cgbase.pas 21 KB

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  1. {
  2. Copyright (c) 1998-2002 by Florian Klaempfl
  3. Some basic types and constants for the code generation
  4. This program is free software; you can redistribute it and/or modify
  5. it under the terms of the GNU General Public License as published by
  6. the Free Software Foundation; either version 2 of the License, or
  7. (at your option) any later version.
  8. This program is distributed in the hope that it will be useful,
  9. but WITHOUT ANY WARRANTY; without even the implied warranty of
  10. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  11. GNU General Public License for more details.
  12. You should have received a copy of the GNU General Public License
  13. along with this program; if not, write to the Free Software
  14. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  15. ****************************************************************************
  16. }
  17. {# This unit exports some types which are used across the code generator }
  18. unit cgbase;
  19. {$i fpcdefs.inc}
  20. interface
  21. uses
  22. globtype,
  23. symconst;
  24. type
  25. { Location types where value can be stored }
  26. TCGLoc=(
  27. LOC_INVALID, { added for tracking problems}
  28. LOC_VOID, { no value is available }
  29. LOC_CONSTANT, { constant value }
  30. LOC_JUMP, { boolean results only, jump to false or true label }
  31. LOC_FLAGS, { boolean results only, flags are set }
  32. LOC_REGISTER, { in a processor register }
  33. LOC_CREGISTER, { Constant register which shouldn't be modified }
  34. LOC_FPUREGISTER, { FPU stack }
  35. LOC_CFPUREGISTER, { if it is a FPU register variable on the fpu stack }
  36. LOC_MMXREGISTER, { MMX register }
  37. { MMX register variable }
  38. LOC_CMMXREGISTER,
  39. { multimedia register }
  40. LOC_MMREGISTER,
  41. { Constant multimedia reg which shouldn't be modified }
  42. LOC_CMMREGISTER,
  43. { contiguous subset of bits of an integer register }
  44. LOC_SUBSETREG,
  45. LOC_CSUBSETREG,
  46. { contiguous subset of bits in memory }
  47. LOC_SUBSETREF,
  48. LOC_CSUBSETREF,
  49. { keep these last for range checking purposes }
  50. LOC_CREFERENCE, { in memory constant value reference (cannot change) }
  51. LOC_REFERENCE { in memory value }
  52. );
  53. TCGNonRefLoc=low(TCGLoc)..pred(LOC_CREFERENCE);
  54. TCGRefLoc=LOC_CREFERENCE..LOC_REFERENCE;
  55. { since we have only 16bit offsets, we need to be able to specify the high
  56. and lower 16 bits of the address of a symbol of up to 64 bit }
  57. trefaddr = (
  58. addr_no,
  59. addr_full,
  60. addr_pic,
  61. addr_pic_no_got
  62. {$IF defined(POWERPC) or defined(POWERPC64) or defined(SPARC) or defined(MIPS)}
  63. ,
  64. addr_low, // bits 48-63
  65. addr_high, // bits 32-47
  66. {$IF defined(POWERPC64)}
  67. addr_higher, // bits 16-31
  68. addr_highest, // bits 00-15
  69. {$ENDIF}
  70. addr_higha // bits 16-31, adjusted
  71. {$IF defined(POWERPC64)}
  72. ,
  73. addr_highera, // bits 32-47, adjusted
  74. addr_highesta // bits 48-63, adjusted
  75. {$ENDIF}
  76. {$ENDIF}
  77. );
  78. {# Generic opcodes, which must be supported by all processors
  79. }
  80. topcg =
  81. (
  82. OP_NONE,
  83. OP_MOVE, { replaced operation with direct load }
  84. OP_ADD, { simple addition }
  85. OP_AND, { simple logical and }
  86. OP_DIV, { simple unsigned division }
  87. OP_IDIV, { simple signed division }
