i386base.pas 33 KB

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  1. {
  2. $Id$
  3. Copyright (c) 1999 by Florian Klaempfl
  4. Contains the base types for the i386
  5. * This code was inspired by the NASM sources
  6. The Netwide Assembler is copyright (C) 1996 Simon Tatham and
  7. Julian Hall. All rights reserved.
  8. This program is free software; you can redistribute it and/or modify
  9. it under the terms of the GNU General Public License as published by
  10. the Free Software Foundation; either version 2 of the License, or
  11. (at your option) any later version.
  12. This program is distributed in the hope that it will be useful,
  13. but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. GNU General Public License for more details.
  16. You should have received a copy of the GNU General Public License
  17. along with this program; if not, write to the Free Software
  18. Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  19. ****************************************************************************
  20. }
  21. unit i386base;
  22. interface
  23. {$ifdef TP}
  24. {$L-,Y-}
  25. {$endif}
  26. uses
  27. strings,cobjects,aasm;
  28. const
  29. { Size of the instruction table converted by nasmconv.pas }
  30. instabentries = 1103;
  31. maxinfolen = 7;
  32. { By default we want everything }
  33. {$define ATTOP}
  34. {$define ATTREG}
  35. {$define INTELOP}
  36. {$define ITTABLE}
  37. { For TP we can't use asmdebug due the table sizes }
  38. {$ifndef TP}
  39. {$define ASMDEBUG}
  40. {$endif}
  41. { We Don't need the intel style opcodes if we don't have a intel
  42. reader or generator }
  43. {$ifndef ASMDEBUG}
  44. {$ifdef NORA386INT}
  45. {$ifdef NOAG386NSM}
  46. {$ifdef NOAG386INT}
  47. {$undef INTELOP}
  48. {$endif}
  49. {$endif}
  50. {$endif}
  51. {$endif}
  52. { We Don't need the AT&T style opcodes if we don't have a AT&T
  53. reader or generator }
  54. {$ifdef NORA386ATT}
  55. {$ifdef NOAG386ATT}
  56. {$undef ATTOP}
  57. {$ifdef NOAG386DIR}
  58. {$undef ATTREG}
  59. {$endif}
  60. {$endif}
  61. {$endif}
  62. const
  63. { Operand types }
  64. OT_NONE = $00000000;
  65. OT_BITS8 = $00000001; { size, and other attributes, of the operand }
  66. OT_BITS16 = $00000002;
  67. OT_BITS32 = $00000004;
  68. OT_BITS64 = $00000008; { FPU only }
  69. OT_BITS80 = $00000010;
  70. OT_FAR = $00000020; { this means 16:16 or 16:32, like in CALL/JMP }
  71. OT_NEAR = $00000040;
  72. OT_SHORT = $00000080;
  73. OT_SIZE_MASK = $000000FF; { all the size attributes }
  74. OT_NON_SIZE = not OT_SIZE_MASK;
  75. OT_SIGNED = $00000100; { the operand need to be signed -128-127 }
  76. OT_TO = $00000200; { operand is followed by a colon }
  77. { reverse effect in FADD, FSUB &c }
  78. OT_COLON = $00000400;
  79. OT_REGISTER = $00001000;
  80. OT_IMMEDIATE = $00002000;
  81. OT_IMM8 = $00002001;
  82. OT_IMM16 = $00002002;
  83. OT_IMM32 = $00002004;
  84. OT_IMM64 = $00002008;
  85. OT_IMM80 = $00002010;
  86. OT_REGMEM = $00200000; { for r/m, ie EA, operands }
  87. OT_REGNORM = $00201000; { 'normal' reg, qualifies as EA }
  88. OT_REG8 = $00201001;
  89. OT_REG16 = $00201002;
  90. OT_REG32 = $00201004;
  91. OT_MMXREG = $00201008; { MMX registers }
  92. OT_MEMORY = $00204000; { register number in 'basereg' }
  93. OT_MEM8 = $00204001;
  94. OT_MEM16 = $00204002;
  95. OT_MEM32 = $00204004;
  96. OT_MEM64 = $00204008;
  97. OT_MEM80 = $00204010;
  98. OT_FPUREG = $01000000; { floating point stack registers }
  99. OT_FPU0 = $01000800; { FPU stack register zero }
  100. OT_REG_SMASK = $00070000; { special register operands: these may be treated differently }
  101. { a mask for the following }
  102. OT_REG_ACCUM = $00211000; { accumulator: AL, AX or EAX }
  103. OT_REG_AL = $00211001; { REG_ACCUM | BITSxx }
  104. OT_REG_AX = $00211002; { ditto }
  105. OT_REG_EAX = $00211004; { and again }
  106. OT_REG_COUNT = $00221000; { counter: CL, CX or ECX }
  107. OT_REG_CL = $00221001; { REG_COUNT | BITSxx }
  108. OT_REG_CX = $00221002; { ditto }
  109. OT_REG_ECX = $00221004; { another one }
  110. OT_REG_DX = $00241002;
  111. OT_REG_SREG = $00081002; { any segment register }
  112. OT_REG_CS = $01081002; { CS }
  113. OT_REG_DESS = $02081002; { DS, ES, SS (non-CS 86 registers) }
  114. OT_REG_FSGS = $04081002; { FS, GS (386 extended registers) }
  115. OT_REG_CDT = $00101004; { CRn, DRn and TRn }
  116. OT_REG_CREG = $08101004; { CRn }
