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H. Peter Anvinea6e34d2002-04-30 20:51:32 +00001/* disasm.c where all the _work_ gets done in the Netwide Disassembler
2 *
3 * The Netwide Assembler is copyright (C) 1996 Simon Tatham and
4 * Julian Hall. All rights reserved. The software is
5 * redistributable under the licence given in the file "Licence"
6 * distributed in the NASM archive.
7 *
8 * initial version 27/iii/95 by Simon Tatham
9 */
10
11#include <stdio.h>
12#include <string.h>
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +000013#include <limits.h>
Keith Kaniosb7a89542007-04-12 02:40:54 +000014#include <inttypes.h>
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000015
16#include "nasm.h"
17#include "disasm.h"
18#include "sync.h"
19#include "insns.h"
20
21#include "names.c"
22
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000023/*
24 * Flags that go into the `segment' field of `insn' structures
25 * during disassembly.
26 */
H. Peter Anvin0ee01422007-04-16 01:18:30 +000027#define SEG_RELATIVE 1
28#define SEG_32BIT 2
29#define SEG_RMREG 4
30#define SEG_DISP8 8
31#define SEG_DISP16 16
32#define SEG_DISP32 32
33#define SEG_NODISP 64
34#define SEG_SIGNED 128
35#define SEG_64BIT 256
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000036
H. Peter Anvin232badb2002-06-06 02:41:20 +000037#include "regdis.c"
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000038
H. Peter Anvin62cb6062007-09-11 22:44:03 +000039/*
40 * Prefix information
41 */
42struct prefix_info {
43 uint8_t osize; /* Operand size */
44 uint8_t asize; /* Address size */
45 uint8_t osp; /* Operand size prefix present */
46 uint8_t asp; /* Address size prefix present */
47 uint8_t rep; /* Rep prefix present */
48 uint8_t seg; /* Segment override prefix present */
49 uint8_t lock; /* Lock prefix present */
50 uint8_t rex; /* Rex prefix present */
51};
52
H. Peter Anvin0ee01422007-04-16 01:18:30 +000053#define getu8(x) (*(uint8_t *)(x))
54#if defined(__i386__) || defined(__x86_64__)
55/* Littleendian CPU which can handle unaligned references */
56#define getu16(x) (*(uint16_t *)(x))
57#define getu32(x) (*(uint32_t *)(x))
58#define getu64(x) (*(uint64_t *)(x))
59#else
60static uint16_t getu16(uint8_t *data)
61{
62 return (uint16_t)data[0] + ((uint16_t)data[1] << 8);
63}
64static uint32_t getu32(uint8_t *data)
65{
66 return (uint32_t)getu16(data) + ((uint32_t)getu16(data+2) << 16);
67}
68static uint64_t getu64(uint8_t *data)
69{
70 return (uint64_t)getu32(data) + ((uint64_t)getu32(data+4) << 32);
71}
72#endif
73
74#define gets8(x) ((int8_t)getu8(x))
75#define gets16(x) ((int16_t)getu16(x))
76#define gets32(x) ((int32_t)getu32(x))
77#define gets64(x) ((int64_t)getu64(x))
78
79/* Important: regval must already have been adjusted for rex extensions */
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +000080static enum reg_enum whichreg(int32_t regflags, int regval, int rex)
H. Peter Anvin0ee01422007-04-16 01:18:30 +000081{
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000082 if (!(REG_AL & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000083 return R_AL;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000084 if (!(REG_AX & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000085 return R_AX;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000086 if (!(REG_EAX & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000087 return R_EAX;
H. Peter Anvin7cf03af2007-04-16 02:39:56 +000088 if (!(REG_RAX & ~regflags))
89 return R_RAX;
H. Peter Anvin10101f22003-02-24 23:22:45 +000090 if (!(REG_DL & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000091 return R_DL;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000092 if (!(REG_DX & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000093 return R_DX;
H. Peter Anvin10101f22003-02-24 23:22:45 +000094 if (!(REG_EDX & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000095 return R_EDX;
H. Peter Anvin7cf03af2007-04-16 02:39:56 +000096 if (!(REG_RDX & ~regflags))
97 return R_RDX;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +000098 if (!(REG_CL & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +000099 return R_CL;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000100 if (!(REG_CX & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +0000101 return R_CX;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000102 if (!(REG_ECX & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +0000103 return R_ECX;
H. Peter Anvin7cf03af2007-04-16 02:39:56 +0000104 if (!(REG_RCX & ~regflags))
105 return R_RCX;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000106 if (!(FPU0 & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +0000107 return R_ST0;
H. Peter Anvind7ed89e2002-04-30 20:52:08 +0000108 if (!(REG_CS & ~regflags))
H. Peter Anvin232badb2002-06-06 02:41:20 +0000109 return (regval == 1) ? R_CS : 0;
H. Peter Anvin76690a12002-04-30 20:52:49 +0000110 if (!(REG_DESS & ~regflags))
H. Peter Anvine2c80182005-01-15 22:15:51 +0000111 return (regval == 0 || regval == 2
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000112 || regval == 3 ? rd_sreg[regval] : 0);
H. Peter Anvin76690a12002-04-30 20:52:49 +0000113 if (!(REG_FSGS & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000114 return (regval == 4 || regval == 5 ? rd_sreg[regval] : 0);
H. Peter Anvin232badb2002-06-06 02:41:20 +0000115 if (!(REG_SEG67 & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000116 return (regval == 6 || regval == 7 ? rd_sreg[regval] : 0);
H. Peter Anvin232badb2002-06-06 02:41:20 +0000117
