. else
  4347. begin
  4348. { the set element isn't never samller than a byte }
  4349. { and because it's a small set we need only 5 bits }
  4350. { but 8 bits are eaiser to load }
  4351. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOVZX,S_BL,
  4352. newreference(p^.left^.location.reference),R_EDI)));
  4353. hr:=R_EDI;
  4354. del_reference(p^.left^.location.reference);
  4355. end;
  4356. end;
  4357. case p^.right^.location.loc of
  4358. LOC_REGISTER,
  4359. LOC_CREGISTER:
  4360. exprasmlist^.concat(new(pai386,op_reg_reg(A_BT,S_L,hr,
  4361. p^.right^.location.register)));
  4362. else
  4363. begin
  4364. exprasmlist^.concat(new(pai386,op_reg_ref(A_BT,S_L,hr,
  4365. newreference(p^.right^.location.reference))));
  4366. del_reference(p^.right^.location.reference);
  4367. end;
  4368. end;
  4369. p^.location.loc:=LOC_FLAGS;
  4370. p^.location.resflags:=F_C;
  4371. end;
  4372. end
  4373. else
  4374. begin
  4375. if p^.left^.treetype=ordconstn then
  4376. begin
  4377. { only compulsory }
  4378. secondpass(p^.left);
  4379. secondpass(p^.right);
  4380. if codegenerror then
  4381. exit;
  4382. p^.location.resflags:=F_NE;
  4383. inc(p^.right^.location.reference.offset,p^.left^.value shr 3);
  4384. exprasmlist^.concat(new(pai386,op_const_ref(A_TEST,S_B,1 shl (p^.left^.value and 7),
  4385. newreference(p^.right^.location.reference))));
  4386. del_reference(p^.right^.location.reference);
  4387. end
  4388. else
  4389. begin
  4390. if (p^.right^.treetype=setconstrn) and
  4391. analizeset(p^.right^.constset) then
  4392. begin
  4393. {It gives us advantage to check for the set elements
  4394. separately instead of using the SET_IN_BYTE procedure.
  4395. To do: Build in support for LOC_JUMP.}
  4396. secondpass(p^.left);
  4397. {We won't do a second pass on p^.right, because
  4398. this will emit the constant set.}
  4399. {If register is used, use only lower 8 bits}
  4400. if p^.left^.location.loc in [LOC_REGISTER,LOC_CREGISTER] then
  4401. begin
  4402. pleftreg:=p^.left^.location.register;
  4403. if pleftreg in [R_AL..R_DH] then
  4404. begin
  4405. exprasmlist^.concat(new(pai386,op_const_reg(
  4406. A_AND,S_B,255,pleftreg)));
  4407. opsize:=S_B;
  4408. end
  4409. else
  4410. begin
  4411. exprasmlist^.concat(new(pai386,op_const_reg(
  4412. A_AND,S_L,255,pleftreg)));
  4413. if pleftreg in [R_EAX..R_EDI] then
  4414. opsize:=S_L
  4415. else
  4416. opsize:=S_W;
  4417. end;
  4418. end;
  4419. {Get a label to jump to the end.}
  4420. p^.location.loc:=LOC_FLAGS;
  4421. {It's better to use the zero flag when there are
  4422. no ranges.}
  4423. if ranges then
  4424. p^.location.resflags:=F_C
  4425. else
  4426. p^.location.resflags:=F_E;
  4427. href.symbol := nil;
  4428. clear_reference(href);
  4429. getlabel(l);
  4430. href.symbol:=stringdup(lab2str(l));
  4431. for i:=1 to numparts do
  4432. if setparts[i].range then
  4433. begin
  4434. {Check if left is in a range.}
  4435. {Get a label to jump over the check.}
  4436. href2.symbol := nil;
  4437. clear_reference(href2);
  4438. getlabel(l2);
  4439. href.symbol:=stringdup(lab2str(l2));
  4440. if setparts[i].start=setparts[i].stop-1 then
  4441. begin
  4442. case p^.left^.location.loc of
  4443. LOC_REGISTER,
  4444. LOC_CREGISTER :
  4445. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,
  4446. setparts[i].start,pleftreg)));
  4447. else
  4448. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_B,
  4449. setparts[i].start,newreference(p^.left^.location.reference))));
  4450. end;
  4451. {Result should be in carry flag when ranges are used.}
  4452. if ranges then
  4453. exprasmlist^.concat(new(pai386,op_none(A_STC,S_NO)));
  4454. {If found, jump to end.}
  4455. emitl(A_JE,l);
  4456. case p^.left^.location.loc of
  4457. LOC_REGISTER,
  4458. LOC_CREGISTER:
  4459. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,
  4460. setparts[i].stop,pleftreg)));
  4461. else
  4462. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_B,
  4463. setparts[i].stop,newreference(p^.left^.location.reference))));
  4464. end;
  4465. {Result should be in carry flag when ranges are used.}
  4466. if ranges then
  4467. exprasmlist^.concat(new(pai386,op_none(A_STC,S_NO)));
  4468. {If found, jump to end.}
  4469. emitl(A_JE,l);
  4470. end
  4471. else
  4472. begin
  4473. if setparts[i].start<>0 then
  4474. begin
  4475. { We only check for the lower bound if it is > 0, because
  4476. set elements lower than 0 do nt exist.}
  4477. case p^.left^.location.loc of
  4478. LOC_REGISTER,
  4479. LOC_CREGISTER :
  4480. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,
  4481. setparts[i].start,pleftreg)));
  4482. else
  4483. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_B,
  4484. setparts[i].start,newreference(p^.left^.location.reference))));
  4485. end;
  4486. {If lower, jump to next check.}
  4487. emitl(A_JB,l2);
  4488. end;
  4489. { We only check for the high bound if it is < 255, because
  4490. set elements higher than 255 do nt exist, the its always true,
  4491. so only a JMP is generated }
  4492. if setparts[i].stop<>255 then
  4493. begin
  4494. case p^.left^.location.loc of
  4495. LOC_REGISTER,
  4496. LOC_CREGISTER :
  4497. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,
  4498. setparts[i].stop+1,pleftreg)));
  4499. else
  4500. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_B,
  4501. setparts[i].stop+1,newreference(p^.left^.location.reference))));
  4502. end;
  4503. {If higher, element is in set.}
  4504. emitl(A_JB,l);
  4505. end
  4506. else
  4507. begin
  4508. exprasmlist^.concat(new(pai386,op_none(A_STC,S_NO)));
  4509. emitl(A_JMP,l);
  4510. end;
  4511. end;
  4512. {Emit the jump over label.}
  4513. exprasmlist^.concat(new(pai_label,init(l2)));
  4514. end
  4515. else
  4516. begin
  4517. {Emit code to check if left is an element.}
  4518. case p^.left^.location.loc of
  4519. LOC_REGISTER,
  4520. LOC_CREGISTER:
  4521. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,
  4522. setparts[i].stop,pleftreg)));
  4523. else
  4524. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,S_B,
  4525. setparts[i].stop,newreference(p^.left^.location.reference))));
  4526. end;
  4527. {Result should be in carry flag when ranges are used.}
  4528. if ranges then
  4529. exprasmlist^.concat(new(pai386,op_none(A_STC,S_NO)));
  4530. {If found, jump to end.}
  4531. emitl(A_JE,l);
  4532. end;
  4533. if ranges then
  4534. exprasmlist^.concat(new(pai386,op_none(A_CLC,S_NO)));
  4535. {To compensate for not doing a second pass.}
  4536. stringdispose(p^.right^.location.reference.symbol);
  4537. {Now place the end label.}
  4538. exprasmlist^.concat(new(pai_label,init(l)));
  4539. case p^.left^.location.loc of
  4540. LOC_REGISTER,
  4541. LOC_CREGISTER:
  4542. ungetregister32(pleftreg);
  4543. else