  117. OT_REG_CR4 = $08101404; { CR4 (Pentium only) }
  118. OT_REG_DREG = $10101004; { DRn }
  119. OT_REG_TREG = $20101004; { TRn }
  120. OT_MEM_OFFS = $00604000; { special type of EA }
  121. { simple [address] offset }
  122. OT_ONENESS = $00800000; { special type of immediate operand }
  123. { so UNITY == IMMEDIATE | ONENESS }
  124. OT_UNITY = $00802000; { for shift/rotate instructions }
  125. { Instruction flags }
  126. IF_SM = $0001; { size match first operand }
  127. IF_SM2 = $0002; { size match first two operands }
  128. IF_SB = $0004; { unsized operands can't be non-byte }
  129. IF_SW = $0008; { unsized operands can't be non-word }
  130. IF_SD = $0010; { unsized operands can't be nondword }
  131. IF_8086 = $0000; { 8086 instruction }
  132. IF_186 = $0100; { 186+ instruction }
  133. IF_286 = $0200; { 286+ instruction }
  134. IF_386 = $0300; { 386+ instruction }
  135. IF_486 = $0400; { 486+ instruction }
  136. IF_PENT = $0500; { Pentium instruction }
  137. IF_P6 = $0600; { P6 instruction }
  138. IF_CYRIX = $0800; { Cyrix-specific instruction }
  139. IF_PMASK = $0F00; { the mask for processor types }
  140. IF_PRIV = $1000; { it's a privileged instruction }
  141. IF_UNDOC = $2000; { it's an undocumented instruction }
  142. IF_FPU = $4000; { it's an FPU instruction }
  143. IF_MMX = $8000; { it's an MMX instruction }
  144. { added flags }
  145. IF_PRE = $10000; { it's a prefix instruction }
  146. IF_PASS2 = $20000; { if the instruction can change in a second pass }
  147. type
  148. TAsmOp=(A_None,
  149. { prefixes }
  150. A_LOCK,A_REP,A_REPE,A_REPNE,A_REPNZ,A_REPZ,
  151. A_CS,A_ES,A_DS,A_FS,A_GS,A_SS,
  152. { normal }
  153. A_AAA, A_AAD, A_AAM, A_AAS, A_ADC, A_ADD, A_AND, A_ARPL,
  154. A_BOUND, A_BSF, A_BSR, A_BSWAP, A_BT, A_BTC, A_BTR, A_BTS,
  155. A_CALL, A_CBW, A_CDQ, A_CLC, A_CLD, A_CLI, A_CLTS, A_CMC, A_CMP,
  156. A_CMPSB, A_CMPSD, A_CMPSW, A_CMPXCHG, A_CMPXCHG486, A_CMPXCHG8B,
  157. A_CPUID, A_CWD, A_CWDE, A_DAA, A_DAS, A_DEC, A_DIV,
  158. A_EMMS, A_ENTER, A_EQU, A_F2XM1, A_FABS,
  159. A_FADD, A_FADDP, A_FBLD, A_FBSTP, A_FCHS, A_FCLEX, A_FCMOVB,
  160. A_FCMOVBE, A_FCMOVE, A_FCMOVNB, A_FCMOVNBE, A_FCMOVNE,
  161. A_FCMOVNU, A_FCMOVU, A_FCOM, A_FCOMI, A_FCOMIP, A_FCOMP,
  162. A_FCOMPP, A_FCOS, A_FDECSTP, A_FDISI, A_FDIV, A_FDIVP, A_FDIVR,
  163. A_FDIVRP, A_FEMMS,
  164. A_FENI, A_FFREE, A_FIADD, A_FICOM, A_FICOMP, A_FIDIV,
  165. A_FIDIVR, A_FILD, A_FIMUL, A_FINCSTP, A_FINIT, A_FIST, A_FISTP,
  166. A_FISUB, A_FISUBR, A_FLD, A_FLD1, A_FLDCW, A_FLDENV, A_FLDL2E,
  167. A_FLDL2T, A_FLDLG2, A_FLDLN2, A_FLDPI, A_FLDZ, A_FMUL, A_FMULP,
  168. A_FNCLEX, A_FNDISI, A_FNENI, A_FNINIT, A_FNOP, A_FNSAVE,
  169. A_FNSTCW, A_FNSTENV, A_FNSTSW, A_FPATAN, A_FPREM, A_FPREM1,
  170. A_FPTAN, A_FRNDINT, A_FRSTOR, A_FSAVE, A_FSCALE, A_FSETPM,
  171. A_FSIN, A_FSINCOS, A_FSQRT, A_FST, A_FSTCW, A_FSTENV, A_FSTP,
  172. A_FSTSW, A_FSUB, A_FSUBP, A_FSUBR, A_FSUBRP, A_FTST, A_FUCOM,
  173. A_FUCOMI, A_FUCOMIP, A_FUCOMP, A_FUCOMPP, A_FWAIT,A_FXAM, A_FXCH,
  174. A_FXTRACT, A_FYL2X, A_FYL2XP1, A_HLT, A_IBTS, A_ICEBP, A_IDIV,
  175. A_IMUL, A_IN, A_INC, A_INSB, A_INSD, A_INSW, A_INT,
  176. A_INT01, A_INT1, A_INT3, A_INTO, A_INVD, A_INVLPG, A_IRET,
  177. A_IRETD, A_IRETW, A_JCXZ, A_JECXZ, A_JMP, A_LAHF, A_LAR, A_LDS,
  178. A_LEA, A_LEAVE, A_LES, A_LFS, A_LGDT, A_LGS, A_LIDT, A_LLDT,
  179. A_LMSW, A_LOADALL, A_LOADALL286, A_LODSB, A_LODSD, A_LODSW,
  180. A_LOOP, A_LOOPE, A_LOOPNE, A_LOOPNZ, A_LOOPZ, A_LSL, A_LSS,
  181. A_LTR, A_MOV, A_MOVD, A_MOVQ, A_MOVSB, A_MOVSD, A_MOVSW,
  182. A_MOVSX, A_MOVZX, A_MUL, A_NEG, A_NOP, A_NOT, A_OR, A_OUT,
  183. A_OUTSB, A_OUTSD, A_OUTSW, A_PACKSSDW, A_PACKSSWB, A_PACKUSWB,
  184. A_PADDB, A_PADDD, A_PADDSB, A_PADDSIW, A_PADDSW, A_PADDUSB,
  185. A_PADDUSW, A_PADDW, A_PAND, A_PANDN, A_PAVEB,
  186. A_PAVGUSB, A_PCMPEQB, A_PCMPEQD, A_PCMPEQW, A_PCMPGTB, A_PCMPGTD,
  187. A_PCMPGTW, A_PDISTIB,
  188. A_PF2ID, A_PFACC, A_PFADD, A_PFCMPEQ, A_PFCMPGE, A_PFCMPGT,
  189. A_PFMAX, A_PFMIN, A_PFMUL, A_PFRCP, A_PFRCPIT1, A_PFRCPIT2,
  190. A_PFRSQIT1, A_PFRSQRT, A_PFSUB, A_PFSUBR, A_PI2FD,
  191. A_PMACHRIW, A_PMADDWD, A_PMAGW, A_PMULHRIW, A_PMULHRWA,
  192. A_PMULHRWC, A_PMULHW, A_PMULLW, A_PMVGEZB, A_PMVLZB, A_PMVNZB,
  193. A_PMVZB, A_POP, A_POPA, A_POPAD, A_POPAW, A_POPF, A_POPFD,
  194. A_POPFW, A_POR, A_PREFETCH, A_PREFETCHW,
  195. A_PSLLD, A_PSLLQ, A_PSLLW, A_PSRAD, A_PSRAW,
  196. A_PSRLD, A_PSRLQ, A_PSRLW, A_PSUBB, A_PSUBD, A_PSUBSB,