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000118 /* All the entries below look up regval in an 16-entry array */
119 if (regval < 0 || regval > 15)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000120 return 0;
H. Peter Anvin232badb2002-06-06 02:41:20 +0000121
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000122 if (!((REGMEM | BITS8) & ~regflags)) {
123 if (rex & REX_P)
124 return rd_reg8_rex[regval];
125 else
126 return rd_reg8[regval];
127 }
H. Peter Anvine2c80182005-01-15 22:15:51 +0000128 if (!((REGMEM | BITS16) & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000129 return rd_reg16[regval];
H. Peter Anvine2c80182005-01-15 22:15:51 +0000130 if (!((REGMEM | BITS32) & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000131 return rd_reg32[regval];
H. Peter Anvinb061d592007-04-16 02:02:06 +0000132 if (!((REGMEM | BITS64) & ~regflags))
133 return rd_reg64[regval];
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000134 if (!(REG_SREG & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000135 return rd_sreg[regval & 7]; /* Ignore REX */
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000136 if (!(REG_CREG & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000137 return rd_creg[regval];
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000138 if (!(REG_DREG & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000139 return rd_dreg[regval];
140 if (!(REG_TREG & ~regflags)) {
141 if (rex & REX_P)
142 return 0; /* TR registers are ill-defined with rex */
143 return rd_treg[regval];
144 }
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000145 if (!(FPUREG & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000146 return rd_fpureg[regval & 7]; /* Ignore REX */
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000147 if (!(MMXREG & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000148 return rd_mmxreg[regval & 7]; /* Ignore REX */
H. Peter Anvin4836e332002-04-30 20:56:43 +0000149 if (!(XMMREG & ~regflags))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000150 return rd_xmmreg[regval];
H. Peter Anvin232badb2002-06-06 02:41:20 +0000151
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000152 return 0;
153}
154
Keith Kaniosa6dfa782007-04-13 16:47:53 +0000155static const char *whichcond(int condval)
H. Peter Anvineba20a72002-04-30 20:53:55 +0000156{
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000157 static int conds[] = {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000158 C_O, C_NO, C_C, C_NC, C_Z, C_NZ, C_NA, C_A,
159 C_S, C_NS, C_PE, C_PO, C_L, C_NL, C_NG, C_G
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000160 };
161 return conditions[conds[condval]];
162}
163
164/*
165 * Process an effective address (ModRM) specification.
166 */
Keith Kaniosb7a89542007-04-12 02:40:54 +0000167static uint8_t *do_ea(uint8_t *data, int modrm, int asize,
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000168 int segsize, operand * op, int rex)
H. Peter Anvineba20a72002-04-30 20:53:55 +0000169{
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000170 int mod, rm, scale, index, base;
171
172 mod = (modrm >> 6) & 03;
173 rm = modrm & 07;
174
H. Peter Anvine2c80182005-01-15 22:15:51 +0000175 if (mod == 3) { /* pure register version */
H. Peter Anvin7cf03af2007-04-16 02:39:56 +0000176 op->basereg = rm+(rex & REX_B ? 8 : 0);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000177 op->segment |= SEG_RMREG;
178 return data;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000179 }
180
181 op->addr_size = 0;
H. Peter Anvin99c4ecd2007-08-28 23:06:00 +0000182 op->eaflags = 0;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000183
184 if (asize == 16) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000185 /*
186 * <mod> specifies the displacement size (none, byte or
187 * word), and <rm> specifies the register combination.
188 * Exception: mod=0,rm=6 does not specify [BP] as one might
189 * expect, but instead specifies [disp16].
190 */
191 op->indexreg = op->basereg = -1;
192 op->scale = 1; /* always, in 16 bits */
193 switch (rm) {
194 case 0:
195 op->basereg = R_BX;
196 op->indexreg = R_SI;
197 break;
198 case 1:
199 op->basereg = R_BX;
200 op->indexreg = R_DI;
201 break;
202 case 2:
203 op->basereg = R_BP;
204 op->indexreg = R_SI;
205 break;
206 case 3:
207 op->basereg = R_BP;
208 op->indexreg = R_DI;
209 break;
210 case 4:
211 op->basereg = R_SI;
212 break;
213 case 5:
214 op->basereg = R_DI;
215 break;
216 case 6:
217 op->basereg = R_BP;
218 break;
219 case 7:
220 op->basereg = R_BX;
221 break;
222 }
223 if (rm == 6 && mod == 0) { /* special case */
224 op->basereg = -1;
225 if (segsize != 16)
226 op->addr_size = 16;
227 mod = 2; /* fake disp16 */
228 }
229 switch (mod) {
230 case 0:
231 op->segment |= SEG_NODISP;
232 break;
233 case 1:
234 op->segment |= SEG_DISP8;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000235 op->offset = (int8_t)*data++;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000236 break;
237 case 2:
238 op->segment |= SEG_DISP16;
239 op->offset = *data++;
240 op->offset |= ((unsigned)*data++) << 8;
241 break;
242 }
243 return data;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000244 } else {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000245 /*
246 * Once again, <mod> specifies displacement size (this time
247 * none, byte or *dword*), while <rm> specifies the base
248 * register. Again, [EBP] is missing, replaced by a pure
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000249 * disp32 (this time that's mod=0,rm=*5*) in 32-bit mode,
250 * and RIP-relative addressing in 64-bit mode.
