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i386-dis.c 98 KB

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  1. /* Print i386 instructions for GDB, the GNU debugger.
  2. Copyright 1988, 1989, 1991, 1993, 1994, 1995, 1996, 1997, 1998, 1999,
  3. 2001
  4. Free Software Foundation, Inc.
  5. This file is part of GDB.
  6. This program is free software; you can redistribute it and/or modify
  7. it under the terms of the GNU General Public License as published by
  8. the Free Software Foundation; either version 2 of the License, or
  9. (at your option) any later version.
  10. This program is distributed in the hope that it will be useful,
  11. but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. GNU General Public License for more details.
  14. You should have received a copy of the GNU General Public License
  15. along with this program; if not, write to the Free Software
  16. Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */
  17. /*
  18. * 80386 instruction printer by Pace Willisson (pace@prep.ai.mit.edu)
  19. * July 1988
  20. * modified by John Hassey (hassey@dg-rtp.dg.com)
  21. * x86-64 support added by Jan Hubicka (jh@suse.cz)
  22. */
  23. /*
  24. * The main tables describing the instructions is essentially a copy
  25. * of the "Opcode Map" chapter (Appendix A) of the Intel 80386
  26. * Programmers Manual. Usually, there is a capital letter, followed
  27. * by a small letter. The capital letter tell the addressing mode,
  28. * and the small letter tells about the operand size. Refer to
  29. * the Intel manual for details.
  30. */
  31. #include <stdlib.h>
  32. #include "dis-asm.h"
  33. #include "qemu-common.h"
  34. #define MAXLEN 20
  35. #include <setjmp.h>
  36. #ifndef UNIXWARE_COMPAT
  37. /* Set non-zero for broken, compatible instructions. Set to zero for
  38. non-broken opcodes. */
  39. #define UNIXWARE_COMPAT 1
  40. #endif
  41. static int fetch_data PARAMS ((struct disassemble_info *, bfd_byte *));
  42. static void ckprefix PARAMS ((void));
  43. static const char *prefix_name PARAMS ((int, int));
  44. static int print_insn PARAMS ((bfd_vma, disassemble_info *));
  45. static void dofloat PARAMS ((int));
  46. static void OP_ST PARAMS ((int, int));
  47. static void OP_STi PARAMS ((int, int));
  48. static int putop PARAMS ((const char *, int));
  49. static void oappend PARAMS ((const char *));
  50. static void append_seg PARAMS ((void));
  51. static void OP_indirE PARAMS ((int, int));
  52. static void print_operand_value (char *buf, size_t bufsize, int hex,
  53. bfd_vma disp);
  54. static void OP_E PARAMS ((int, int));
  55. static void OP_G PARAMS ((int, int));
  56. static bfd_vma get64 PARAMS ((void));
  57. static bfd_signed_vma get32 PARAMS ((void));
  58. static bfd_signed_vma get32s PARAMS ((void));
  59. static int get16 PARAMS ((void));
  60. static void set_op PARAMS ((bfd_vma, int));
  61. static void OP_REG PARAMS ((int, int));
  62. static void OP_IMREG PARAMS ((int, int));
  63. static void OP_I PARAMS ((int, int));
  64. static void OP_I64 PARAMS ((int, int));
  65. static void OP_sI PARAMS ((int, int));
  66. static void OP_J PARAMS ((int, int));
  67. static void OP_SEG PARAMS ((int, int));
  68. static void OP_DIR PARAMS ((int, int));
  69. static void OP_OFF PARAMS ((int, int));
  70. static void OP_OFF64 PARAMS ((int, int));
  71. static void ptr_reg PARAMS ((int, int));
  72. static void OP_ESreg PARAMS ((int, int));
  73. static void OP_DSreg PARAMS ((int, int));
  74. static void OP_C PARAMS ((int, int));
  75. static void OP_D PARAMS ((int, int));
  76. static void OP_T PARAMS ((int, int));
  77. static void OP_Rd PARAMS ((int, int));
  78. static void OP_MMX PARAMS ((int, int));
  79. static void OP_XMM PARAMS ((int, int));
  80. static void OP_EM PARAMS ((int, int));
  81. static void OP_EX PARAMS ((int, int));
  82. static void OP_MS PARAMS ((int, int));
  83. static void OP_XS PARAMS ((int, int));
  84. static void OP_3DNowSuffix PARAMS ((int, int));
  85. static void OP_SIMD_Suffix PARAMS ((int, int));
  86. static void SIMD_Fixup PARAMS ((int, int));
  87. static void BadOp PARAMS ((void));
  88. struct dis_private {
  89. /* Points to first byte not fetched. */
  90. bfd_byte *max_fetched;
  91. bfd_byte the_buffer[MAXLEN];
  92. bfd_vma insn_start;
  93. int orig_sizeflag;
  94. jmp_buf bailout;
  95. };
  96. /* The opcode for the fwait instruction, which we treat as a prefix
  97. when we can. */
  98. #define FWAIT_OPCODE (0x9b)
  99. /* Set to 1 for 64bit mode disassembly. */
  100. static int mode_64bit;
  101. /* Flags for the prefixes for the current instruction. See below. */
  102. static int prefixes;
  103. /* REX prefix the current instruction. See below. */
  104. static int rex;
  105. /* Bits of REX we've already used. */
  106. static int rex_used;
  107. #define REX_MODE64 8
  108. #define REX_EXTX 4
  109. #define REX_EXTY 2
  110. #define REX_EXTZ 1
  111. /* Mark parts used in the REX prefix. When we are testing for
  112. empty prefix (for 8bit register REX extension), just mask it
  113. out. Otherwise test for REX bit is excuse for existence of REX
  114. only in case value is nonzero. */
  115. #define USED_REX(value) \
  116. { \
  117. if (value) \
  118. rex_used |= (rex & value) ? (value) | 0x40 : 0; \
  119. else \
  120. rex_used |= 0x40; \
  121. }
  122. /* Flags for prefixes which we somehow handled when printing the
  123. current instruction. */
  124. static int used_prefixes;
  125. /* Flags stored in PREFIXES. */
  126. #define PREFIX_REPZ 1
  127. #define PREFIX_REPNZ 2
  128. #define PREFIX_LOCK 4
  129. #define PREFIX_CS 8
  130. #define PREFIX_SS 0x10
  131. #define PREFIX_DS 0x20
  132. #define PREFIX_ES 0x40
  133. #define PREFIX_FS 0x80
  134. #define PREFIX_GS 0x100
  135. #define PREFIX_DATA 0x200
  136. #define PREFIX_ADDR 0x400
  137. #define PREFIX_FWAIT 0x800
  138. /* Make sure that bytes from INFO->PRIVATE_DATA->BUFFER (inclusive)
  139. to ADDR (exclusive) are valid. Returns 1 for success, longjmps
  140. on error. */
  141. #define FETCH_DATA(info, addr) \
  142. ((addr) <= ((struct dis_private *) (info->private_data))->max_fetched \
  143. ? 1 : fetch_data ((info), (addr)))
  144. static int
  145. fetch_data (info, addr)
  146. struct disassemble_info *info;
  147. bfd_byte *addr;
  148. {
  149. int status;
  150. struct dis_private *priv = (struct dis_private *) info->private_data;
  151. bfd_vma start = priv->insn_start + (priv->max_fetched - priv->the_buffer);
  152. status = (*info->read_memory_func) (start,
  153. priv->max_fetched,
  154. addr - priv->max_fetched,
  155. info);
  156. if (status != 0)
  157. {
  158. /* If we did manage to read at least one byte, then
  159. print_insn_i386 will do something sensible. Otherwise, print
  160. an error. We do that here because this is where we know
  161. STATUS. */
  162. if (priv->max_fetched == priv->the_buffer)
  163. (*info->memory_error_func) (status, start, info);
  164. longjmp (priv->bailout, 1);
  165. }
  166. else
  167. priv->max_fetched = addr;
  168. return 1;
  169. }
  170. #define XX NULL, 0
  171. #define Eb OP_E, b_mode
  172. #define Ev OP_E, v_mode
  173. #define Ed OP_E, d_mode
  174. #define indirEb OP_indirE, b_mode
  175. #define indirEv OP_indirE, v_mode
  176. #define Ew OP_E, w_mode
  177. #define Ma OP_E, v_mode
  178. #define M OP_E, 0 /* lea, lgdt, etc. */
  179. #define Mp OP_E, 0 /* 32 or 48 bit memory operand for LDS, LES etc */
  180. #define Gb OP_G, b_mode
  181. #define Gv OP_G, v_mode
  182. #define Gd OP_G, d_mode
  183. #define Gw OP_G, w_mode
  184. #define Rd OP_Rd, d_mode
  185. #define Rm OP_Rd, m_mode
  186. #define Ib OP_I, b_mode
  187. #define sIb OP_sI, b_mode /* sign extened byte */
  188. #define Iv OP_I, v_mode
  189. #define Iq OP_I, q_mode
  190. #define Iv64 OP_I64, v_mode
  191. #define Iw OP_I, w_mode
  192. #define Jb OP_J, b_mode
  193. #define Jv OP_J, v_mode
  194. #define Cm OP_C, m_mode
  195. #define Dm OP_D, m_mode
  196. #define Td OP_T, d_mode
  197. #define RMeAX OP_REG, eAX_reg
  198. #define RMeBX OP_REG, eBX_reg
  199. #define RMeCX OP_REG, eCX_reg
  200. #define RMeDX OP_REG, eDX_reg
  201. #define RMeSP OP_REG, eSP_reg
  202. #define RMeBP OP_REG, eBP_reg
  203. #define RMeSI OP_REG, eSI_reg
  204. #define RMeDI OP_REG, eDI_reg
  205. #define RMrAX OP_REG, rAX_reg
  206. #define RMrBX OP_REG, rBX_reg
  207. #define RMrCX OP_REG, rCX_reg
  208. #define RMrDX OP_REG, rDX_reg
  209. #define RMrSP OP_REG, rSP_reg
  210. #define RMrBP OP_REG, rBP_reg
  211. #define RMrSI OP_REG, rSI_reg
  212. #define RMrDI OP_REG, rDI_reg
  213. #define RMAL OP_REG, al_reg
  214. #define RMAL OP_REG, al_reg
  215. #define RMCL OP_REG, cl_reg
  216. #define RMDL OP_REG, dl_reg
  217. #define RMBL OP_REG, bl_reg
  218. #define RMAH OP_REG, ah_reg
  219. #define RMCH OP_REG, ch_reg
  220. #define RMDH OP_REG, dh_reg
  221. #define RMBH OP_REG, bh_reg
  222. #define RMAX OP_REG, ax_reg
  223. #define RMDX OP_REG, dx_reg
  224. #define eAX OP_IMREG, eAX_reg
  225. #define eBX OP_IMREG, eBX_reg
  226. #define eCX OP_IMREG, eCX_reg
  227. #define eDX OP_IMREG, eDX_reg
  228. #define eSP OP_IMREG, eSP_reg
  229. #define eBP OP_IMREG, eBP_reg
  230. #define eSI OP_IMREG, eSI_reg
  231. #define eDI OP_IMREG, eDI_reg
  232. #define AL OP_IMREG, al_reg
  233. #define AL OP_IMREG, al_reg
  234. #define CL OP_IMREG, cl_reg
  235. #define DL OP_IMREG, dl_reg
  236. #define BL OP_IMREG, bl_reg
  237. #define AH OP_IMREG, ah_reg
  238. #define CH OP_IMREG, ch_reg
  239. #define DH OP_IMREG, dh_reg
  240. #define BH OP_IMREG, bh_reg
  241. #define AX OP_IMREG, ax_reg
  242. #define DX OP_IMREG, dx_reg
  243. #define indirDX OP_IMREG, indir_dx_reg
  244. #define Sw OP_SEG, w_mode
  245. #define Ap OP_DIR, 0
  246. #define Ob OP_OFF, b_mode
  247. #define Ob64 OP_OFF64, b_mode
  248. #define Ov OP_OFF, v_mode
  249. #define Ov64 OP_OFF64, v_mode
  250. #define Xb OP_DSreg, eSI_reg
  251. #define Xv OP_DSreg, eSI_reg
  252. #define Yb OP_ESreg, eDI_reg
  253. #define Yv OP_ESreg, eDI_reg
  254. #define DSBX OP_DSreg, eBX_reg
  255. #define es OP_REG, es_reg
  256. #define ss OP_REG, ss_reg
  257. #define cs OP_REG, cs_reg
  258. #define ds OP_REG, ds_reg
  259. #define fs OP_REG, fs_reg
  260. #define gs OP_REG, gs_reg
  261. #define MX OP_MMX, 0
  262. #define XM OP_XMM, 0
  263. #define EM OP_EM, v_mode
  264. #define EX OP_EX, v_mode
  265. #define MS OP_MS, v_mode
  266. #define XS OP_XS, v_mode
  267. #define None OP_E, 0
  268. #define OPSUF OP_3DNowSuffix, 0
  269. #define OPSIMD OP_SIMD_Suffix, 0
  270. #define cond_jump_flag NULL, cond_jump_mode
  271. #define loop_jcxz_flag NULL, loop_jcxz_mode
  272. /* bits in sizeflag */
  273. #define SUFFIX_ALWAYS 4
  274. #define AFLAG 2
  275. #define DFLAG 1
  276. #define b_mode 1 /* byte operand */
  277. #define v_mode 2 /* operand size depends on prefixes */
  278. #define w_mode 3 /* word operand */
  279. #define d_mode 4 /* double word operand */
  280. #define q_mode 5 /* quad word operand */
  281. #define x_mode 6
  282. #define m_mode 7 /* d_mode in 32bit, q_mode in 64bit mode. */
  283. #define cond_jump_mode 8
  284. #define loop_jcxz_mode 9
  285. #define es_reg 100
  286. #define cs_reg 101
  287. #define ss_reg 102
  288. #define ds_reg 103
  289. #define fs_reg 104
  290. #define gs_reg 105
  291. #define eAX_reg 108
  292. #define eCX_reg 109
  293. #define eDX_reg 110
  294. #define eBX_reg 111
  295. #define eSP_reg 112
  296. #define eBP_reg 113
  297. #define eSI_reg 114
  298. #define eDI_reg 115
  299. #define al_reg 116
  300. #define cl_reg 117
  301. #define dl_reg 118
  302. #define bl_reg 119
  303. #define ah_reg 120
  304. #define ch_reg 121
  305. #define dh_reg 122
  306. #define bh_reg 123
  307. #define ax_reg 124
  308. #define cx_reg 125
  309. #define dx_reg 126
  310. #define bx_reg 127
  311. #define sp_reg 128
  312. #define bp_reg 129
  313. #define si_reg 130
  314. #define di_reg 131
  315. #define rAX_reg 132
  316. #define rCX_reg 133
  317. #define rDX_reg 134
  318. #define rBX_reg 135
  319. #define rSP_reg 136
  320. #define rBP_reg 137
  321. #define rSI_reg 138
  322. #define rDI_reg 139
  323. #define indir_dx_reg 150
  324. #define FLOATCODE 1
  325. #define USE_GROUPS 2
  326. #define USE_PREFIX_USER_TABLE 3
  327. #define X86_64_SPECIAL 4
  328. #define FLOAT NULL, NULL, FLOATCODE, NULL, 0, NULL, 0
  329. #define GRP1b NULL, NULL, USE_GROUPS, NULL, 0, NULL, 0
  330. #define GRP1S NULL, NULL, USE_GROUPS, NULL, 1, NULL, 0
  331. #define GRP1Ss NULL, NULL, USE_GROUPS, NULL, 2, NULL, 0
  332. #define GRP2b NULL, NULL, USE_GROUPS, NULL, 3, NULL, 0
  333. #define GRP2S NULL, NULL, USE_GROUPS, NULL, 4, NULL, 0
  334. #define GRP2b_one NULL, NULL, USE_GROUPS, NULL, 5, NULL, 0
  335. #define GRP2S_one NULL, NULL, USE_GROUPS, NULL, 6, NULL, 0
  336. #define GRP2b_cl NULL, NULL, USE_GROUPS, NULL, 7, NULL, 0
  337. #define GRP2S_cl NULL, NULL, USE_GROUPS, NULL, 8, NULL, 0
  338. #define GRP3b NULL, NULL, USE_GROUPS, NULL, 9, NULL, 0
  339. #define GRP3S NULL, NULL, USE_GROUPS, NULL, 10, NULL, 0
  340. #define GRP4 NULL, NULL, USE_GROUPS, NULL, 11, NULL, 0
  341. #define GRP5 NULL, NULL, USE_GROUPS, NULL, 12, NULL, 0
  342. #define GRP6 NULL, NULL, USE_GROUPS, NULL, 13, NULL, 0
  343. #define GRP7 NULL, NULL, USE_GROUPS, NULL, 14, NULL, 0
  344. #define GRP8 NULL, NULL, USE_GROUPS, NULL, 15, NULL, 0
  345. #define GRP9 NULL, NULL, USE_GROUPS, NULL, 16, NULL, 0
  346. #define GRP10 NULL, NULL, USE_GROUPS, NULL, 17, NULL, 0
  347. #define GRP11 NULL, NULL, USE_GROUPS, NULL, 18, NULL, 0
  348. #define GRP12 NULL, NULL, USE_GROUPS, NULL, 19, NULL, 0
  349. #define GRP13 NULL, NULL, USE_GROUPS, NULL, 20, NULL, 0
  350. #define GRP14 NULL, NULL, USE_GROUPS, NULL, 21, NULL, 0
  351. #define GRPAMD NULL, NULL, USE_GROUPS, NULL, 22, NULL, 0
  352. #define PREGRP0 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 0, NULL, 0
  353. #define PREGRP1 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 1, NULL, 0
  354. #define PREGRP2 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 2, NULL, 0
  355. #define PREGRP3 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 3, NULL, 0
  356. #define PREGRP4 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 4, NULL, 0
  357. #define PREGRP5 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 5, NULL, 0
  358. #define PREGRP6 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 6, NULL, 0
  359. #define PREGRP7 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 7, NULL, 0
  360. #define PREGRP8 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 8, NULL, 0
  361. #define PREGRP9 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 9, NULL, 0
  362. #define PREGRP10 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 10, NULL, 0
  363. #define PREGRP11 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 11, NULL, 0
  364. #define PREGRP12 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 12, NULL, 0
  365. #define PREGRP13 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 13, NULL, 0
  366. #define PREGRP14 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 14, NULL, 0
  367. #define PREGRP15 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 15, NULL, 0
  368. #define PREGRP16 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 16, NULL, 0
  369. #define PREGRP17 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 17, NULL, 0
  370. #define PREGRP18 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 18, NULL, 0
  371. #define PREGRP19 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 19, NULL, 0
  372. #define PREGRP20 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 20, NULL, 0
  373. #define PREGRP21 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 21, NULL, 0
  374. #define PREGRP22 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 22, NULL, 0
  375. #define PREGRP23 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 23, NULL, 0
  376. #define PREGRP24 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 24, NULL, 0
  377. #define PREGRP25 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 25, NULL, 0
  378. #define PREGRP26 NULL, NULL, USE_PREFIX_USER_TABLE, NULL, 26, NULL, 0
  379. #define X86_64_0 NULL, NULL, X86_64_SPECIAL, NULL, 0, NULL, 0
  380. typedef void (*op_rtn) PARAMS ((int bytemode, int sizeflag));
  381. struct dis386 {
  382. const char *name;
  383. op_rtn op1;
  384. int bytemode1;
  385. op_rtn op2;
  386. int bytemode2;
  387. op_rtn op3;
  388. int bytemode3;
  389. };
  390. /* Upper case letters in the instruction names here are macros.
  391. 'A' => print 'b' if no register operands or suffix_always is true
  392. 'B' => print 'b' if suffix_always is true
  393. 'E' => print 'e' if 32-bit form of jcxz
  394. 'F' => print 'w' or 'l' depending on address size prefix (loop insns)
  395. 'H' => print ",pt" or ",pn" branch hint
  396. 'L' => print 'l' if suffix_always is true
  397. 'N' => print 'n' if instruction has no wait "prefix"
  398. 'O' => print 'd', or 'o'
  399. 'P' => print 'w', 'l' or 'q' if instruction has an operand size prefix,
  400. . or suffix_always is true. print 'q' if rex prefix is present.