  4544. del_reference(p^.left^.location.reference);
  4545. end;
  4546. end
  4547. else
  4548. begin
  4549. { calculate both operators }
  4550. { the complex one first }
  4551. firstcomplex(p);
  4552. secondpass(p^.left);
  4553. { are too few registers free? }
  4554. pushed:=maybe_push(p^.right^.registers32,p);
  4555. secondpass(p^.right);
  4556. if pushed then restore(p);
  4557. { of course not commutative }
  4558. if p^.swaped then
  4559. swaptree(p);
  4560. pushsetelement(p^.left);
  4561. emitpushreferenceaddr(p^.right^.location.reference);
  4562. del_reference(p^.right^.location.reference);
  4563. { registers need not be save. that happens in SET_IN_BYTE }
  4564. { (EDI is changed) }
  4565. emitcall('SET_IN_BYTE',true);
  4566. { ungetiftemp(p^.right^.location.reference); }
  4567. p^.location.loc:=LOC_FLAGS;
  4568. p^.location.resflags:=F_C;
  4569. end;
  4570. end;
  4571. end;
  4572. end;
  4573. {***}
  4574. procedure secondstatement(var p : ptree);
  4575. var
  4576. hp : ptree;
  4577. begin
  4578. hp:=p;
  4579. while assigned(hp) do
  4580. begin
  4581. { assignments could be distance optimized }
  4582. if assigned(hp^.right) then
  4583. begin
  4584. cleartempgen;
  4585. secondpass(hp^.right);
  4586. (* if (hp^.right^.resulttype<>pdef(voiddef)) then
  4587. if hp^.right^.location.loc in [LOC_MEM,LOC_REFERENCE] then
  4588. { release unused temp }
  4589. ungetiftemp(hp^.right^.location.reference)
  4590. else if hp^.right^.location.loc=LOC_FPU then
  4591. { release FPU stack }
  4592. exprasmlist^.concat(new(pai386,op_none(A_FDECSTP,S_NO)));
  4593. All done in secondcalln now (PM) *)
  4594. end;
  4595. hp:=hp^.left;
  4596. end;
  4597. end;
  4598. procedure secondblockn(var p : ptree);
  4599. begin
  4600. { do second pass on left node }
  4601. if assigned(p^.left) then
  4602. secondpass(p^.left);
  4603. end;
  4604. procedure second_while_repeatn(var p : ptree);
  4605. var
  4606. l1,l2,l3,oldclabel,oldblabel : plabel;
  4607. otlabel,oflabel : plabel;
  4608. begin
  4609. getlabel(l1);
  4610. getlabel(l2);
  4611. { arrange continue and breaklabels: }
  4612. oldclabel:=aktcontinuelabel;
  4613. oldblabel:=aktbreaklabel;
  4614. if p^.treetype=repeatn then
  4615. begin
  4616. emitl(A_LABEL,l1);
  4617. aktcontinuelabel:=l1;
  4618. aktbreaklabel:=l2;
  4619. cleartempgen;
  4620. if assigned(p^.right) then
  4621. secondpass(p^.right);
  4622. otlabel:=truelabel;
  4623. oflabel:=falselabel;
  4624. truelabel:=l2;
  4625. falselabel:=l1;
  4626. cleartempgen;
  4627. secondpass(p^.left);
  4628. maketojumpbool(p^.left);
  4629. emitl(A_LABEL,l2);
  4630. truelabel:=otlabel;
  4631. falselabel:=oflabel;
  4632. end
  4633. else
  4634. begin
  4635. { handling code at the end as it is much more efficient }
  4636. emitl(A_JMP,l2);
  4637. emitl(A_LABEL,l1);
  4638. cleartempgen;
  4639. getlabel(l3);
  4640. aktcontinuelabel:=l2;
  4641. aktbreaklabel:=l3;
  4642. if assigned(p^.right) then
  4643. secondpass(p^.right);
  4644. emitl(A_LABEL,l2);
  4645. otlabel:=truelabel;
  4646. oflabel:=falselabel;
  4647. truelabel:=l1;
  4648. falselabel:=l3;
  4649. cleartempgen;
  4650. secondpass(p^.left);
  4651. maketojumpbool(p^.left);
  4652. emitl(A_LABEL,l3);
  4653. truelabel:=otlabel;
  4654. falselabel:=oflabel;
  4655. end;
  4656. aktcontinuelabel:=oldclabel;
  4657. aktbreaklabel:=oldblabel;
  4658. end;
  4659. procedure secondifn(var p : ptree);
  4660. var
  4661. hl,otlabel,oflabel : plabel;
  4662. begin
  4663. otlabel:=truelabel;
  4664. oflabel:=falselabel;
  4665. getlabel(truelabel);
  4666. getlabel(falselabel);
  4667. cleartempgen;
  4668. secondpass(p^.left);
  4669. maketojumpbool(p^.left);
  4670. if assigned(p^.right) then
  4671. begin
  4672. emitl(A_LABEL,truelabel);
  4673. cleartempgen;
  4674. secondpass(p^.right);
  4675. end;
  4676. if assigned(p^.t1) then
  4677. begin
  4678. if assigned(p^.right) then
  4679. begin
  4680. getlabel(hl);
  4681. emitl(A_JMP,hl);
  4682. end;
  4683. emitl(A_LABEL,falselabel);
  4684. cleartempgen;
  4685. secondpass(p^.t1);
  4686. if assigned(p^.right) then
  4687. emitl(A_LABEL,hl);
  4688. end
  4689. else
  4690. emitl(A_LABEL,falselabel);
  4691. if not(assigned(p^.right)) then
  4692. emitl(A_LABEL,truelabel);
  4693. truelabel:=otlabel;
  4694. falselabel:=oflabel;
  4695. end;
  4696. procedure secondbreakn(var p : ptree);
  4697. begin
  4698. if aktbreaklabel<>nil then
  4699. emitl(A_JMP,aktbreaklabel)
  4700. else
  4701. Message(cg_e_break_not_allowed);
  4702. end;
  4703. procedure secondcontinuen(var p : ptree);
  4704. begin
  4705. if aktcontinuelabel<>nil then
  4706. emitl(A_JMP,aktcontinuelabel)
  4707. else
  4708. Message(cg_e_continue_not_allowed);
  4709. end;
  4710. procedure secondfor(var p : ptree);
  4711. var
  4712. l3,oldclabel,oldblabel : plabel;
  4713. omitfirstcomp,temptovalue : boolean;
  4714. hs : byte;
  4715. temp1 : treference;
  4716. hop : tasmop;
  4717. cmpreg,cmp32 : tregister;
  4718. opsize : topsize;
  4719. count_var_is_signed : boolean;
  4720. begin
  4721. oldclabel:=aktcontinuelabel;
  4722. oldblabel:=aktbreaklabel;
  4723. getlabel(aktcontinuelabel);
  4724. getlabel(aktbreaklabel);
  4725. getlabel(l3);
  4726. { could we spare the first comparison ? }
  4727. omitfirstcomp:=false;
  4728. if p^.right^.treetype=ordconstn then
  4729. if p^.left^.right^.treetype=ordconstn then
  4730. omitfirstcomp:=(p^.backward and (p^.left^.right^.value>=p^.right^.value))
  4731. or (not(p^.backward) and (p^.left^.right^.value<=p^.right^.value));
  4732. { only calculate reference }
  4733. cleartempgen;
  4734. secondpass(p^.t2);
  4735. if not(simple_loadn) then
  4736. Message(cg_e_illegal_count_var);
  4737. { produce start assignment }
  4738. cleartempgen;
  4739. secondpass(p^.left);
  4740. count_var_is_signed:=is_signed(porddef(p^.t2^.resulttype));
  4741. hs:=p^.t2^.resulttype^.size;
  4742. cmp32:=getregister32;
  4743. case hs of
  4744. 1 : begin
  4745. opsize:=S_B;
  4746. cmpreg:=reg32toreg8(cmp32);
  4747. end;
  4748. 2 : begin
  4749. opsize:=S_W;
  4750. cmpreg:=reg32toreg16(cmp32);
  4751. end;
  4752. 4 : begin
  4753. opsize:=S_L;
  4754. cmpreg:=cmp32;
  4755. end;
  4756. end;
  4757. cleartempgen;
  4758. secondpass(p^.right);
  4759. { calculate pointer value and check if changeable and if so }
  4760. { load into temporary variable }
  4761. if p^.right^.treetype<>ordconstn then
  4762. begin
  4763. temp1.symbol:=nil;
  4764. gettempofsizereference(hs,temp1);
  4765. temptovalue:=true;
  4766. if (p^.right^.location.loc=LOC_REGISTER) or
  4767. (p^.right^.location.loc=LOC_CREGISTER) then
  4768. begin
  4769. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,opsize,p^.right^.location.register,
  4770. newreference(temp1))));
  4771. end
  4772. else
  4773. concatcopy(p^.right^.location.reference,temp1,hs,false);