251 *
252 * However, rm=4
H. Peter Anvine2c80182005-01-15 22:15:51 +0000253 * indicates not a single base register, but instead the
254 * presence of a SIB byte...
255 */
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000256 int a64 = asize == 64;
257
H. Peter Anvine2c80182005-01-15 22:15:51 +0000258 op->indexreg = -1;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000259
260 if (a64)
261 op->basereg = rd_reg64[rm | ((rex & REX_B) ? 8 : 0)];
262 else
263 op->basereg = rd_reg32[rm | ((rex & REX_B) ? 8 : 0)];
264
H. Peter Anvine2c80182005-01-15 22:15:51 +0000265 if (rm == 5 && mod == 0) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000266 if (segsize == 64) {
H. Peter Anvin99c4ecd2007-08-28 23:06:00 +0000267 op->eaflags |= EAF_REL;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000268 op->segment |= SEG_RELATIVE;
269 mod = 2; /* fake disp32 */
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000270 }
H. Peter Anvin99c4ecd2007-08-28 23:06:00 +0000271
272 if (asize != 64)
273 op->addr_size = asize;
274
275 op->basereg = -1;
276 mod = 2; /* fake disp32 */
H. Peter Anvine2c80182005-01-15 22:15:51 +0000277 }
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000278
H. Peter Anvine2c80182005-01-15 22:15:51 +0000279 if (rm == 4) { /* process SIB */
280 scale = (*data >> 6) & 03;
281 index = (*data >> 3) & 07;
282 base = *data & 07;
283 data++;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000284
H. Peter Anvine2c80182005-01-15 22:15:51 +0000285 op->scale = 1 << scale;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000286
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000287 if (index == 4)
288 op->indexreg = -1; /* ESP/RSP/R12 cannot be an index */
289 else if (a64)
290 op->indexreg = rd_reg64[index | ((rex & REX_X) ? 8 : 0)];
291 else
292 op->indexreg = rd_reg64[index | ((rex & REX_X) ? 8 : 0)];
293
294 if (base == 5 && mod == 0) {
295 op->basereg = -1;
296 mod = 2; /* Fake disp32 */
297 } else if (a64)
298 op->basereg = rd_reg64[base | ((rex & REX_B) ? 8 : 0)];
299 else
300 op->basereg = rd_reg32[base | ((rex & REX_B) ? 8 : 0)];
H. Peter Anvin99c4ecd2007-08-28 23:06:00 +0000301
302 if (segsize != 32)
303 op->addr_size = 32;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000304 }
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000305
H. Peter Anvine2c80182005-01-15 22:15:51 +0000306 switch (mod) {
307 case 0:
308 op->segment |= SEG_NODISP;
309 break;
310 case 1:
311 op->segment |= SEG_DISP8;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000312 op->offset = gets8(data);
313 data++;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000314 break;
315 case 2:
316 op->segment |= SEG_DISP32;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000317 op->offset = getu32(data);
318 data += 4;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000319 break;
320 }
321 return data;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000322 }
323}
324
325/*
H. Peter Anvinef7468f2002-04-30 20:57:59 +0000326 * Determine whether the instruction template in t corresponds to the data
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000327 * stream in data. Return the number of bytes matched if so.
328 */
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000329static int matches(const struct itemplate *t, uint8_t *data,
330 const struct prefix_info *prefix, int segsize, insn *ins)
H. Peter Anvineba20a72002-04-30 20:53:55 +0000331{
Keith Kaniosb7a89542007-04-12 02:40:54 +0000332 uint8_t *r = (uint8_t *)(t->code);
333 uint8_t *origdata = data;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000334 int a_used = FALSE, o_used = FALSE;
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000335 enum prefixes drep = 0;
336 uint8_t lock = prefix->lock;
337 int osize = prefix->osize;
338 int asize = prefix->asize;
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000339
340 ins->oprs[0].segment = ins->oprs[1].segment =
341 ins->oprs[2].segment =
342 ins->oprs[0].addr_size = ins->oprs[1].addr_size =
343 ins->oprs[2].addr_size = (segsize == 64 ? SEG_64BIT :
344 segsize == 32 ? SEG_32BIT : 0);
345 ins->condition = -1;
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000346 ins->rex = prefix->rex;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000347
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000348 if (t->flags & (segsize == 64 ? IF_NOLONG : IF_LONG))
349 return FALSE;
H. Peter Anvinef7468f2002-04-30 20:57:59 +0000350
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000351 if (prefix->rep == 0xF2)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000352 drep = P_REPNE;
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000353 else if (prefix->rep == 0xF3)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000354 drep = P_REP;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000355
H. Peter Anvine2c80182005-01-15 22:15:51 +0000356 while (*r) {
357 int c = *r++;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000358
359 /* FIX: change this into a switch */
360 if (c >= 01 && c <= 03) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000361 while (c--)
362 if (*r++ != *data++)
363 return FALSE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000364 } else if (c == 04) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000365 switch (*data++) {
366 case 0x07:
367 ins->oprs[0].basereg = 0;
368 break;
369 case 0x17:
370 ins->oprs[0].basereg = 2;
371 break;
372 case 0x1F:
373 ins->oprs[0].basereg = 3;
374 break;
375 default:
376 return FALSE;
377 }
H. Peter Anvinb061d592007-04-16 02:02:06 +0000378 } else if (c == 05) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000379 switch (*data++) {
380 case 0xA1:
381 ins->oprs[0].basereg = 4;
382 break;
383 case 0xA9:
384 ins->oprs[0].basereg = 5;
385 break;
386 default:
387 return FALSE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000388 }
389 } else if (c == 06) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000390 switch (*data++) {
391 case 0x06:
392 ins->oprs[0].basereg = 0;
393 break;
394 case 0x0E:
395 ins->oprs[0].basereg = 1;
396 break;
397 case 0x16:
398 ins->oprs[0].basereg = 2;
399 break;
400 case 0x1E:
401 ins->oprs[0].basereg = 3;
402 break;
403 default:
404 return FALSE;
405 }
H. Peter Anvinb061d592007-04-16 02:02:06 +0000406 } else if (c == 07) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000407 switch (*data++) {