  197. A_PSUBSIW, A_PSUBSW, A_PSUBUSB, A_PSUBUSW, A_PSUBW, A_PUNPCKHBW,
  198. A_PUNPCKHDQ, A_PUNPCKHWD, A_PUNPCKLBW, A_PUNPCKLDQ, A_PUNPCKLWD,
  199. A_PUSH, A_PUSHA, A_PUSHAD, A_PUSHAW, A_PUSHF, A_PUSHFD,
  200. A_PUSHFW, A_PXOR, A_RCL, A_RCR, A_RDMSR, A_RDPMC, A_RDTSC,
  201. A_RESB, A_RET, A_RETF, A_RETN,
  202. A_ROL, A_ROR, A_RSM, A_SAHF, A_SAL, A_SALC, A_SAR, A_SBB,
  203. A_SCASB, A_SCASD, A_SCASW, A_SGDT, A_SHL, A_SHLD, A_SHR, A_SHRD,
  204. A_SIDT, A_SLDT, A_SMI, A_SMSW, A_STC, A_STD, A_STI, A_STOSB,
  205. A_STOSD, A_STOSW, A_STR, A_SUB, A_TEST, A_UMOV, A_VERR, A_VERW,
  206. A_WAIT, A_WBINVD, A_WRMSR, A_XADD, A_XBTS, A_XCHG, A_XLAT, A_XLATB,
  207. A_XOR, A_CMOVcc, A_Jcc, A_SETcc
  208. );
  209. op2strtable=array[tasmop] of string[10];
  210. const
  211. firstop = low(tasmop);
  212. lastop = high(tasmop);
  213. AsmPrefixes = 6;
  214. AsmPrefix : array[0..AsmPrefixes-1] of TasmOP =(
  215. A_LOCK,A_REP,A_REPE,A_REPNE,A_REPNZ,A_REPZ
  216. );
  217. AsmOverrides = 6;
  218. AsmOverride : array[0..AsmOverrides-1] of TasmOP =(
  219. A_CS,A_ES,A_DS,A_FS,A_GS,A_SS
  220. );
  221. {$ifdef INTELOP}
  222. int_op2str:op2strtable=('<none>',
  223. { prefixes }
  224. 'lock','rep','repe','repne','repnz','repz',
  225. 'segcs','seges','segds','segfs','seggs','segss',
  226. { normal }
  227. 'aaa', 'aad', 'aam', 'aas', 'adc', 'add', 'and', 'arpl',
  228. 'bound', 'bsf', 'bsr', 'bswap', 'bt', 'btc', 'btr', 'bts',
  229. 'call', 'cbw', 'cdq', 'clc', 'cld', 'cli', 'clts', 'cmc', 'cmp',
  230. 'cmpsb', 'cmpsd', 'cmpsw', 'cmpxchg', 'cmpxchg486', 'cmpxchg8b',
  231. 'cpuid', 'cwd', 'cwde', 'daa', 'das', 'dec', 'div', 'emms',
  232. 'enter', 'equ', 'f2xm1', 'fabs',
  233. 'fadd', 'faddp', 'fbld', 'fbstp', 'fchs', 'fclex', 'fcmovb',
  234. 'fcmovbe', 'fcmove', 'fcmovnb', 'fcmovnbe', 'fcmovne',
  235. 'fcmovnu', 'fcmovu', 'fcom', 'fcomi', 'fcomip', 'fcomp',
  236. 'fcompp', 'fcos', 'fdecstp', 'fdisi', 'fdiv', 'fdivp', 'fdivr',
  237. 'fdivrp',
  238. 'femms',
  239. 'feni', 'ffree', 'fiadd', 'ficom', 'ficomp', 'fidiv',
  240. 'fidivr', 'fild', 'fimul', 'fincstp', 'finit', 'fist', 'fistp',
  241. 'fisub', 'fisubr', 'fld', 'fld1', 'fldcw', 'fldenv', 'fldl2e',
  242. 'fldl2t', 'fldlg2', 'fldln2', 'fldpi', 'fldz', 'fmul', 'fmulp',
  243. 'fnclex', 'fndisi', 'fneni', 'fninit', 'fnop', 'fnsave',
  244. 'fnstcw', 'fnstenv', 'fnstsw', 'fpatan', 'fprem', 'fprem1',
  245. 'fptan', 'frndint', 'frstor', 'fsave', 'fscale', 'fsetpm',
  246. 'fsin', 'fsincos', 'fsqrt', 'fst', 'fstcw', 'fstenv', 'fstp',
  247. 'fstsw', 'fsub', 'fsubp', 'fsubr', 'fsubrp', 'ftst', 'fucom',
  248. 'fucomi', 'fucomip', 'fucomp', 'fucompp', 'fwait', 'fxam', 'fxch',
  249. 'fxtract', 'fyl2x', 'fyl2xp1', 'hlt', 'ibts', 'icebp', 'idiv',
  250. 'imul', 'in', 'inc', 'insb', 'insd', 'insw', 'int',
  251. 'int01', 'int1', 'int3', 'into', 'invd', 'invlpg', 'iret',
  252. 'iretd', 'iretw', 'jcxz', 'jecxz', 'jmp', 'lahf', 'lar', 'lds',
  253. 'lea', 'leave', 'les', 'lfs', 'lgdt', 'lgs', 'lidt', 'lldt',
  254. 'lmsw', 'loadall', 'loadall286', 'lodsb', 'lodsd', 'lodsw',
  255. 'loop', 'loope', 'loopne', 'loopnz', 'loopz', 'lsl', 'lss',
  256. 'ltr', 'mov', 'movd', 'movq', 'movsb', 'movsd', 'movsw',
  257. 'movsx', 'movzx', 'mul', 'neg', 'nop', 'not', 'or', 'out',
  258. 'outsb', 'outsd', 'outsw', 'packssdw', 'packsswb', 'packuswb',
  259. 'paddb', 'paddd', 'paddsb', 'paddsiw', 'paddsw', 'paddusb',
  260. 'paddusw', 'paddw', 'pand', 'pandn', 'paveb',
  261. 'pavgusb', 'pcmpeqb',
  262. 'pcmpeqd', 'pcmpeqw', 'pcmpgtb', 'pcmpgtd', 'pcmpgtw',
  263. 'pdistib',
  264. 'pf2id', 'pfacc', 'pfadd', 'pfcmpeq', 'pfcmpge', 'pfcmpgt',
  265. 'pfmax', 'pfmin', 'pfmul', 'pfrcp', 'pfrcpit1', 'pfrcpit2',
  266. 'pfrsqit1', 'pfrsqrt', 'pfsub', 'pfsubr', 'pi2fd',
  267. 'pmachriw', 'pmaddwd', 'pmagw', 'pmulhriw', 'pmulhrwa', 'pmulhrwc',
  268. 'pmulhw', 'pmullw', 'pmvgezb', 'pmvlzb', 'pmvnzb',
  269. 'pmvzb', 'pop', 'popa', 'popad', 'popaw', 'popf', 'popfd',
  270. 'popfw', 'por',
  271. 'prefetch', 'prefetchw', 'pslld', 'psllq', 'psllw', 'psrad', 'psraw',
  272. 'psrld', 'psrlq', 'psrlw', 'psubb', 'psubd', 'psubsb',
  273. 'psubsiw', 'psubsw', 'psubusb', 'psubusw', 'psubw', 'punpckhbw',
  274. 'punpckhdq', 'punpckhwd', 'punpcklbw', 'punpckldq', 'punpcklwd',
  275. 'push', 'pusha', 'pushad', 'pushaw', 'pushf', 'pushfd',
  276. 'pushfw', 'pxor', 'rcl', 'rcr', 'rdmsr', 'rdpmc', 'rdtsc',
  277. 'resb', 'ret', 'retf', 'retn',