  4774. end
  4775. else temptovalue:=false;
  4776. if temptovalue then
  4777. begin
  4778. if p^.t2^.location.loc=LOC_CREGISTER then
  4779. begin
  4780. exprasmlist^.concat(new(pai386,op_ref_reg(A_CMP,opsize,newreference(temp1),
  4781. p^.t2^.location.register)));
  4782. end
  4783. else
  4784. begin
  4785. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,opsize,newreference(p^.t2^.location.reference),
  4786. cmpreg)));
  4787. exprasmlist^.concat(new(pai386,op_ref_reg(A_CMP,opsize,newreference(temp1),
  4788. cmpreg)));
  4789. end;
  4790. end
  4791. else
  4792. begin
  4793. if not(omitfirstcomp) then
  4794. begin
  4795. if p^.t2^.location.loc=LOC_CREGISTER then
  4796. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,p^.right^.value,
  4797. p^.t2^.location.register)))
  4798. else
  4799. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,opsize,p^.right^.value,
  4800. newreference(p^.t2^.location.reference))));
  4801. end;
  4802. end;
  4803. if p^.backward then
  4804. if count_var_is_signed then
  4805. hop:=A_JL
  4806. else hop:=A_JB
  4807. else
  4808. if count_var_is_signed then
  4809. hop:=A_JG
  4810. else hop:=A_JA;
  4811. if not(omitfirstcomp) or temptovalue then
  4812. emitl(hop,aktbreaklabel);
  4813. emitl(A_LABEL,l3);
  4814. { help register must not be in instruction block }
  4815. cleartempgen;
  4816. if assigned(p^.t1) then
  4817. secondpass(p^.t1);
  4818. emitl(A_LABEL,aktcontinuelabel);
  4819. { makes no problems there }
  4820. cleartempgen;
  4821. { demand help register again }
  4822. cmp32:=getregister32;
  4823. case hs of
  4824. 1 : begin
  4825. opsize:=S_B;
  4826. cmpreg:=reg32toreg8(cmp32);
  4827. end;
  4828. 2 : begin
  4829. opsize:=S_W;
  4830. cmpreg:=reg32toreg16(cmp32);
  4831. end;
  4832. 4 : opsize:=S_L;
  4833. end;
  4834. { produce comparison and the corresponding }
  4835. { jump }
  4836. if temptovalue then
  4837. begin
  4838. if p^.t2^.location.loc=LOC_CREGISTER then
  4839. begin
  4840. exprasmlist^.concat(new(pai386,op_ref_reg(A_CMP,opsize,newreference(temp1),
  4841. p^.t2^.location.register)));
  4842. end
  4843. else
  4844. begin
  4845. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,opsize,newreference(p^.t2^.location.reference),
  4846. cmpreg)));
  4847. exprasmlist^.concat(new(pai386,op_ref_reg(A_CMP,opsize,newreference(temp1),
  4848. cmpreg)));
  4849. end;
  4850. end
  4851. else
  4852. begin
  4853. if p^.t2^.location.loc=LOC_CREGISTER then
  4854. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,p^.right^.value,
  4855. p^.t2^.location.register)))
  4856. else
  4857. exprasmlist^.concat(new(pai386,op_const_ref(A_CMP,opsize,p^.right^.value,
  4858. newreference(p^.t2^.location.reference))));
  4859. end;
  4860. if p^.backward then
  4861. if count_var_is_signed then
  4862. hop:=A_JLE
  4863. else
  4864. hop :=A_JBE
  4865. else
  4866. if count_var_is_signed then
  4867. hop:=A_JGE
  4868. else
  4869. hop:=A_JAE;
  4870. emitl(hop,aktbreaklabel);
  4871. { according to count direction DEC or INC... }
  4872. { must be after the test because of 0to 255 for bytes !! }
  4873. if p^.backward then
  4874. hop:=A_DEC
  4875. else hop:=A_INC;
  4876. if p^.t2^.location.loc=LOC_CREGISTER then
  4877. exprasmlist^.concat(new(pai386,op_reg(hop,opsize,p^.t2^.location.register)))
  4878. else
  4879. exprasmlist^.concat(new(pai386,op_ref(hop,opsize,newreference(p^.t2^.location.reference))));
  4880. emitl(A_JMP,l3);
  4881. { this is the break label: }
  4882. emitl(A_LABEL,aktbreaklabel);
  4883. ungetregister32(cmp32);
  4884. if temptovalue then
  4885. ungetiftemp(temp1);
  4886. aktcontinuelabel:=oldclabel;
  4887. aktbreaklabel:=oldblabel;
  4888. end;
  4889. { var
  4890. hs : string; }
  4891. procedure secondexitn(var p : ptree);
  4892. var
  4893. is_mem : boolean;
  4894. {op : tasmop;
  4895. s : topsize;}
  4896. otlabel,oflabel : plabel;
  4897. label
  4898. do_jmp;
  4899. begin
  4900. if assigned(p^.left) then
  4901. begin
  4902. otlabel:=truelabel;
  4903. oflabel:=falselabel;
  4904. getlabel(truelabel);
  4905. getlabel(falselabel);
  4906. secondpass(p^.left);
  4907. case p^.left^.location.loc of
  4908. LOC_FPU : goto do_jmp;
  4909. LOC_MEM,LOC_REFERENCE : is_mem:=true;
  4910. LOC_CREGISTER,
  4911. LOC_REGISTER : is_mem:=false;
  4912. LOC_FLAGS : begin
  4913. exprasmlist^.concat(new(pai386,op_reg(flag_2_set[p^.right^.location.resflags],S_B,R_AL)));
  4914. goto do_jmp;
  4915. end;
  4916. LOC_JUMP : begin
  4917. emitl(A_LABEL,truelabel);
  4918. exprasmlist^.concat(new(pai386,op_const_reg(A_MOV,S_B,1,R_AL)));
  4919. emitl(A_JMP,aktexit2label);
  4920. exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_B,R_AL,R_AL)));
  4921. goto do_jmp;
  4922. end;
  4923. else internalerror(2001);
  4924. end;
  4925. if (procinfo.retdef^.deftype=orddef) then
  4926. begin
  4927. case porddef(procinfo.retdef)^.typ of
  4928. s32bit,u32bit : if is_mem then
  4929. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  4930. newreference(p^.left^.location.reference),R_EAX)))
  4931. else
  4932. emit_reg_reg(A_MOV,S_L,
  4933. p^.left^.location.register,R_EAX);
  4934. u8bit,s8bit,uchar,bool8bit : if is_mem then
  4935. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_B,
  4936. newreference(p^.left^.location.reference),R_AL)))
  4937. else
  4938. emit_reg_reg(A_MOV,S_B,
  4939. p^.left^.location.register,R_AL);
  4940. s16bit,u16bit : if is_mem then
  4941. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_W,
  4942. newreference(p^.left^.location.reference),R_AX)))
  4943. else
  4944. emit_reg_reg(A_MOV,S_W,
  4945. p^.left^.location.register,R_AX);
  4946. end;
  4947. end
  4948. else
  4949. if (procinfo.retdef^.deftype in
  4950. [pointerdef,enumdef,procvardef]) then
  4951. begin
  4952. if is_mem then
  4953. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  4954. newreference(p^.left^.location.reference),R_EAX)))
  4955. else
  4956. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOV,S_L,
  4957. p^.left^.location.register,R_EAX)));
  4958. end
  4959. else
  4960. if (procinfo.retdef^.deftype=floatdef) then
  4961. begin
  4962. if pfloatdef(procinfo.retdef)^.typ=f32bit then
  4963. begin
  4964. if is_mem then
  4965. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,S_L,
  4966. newreference(p^.left^.location.reference),R_EAX)))
  4967. else
  4968. emit_reg_reg(A_MOV,S_L,
  4969. p^.left^.location.register,R_EAX);
  4970. end
  4971. else
  4972. if is_mem then
  4973. floatload(pfloatdef(procinfo.retdef)^.typ,p^.left^.location.reference);
  4974. end;
  4975. do_jmp:
  4976. truelabel:=otlabel;
  4977. falselabel:=oflabel;
  4978. emitl(A_JMP,aktexit2label);
  4979. end
  4980. else
  4981. begin
  4982. emitl(A_JMP,aktexitlabel);
  4983. end;
  4984. end;
  4985. procedure secondgoto(var p : ptree);
  4986. begin