408 case 0xA0:
409 ins->oprs[0].basereg = 4;
410 break;
411 case 0xA8:
412 ins->oprs[0].basereg = 5;
413 break;
414 default:
415 return FALSE;
416 }
H. Peter Anvinb061d592007-04-16 02:02:06 +0000417 } else if (c >= 010 && c <= 012) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000418 int t = *r++, d = *data++;
419 if (d < t || d > t + 7)
420 return FALSE;
421 else {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000422 ins->oprs[c - 010].basereg = (d-t)+
423 (ins->rex & REX_B ? 8 : 0);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000424 ins->oprs[c - 010].segment |= SEG_RMREG;
425 }
H. Peter Anvinb061d592007-04-16 02:02:06 +0000426 } else if (c == 017) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000427 if (*data++)
428 return FALSE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000429 } else if (c >= 014 && c <= 016) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000430 ins->oprs[c - 014].offset = (int8_t)*data++;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000431 ins->oprs[c - 014].segment |= SEG_SIGNED;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000432 } else if (c >= 020 && c <= 022) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000433 ins->oprs[c - 020].offset = *data++;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000434 } else if (c >= 024 && c <= 026) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000435 ins->oprs[c - 024].offset = *data++;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000436 } else if (c >= 030 && c <= 032) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000437 ins->oprs[c - 030].offset = getu16(data);
438 data += 2;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000439 } else if (c >= 034 && c <= 036) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000440 if (osize == 32) {
441 ins->oprs[c - 034].offset = getu32(data);
442 data += 4;
443 } else {
444 ins->oprs[c - 034].offset = getu16(data);
445 data += 2;
446 }
H. Peter Anvine2c80182005-01-15 22:15:51 +0000447 if (segsize != asize)
448 ins->oprs[c - 034].addr_size = asize;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000449 } else if (c >= 040 && c <= 042) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000450 ins->oprs[c - 040].offset = getu32(data);
451 data += 4;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000452 } else if (c >= 044 && c <= 046) {
453 switch (asize) {
454 case 16:
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000455 ins->oprs[c - 044].offset = getu16(data);
456 data += 2;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000457 break;
458 case 32:
459 ins->oprs[c - 044].offset = getu32(data);
460 data += 4;
461 break;
462 case 64:
463 ins->oprs[c - 044].offset = getu64(data);
464 data += 8;
465 break;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000466 }
H. Peter Anvine2c80182005-01-15 22:15:51 +0000467 if (segsize != asize)
468 ins->oprs[c - 044].addr_size = asize;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000469 } else if (c >= 050 && c <= 052) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000470 ins->oprs[c - 050].offset = gets8(data++);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000471 ins->oprs[c - 050].segment |= SEG_RELATIVE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000472 } else if (c >= 054 && c <= 056) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000473 ins->oprs[c - 054].offset = getu64(data);
474 data += 8;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000475 } else if (c >= 060 && c <= 062) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000476 ins->oprs[c - 060].offset = gets16(data);
477 data += 2;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000478 ins->oprs[c - 060].segment |= SEG_RELATIVE;
479 ins->oprs[c - 060].segment &= ~SEG_32BIT;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000480 } else if (c >= 064 && c <= 066) {
H. Peter Anvin7cf03af2007-04-16 02:39:56 +0000481 if (osize == 16) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000482 ins->oprs[c - 064].offset = getu16(data);
483 data += 2;
H. Peter Anvin7cf03af2007-04-16 02:39:56 +0000484 ins->oprs[c - 064].segment &= ~(SEG_32BIT|SEG_64BIT);
485 } else if (osize == 32) {
486 ins->oprs[c - 064].offset = getu32(data);
487 data += 4;
488 ins->oprs[c - 064].segment &= ~SEG_64BIT;
489 ins->oprs[c - 064].segment |= SEG_32BIT;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000490 }
H. Peter Anvine2c80182005-01-15 22:15:51 +0000491 if (segsize != osize) {
492 ins->oprs[c - 064].type =
H. Peter Anvin5a640e12007-05-29 23:57:12 +0000493 (ins->oprs[c - 064].type & ~SIZE_MASK)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000494 | ((osize == 16) ? BITS16 : BITS32);
495 }
H. Peter Anvinb061d592007-04-16 02:02:06 +0000496 } else if (c >= 070 && c <= 072) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000497 ins->oprs[c - 070].offset = getu32(data);
498 data += 4;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000499 ins->oprs[c - 070].segment |= SEG_32BIT | SEG_RELATIVE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000500 } else if (c >= 0100 && c < 0130) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000501 int modrm = *data++;
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000502 ins->oprs[c & 07].basereg = ((modrm >> 3)&7)+
503 (ins->rex & REX_R ? 8 : 0);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000504 ins->oprs[c & 07].segment |= SEG_RMREG;
505 data = do_ea(data, modrm, asize, segsize,
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000506 &ins->oprs[(c >> 3) & 07], ins->rex);
H. Peter Anvinb061d592007-04-16 02:02:06 +0000507 } else if (c >= 0130 && c <= 0132) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000508 ins->oprs[c - 0130].offset = getu16(data);
509 data += 2;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000510 } else if (c >= 0140 && c <= 0142) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000511 ins->oprs[c - 0140].offset = getu32(data);
512 data += 4;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000513 } else if (c >= 0200 && c <= 0277) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000514 int modrm = *data++;
515 if (((modrm >> 3) & 07) != (c & 07))
516 return FALSE; /* spare field doesn't match up */
517 data = do_ea(data, modrm, asize, segsize,