  278. 'rol', 'ror', 'rsm', 'sahf', 'sal', 'salc', 'sar', 'sbb',
  279. 'scasb', 'scasd', 'scasw', 'sgdt', 'shl', 'shld', 'shr', 'shrd',
  280. 'sidt', 'sldt', 'smi', 'smsw', 'stc', 'std', 'sti', 'stosb',
  281. 'stosd', 'stosw', 'str', 'sub', 'test', 'umov', 'verr', 'verw',
  282. 'wait', 'wbinvd', 'wrmsr', 'xadd', 'xbts', 'xchg', 'xlat', 'xlatb',
  283. 'xor','cmov','j','set'
  284. );
  285. {$endif INTELOP}
  286. {$ifdef ATTOP}
  287. att_op2str:op2strtable=('<none>',
  288. { prefixes }
  289. 'lock','rep','repe','repne','repnz','repz',
  290. 'cs','es','ds','fs','gs','ss',
  291. { normal }
  292. 'aaa', 'aad', 'aam', 'aas', 'adc', 'add', 'and', 'arpl',
  293. 'bound', 'bsf', 'bsr', 'bswap', 'bt', 'btc', 'btr', 'bts',
  294. 'call', 'cbtw', 'cltd', 'clc', 'cld', 'cli', 'clts', 'cmc', 'cmp',
  295. 'cmpsb', 'cmpsl', 'cmpsw', 'cmpxchg', 'cmpxchg486', 'cmpxchg8b',
  296. 'cpuid', 'cwtd', 'cwtl', 'daa', 'das', 'dec', 'div',
  297. 'emms', 'enter', 'equ', 'f2xm1', 'fabs',
  298. 'fadd', 'faddp', 'fbld', 'fbstp', 'fchs', 'fclex', 'fcmovb',
  299. 'fcmovbe', 'fcmove', 'fcmovnb', 'fcmovnbe', 'fcmovne',
  300. 'fcmovnu', 'fcmovu', 'fcom', 'fcomi', 'fcomip', 'fcomp',
  301. 'fcompp', 'fcos', 'fdecstp', 'fdisi', 'fdiv', 'fdivp', 'fdivr',
  302. 'fdivrp', 'femms',
  303. 'feni', 'ffree', 'fiadd', 'ficom', 'ficomp', 'fidiv',
  304. 'fidivr', 'fild', 'fimul', 'fincstp', 'finit', 'fist', 'fistp',
  305. 'fisub', 'fisubr', 'fld', 'fld1', 'fldcw', 'fldenv', 'fldl2e',
  306. 'fldl2t', 'fldlg2', 'fldln2', 'fldpi', 'fldz', 'fmul', 'fmulp',
  307. 'fnclex', 'fndisi', 'fneni', 'fninit', 'fnop', 'fnsave',
  308. 'fnstcw', 'fnstenv', 'fnstsw', 'fpatan', 'fprem', 'fprem1',
  309. 'fptan', 'frndint', 'frstor', 'fsave', 'fscale', 'fsetpm',
  310. 'fsin', 'fsincos', 'fsqrt', 'fst', 'fstcw', 'fstenv', 'fstp',
  311. 'fstsw', 'fsub', 'fsubp', 'fsubr', 'fsubrp', 'ftst', 'fucom',
  312. 'fucomi', 'fucomip', 'fucomp', 'fucompp', 'fwait', 'fxam', 'fxch',
  313. 'fxtract', 'fyl2x', 'fyl2xp1', 'hlt', 'ibts', 'icebp', 'idiv',
  314. 'imul', 'in', 'inc', 'insb', 'insl', 'insw', 'int',
  315. 'int01', 'int1', 'int3', 'into', 'invd', 'invlpg', 'iret',
  316. 'iretd', 'iretw', 'jcxz', 'jecxz', 'jmp', 'lahf', 'lar', 'lds',
  317. 'lea', 'leave', 'les', 'lfs', 'lgdt', 'lgs', 'lidt', 'lldt',
  318. 'lmsw', 'loadall', 'loadall286', 'lodsb', 'lodsl', 'lodsw',
  319. 'loop', 'loope', 'loopne', 'loopnz', 'loopz', 'lsl', 'lss',
  320. 'ltr', 'mov', 'movd', 'movq', 'movsb', 'movsl', 'movsw',
  321. 'movs', 'movz', 'mul', 'neg', 'nop', 'not', 'or', 'out',
  322. 'outsb', 'outsl', 'outsw', 'packssd', 'packssw', 'packusw',
  323. 'paddb', 'paddd', 'paddsb', 'paddsiw', 'paddsw', 'paddusb',
  324. 'paddusw', 'paddw', 'pand', 'pandn', 'paveb',
  325. 'pavgusb', 'pcmpeqb',
  326. 'pcmpeqd', 'pcmpeqw', 'pcmpgtb', 'pcmpgtd', 'pcmpgtw',
  327. 'pdistib',
  328. 'pf2id', 'pfacc', 'pfadd', 'pfcmpeq', 'pfcmpge', 'pfcmpgt',
  329. 'pfmax', 'pfmin', 'pfmul', 'pfrcp', 'pfrcpit1', 'pfrcpit2',
  330. 'pfrsqit1', 'pfrsqrt', 'pfsub', 'pfsubr', 'pi2fd',
  331. 'pmachriw', 'pmaddwd', 'pmagw', 'pmulhriw', 'pmulhrwa', 'pmulhrwc',
  332. 'pmulhw', 'pmullw', 'pmvgezb', 'pmvlzb', 'pmvnzb',
  333. 'pmvzb', 'pop', 'popa', 'popal', 'popaw', 'popf', 'popfl',
  334. 'popfw', 'por',
  335. 'prefetch', 'prefetchw', 'pslld', 'psllq', 'psllw', 'psrad', 'psraw',
  336. 'psrld', 'psrlq', 'psrlw', 'psubb', 'psubd', 'psubsb',
  337. 'psubsiw', 'psubsw', 'psubusb', 'psubusw', 'psubw', 'punpckhbw',
  338. 'punpckhdq', 'punpckhwd', 'punpcklbw', 'punpckldq', 'punpcklwd',
  339. 'push', 'pusha', 'pushal', 'pushaw', 'pushf', 'pushfl',
  340. 'pushfw', 'pxor', 'rcl', 'rcr', 'rdmsr', 'rdpmc', 'rdtsc',
  341. 'resb', 'ret', 'retf', 'retn',
  342. 'rol', 'ror', 'rsm', 'sahf', 'sal', 'salc', 'sar', 'sbb',
  343. 'scasb', 'scasl', 'scasw', 'sgdt', 'shl', 'shld', 'shr', 'shrd',
  344. 'sidt', 'sldt', 'smi', 'smsw', 'stc', 'std', 'sti', 'stosb',
  345. 'stosl', 'stosw', 'str', 'sub', 'test', 'umov', 'verr', 'verw',
  346. 'wait', 'wbinvd', 'wrmsr', 'xadd', 'xbts', 'xchg', 'xlat', 'xlatb',
  347. 'xor','cmov','j','set'
  348. );
  349. {$endif ATTOP}
  350. {*****************************************************************************
  351. Operand Sizes
  352. *****************************************************************************}
  353. type
  354. topsize = (S_NO,
  355. S_B,S_W,S_L,S_BW,S_BL,S_WL,
  356. S_IS,S_IL,S_IQ,
  357. S_FS,S_FL,S_FX,S_D,S_Q,S_FV
  358. );
  359. const