  401. 'Q' => print 'w', 'l' or 'q' if no register operands or suffix_always
  402. . is true
  403. 'R' => print 'w', 'l' or 'q' ("wd" or "dq" in intel mode)
  404. 'S' => print 'w', 'l' or 'q' if suffix_always is true
  405. 'T' => print 'q' in 64bit mode and behave as 'P' otherwise
  406. 'U' => print 'q' in 64bit mode and behave as 'Q' otherwise
  407. 'X' => print 's', 'd' depending on data16 prefix (for XMM)
  408. 'W' => print 'b' or 'w' ("w" or "de" in intel mode)
  409. 'Y' => 'q' if instruction has an REX 64bit overwrite prefix
  410. Many of the above letters print nothing in Intel mode. See "putop"
  411. for the details.
  412. Braces '{' and '}', and vertical bars '|', indicate alternative
  413. mnemonic strings for AT&T, Intel, X86_64 AT&T, and X86_64 Intel
  414. modes. In cases where there are only two alternatives, the X86_64
  415. instruction is reserved, and "(bad)" is printed.
  416. */
  417. static const struct dis386 dis386[] = {
  418. /* 00 */
  419. { "addB", Eb, Gb, XX },
  420. { "addS", Ev, Gv, XX },
  421. { "addB", Gb, Eb, XX },
  422. { "addS", Gv, Ev, XX },
  423. { "addB", AL, Ib, XX },
  424. { "addS", eAX, Iv, XX },
  425. { "push{T|}", es, XX, XX },
  426. { "pop{T|}", es, XX, XX },
  427. /* 08 */
  428. { "orB", Eb, Gb, XX },
  429. { "orS", Ev, Gv, XX },
  430. { "orB", Gb, Eb, XX },
  431. { "orS", Gv, Ev, XX },
  432. { "orB", AL, Ib, XX },
  433. { "orS", eAX, Iv, XX },
  434. { "push{T|}", cs, XX, XX },
  435. { "(bad)", XX, XX, XX }, /* 0x0f extended opcode escape */
  436. /* 10 */
  437. { "adcB", Eb, Gb, XX },
  438. { "adcS", Ev, Gv, XX },
  439. { "adcB", Gb, Eb, XX },
  440. { "adcS", Gv, Ev, XX },
  441. { "adcB", AL, Ib, XX },
  442. { "adcS", eAX, Iv, XX },
  443. { "push{T|}", ss, XX, XX },
  444. { "popT|}", ss, XX, XX },
  445. /* 18 */
  446. { "sbbB", Eb, Gb, XX },
  447. { "sbbS", Ev, Gv, XX },
  448. { "sbbB", Gb, Eb, XX },
  449. { "sbbS", Gv, Ev, XX },
  450. { "sbbB", AL, Ib, XX },
  451. { "sbbS", eAX, Iv, XX },
  452. { "push{T|}", ds, XX, XX },
  453. { "pop{T|}", ds, XX, XX },
  454. /* 20 */
  455. { "andB", Eb, Gb, XX },
  456. { "andS", Ev, Gv, XX },
  457. { "andB", Gb, Eb, XX },
  458. { "andS", Gv, Ev, XX },
  459. { "andB", AL, Ib, XX },
  460. { "andS", eAX, Iv, XX },
  461. { "(bad)", XX, XX, XX }, /* SEG ES prefix */
  462. { "daa{|}", XX, XX, XX },
  463. /* 28 */
  464. { "subB", Eb, Gb, XX },
  465. { "subS", Ev, Gv, XX },
  466. { "subB", Gb, Eb, XX },
  467. { "subS", Gv, Ev, XX },
  468. { "subB", AL, Ib, XX },
  469. { "subS", eAX, Iv, XX },
  470. { "(bad)", XX, XX, XX }, /* SEG CS prefix */
  471. { "das{|}", XX, XX, XX },
  472. /* 30 */
  473. { "xorB", Eb, Gb, XX },
  474. { "xorS", Ev, Gv, XX },
  475. { "xorB", Gb, Eb, XX },
  476. { "xorS", Gv, Ev, XX },
  477. { "xorB", AL, Ib, XX },
  478. { "xorS", eAX, Iv, XX },
  479. { "(bad)", XX, XX, XX }, /* SEG SS prefix */
  480. { "aaa{|}", XX, XX, XX },
  481. /* 38 */
  482. { "cmpB", Eb, Gb, XX },
  483. { "cmpS", Ev, Gv, XX },
  484. { "cmpB", Gb, Eb, XX },
  485. { "cmpS", Gv, Ev, XX },
  486. { "cmpB", AL, Ib, XX },
  487. { "cmpS", eAX, Iv, XX },
  488. { "(bad)", XX, XX, XX }, /* SEG DS prefix */
  489. { "aas{|}", XX, XX, XX },
  490. /* 40 */
  491. { "inc{S|}", RMeAX, XX, XX },
  492. { "inc{S|}", RMeCX, XX, XX },
  493. { "inc{S|}", RMeDX, XX, XX },
  494. { "inc{S|}", RMeBX, XX, XX },
  495. { "inc{S|}", RMeSP, XX, XX },
  496. { "inc{S|}", RMeBP, XX, XX },
  497. { "inc{S|}", RMeSI, XX, XX },
  498. { "inc{S|}", RMeDI, XX, XX },
  499. /* 48 */
  500. { "dec{S|}", RMeAX, XX, XX },
  501. { "dec{S|}", RMeCX, XX, XX },
  502. { "dec{S|}", RMeDX, XX, XX },
  503. { "dec{S|}", RMeBX, XX, XX },
  504. { "dec{S|}", RMeSP, XX, XX },
  505. { "dec{S|}", RMeBP, XX, XX },
  506. { "dec{S|}", RMeSI, XX, XX },
  507. { "dec{S|}", RMeDI, XX, XX },
  508. /* 50 */
  509. { "pushS", RMrAX, XX, XX },
  510. { "pushS", RMrCX, XX, XX },
  511. { "pushS", RMrDX, XX, XX },
  512. { "pushS", RMrBX, XX, XX },
  513. { "pushS", RMrSP, XX, XX },
  514. { "pushS", RMrBP, XX, XX },
  515. { "pushS", RMrSI, XX, XX },
  516. { "pushS", RMrDI, XX, XX },
  517. /* 58 */
  518. { "popS", RMrAX, XX, XX },
  519. { "popS", RMrCX, XX, XX },
  520. { "popS", RMrDX, XX, XX },
  521. { "popS", RMrBX, XX, XX },
  522. { "popS", RMrSP, XX, XX },
  523. { "popS", RMrBP, XX, XX },
  524. { "popS", RMrSI, XX, XX },
  525. { "popS", RMrDI, XX, XX },
  526. /* 60 */
  527. { "pusha{P|}", XX, XX, XX },
  528. { "popa{P|}", XX, XX, XX },
  529. { "bound{S|}", Gv, Ma, XX },
  530. { X86_64_0 },
  531. { "(bad)", XX, XX, XX }, /* seg fs */
  532. { "(bad)", XX, XX, XX }, /* seg gs */
  533. { "(bad)", XX, XX, XX }, /* op size prefix */
  534. { "(bad)", XX, XX, XX }, /* adr size prefix */
  535. /* 68 */
  536. { "pushT", Iq, XX, XX },
  537. { "imulS", Gv, Ev, Iv },
  538. { "pushT", sIb, XX, XX },
  539. { "imulS", Gv, Ev, sIb },
  540. { "ins{b||b|}", Yb, indirDX, XX },
  541. { "ins{R||R|}", Yv, indirDX, XX },
  542. { "outs{b||b|}", indirDX, Xb, XX },
  543. { "outs{R||R|}", indirDX, Xv, XX },
  544. /* 70 */
  545. { "joH", Jb, XX, cond_jump_flag },
  546. { "jnoH", Jb, XX, cond_jump_flag },
  547. { "jbH", Jb, XX, cond_jump_flag },
  548. { "jaeH", Jb, XX, cond_jump_flag },
  549. { "jeH", Jb, XX, cond_jump_flag },
  550. { "jneH", Jb, XX, cond_jump_flag },
  551. { "jbeH", Jb, XX, cond_jump_flag },
  552. { "jaH", Jb, XX, cond_jump_flag },
  553. /* 78 */
  554. { "jsH", Jb, XX, cond_jump_flag },
  555. { "jnsH", Jb, XX, cond_jump_flag },
  556. { "jpH", Jb, XX, cond_jump_flag },
  557. { "jnpH", Jb, XX, cond_jump_flag },
  558. { "jlH", Jb, XX, cond_jump_flag },
  559. { "jgeH", Jb, XX, cond_jump_flag },
  560. { "jleH", Jb, XX, cond_jump_flag },
  561. { "jgH", Jb, XX, cond_jump_flag },
  562. /* 80 */
  563. { GRP1b },
  564. { GRP1S },
  565. { "(bad)", XX, XX, XX },
  566. { GRP1Ss },
  567. { "testB", Eb, Gb, XX },
  568. { "testS", Ev, Gv, XX },
  569. { "xchgB", Eb, Gb, XX },
  570. { "xchgS", Ev, Gv, XX },
  571. /* 88 */
  572. { "movB", Eb, Gb, XX },
  573. { "movS", Ev, Gv, XX },
  574. { "movB", Gb, Eb, XX },
  575. { "movS", Gv, Ev, XX },
  576. { "movQ", Ev, Sw, XX },
  577. { "leaS", Gv, M, XX },
  578. { "movQ", Sw, Ev, XX },
  579. { "popU", Ev, XX, XX },
  580. /* 90 */
  581. { "nop", XX, XX, XX },
  582. /* FIXME: NOP with REPz prefix is called PAUSE. */
  583. { "xchgS", RMeCX, eAX, XX },
  584. { "xchgS", RMeDX, eAX, XX },
  585. { "xchgS", RMeBX, eAX, XX },
  586. { "xchgS", RMeSP, eAX, XX },
  587. { "xchgS", RMeBP, eAX, XX },
  588. { "xchgS", RMeSI, eAX, XX },
  589. { "xchgS", RMeDI, eAX, XX },
  590. /* 98 */
  591. { "cW{tR||tR|}", XX, XX, XX },
  592. { "cR{tO||tO|}", XX, XX, XX },
  593. { "lcall{T|}", Ap, XX, XX },
  594. { "(bad)", XX, XX, XX }, /* fwait */
  595. { "pushfT", XX, XX, XX },
  596. { "popfT", XX, XX, XX },
  597. { "sahf{|}", XX, XX, XX },
  598. { "lahf{|}", XX, XX, XX },
  599. /* a0 */
  600. { "movB", AL, Ob64, XX },
  601. { "movS", eAX, Ov64, XX },
  602. { "movB", Ob64, AL, XX },
  603. { "movS", Ov64, eAX, XX },
  604. { "movs{b||b|}", Yb, Xb, XX },
  605. { "movs{R||R|}", Yv, Xv, XX },
  606. { "cmps{b||b|}", Xb, Yb, XX },
  607. { "cmps{R||R|}", Xv, Yv, XX },
  608. /* a8 */
  609. { "testB", AL, Ib, XX },
  610. { "testS", eAX, Iv, XX },
  611. { "stosB", Yb, AL, XX },
  612. { "stosS", Yv, eAX, XX },
  613. { "lodsB", AL, Xb, XX },
  614. { "lodsS", eAX, Xv, XX },
  615. { "scasB", AL, Yb, XX },
  616. { "scasS", eAX, Yv, XX },
  617. /* b0 */
  618. { "movB", RMAL, Ib, XX },
  619. { "movB", RMCL, Ib, XX },
  620. { "movB", RMDL, Ib, XX },
  621. { "movB", RMBL, Ib, XX },
  622. { "movB", RMAH, Ib, XX },
  623. { "movB", RMCH, Ib, XX },
  624. { "movB", RMDH, Ib, XX },
  625. { "movB", RMBH, Ib, XX },
  626. /* b8 */
  627. { "movS", RMeAX, Iv64, XX },
  628. { "movS", RMeCX, Iv64, XX },
  629. { "movS", RMeDX, Iv64, XX },
  630. { "movS", RMeBX, Iv64, XX },
  631. { "movS", RMeSP, Iv64, XX },
  632. { "movS", RMeBP, Iv64, XX },
  633. { "movS", RMeSI, Iv64, XX },
  634. { "movS", RMeDI, Iv64, XX },
  635. /* c0 */
  636. { GRP2b },
  637. { GRP2S },
  638. { "retT", Iw, XX, XX },
  639. { "retT", XX, XX, XX },
  640. { "les{S|}", Gv, Mp, XX },
  641. { "ldsS", Gv, Mp, XX },
  642. { "movA", Eb, Ib, XX },
  643. { "movQ", Ev, Iv, XX },
  644. /* c8 */
  645. { "enterT", Iw, Ib, XX },
  646. { "leaveT", XX, XX, XX },
  647. { "lretP", Iw, XX, XX },
  648. { "lretP", XX, XX, XX },
  649. { "int3", XX, XX, XX },
  650. { "int", Ib, XX, XX },
  651. { "into{|}", XX, XX, XX },
  652. { "iretP", XX, XX, XX },
  653. /* d0 */
  654. { GRP2b_one },
  655. { GRP2S_one },
  656. { GRP2b_cl },
  657. { GRP2S_cl },
  658. { "aam{|}", sIb, XX, XX },
  659. { "aad{|}", sIb, XX, XX },
  660. { "(bad)", XX, XX, XX },
  661. { "xlat", DSBX, XX, XX },
  662. /* d8 */
  663. { FLOAT },
  664. { FLOAT },
  665. { FLOAT },
  666. { FLOAT },
  667. { FLOAT },
  668. { FLOAT },
  669. { FLOAT },
  670. { FLOAT },
  671. /* e0 */
  672. { "loopneFH", Jb, XX, loop_jcxz_flag },
  673. { "loopeFH", Jb, XX, loop_jcxz_flag },
  674. { "loopFH", Jb, XX, loop_jcxz_flag },
  675. { "jEcxzH", Jb, XX, loop_jcxz_flag },
  676. { "inB", AL, Ib, XX },
  677. { "inS", eAX, Ib, XX },
  678. { "outB", Ib, AL, XX },
  679. { "outS", Ib, eAX, XX },
  680. /* e8 */
  681. { "callT", Jv, XX, XX },
  682. { "jmpT", Jv, XX, XX },
  683. { "ljmp{T|}", Ap, XX, XX },
  684. { "jmp", Jb, XX, XX },
  685. { "inB", AL, indirDX, XX },
  686. { "inS", eAX, indirDX, XX },
  687. { "outB", indirDX, AL, XX },
  688. { "outS", indirDX, eAX, XX },
  689. /* f0 */
  690. { "(bad)", XX, XX, XX }, /* lock prefix */
  691. { "(bad)", XX, XX, XX },
  692. { "(bad)", XX, XX, XX }, /* repne */
  693. { "(bad)", XX, XX, XX }, /* repz */
  694. { "hlt", XX, XX, XX },
  695. { "cmc", XX, XX, XX },
  696. { GRP3b },
  697. { GRP3S },
  698. /* f8 */
  699. { "clc", XX, XX, XX },
  700. { "stc", XX, XX, XX },
  701. { "cli", XX, XX, XX },
  702. { "sti", XX, XX, XX },
  703. { "cld", XX, XX, XX },
  704. { "std", XX, XX, XX },
  705. { GRP4 },
  706. { GRP5 },
  707. };
  708. static const struct dis386 dis386_twobyte[] = {
  709. /* 00 */
  710. { GRP6 },
  711. { GRP7 },
  712. { "larS", Gv, Ew, XX },
  713. { "lslS", Gv, Ew, XX },
  714. { "(bad)", XX, XX, XX },
  715. { "syscall", XX, XX, XX },
  716. { "clts", XX, XX, XX },
  717. { "sysretP", XX, XX, XX },
  718. /* 08 */
  719. { "invd", XX, XX, XX },
  720. { "wbinvd", XX, XX, XX },
  721. { "(bad)", XX, XX, XX },
  722. { "ud2a", XX, XX, XX },
  723. { "(bad)", XX, XX, XX },
  724. { GRPAMD },
  725. { "femms", XX, XX, XX },
  726. { "", MX, EM, OPSUF }, /* See OP_3DNowSuffix. */
  727. /* 10 */
  728. { PREGRP8 },
  729. { PREGRP9 },
  730. { "movlpX", XM, EX, SIMD_Fixup, 'h' }, /* really only 2 operands */
  731. { "movlpX", EX, XM, SIMD_Fixup, 'h' },
  732. { "unpcklpX", XM, EX, XX },
  733. { "unpckhpX", XM, EX, XX },
  734. { "movhpX", XM, EX, SIMD_Fixup, 'l' },
  735. { "movhpX", EX, XM, SIMD_Fixup, 'l' },
  736. /* 18 */
  737. { GRP14 },
  738. { "(bad)", XX, XX, XX },
  739. { "(bad)", XX, XX, XX },
  740. { "(bad)", XX, XX, XX },
  741. { "(bad)", XX, XX, XX },
  742. { "(bad)", XX, XX, XX },
  743. { "(bad)", XX, XX, XX },
  744. { "(bad)", XX, XX, XX },
  745. /* 20 */
  746. { "movL", Rm, Cm, XX },
  747. { "movL", Rm, Dm, XX },
  748. { "movL", Cm, Rm, XX },
  749. { "movL", Dm, Rm, XX },
  750. { "movL", Rd, Td, XX },
  751. { "(bad)", XX, XX, XX },
  752. { "movL", Td, Rd, XX },
  753. { "(bad)", XX, XX, XX },
  754. /* 28 */
  755. { "movapX", XM, EX, XX },
  756. { "movapX", EX, XM, XX },
  757. { PREGRP2 },
  758. { "movntpX", Ev, XM, XX },
  759. { PREGRP4 },
  760. { PREGRP3 },
  761. { "ucomisX", XM,EX, XX },
  762. { "comisX", XM,EX, XX },
  763. /* 30 */
  764. { "wrmsr", XX, XX, XX },
  765. { "rdtsc", XX, XX, XX },
  766. { "rdmsr", XX, XX, XX },
  767. { "rdpmc", XX, XX, XX },
  768. { "sysenter", XX, XX, XX },
  769. { "sysexit", XX, XX, XX },
  770. { "(bad)", XX, XX, XX },
  771. { "(bad)", XX, XX, XX },
  772. /* 38 */
  773. { "(bad)", XX, XX, XX },
  774. { "(bad)", XX, XX, XX },
  775. { "(bad)", XX, XX, XX },
  776. { "(bad)", XX, XX, XX },
  777. { "(bad)", XX, XX, XX },
  778. { "(bad)", XX, XX, XX },
  779. { "(bad)", XX, XX, XX },
  780. { "(bad)", XX, XX, XX },
  781. /* 40 */
  782. { "cmovo", Gv, Ev, XX },
  783. { "cmovno", Gv, Ev, XX },
  784. { "cmovb", Gv, Ev, XX },
  785. { "cmovae", Gv, Ev, XX },
  786. { "cmove", Gv, Ev, XX },
  787. { "cmovne", Gv, Ev, XX },
  788. { "cmovbe", Gv, Ev, XX },
  789. { "cmova", Gv, Ev, XX },
  790. /* 48 */
  791. { "cmovs", Gv, Ev, XX },
  792. { "cmovns", Gv, Ev, XX },
  793. { "cmovp", Gv, Ev, XX },
  794. { "cmovnp", Gv, Ev, XX },
  795. { "cmovl", Gv, Ev, XX },
  796. { "cmovge", Gv, Ev, XX },
  797. { "cmovle", Gv, Ev, XX },
  798. { "cmovg", Gv, Ev, XX },
  799. /* 50 */
  800. { "movmskpX", Gd, XS, XX },
  801. { PREGRP13 },
  802. { PREGRP12 },
  803. { PREGRP11 },
  804. { "andpX", XM, EX, XX },
  805. { "andnpX", XM, EX, XX },
  806. { "orpX", XM, EX, XX },
  807. { "xorpX", XM, EX, XX },
  808. /* 58 */
  809. { PREGRP0 },
  810. { PREGRP10 },
  811. { PREGRP17 },
  812. { PREGRP16 },
  813. { PREGRP14 },
  814. { PREGRP7 },
  815. { PREGRP5 },
  816. { PREGRP6 },
  817. /* 60 */
  818. { "punpcklbw", MX, EM, XX },
  819. { "punpcklwd", MX, EM, XX },
  820. { "punpckldq", MX, EM, XX },
  821. { "packsswb", MX, EM, XX },
  822. { "pcmpgtb", MX, EM, XX },
  823. { "pcmpgtw", MX, EM, XX },
  824. { "pcmpgtd", MX, EM, XX },
  825. { "packuswb", MX, EM, XX },
  826. /* 68 */
  827. { "punpckhbw", MX, EM, XX },
  828. { "punpckhwd", MX, EM, XX },
  829. { "punpckhdq", MX, EM, XX },
  830. { "packssdw", MX, EM, XX },
  831. { PREGRP26 },
  832. { PREGRP24 },
  833. { "movd", MX, Ed, XX },
  834. { PREGRP19 },
  835. /* 70 */
  836. { PREGRP22 },
  837. { GRP10 },
  838. { GRP11 },
  839. { GRP12 },
  840. { "pcmpeqb", MX, EM, XX },
  841. { "pcmpeqw", MX, EM, XX },
  842. { "pcmpeqd", MX, EM, XX },
  843. { "emms", XX, XX, XX },
  844. /* 78 */
  845. { "(bad)", XX, XX, XX },
  846. { "(bad)", XX, XX, XX },
  847. { "(bad)", XX, XX, XX },
  848. { "(bad)", XX, XX, XX },
  849. { "(bad)", XX, XX, XX },