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000518 &ins->oprs[(c >> 3) & 07], ins->rex);
H. Peter Anvinb061d592007-04-16 02:02:06 +0000519 } else if (c >= 0300 && c <= 0302) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000520 a_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000521 } else if (c == 0310) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000522 if (asize != 16)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000523 return FALSE;
524 else
525 a_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000526 } else if (c == 0311) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000527 if (asize == 16)
528 return FALSE;
529 else
530 a_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000531 } else if (c == 0312) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000532 if (asize != segsize)
533 return FALSE;
534 else
535 a_used = TRUE;
H. Peter Anvince2b3972007-05-30 22:21:11 +0000536 } else if (c == 0313) {
537 if (asize != 64)
538 return FALSE;
539 else
540 a_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000541 } else if (c == 0320) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000542 if (osize != 16)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000543 return FALSE;
544 else
545 o_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000546 } else if (c == 0321) {
547 if (osize != 32)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000548 return FALSE;
549 else
550 o_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000551 } else if (c == 0322) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000552 if (osize != (segsize == 16) ? 16 : 32)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000553 return FALSE;
554 else
555 o_used = TRUE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000556 } else if (c == 0323) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000557 ins->rex |= REX_W; /* 64-bit only instruction */
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000558 osize = 64;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000559 } else if (c == 0324) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000560 if (!(ins->rex & (REX_P|REX_W)) || osize != 64)
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000561 return FALSE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000562 } else if (c == 0330) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000563 int t = *r++, d = *data++;
564 if (d < t || d > t + 15)
565 return FALSE;
566 else
567 ins->condition = d - t;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000568 } else if (c == 0331) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000569 if (prefix->rep)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000570 return FALSE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000571 } else if (c == 0332) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000572 if (drep == P_REP)
573 drep = P_REPE;
H. Peter Anvinb061d592007-04-16 02:02:06 +0000574 } else if (c == 0333) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000575 if (prefix->rep != 0xF3)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000576 return FALSE;
577 drep = 0;
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000578 } else if (c == 0334) {
579 if (lock) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000580 ins->rex |= REX_R;
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000581 lock = 0;
582 }
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000583 } else if (c == 0364) {
584 if (prefix->osp)
585 return FALSE;
586 } else if (c == 0365) {
587 if (prefix->asp)
588 return FALSE;
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000589 } else if (c == 0366) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000590 if (!prefix->osp)
591 return FALSE;
592 o_used = TRUE;
593 } else if (c == 0367) {
594 if (!prefix->asp)
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000595 return FALSE;
596 o_used = TRUE;
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000597 }
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000598 }
599
600 /*
H. Peter Anvinef7468f2002-04-30 20:57:59 +0000601 * Check for unused rep or a/o prefixes.
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000602 */
603 ins->nprefix = 0;
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000604 if (lock)
605 ins->prefixes[ins->nprefix++] = P_LOCK;
H. Peter Anvinef7468f2002-04-30 20:57:59 +0000606 if (drep)
607 ins->prefixes[ins->nprefix++] = drep;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000608 if (!a_used && asize != segsize)
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000609 ins->prefixes[ins->nprefix++] = asize == 16 ? P_A16 : P_A32;
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000610 if (!o_used && osize == ((segsize == 16) ? 32 : 16))
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000611 ins->prefixes[ins->nprefix++] = osize == 16 ? P_O16 : P_O32;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000612
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000613 /* Fix: check for redundant REX prefixes */
614
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000615 return data - origdata;
616}
617
Keith Kaniosa6dfa782007-04-13 16:47:53 +0000618int32_t disasm(uint8_t *data, char *output, int outbufsize, int segsize,
Keith Kaniosb7a89542007-04-12 02:40:54 +0000619 int32_t offset, int autosync, uint32_t prefer)
H. Peter Anvineba20a72002-04-30 20:53:55 +0000620{
H. Peter Anvin3360d792007-09-11 04:16:57 +0000621 const struct itemplate * const *p, * const *best_p;
H. Peter Anvin4836e332002-04-30 20:56:43 +0000622 int length, best_length = 0;
Keith Kaniosa6dfa782007-04-13 16:47:53 +0000623 char *segover;
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000624 int i, slen, colon;
Keith Kaniosb7a89542007-04-12 02:40:54 +0000625 uint8_t *origdata;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000626 int works;
H. Peter Anvinef7468f2002-04-30 20:57:59 +0000627 insn tmp_ins, ins;
Keith Kaniosb7a89542007-04-12 02:40:54 +0000628 uint32_t goodness, best;
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000629 int best_pref;
630 struct prefix_info prefix;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000631
H. Peter Anvinbfb888c2007-09-11 04:26:44 +0000632 memset(&ins, 0, sizeof ins);
633
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000634 /*
635 * Scan for prefixes.