  88. OP_IMUL, { simple signed multiply }
  89. OP_MUL, { simple unsigned multiply }
  90. OP_NEG, { simple negate }
  91. OP_NOT, { simple logical not }
  92. OP_OR, { simple logical or }
  93. OP_SAR, { arithmetic shift-right }
  94. OP_SHL, { logical shift left }
  95. OP_SHR, { logical shift right }
  96. OP_SUB, { simple subtraction }
  97. OP_XOR, { simple exclusive or }
  98. OP_ROL, { rotate left }
  99. OP_ROR { rotate right }
  100. );
  101. {# Generic flag values - used for jump locations }
  102. TOpCmp =
  103. (
  104. OC_NONE,
  105. OC_EQ, { equality comparison }
  106. OC_GT, { greater than (signed) }
  107. OC_LT, { less than (signed) }
  108. OC_GTE, { greater or equal than (signed) }
  109. OC_LTE, { less or equal than (signed) }
  110. OC_NE, { not equal }
  111. OC_BE, { less or equal than (unsigned) }
  112. OC_B, { less than (unsigned) }
  113. OC_AE, { greater or equal than (unsigned) }
  114. OC_A { greater than (unsigned) }
  115. );
  116. { OS_NO is also used memory references with large data that can
  117. not be loaded in a register directly }
  118. TCgSize = (OS_NO,
  119. { integer registers }
  120. OS_8,OS_16,OS_32,OS_64,OS_128,OS_S8,OS_S16,OS_S32,OS_S64,OS_S128,
  121. { single,double,extended,comp,float128 }
  122. OS_F32,OS_F64,OS_F80,OS_C64,OS_F128,
  123. { multi-media sizes: split in byte, word, dword, ... }
  124. { entities, then the signed counterparts }
  125. OS_M8,OS_M16,OS_M32,OS_M64,OS_M128,
  126. OS_MS8,OS_MS16,OS_MS32,OS_MS64,OS_MS128);
  127. { Register types }
  128. TRegisterType = (
  129. R_INVALIDREGISTER, { = 0 }
  130. R_INTREGISTER, { = 1 }
  131. R_FPUREGISTER, { = 2 }
  132. { used by Intel only }
  133. R_MMXREGISTER, { = 3 }
  134. R_MMREGISTER, { = 4 }
  135. R_SPECIALREGISTER, { = 5 }
  136. R_ADDRESSREGISTER, { = 6 }
  137. R_FLAGSREGISTER, { = 7 }
  138. R_AGGREGATEREGISTER { = 8 }
  139. );
  140. { Sub registers }
  141. TSubRegister = (
  142. R_SUBNONE, { = 0; no sub register possible }
  143. R_SUBL, { = 1; 8 bits, Like AL }
  144. R_SUBH, { = 2; 8 bits, Like AH }
  145. R_SUBW, { = 3; 16 bits, Like AX }
  146. R_SUBD, { = 4; 32 bits, Like EAX }
  147. R_SUBQ, { = 5; 64 bits, Like RAX }
  148. { For Sparc floats that use F0:F1 to store doubles }
  149. R_SUBFS, { = 6; Float that allocates 1 FPU register }
  150. R_SUBFD, { = 7; Float that allocates 2 FPU registers }
  151. R_SUBFQ, { = 8; Float that allocates 4 FPU registers }
  152. R_SUBMMS, { = 9; single scalar in multi media register }
  153. R_SUBMMD, { = 10; double scalar in multi media register }
  154. R_SUBMMWHOLE { = 11; complete MM register, size depends on CPU }
  155. );
  156. TSuperRegister = type word;
  157. {
  158. The new register coding:
  159. SuperRegister (bits 0..15)
  160. Subregister (bits 16..23)
  161. Register type (bits 24..31)
  162. TRegister is defined as an enum to make it incompatible
  163. with TSuperRegister to avoid mixing them
  164. }
  165. TRegister = (
  166. TRegisterLowEnum := Low(longint),
  167. TRegisterHighEnum := High(longint)
  168. );
  169. TRegisterRec=packed record
  170. {$ifdef FPC_BIG_ENDIAN}
  171. regtype : Tregistertype;
  172. subreg : Tsubregister;
  173. supreg : Tsuperregister;
  174. {$else FPC_BIG_ENDIAN}
  175. supreg : Tsuperregister;
  176. subreg : Tsubregister;
  177. regtype : Tregistertype;
  178. {$endif FPC_BIG_ENDIAN}
  179. end;
  180. { A type to store register locations for 64 Bit values. }