  850. { "(bad)", XX, XX, XX },
  851. { PREGRP23 },
  852. { PREGRP20 },
  853. /* 80 */
  854. { "joH", Jv, XX, cond_jump_flag },
  855. { "jnoH", Jv, XX, cond_jump_flag },
  856. { "jbH", Jv, XX, cond_jump_flag },
  857. { "jaeH", Jv, XX, cond_jump_flag },
  858. { "jeH", Jv, XX, cond_jump_flag },
  859. { "jneH", Jv, XX, cond_jump_flag },
  860. { "jbeH", Jv, XX, cond_jump_flag },
  861. { "jaH", Jv, XX, cond_jump_flag },
  862. /* 88 */
  863. { "jsH", Jv, XX, cond_jump_flag },
  864. { "jnsH", Jv, XX, cond_jump_flag },
  865. { "jpH", Jv, XX, cond_jump_flag },
  866. { "jnpH", Jv, XX, cond_jump_flag },
  867. { "jlH", Jv, XX, cond_jump_flag },
  868. { "jgeH", Jv, XX, cond_jump_flag },
  869. { "jleH", Jv, XX, cond_jump_flag },
  870. { "jgH", Jv, XX, cond_jump_flag },
  871. /* 90 */
  872. { "seto", Eb, XX, XX },
  873. { "setno", Eb, XX, XX },
  874. { "setb", Eb, XX, XX },
  875. { "setae", Eb, XX, XX },
  876. { "sete", Eb, XX, XX },
  877. { "setne", Eb, XX, XX },
  878. { "setbe", Eb, XX, XX },
  879. { "seta", Eb, XX, XX },
  880. /* 98 */
  881. { "sets", Eb, XX, XX },
  882. { "setns", Eb, XX, XX },
  883. { "setp", Eb, XX, XX },
  884. { "setnp", Eb, XX, XX },
  885. { "setl", Eb, XX, XX },
  886. { "setge", Eb, XX, XX },
  887. { "setle", Eb, XX, XX },
  888. { "setg", Eb, XX, XX },
  889. /* a0 */
  890. { "pushT", fs, XX, XX },
  891. { "popT", fs, XX, XX },
  892. { "cpuid", XX, XX, XX },
  893. { "btS", Ev, Gv, XX },
  894. { "shldS", Ev, Gv, Ib },
  895. { "shldS", Ev, Gv, CL },
  896. { "(bad)", XX, XX, XX },
  897. { "(bad)", XX, XX, XX },
  898. /* a8 */
  899. { "pushT", gs, XX, XX },
  900. { "popT", gs, XX, XX },
  901. { "rsm", XX, XX, XX },
  902. { "btsS", Ev, Gv, XX },
  903. { "shrdS", Ev, Gv, Ib },
  904. { "shrdS", Ev, Gv, CL },
  905. { GRP13 },
  906. { "imulS", Gv, Ev, XX },
  907. /* b0 */
  908. { "cmpxchgB", Eb, Gb, XX },
  909. { "cmpxchgS", Ev, Gv, XX },
  910. { "lssS", Gv, Mp, XX },
  911. { "btrS", Ev, Gv, XX },
  912. { "lfsS", Gv, Mp, XX },
  913. { "lgsS", Gv, Mp, XX },
  914. { "movz{bR|x|bR|x}", Gv, Eb, XX },
  915. { "movz{wR|x|wR|x}", Gv, Ew, XX }, /* yes, there really is movzww ! */
  916. /* b8 */
  917. { "(bad)", XX, XX, XX },
  918. { "ud2b", XX, XX, XX },
  919. { GRP8 },
  920. { "btcS", Ev, Gv, XX },
  921. { "bsfS", Gv, Ev, XX },
  922. { "bsrS", Gv, Ev, XX },
  923. { "movs{bR|x|bR|x}", Gv, Eb, XX },
  924. { "movs{wR|x|wR|x}", Gv, Ew, XX }, /* yes, there really is movsww ! */
  925. /* c0 */
  926. { "xaddB", Eb, Gb, XX },
  927. { "xaddS", Ev, Gv, XX },
  928. { PREGRP1 },
  929. { "movntiS", Ev, Gv, XX },
  930. { "pinsrw", MX, Ed, Ib },
  931. { "pextrw", Gd, MS, Ib },
  932. { "shufpX", XM, EX, Ib },
  933. { GRP9 },
  934. /* c8 */
  935. { "bswap", RMeAX, XX, XX },
  936. { "bswap", RMeCX, XX, XX },
  937. { "bswap", RMeDX, XX, XX },
  938. { "bswap", RMeBX, XX, XX },
  939. { "bswap", RMeSP, XX, XX },
  940. { "bswap", RMeBP, XX, XX },
  941. { "bswap", RMeSI, XX, XX },
  942. { "bswap", RMeDI, XX, XX },
  943. /* d0 */
  944. { "(bad)", XX, XX, XX },
  945. { "psrlw", MX, EM, XX },
  946. { "psrld", MX, EM, XX },
  947. { "psrlq", MX, EM, XX },
  948. { "paddq", MX, EM, XX },
  949. { "pmullw", MX, EM, XX },
  950. { PREGRP21 },
  951. { "pmovmskb", Gd, MS, XX },
  952. /* d8 */
  953. { "psubusb", MX, EM, XX },
  954. { "psubusw", MX, EM, XX },
  955. { "pminub", MX, EM, XX },
  956. { "pand", MX, EM, XX },
  957. { "paddusb", MX, EM, XX },
  958. { "paddusw", MX, EM, XX },
  959. { "pmaxub", MX, EM, XX },
  960. { "pandn", MX, EM, XX },
  961. /* e0 */
  962. { "pavgb", MX, EM, XX },
  963. { "psraw", MX, EM, XX },
  964. { "psrad", MX, EM, XX },
  965. { "pavgw", MX, EM, XX },
  966. { "pmulhuw", MX, EM, XX },
  967. { "pmulhw", MX, EM, XX },
  968. { PREGRP15 },
  969. { PREGRP25 },
  970. /* e8 */
  971. { "psubsb", MX, EM, XX },
  972. { "psubsw", MX, EM, XX },
  973. { "pminsw", MX, EM, XX },
  974. { "por", MX, EM, XX },
  975. { "paddsb", MX, EM, XX },
  976. { "paddsw", MX, EM, XX },
  977. { "pmaxsw", MX, EM, XX },
  978. { "pxor", MX, EM, XX },
  979. /* f0 */
  980. { "(bad)", XX, XX, XX },
  981. { "psllw", MX, EM, XX },
  982. { "pslld", MX, EM, XX },
  983. { "psllq", MX, EM, XX },
  984. { "pmuludq", MX, EM, XX },
  985. { "pmaddwd", MX, EM, XX },
  986. { "psadbw", MX, EM, XX },
  987. { PREGRP18 },
  988. /* f8 */
  989. { "psubb", MX, EM, XX },
  990. { "psubw", MX, EM, XX },
  991. { "psubd", MX, EM, XX },
  992. { "psubq", MX, EM, XX },
  993. { "paddb", MX, EM, XX },
  994. { "paddw", MX, EM, XX },
  995. { "paddd", MX, EM, XX },
  996. { "(bad)", XX, XX, XX }
  997. };
  998. static const unsigned char onebyte_has_modrm[256] = {
  999. /* 0 1 2 3 4 5 6 7 8 9 a b c d e f */
  1000. /* ------------------------------- */
  1001. /* 00 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 00 */
  1002. /* 10 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 10 */
  1003. /* 20 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 20 */
  1004. /* 30 */ 1,1,1,1,0,0,0,0,1,1,1,1,0,0,0,0, /* 30 */
  1005. /* 40 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 40 */
  1006. /* 50 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 50 */
  1007. /* 60 */ 0,0,1,1,0,0,0,0,0,1,0,1,0,0,0,0, /* 60 */
  1008. /* 70 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 70 */
  1009. /* 80 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 80 */
  1010. /* 90 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 90 */
  1011. /* a0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* a0 */
  1012. /* b0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* b0 */
  1013. /* c0 */ 1,1,0,0,1,1,1,1,0,0,0,0,0,0,0,0, /* c0 */
  1014. /* d0 */ 1,1,1,1,0,0,0,0,1,1,1,1,1,1,1,1, /* d0 */
  1015. /* e0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* e0 */
  1016. /* f0 */ 0,0,0,0,0,0,1,1,0,0,0,0,0,0,1,1 /* f0 */
  1017. /* ------------------------------- */
  1018. /* 0 1 2 3 4 5 6 7 8 9 a b c d e f */
  1019. };
  1020. static const unsigned char twobyte_has_modrm[256] = {
  1021. /* 0 1 2 3 4 5 6 7 8 9 a b c d e f */
  1022. /* ------------------------------- */
  1023. /* 00 */ 1,1,1,1,0,0,0,0,0,0,0,0,0,1,0,1, /* 0f */
  1024. /* 10 */ 1,1,1,1,1,1,1,1,1,0,0,0,0,0,0,0, /* 1f */
  1025. /* 20 */ 1,1,1,1,1,0,1,0,1,1,1,1,1,1,1,1, /* 2f */
  1026. /* 30 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 3f */
  1027. /* 40 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 4f */
  1028. /* 50 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 5f */
  1029. /* 60 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 6f */
  1030. /* 70 */ 1,1,1,1,1,1,1,0,0,0,0,0,0,0,1,1, /* 7f */
  1031. /* 80 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 8f */
  1032. /* 90 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* 9f */
  1033. /* a0 */ 0,0,0,1,1,1,0,0,0,0,0,1,1,1,1,1, /* af */
  1034. /* b0 */ 1,1,1,1,1,1,1,1,0,0,1,1,1,1,1,1, /* bf */
  1035. /* c0 */ 1,1,1,1,1,1,1,1,0,0,0,0,0,0,0,0, /* cf */
  1036. /* d0 */ 0,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* df */
  1037. /* e0 */ 1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1, /* ef */
  1038. /* f0 */ 0,1,1,1,1,1,1,1,1,1,1,1,1,1,1,0 /* ff */
  1039. /* ------------------------------- */
  1040. /* 0 1 2 3 4 5 6 7 8 9 a b c d e f */
  1041. };
  1042. static const unsigned char twobyte_uses_SSE_prefix[256] = {
  1043. /* 0 1 2 3 4 5 6 7 8 9 a b c d e f */
  1044. /* ------------------------------- */
  1045. /* 00 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 0f */
  1046. /* 10 */ 1,1,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 1f */
  1047. /* 20 */ 0,0,0,0,0,0,0,0,0,0,1,0,1,1,0,0, /* 2f */
  1048. /* 30 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 3f */
  1049. /* 40 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 4f */
  1050. /* 50 */ 0,1,1,1,0,0,0,0,1,1,1,1,1,1,1,1, /* 5f */
  1051. /* 60 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,1,0,1, /* 6f */
  1052. /* 70 */ 1,0,0,0,0,0,0,0,0,0,0,0,0,0,1,1, /* 7f */
  1053. /* 80 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 8f */
  1054. /* 90 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* 9f */
  1055. /* a0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* af */
  1056. /* b0 */ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* bf */
  1057. /* c0 */ 0,0,1,0,0,0,0,0,0,0,0,0,0,0,0,0, /* cf */
  1058. /* d0 */ 0,0,0,0,0,0,1,0,0,0,0,0,0,0,0,0, /* df */
  1059. /* e0 */ 0,0,0,0,0,0,1,0,0,0,0,0,0,0,0,0, /* ef */
  1060. /* f0 */ 0,0,0,0,0,0,0,1,0,0,0,0,0,0,0,0 /* ff */
  1061. /* ------------------------------- */
  1062. /* 0 1 2 3 4 5 6 7 8 9 a b c d e f */
  1063. };
  1064. static char obuf[100];
  1065. static char *obufp;
  1066. static char scratchbuf[100];
  1067. static unsigned char *start_codep;
  1068. static unsigned char *insn_codep;
  1069. static unsigned char *codep;
  1070. static disassemble_info *the_info;
  1071. static int mod;
  1072. static int rm;
  1073. static int reg;
  1074. static unsigned char need_modrm;
  1075. /* If we are accessing mod/rm/reg without need_modrm set, then the
  1076. values are stale. Hitting this abort likely indicates that you
  1077. need to update onebyte_has_modrm or twobyte_has_modrm. */
  1078. #define MODRM_CHECK if (!need_modrm) abort ()
  1079. static const char * const *names64;
  1080. static const char * const *names32;
  1081. static const char * const *names16;
  1082. static const char * const *names8;
  1083. static const char * const *names8rex;
  1084. static const char * const *names_seg;
  1085. static const char * const *index16;
  1086. static const char * const intel_names64[] = {
  1087. "rax", "rcx", "rdx", "rbx", "rsp", "rbp", "rsi", "rdi",
  1088. "r8", "r9", "r10", "r11", "r12", "r13", "r14", "r15"
  1089. };
  1090. static const char * const intel_names32[] = {
  1091. "eax", "ecx", "edx", "ebx", "esp", "ebp", "esi", "edi",
  1092. "r8d", "r9d", "r10d", "r11d", "r12d", "r13d", "r14d", "r15d"
  1093. };
  1094. static const char * const intel_names16[] = {
  1095. "ax", "cx", "dx", "bx", "sp", "bp", "si", "di",
  1096. "r8w", "r9w", "r10w", "r11w", "r12w", "r13w", "r14w", "r15w"
  1097. };
  1098. static const char * const intel_names8[] = {
  1099. "al", "cl", "dl", "bl", "ah", "ch", "dh", "bh",
  1100. };
  1101. static const char * const intel_names8rex[] = {
  1102. "al", "cl", "dl", "bl", "spl", "bpl", "sil", "dil",
  1103. "r8b", "r9b", "r10b", "r11b", "r12b", "r13b", "r14b", "r15b"
  1104. };
  1105. static const char * const intel_names_seg[] = {
  1106. "es", "cs", "ss", "ds", "fs", "gs", "?", "?",
  1107. };
  1108. static const char * const intel_index16[] = {
  1109. "bx+si", "bx+di", "bp+si", "bp+di", "si", "di", "bp", "bx"
  1110. };
  1111. static const char * const att_names64[] = {
  1112. "%rax", "%rcx", "%rdx", "%rbx", "%rsp", "%rbp", "%rsi", "%rdi",
  1113. "%r8", "%r9", "%r10", "%r11", "%r12", "%r13", "%r14", "%r15"
  1114. };
  1115. static const char * const att_names32[] = {
  1116. "%eax", "%ecx", "%edx", "%ebx", "%esp", "%ebp", "%esi", "%edi",
  1117. "%r8d", "%r9d", "%r10d", "%r11d", "%r12d", "%r13d", "%r14d", "%r15d"
  1118. };
  1119. static const char * const att_names16[] = {
  1120. "%ax", "%cx", "%dx", "%bx", "%sp", "%bp", "%si", "%di",
  1121. "%r8w", "%r9w", "%r10w", "%r11w", "%r12w", "%r13w", "%r14w", "%r15w"
  1122. };
  1123. static const char * const att_names8[] = {
  1124. "%al", "%cl", "%dl", "%bl", "%ah", "%ch", "%dh", "%bh",
  1125. };
  1126. static const char * const att_names8rex[] = {
  1127. "%al", "%cl", "%dl", "%bl", "%spl", "%bpl", "%sil", "%dil",
  1128. "%r8b", "%r9b", "%r10b", "%r11b", "%r12b", "%r13b", "%r14b", "%r15b"
  1129. };
  1130. static const char * const att_names_seg[] = {
  1131. "%es", "%cs", "%ss", "%ds", "%fs", "%gs", "%?", "%?",
  1132. };
  1133. static const char * const att_index16[] = {
  1134. "%bx,%si", "%bx,%di", "%bp,%si", "%bp,%di", "%si", "%di", "%bp", "%bx"
  1135. };
  1136. static const struct dis386 grps[][8] = {
  1137. /* GRP1b */
  1138. {
  1139. { "addA", Eb, Ib, XX },
  1140. { "orA", Eb, Ib, XX },
  1141. { "adcA", Eb, Ib, XX },
  1142. { "sbbA", Eb, Ib, XX },
  1143. { "andA", Eb, Ib, XX },
  1144. { "subA", Eb, Ib, XX },
  1145. { "xorA", Eb, Ib, XX },
  1146. { "cmpA", Eb, Ib, XX }
  1147. },
  1148. /* GRP1S */
  1149. {
  1150. { "addQ", Ev, Iv, XX },
  1151. { "orQ", Ev, Iv, XX },
  1152. { "adcQ", Ev, Iv, XX },
  1153. { "sbbQ", Ev, Iv, XX },
  1154. { "andQ", Ev, Iv, XX },
  1155. { "subQ", Ev, Iv, XX },
  1156. { "xorQ", Ev, Iv, XX },
  1157. { "cmpQ", Ev, Iv, XX }
  1158. },
  1159. /* GRP1Ss */
  1160. {
  1161. { "addQ", Ev, sIb, XX },
  1162. { "orQ", Ev, sIb, XX },
  1163. { "adcQ", Ev, sIb, XX },
  1164. { "sbbQ", Ev, sIb, XX },
  1165. { "andQ", Ev, sIb, XX },
  1166. { "subQ", Ev, sIb, XX },
  1167. { "xorQ", Ev, sIb, XX },
  1168. { "cmpQ", Ev, sIb, XX }
  1169. },
  1170. /* GRP2b */
  1171. {
  1172. { "rolA", Eb, Ib, XX },
  1173. { "rorA", Eb, Ib, XX },
  1174. { "rclA", Eb, Ib, XX },
  1175. { "rcrA", Eb, Ib, XX },
  1176. { "shlA", Eb, Ib, XX },
  1177. { "shrA", Eb, Ib, XX },
  1178. { "(bad)", XX, XX, XX },
  1179. { "sarA", Eb, Ib, XX },
  1180. },
  1181. /* GRP2S */
  1182. {
  1183. { "rolQ", Ev, Ib, XX },
  1184. { "rorQ", Ev, Ib, XX },
  1185. { "rclQ", Ev, Ib, XX },
  1186. { "rcrQ", Ev, Ib, XX },
  1187. { "shlQ", Ev, Ib, XX },
  1188. { "shrQ", Ev, Ib, XX },
  1189. { "(bad)", XX, XX, XX },
  1190. { "sarQ", Ev, Ib, XX },
  1191. },
  1192. /* GRP2b_one */
  1193. {
  1194. { "rolA", Eb, XX, XX },
  1195. { "rorA", Eb, XX, XX },
  1196. { "rclA", Eb, XX, XX },
  1197. { "rcrA", Eb, XX, XX },
  1198. { "shlA", Eb, XX, XX },
  1199. { "shrA", Eb, XX, XX },
  1200. { "(bad)", XX, XX, XX },
  1201. { "sarA", Eb, XX, XX },
  1202. },
  1203. /* GRP2S_one */
  1204. {
  1205. { "rolQ", Ev, XX, XX },
  1206. { "rorQ", Ev, XX, XX },
  1207. { "rclQ", Ev, XX, XX },
  1208. { "rcrQ", Ev, XX, XX },
  1209. { "shlQ", Ev, XX, XX },
  1210. { "shrQ", Ev, XX, XX },
  1211. { "(bad)", XX, XX, XX},
  1212. { "sarQ", Ev, XX, XX },
  1213. },
  1214. /* GRP2b_cl */
  1215. {
  1216. { "rolA", Eb, CL, XX },
  1217. { "rorA", Eb, CL, XX },
  1218. { "rclA", Eb, CL, XX },