  4987. emitl(A_JMP,p^.labelnr);
  4988. end;
  4989. procedure secondlabel(var p : ptree);
  4990. begin
  4991. emitl(A_LABEL,p^.labelnr);
  4992. cleartempgen;
  4993. secondpass(p^.left);
  4994. end;
  4995. procedure secondasm(var p : ptree);
  4996. begin
  4997. exprasmlist^.concatlist(p^.p_asm);
  4998. end;
  4999. procedure secondcase(var p : ptree);
  5000. var
  5001. with_sign : boolean;
  5002. opsize : topsize;
  5003. jmp_gt,jmp_le,jmp_lee : tasmop;
  5004. hp : ptree;
  5005. { register with case expression }
  5006. hregister : tregister;
  5007. endlabel,elselabel : plabel;
  5008. { true, if we can omit the range check of the jump table }
  5009. jumptable_no_range : boolean;
  5010. { where to put the jump table }
  5011. jumpsegment : paasmoutput;
  5012. procedure gentreejmp(p : pcaserecord);
  5013. var
  5014. lesslabel,greaterlabel : plabel;
  5015. begin
  5016. emitl(A_LABEL,p^._at);
  5017. { calculate labels for left and right }
  5018. if (p^.less=nil) then
  5019. lesslabel:=elselabel
  5020. else
  5021. lesslabel:=p^.less^._at;
  5022. if (p^.greater=nil) then
  5023. greaterlabel:=elselabel
  5024. else
  5025. greaterlabel:=p^.greater^._at;
  5026. { calculate labels for left and right }
  5027. { no range label: }
  5028. if p^._low=p^._high then
  5029. begin
  5030. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,p^._low,hregister)));
  5031. if greaterlabel=lesslabel then
  5032. begin
  5033. emitl(A_JNE,lesslabel);
  5034. end
  5035. else
  5036. begin
  5037. emitl(jmp_le,lesslabel);
  5038. emitl(jmp_gt,greaterlabel);
  5039. end;
  5040. emitl(A_JMP,p^.statement);
  5041. end
  5042. else
  5043. begin
  5044. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,p^._low,hregister)));
  5045. emitl(jmp_le,lesslabel);
  5046. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,p^._high,hregister)));
  5047. emitl(jmp_gt,greaterlabel);
  5048. emitl(A_JMP,p^.statement);
  5049. end;
  5050. if assigned(p^.less) then
  5051. gentreejmp(p^.less);
  5052. if assigned(p^.greater) then
  5053. gentreejmp(p^.greater);
  5054. end;
  5055. procedure genlinearlist(hp : pcaserecord);
  5056. var
  5057. first : boolean;
  5058. last : longint;
  5059. {helplabel : longint;}
  5060. procedure genitem(t : pcaserecord);
  5061. begin
  5062. if assigned(t^.less) then
  5063. genitem(t^.less);
  5064. if t^._low=t^._high then
  5065. begin
  5066. if t^._low-last=1 then
  5067. exprasmlist^.concat(new(pai386,op_reg(A_DEC,opsize,hregister)))
  5068. else if t^._low-last=0 then
  5069. exprasmlist^.concat(new(pai386,op_reg_reg(A_OR,opsize,hregister,hregister)))
  5070. else
  5071. exprasmlist^.concat(new(pai386,op_const_reg(A_SUB,opsize,t^._low-last,hregister)));
  5072. last:=t^._low;
  5073. emitl(A_JZ,t^.statement);
  5074. end
  5075. else
  5076. begin
  5077. { it begins with the smallest label, if the value }
  5078. { is even smaller then jump immediately to the }
  5079. { ELSE-label }
  5080. if first then
  5081. begin
  5082. if t^._low-1=1 then
  5083. exprasmlist^.concat(new(pai386,op_reg(A_DEC,opsize,
  5084. hregister)))
  5085. else if t^._low-1=0 then
  5086. exprasmlist^.concat(new(pai386,op_reg_reg(A_OR,opsize,
  5087. hregister,hregister)))
  5088. else
  5089. exprasmlist^.concat(new(pai386,op_const_reg(A_SUB,opsize,
  5090. t^._low-1,hregister)));
  5091. { work around: if the lower range=0 and we
  5092. do the subtraction we have to take care
  5093. of the sign!
  5094. }
  5095. if t^._low=0 then
  5096. emitl(A_JLE,elselabel)
  5097. else
  5098. emitl(jmp_lee,elselabel);
  5099. end
  5100. { if there is no unused label between the last and the }
  5101. { present label then the lower limit can be checked }
  5102. { immediately. else check the range in between: }
  5103. else if (t^._low-last>1)then
  5104. begin
  5105. if t^._low-last-1=1 then
  5106. exprasmlist^.concat(new(pai386,op_reg(A_DEC,opsize,hregister)))
  5107. else
  5108. exprasmlist^.concat(new(pai386,op_const_reg(A_SUB,opsize,t^._low-last-1,hregister)));
  5109. emitl(jmp_lee,elselabel);
  5110. end;
  5111. exprasmlist^.concat(new(pai386,op_const_reg(A_SUB,opsize,t^._high-t^._low+1,hregister)));
  5112. emitl(jmp_lee,t^.statement);
  5113. last:=t^._high;
  5114. end;
  5115. first:=false;
  5116. if assigned(t^.greater) then
  5117. genitem(t^.greater);
  5118. end;
  5119. var
  5120. hr : tregister;
  5121. begin
  5122. { case register is modified by the list evalution }
  5123. if (p^.left^.location.loc=LOC_CREGISTER) then
  5124. begin
  5125. hr:=getregister32;
  5126. case opsize of
  5127. S_B : hregister:=reg32toreg8(hr);
  5128. S_W : hregister:=reg32toreg16(hr);
  5129. S_L : hregister:=hr;
  5130. end;
  5131. end;
  5132. last:=0;
  5133. first:=true;
  5134. genitem(hp);
  5135. emitl(A_JMP,elselabel);
  5136. end;
  5137. procedure genjumptable(hp : pcaserecord;min_,max_ : longint);
  5138. var
  5139. table : plabel;
  5140. last : longint;
  5141. hr : preference;
  5142. procedure genitem(t : pcaserecord);
  5143. var
  5144. i : longint;
  5145. begin
  5146. if assigned(t^.less) then
  5147. genitem(t^.less);
  5148. { fill possible hole }
  5149. for i:=last+1 to t^._low-1 do
  5150. jumpsegment^.concat(new(pai_const,init_symbol(strpnew(lab2str
  5151. (elselabel)))));
  5152. for i:=t^._low to t^._high do
  5153. jumpsegment^.concat(new(pai_const,init_symbol(strpnew(lab2str
  5154. (t^.statement)))));
  5155. last:=t^._high;
  5156. if assigned(t^.greater) then
  5157. genitem(t^.greater);
  5158. end;
  5159. begin
  5160. if not(jumptable_no_range) then
  5161. begin
  5162. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,min_,hregister)));
  5163. { case expr less than min_ => goto elselabel }
  5164. emitl(jmp_le,elselabel);
  5165. exprasmlist^.concat(new(pai386,op_const_reg(A_CMP,opsize,max_,hregister)));
  5166. emitl(jmp_gt,elselabel);
  5167. end;
  5168. getlabel(table);
  5169. { extend with sign }
  5170. if opsize=S_W then
  5171. begin
  5172. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_WL,hregister,
  5173. reg16toreg32(hregister))));
  5174. hregister:=reg16toreg32(hregister);
  5175. end
  5176. else if opsize=S_B then
  5177. begin
  5178. exprasmlist^.concat(new(pai386,op_reg_reg(A_MOVZX,S_BL,hregister,
  5179. reg8toreg32(hregister))));
  5180. hregister:=reg8toreg32(hregister);
  5181. end;
  5182. new(hr);
  5183. reset_reference(hr^);
  5184. hr^.symbol:=stringdup(lab2str(table));
  5185. hr^.offset:=(-min_)*4;
  5186. hr^.index:=hregister;
  5187. hr^.scalefactor:=4;
  5188. exprasmlist^.concat(new(pai386,op_ref(A_JMP,S_NO,hr)));
  5189. { !!!!! generate tables
  5190. if not(cs_littlesize in aktswitches^ ) then
  5191. jumpsegment^.concat(new(pai386,op_const(A_ALIGN,S_NO,4)));
  5192. }
  5193. jumpsegment^.concat(new(pai_label,init(table)));
  5194. last:=min_;
  5195. genitem(hp);
  5196. { !!!!!!!