  181. {$ifdef cpu64bitalu}
  182. tregister64 = tregister;
  183. {$else cpu64bitalu}
  184. tregister64 = record
  185. reglo,reghi : tregister;
  186. end;
  187. {$endif cpu64bitalu}
  188. Tregistermmxset = record
  189. reg0,reg1,reg2,reg3:Tregister
  190. end;
  191. { Set type definition for registers }
  192. tcpuregisterset = set of byte;
  193. tsuperregisterset = array[byte] of set of byte;
  194. pmmshuffle = ^tmmshuffle;
  195. { this record describes shuffle operations for mm operations; if a pointer a shuffle record
  196. passed to an mm operation is nil, it means that the whole location is moved }
  197. tmmshuffle = record
  198. { describes how many shuffles are actually described, if len=0 then
  199. moving the scalar with index 0 to the scalar with index 0 is meant }
  200. len : byte;
  201. { lower nibble of each entry of this array describes index of the source data index while
  202. the upper nibble describes the destination index }
  203. shuffles : array[1..1] of byte;
  204. end;
  205. Tsuperregisterarray=array[0..$ffff] of Tsuperregister;
  206. Psuperregisterarray=^Tsuperregisterarray;
  207. Tsuperregisterworklist=object
  208. buflength,
  209. buflengthinc,
  210. length:word;
  211. buf:Psuperregisterarray;
  212. constructor init;
  213. constructor copyfrom(const x:Tsuperregisterworklist);
  214. destructor done;
  215. procedure clear;
  216. procedure add(s:tsuperregister);
  217. function addnodup(s:tsuperregister): boolean;
  218. function get:tsuperregister;
  219. function readidx(i:word):tsuperregister;
  220. procedure deleteidx(i:word);
  221. function delete(s:tsuperregister):boolean;
  222. end;
  223. psuperregisterworklist=^tsuperregisterworklist;
  224. const
  225. { alias for easier understanding }
  226. R_SSEREGISTER = R_MMREGISTER;
  227. { Invalid register number }
  228. RS_INVALID = high(tsuperregister);
  229. { Maximum number of cpu registers per register type,
  230. this must fit in tcpuregisterset }
  231. maxcpuregister = 32;
  232. tcgsize2size : Array[tcgsize] of integer =
  233. { integer values }
  234. (0,1,2,4,8,16,1,2,4,8,16,
  235. { floating point values }
  236. 4,8,10,8,16,
  237. { multimedia values }
  238. 1,2,4,8,16,1,2,4,8,16);
  239. tfloat2tcgsize: array[tfloattype] of tcgsize =
  240. (OS_F32,OS_F64,OS_F80,OS_F80,OS_C64,OS_C64,OS_F128);
  241. tcgsize2tfloat: array[OS_F32..OS_C64] of tfloattype =
  242. (s32real,s64real,s80real,s64comp);
  243. tvarregable2tcgloc : array[tvarregable] of tcgloc = (LOC_VOID,
  244. LOC_CREGISTER,LOC_CFPUREGISTER,LOC_CMMREGISTER,LOC_CREGISTER);
  245. { Table to convert tcgsize variables to the correspondending
  246. unsigned types }
  247. tcgsize2unsigned : array[tcgsize] of tcgsize = (OS_NO,
  248. OS_8,OS_16,OS_32,OS_64,OS_128,OS_8,OS_16,OS_32,OS_64,OS_128,
  249. OS_F32,OS_F64,OS_F80,OS_C64,OS_F128,
  250. OS_M8,OS_M16,OS_M32,OS_M64,OS_M128,OS_M8,OS_M16,OS_M32,
  251. OS_M64,OS_M128);
  252. tcgloc2str : array[TCGLoc] of string[12] = (
  253. 'LOC_INVALID',
  254. 'LOC_VOID',
  255. 'LOC_CONST',
  256. 'LOC_JUMP',
  257. 'LOC_FLAGS',
  258. 'LOC_REG',
  259. 'LOC_CREG',
  260. 'LOC_FPUREG',
  261. 'LOC_CFPUREG',
  262. 'LOC_MMXREG',
  263. 'LOC_CMMXREG',
  264. 'LOC_MMREG',
  265. 'LOC_CMMREG',
  266. 'LOC_SSETREG',
  267. 'LOC_CSSETREG',
  268. 'LOC_SSETREF',
  269. 'LOC_CSSETREF',
  270. 'LOC_CREF',
  271. 'LOC_REF'
  272. );
  273. var
  274. mms_movescalar : pmmshuffle;