  1219. { "rcrA", Eb, CL, XX },
  1220. { "shlA", Eb, CL, XX },
  1221. { "shrA", Eb, CL, XX },
  1222. { "(bad)", XX, XX, XX },
  1223. { "sarA", Eb, CL, XX },
  1224. },
  1225. /* GRP2S_cl */
  1226. {
  1227. { "rolQ", Ev, CL, XX },
  1228. { "rorQ", Ev, CL, XX },
  1229. { "rclQ", Ev, CL, XX },
  1230. { "rcrQ", Ev, CL, XX },
  1231. { "shlQ", Ev, CL, XX },
  1232. { "shrQ", Ev, CL, XX },
  1233. { "(bad)", XX, XX, XX },
  1234. { "sarQ", Ev, CL, XX }
  1235. },
  1236. /* GRP3b */
  1237. {
  1238. { "testA", Eb, Ib, XX },
  1239. { "(bad)", Eb, XX, XX },
  1240. { "notA", Eb, XX, XX },
  1241. { "negA", Eb, XX, XX },
  1242. { "mulA", Eb, XX, XX }, /* Don't print the implicit %al register, */
  1243. { "imulA", Eb, XX, XX }, /* to distinguish these opcodes from other */
  1244. { "divA", Eb, XX, XX }, /* mul/imul opcodes. Do the same for div */
  1245. { "idivA", Eb, XX, XX } /* and idiv for consistency. */
  1246. },
  1247. /* GRP3S */
  1248. {
  1249. { "testQ", Ev, Iv, XX },
  1250. { "(bad)", XX, XX, XX },
  1251. { "notQ", Ev, XX, XX },
  1252. { "negQ", Ev, XX, XX },
  1253. { "mulQ", Ev, XX, XX }, /* Don't print the implicit register. */
  1254. { "imulQ", Ev, XX, XX },
  1255. { "divQ", Ev, XX, XX },
  1256. { "idivQ", Ev, XX, XX },
  1257. },
  1258. /* GRP4 */
  1259. {
  1260. { "incA", Eb, XX, XX },
  1261. { "decA", Eb, XX, XX },
  1262. { "(bad)", XX, XX, XX },
  1263. { "(bad)", XX, XX, XX },
  1264. { "(bad)", XX, XX, XX },
  1265. { "(bad)", XX, XX, XX },
  1266. { "(bad)", XX, XX, XX },
  1267. { "(bad)", XX, XX, XX },
  1268. },
  1269. /* GRP5 */
  1270. {
  1271. { "incQ", Ev, XX, XX },
  1272. { "decQ", Ev, XX, XX },
  1273. { "callT", indirEv, XX, XX },
  1274. { "lcallT", indirEv, XX, XX },
  1275. { "jmpT", indirEv, XX, XX },
  1276. { "ljmpT", indirEv, XX, XX },
  1277. { "pushU", Ev, XX, XX },
  1278. { "(bad)", XX, XX, XX },
  1279. },
  1280. /* GRP6 */
  1281. {
  1282. { "sldtQ", Ev, XX, XX },
  1283. { "strQ", Ev, XX, XX },
  1284. { "lldt", Ew, XX, XX },
  1285. { "ltr", Ew, XX, XX },
  1286. { "verr", Ew, XX, XX },
  1287. { "verw", Ew, XX, XX },
  1288. { "(bad)", XX, XX, XX },
  1289. { "(bad)", XX, XX, XX }
  1290. },
  1291. /* GRP7 */
  1292. {
  1293. { "sgdtQ", M, XX, XX },
  1294. { "sidtQ", M, XX, XX },
  1295. { "lgdtQ", M, XX, XX },
  1296. { "lidtQ", M, XX, XX },
  1297. { "smswQ", Ev, XX, XX },
  1298. { "(bad)", XX, XX, XX },
  1299. { "lmsw", Ew, XX, XX },
  1300. { "invlpg", Ew, XX, XX },
  1301. },
  1302. /* GRP8 */
  1303. {
  1304. { "(bad)", XX, XX, XX },
  1305. { "(bad)", XX, XX, XX },
  1306. { "(bad)", XX, XX, XX },
  1307. { "(bad)", XX, XX, XX },
  1308. { "btQ", Ev, Ib, XX },
  1309. { "btsQ", Ev, Ib, XX },
  1310. { "btrQ", Ev, Ib, XX },
  1311. { "btcQ", Ev, Ib, XX },
  1312. },
  1313. /* GRP9 */
  1314. {
  1315. { "(bad)", XX, XX, XX },
  1316. { "cmpxchg8b", Ev, XX, XX },
  1317. { "(bad)", XX, XX, XX },
  1318. { "(bad)", XX, XX, XX },
  1319. { "(bad)", XX, XX, XX },
  1320. { "(bad)", XX, XX, XX },
  1321. { "(bad)", XX, XX, XX },
  1322. { "(bad)", XX, XX, XX },
  1323. },
  1324. /* GRP10 */
  1325. {
  1326. { "(bad)", XX, XX, XX },
  1327. { "(bad)", XX, XX, XX },
  1328. { "psrlw", MS, Ib, XX },
  1329. { "(bad)", XX, XX, XX },
  1330. { "psraw", MS, Ib, XX },
  1331. { "(bad)", XX, XX, XX },
  1332. { "psllw", MS, Ib, XX },
  1333. { "(bad)", XX, XX, XX },
  1334. },
  1335. /* GRP11 */
  1336. {
  1337. { "(bad)", XX, XX, XX },
  1338. { "(bad)", XX, XX, XX },
  1339. { "psrld", MS, Ib, XX },
  1340. { "(bad)", XX, XX, XX },
  1341. { "psrad", MS, Ib, XX },
  1342. { "(bad)", XX, XX, XX },
  1343. { "pslld", MS, Ib, XX },
  1344. { "(bad)", XX, XX, XX },
  1345. },
  1346. /* GRP12 */
  1347. {
  1348. { "(bad)", XX, XX, XX },
  1349. { "(bad)", XX, XX, XX },
  1350. { "psrlq", MS, Ib, XX },
  1351. { "psrldq", MS, Ib, XX },
  1352. { "(bad)", XX, XX, XX },
  1353. { "(bad)", XX, XX, XX },
  1354. { "psllq", MS, Ib, XX },
  1355. { "pslldq", MS, Ib, XX },
  1356. },
  1357. /* GRP13 */
  1358. {
  1359. { "fxsave", Ev, XX, XX },
  1360. { "fxrstor", Ev, XX, XX },
  1361. { "ldmxcsr", Ev, XX, XX },
  1362. { "stmxcsr", Ev, XX, XX },
  1363. { "(bad)", XX, XX, XX },
  1364. { "lfence", None, XX, XX },
  1365. { "mfence", None, XX, XX },
  1366. { "sfence", None, XX, XX },
  1367. /* FIXME: the sfence with memory operand is clflush! */
  1368. },
  1369. /* GRP14 */
  1370. {
  1371. { "prefetchnta", Ev, XX, XX },
  1372. { "prefetcht0", Ev, XX, XX },
  1373. { "prefetcht1", Ev, XX, XX },
  1374. { "prefetcht2", Ev, XX, XX },
  1375. { "(bad)", XX, XX, XX },
  1376. { "(bad)", XX, XX, XX },
  1377. { "(bad)", XX, XX, XX },
  1378. { "(bad)", XX, XX, XX },
  1379. },
  1380. /* GRPAMD */
  1381. {
  1382. { "prefetch", Eb, XX, XX },
  1383. { "prefetchw", Eb, XX, XX },
  1384. { "(bad)", XX, XX, XX },
  1385. { "(bad)", XX, XX, XX },
  1386. { "(bad)", XX, XX, XX },
  1387. { "(bad)", XX, XX, XX },
  1388. { "(bad)", XX, XX, XX },
  1389. { "(bad)", XX, XX, XX },
  1390. }
  1391. };
  1392. static const struct dis386 prefix_user_table[][4] = {
  1393. /* PREGRP0 */
  1394. {
  1395. { "addps", XM, EX, XX },
  1396. { "addss", XM, EX, XX },
  1397. { "addpd", XM, EX, XX },
  1398. { "addsd", XM, EX, XX },
  1399. },
  1400. /* PREGRP1 */
  1401. {
  1402. { "", XM, EX, OPSIMD }, /* See OP_SIMD_SUFFIX. */
  1403. { "", XM, EX, OPSIMD },
  1404. { "", XM, EX, OPSIMD },
  1405. { "", XM, EX, OPSIMD },
  1406. },
  1407. /* PREGRP2 */
  1408. {
  1409. { "cvtpi2ps", XM, EM, XX },
  1410. { "cvtsi2ssY", XM, Ev, XX },
  1411. { "cvtpi2pd", XM, EM, XX },
  1412. { "cvtsi2sdY", XM, Ev, XX },
  1413. },
  1414. /* PREGRP3 */
  1415. {
  1416. { "cvtps2pi", MX, EX, XX },
  1417. { "cvtss2siY", Gv, EX, XX },
  1418. { "cvtpd2pi", MX, EX, XX },
  1419. { "cvtsd2siY", Gv, EX, XX },
  1420. },
  1421. /* PREGRP4 */
  1422. {
  1423. { "cvttps2pi", MX, EX, XX },
  1424. { "cvttss2siY", Gv, EX, XX },
  1425. { "cvttpd2pi", MX, EX, XX },
  1426. { "cvttsd2siY", Gv, EX, XX },
  1427. },
  1428. /* PREGRP5 */
  1429. {
  1430. { "divps", XM, EX, XX },
  1431. { "divss", XM, EX, XX },
  1432. { "divpd", XM, EX, XX },
  1433. { "divsd", XM, EX, XX },
  1434. },
  1435. /* PREGRP6 */
  1436. {
  1437. { "maxps", XM, EX, XX },
  1438. { "maxss", XM, EX, XX },
  1439. { "maxpd", XM, EX, XX },
  1440. { "maxsd", XM, EX, XX },
  1441. },
  1442. /* PREGRP7 */
  1443. {
  1444. { "minps", XM, EX, XX },
  1445. { "minss", XM, EX, XX },
  1446. { "minpd", XM, EX, XX },
  1447. { "minsd", XM, EX, XX },
  1448. },
  1449. /* PREGRP8 */
  1450. {
  1451. { "movups", XM, EX, XX },
  1452. { "movss", XM, EX, XX },
  1453. { "movupd", XM, EX, XX },
  1454. { "movsd", XM, EX, XX },
  1455. },
  1456. /* PREGRP9 */
  1457. {
  1458. { "movups", EX, XM, XX },
  1459. { "movss", EX, XM, XX },
  1460. { "movupd", EX, XM, XX },
  1461. { "movsd", EX, XM, XX },
  1462. },
  1463. /* PREGRP10 */
  1464. {
  1465. { "mulps", XM, EX, XX },
  1466. { "mulss", XM, EX, XX },
  1467. { "mulpd", XM, EX, XX },
  1468. { "mulsd", XM, EX, XX },
  1469. },
  1470. /* PREGRP11 */
  1471. {
  1472. { "rcpps", XM, EX, XX },
  1473. { "rcpss", XM, EX, XX },
  1474. { "(bad)", XM, EX, XX },
  1475. { "(bad)", XM, EX, XX },
  1476. },
  1477. /* PREGRP12 */
  1478. {
  1479. { "rsqrtps", XM, EX, XX },
  1480. { "rsqrtss", XM, EX, XX },
  1481. { "(bad)", XM, EX, XX },
  1482. { "(bad)", XM, EX, XX },
  1483. },
  1484. /* PREGRP13 */
  1485. {
  1486. { "sqrtps", XM, EX, XX },
  1487. { "sqrtss", XM, EX, XX },
  1488. { "sqrtpd", XM, EX, XX },
  1489. { "sqrtsd", XM, EX, XX },
  1490. },
  1491. /* PREGRP14 */
  1492. {
  1493. { "subps", XM, EX, XX },
  1494. { "subss", XM, EX, XX },
  1495. { "subpd", XM, EX, XX },
  1496. { "subsd", XM, EX, XX },
  1497. },
  1498. /* PREGRP15 */
  1499. {
  1500. { "(bad)", XM, EX, XX },
  1501. { "cvtdq2pd", XM, EX, XX },
  1502. { "cvttpd2dq", XM, EX, XX },
  1503. { "cvtpd2dq", XM, EX, XX },
  1504. },
  1505. /* PREGRP16 */
  1506. {
  1507. { "cvtdq2ps", XM, EX, XX },
  1508. { "cvttps2dq",XM, EX, XX },
  1509. { "cvtps2dq",XM, EX, XX },
  1510. { "(bad)", XM, EX, XX },
  1511. },
  1512. /* PREGRP17 */
  1513. {
  1514. { "cvtps2pd", XM, EX, XX },
  1515. { "cvtss2sd", XM, EX, XX },
  1516. { "cvtpd2ps", XM, EX, XX },
  1517. { "cvtsd2ss", XM, EX, XX },
  1518. },
  1519. /* PREGRP18 */
  1520. {
  1521. { "maskmovq", MX, MS, XX },
  1522. { "(bad)", XM, EX, XX },
  1523. { "maskmovdqu", XM, EX, XX },
  1524. { "(bad)", XM, EX, XX },
  1525. },
  1526. /* PREGRP19 */
  1527. {
  1528. { "movq", MX, EM, XX },
  1529. { "movdqu", XM, EX, XX },
  1530. { "movdqa", XM, EX, XX },
  1531. { "(bad)", XM, EX, XX },
  1532. },
  1533. /* PREGRP20 */
  1534. {
  1535. { "movq", EM, MX, XX },
  1536. { "movdqu", EX, XM, XX },
  1537. { "movdqa", EX, XM, XX },
  1538. { "(bad)", EX, XM, XX },
  1539. },
  1540. /* PREGRP21 */
  1541. {
  1542. { "(bad)", EX, XM, XX },
  1543. { "movq2dq", XM, MS, XX },
  1544. { "movq", EX, XM, XX },
  1545. { "movdq2q", MX, XS, XX },
  1546. },
  1547. /* PREGRP22 */
  1548. {
  1549. { "pshufw", MX, EM, Ib },
  1550. { "pshufhw", XM, EX, Ib },
  1551. { "pshufd", XM, EX, Ib },
  1552. { "pshuflw", XM, EX, Ib },
  1553. },
  1554. /* PREGRP23 */
  1555. {
  1556. { "movd", Ed, MX, XX },
  1557. { "movq", XM, EX, XX },
  1558. { "movd", Ed, XM, XX },
  1559. { "(bad)", Ed, XM, XX },
  1560. },
  1561. /* PREGRP24 */
  1562. {
  1563. { "(bad)", MX, EX, XX },
  1564. { "(bad)", XM, EX, XX },
  1565. { "punpckhqdq", XM, EX, XX },
  1566. { "(bad)", XM, EX, XX },
  1567. },
  1568. /* PREGRP25 */
  1569. {
  1570. { "movntq", Ev, MX, XX },
  1571. { "(bad)", Ev, XM, XX },
  1572. { "movntdq", Ev, XM, XX },
  1573. { "(bad)", Ev, XM, XX },
  1574. },
  1575. /* PREGRP26 */
  1576. {
  1577. { "(bad)", MX, EX, XX },
  1578. { "(bad)", XM, EX, XX },
  1579. { "punpcklqdq", XM, EX, XX },
  1580. { "(bad)", XM, EX, XX },
  1581. },
  1582. };
  1583. static const struct dis386 x86_64_table[][2] = {
  1584. {
  1585. { "arpl", Ew, Gw, XX },
  1586. { "movs{||lq|xd}", Gv, Ed, XX },
  1587. },
  1588. };
  1589. #define INTERNAL_DISASSEMBLER_ERROR _("<internal disassembler error>")
  1590. static void
  1591. ckprefix ()
  1592. {
  1593. int newrex;
  1594. rex = 0;
  1595. prefixes = 0;
  1596. used_prefixes = 0;
  1597. rex_used = 0;
  1598. while (1)
  1599. {
  1600. FETCH_DATA (the_info, codep + 1);
  1601. newrex = 0;
  1602. switch (*codep)
  1603. {
  1604. /* REX prefixes family. */
  1605. case 0x40:
  1606. case 0x41:
  1607. case 0x42:
  1608. case 0x43:
  1609. case 0x44:
  1610. case 0x45:
  1611. case 0x46:
  1612. case 0x47:
  1613. case 0x48:
  1614. case 0x49:
  1615. case 0x4a:
  1616. case 0x4b:
  1617. case 0x4c:
  1618. case 0x4d:
  1619. case 0x4e:
  1620. case 0x4f:
  1621. if (mode_64bit)
  1622. newrex = *codep;
  1623. else
  1624. return;
  1625. break;
  1626. case 0xf3:
  1627. prefixes |= PREFIX_REPZ;
  1628. break;
  1629. case 0xf2:
  1630. prefixes |= PREFIX_REPNZ;
  1631. break;
  1632. case 0xf0:
  1633. prefixes |= PREFIX_LOCK;
  1634. break;
  1635. case 0x2e:
  1636. prefixes |= PREFIX_CS;
  1637. break;
  1638. case 0x36:
  1639. prefixes |= PREFIX_SS;
  1640. break;
  1641. case 0x3e:
  1642. prefixes |= PREFIX_DS;
  1643. break;
  1644. case 0x26:
  1645. prefixes |= PREFIX_ES;
  1646. break;
  1647. case 0x64:
  1648. prefixes |= PREFIX_FS;
  1649. break;
  1650. case 0x65:
  1651. prefixes |= PREFIX_GS;
  1652. break;
  1653. case 0x66:
  1654. prefixes |= PREFIX_DATA;
  1655. break;
  1656. case 0x67:
  1657. prefixes |= PREFIX_ADDR;
  1658. break;
  1659. case FWAIT_OPCODE:
  1660. /* fwait is really an instruction. If there are prefixes
  1661. before the fwait, they belong to the fwait, *not* to the
  1662. following instruction. */
  1663. if (prefixes)
  1664. {
  1665. prefixes |= PREFIX_FWAIT;
  1666. codep++;
  1667. return;
  1668. }
  1669. prefixes = PREFIX_FWAIT;
  1670. break;
  1671. default:
  1672. return;
  1673. }
  1674. /* Rex is ignored when followed by another prefix. */
  1675. if (rex)
  1676. {
  1677. oappend (prefix_name (rex, 0));
  1678. oappend (" ");
  1679. }
  1680. rex = newrex;
  1681. codep++;
  1682. }
  1683. }
  1684. /* Return the name of the prefix byte PREF, or NULL if PREF is not a
  1685. prefix byte. */
  1686. static const char *
  1687. prefix_name (pref, sizeflag)
  1688. int pref;
  1689. int sizeflag;
  1690. {
  1691. switch (pref)
  1692. {
  1693. /* REX prefixes family. */
  1694. case 0x40:
  1695. return "rex";
  1696. case 0x41:
  1697. return "rexZ";
  1698. case 0x42:
  1699. return "rexY";
  1700. case 0x43:
  1701. return "rexYZ";
  1702. case 0x44:
  1703. return "rexX";
  1704. case 0x45:
  1705. return "rexXZ";
  1706. case 0x46:
  1707. return "rexXY";
  1708. case 0x47:
  1709. return "rexXYZ";
  1710. case 0x48:
  1711. return "rex64";
  1712. case 0x49:
  1713. return "rex64Z";
  1714. case 0x4a:
  1715. return "rex64Y";
  1716. case 0x4b:
  1717. return "rex64YZ";
  1718. case 0x4c:
  1719. return "rex64X";
  1720. case 0x4d:
  1721. return "rex64XZ";
  1722. case 0x4e:
  1723. return "rex64XY";
  1724. case 0x4f:
  1725. return "rex64XYZ";
  1726. case 0xf3:
  1727. return "repz";
  1728. case 0xf2:
  1729. return "repnz";
  1730. case 0xf0:
  1731. return "lock";
  1732. case 0x2e:
  1733. return "cs";
  1734. case 0x36:
  1735. return "ss";
  1736. case 0x3e:
  1737. return "ds";
  1738. case 0x26:
  1739. return "es";
  1740. case 0x64:
  1741. return "fs";
  1742. case 0x65:
  1743. return "gs";
  1744. case 0x66:
  1745. return (sizeflag & DFLAG) ? "data16" : "data32";
  1746. case 0x67:
  1747. if (mode_64bit)
  1748. return (sizeflag & AFLAG) ? "addr32" : "addr64";
  1749. else
  1750. return ((sizeflag & AFLAG) && !mode_64bit) ? "addr16" : "addr32";
  1751. case FWAIT_OPCODE:
  1752. return "fwait";
  1753. default:
  1754. return NULL;
  1755. }
  1756. }
  1757. static char op1out[100], op2out[100], op3out[100];
  1758. static int op_ad, op_index[3];
  1759. static bfd_vma op_address[3];
  1760. static bfd_vma op_riprel[3];
  1761. static bfd_vma start_pc;
  1762. /*
  1763. * On the 386's of 1988, the maximum length of an instruction is 15 bytes.