636 */
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000637 memset(&prefix, 0, sizeof prefix);
638 prefix.asize = segsize;
639 prefix.osize = (segsize == 64) ? 32 : segsize;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000640 segover = NULL;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000641 origdata = data;
642 for (;;) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000643 if (*data == 0xF3 || *data == 0xF2)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000644 prefix.rep = *data++;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000645 else if (*data == 0xF0)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000646 prefix.lock = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000647 else if (*data == 0x2E)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000648 segover = "cs", prefix.seg = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000649 else if (*data == 0x36)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000650 segover = "ss", prefix.seg = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000651 else if (*data == 0x3E)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000652 segover = "ds", prefix.seg = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000653 else if (*data == 0x26)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000654 segover = "es", prefix.seg = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000655 else if (*data == 0x64)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000656 segover = "fs", prefix.seg = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000657 else if (*data == 0x65)
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000658 segover = "gs", prefix.seg = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000659 else if (*data == 0x66) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000660 prefix.osize = (segsize == 16) ? 32 : 16;
661 prefix.osp = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000662 } else if (*data == 0x67) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000663 prefix.asize = (segsize == 32) ? 16 : 32;
664 prefix.asp = *data++;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000665 } else if (segsize == 64 && (*data & 0xf0) == REX_P) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000666 prefix.rex = *data++;
667 if (prefix.rex & REX_W)
668 prefix.osize = 64;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000669 break; /* REX is always the last prefix */
670 } else {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000671 break;
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000672 }
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000673 }
674
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000675 best = -1; /* Worst possible */
H. Peter Anvin4836e332002-04-30 20:56:43 +0000676 best_p = NULL;
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000677 best_pref = INT_MAX;
678
H. Peter Anvin4836e332002-04-30 20:56:43 +0000679 for (p = itable[*data]; *p; p++) {
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000680 if ((length = matches(*p, data, &prefix, segsize, &tmp_ins))) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000681 works = TRUE;
682 /*
683 * Final check to make sure the types of r/m match up.
H. Peter Anvindbf130e2007-05-30 00:18:26 +0000684 * XXX: Need to make sure this is actually correct.
H. Peter Anvine2c80182005-01-15 22:15:51 +0000685 */
686 for (i = 0; i < (*p)->operands; i++) {
687 if (
688 /* If it's a mem-only EA but we have a register, die. */
689 ((tmp_ins.oprs[i].segment & SEG_RMREG) &&
690 !(MEMORY & ~(*p)->opd[i])) ||
691 /* If it's a reg-only EA but we have a memory ref, die. */
692 (!(tmp_ins.oprs[i].segment & SEG_RMREG) &&
H. Peter Anvindbf130e2007-05-30 00:18:26 +0000693 !(REG_EA & ~(*p)->opd[i]) &&
H. Peter Anvine2c80182005-01-15 22:15:51 +0000694 !((*p)->opd[i] & REG_SMASK)) ||
695 /* Register type mismatch (eg FS vs REG_DESS): die. */
696 ((((*p)->opd[i] & (REGISTER | FPUREG)) ||
697 (tmp_ins.oprs[i].segment & SEG_RMREG)) &&
698 !whichreg((*p)->opd[i],
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000699 tmp_ins.oprs[i].basereg, tmp_ins.rex))) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000700 works = FALSE;
701 break;
702 }
703 }
704
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000705 /*
706 * Note: we always prefer instructions which incorporate
707 * prefixes in the instructions themselves. This is to allow
708 * e.g. PAUSE to be preferred to REP NOP, and deal with
709 * MMX/SSE instructions where prefixes are used to select
710 * between MMX and SSE register sets or outright opcode
711 * selection.
712 */
H. Peter Anvine2c80182005-01-15 22:15:51 +0000713 if (works) {
714 goodness = ((*p)->flags & IF_PFMASK) ^ prefer;
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000715 if (tmp_ins.nprefix < best_pref ||
716 (tmp_ins.nprefix == best_pref && goodness < best)) {
H. Peter Anvine2c80182005-01-15 22:15:51 +0000717 /* This is the best one found so far */
718 best = goodness;
719 best_p = p;
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000720 best_pref = tmp_ins.nprefix;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000721 best_length = length;
722 ins = tmp_ins;
723 }
724 }
725 }
H. Peter Anvin4836e332002-04-30 20:56:43 +0000726 }
H. Peter Anvineba20a72002-04-30 20:53:55 +0000727
H. Peter Anvinef7468f2002-04-30 20:57:59 +0000728 if (!best_p)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000729 return 0; /* no instruction was matched */
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000730
H. Peter Anvin4836e332002-04-30 20:56:43 +0000731 /* Pick the best match */
H. Peter Anvine2c80182005-01-15 22:15:51 +0000732 p = best_p;
H. Peter Anvin4836e332002-04-30 20:56:43 +0000733 length = best_length;
734
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000735 slen = 0;
736
Ed Beroset64ab5192004-12-15 23:32:57 +0000737 /* TODO: snprintf returns the value that the string would have if
H. Peter Anvine2c80182005-01-15 22:15:51 +0000738 * the buffer were long enough, and not the actual length of
739 * the returned string, so each instance of using the return
740 * value of snprintf should actually be checked to assure that
741 * the return value is "sane." Maybe a macro wrapper could
742 * be used for that purpose.