  360. { Intel style operands ! }
  361. opsize_2_type:array[0..2,topsize] of longint=(
  362. (OT_NONE,
  363. OT_BITS8,OT_BITS16,OT_BITS32,OT_BITS16,OT_BITS32,OT_BITS32,
  364. OT_BITS16,OT_BITS32,OT_BITS64,
  365. OT_BITS32,OT_BITS64,OT_BITS80,OT_BITS64,OT_BITS64,OT_BITS64
  366. ),
  367. (OT_NONE,
  368. OT_BITS8,OT_BITS16,OT_BITS32,OT_BITS8,OT_BITS8,OT_BITS16,
  369. OT_BITS16,OT_BITS32,OT_BITS64,
  370. OT_BITS32,OT_BITS64,OT_BITS80,OT_BITS64,OT_BITS64,OT_BITS64
  371. ),
  372. (OT_NONE,
  373. OT_BITS8,OT_BITS16,OT_BITS32,OT_NONE,OT_NONE,OT_NONE,
  374. OT_BITS16,OT_BITS32,OT_BITS64,
  375. OT_BITS32,OT_BITS64,OT_BITS80,OT_BITS64,OT_BITS64,OT_BITS64
  376. )
  377. );
  378. {$ifdef ATTOP}
  379. att_opsize2str : array[topsize] of string[2] = ('',
  380. 'b','w','l','bw','bl','wl',
  381. 's','l','q',
  382. 's','l','t','d','q','v'
  383. );
  384. {$endif}
  385. {*****************************************************************************
  386. Conditions
  387. *****************************************************************************}
  388. type
  389. TAsmCond=(C_None,
  390. C_A,C_AE,C_B,C_BE,C_C,C_E,C_G,C_GE,C_L,C_LE,C_NA,C_NAE,
  391. C_NB,C_NBE,C_NC,C_NE,C_NG,C_NGE,C_NL,C_NLE,C_NO,C_NP,
  392. C_NS,C_NZ,C_O,C_P,C_PE,C_PO,C_S,C_Z
  393. );
  394. const
  395. cond2str:array[TAsmCond] of string[3]=('',
  396. 'a', 'ae', 'b', 'be', 'c', 'e', 'g', 'ge', 'l', 'le', 'na', 'nae',
  397. 'nb', 'nbe', 'nc', 'ne', 'ng', 'nge', 'nl', 'nle', 'no', 'np',
  398. 'ns', 'nz', 'o', 'p', 'pe', 'po', 's', 'z'
  399. );
  400. inverse_cond:array[TAsmCond] of TAsmCond=(C_None,
  401. C_NA,C_NAE,C_NB,C_NBE,C_NC,C_NE,C_NG,C_NGE,C_NL,C_NLE,C_A,C_AE,
  402. C_B,C_BE,C_C,C_E,C_G,C_GE,C_L,C_LE,C_O,C_P,
  403. C_S,C_Z,C_NO,C_NP,C_NP,C_P,C_NS,C_NZ
  404. );
  405. const
  406. CondAsmOps=3;
  407. CondAsmOp:array[0..CondAsmOps-1] of TasmOp=(
  408. A_CMOVcc, A_Jcc, A_SETcc
  409. );
  410. CondAsmOpStr:array[0..CondAsmOps-1] of string[4]=(
  411. 'CMOV','J','SET'
  412. );
  413. {*****************************************************************************
  414. Registers
  415. *****************************************************************************}
  416. type
  417. { enumeration for registers, don't change the order }
  418. { it's used by the register size conversions }
  419. tregister = (R_NO,
  420. R_EAX,R_ECX,R_EDX,R_EBX,R_ESP,R_EBP,R_ESI,R_EDI,
  421. R_AX,R_CX,R_DX,R_BX,R_SP,R_BP,R_SI,R_DI,
  422. R_AL,R_CL,R_DL,R_BL,R_AH,R_CH,R_BH,R_DH,
  423. R_CS,R_DS,R_ES,R_SS,R_FS,R_GS,
  424. R_ST,R_ST0,R_ST1,R_ST2,R_ST3,R_ST4,R_ST5,R_ST6,R_ST7,
  425. R_DR0,R_DR1,R_DR2,R_DR3,R_DR6,R_DR7,
  426. R_CR0,R_CR2,R_CR3,R_CR4,
  427. R_TR3,R_TR4,R_TR5,R_TR6,R_TR7,
  428. R_MM0,R_MM1,R_MM2,R_MM3,R_MM4,R_MM5,R_MM6,R_MM7,
  429. R_XMM0,R_XMM1,R_XMM2,R_XMM3,R_XMM4,R_XMM5,R_XMM6,R_XMM7
  430. );
  431. tregisterset = set of tregister;
  432. reg2strtable = array[tregister] of string[6];
  433. const
  434. firstreg = low(tregister);
  435. lastreg = high(tregister);
  436. firstsreg = R_CS;
  437. lastsreg = R_GS;
  438. regset8bit : tregisterset = [R_AL..R_DH];
  439. regset16bit : tregisterset = [R_AX..R_DI,R_CS..R_SS];
  440. regset32bit : tregisterset = [R_EAX..R_EDI];
  441. { Convert reg to opsize }
  442. reg_2_opsize:array[firstreg..lastreg] of topsize = (S_NO,
  443. S_L,S_L,S_L,S_L,S_L,S_L,S_L,S_L,
  444. S_W,S_W,S_W,S_W,S_W,S_W,S_W,S_W,
  445. S_B,S_B,S_B,S_B,S_B,S_B,S_B,S_B,
  446. S_W,S_W,S_W,S_W,S_W,S_W,
  447. S_FL,S_FL,S_FL,S_FL,S_FL,S_FL,S_FL,S_FL,S_FL,
  448. S_L,S_L,S_L,S_L,S_L,S_L,
  449. S_L,S_L,S_L,S_L,
  450. S_L,S_L,S_L,S_L,S_L,
  451. S_D,S_D,S_D,S_D,S_D,S_D,S_D,S_D,
  452. S_D,S_D,S_D,S_D,S_D,S_D,S_D,S_D
  453. );
  454. { Convert reg to operand type }
  455. reg_2_type:array[firstreg..lastreg] of longint = (OT_NONE,
  456. OT_REG_EAX,OT_REG_ECX,OT_REG32,OT_REG32,OT_REG32,OT_REG32,OT_REG32,OT_REG32,
  457. OT_REG_AX,OT_REG_CX,OT_REG_DX,OT_REG16,OT_REG16,OT_REG16,OT_REG16,OT_REG16,
  458. OT_REG_AL,OT_REG_CL,OT_REG8,OT_REG8,OT_REG8,OT_REG8,OT_REG8,OT_REG8,
  459. OT_REG_CS,OT_REG_DESS,OT_REG_DESS,OT_REG_DESS,OT_REG_FSGS,OT_REG_FSGS,
  460. OT_FPU0,OT_FPU0,OT_FPUREG,OT_FPUREG,OT_FPUREG,OT_FPUREG,OT_FPUREG,OT_FPUREG,OT_FPUREG,
  461. OT_REG_DREG,OT_REG_DREG,OT_REG_DREG,OT_REG_DREG,OT_REG_DREG,OT_REG_DREG,
  462. OT_REG_CREG,OT_REG_CREG,OT_REG_CREG,OT_REG_CR4,
  463. OT_REG_TREG,OT_REG_TREG,OT_REG_TREG,OT_REG_TREG,OT_REG_TREG,
  464. OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,