  5197. if not(cs_littlesize in aktswitches^ ) then
  5198. exprasmlist^.concat(new(pai386,op_const(A_ALIGN,S_NO,4)));
  5199. }
  5200. end;
  5201. var
  5202. lv,hv,min_label,max_label,labels : longint;
  5203. max_linear_list : longint;
  5204. begin
  5205. getlabel(endlabel);
  5206. getlabel(elselabel);
  5207. if (cs_smartlink in aktswitches) then
  5208. jumpsegment:=procinfo.aktlocaldata
  5209. else
  5210. jumpsegment:=datasegment;
  5211. with_sign:=is_signed(p^.left^.resulttype);
  5212. if with_sign then
  5213. begin
  5214. jmp_gt:=A_JG;
  5215. jmp_le:=A_JL;
  5216. jmp_lee:=A_JLE;
  5217. end
  5218. else
  5219. begin
  5220. jmp_gt:=A_JA;
  5221. jmp_le:=A_JB;
  5222. jmp_lee:=A_JBE;
  5223. end;
  5224. cleartempgen;
  5225. secondpass(p^.left);
  5226. { determines the size of the operand }
  5227. { determines the size of the operand }
  5228. opsize:=bytes2Sxx[p^.left^.resulttype^.size];
  5229. { copy the case expression to a register }
  5230. { copy the case expression to a register }
  5231. case p^.left^.location.loc of
  5232. LOC_REGISTER,
  5233. LOC_CREGISTER:
  5234. hregister:=p^.left^.location.register;
  5235. LOC_MEM,LOC_REFERENCE : begin
  5236. del_reference(p^.left^.location.reference);
  5237. hregister:=getregister32;
  5238. case opsize of
  5239. S_B : hregister:=reg32toreg8(hregister);
  5240. S_W : hregister:=reg32toreg16(hregister);
  5241. end;
  5242. exprasmlist^.concat(new(pai386,op_ref_reg(A_MOV,opsize,newreference(
  5243. p^.left^.location.reference),hregister)));
  5244. end;
  5245. else internalerror(2002);
  5246. end;
  5247. { now generate the jumps }
  5248. if cs_optimize in aktswitches then
  5249. begin
  5250. { procedures are empirically passed on }
  5251. { consumption can also be calculated }
  5252. { but does it pay on the different }
  5253. { processors? }
  5254. { moreover can the size only be appro- }
  5255. { ximated as it is not known if rel8, }
  5256. { rel16 or rel32 jumps are used }
  5257. min_label:=case_get_min(p^.nodes);
  5258. max_label:=case_get_max(p^.nodes);
  5259. labels:=case_count_labels(p^.nodes);
  5260. { can we omit the range check of the jump table }
  5261. getrange(p^.left^.resulttype,lv,hv);
  5262. jumptable_no_range:=(lv=min_label) and (hv=max_label);
  5263. { optimize for size ? }
  5264. if cs_littlesize in aktswitches then
  5265. begin
  5266. if (labels<=2) or ((max_label-min_label)>3*labels) then
  5267. { a linear list is always smaller than a jump tree }
  5268. genlinearlist(p^.nodes)
  5269. else
  5270. { if the labels less or more a continuum then }
  5271. genjumptable(p^.nodes,min_label,max_label);
  5272. end
  5273. else
  5274. begin
  5275. if jumptable_no_range then
  5276. max_linear_list:=4
  5277. else
  5278. max_linear_list:=2;
  5279. { a jump table crashes the pipeline! }
  5280. if aktoptprocessor=i486 then
  5281. inc(max_linear_list,3);
  5282. if aktoptprocessor=pentium then
  5283. inc(max_linear_list,6);
  5284. if aktoptprocessor>=pentiumpro then
  5285. inc(max_linear_list,9);
  5286. if (labels<=max_linear_list) then
  5287. genlinearlist(p^.nodes)
  5288. else
  5289. begin
  5290. if ((max_label-min_label)>4*labels) then
  5291. begin
  5292. if labels>16 then
  5293. gentreejmp(p^.nodes)
  5294. else
  5295. genlinearlist(p^.nodes);
  5296. end
  5297. else
  5298. genjumptable(p^.nodes,min_label,max_label);
  5299. end;
  5300. end;
  5301. end
  5302. else
  5303. { it's always not bad }
  5304. genlinearlist(p^.nodes);
  5305. { now generate the instructions }
  5306. hp:=p^.right;
  5307. while assigned(hp) do
  5308. begin
  5309. cleartempgen;
  5310. secondpass(hp^.right);
  5311. emitl(A_JMP,endlabel);
  5312. hp:=hp^.left;
  5313. end;
  5314. emitl(A_LABEL,elselabel);
  5315. { ...and the else block }
  5316. if assigned(p^.elseblock) then
  5317. begin
  5318. cleartempgen;
  5319. secondpass(p^.elseblock);
  5320. end;
  5321. emitl(A_LABEL,endlabel);
  5322. end;
  5323. { generates the code for a raise statement }
  5324. procedure secondraise(var p : ptree);
  5325. var
  5326. a : plabel;
  5327. begin
  5328. if assigned(p^.left) then
  5329. begin
  5330. { generate the address }
  5331. if assigned(p^.right) then
  5332. begin
  5333. secondpass(p^.right);
  5334. if codegenerror then
  5335. exit;
  5336. end
  5337. else
  5338. begin
  5339. getlabel(a);
  5340. emitl(A_LABEL,a);
  5341. exprasmlist^.concat(new(pai386,
  5342. op_csymbol(A_PUSH,S_L,newcsymbol(lab2str(a),0))));
  5343. end;
  5344. secondpass(p^.left);
  5345. if codegenerror then
  5346. exit;
  5347. case p^.left^.location.loc of
  5348. LOC_MEM,LOC_REFERENCE : emitpushreferenceaddr(p^.left^.location.reference);
  5349. LOC_CREGISTER,LOC_REGISTER : exprasmlist^.concat(new(pai386,op_reg(A_PUSH,S_L,
  5350. p^.left^.location.register)));
  5351. else Message(sym_e_type_mismatch);
  5352. end;
  5353. emitcall('DO_RAISE',true);
  5354. end
  5355. else
  5356. emitcall('DO_RERAISE',true);
  5357. end;
  5358. procedure secondtryexcept(var p : ptree);
  5359. begin
  5360. end;
  5361. procedure secondtryfinally(var p : ptree);
  5362. begin
  5363. end;
  5364. procedure secondfail(var p : ptree);
  5365. var hp : preference;
  5366. begin
  5367. {if procinfo.exceptions then
  5368. aktproccode.concat(gennasmrec(CALL,S_NO,'HELP_DESTRUCTOR_E'))
  5369. else }
  5370. { we should know if the constructor is called with a new or not,
  5371. how can we do that ???