743 */
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000744 for (i = 0; i < ins.nprefix; i++)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000745 switch (ins.prefixes[i]) {
H. Peter Anvin0db11e22007-04-17 20:23:11 +0000746 case P_LOCK:
747 slen += snprintf(output + slen, outbufsize - slen, "lock ");
748 break;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000749 case P_REP:
750 slen += snprintf(output + slen, outbufsize - slen, "rep ");
751 break;
752 case P_REPE:
753 slen += snprintf(output + slen, outbufsize - slen, "repe ");
754 break;
755 case P_REPNE:
756 slen += snprintf(output + slen, outbufsize - slen, "repne ");
757 break;
758 case P_A16:
759 slen += snprintf(output + slen, outbufsize - slen, "a16 ");
760 break;
761 case P_A32:
762 slen += snprintf(output + slen, outbufsize - slen, "a32 ");
763 break;
764 case P_O16:
765 slen += snprintf(output + slen, outbufsize - slen, "o16 ");
766 break;
767 case P_O32:
768 slen += snprintf(output + slen, outbufsize - slen, "o32 ");
769 break;
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000770 default:
771 break;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000772 }
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000773
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000774 for (i = 0; i < (int)elements(ico); i++)
H. Peter Anvine2c80182005-01-15 22:15:51 +0000775 if ((*p)->opcode == ico[i]) {
776 slen +=
777 snprintf(output + slen, outbufsize - slen, "%s%s", icn[i],
778 whichcond(ins.condition));
779 break;
780 }
H. Peter Anvin2ba7ed72007-09-11 22:13:17 +0000781 if (i >= (int)elements(ico))
H. Peter Anvine2c80182005-01-15 22:15:51 +0000782 slen +=
783 snprintf(output + slen, outbufsize - slen, "%s",
784 insn_names[(*p)->opcode]);
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000785 colon = FALSE;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000786 length += data - origdata; /* fix up for prefixes */
787 for (i = 0; i < (*p)->operands; i++) {
788 output[slen++] = (colon ? ':' : i == 0 ? ' ' : ',');
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000789
H. Peter Anvine2c80182005-01-15 22:15:51 +0000790 if (ins.oprs[i].segment & SEG_RELATIVE) {
791 ins.oprs[i].offset += offset + length;
792 /*
793 * sort out wraparound
794 */
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000795 if (!(ins.oprs[i].segment & (SEG_32BIT|SEG_64BIT)))
796 ins.oprs[i].offset &= 0xffff;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000797 /*
798 * add sync marker, if autosync is on
799 */
800 if (autosync)
801 add_sync(ins.oprs[i].offset, 0L);
802 }
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000803
H. Peter Anvine2c80182005-01-15 22:15:51 +0000804 if ((*p)->opd[i] & COLON)
805 colon = TRUE;
806 else
807 colon = FALSE;
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000808
H. Peter Anvine2c80182005-01-15 22:15:51 +0000809 if (((*p)->opd[i] & (REGISTER | FPUREG)) ||
810 (ins.oprs[i].segment & SEG_RMREG)) {
811 ins.oprs[i].basereg = whichreg((*p)->opd[i],
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000812 ins.oprs[i].basereg, ins.rex);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000813 if ((*p)->opd[i] & TO)
814 slen += snprintf(output + slen, outbufsize - slen, "to ");
815 slen += snprintf(output + slen, outbufsize - slen, "%s",
816 reg_names[ins.oprs[i].basereg -
817 EXPR_REG_START]);
818 } else if (!(UNITY & ~(*p)->opd[i])) {
819 output[slen++] = '1';
820 } else if ((*p)->opd[i] & IMMEDIATE) {
821 if ((*p)->opd[i] & BITS8) {
822 slen +=
823 snprintf(output + slen, outbufsize - slen, "byte ");
824 if (ins.oprs[i].segment & SEG_SIGNED) {
825 if (ins.oprs[i].offset < 0) {
826 ins.oprs[i].offset *= -1;
827 output[slen++] = '-';
828 } else
829 output[slen++] = '+';
830 }
831 } else if ((*p)->opd[i] & BITS16) {
832 slen +=
833 snprintf(output + slen, outbufsize - slen, "word ");
834 } else if ((*p)->opd[i] & BITS32) {
835 slen +=
836 snprintf(output + slen, outbufsize - slen, "dword ");
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000837 } else if ((*p)->opd[i] & BITS64) {
838 slen +=
839 snprintf(output + slen, outbufsize - slen, "qword ");
H. Peter Anvine2c80182005-01-15 22:15:51 +0000840 } else if ((*p)->opd[i] & NEAR) {
841 slen +=
842 snprintf(output + slen, outbufsize - slen, "near ");
843 } else if ((*p)->opd[i] & SHORT) {
844 slen +=
845 snprintf(output + slen, outbufsize - slen, "short ");
846 }
847 slen +=
Keith Kanios93f2e9a2007-04-14 00:10:59 +0000848 snprintf(output + slen, outbufsize - slen, "0x%"PRIx64"",
H. Peter Anvine2c80182005-01-15 22:15:51 +0000849 ins.oprs[i].offset);
850 } else if (!(MEM_OFFS & ~(*p)->opd[i])) {
851 slen +=
Keith Kanios93f2e9a2007-04-14 00:10:59 +0000852 snprintf(output + slen, outbufsize - slen, "[%s%s%s0x%"PRIx64"]",