  465. OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG,OT_MMXREG
  466. );
  467. {$ifdef INTELOP}
  468. int_reg2str : reg2strtable = ('',
  469. 'eax','ecx','edx','ebx','esp','ebp','esi','edi',
  470. 'ax','cx','dx','bx','sp','bp','si','di',
  471. 'al','cl','dl','bl','ah','ch','bh','dh',
  472. 'cs','ds','es','ss','fs','gs',
  473. 'st','st(0)','st(1)','st(2)','st(3)','st(4)','st(5)','st(6)','st(7)',
  474. 'dr0','dr1','dr2','dr3','dr6','dr7',
  475. 'cr0','cr2','cr3','cr4',
  476. 'tr3','tr4','tr5','tr6','tr7',
  477. 'mm0','mm1','mm2','mm3','mm4','mm5','mm6','mm7',
  478. 'xmm0','xmm1','xmm2','xmm3','xmm4','xmm5','xmm6','xmm7'
  479. );
  480. int_nasmreg2str : reg2strtable = ('',
  481. 'eax','ecx','edx','ebx','esp','ebp','esi','edi',
  482. 'ax','cx','dx','bx','sp','bp','si','di',
  483. 'al','cl','dl','bl','ah','ch','bh','dh',
  484. 'cs','ds','es','ss','fs','gs',
  485. 'st0','st0','st1','st2','st3','st4','st5','st6','st7',
  486. 'dr0','dr1','dr2','dr3','dr6','dr7',
  487. 'cr0','cr2','cr3','cr4',
  488. 'tr3','tr4','tr5','tr6','tr7',
  489. 'mm0','mm1','mm2','mm3','mm4','mm5','mm6','mm7',
  490. 'xmm0','xmm1','xmm2','xmm3','xmm4','xmm5','xmm6','xmm7'
  491. );
  492. {$endif}
  493. {$ifdef ATTREG}
  494. att_reg2str : reg2strtable = ('',
  495. '%eax','%ecx','%edx','%ebx','%esp','%ebp','%esi','%edi',
  496. '%ax','%cx','%dx','%bx','%sp','%bp','%si','%di',
  497. '%al','%cl','%dl','%bl','%ah','%ch','%bh','%dh',
  498. '%cs','%ds','%es','%ss','%fs','%gs',
  499. '%st','%st(0)','%st(1)','%st(2)','%st(3)','%st(4)','%st(5)','%st(6)','%st(7)',
  500. '%dr0','%dr1','%dr2','%dr3','%dr6','%dr7',
  501. '%cr0','%cr2','%cr3','%cr4',
  502. '%tr3','%tr4','%tr5','%tr6','%tr7',
  503. '%mm0','%mm1','%mm2','%mm3','%mm4','%mm5','%mm6','%mm7',
  504. '%xmm0','%xmm1','%xmm2','%xmm3','%xmm4','%xmm5','%xmm6','%xmm7'
  505. );
  506. {$endif ATTREG}
  507. {*****************************************************************************
  508. Flags
  509. *****************************************************************************}
  510. type
  511. TResFlags = (F_E,F_NE,F_G,F_L,F_GE,F_LE,F_C,F_NC,F_A,F_AE,F_B,F_BE);
  512. const
  513. { arrays for boolean location conversions }
  514. flag_2_cond : array[TResFlags] of TAsmCond =
  515. (C_E,C_NE,C_G,C_L,C_GE,C_LE,C_C,C_NC,C_A,C_AE,C_B,C_BE);
  516. {*****************************************************************************
  517. Reference
  518. *****************************************************************************}
  519. type
  520. trefoptions=(ref_none,ref_parafixup,ref_localfixup);
  521. { immediate/reference record }
  522. preference = ^treference;
  523. treference = record
  524. is_immediate : boolean; { is this used as reference or immediate }
  525. segment,
  526. base,
  527. index : tregister;
  528. scalefactor : byte;
  529. offset : longint;
  530. symbol : pasmsymbol;
  531. offsetfixup : longint;
  532. options : trefoptions;
  533. end;
  534. {*****************************************************************************
  535. Generic Location
  536. *****************************************************************************}
  537. type
  538. TLoc=(
  539. LOC_INVALID, { added for tracking problems}
  540. LOC_FPU, { FPU stack }
  541. LOC_REGISTER, { in a processor register }
  542. LOC_MEM, { in memory }
  543. LOC_REFERENCE, { like LOC_MEM, but lvalue }
  544. LOC_JUMP, { boolean results only, jump to false or true label }
  545. LOC_FLAGS, { boolean results only, flags are set }
  546. LOC_CREGISTER, { Constant register which shouldn't be modified }
  547. LOC_MMXREGISTER, { MMX register }
  548. LOC_CMMXREGISTER { Constant MMX register }
  549. );
  550. plocation = ^tlocation;
  551. tlocation = packed record
  552. case loc : tloc of
  553. LOC_MEM,LOC_REFERENCE : (reference : treference);
  554. LOC_FPU : ();
  555. LOC_JUMP : ();
  556. LOC_FLAGS : (resflags : tresflags);
  557. LOC_INVALID : ();
  558. { it's only for better handling }
  559. LOC_MMXREGISTER : (mmxreg : tregister);
  560. { segment in reference at the same place as in loc_register }
  561. LOC_REGISTER,LOC_CREGISTER : (
  562. case longint of
  563. 1 : (register,segment,registerhigh : tregister);
  564. { overlay a registerlow }
  565. 2 : (registerlow : tregister);
  566. );
  567. end;
  568. {*****************************************************************************
  569. Constants