  1764. * (see topic "Redundant prefixes" in the "Differences from 8086"
  1765. * section of the "Virtual 8086 Mode" chapter.)
  1766. * 'pc' should be the address of this instruction, it will
  1767. * be used to print the target address if this is a relative jump or call
  1768. * The function returns the length of this instruction in bytes.
  1769. */
  1770. static int8_t intel_syntax;
  1771. static char open_char;
  1772. static char close_char;
  1773. static char separator_char;
  1774. static char scale_char;
  1775. int
  1776. print_insn_i386 (pc, info)
  1777. bfd_vma pc;
  1778. disassemble_info *info;
  1779. {
  1780. intel_syntax = -1;
  1781. return print_insn (pc, info);
  1782. }
  1783. static int
  1784. print_insn (pc, info)
  1785. bfd_vma pc;
  1786. disassemble_info *info;
  1787. {
  1788. const struct dis386 *dp;
  1789. int i;
  1790. int two_source_ops;
  1791. char *first, *second, *third;
  1792. int needcomma;
  1793. unsigned char uses_SSE_prefix;
  1794. int sizeflag;
  1795. const char *p;
  1796. struct dis_private priv;
  1797. mode_64bit = (info->mach == bfd_mach_x86_64_intel_syntax
  1798. || info->mach == bfd_mach_x86_64);
  1799. if (intel_syntax == -1)
  1800. intel_syntax = (info->mach == bfd_mach_i386_i386_intel_syntax
  1801. || info->mach == bfd_mach_x86_64_intel_syntax);
  1802. if (info->mach == bfd_mach_i386_i386
  1803. || info->mach == bfd_mach_x86_64
  1804. || info->mach == bfd_mach_i386_i386_intel_syntax
  1805. || info->mach == bfd_mach_x86_64_intel_syntax)
  1806. priv.orig_sizeflag = AFLAG | DFLAG;
  1807. else if (info->mach == bfd_mach_i386_i8086)
  1808. priv.orig_sizeflag = 0;
  1809. else
  1810. abort ();
  1811. for (p = info->disassembler_options; p != NULL; )
  1812. {
  1813. if (strncmp (p, "x86-64", 6) == 0)
  1814. {
  1815. mode_64bit = 1;
  1816. priv.orig_sizeflag = AFLAG | DFLAG;
  1817. }
  1818. else if (strncmp (p, "i386", 4) == 0)
  1819. {
  1820. mode_64bit = 0;
  1821. priv.orig_sizeflag = AFLAG | DFLAG;
  1822. }
  1823. else if (strncmp (p, "i8086", 5) == 0)
  1824. {
  1825. mode_64bit = 0;
  1826. priv.orig_sizeflag = 0;
  1827. }
  1828. else if (strncmp (p, "intel", 5) == 0)
  1829. {
  1830. intel_syntax = 1;
  1831. }
  1832. else if (strncmp (p, "att", 3) == 0)
  1833. {
  1834. intel_syntax = 0;
  1835. }
  1836. else if (strncmp (p, "addr", 4) == 0)
  1837. {
  1838. if (p[4] == '1' && p[5] == '6')
  1839. priv.orig_sizeflag &= ~AFLAG;
  1840. else if (p[4] == '3' && p[5] == '2')
  1841. priv.orig_sizeflag |= AFLAG;
  1842. }
  1843. else if (strncmp (p, "data", 4) == 0)
  1844. {
  1845. if (p[4] == '1' && p[5] == '6')
  1846. priv.orig_sizeflag &= ~DFLAG;
  1847. else if (p[4] == '3' && p[5] == '2')
  1848. priv.orig_sizeflag |= DFLAG;
  1849. }
  1850. else if (strncmp (p, "suffix", 6) == 0)
  1851. priv.orig_sizeflag |= SUFFIX_ALWAYS;
  1852. p = strchr (p, ',');
  1853. if (p != NULL)
  1854. p++;
  1855. }
  1856. if (intel_syntax)
  1857. {
  1858. names64 = intel_names64;
  1859. names32 = intel_names32;
  1860. names16 = intel_names16;
  1861. names8 = intel_names8;
  1862. names8rex = intel_names8rex;
  1863. names_seg = intel_names_seg;
  1864. index16 = intel_index16;
  1865. open_char = '[';
  1866. close_char = ']';
  1867. separator_char = '+';
  1868. scale_char = '*';
  1869. }
  1870. else
  1871. {
  1872. names64 = att_names64;
  1873. names32 = att_names32;
  1874. names16 = att_names16;
  1875. names8 = att_names8;
  1876. names8rex = att_names8rex;
  1877. names_seg = att_names_seg;
  1878. index16 = att_index16;
  1879. open_char = '(';
  1880. close_char = ')';
  1881. separator_char = ',';
  1882. scale_char = ',';
  1883. }
  1884. /* The output looks better if we put 7 bytes on a line, since that
  1885. puts most long word instructions on a single line. */
  1886. info->bytes_per_line = 7;
  1887. info->private_data = (PTR) &priv;
  1888. priv.max_fetched = priv.the_buffer;
  1889. priv.insn_start = pc;
  1890. obuf[0] = 0;
  1891. op1out[0] = 0;
  1892. op2out[0] = 0;
  1893. op3out[0] = 0;
  1894. op_index[0] = op_index[1] = op_index[2] = -1;
  1895. the_info = info;
  1896. start_pc = pc;
  1897. start_codep = priv.the_buffer;
  1898. codep = priv.the_buffer;
  1899. if (setjmp (priv.bailout) != 0)
  1900. {
  1901. const char *name;
  1902. /* Getting here means we tried for data but didn't get it. That
  1903. means we have an incomplete instruction of some sort. Just
  1904. print the first byte as a prefix or a .byte pseudo-op. */
  1905. if (codep > priv.the_buffer)
  1906. {
  1907. name = prefix_name (priv.the_buffer[0], priv.orig_sizeflag);
  1908. if (name != NULL)
  1909. (*info->fprintf_func) (info->stream, "%s", name);
  1910. else
  1911. {
  1912. /* Just print the first byte as a .byte instruction. */
  1913. (*info->fprintf_func) (info->stream, ".byte 0x%x",
  1914. (unsigned int) priv.the_buffer[0]);
  1915. }
  1916. return 1;
  1917. }
  1918. return -1;
  1919. }
  1920. obufp = obuf;
  1921. ckprefix ();
  1922. insn_codep = codep;
  1923. sizeflag = priv.orig_sizeflag;
  1924. FETCH_DATA (info, codep + 1);
  1925. two_source_ops = (*codep == 0x62) || (*codep == 0xc8);
  1926. if ((prefixes & PREFIX_FWAIT)
  1927. && ((*codep < 0xd8) || (*codep > 0xdf)))
  1928. {
  1929. const char *name;
  1930. /* fwait not followed by floating point instruction. Print the
  1931. first prefix, which is probably fwait itself. */
  1932. name = prefix_name (priv.the_buffer[0], priv.orig_sizeflag);
  1933. if (name == NULL)
  1934. name = INTERNAL_DISASSEMBLER_ERROR;
  1935. (*info->fprintf_func) (info->stream, "%s", name);
  1936. return 1;
  1937. }
  1938. if (*codep == 0x0f)
  1939. {
  1940. FETCH_DATA (info, codep + 2);
  1941. dp = &dis386_twobyte[*++codep];
  1942. need_modrm = twobyte_has_modrm[*codep];
  1943. uses_SSE_prefix = twobyte_uses_SSE_prefix[*codep];
  1944. }
  1945. else
  1946. {
  1947. dp = &dis386[*codep];
  1948. need_modrm = onebyte_has_modrm[*codep];
  1949. uses_SSE_prefix = 0;
  1950. }
  1951. codep++;
  1952. if (!uses_SSE_prefix && (prefixes & PREFIX_REPZ))
  1953. {
  1954. oappend ("repz ");
  1955. used_prefixes |= PREFIX_REPZ;
  1956. }
  1957. if (!uses_SSE_prefix && (prefixes & PREFIX_REPNZ))
  1958. {
  1959. oappend ("repnz ");
  1960. used_prefixes |= PREFIX_REPNZ;
  1961. }
  1962. if (prefixes & PREFIX_LOCK)
  1963. {
  1964. oappend ("lock ");
  1965. used_prefixes |= PREFIX_LOCK;
  1966. }
  1967. if (prefixes & PREFIX_ADDR)
  1968. {
  1969. sizeflag ^= AFLAG;
  1970. if (dp->bytemode3 != loop_jcxz_mode || intel_syntax)
  1971. {
  1972. if ((sizeflag & AFLAG) || mode_64bit)
  1973. oappend ("addr32 ");
  1974. else
  1975. oappend ("addr16 ");
  1976. used_prefixes |= PREFIX_ADDR;
  1977. }
  1978. }
  1979. if (!uses_SSE_prefix && (prefixes & PREFIX_DATA))
  1980. {
  1981. sizeflag ^= DFLAG;
  1982. if (dp->bytemode3 == cond_jump_mode
  1983. && dp->bytemode1 == v_mode
  1984. && !intel_syntax)
  1985. {
  1986. if (sizeflag & DFLAG)
  1987. oappend ("data32 ");
  1988. else
  1989. oappend ("data16 ");
  1990. used_prefixes |= PREFIX_DATA;
  1991. }
  1992. }
  1993. if (need_modrm)
  1994. {
  1995. FETCH_DATA (info, codep + 1);
  1996. mod = (*codep >> 6) & 3;
  1997. reg = (*codep >> 3) & 7;
  1998. rm = *codep & 7;
  1999. }
  2000. if (dp->name == NULL && dp->bytemode1 == FLOATCODE)
  2001. {
  2002. dofloat (sizeflag);
  2003. }
  2004. else
  2005. {
  2006. int index;
  2007. if (dp->name == NULL)
  2008. {
  2009. switch (dp->bytemode1)
  2010. {
  2011. case USE_GROUPS:
  2012. dp = &grps[dp->bytemode2][reg];
  2013. break;
  2014. case USE_PREFIX_USER_TABLE:
  2015. index = 0;
  2016. used_prefixes |= (prefixes & PREFIX_REPZ);
  2017. if (prefixes & PREFIX_REPZ)
  2018. index = 1;
  2019. else
  2020. {
  2021. used_prefixes |= (prefixes & PREFIX_DATA);
  2022. if (prefixes & PREFIX_DATA)
  2023. index = 2;
  2024. else
  2025. {
  2026. used_prefixes |= (prefixes & PREFIX_REPNZ);
  2027. if (prefixes & PREFIX_REPNZ)
  2028. index = 3;
  2029. }
  2030. }
  2031. dp = &prefix_user_table[dp->bytemode2][index];
  2032. break;
  2033. case X86_64_SPECIAL:
  2034. dp = &x86_64_table[dp->bytemode2][mode_64bit];
  2035. break;
  2036. default:
  2037. oappend (INTERNAL_DISASSEMBLER_ERROR);
  2038. break;
  2039. }
  2040. }
  2041. if (putop (dp->name, sizeflag) == 0)
  2042. {
  2043. obufp = op1out;
  2044. op_ad = 2;
  2045. if (dp->op1)
  2046. (*dp->op1) (dp->bytemode1, sizeflag);
  2047. obufp = op2out;
  2048. op_ad = 1;
  2049. if (dp->op2)
  2050. (*dp->op2) (dp->bytemode2, sizeflag);
  2051. obufp = op3out;
  2052. op_ad = 0;
  2053. if (dp->op3)
  2054. (*dp->op3) (dp->bytemode3, sizeflag);
  2055. }
  2056. }
  2057. /* See if any prefixes were not used. If so, print the first one
  2058. separately. If we don't do this, we'll wind up printing an
  2059. instruction stream which does not precisely correspond to the
  2060. bytes we are disassembling. */
  2061. if ((prefixes & ~used_prefixes) != 0)
  2062. {
  2063. const char *name;
  2064. name = prefix_name (priv.the_buffer[0], priv.orig_sizeflag);
  2065. if (name == NULL)
  2066. name = INTERNAL_DISASSEMBLER_ERROR;
  2067. (*info->fprintf_func) (info->stream, "%s", name);
  2068. return 1;
  2069. }
  2070. if (rex & ~rex_used)
  2071. {
  2072. const char *name;
  2073. name = prefix_name (rex | 0x40, priv.orig_sizeflag);
  2074. if (name == NULL)
  2075. name = INTERNAL_DISASSEMBLER_ERROR;
  2076. (*info->fprintf_func) (info->stream, "%s ", name);
  2077. }
  2078. obufp = obuf + strlen (obuf);
  2079. for (i = strlen (obuf); i < 6; i++)
  2080. oappend (" ");
  2081. oappend (" ");
  2082. (*info->fprintf_func) (info->stream, "%s", obuf);
  2083. /* The enter and bound instructions are printed with operands in the same
  2084. order as the intel book; everything else is printed in reverse order. */
  2085. if (intel_syntax || two_source_ops)
  2086. {
  2087. first = op1out;
  2088. second = op2out;
  2089. third = op3out;
  2090. op_ad = op_index[0];
  2091. op_index[0] = op_index[2];
  2092. op_index[2] = op_ad;
  2093. }
  2094. else
  2095. {
  2096. first = op3out;
  2097. second = op2out;
  2098. third = op1out;
  2099. }
  2100. needcomma = 0;
  2101. if (*first)
  2102. {
  2103. if (op_index[0] != -1 && !op_riprel[0])
  2104. (*info->print_address_func) ((bfd_vma) op_address[op_index[0]], info);
  2105. else
  2106. (*info->fprintf_func) (info->stream, "%s", first);
  2107. needcomma = 1;
  2108. }
  2109. if (*second)
  2110. {
  2111. if (needcomma)
  2112. (*info->fprintf_func) (info->stream, ",");
  2113. if (op_index[1] != -1 && !op_riprel[1])
  2114. (*info->print_address_func) ((bfd_vma) op_address[op_index[1]], info);
  2115. else
  2116. (*info->fprintf_func) (info->stream, "%s", second);
  2117. needcomma = 1;
  2118. }
  2119. if (*third)
  2120. {
  2121. if (needcomma)
  2122. (*info->fprintf_func) (info->stream, ",");
  2123. if (op_index[2] != -1 && !op_riprel[2])
  2124. (*info->print_address_func) ((bfd_vma) op_address[op_index[2]], info);
  2125. else
  2126. (*info->fprintf_func) (info->stream, "%s", third);
  2127. }
  2128. for (i = 0; i < 3; i++)
  2129. if (op_index[i] != -1 && op_riprel[i])
  2130. {
  2131. (*info->fprintf_func) (info->stream, " # ");
  2132. (*info->print_address_func) ((bfd_vma) (start_pc + codep - start_codep
  2133. + op_address[op_index[i]]), info);
  2134. }
  2135. return codep - priv.the_buffer;
  2136. }
  2137. static const char *float_mem[] = {
  2138. /* d8 */
  2139. "fadd{s||s|}",
  2140. "fmul{s||s|}",
  2141. "fcom{s||s|}",
  2142. "fcomp{s||s|}",
  2143. "fsub{s||s|}",
  2144. "fsubr{s||s|}",
  2145. "fdiv{s||s|}",
  2146. "fdivr{s||s|}",
  2147. /* d9 */
  2148. "fld{s||s|}",
  2149. "(bad)",
  2150. "fst{s||s|}",
  2151. "fstp{s||s|}",
  2152. "fldenv",
  2153. "fldcw",
  2154. "fNstenv",
  2155. "fNstcw",
  2156. /* da */
  2157. "fiadd{l||l|}",
  2158. "fimul{l||l|}",
  2159. "ficom{l||l|}",
  2160. "ficomp{l||l|}",
  2161. "fisub{l||l|}",
  2162. "fisubr{l||l|}",
  2163. "fidiv{l||l|}",
  2164. "fidivr{l||l|}",
  2165. /* db */
  2166. "fild{l||l|}",
  2167. "(bad)",
  2168. "fist{l||l|}",
  2169. "fistp{l||l|}",
  2170. "(bad)",
  2171. "fld{t||t|}",
  2172. "(bad)",
  2173. "fstp{t||t|}",
  2174. /* dc */
  2175. "fadd{l||l|}",
  2176. "fmul{l||l|}",
  2177. "fcom{l||l|}",
  2178. "fcomp{l||l|}",
  2179. "fsub{l||l|}",
  2180. "fsubr{l||l|}",
  2181. "fdiv{l||l|}",
  2182. "fdivr{l||l|}",
  2183. /* dd */
  2184. "fld{l||l|}",
  2185. "(bad)",
  2186. "fst{l||l|}",
  2187. "fstp{l||l|}",
  2188. "frstor",
  2189. "(bad)",
  2190. "fNsave",
  2191. "fNstsw",
  2192. /* de */
  2193. "fiadd",
  2194. "fimul",
  2195. "ficom",
  2196. "ficomp",
  2197. "fisub",
  2198. "fisubr",
  2199. "fidiv",
  2200. "fidivr",
  2201. /* df */
  2202. "fild",
  2203. "(bad)",
  2204. "fist",
  2205. "fistp",
  2206. "fbld",
  2207. "fild{ll||ll|}",
  2208. "fbstp",
  2209. "fistpll",
  2210. };
  2211. #define ST OP_ST, 0
  2212. #define STi OP_STi, 0
  2213. #define FGRPd9_2 NULL, NULL, 0, NULL, 0, NULL, 0
  2214. #define FGRPd9_4 NULL, NULL, 1, NULL, 0, NULL, 0
  2215. #define FGRPd9_5 NULL, NULL, 2, NULL, 0, NULL, 0
  2216. #define FGRPd9_6 NULL, NULL, 3, NULL, 0, NULL, 0
  2217. #define FGRPd9_7 NULL, NULL, 4, NULL, 0, NULL, 0
  2218. #define FGRPda_5 NULL, NULL, 5, NULL, 0, NULL, 0
  2219. #define FGRPdb_4 NULL, NULL, 6, NULL, 0, NULL, 0
  2220. #define FGRPde_3 NULL, NULL, 7, NULL, 0, NULL, 0
  2221. #define FGRPdf_4 NULL, NULL, 8, NULL, 0, NULL, 0
  2222. static const struct dis386 float_reg[][8] = {
  2223. /* d8 */
  2224. {
  2225. { "fadd", ST, STi, XX },
  2226. { "fmul", ST, STi, XX },
  2227. { "fcom", STi, XX, XX },
  2228. { "fcomp", STi, XX, XX },
  2229. { "fsub", ST, STi, XX },
  2230. { "fsubr", ST, STi, XX },
  2231. { "fdiv", ST, STi, XX },
  2232. { "fdivr", ST, STi, XX },
  2233. },
  2234. /* d9 */
  2235. {
  2236. { "fld", STi, XX, XX },
  2237. { "fxch", STi, XX, XX },
  2238. { FGRPd9_2 },
  2239. { "(bad)", XX, XX, XX },
  2240. { FGRPd9_4 },
  2241. { FGRPd9_5 },
  2242. { FGRPd9_6 },
  2243. { FGRPd9_7 },
  2244. },
  2245. /* da */
  2246. {
  2247. { "fcmovb", ST, STi, XX },
  2248. { "fcmove", ST, STi, XX },
  2249. { "fcmovbe",ST, STi, XX },
  2250. { "fcmovu", ST, STi, XX },