  5372. exprasmlist^.concat(new(pai386,op_csymbol(A_CALL,S_NO,newcsymbol('HELP_DESTRUCTOR',0))));
  5373. }
  5374. exprasmlist^.concat(new(pai386,op_reg_reg(A_XOR,S_L,R_ESI,R_ESI)));
  5375. { also reset to zero in the stack }
  5376. new(hp);
  5377. reset_reference(hp^);
  5378. hp^.offset:=procinfo.ESI_offset;
  5379. hp^.base:=procinfo.framepointer;
  5380. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,R_ESI,hp)));
  5381. exprasmlist^.concat(new(pai_labeled,init(A_JMP,quickexitlabel)));
  5382. end;
  5383. procedure secondwith(var p : ptree);
  5384. var
  5385. ref : treference;
  5386. symtable : psymtable;
  5387. i : longint;
  5388. begin
  5389. if assigned(p^.left) then
  5390. begin
  5391. secondpass(p^.left);
  5392. ref.symbol:=nil;
  5393. gettempofsizereference(4,ref);
  5394. exprasmlist^.concat(new(pai386,op_ref_reg(A_LEA,S_L,
  5395. newreference(p^.left^.location.reference),R_EDI)));
  5396. exprasmlist^.concat(new(pai386,op_reg_ref(A_MOV,S_L,
  5397. R_EDI,newreference(ref))));
  5398. del_reference(p^.left^.location.reference);
  5399. { the offset relative to (%ebp) is only needed here! }
  5400. symtable:=p^.withsymtable;
  5401. for i:=1 to p^.tablecount do
  5402. begin
  5403. symtable^.datasize:=ref.offset;
  5404. symtable:=symtable^.next;
  5405. end;
  5406. { p^.right can be optimize out !!! }
  5407. if p^.right<>nil then
  5408. secondpass(p^.right);
  5409. { clear some stuff }
  5410. ungetiftemp(ref);
  5411. end;
  5412. end;
  5413. { implementation not complete yet }
  5414. var addr_correction : longint;
  5415. procedure correct_address(p : psym);
  5416. begin
  5417. if p^.typ=varsym then
  5418. begin
  5419. inc(pvarsym(p)^.address,addr_correction);
  5420. {$ifdef extdebug}
  5421. Comment(V_debug,pvarsym(p)^.name+' is at offset -'
  5422. +tostr(pvarsym(p)^.address));
  5423. exprasmlist^.concat(new(pai_asm_comment,init(
  5424. strpnew(pvarsym(p)^.name+' is at offset -'
  5425. +tostr(pvarsym(p)^.address)))));
  5426. {$endif extdebug}
  5427. end;
  5428. end;
  5429. procedure secondprocinline(var p : ptree);
  5430. var st : psymtable;
  5431. oldprocsym : pprocsym;
  5432. para_size : longint;
  5433. oldprocinfo : tprocinfo;
  5434. { just dummies for genentrycode }
  5435. nostackframe,make_global : boolean;
  5436. proc_names : tstringcontainer;
  5437. inlineentrycode,inlineexitcode : paasmoutput;
  5438. oldexitlabel,oldexit2label,oldquickexitlabel:Plabel;
  5439. begin
  5440. oldexitlabel:=aktexitlabel;
  5441. oldexit2label:=aktexit2label;
  5442. oldquickexitlabel:=quickexitlabel;
  5443. getlabel(aktexitlabel);
  5444. getlabel(aktexit2label);
  5445. oldprocsym:=aktprocsym;
  5446. oldprocinfo:=procinfo;
  5447. { set the return value }
  5448. procinfo.retdef:=p^.inlineprocdef^.retdef;
  5449. procinfo.retoffset:=p^.retoffset;
  5450. { arg space has been filled by the parent secondcall }
  5451. st:=p^.inlineprocdef^.localst;
  5452. { set it to the same lexical level }
  5453. st^.symtablelevel:=
  5454. oldprocsym^.definition^.localst^.symtablelevel;
  5455. if st^.datasize>0 then
  5456. st^.call_offset:=gettempofsizepersistant(st^.datasize);
  5457. {$ifdef extdebug}
  5458. Comment(V_debug,'local symtable is at offset '
  5459. +tostr(st^.call_offset));
  5460. exprasmlist^.concat(new(pai_asm_comment,init(
  5461. strpnew('local symtable is at offset '
  5462. +tostr(st^.call_offset)))));
  5463. {$endif extdebug}
  5464. addr_correction:=-st^.call_offset-st^.datasize;
  5465. st^.foreach(correct_address);
  5466. {$ifdef extdebug}
  5467. exprasmlist^.concat(new(pai_asm_comment,init('Start of inlined proc')));
  5468. {$endif extdebug}
  5469. { takes care of local data initialization }
  5470. inlineentrycode:=new(paasmoutput,init);
  5471. inlineexitcode:=new(paasmoutput,init);
  5472. proc_names.init;
  5473. para_size:=p^.para_size;
  5474. genentrycode(inlineentrycode,proc_names,make_global,
  5475. 0,para_size,nostackframe,true);
  5476. exprasmlist^.concatlist(inlineentrycode);
  5477. secondpass(p^.left);
  5478. genexitcode(inlineexitcode,0,false,true);
  5479. exprasmlist^.concatlist(inlineexitcode);
  5480. {$ifdef extdebug}
  5481. exprasmlist^.concat(new(pai_asm_comment,init('End of inlined proc')));
  5482. {$endif extdebug}
  5483. {we can free the local data now }
  5484. if st^.datasize>0 then
  5485. ungetpersistanttemp(st^.call_offset,st^.datasize);
  5486. { set the real address again }
  5487. addr_correction:=-addr_correction;
  5488. st^.foreach(correct_address);
  5489. aktprocsym:=oldprocsym;
  5490. aktexitlabel:=oldexitlabel;
  5491. aktexit2label:=oldexit2label;
  5492. quickexitlabel:=oldquickexitlabel;
  5493. procinfo:=oldprocinfo;
  5494. end;
  5495. procedure secondpass(var p : ptree);
  5496. const
  5497. procedures : array[ttreetyp] of secondpassproc =
  5498. (secondadd,secondadd,secondadd,secondmoddiv,secondadd,
  5499. secondmoddiv,secondassignment,secondload,secondnothing,
  5500. secondadd,secondadd,secondadd,secondadd,
  5501. secondadd,secondadd,secondin,secondadd,
  5502. secondadd,secondshlshr,secondshlshr,secondadd,
  5503. secondadd,secondsubscriptn,secondderef,secondaddr,
  5504. seconddoubleaddr,
  5505. secondordconst,secondtypeconv,secondcalln,secondnothing,
  5506. secondrealconst,secondfixconst,secondumminus,
  5507. secondasm,secondvecn,
  5508. secondstringconst,secondfuncret,secondselfn,
  5509. secondnot,secondinline,secondniln,seconderror,
  5510. secondnothing,secondhnewn,secondhdisposen,secondnewn,
  5511. secondsimplenewdispose,secondnothing,secondsetcons,secondblockn,
  5512. secondstatement,secondnothing,secondifn,secondbreakn,
  5513. secondcontinuen,second_while_repeatn,second_while_repeatn,secondfor,
  5514. secondexitn,secondwith,secondcase,secondlabel,
  5515. secondgoto,secondsimplenewdispose,secondtryexcept,secondraise,
  5516. secondnothing,secondtryfinally,secondis,secondas,seconderror,
  5517. secondfail,secondadd,secondprocinline,
  5518. secondnothing,secondloadvmt);
  5519. var
  5520. oldcodegenerror : boolean;
  5521. oldswitches : Tcswitches;
  5522. oldis : pinputfile;
  5523. oldnr : longint;
  5524. begin
  5525. oldcodegenerror:=codegenerror;
  5526. oldswitches:=aktswitches;
  5527. oldis:=current_module^.current_inputfile;
  5528. oldnr:=current_module^.current_inputfile^.line_no;
  5529. codegenerror:=false;
  5530. current_module^.current_inputfile:=
  5531. pinputfile(current_module^.sourcefiles.get_file(p^.fileinfo.fileindex));
  5532. current_module^.current_inputfile^.line_no:=p^.fileinfo.line;
  5533. aktswitches:=p^.pragmas;
  5534. if not(p^.error) then
  5535. begin
  5536. procedures[p^.treetype](p);
  5537. p^.error:=codegenerror;
  5538. codegenerror:=codegenerror or oldcodegenerror;
  5539. end
  5540. else
  5541. codegenerror:=true;
  5542. aktswitches:=oldswitches;
  5543. current_module^.current_inputfile:=oldis;
  5544. current_module^.current_inputfile^.line_no:=oldnr;
  5545. end;
  5546. function do_secondpass(var p : ptree) : boolean;
  5547. begin
  5548. codegenerror:=false;
  5549. if not(p^.error) then
  5550. secondpass(p);
  5551. do_secondpass:=codegenerror;
  5552. end;
  5553. var
  5554. regvars : array[1..maxvarregs] of pvarsym;
  5555. regvars_para : array[1..maxvarregs] of boolean;
  5556. regvars_refs : array[1..maxvarregs] of longint;