  570. *****************************************************************************}
  571. type
  572. tcpuflags = (cf_registers64);
  573. const
  574. general_registers = [R_EAX,R_EBX,R_ECX,R_EDX];
  575. registers_saved_on_cdecl = [R_ESI,R_EDI,R_EBX];
  576. { generic register names }
  577. stack_pointer = R_ESP;
  578. frame_pointer = R_EBP;
  579. self_pointer = R_ESI;
  580. accumulator = R_EAX;
  581. cpuflags : set of tcpuflags = [];
  582. { sizes }
  583. pointersize = 4;
  584. extended_size = 10;
  585. sizepostfix_pointer = S_L;
  586. {*****************************************************************************
  587. Instruction table
  588. *****************************************************************************}
  589. {$ifndef NOAG386BIN}
  590. type
  591. tinsentry=packed record
  592. opcode : tasmop;
  593. ops : byte;
  594. optypes : array[0..2] of longint;
  595. code : array[0..maxinfolen] of char;
  596. flags : longint;
  597. end;
  598. pinsentry=^tinsentry;
  599. TInsTabCache=array[TasmOp] of longint;
  600. PInsTabCache=^TInsTabCache;
  601. const
  602. InsTab:array[0..instabentries-1] of TInsEntry=
  603. {$i i386tab.inc}
  604. var
  605. InsTabCache : PInsTabCache;
  606. {$endif NOAG386BIN}
  607. {*****************************************************************************
  608. Helpers
  609. *****************************************************************************}
  610. const
  611. maxvarregs = 4;
  612. varregs : array[1..maxvarregs] of tregister =
  613. (R_EBX,R_EDX,R_ECX,R_EAX);
  614. function imm_2_type(l:longint):longint;
  615. { the following functions allow to convert registers }
  616. { for example reg8toreg32(R_AL) returns R_EAX }
  617. { for example reg16toreg32(R_AL) gives an undefined }
  618. { result }
  619. { these functions expects that the turn of }
  620. { tregister isn't changed }
  621. function reg8toreg16(reg : tregister) : tregister;
  622. function reg8toreg32(reg : tregister) : tregister;
  623. function reg16toreg8(reg : tregister) : tregister;
  624. function reg32toreg8(reg : tregister) : tregister;
  625. function reg32toreg16(reg : tregister) : tregister;
  626. function reg16toreg32(reg : tregister) : tregister;
  627. { these procedures must be defined by all target cpus }
  628. function regtoreg8(reg : tregister) : tregister;
  629. function regtoreg16(reg : tregister) : tregister;
  630. function regtoreg32(reg : tregister) : tregister;
  631. { can be ignored on 32 bit systems }
  632. function regtoreg64(reg : tregister) : tregister;
  633. { returns the operand prefix for a given register }
  634. function regsize(reg : tregister) : topsize;
  635. { resets all values of ref to defaults }
  636. procedure reset_reference(var ref : treference);
  637. { set mostly used values of a new reference }
  638. function new_reference(base : tregister;offset : longint) : preference;
  639. function newreference(const r : treference) : preference;
  640. procedure disposereference(var r : preference);
  641. function reg2str(r : tregister) : string;
  642. implementation
  643. {*****************************************************************************
  644. Helpers
  645. *****************************************************************************}
  646. function imm_2_type(l:longint):longint;
  647. begin
  648. if (l>=-128) and (l<=127) then
  649. imm_2_type:=OT_IMM8 or OT_SIGNED
  650. else
  651. if (l>=-255) and (l<=255) then
  652. imm_2_type:=OT_IMM8
  653. else
  654. if (l>=-32768) and (l<=32767) then
  655. imm_2_type:=OT_IMM16 or OT_SIGNED
  656. else
  657. if (l>=-65536) and (l<=65535) then
  658. imm_2_type:=OT_IMM16 or OT_SIGNED
  659. else
  660. imm_2_type:=OT_IMM32;
  661. end;
  662. function reg2str(r : tregister) : string;
  663. const
  664. a : array[R_NO..R_BL] of string[3] =
  665. ('','EAX','ECX','EDX','EBX','ESP','EBP','ESI','EDI',
  666. 'AX','CX','DX','BX','SP','BP','SI','DI',
  667. 'AL','CL','DL','BL');
  668. begin
  669. reg2str:=a[r];
  670. end;
  671. procedure disposereference(var r : preference);
  672. begin
  673. dispose(r);
  674. r:=nil;
  675. end;
  676. function newreference(const r : treference) : preference;
  677. var
  678. p : preference;
  679. begin
  680. new(p);
  681. p^:=r;
  682. newreference:=p;
  683. end;
  684. function reg8toreg16(reg : tregister) : tregister;
  685. begin
  686. reg8toreg16:=reg32toreg16(reg8toreg32(reg));
  687. end;