  2251. { "(bad)", XX, XX, XX },
  2252. { FGRPda_5 },
  2253. { "(bad)", XX, XX, XX },
  2254. { "(bad)", XX, XX, XX },
  2255. },
  2256. /* db */
  2257. {
  2258. { "fcmovnb",ST, STi, XX },
  2259. { "fcmovne",ST, STi, XX },
  2260. { "fcmovnbe",ST, STi, XX },
  2261. { "fcmovnu",ST, STi, XX },
  2262. { FGRPdb_4 },
  2263. { "fucomi", ST, STi, XX },
  2264. { "fcomi", ST, STi, XX },
  2265. { "(bad)", XX, XX, XX },
  2266. },
  2267. /* dc */
  2268. {
  2269. { "fadd", STi, ST, XX },
  2270. { "fmul", STi, ST, XX },
  2271. { "(bad)", XX, XX, XX },
  2272. { "(bad)", XX, XX, XX },
  2273. #if UNIXWARE_COMPAT
  2274. { "fsub", STi, ST, XX },
  2275. { "fsubr", STi, ST, XX },
  2276. { "fdiv", STi, ST, XX },
  2277. { "fdivr", STi, ST, XX },
  2278. #else
  2279. { "fsubr", STi, ST, XX },
  2280. { "fsub", STi, ST, XX },
  2281. { "fdivr", STi, ST, XX },
  2282. { "fdiv", STi, ST, XX },
  2283. #endif
  2284. },
  2285. /* dd */
  2286. {
  2287. { "ffree", STi, XX, XX },
  2288. { "(bad)", XX, XX, XX },
  2289. { "fst", STi, XX, XX },
  2290. { "fstp", STi, XX, XX },
  2291. { "fucom", STi, XX, XX },
  2292. { "fucomp", STi, XX, XX },
  2293. { "(bad)", XX, XX, XX },
  2294. { "(bad)", XX, XX, XX },
  2295. },
  2296. /* de */
  2297. {
  2298. { "faddp", STi, ST, XX },
  2299. { "fmulp", STi, ST, XX },
  2300. { "(bad)", XX, XX, XX },
  2301. { FGRPde_3 },
  2302. #if UNIXWARE_COMPAT
  2303. { "fsubp", STi, ST, XX },
  2304. { "fsubrp", STi, ST, XX },
  2305. { "fdivp", STi, ST, XX },
  2306. { "fdivrp", STi, ST, XX },
  2307. #else
  2308. { "fsubrp", STi, ST, XX },
  2309. { "fsubp", STi, ST, XX },
  2310. { "fdivrp", STi, ST, XX },
  2311. { "fdivp", STi, ST, XX },
  2312. #endif
  2313. },
  2314. /* df */
  2315. {
  2316. { "ffreep", STi, XX, XX },
  2317. { "(bad)", XX, XX, XX },
  2318. { "(bad)", XX, XX, XX },
  2319. { "(bad)", XX, XX, XX },
  2320. { FGRPdf_4 },
  2321. { "fucomip",ST, STi, XX },
  2322. { "fcomip", ST, STi, XX },
  2323. { "(bad)", XX, XX, XX },
  2324. },
  2325. };
  2326. static const char *fgrps[][8] = {
  2327. /* d9_2 0 */
  2328. {
  2329. "fnop","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
  2330. },
  2331. /* d9_4 1 */
  2332. {
  2333. "fchs","fabs","(bad)","(bad)","ftst","fxam","(bad)","(bad)",
  2334. },
  2335. /* d9_5 2 */
  2336. {
  2337. "fld1","fldl2t","fldl2e","fldpi","fldlg2","fldln2","fldz","(bad)",
  2338. },
  2339. /* d9_6 3 */
  2340. {
  2341. "f2xm1","fyl2x","fptan","fpatan","fxtract","fprem1","fdecstp","fincstp",
  2342. },
  2343. /* d9_7 4 */
  2344. {
  2345. "fprem","fyl2xp1","fsqrt","fsincos","frndint","fscale","fsin","fcos",
  2346. },
  2347. /* da_5 5 */
  2348. {
  2349. "(bad)","fucompp","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
  2350. },
  2351. /* db_4 6 */
  2352. {
  2353. "feni(287 only)","fdisi(287 only)","fNclex","fNinit",
  2354. "fNsetpm(287 only)","(bad)","(bad)","(bad)",
  2355. },
  2356. /* de_3 7 */
  2357. {
  2358. "(bad)","fcompp","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
  2359. },
  2360. /* df_4 8 */
  2361. {
  2362. "fNstsw","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)","(bad)",
  2363. },
  2364. };
  2365. static void
  2366. dofloat (sizeflag)
  2367. int sizeflag;
  2368. {
  2369. const struct dis386 *dp;
  2370. unsigned char floatop;
  2371. floatop = codep[-1];
  2372. if (mod != 3)
  2373. {
  2374. putop (float_mem[(floatop - 0xd8) * 8 + reg], sizeflag);
  2375. obufp = op1out;
  2376. if (floatop == 0xdb)
  2377. OP_E (x_mode, sizeflag);
  2378. else if (floatop == 0xdd)
  2379. OP_E (d_mode, sizeflag);
  2380. else
  2381. OP_E (v_mode, sizeflag);
  2382. return;
  2383. }
  2384. /* Skip mod/rm byte. */
  2385. MODRM_CHECK;
  2386. codep++;
  2387. dp = &float_reg[floatop - 0xd8][reg];
  2388. if (dp->name == NULL)
  2389. {
  2390. putop (fgrps[dp->bytemode1][rm], sizeflag);
  2391. /* Instruction fnstsw is only one with strange arg. */
  2392. if (floatop == 0xdf && codep[-1] == 0xe0)
  2393. pstrcpy (op1out, sizeof(op1out), names16[0]);
  2394. }
  2395. else
  2396. {
  2397. putop (dp->name, sizeflag);
  2398. obufp = op1out;
  2399. if (dp->op1)
  2400. (*dp->op1) (dp->bytemode1, sizeflag);
  2401. obufp = op2out;
  2402. if (dp->op2)
  2403. (*dp->op2) (dp->bytemode2, sizeflag);
  2404. }
  2405. }
  2406. static void
  2407. OP_ST (bytemode, sizeflag)
  2408. int bytemode;
  2409. int sizeflag;
  2410. {
  2411. oappend ("%st");
  2412. }
  2413. static void
  2414. OP_STi (bytemode, sizeflag)
  2415. int bytemode;
  2416. int sizeflag;
  2417. {
  2418. snprintf (scratchbuf, sizeof(scratchbuf), "%%st(%d)", rm);
  2419. oappend (scratchbuf + intel_syntax);
  2420. }
  2421. /* Capital letters in template are macros. */
  2422. static int
  2423. putop (template, sizeflag)
  2424. const char *template;
  2425. int sizeflag;
  2426. {
  2427. const char *p;
  2428. int alt;
  2429. for (p = template; *p; p++)
  2430. {
  2431. switch (*p)
  2432. {
  2433. default:
  2434. *obufp++ = *p;
  2435. break;
  2436. case '{':
  2437. alt = 0;
  2438. if (intel_syntax)
  2439. alt += 1;
  2440. if (mode_64bit)
  2441. alt += 2;
  2442. while (alt != 0)
  2443. {
  2444. while (*++p != '|')
  2445. {
  2446. if (*p == '}')
  2447. {
  2448. /* Alternative not valid. */
  2449. pstrcpy (obuf, sizeof(obuf), "(bad)");
  2450. obufp = obuf + 5;
  2451. return 1;
  2452. }
  2453. else if (*p == '\0')
  2454. abort ();
  2455. }
  2456. alt--;
  2457. }
  2458. break;
  2459. case '|':
  2460. while (*++p != '}')
  2461. {
  2462. if (*p == '\0')
  2463. abort ();
  2464. }
  2465. break;
  2466. case '}':
  2467. break;
  2468. case 'A':
  2469. if (intel_syntax)
  2470. break;
  2471. if (mod != 3 || (sizeflag & SUFFIX_ALWAYS))
  2472. *obufp++ = 'b';
  2473. break;
  2474. case 'B':
  2475. if (intel_syntax)
  2476. break;
  2477. if (sizeflag & SUFFIX_ALWAYS)
  2478. *obufp++ = 'b';
  2479. break;
  2480. case 'E': /* For jcxz/jecxz */
  2481. if (mode_64bit)
  2482. {
  2483. if (sizeflag & AFLAG)
  2484. *obufp++ = 'r';
  2485. else
  2486. *obufp++ = 'e';
  2487. }
  2488. else
  2489. if (sizeflag & AFLAG)
  2490. *obufp++ = 'e';
  2491. used_prefixes |= (prefixes & PREFIX_ADDR);
  2492. break;
  2493. case 'F':
  2494. if (intel_syntax)
  2495. break;
  2496. if ((prefixes & PREFIX_ADDR) || (sizeflag & SUFFIX_ALWAYS))
  2497. {
  2498. if (sizeflag & AFLAG)
  2499. *obufp++ = mode_64bit ? 'q' : 'l';
  2500. else
  2501. *obufp++ = mode_64bit ? 'l' : 'w';
  2502. used_prefixes |= (prefixes & PREFIX_ADDR);
  2503. }
  2504. break;
  2505. case 'H':
  2506. if (intel_syntax)
  2507. break;
  2508. if ((prefixes & (PREFIX_CS | PREFIX_DS)) == PREFIX_CS
  2509. || (prefixes & (PREFIX_CS | PREFIX_DS)) == PREFIX_DS)
  2510. {
  2511. used_prefixes |= prefixes & (PREFIX_CS | PREFIX_DS);
  2512. *obufp++ = ',';
  2513. *obufp++ = 'p';
  2514. if (prefixes & PREFIX_DS)
  2515. *obufp++ = 't';
  2516. else
  2517. *obufp++ = 'n';
  2518. }
  2519. break;
  2520. case 'L':
  2521. if (intel_syntax)
  2522. break;
  2523. if (sizeflag & SUFFIX_ALWAYS)
  2524. *obufp++ = 'l';
  2525. break;
  2526. case 'N':
  2527. if ((prefixes & PREFIX_FWAIT) == 0)
  2528. *obufp++ = 'n';
  2529. else
  2530. used_prefixes |= PREFIX_FWAIT;
  2531. break;
  2532. case 'O':
  2533. USED_REX (REX_MODE64);
  2534. if (rex & REX_MODE64)
  2535. *obufp++ = 'o';
  2536. else
  2537. *obufp++ = 'd';
  2538. break;
  2539. case 'T':
  2540. if (intel_syntax)
  2541. break;
  2542. if (mode_64bit)
  2543. {
  2544. *obufp++ = 'q';
  2545. break;
  2546. }
  2547. /* Fall through. */
  2548. case 'P':
  2549. if (intel_syntax)
  2550. break;
  2551. if ((prefixes & PREFIX_DATA)
  2552. || (rex & REX_MODE64)
  2553. || (sizeflag & SUFFIX_ALWAYS))
  2554. {
  2555. USED_REX (REX_MODE64);
  2556. if (rex & REX_MODE64)
  2557. *obufp++ = 'q';
  2558. else
  2559. {
  2560. if (sizeflag & DFLAG)
  2561. *obufp++ = 'l';
  2562. else
  2563. *obufp++ = 'w';
  2564. used_prefixes |= (prefixes & PREFIX_DATA);
  2565. }
  2566. }
  2567. break;
  2568. case 'U':
  2569. if (intel_syntax)
  2570. break;
  2571. if (mode_64bit)
  2572. {
  2573. *obufp++ = 'q';
  2574. break;
  2575. }
  2576. /* Fall through. */
  2577. case 'Q':
  2578. if (intel_syntax)
  2579. break;
  2580. USED_REX (REX_MODE64);
  2581. if (mod != 3 || (sizeflag & SUFFIX_ALWAYS))
  2582. {
  2583. if (rex & REX_MODE64)
  2584. *obufp++ = 'q';
  2585. else
  2586. {
  2587. if (sizeflag & DFLAG)
  2588. *obufp++ = 'l';
  2589. else
  2590. *obufp++ = 'w';
  2591. used_prefixes |= (prefixes & PREFIX_DATA);
  2592. }
  2593. }
  2594. break;
  2595. case 'R':
  2596. USED_REX (REX_MODE64);
  2597. if (intel_syntax)
  2598. {
  2599. if (rex & REX_MODE64)
  2600. {
  2601. *obufp++ = 'q';
  2602. *obufp++ = 't';
  2603. }
  2604. else if (sizeflag & DFLAG)
  2605. {
  2606. *obufp++ = 'd';
  2607. *obufp++ = 'q';
  2608. }
  2609. else
  2610. {
  2611. *obufp++ = 'w';
  2612. *obufp++ = 'd';
  2613. }
  2614. }
  2615. else
  2616. {
  2617. if (rex & REX_MODE64)
  2618. *obufp++ = 'q';
  2619. else if (sizeflag & DFLAG)
  2620. *obufp++ = 'l';
  2621. else
  2622. *obufp++ = 'w';
  2623. }
  2624. if (!(rex & REX_MODE64))
  2625. used_prefixes |= (prefixes & PREFIX_DATA);
  2626. break;
  2627. case 'S':
  2628. if (intel_syntax)
  2629. break;
  2630. if (sizeflag & SUFFIX_ALWAYS)
  2631. {
  2632. if (rex & REX_MODE64)
  2633. *obufp++ = 'q';
  2634. else
  2635. {
  2636. if (sizeflag & DFLAG)
  2637. *obufp++ = 'l';
  2638. else
  2639. *obufp++ = 'w';
  2640. used_prefixes |= (prefixes & PREFIX_DATA);
  2641. }
  2642. }
  2643. break;
  2644. case 'X':
  2645. if (prefixes & PREFIX_DATA)
  2646. *obufp++ = 'd';
  2647. else
  2648. *obufp++ = 's';
  2649. used_prefixes |= (prefixes & PREFIX_DATA);
  2650. break;
  2651. case 'Y':
  2652. if (intel_syntax)
  2653. break;
  2654. if (rex & REX_MODE64)
  2655. {
  2656. USED_REX (REX_MODE64);
  2657. *obufp++ = 'q';
  2658. }
  2659. break;
  2660. /* implicit operand size 'l' for i386 or 'q' for x86-64 */
  2661. case 'W':
  2662. /* operand size flag for cwtl, cbtw */
  2663. USED_REX (0);
  2664. if (rex)
  2665. *obufp++ = 'l';
  2666. else if (sizeflag & DFLAG)
  2667. *obufp++ = 'w';
  2668. else
  2669. *obufp++ = 'b';
  2670. if (intel_syntax)
  2671. {
  2672. if (rex)
  2673. {
  2674. *obufp++ = 'q';
  2675. *obufp++ = 'e';
  2676. }
  2677. if (sizeflag & DFLAG)
  2678. {
  2679. *obufp++ = 'd';
  2680. *obufp++ = 'e';
  2681. }
  2682. else
  2683. {
  2684. *obufp++ = 'w';
  2685. }
  2686. }
  2687. if (!rex)
  2688. used_prefixes |= (prefixes & PREFIX_DATA);
  2689. break;
  2690. }
  2691. }
  2692. *obufp = 0;
  2693. return 0;
  2694. }
  2695. static void
  2696. oappend (s)
  2697. const char *s;
  2698. {
  2699. strcpy (obufp, s);
  2700. obufp += strlen (s);
  2701. }
  2702. static void
  2703. append_seg ()
  2704. {
  2705. if (prefixes & PREFIX_CS)
  2706. {
  2707. used_prefixes |= PREFIX_CS;
  2708. oappend ("%cs:" + intel_syntax);
  2709. }
  2710. if (prefixes & PREFIX_DS)
  2711. {
  2712. used_prefixes |= PREFIX_DS;
  2713. oappend ("%ds:" + intel_syntax);
  2714. }
  2715. if (prefixes & PREFIX_SS)
  2716. {
  2717. used_prefixes |= PREFIX_SS;
  2718. oappend ("%ss:" + intel_syntax);
  2719. }
  2720. if (prefixes & PREFIX_ES)
  2721. {
  2722. used_prefixes |= PREFIX_ES;
  2723. oappend ("%es:" + intel_syntax);
  2724. }
  2725. if (prefixes & PREFIX_FS)
  2726. {
  2727. used_prefixes |= PREFIX_FS;
  2728. oappend ("%fs:" + intel_syntax);
  2729. }
  2730. if (prefixes & PREFIX_GS)
  2731. {
  2732. used_prefixes |= PREFIX_GS;
  2733. oappend ("%gs:" + intel_syntax);
  2734. }
  2735. }
  2736. static void
  2737. OP_indirE (bytemode, sizeflag)
  2738. int bytemode;
  2739. int sizeflag;
  2740. {
  2741. if (!intel_syntax)
  2742. oappend ("*");
  2743. OP_E (bytemode, sizeflag);
  2744. }
  2745. static void
  2746. print_operand_value (char *buf, size_t bufsize, int hex, bfd_vma disp)
  2747. {
  2748. if (mode_64bit)
  2749. {
  2750. if (hex)
  2751. {
  2752. char tmp[30];
  2753. int i;
  2754. buf[0] = '0';
  2755. buf[1] = 'x';
  2756. snprintf_vma (tmp, sizeof(tmp), disp);
  2757. for (i = 0; tmp[i] == '0' && tmp[i + 1]; i++);
  2758. pstrcpy (buf + 2, bufsize - 2, tmp + i);
  2759. }
  2760. else
  2761. {
  2762. bfd_signed_vma v = disp;
  2763. char tmp[30];
  2764. int i;
  2765. if (v < 0)
  2766. {
  2767. *(buf++) = '-';
  2768. v = -disp;
  2769. /* Check for possible overflow on 0x8000000000000000. */
  2770. if (v < 0)
  2771. {
  2772. pstrcpy (buf, bufsize, "9223372036854775808");
  2773. return;
  2774. }
  2775. }
  2776. if (!v)
  2777. {
  2778. pstrcpy (buf, bufsize, "0");
  2779. return;
  2780. }
  2781. i = 0;
  2782. tmp[29] = 0;
  2783. while (v)
  2784. {
  2785. tmp[28 - i] = (v % 10) + '0';
  2786. v /= 10;
  2787. i++;
  2788. }
  2789. pstrcpy (buf, bufsize, tmp + 29 - i);
  2790. }
  2791. }
  2792. else
  2793. {
  2794. if (hex)
  2795. snprintf (buf, bufsize, "0x%x", (unsigned int) disp);
  2796. else
  2797. snprintf (buf, bufsize, "%d", (int) disp);
  2798. }
  2799. }
  2800. static void
  2801. OP_E (bytemode, sizeflag)
  2802. int bytemode;
  2803. int sizeflag;
  2804. {
  2805. bfd_vma disp;
  2806. int add = 0;
  2807. int riprel = 0;
  2808. USED_REX (REX_EXTZ);
  2809. if (rex & REX_EXTZ)
  2810. add += 8;
  2811. /* Skip mod/rm byte. */
  2812. MODRM_CHECK;
  2813. codep++;
  2814. if (mod == 3)
  2815. {
  2816. switch (bytemode)
  2817. {
  2818. case b_mode:
  2819. USED_REX (0);
  2820. if (rex)
  2821. oappend (names8rex[rm + add]);
  2822. else
  2823. oappend (names8[rm + add]);
  2824. break;
  2825. case w_mode:
  2826. oappend (names16[rm + add]);
  2827. break;
  2828. case d_mode:
  2829. oappend (names32[rm + add]);
  2830. break;
  2831. case q_mode:
  2832. oappend (names64[rm + add]);
  2833. break;
  2834. case m_mode:
  2835. if (mode_64bit)
  2836. oappend (names64[rm + add]);
  2837. else
  2838. oappend (names32[rm + add]);
  2839. break;
  2840. case v_mode:
  2841. USED_REX (REX_MODE64);
  2842. if (rex & REX_MODE64)
  2843. oappend (names64[rm + add]);
  2844. else if (sizeflag & DFLAG)
  2845. oappend (names32[rm + add]);
  2846. else