  5557. parasym : boolean;
  5558. procedure searchregvars(p : psym);
  5559. var
  5560. i,j,k : longint;
  5561. begin
  5562. if (p^.typ=varsym) and (pvarsym(p)^.regable) then
  5563. begin
  5564. { walk through all momentary register variables }
  5565. for i:=1 to maxvarregs do
  5566. begin
  5567. { free register ? }
  5568. if regvars[i]=nil then
  5569. begin
  5570. regvars[i]:=pvarsym(p);
  5571. regvars_para[i]:=parasym;
  5572. break;
  5573. end;
  5574. { else throw out a variable ? }
  5575. j:=pvarsym(p)^.refs;
  5576. { parameter get a less value }
  5577. if parasym then
  5578. begin
  5579. if cs_littlesize in aktswitches then
  5580. dec(j,1)
  5581. else
  5582. dec(j,100);
  5583. end;
  5584. if (j>regvars_refs[i]) and (j>0) then
  5585. begin
  5586. for k:=maxvarregs-1 downto i do
  5587. begin
  5588. regvars[k+1]:=regvars[k];
  5589. regvars_para[k+1]:=regvars_para[k];
  5590. end;
  5591. { calc the new refs
  5592. pvarsym(p)^.refs:=j; }
  5593. regvars[i]:=pvarsym(p);
  5594. regvars_para[i]:=parasym;
  5595. regvars_refs[i]:=j;
  5596. break;
  5597. end;
  5598. end;
  5599. end;
  5600. end;
  5601. procedure generatecode(var p : ptree);
  5602. var
  5603. { *pass modifies with every node aktlinenr and current_module^.current_inputfile, }
  5604. { to constantly contain the right line numbers }
  5605. oldis : pinputfile;
  5606. oldnr,i : longint;
  5607. regsize : topsize;
  5608. regi : tregister;
  5609. hr : preference;
  5610. label
  5611. nextreg;
  5612. begin
  5613. cleartempgen;
  5614. oldis:=current_module^.current_inputfile;
  5615. oldnr:=current_module^.current_inputfile^.line_no;
  5616. { when size optimization only count occurrence }
  5617. if cs_littlesize in aktswitches then
  5618. t_times:=1
  5619. else
  5620. { reference for repetition is 100 }
  5621. t_times:=100;
  5622. { clear register count }
  5623. {$ifdef SUPPORT_MMX}
  5624. for regi:=R_EAX to R_MM6 do
  5625. begin
  5626. reg_pushes[regi]:=0;
  5627. is_reg_var[regi]:=false;
  5628. end;
  5629. {$else SUPPORT_MMX}
  5630. for regi:=R_EAX to R_EDI do
  5631. begin
  5632. reg_pushes[regi]:=0;
  5633. is_reg_var[regi]:=false;
  5634. end;
  5635. {$endif SUPPORT_MMX}
  5636. use_esp_stackframe:=false;
  5637. if not(do_firstpass(p)) then
  5638. begin
  5639. { max. optimizations }
  5640. { only if no asm is used }
  5641. if (cs_maxoptimieren in aktswitches) and
  5642. ((procinfo.flags and pi_uses_asm)=0) then
  5643. begin
  5644. { can we omit the stack frame ? }
  5645. { conditions:
  5646. 1. procedure (not main block)
  5647. 2. no constructor or destructor
  5648. 3. no call to other procedures
  5649. 4. no interrupt handler
  5650. }
  5651. if assigned(aktprocsym) then
  5652. begin
  5653. if (aktprocsym^.definition^.options and
  5654. poconstructor+podestructor{+poinline}+pointerrupt=0) and
  5655. ((procinfo.flags and pi_do_call)=0) and (lexlevel>1) then
  5656. begin
  5657. { use ESP as frame pointer }
  5658. procinfo.framepointer:=R_ESP;
  5659. use_esp_stackframe:=true;
  5660. { calc parameter distance new }
  5661. dec(procinfo.framepointer_offset,4);
  5662. dec(procinfo.ESI_offset,4);
  5663. { is this correct ???}
  5664. { retoffset can be negativ for results in eax !! }
  5665. { the value should be decreased only if positive }
  5666. if procinfo.retoffset>=0 then
  5667. dec(procinfo.retoffset,4);
  5668. dec(procinfo.call_offset,4);
  5669. aktprocsym^.definition^.parast^.call_offset:=procinfo.call_offset;
  5670. end;
  5671. end;
  5672. if (p^.registers32<4) then
  5673. begin
  5674. for i:=1 to maxvarregs do
  5675. regvars[i]:=nil;
  5676. parasym:=false;
  5677. {$ifdef tp}
  5678. symtablestack^.foreach(searchregvars);
  5679. {$else}
  5680. symtablestack^.foreach(@searchregvars);
  5681. {$endif}
  5682. { copy parameter into a register ? }
  5683. parasym:=true;
  5684. {$ifdef tp}
  5685. symtablestack^.next^.foreach(searchregvars);
  5686. {$else}
  5687. symtablestack^.next^.foreach(@searchregvars);
  5688. {$endif}
  5689. { hold needed registers free }
  5690. for i:=maxvarregs downto maxvarregs-p^.registers32+1 do
  5691. regvars[i]:=nil;
  5692. { now assign register }
  5693. for i:=1 to maxvarregs-p^.registers32 do
  5694. begin
  5695. if assigned(regvars[i]) then
  5696. begin
  5697. { it is nonsens, to copy the variable to }
  5698. { a register because we need then much }
  5699. { pushes ? }
  5700. if reg_pushes[varregs[i]]>=regvars[i]^.refs then
  5701. begin
  5702. regvars[i]:=nil;
  5703. goto nextreg;
  5704. end;
  5705. { register is no longer available for }
  5706. { expressions }
  5707. { search the register which is the most }
  5708. { unused }
  5709. usableregs:=usableregs-[varregs[i]];
  5710. is_reg_var[varregs[i]]:=true;
  5711. dec(c_usableregs);
  5712. { possibly no 32 bit register are needed }
  5713. if (regvars[i]^.definition^.deftype=orddef) and
  5714. (
  5715. (porddef(regvars[i]^.definition)^.typ=bool8bit) or
  5716. (porddef(regvars[i]^.definition)^.typ=uchar) or
  5717. (porddef(regvars[i]^.definition)^.typ=u8bit) or
  5718. (porddef(regvars[i]^.definition)^.typ=s8bit)
  5719. ) then
  5720. begin
  5721. regvars[i]^.reg:=reg32toreg8(varregs[i]);
  5722. regsize:=S_B;
  5723. end
  5724. else if (regvars[i]^.definition^.deftype=orddef) and
  5725. (
  5726. (porddef(regvars[i]^.definition)^.typ=u16bit) or
  5727. (porddef(regvars[i]^.definition)^.typ=s16bit)
  5728. ) then
  5729. begin
  5730. regvars[i]^.reg:=reg32toreg16(varregs[i]);
  5731. regsize:=S_W;
  5732. end
  5733. else
  5734. begin
  5735. regvars[i]^.reg:=varregs[i];
  5736. regsize:=S_L;
  5737. end;
  5738. { parameter must be load }
  5739. if regvars_para[i] then
  5740. begin
  5741. { procinfo is there actual, }
  5742. { because we can't never be in a }
  5743. { nested procedure }
  5744. { when loading parameter to reg }
  5745. new(hr);
  5746. reset_reference(hr^);
  5747. hr^.offset:=pvarsym(regvars[i])^.address+procinfo.call_offset;
  5748. hr^.base:=procinfo.framepointer;
  5749. procinfo.aktentrycode^.concat(new(pai386,op_ref_reg(A_MOV,regsize,
  5750. hr,regvars[i]^.reg)));
  5751. unused:=unused - [regvars[i]^.reg];
  5752. end;
  5753. { procedure uses this register }
  5754. usedinproc:=usedinproc or ($80 shr byte(varregs[i]));
  5755. end;
  5756. nextreg:
  5757. { dummy }
  5758. regsize:=S_W;
  5759. end;
  5760. if (verbosity and v_debug)=v_debug then
  5761. begin
  5762. for i:=1 to maxvarregs do
  5763. begin
  5764. if assigned(regvars[i]) then
  5765. Message3(cg_d_register_weight,reg2str(regvars[i]^.reg),
  5766. tostr(regvars[i]^.refs),regvars[i]^.name);
  5767. end;
  5768. end;
  5769. end;
  5770. end;
  5771. do_secondpass(p);
  5772. {$ifdef StoreFPULevel}
  5773. if assigned(aktprocsym) then
  5774. aktprocsym^.fpu_used:=p^.registersfpu;
  5775. {$endif StoreFPULevel}
  5776. { all registers can be used again }
  5777. usableregs:=[R_EAX,R_EBX,R_ECX,R_EDX];
  5778. {$ifdef SUPPORT_MMX}
  5779. usableregs:=usableregs+[R_MM0..R_MM6];
  5780. {$endif SUPPORT_MMX}
  5781. c_usableregs:=4;
  5782. end;
  5783. procinfo.aktproccode^.concatlist(exprasmlist);
  5784. current_module^.current_inputfile:=oldis;
  5785. current_module^.current_inputfile^.line_no:=oldnr;
  5786. end;
  5787. end.