  688. function reg16toreg8(reg : tregister) : tregister;
  689. begin
  690. reg16toreg8:=reg32toreg8(reg16toreg32(reg));
  691. end;
  692. function reg16toreg32(reg : tregister) : tregister;
  693. begin
  694. reg16toreg32:=tregister(byte(reg)-byte(R_EDI));
  695. end;
  696. function reg32toreg16(reg : tregister) : tregister;
  697. begin
  698. reg32toreg16:=tregister(byte(reg)+byte(R_EDI));
  699. end;
  700. function reg32toreg8(reg : tregister) : tregister;
  701. begin
  702. reg32toreg8:=tregister(byte(reg)+byte(R_DI));
  703. end;
  704. function reg8toreg32(reg : tregister) : tregister;
  705. begin
  706. reg8toreg32:=tregister(byte(reg)-byte(R_DI));
  707. end;
  708. function regtoreg8(reg : tregister) : tregister;
  709. begin
  710. regtoreg8:=reg32toreg8(reg);
  711. end;
  712. function regtoreg16(reg : tregister) : tregister;
  713. begin
  714. regtoreg16:=reg32toreg16(reg);
  715. end;
  716. function regtoreg32(reg : tregister) : tregister;
  717. begin
  718. regtoreg32:=reg;
  719. end;
  720. function regtoreg64(reg : tregister) : tregister;
  721. begin
  722. { to avoid warning }
  723. regtoreg64:=R_NO;
  724. end;
  725. function regsize(reg : tregister) : topsize;
  726. begin
  727. if reg in regset8bit then
  728. regsize:=S_B
  729. else if reg in regset16bit then
  730. regsize:=S_W
  731. else if reg in regset32bit then
  732. regsize:=S_L;
  733. end;
  734. procedure reset_reference(var ref : treference);
  735. begin
  736. FillChar(ref,sizeof(treference),0);
  737. end;
  738. function new_reference(base : tregister;offset : longint) : preference;
  739. var
  740. r : preference;
  741. begin
  742. new(r);
  743. FillChar(r^,sizeof(treference),0);
  744. r^.base:=base;
  745. r^.offset:=offset;
  746. new_reference:=r;
  747. end;
  748. {*****************************************************************************
  749. Instruction table
  750. *****************************************************************************}
  751. var
  752. saveexit : pointer;
  753. procedure FreeInsTabCache;{$ifndef FPC}far;{$endif}
  754. begin
  755. exitproc:=saveexit;
  756. {$ifndef NOAG386BIN}
  757. dispose(instabcache);
  758. {$endif NOAG386BIN}
  759. end;
  760. procedure BuildInsTabCache;
  761. {$ifndef NOAG386BIN}
  762. var
  763. i : longint;
  764. {$endif}
  765. begin
  766. {$ifndef NOAG386BIN}
  767. new(instabcache);
  768. FillChar(instabcache^,sizeof(tinstabcache),$ff);
  769. i:=0;
  770. while (i<InsTabEntries) do
  771. begin
  772. if InsTabCache^[InsTab[i].OPcode]=-1 then
  773. InsTabCache^[InsTab[i].OPcode]:=i;
  774. inc(i);
  775. end;
  776. {$endif NOAG386BIN}
  777. saveexit:=exitproc;
  778. exitproc:=@FreeInsTabCache;
  779. end;
  780. begin
  781. BuildInsTabCache;
  782. end.
  783. {
  784. $Log$
  785. Revision 1.3 1999-05-12 00:19:51 peter
  786. * removed R_DEFAULT_SEG
  787. * uniform float names
  788. Revision 1.2 1999/05/11 16:30:00 peter
  789. * more noag386bin defines, so tp7 can compile at least
  790. Revision 1.1 1999/05/01 13:24:23 peter
  791. * merged nasm compiler
  792. * old asm moved to oldasm/
  793. Revision 1.13 1999/04/14 09:07:43 peter
  794. * asm reader improvements
  795. Revision 1.12 1999/04/10 16:14:09 peter
  796. * fixed optimizer
  797. Revision 1.11 1999/03/31 13:55:33 peter
  798. * assembler inlining working for ag386bin
  799. Revision 1.10 1999/03/29 16:05:50 peter
  800. * optimizer working for ag386bin
  801. Revision 1.9 1999/03/26 00:01:14 peter
  802. * first things for optimizer (compiles but cycle crashes)
  803. Revision 1.8 1999/03/06 17:24:21 peter
  804. * rewritten intel parser a lot, especially reference reading
  805. * size checking added for asm parsers
  806. Revision 1.7 1999/03/02 02:56:20 peter
  807. + stabs support for binary writers
  808. * more fixes and missing updates from the previous commit :(
  809. Revision 1.6 1999/03/01 15:46:22 peter
  810. * ag386bin finally make cycles correct
  811. * prefixes are now also normal opcodes
  812. Revision 1.5 1999/02/26 00:48:29 peter
  813. * assembler writers fixed for ag386bin
  814. Revision 1.4 1999/02/25 21:03:04 peter
  815. * ag386bin updates
  816. + coff writer
  817. Revision 1.3 1999/02/22 02:44:18 peter
  818. * ag386bin doesn't use i386.pas anymore
  819. Revision 1.2 1999/02/22 02:16:03 peter
  820. * updates for ag386bin
  821. Revision 1.1 1999/02/16 17:59:38 peter
  822. + initial files
  823. }