H. Peter Anvin62cb6062007-09-11 22:44:03 +0000853 (segover ? segover : ""),
854 (segover ? ":" : ""),
H. Peter Anvine2c80182005-01-15 22:15:51 +0000855 (ins.oprs[i].addr_size ==
856 32 ? "dword " : ins.oprs[i].addr_size ==
857 16 ? "word " : ""), ins.oprs[i].offset);
858 segover = NULL;
859 } else if (!(REGMEM & ~(*p)->opd[i])) {
860 int started = FALSE;
861 if ((*p)->opd[i] & BITS8)
862 slen +=
863 snprintf(output + slen, outbufsize - slen, "byte ");
864 if ((*p)->opd[i] & BITS16)
865 slen +=
866 snprintf(output + slen, outbufsize - slen, "word ");
867 if ((*p)->opd[i] & BITS32)
868 slen +=
869 snprintf(output + slen, outbufsize - slen, "dword ");
870 if ((*p)->opd[i] & BITS64)
871 slen +=
872 snprintf(output + slen, outbufsize - slen, "qword ");
873 if ((*p)->opd[i] & BITS80)
874 slen +=
875 snprintf(output + slen, outbufsize - slen, "tword ");
876 if ((*p)->opd[i] & FAR)
877 slen += snprintf(output + slen, outbufsize - slen, "far ");
878 if ((*p)->opd[i] & NEAR)
879 slen +=
880 snprintf(output + slen, outbufsize - slen, "near ");
881 output[slen++] = '[';
882 if (ins.oprs[i].addr_size)
883 slen += snprintf(output + slen, outbufsize - slen, "%s",
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000884 (ins.oprs[i].addr_size == 64 ? "qword " :
885 ins.oprs[i].addr_size == 32 ? "dword " :
886 ins.oprs[i].addr_size == 16 ? "word " :
887 ""));
H. Peter Anvin99c4ecd2007-08-28 23:06:00 +0000888 if (ins.oprs[i].eaflags & EAF_REL)
889 slen += snprintf(output + slen, outbufsize - slen, "rel ");
H. Peter Anvine2c80182005-01-15 22:15:51 +0000890 if (segover) {
891 slen +=
892 snprintf(output + slen, outbufsize - slen, "%s:",
893 segover);
894 segover = NULL;
895 }
896 if (ins.oprs[i].basereg != -1) {
897 slen += snprintf(output + slen, outbufsize - slen, "%s",
898 reg_names[(ins.oprs[i].basereg -
899 EXPR_REG_START)]);
900 started = TRUE;
901 }
902 if (ins.oprs[i].indexreg != -1) {
903 if (started)
904 output[slen++] = '+';
905 slen += snprintf(output + slen, outbufsize - slen, "%s",
906 reg_names[(ins.oprs[i].indexreg -
907 EXPR_REG_START)]);
908 if (ins.oprs[i].scale > 1)
909 slen +=
910 snprintf(output + slen, outbufsize - slen, "*%d",
911 ins.oprs[i].scale);
912 started = TRUE;
913 }
914 if (ins.oprs[i].segment & SEG_DISP8) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000915 int minus = 0;
916 int8_t offset = ins.oprs[i].offset;
917 if (offset < 0) {
918 minus = 1;
919 offset = -offset;
920 }
H. Peter Anvine2c80182005-01-15 22:15:51 +0000921 slen +=
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000922 snprintf(output + slen, outbufsize - slen, "%s0x%"PRIx8"",
923 minus ? "-" : "+", offset);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000924 } else if (ins.oprs[i].segment & SEG_DISP16) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000925 int minus = 0;
926 int16_t offset = ins.oprs[i].offset;
927 if (offset < 0) {
928 minus = 1;
929 offset = -offset;
930 }
H. Peter Anvine2c80182005-01-15 22:15:51 +0000931 slen +=
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000932 snprintf(output + slen, outbufsize - slen, "%s0x%"PRIx16"",
933 minus ? "-" : started ? "+" : "", offset);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000934 } else if (ins.oprs[i].segment & SEG_DISP32) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000935 char *prefix = "";
936 int32_t offset = ins.oprs[i].offset;
H. Peter Anvin99c4ecd2007-08-28 23:06:00 +0000937 if (offset < 0) {
H. Peter Anvin0ee01422007-04-16 01:18:30 +0000938 offset = -offset;
939 prefix = "-";
940 } else {
941 prefix = started ? "+" : "";
942 }
943 slen +=
944 snprintf(output + slen, outbufsize - slen,
945 "%s0x%"PRIx32"", prefix, offset);
H. Peter Anvine2c80182005-01-15 22:15:51 +0000946 }
947 output[slen++] = ']';
948 } else {
949 slen +=
950 snprintf(output + slen, outbufsize - slen, "<operand%d>",
951 i);
952 }
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000953 }
954 output[slen] = '\0';
H. Peter Anvine2c80182005-01-15 22:15:51 +0000955 if (segover) { /* unused segment override */
Keith Kaniosa6dfa782007-04-13 16:47:53 +0000956 char *p = output;
H. Peter Anvine2c80182005-01-15 22:15:51 +0000957 int count = slen + 1;
958 while (count--)
959 p[count + 3] = p[count];
960 strncpy(output, segover, 2);
961 output[2] = ' ';
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000962 }
963 return length;
964}
965
Keith Kaniosa6dfa782007-04-13 16:47:53 +0000966int32_t eatbyte(uint8_t *data, char *output, int outbufsize)
H. Peter Anvineba20a72002-04-30 20:53:55 +0000967{
Ed Beroset92348172004-12-15 18:27:50 +0000968 snprintf(output, outbufsize, "db 0x%02X", *data);
H. Peter Anvinea6e34d2002-04-30 20:51:32 +0000969 return 1;
970}