  2847. oappend (names16[rm + add]);
  2848. used_prefixes |= (prefixes & PREFIX_DATA);
  2849. break;
  2850. case 0:
  2851. if (!(codep[-2] == 0xAE && codep[-1] == 0xF8 /* sfence */)
  2852. && !(codep[-2] == 0xAE && codep[-1] == 0xF0 /* mfence */)
  2853. && !(codep[-2] == 0xAE && codep[-1] == 0xe8 /* lfence */))
  2854. BadOp (); /* bad sfence,lea,lds,les,lfs,lgs,lss modrm */
  2855. break;
  2856. default:
  2857. oappend (INTERNAL_DISASSEMBLER_ERROR);
  2858. break;
  2859. }
  2860. return;
  2861. }
  2862. disp = 0;
  2863. append_seg ();
  2864. if ((sizeflag & AFLAG) || mode_64bit) /* 32 bit address mode */
  2865. {
  2866. int havesib;
  2867. int havebase;
  2868. int base;
  2869. int index = 0;
  2870. int scale = 0;
  2871. havesib = 0;
  2872. havebase = 1;
  2873. base = rm;
  2874. if (base == 4)
  2875. {
  2876. havesib = 1;
  2877. FETCH_DATA (the_info, codep + 1);
  2878. scale = (*codep >> 6) & 3;
  2879. index = (*codep >> 3) & 7;
  2880. base = *codep & 7;
  2881. USED_REX (REX_EXTY);
  2882. USED_REX (REX_EXTZ);
  2883. if (rex & REX_EXTY)
  2884. index += 8;
  2885. if (rex & REX_EXTZ)
  2886. base += 8;
  2887. codep++;
  2888. }
  2889. switch (mod)
  2890. {
  2891. case 0:
  2892. if ((base & 7) == 5)
  2893. {
  2894. havebase = 0;
  2895. if (mode_64bit && !havesib && (sizeflag & AFLAG))
  2896. riprel = 1;
  2897. disp = get32s ();
  2898. }
  2899. break;
  2900. case 1:
  2901. FETCH_DATA (the_info, codep + 1);
  2902. disp = *codep++;
  2903. if ((disp & 0x80) != 0)
  2904. disp -= 0x100;
  2905. break;
  2906. case 2:
  2907. disp = get32s ();
  2908. break;
  2909. }
  2910. if (!intel_syntax)
  2911. if (mod != 0 || (base & 7) == 5)
  2912. {
  2913. print_operand_value (scratchbuf, sizeof(scratchbuf), !riprel, disp);
  2914. oappend (scratchbuf);
  2915. if (riprel)
  2916. {
  2917. set_op (disp, 1);
  2918. oappend ("(%rip)");
  2919. }
  2920. }
  2921. if (havebase || (havesib && (index != 4 || scale != 0)))
  2922. {
  2923. if (intel_syntax)
  2924. {
  2925. switch (bytemode)
  2926. {
  2927. case b_mode:
  2928. oappend ("BYTE PTR ");
  2929. break;
  2930. case w_mode:
  2931. oappend ("WORD PTR ");
  2932. break;
  2933. case v_mode:
  2934. oappend ("DWORD PTR ");
  2935. break;
  2936. case d_mode:
  2937. oappend ("QWORD PTR ");
  2938. break;
  2939. case m_mode:
  2940. if (mode_64bit)
  2941. oappend ("DWORD PTR ");
  2942. else
  2943. oappend ("QWORD PTR ");
  2944. break;
  2945. case x_mode:
  2946. oappend ("XWORD PTR ");
  2947. break;
  2948. default:
  2949. break;
  2950. }
  2951. }
  2952. *obufp++ = open_char;
  2953. if (intel_syntax && riprel)
  2954. oappend ("rip + ");
  2955. *obufp = '\0';
  2956. USED_REX (REX_EXTZ);
  2957. if (!havesib && (rex & REX_EXTZ))
  2958. base += 8;
  2959. if (havebase)
  2960. oappend (mode_64bit && (sizeflag & AFLAG)
  2961. ? names64[base] : names32[base]);
  2962. if (havesib)
  2963. {
  2964. if (index != 4)
  2965. {
  2966. if (intel_syntax)
  2967. {
  2968. if (havebase)
  2969. {
  2970. *obufp++ = separator_char;
  2971. *obufp = '\0';
  2972. }
  2973. snprintf (scratchbuf, sizeof(scratchbuf), "%s",
  2974. mode_64bit && (sizeflag & AFLAG)
  2975. ? names64[index] : names32[index]);
  2976. }
  2977. else
  2978. snprintf (scratchbuf, sizeof(scratchbuf), ",%s",
  2979. mode_64bit && (sizeflag & AFLAG)
  2980. ? names64[index] : names32[index]);
  2981. oappend (scratchbuf);
  2982. }
  2983. if (!intel_syntax
  2984. || (intel_syntax
  2985. && bytemode != b_mode
  2986. && bytemode != w_mode
  2987. && bytemode != v_mode))
  2988. {
  2989. *obufp++ = scale_char;
  2990. *obufp = '\0';
  2991. snprintf (scratchbuf, sizeof(scratchbuf), "%d", 1 << scale);
  2992. oappend (scratchbuf);
  2993. }
  2994. }
  2995. if (intel_syntax)
  2996. if (mod != 0 || (base & 7) == 5)
  2997. {
  2998. /* Don't print zero displacements. */
  2999. if (disp != 0)
  3000. {
  3001. if ((bfd_signed_vma) disp > 0)
  3002. {
  3003. *obufp++ = '+';
  3004. *obufp = '\0';
  3005. }
  3006. print_operand_value (scratchbuf, sizeof(scratchbuf), 0,
  3007. disp);
  3008. oappend (scratchbuf);
  3009. }
  3010. }
  3011. *obufp++ = close_char;
  3012. *obufp = '\0';
  3013. }
  3014. else if (intel_syntax)
  3015. {
  3016. if (mod != 0 || (base & 7) == 5)
  3017. {
  3018. if (prefixes & (PREFIX_CS | PREFIX_SS | PREFIX_DS
  3019. | PREFIX_ES | PREFIX_FS | PREFIX_GS))
  3020. ;
  3021. else
  3022. {
  3023. oappend (names_seg[ds_reg - es_reg]);
  3024. oappend (":");
  3025. }
  3026. print_operand_value (scratchbuf, sizeof(scratchbuf), 1, disp);
  3027. oappend (scratchbuf);
  3028. }
  3029. }
  3030. }
  3031. else
  3032. { /* 16 bit address mode */
  3033. switch (mod)
  3034. {
  3035. case 0:
  3036. if ((rm & 7) == 6)
  3037. {
  3038. disp = get16 ();
  3039. if ((disp & 0x8000) != 0)
  3040. disp -= 0x10000;
  3041. }
  3042. break;
  3043. case 1:
  3044. FETCH_DATA (the_info, codep + 1);
  3045. disp = *codep++;
  3046. if ((disp & 0x80) != 0)
  3047. disp -= 0x100;
  3048. break;
  3049. case 2:
  3050. disp = get16 ();
  3051. if ((disp & 0x8000) != 0)
  3052. disp -= 0x10000;
  3053. break;
  3054. }
  3055. if (!intel_syntax)
  3056. if (mod != 0 || (rm & 7) == 6)
  3057. {
  3058. print_operand_value (scratchbuf, sizeof(scratchbuf), 0, disp);
  3059. oappend (scratchbuf);
  3060. }
  3061. if (mod != 0 || (rm & 7) != 6)
  3062. {
  3063. *obufp++ = open_char;
  3064. *obufp = '\0';
  3065. oappend (index16[rm + add]);
  3066. *obufp++ = close_char;
  3067. *obufp = '\0';
  3068. }
  3069. }
  3070. }
  3071. static void
  3072. OP_G (bytemode, sizeflag)
  3073. int bytemode;
  3074. int sizeflag;
  3075. {
  3076. int add = 0;
  3077. USED_REX (REX_EXTX);
  3078. if (rex & REX_EXTX)
  3079. add += 8;
  3080. switch (bytemode)
  3081. {
  3082. case b_mode:
  3083. USED_REX (0);
  3084. if (rex)
  3085. oappend (names8rex[reg + add]);
  3086. else
  3087. oappend (names8[reg + add]);
  3088. break;
  3089. case w_mode:
  3090. oappend (names16[reg + add]);
  3091. break;
  3092. case d_mode:
  3093. oappend (names32[reg + add]);
  3094. break;
  3095. case q_mode:
  3096. oappend (names64[reg + add]);
  3097. break;
  3098. case v_mode:
  3099. USED_REX (REX_MODE64);
  3100. if (rex & REX_MODE64)
  3101. oappend (names64[reg + add]);
  3102. else if (sizeflag & DFLAG)
  3103. oappend (names32[reg + add]);
  3104. else
  3105. oappend (names16[reg + add]);
  3106. used_prefixes |= (prefixes & PREFIX_DATA);
  3107. break;
  3108. default:
  3109. oappend (INTERNAL_DISASSEMBLER_ERROR);
  3110. break;
  3111. }
  3112. }
  3113. static bfd_vma
  3114. get64 ()
  3115. {
  3116. bfd_vma x;
  3117. #ifdef BFD64
  3118. unsigned int a;
  3119. unsigned int b;
  3120. FETCH_DATA (the_info, codep + 8);
  3121. a = *codep++ & 0xff;
  3122. a |= (*codep++ & 0xff) << 8;
  3123. a |= (*codep++ & 0xff) << 16;
  3124. a |= (*codep++ & 0xff) << 24;
  3125. b = *codep++ & 0xff;
  3126. b |= (*codep++ & 0xff) << 8;
  3127. b |= (*codep++ & 0xff) << 16;
  3128. b |= (*codep++ & 0xff) << 24;
  3129. x = a + ((bfd_vma) b << 32);
  3130. #else
  3131. abort ();
  3132. x = 0;
  3133. #endif
  3134. return x;
  3135. }
  3136. static bfd_signed_vma
  3137. get32 ()
  3138. {
  3139. bfd_signed_vma x = 0;
  3140. FETCH_DATA (the_info, codep + 4);
  3141. x = *codep++ & (bfd_signed_vma) 0xff;
  3142. x |= (*codep++ & (bfd_signed_vma) 0xff) << 8;
  3143. x |= (*codep++ & (bfd_signed_vma) 0xff) << 16;
  3144. x |= (*codep++ & (bfd_signed_vma) 0xff) << 24;
  3145. return x;
  3146. }
  3147. static bfd_signed_vma
  3148. get32s ()
  3149. {
  3150. bfd_signed_vma x = 0;
  3151. FETCH_DATA (the_info, codep + 4);
  3152. x = *codep++ & (bfd_signed_vma) 0xff;
  3153. x |= (*codep++ & (bfd_signed_vma) 0xff) << 8;
  3154. x |= (*codep++ & (bfd_signed_vma) 0xff) << 16;
  3155. x |= (*codep++ & (bfd_signed_vma) 0xff) << 24;
  3156. x = (x ^ ((bfd_signed_vma) 1 << 31)) - ((bfd_signed_vma) 1 << 31);
  3157. return x;
  3158. }
  3159. static int
  3160. get16 ()
  3161. {
  3162. int x = 0;
  3163. FETCH_DATA (the_info, codep + 2);
  3164. x = *codep++ & 0xff;
  3165. x |= (*codep++ & 0xff) << 8;
  3166. return x;
  3167. }
  3168. static void
  3169. set_op (op, riprel)
  3170. bfd_vma op;
  3171. int riprel;
  3172. {
  3173. op_index[op_ad] = op_ad;
  3174. if (mode_64bit)
  3175. {
  3176. op_address[op_ad] = op;
  3177. op_riprel[op_ad] = riprel;
  3178. }
  3179. else
  3180. {
  3181. /* Mask to get a 32-bit address. */
  3182. op_address[op_ad] = op & 0xffffffff;
  3183. op_riprel[op_ad] = riprel & 0xffffffff;
  3184. }
  3185. }
  3186. static void
  3187. OP_REG (code, sizeflag)
  3188. int code;
  3189. int sizeflag;
  3190. {
  3191. const char *s;
  3192. int add = 0;
  3193. USED_REX (REX_EXTZ);
  3194. if (rex & REX_EXTZ)
  3195. add = 8;
  3196. switch (code)
  3197. {
  3198. case indir_dx_reg:
  3199. if (intel_syntax)
  3200. s = "[dx]";
  3201. else
  3202. s = "(%dx)";
  3203. break;
  3204. case ax_reg: case cx_reg: case dx_reg: case bx_reg:
  3205. case sp_reg: case bp_reg: case si_reg: case di_reg:
  3206. s = names16[code - ax_reg + add];
  3207. break;
  3208. case es_reg: case ss_reg: case cs_reg:
  3209. case ds_reg: case fs_reg: case gs_reg:
  3210. s = names_seg[code - es_reg + add];
  3211. break;
  3212. case al_reg: case ah_reg: case cl_reg: case ch_reg:
  3213. case dl_reg: case dh_reg: case bl_reg: case bh_reg:
  3214. USED_REX (0);
  3215. if (rex)
  3216. s = names8rex[code - al_reg + add];
  3217. else
  3218. s = names8[code - al_reg];
  3219. break;
  3220. case rAX_reg: case rCX_reg: case rDX_reg: case rBX_reg:
  3221. case rSP_reg: case rBP_reg: case rSI_reg: case rDI_reg:
  3222. if (mode_64bit)
  3223. {
  3224. s = names64[code - rAX_reg + add];
  3225. break;
  3226. }
  3227. code += eAX_reg - rAX_reg;
  3228. /* Fall through. */
  3229. case eAX_reg: case eCX_reg: case eDX_reg: case eBX_reg:
  3230. case eSP_reg: case eBP_reg: case eSI_reg: case eDI_reg:
  3231. USED_REX (REX_MODE64);
  3232. if (rex & REX_MODE64)
  3233. s = names64[code - eAX_reg + add];
  3234. else if (sizeflag & DFLAG)
  3235. s = names32[code - eAX_reg + add];
  3236. else
  3237. s = names16[code - eAX_reg + add];
  3238. used_prefixes |= (prefixes & PREFIX_DATA);
  3239. break;
  3240. default:
  3241. s = INTERNAL_DISASSEMBLER_ERROR;
  3242. break;
  3243. }
  3244. oappend (s);
  3245. }
  3246. static void
  3247. OP_IMREG (code, sizeflag)
  3248. int code;
  3249. int sizeflag;
  3250. {
  3251. const char *s;
  3252. switch (code)
  3253. {
  3254. case indir_dx_reg:
  3255. if (intel_syntax)
  3256. s = "[dx]";
  3257. else
  3258. s = "(%dx)";
  3259. break;
  3260. case ax_reg: case cx_reg: case dx_reg: case bx_reg:
  3261. case sp_reg: case bp_reg: case si_reg: case di_reg:
  3262. s = names16[code - ax_reg];
  3263. break;
  3264. case es_reg: case ss_reg: case cs_reg:
  3265. case ds_reg: case fs_reg: case gs_reg:
  3266. s = names_seg[code - es_reg];
  3267. break;
  3268. case al_reg: case ah_reg: case cl_reg: case ch_reg:
  3269. case dl_reg: case dh_reg: case bl_reg: case bh_reg:
  3270. USED_REX (0);
  3271. if (rex)
  3272. s = names8rex[code - al_reg];
  3273. else
  3274. s = names8[code - al_reg];
  3275. break;
  3276. case eAX_reg: case eCX_reg: case eDX_reg: case eBX_reg:
  3277. case eSP_reg: case eBP_reg: case eSI_reg: case eDI_reg:
  3278. USED_REX (REX_MODE64);
  3279. if (rex & REX_MODE64)
  3280. s = names64[code - eAX_reg];
  3281. else if (sizeflag & DFLAG)
  3282. s = names32[code - eAX_reg];
  3283. else
  3284. s = names16[code - eAX_reg];
  3285. used_prefixes |= (prefixes & PREFIX_DATA);
  3286. break;
  3287. default:
  3288. s = INTERNAL_DISASSEMBLER_ERROR;
  3289. break;
  3290. }
  3291. oappend (s);
  3292. }
  3293. static void
  3294. OP_I (bytemode, sizeflag)
  3295. int bytemode;
  3296. int sizeflag;
  3297. {
  3298. bfd_signed_vma op;
  3299. bfd_signed_vma mask = -1;
  3300. switch (bytemode)
  3301. {
  3302. case b_mode:
  3303. FETCH_DATA (the_info, codep + 1);
  3304. op = *codep++;
  3305. mask = 0xff;
  3306. break;
  3307. case q_mode:
  3308. if (mode_64bit)
  3309. {
  3310. op = get32s ();
  3311. break;
  3312. }
  3313. /* Fall through. */
  3314. case v_mode:
  3315. USED_REX (REX_MODE64);
  3316. if (rex & REX_MODE64)
  3317. op = get32s ();
  3318. else if (sizeflag & DFLAG)
  3319. {
  3320. op = get32 ();
  3321. mask = 0xffffffff;
  3322. }
  3323. else
  3324. {
  3325. op = get16 ();
  3326. mask = 0xfffff;
  3327. }
  3328. used_prefixes |= (prefixes & PREFIX_DATA);
  3329. break;
  3330. case w_mode:
  3331. mask = 0xfffff;
  3332. op = get16 ();
  3333. break;
  3334. default:
  3335. oappend (INTERNAL_DISASSEMBLER_ERROR);
  3336. return;
  3337. }
  3338. op &= mask;
  3339. scratchbuf[0] = '$';
  3340. print_operand_value (scratchbuf + 1, sizeof(scratchbuf) - 1, 1, op);
  3341. oappend (scratchbuf + intel_syntax);
  3342. scratchbuf[0] = '\0';
  3343. }
  3344. static void
  3345. OP_I64 (bytemode, sizeflag)
  3346. int bytemode;
  3347. int sizeflag;
  3348. {
  3349. bfd_signed_vma op;
  3350. bfd_signed_vma mask = -1;
  3351. if (!mode_64bit)
  3352. {
  3353. OP_I (bytemode, sizeflag);
  3354. return;
  3355. }
  3356. switch (bytemode)
  3357. {
  3358. case b_mode:
  3359. FETCH_DATA (the_info, codep + 1);
  3360. op = *codep++;
  3361. mask = 0xff;
  3362. break;
  3363. case v_mode:
  3364. USED_REX (REX_MODE64);
  3365. if (rex & REX_MODE64)
  3366. op = get64 ();
  3367. else if (sizeflag & DFLAG)
  3368. {
  3369. op = get32 ();
  3370. mask = 0xffffffff;
  3371. }
  3372. else
  3373. {
  3374. op = get16 ();
  3375. mask = 0xfffff;
  3376. }
  3377. used_prefixes |= (prefixes & PREFIX_DATA);
  3378. break;
  3379. case w_mode:
  3380. mask = 0xfffff;
  3381. op = get16 ();
  3382. break;
  3383. default:
  3384. oappend (INTERNAL_DISASSEMBLER_ERROR);
  3385. return;
  3386. }
  3387. op &= mask;
  3388. scratchbuf[0] = '$';
  3389. print_operand_value (scratchbuf + 1, sizeof(scratchbuf) - 1, 1, op);
  3390. oappend (scratchbuf + intel_syntax);
  3391. scratchbuf[0] = '\0';
  3392. }
  3393. static void
  3394. OP_sI (bytemode, sizeflag)
  3395. int bytemode;
  3396. int sizeflag;
  3397. {
  3398. bfd_signed_vma op;
  3399. bfd_signed_vma mask = -1;