  5788. {
  5789. $Log$
  5790. Revision 1.28 1998-05-28 17:26:47 peter
  5791. * fixed -R switch, it didn't work after my previous akt/init patch
  5792. * fixed bugs 110,130,136
  5793. Revision 1.27 1998/05/25 17:11:38 pierre
  5794. * firstpasscount bug fixed
  5795. now all is already set correctly the first time
  5796. under EXTDEBUG try -gp to skip all other firstpasses
  5797. it works !!
  5798. * small bug fixes
  5799. - for smallsets with -dTESTSMALLSET
  5800. - some warnings removed (by correcting code !)
  5801. Revision 1.26 1998/05/23 01:21:03 peter
  5802. + aktasmmode, aktoptprocessor, aktoutputformat
  5803. + smartlink per module $SMARTLINK-/+ (like MMX) and moved to aktswitches
  5804. + $LIBNAME to set the library name where the unit will be put in
  5805. * splitted cgi386 a bit (codeseg to large for bp7)
  5806. * nasm, tasm works again. nasm moved to ag386nsm.pas
  5807. Revision 1.25 1998/05/21 19:33:31 peter
  5808. + better procedure directive handling and only one table
  5809. Revision 1.24 1998/05/20 09:42:33 pierre
  5810. + UseTokenInfo now default
  5811. * unit in interface uses and implementation uses gives error now
  5812. * only one error for unknown symbol (uses lastsymknown boolean)
  5813. the problem came from the label code !
  5814. + first inlined procedures and function work
  5815. (warning there might be allowed cases were the result is still wrong !!)
  5816. * UseBrower updated gives a global list of all position of all used symbols
  5817. with switch -gb
  5818. Revision 1.23 1998/05/12 10:46:58 peter
  5819. * moved printstatus to verb_def
  5820. + V_Normal which is between V_Error and V_Warning and doesn't have a
  5821. prefix like error: warning: and is included in V_Default
  5822. * fixed some messages
  5823. * first time parameter scan is only for -v and -T
  5824. - removed old style messages
  5825. Revision 1.22 1998/05/07 00:17:00 peter
  5826. * smartlinking for sets
  5827. + consts labels are now concated/generated in hcodegen
  5828. * moved some cpu code to cga and some none cpu depended code from cga
  5829. to tree and hcodegen and cleanup of hcodegen
  5830. * assembling .. output reduced for smartlinking ;)
  5831. Revision 1.21 1998/05/06 08:38:36 pierre
  5832. * better position info with UseTokenInfo
  5833. UseTokenInfo greatly simplified
  5834. + added check for changed tree after first time firstpass
  5835. (if we could remove all the cases were it happen
  5836. we could skip all firstpass if firstpasscount > 1)
  5837. Only with ExtDebug
  5838. Revision 1.20 1998/05/01 16:38:44 florian
  5839. * handling of private and protected fixed
  5840. + change_keywords_to_tp implemented to remove
  5841. keywords which aren't supported by tp
  5842. * break and continue are now symbols of the system unit
  5843. + widestring, longstring and ansistring type released
  5844. Revision 1.19 1998/04/30 15:59:39 pierre
  5845. * GDB works again better :
  5846. correct type info in one pass
  5847. + UseTokenInfo for better source position
  5848. * fixed one remaining bug in scanner for line counts
  5849. * several little fixes
  5850. Revision 1.18 1998/04/29 10:33:48 pierre
  5851. + added some code for ansistring (not complete nor working yet)
  5852. * corrected operator overloading
  5853. * corrected nasm output
  5854. + started inline procedures
  5855. + added starstarn : use ** for exponentiation (^ gave problems)
  5856. + started UseTokenInfo cond to get accurate positions
  5857. Revision 1.17 1998/04/27 23:10:27 peter
  5858. + new scanner
  5859. * $makelib -> if smartlink
  5860. * small filename fixes pmodule.setfilename
  5861. * moved import from files.pas -> import.pas
  5862. Revision 1.16 1998/04/23 21:52:08 florian
  5863. * fixes of Jonas applied
  5864. Revision 1.15 1998/04/22 21:06:49 florian
  5865. * last fixes before the release:
  5866. - veryyyy slow firstcall fixed
  5867. Revision 1.14 1998/04/21 10:16:47 peter
  5868. * patches from strasbourg
  5869. * objects is not used anymore in the fpc compiled version
  5870. Revision 1.13 1998/04/14 23:27:02 florian
  5871. + exclude/include with constant second parameter added
  5872. Revision 1.12 1998/04/13 21:15:41 florian
  5873. * error handling of pass_1 and cgi386 fixed
  5874. * the following bugs fixed: 0117, 0118, 0119 and 0129, 0122 was already
  5875. fixed, verified
  5876. Revision 1.11 1998/04/13 08:42:51 florian
  5877. * call by reference and call by value open arrays fixed
  5878. Revision 1.10 1998/04/12 22:39:43 florian
  5879. * problem with read access to properties solved
  5880. * correct handling of hidding methods via virtual (COM)
  5881. * correct result type of constructor calls (COM), the resulttype
  5882. depends now on the type of the class reference
  5883. Revision 1.9 1998/04/10 21:36:55 florian
  5884. + some stuff to support method pointers (procedure of object) added
  5885. (declaration, parameter handling)
  5886. Revision 1.8 1998/04/09 22:16:33 florian
  5887. * problem with previous REGALLOC solved
  5888. * improved property support
  5889. Revision 1.7 1998/04/09 14:28:05 jonas
  5890. + basic k6 and 6x86 optimizing support (-O7 and -O8)
  5891. Revision 1.6 1998/04/08 11:34:20 peter
  5892. * nasm works (linux only tested)
  5893. Revision 1.5 1998/04/07 22:45:04 florian
  5894. * bug0092, bug0115 and bug0121 fixed
  5895. + packed object/class/array
  5896. Revision 1.4 1998/04/07 13:19:42 pierre
  5897. * bugfixes for reset_gdb_info
  5898. in MEM parsing for go32v2
  5899. better external symbol creation
  5900. support for rhgdb.exe (lowercase file names)
  5901. }