  275. procedure supregset_reset(var regs:tsuperregisterset;setall:boolean;
  276. maxreg:Tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  277. procedure supregset_include(var regs:tsuperregisterset;s:tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  278. procedure supregset_exclude(var regs:tsuperregisterset;s:tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  279. function supregset_in(const regs:tsuperregisterset;s:tsuperregister):boolean;{$ifdef USEINLINE}inline;{$endif}
  280. function newreg(rt:tregistertype;sr:tsuperregister;sb:tsubregister):tregister;{$ifdef USEINLINE}inline;{$endif}
  281. function getsubreg(r:tregister):tsubregister;{$ifdef USEINLINE}inline;{$endif}
  282. function getsupreg(r:tregister):tsuperregister;{$ifdef USEINLINE}inline;{$endif}
  283. function getregtype(r:tregister):tregistertype;{$ifdef USEINLINE}inline;{$endif}
  284. procedure setsubreg(var r:tregister;sr:tsubregister);{$ifdef USEINLINE}inline;{$endif}
  285. procedure setsupreg(var r:tregister;sr:tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  286. function generic_regname(r:tregister):string;
  287. function isaddressregister(reg : tregister) : boolean; {$ifdef USEINLINE} inline; {$endif}
  288. {# From a constant numeric value, return the abstract code generator
  289. size.
  290. }
  291. function int_cgsize(const a: aint): tcgsize;{$ifdef USEINLINE}inline;{$endif}
  292. function int_float_cgsize(const a: aint): tcgsize;
  293. { return the inverse condition of opcmp }
  294. function inverse_opcmp(opcmp: topcmp): topcmp;{$ifdef USEINLINE}inline;{$endif}
  295. { return the opcmp needed when swapping the operands }
  296. function swap_opcmp(opcmp: topcmp): topcmp;{$ifdef USEINLINE}inline;{$endif}
  297. { return whether op is commutative }
  298. function commutativeop(op: topcg): boolean;{$ifdef USEINLINE}inline;{$endif}
  299. { returns true, if shuffle describes a real shuffle operation and not only a move }
  300. function realshuffle(shuffle : pmmshuffle) : boolean;
  301. { returns true, if the shuffle describes only a move of the scalar at index 0 }
  302. function shufflescalar(shuffle : pmmshuffle) : boolean;
  303. { removes shuffling from shuffle, this means that the destenation index of each shuffle is copied to
  304. the source }
  305. procedure removeshuffles(var shuffle : tmmshuffle);
  306. implementation
  307. uses
  308. verbose;
  309. {******************************************************************************
  310. tsuperregisterworklist
  311. ******************************************************************************}
  312. constructor tsuperregisterworklist.init;
  313. begin
  314. length:=0;
  315. buflength:=0;
  316. buflengthinc:=16;
  317. buf:=nil;
  318. end;
  319. constructor Tsuperregisterworklist.copyfrom(const x:Tsuperregisterworklist);
  320. begin
  321. self:=x;
  322. if x.buf<>nil then
  323. begin
  324. getmem(buf,buflength*sizeof(Tsuperregister));
  325. move(x.buf^,buf^,length*sizeof(Tsuperregister));
  326. end;
  327. end;
  328. destructor tsuperregisterworklist.done;
  329. begin
  330. if assigned(buf) then
  331. freemem(buf);
  332. end;
  333. procedure tsuperregisterworklist.add(s:tsuperregister);
  334. begin
  335. inc(length);
  336. { Need to increase buffer length? }
  337. if length>=buflength then
  338. begin
  339. inc(buflength,buflengthinc);
  340. buflengthinc:=buflengthinc*2;
  341. if buflengthinc>256 then