  3400. switch (bytemode)
  3401. {
  3402. case b_mode:
  3403. FETCH_DATA (the_info, codep + 1);
  3404. op = *codep++;
  3405. if ((op & 0x80) != 0)
  3406. op -= 0x100;
  3407. mask = 0xffffffff;
  3408. break;
  3409. case v_mode:
  3410. USED_REX (REX_MODE64);
  3411. if (rex & REX_MODE64)
  3412. op = get32s ();
  3413. else if (sizeflag & DFLAG)
  3414. {
  3415. op = get32s ();
  3416. mask = 0xffffffff;
  3417. }
  3418. else
  3419. {
  3420. mask = 0xffffffff;
  3421. op = get16 ();
  3422. if ((op & 0x8000) != 0)
  3423. op -= 0x10000;
  3424. }
  3425. used_prefixes |= (prefixes & PREFIX_DATA);
  3426. break;
  3427. case w_mode:
  3428. op = get16 ();
  3429. mask = 0xffffffff;
  3430. if ((op & 0x8000) != 0)
  3431. op -= 0x10000;
  3432. break;
  3433. default:
  3434. oappend (INTERNAL_DISASSEMBLER_ERROR);
  3435. return;
  3436. }
  3437. scratchbuf[0] = '$';
  3438. print_operand_value (scratchbuf + 1, sizeof(scratchbuf) - 1, 1, op);
  3439. oappend (scratchbuf + intel_syntax);
  3440. }
  3441. static void
  3442. OP_J (bytemode, sizeflag)
  3443. int bytemode;
  3444. int sizeflag;
  3445. {
  3446. bfd_vma disp;
  3447. bfd_vma mask = -1;
  3448. switch (bytemode)
  3449. {
  3450. case b_mode:
  3451. FETCH_DATA (the_info, codep + 1);
  3452. disp = *codep++;
  3453. if ((disp & 0x80) != 0)
  3454. disp -= 0x100;
  3455. break;
  3456. case v_mode:
  3457. if (sizeflag & DFLAG)
  3458. disp = get32s ();
  3459. else
  3460. {
  3461. disp = get16 ();
  3462. /* For some reason, a data16 prefix on a jump instruction
  3463. means that the pc is masked to 16 bits after the
  3464. displacement is added! */
  3465. mask = 0xffff;
  3466. }
  3467. break;
  3468. default:
  3469. oappend (INTERNAL_DISASSEMBLER_ERROR);
  3470. return;
  3471. }
  3472. disp = (start_pc + codep - start_codep + disp) & mask;
  3473. set_op (disp, 0);
  3474. print_operand_value (scratchbuf, sizeof(scratchbuf), 1, disp);
  3475. oappend (scratchbuf);
  3476. }
  3477. static void
  3478. OP_SEG (dummy, sizeflag)
  3479. int dummy;
  3480. int sizeflag;
  3481. {
  3482. oappend (names_seg[reg]);
  3483. }
  3484. static void
  3485. OP_DIR (dummy, sizeflag)
  3486. int dummy;
  3487. int sizeflag;
  3488. {
  3489. int seg, offset;
  3490. if (sizeflag & DFLAG)
  3491. {
  3492. offset = get32 ();
  3493. seg = get16 ();
  3494. }
  3495. else
  3496. {
  3497. offset = get16 ();
  3498. seg = get16 ();
  3499. }
  3500. used_prefixes |= (prefixes & PREFIX_DATA);
  3501. if (intel_syntax)
  3502. snprintf (scratchbuf, sizeof(scratchbuf), "0x%x,0x%x", seg, offset);
  3503. else
  3504. snprintf (scratchbuf, sizeof(scratchbuf), "$0x%x,$0x%x", seg, offset);
  3505. oappend (scratchbuf);
  3506. }
  3507. static void
  3508. OP_OFF (bytemode, sizeflag)
  3509. int bytemode;
  3510. int sizeflag;
  3511. {
  3512. bfd_vma off;
  3513. append_seg ();
  3514. if ((sizeflag & AFLAG) || mode_64bit)
  3515. off = get32 ();
  3516. else
  3517. off = get16 ();
  3518. if (intel_syntax)
  3519. {
  3520. if (!(prefixes & (PREFIX_CS | PREFIX_SS | PREFIX_DS
  3521. | PREFIX_ES | PREFIX_FS | PREFIX_GS)))
  3522. {
  3523. oappend (names_seg[ds_reg - es_reg]);
  3524. oappend (":");
  3525. }
  3526. }
  3527. print_operand_value (scratchbuf, sizeof(scratchbuf), 1, off);
  3528. oappend (scratchbuf);
  3529. }
  3530. static void
  3531. OP_OFF64 (bytemode, sizeflag)
  3532. int bytemode;
  3533. int sizeflag;
  3534. {
  3535. bfd_vma off;
  3536. if (!mode_64bit)
  3537. {
  3538. OP_OFF (bytemode, sizeflag);
  3539. return;
  3540. }
  3541. append_seg ();
  3542. off = get64 ();
  3543. if (intel_syntax)
  3544. {
  3545. if (!(prefixes & (PREFIX_CS | PREFIX_SS | PREFIX_DS
  3546. | PREFIX_ES | PREFIX_FS | PREFIX_GS)))
  3547. {
  3548. oappend (names_seg[ds_reg - es_reg]);
  3549. oappend (":");
  3550. }
  3551. }
  3552. print_operand_value (scratchbuf, sizeof(scratchbuf), 1, off);
  3553. oappend (scratchbuf);
  3554. }
  3555. static void
  3556. ptr_reg (code, sizeflag)
  3557. int code;
  3558. int sizeflag;
  3559. {
  3560. const char *s;
  3561. if (intel_syntax)
  3562. oappend ("[");
  3563. else
  3564. oappend ("(");
  3565. USED_REX (REX_MODE64);
  3566. if (rex & REX_MODE64)
  3567. {
  3568. if (!(sizeflag & AFLAG))
  3569. s = names32[code - eAX_reg];
  3570. else
  3571. s = names64[code - eAX_reg];
  3572. }
  3573. else if (sizeflag & AFLAG)
  3574. s = names32[code - eAX_reg];
  3575. else
  3576. s = names16[code - eAX_reg];
  3577. oappend (s);
  3578. if (intel_syntax)
  3579. oappend ("]");
  3580. else
  3581. oappend (")");
  3582. }
  3583. static void
  3584. OP_ESreg (code, sizeflag)
  3585. int code;
  3586. int sizeflag;
  3587. {
  3588. oappend ("%es:" + intel_syntax);
  3589. ptr_reg (code, sizeflag);
  3590. }
  3591. static void
  3592. OP_DSreg (code, sizeflag)
  3593. int code;
  3594. int sizeflag;
  3595. {
  3596. if ((prefixes
  3597. & (PREFIX_CS
  3598. | PREFIX_DS
  3599. | PREFIX_SS
  3600. | PREFIX_ES
  3601. | PREFIX_FS
  3602. | PREFIX_GS)) == 0)
  3603. prefixes |= PREFIX_DS;
  3604. append_seg ();
  3605. ptr_reg (code, sizeflag);
  3606. }
  3607. static void
  3608. OP_C (dummy, sizeflag)
  3609. int dummy;
  3610. int sizeflag;
  3611. {
  3612. int add = 0;
  3613. USED_REX (REX_EXTX);
  3614. if (rex & REX_EXTX)
  3615. add = 8;
  3616. snprintf (scratchbuf, sizeof(scratchbuf), "%%cr%d", reg + add);
  3617. oappend (scratchbuf + intel_syntax);
  3618. }
  3619. static void
  3620. OP_D (dummy, sizeflag)
  3621. int dummy;
  3622. int sizeflag;
  3623. {
  3624. int add = 0;
  3625. USED_REX (REX_EXTX);
  3626. if (rex & REX_EXTX)
  3627. add = 8;
  3628. if (intel_syntax)
  3629. snprintf (scratchbuf, sizeof(scratchbuf), "db%d", reg + add);
  3630. else
  3631. snprintf (scratchbuf, sizeof(scratchbuf), "%%db%d", reg + add);
  3632. oappend (scratchbuf);
  3633. }
  3634. static void
  3635. OP_T (dummy, sizeflag)
  3636. int dummy;
  3637. int sizeflag;
  3638. {
  3639. snprintf (scratchbuf, sizeof(scratchbuf), "%%tr%d", reg);
  3640. oappend (scratchbuf + intel_syntax);
  3641. }
  3642. static void
  3643. OP_Rd (bytemode, sizeflag)
  3644. int bytemode;
  3645. int sizeflag;
  3646. {
  3647. if (mod == 3)
  3648. OP_E (bytemode, sizeflag);
  3649. else
  3650. BadOp ();
  3651. }
  3652. static void
  3653. OP_MMX (bytemode, sizeflag)
  3654. int bytemode;
  3655. int sizeflag;
  3656. {
  3657. int add = 0;
  3658. USED_REX (REX_EXTX);
  3659. if (rex & REX_EXTX)
  3660. add = 8;
  3661. used_prefixes |= (prefixes & PREFIX_DATA);
  3662. if (prefixes & PREFIX_DATA)
  3663. snprintf (scratchbuf, sizeof(scratchbuf), "%%xmm%d", reg + add);
  3664. else
  3665. snprintf (scratchbuf, sizeof(scratchbuf), "%%mm%d", reg + add);
  3666. oappend (scratchbuf + intel_syntax);
  3667. }
  3668. static void
  3669. OP_XMM (bytemode, sizeflag)
  3670. int bytemode;
  3671. int sizeflag;
  3672. {
  3673. int add = 0;
  3674. USED_REX (REX_EXTX);
  3675. if (rex & REX_EXTX)
  3676. add = 8;
  3677. snprintf (scratchbuf, sizeof(scratchbuf), "%%xmm%d", reg + add);
  3678. oappend (scratchbuf + intel_syntax);
  3679. }
  3680. static void
  3681. OP_EM (bytemode, sizeflag)
  3682. int bytemode;
  3683. int sizeflag;
  3684. {
  3685. int add = 0;
  3686. if (mod != 3)
  3687. {
  3688. OP_E (bytemode, sizeflag);
  3689. return;
  3690. }
  3691. USED_REX (REX_EXTZ);
  3692. if (rex & REX_EXTZ)
  3693. add = 8;
  3694. /* Skip mod/rm byte. */
  3695. MODRM_CHECK;
  3696. codep++;
  3697. used_prefixes |= (prefixes & PREFIX_DATA);
  3698. if (prefixes & PREFIX_DATA)
  3699. snprintf (scratchbuf, sizeof(scratchbuf), "%%xmm%d", rm + add);
  3700. else
  3701. snprintf (scratchbuf, sizeof(scratchbuf), "%%mm%d", rm + add);
  3702. oappend (scratchbuf + intel_syntax);
  3703. }
  3704. static void
  3705. OP_EX (bytemode, sizeflag)
  3706. int bytemode;
  3707. int sizeflag;
  3708. {
  3709. int add = 0;
  3710. if (mod != 3)
  3711. {
  3712. OP_E (bytemode, sizeflag);
  3713. return;
  3714. }
  3715. USED_REX (REX_EXTZ);
  3716. if (rex & REX_EXTZ)
  3717. add = 8;
  3718. /* Skip mod/rm byte. */
  3719. MODRM_CHECK;
  3720. codep++;
  3721. snprintf (scratchbuf, sizeof(scratchbuf), "%%xmm%d", rm + add);
  3722. oappend (scratchbuf + intel_syntax);
  3723. }
  3724. static void
  3725. OP_MS (bytemode, sizeflag)
  3726. int bytemode;
  3727. int sizeflag;
  3728. {
  3729. if (mod == 3)
  3730. OP_EM (bytemode, sizeflag);
  3731. else
  3732. BadOp ();
  3733. }
  3734. static void
  3735. OP_XS (bytemode, sizeflag)
  3736. int bytemode;
  3737. int sizeflag;
  3738. {
  3739. if (mod == 3)
  3740. OP_EX (bytemode, sizeflag);
  3741. else
  3742. BadOp ();
  3743. }
  3744. static const char *Suffix3DNow[] = {
  3745. /* 00 */ NULL, NULL, NULL, NULL,
  3746. /* 04 */ NULL, NULL, NULL, NULL,
  3747. /* 08 */ NULL, NULL, NULL, NULL,
  3748. /* 0C */ "pi2fw", "pi2fd", NULL, NULL,
  3749. /* 10 */ NULL, NULL, NULL, NULL,
  3750. /* 14 */ NULL, NULL, NULL, NULL,
  3751. /* 18 */ NULL, NULL, NULL, NULL,
  3752. /* 1C */ "pf2iw", "pf2id", NULL, NULL,
  3753. /* 20 */ NULL, NULL, NULL, NULL,
  3754. /* 24 */ NULL, NULL, NULL, NULL,
  3755. /* 28 */ NULL, NULL, NULL, NULL,
  3756. /* 2C */ NULL, NULL, NULL, NULL,
  3757. /* 30 */ NULL, NULL, NULL, NULL,
  3758. /* 34 */ NULL, NULL, NULL, NULL,
  3759. /* 38 */ NULL, NULL, NULL, NULL,
  3760. /* 3C */ NULL, NULL, NULL, NULL,
  3761. /* 40 */ NULL, NULL, NULL, NULL,
  3762. /* 44 */ NULL, NULL, NULL, NULL,
  3763. /* 48 */ NULL, NULL, NULL, NULL,
  3764. /* 4C */ NULL, NULL, NULL, NULL,
  3765. /* 50 */ NULL, NULL, NULL, NULL,
  3766. /* 54 */ NULL, NULL, NULL, NULL,
  3767. /* 58 */ NULL, NULL, NULL, NULL,
  3768. /* 5C */ NULL, NULL, NULL, NULL,
  3769. /* 60 */ NULL, NULL, NULL, NULL,
  3770. /* 64 */ NULL, NULL, NULL, NULL,
  3771. /* 68 */ NULL, NULL, NULL, NULL,
  3772. /* 6C */ NULL, NULL, NULL, NULL,
  3773. /* 70 */ NULL, NULL, NULL, NULL,
  3774. /* 74 */ NULL, NULL, NULL, NULL,
  3775. /* 78 */ NULL, NULL, NULL, NULL,
  3776. /* 7C */ NULL, NULL, NULL, NULL,
  3777. /* 80 */ NULL, NULL, NULL, NULL,
  3778. /* 84 */ NULL, NULL, NULL, NULL,
  3779. /* 88 */ NULL, NULL, "pfnacc", NULL,
  3780. /* 8C */ NULL, NULL, "pfpnacc", NULL,
  3781. /* 90 */ "pfcmpge", NULL, NULL, NULL,
  3782. /* 94 */ "pfmin", NULL, "pfrcp", "pfrsqrt",
  3783. /* 98 */ NULL, NULL, "pfsub", NULL,
  3784. /* 9C */ NULL, NULL, "pfadd", NULL,
  3785. /* A0 */ "pfcmpgt", NULL, NULL, NULL,
  3786. /* A4 */ "pfmax", NULL, "pfrcpit1", "pfrsqit1",
  3787. /* A8 */ NULL, NULL, "pfsubr", NULL,
  3788. /* AC */ NULL, NULL, "pfacc", NULL,
  3789. /* B0 */ "pfcmpeq", NULL, NULL, NULL,
  3790. /* B4 */ "pfmul", NULL, "pfrcpit2", "pfmulhrw",
  3791. /* B8 */ NULL, NULL, NULL, "pswapd",
  3792. /* BC */ NULL, NULL, NULL, "pavgusb",
  3793. /* C0 */ NULL, NULL, NULL, NULL,
  3794. /* C4 */ NULL, NULL, NULL, NULL,
  3795. /* C8 */ NULL, NULL, NULL, NULL,
  3796. /* CC */ NULL, NULL, NULL, NULL,
  3797. /* D0 */ NULL, NULL, NULL, NULL,
  3798. /* D4 */ NULL, NULL, NULL, NULL,
  3799. /* D8 */ NULL, NULL, NULL, NULL,
  3800. /* DC */ NULL, NULL, NULL, NULL,
  3801. /* E0 */ NULL, NULL, NULL, NULL,
  3802. /* E4 */ NULL, NULL, NULL, NULL,
  3803. /* E8 */ NULL, NULL, NULL, NULL,
  3804. /* EC */ NULL, NULL, NULL, NULL,
  3805. /* F0 */ NULL, NULL, NULL, NULL,
  3806. /* F4 */ NULL, NULL, NULL, NULL,
  3807. /* F8 */ NULL, NULL, NULL, NULL,
  3808. /* FC */ NULL, NULL, NULL, NULL,
  3809. };
  3810. static void
  3811. OP_3DNowSuffix (bytemode, sizeflag)
  3812. int bytemode;
  3813. int sizeflag;
  3814. {
  3815. const char *mnemonic;
  3816. FETCH_DATA (the_info, codep + 1);
  3817. /* AMD 3DNow! instructions are specified by an opcode suffix in the
  3818. place where an 8-bit immediate would normally go. ie. the last
  3819. byte of the instruction. */
  3820. obufp = obuf + strlen (obuf);
  3821. mnemonic = Suffix3DNow[*codep++ & 0xff];
  3822. if (mnemonic)
  3823. oappend (mnemonic);
  3824. else
  3825. {
  3826. /* Since a variable sized modrm/sib chunk is between the start
  3827. of the opcode (0x0f0f) and the opcode suffix, we need to do
  3828. all the modrm processing first, and don't know until now that
  3829. we have a bad opcode. This necessitates some cleaning up. */
  3830. op1out[0] = '\0';
  3831. op2out[0] = '\0';
  3832. BadOp ();
  3833. }
  3834. }
  3835. static const char *simd_cmp_op[] = {
  3836. "eq",
  3837. "lt",
  3838. "le",
  3839. "unord",
  3840. "neq",
  3841. "nlt",
  3842. "nle",
  3843. "ord"
  3844. };
  3845. static void
  3846. OP_SIMD_Suffix (bytemode, sizeflag)
  3847. int bytemode;
  3848. int sizeflag;
  3849. {
  3850. unsigned int cmp_type;
  3851. FETCH_DATA (the_info, codep + 1);
  3852. obufp = obuf + strlen (obuf);
  3853. cmp_type = *codep++ & 0xff;
  3854. if (cmp_type < 8)
  3855. {
  3856. char suffix1 = 'p', suffix2 = 's';
  3857. used_prefixes |= (prefixes & PREFIX_REPZ);
  3858. if (prefixes & PREFIX_REPZ)
  3859. suffix1 = 's';
  3860. else
  3861. {
  3862. used_prefixes |= (prefixes & PREFIX_DATA);
  3863. if (prefixes & PREFIX_DATA)
  3864. suffix2 = 'd';
  3865. else
  3866. {
  3867. used_prefixes |= (prefixes & PREFIX_REPNZ);
  3868. if (prefixes & PREFIX_REPNZ)
  3869. suffix1 = 's', suffix2 = 'd';
  3870. }
  3871. }
  3872. snprintf (scratchbuf, sizeof(scratchbuf), "cmp%s%c%c",
  3873. simd_cmp_op[cmp_type], suffix1, suffix2);
  3874. used_prefixes |= (prefixes & PREFIX_REPZ);
  3875. oappend (scratchbuf);
  3876. }
  3877. else
  3878. {
  3879. /* We have a bad extension byte. Clean up. */
  3880. op1out[0] = '\0';
  3881. op2out[0] = '\0';
  3882. BadOp ();
  3883. }
  3884. }
  3885. static void
  3886. SIMD_Fixup (extrachar, sizeflag)
  3887. int extrachar;
  3888. int sizeflag;
  3889. {
  3890. /* Change movlps/movhps to movhlps/movlhps for 2 register operand
  3891. forms of these instructions. */
  3892. if (mod == 3)
  3893. {
  3894. char *p = obuf + strlen (obuf);
  3895. *(p + 1) = '\0';
  3896. *p = *(p - 1);
  3897. *(p - 1) = *(p - 2);
  3898. *(p - 2) = *(p - 3);
  3899. *(p - 3) = extrachar;
  3900. }
  3901. }
  3902. static void
  3903. BadOp (void)
  3904. {
  3905. /* Throw away prefixes and 1st. opcode byte. */
  3906. codep = insn_codep + 1;
  3907. oappend ("(bad)");
  3908. }