  342. buflengthinc:=256;
  343. reallocmem(buf,buflength*sizeof(Tsuperregister));
  344. end;
  345. buf^[length-1]:=s;
  346. end;
  347. function tsuperregisterworklist.addnodup(s:tsuperregister): boolean;
  348. begin
  349. addnodup := false;
  350. if indexword(buf^,length,s) = -1 then
  351. begin
  352. add(s);
  353. addnodup := true;
  354. end;
  355. end;
  356. procedure tsuperregisterworklist.clear;
  357. begin
  358. length:=0;
  359. end;
  360. procedure tsuperregisterworklist.deleteidx(i:word);
  361. begin
  362. if i>=length then
  363. internalerror(200310144);
  364. buf^[i]:=buf^[length-1];
  365. dec(length);
  366. end;
  367. function tsuperregisterworklist.readidx(i:word):tsuperregister;
  368. begin
  369. if (i >= length) then
  370. internalerror(2005010601);
  371. result := buf^[i];
  372. end;
  373. function tsuperregisterworklist.get:tsuperregister;
  374. begin
  375. if length=0 then
  376. internalerror(200310142);
  377. get:=buf^[0];
  378. buf^[0]:=buf^[length-1];
  379. dec(length);
  380. end;
  381. function tsuperregisterworklist.delete(s:tsuperregister):boolean;
  382. var
  383. i:longint;
  384. begin
  385. delete:=false;
  386. { indexword in 1.0.x and 1.9.4 is broken }
  387. i:=indexword(buf^,length,s);
  388. if i<>-1 then
  389. begin
  390. deleteidx(i);
  391. delete := true;
  392. end;
  393. end;
  394. procedure supregset_reset(var regs:tsuperregisterset;setall:boolean;
  395. maxreg:Tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  396. begin
  397. fillchar(regs,(maxreg+7) shr 3,-byte(setall));
  398. end;
  399. procedure supregset_include(var regs:tsuperregisterset;s:tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  400. begin
  401. include(regs[s shr 8],(s and $ff));
  402. end;
  403. procedure supregset_exclude(var regs:tsuperregisterset;s:tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  404. begin
  405. exclude(regs[s shr 8],(s and $ff));
  406. end;
  407. function supregset_in(const regs:tsuperregisterset;s:tsuperregister):boolean;{$ifdef USEINLINE}inline;{$endif}
  408. begin
  409. result:=(s and $ff) in regs[s shr 8];
  410. end;
  411. function newreg(rt:tregistertype;sr:tsuperregister;sb:tsubregister):tregister;{$ifdef USEINLINE}inline;{$endif}
  412. begin
  413. tregisterrec(result).regtype:=rt;
  414. tregisterrec(result).supreg:=sr;
  415. tregisterrec(result).subreg:=sb;
  416. end;
  417. function getsubreg(r:tregister):tsubregister;{$ifdef USEINLINE}inline;{$endif}
  418. begin
  419. result:=tregisterrec(r).subreg;
  420. end;
  421. function getsupreg(r:tregister):tsuperregister;{$ifdef USEINLINE}inline;{$endif}
  422. begin
  423. result:=tregisterrec(r).supreg;
  424. end;
  425. function getregtype(r:tregister):tregistertype;{$ifdef USEINLINE}inline;{$endif}
  426. begin
  427. result:=tregisterrec(r).regtype;
  428. end;
  429. procedure setsubreg(var r:tregister;sr:tsubregister);{$ifdef USEINLINE}inline;{$endif}
  430. begin
  431. tregisterrec(r).subreg:=sr;
  432. end;
  433. procedure setsupreg(var r:tregister;sr:tsuperregister);{$ifdef USEINLINE}inline;{$endif}
  434. begin
  435. tregisterrec(r).supreg:=sr;
  436. end;
  437. function generic_regname(r:tregister):string;
  438. var
  439. nr : string[12];
  440. begin
  441. str(getsupreg(r),nr);
  442. case getregtype(r) of
  443. R_INTREGISTER:
  444. result:='ireg'+nr;
  445. R_FPUREGISTER:
  446. result:='freg'+nr;
  447. R_MMREGISTER:
  448. result:='mreg'+nr;
  449. R_MMXREGISTER:
  450. result:='xreg'+nr;
  451. R_ADDRESSREGISTER:
  452. result:='areg'+nr;
  453. R_SPECIALREGISTER:
  454. result:='sreg'+nr;
  455. else
  456. begin
  457. result:='INVALID';
  458. exit;
  459. end;
  460. end;
  461. case getsubreg(r) of
  462. R_SUBNONE:
  463. ;
  464. R_SUBL:
  465. result:=result+'l';
  466. R_SUBH:
  467. result:=result+'h';
  468. R_SUBW:
  469. result:=result+'w';
  470. R_SUBD:
  471. result:=result+'d';
  472. R_SUBQ:
  473. result:=result+'q';
  474. R_SUBFS:
  475. result:=result+'fs';
  476. R_SUBFD:
  477. result:=result+'fd';
  478. R_SUBMMD:
  479. result:=result+'md';
  480. R_SUBMMS:
  481. result:=result+'ms';
  482. R_SUBMMWHOLE:
  483. result:=result+'ma';
  484. else
  485. internalerror(200308252);
  486. end;
  487. end;
  488. function isaddressregister(reg : tregister) : boolean;
  489. begin
  490. result:=getregtype(reg)=R_ADDRESSREGISTER;
  491. end;
  492. function int_cgsize(const a: aint): tcgsize;{$ifdef USEINLINE}inline;{$endif}
  493. const
  494. size2cgsize : array[0..8] of tcgsize = (
  495. OS_NO,OS_8,OS_16,OS_NO,OS_32,OS_NO,OS_NO,OS_NO,OS_64
  496. );
  497. begin
  498. if a>8 then
  499. result:=OS_NO
  500. else
  501. result:=size2cgsize[a];
  502. end;
  503. function int_float_cgsize(const a: aint): tcgsize;
  504. begin
  505. case a of
  506. 4 :
  507. result:=OS_F32;
  508. 8 :
  509. result:=OS_F64;
  510. 10 :
  511. result:=OS_F80;
  512. 16 :
  513. result:=OS_F128;
  514. else
  515. internalerror(200603211);
  516. end;
  517. end;
  518. function inverse_opcmp(opcmp: topcmp): topcmp;{$ifdef USEINLINE}inline;{$endif}
  519. const
  520. list: array[TOpCmp] of TOpCmp =
  521. (OC_NONE,OC_NE,OC_LTE,OC_GTE,OC_LT,OC_GT,OC_EQ,OC_A,OC_AE,
  522. OC_B,OC_BE);
  523. begin
  524. inverse_opcmp := list[opcmp];
  525. end;
  526. function swap_opcmp(opcmp: topcmp): topcmp;{$ifdef USEINLINE}inline;{$endif}
  527. const
  528. list: array[TOpCmp] of TOpCmp =
  529. (OC_NONE,OC_EQ,OC_LT,OC_GT,OC_LTE,OC_GTE,OC_NE,OC_AE,OC_A,
  530. OC_BE,OC_B);
  531. begin
  532. swap_opcmp := list[opcmp];
  533. end;
  534. function commutativeop(op: topcg): boolean;{$ifdef USEINLINE}inline;{$endif}
  535. const
  536. list: array[topcg] of boolean =
  537. (true,false,true,true,false,false,true,true,false,false,
  538. true,false,false,false,false,true,false,false);
  539. begin
  540. commutativeop := list[op];
  541. end;
  542. function realshuffle(shuffle : pmmshuffle) : boolean;
  543. var
  544. i : longint;
  545. begin
  546. realshuffle:=true;
  547. if (shuffle=nil) or (shuffle^.len=0) then
  548. realshuffle:=false
  549. else
  550. begin
  551. for i:=1 to shuffle^.len do
  552. begin
  553. if (shuffle^.shuffles[i] and $f)<>((shuffle^.shuffles[i] and $f0) shr 4) then
  554. exit;
  555. end;
  556. realshuffle:=false;
  557. end;
  558. end;
  559. function shufflescalar(shuffle : pmmshuffle) : boolean;
  560. begin
  561. result:=shuffle^.len=0;
  562. end;
  563. procedure removeshuffles(var shuffle : tmmshuffle);
  564. var
  565. i : longint;
  566. begin
  567. if shuffle.len=0 then
  568. exit;
  569. for i:=1 to shuffle.len do
  570. shuffle.shuffles[i]:=(shuffle.shuffles[i] and $f) or ((shuffle.shuffles[i] and $f0) shr 4);
  571. end;
  572. initialization
  573. new(mms_movescalar);
  574. mms_movescalar^.len:=0;
  575. finalization
  576. dispose(mms_movescalar);
  577. end.