1*9a0e4156SSadaf Ebrahimi /* By Nguyen Anh Quynh <[email protected]>, 2013> */
2*9a0e4156SSadaf Ebrahimi
3*9a0e4156SSadaf Ebrahimi #include <stdio.h>
4*9a0e4156SSadaf Ebrahimi #include <stdlib.h>
5*9a0e4156SSadaf Ebrahimi
6*9a0e4156SSadaf Ebrahimi #include <capstone/capstone.h>
7*9a0e4156SSadaf Ebrahimi
8*9a0e4156SSadaf Ebrahimi void print_string_hex(const char *comment, unsigned char *str, size_t len);
9*9a0e4156SSadaf Ebrahimi
get_eflag_name(uint64_t flag)10*9a0e4156SSadaf Ebrahimi static const char *get_eflag_name(uint64_t flag)
11*9a0e4156SSadaf Ebrahimi {
12*9a0e4156SSadaf Ebrahimi switch(flag) {
13*9a0e4156SSadaf Ebrahimi default:
14*9a0e4156SSadaf Ebrahimi return NULL;
15*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_UNDEFINED_OF:
16*9a0e4156SSadaf Ebrahimi return "UNDEF_OF";
17*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_UNDEFINED_SF:
18*9a0e4156SSadaf Ebrahimi return "UNDEF_SF";
19*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_UNDEFINED_ZF:
20*9a0e4156SSadaf Ebrahimi return "UNDEF_ZF";
21*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_AF:
22*9a0e4156SSadaf Ebrahimi return "MOD_AF";
23*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_UNDEFINED_PF:
24*9a0e4156SSadaf Ebrahimi return "UNDEF_PF";
25*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_CF:
26*9a0e4156SSadaf Ebrahimi return "MOD_CF";
27*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_SF:
28*9a0e4156SSadaf Ebrahimi return "MOD_SF";
29*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_ZF:
30*9a0e4156SSadaf Ebrahimi return "MOD_ZF";
31*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_UNDEFINED_AF:
32*9a0e4156SSadaf Ebrahimi return "UNDEF_AF";
33*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_PF:
34*9a0e4156SSadaf Ebrahimi return "MOD_PF";
35*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_UNDEFINED_CF:
36*9a0e4156SSadaf Ebrahimi return "UNDEF_CF";
37*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_OF:
38*9a0e4156SSadaf Ebrahimi return "MOD_OF";
39*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_OF:
40*9a0e4156SSadaf Ebrahimi return "RESET_OF";
41*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_CF:
42*9a0e4156SSadaf Ebrahimi return "RESET_CF";
43*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_DF:
44*9a0e4156SSadaf Ebrahimi return "RESET_DF";
45*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_IF:
46*9a0e4156SSadaf Ebrahimi return "RESET_IF";
47*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_ZF:
48*9a0e4156SSadaf Ebrahimi return "RESET_ZF";
49*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_OF:
50*9a0e4156SSadaf Ebrahimi return "TEST_OF";
51*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_SF:
52*9a0e4156SSadaf Ebrahimi return "TEST_SF";
53*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_ZF:
54*9a0e4156SSadaf Ebrahimi return "TEST_ZF";
55*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_PF:
56*9a0e4156SSadaf Ebrahimi return "TEST_PF";
57*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_CF:
58*9a0e4156SSadaf Ebrahimi return "TEST_CF";
59*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_SF:
60*9a0e4156SSadaf Ebrahimi return "RESET_SF";
61*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_AF:
62*9a0e4156SSadaf Ebrahimi return "RESET_AF";
63*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_TF:
64*9a0e4156SSadaf Ebrahimi return "RESET_TF";
65*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_NT:
66*9a0e4156SSadaf Ebrahimi return "RESET_NT";
67*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_OF:
68*9a0e4156SSadaf Ebrahimi return "PRIOR_OF";
69*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_SF:
70*9a0e4156SSadaf Ebrahimi return "PRIOR_SF";
71*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_ZF:
72*9a0e4156SSadaf Ebrahimi return "PRIOR_ZF";
73*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_AF:
74*9a0e4156SSadaf Ebrahimi return "PRIOR_AF";
75*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_PF:
76*9a0e4156SSadaf Ebrahimi return "PRIOR_PF";
77*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_CF:
78*9a0e4156SSadaf Ebrahimi return "PRIOR_CF";
79*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_TF:
80*9a0e4156SSadaf Ebrahimi return "PRIOR_TF";
81*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_IF:
82*9a0e4156SSadaf Ebrahimi return "PRIOR_IF";
83*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_DF:
84*9a0e4156SSadaf Ebrahimi return "PRIOR_DF";
85*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_NT:
86*9a0e4156SSadaf Ebrahimi return "TEST_NT";
87*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_DF:
88*9a0e4156SSadaf Ebrahimi return "TEST_DF";
89*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_PF:
90*9a0e4156SSadaf Ebrahimi return "RESET_PF";
91*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_PRIOR_NT:
92*9a0e4156SSadaf Ebrahimi return "PRIOR_NT";
93*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_TF:
94*9a0e4156SSadaf Ebrahimi return "MOD_TF";
95*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_IF:
96*9a0e4156SSadaf Ebrahimi return "MOD_IF";
97*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_DF:
98*9a0e4156SSadaf Ebrahimi return "MOD_DF";
99*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_NT:
100*9a0e4156SSadaf Ebrahimi return "MOD_NT";
101*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_MODIFY_RF:
102*9a0e4156SSadaf Ebrahimi return "MOD_RF";
103*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_CF:
104*9a0e4156SSadaf Ebrahimi return "SET_CF";
105*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_DF:
106*9a0e4156SSadaf Ebrahimi return "SET_DF";
107*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_IF:
108*9a0e4156SSadaf Ebrahimi return "SET_IF";
109*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_OF:
110*9a0e4156SSadaf Ebrahimi return "SET_OF";
111*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_SF:
112*9a0e4156SSadaf Ebrahimi return "SET_SF";
113*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_ZF:
114*9a0e4156SSadaf Ebrahimi return "SET_ZF";
115*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_AF:
116*9a0e4156SSadaf Ebrahimi return "SET_AF";
117*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_SET_PF:
118*9a0e4156SSadaf Ebrahimi return "SET_PF";
119*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_AF:
120*9a0e4156SSadaf Ebrahimi return "TEST_AF";
121*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_TF:
122*9a0e4156SSadaf Ebrahimi return "TEST_TF";
123*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_TEST_RF:
124*9a0e4156SSadaf Ebrahimi return "TEST_RF";
125*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_0F:
126*9a0e4156SSadaf Ebrahimi return "RESET_0F";
127*9a0e4156SSadaf Ebrahimi case X86_EFLAGS_RESET_AC:
128*9a0e4156SSadaf Ebrahimi return "RESET_AC";
129*9a0e4156SSadaf Ebrahimi }
130*9a0e4156SSadaf Ebrahimi }
131*9a0e4156SSadaf Ebrahimi
get_fpu_flag_name(uint64_t flag)132*9a0e4156SSadaf Ebrahimi static const char *get_fpu_flag_name(uint64_t flag)
133*9a0e4156SSadaf Ebrahimi {
134*9a0e4156SSadaf Ebrahimi switch (flag) {
135*9a0e4156SSadaf Ebrahimi default:
136*9a0e4156SSadaf Ebrahimi return NULL;
137*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_MODIFY_C0:
138*9a0e4156SSadaf Ebrahimi return "MOD_C0";
139*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_MODIFY_C1:
140*9a0e4156SSadaf Ebrahimi return "MOD_C1";
141*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_MODIFY_C2:
142*9a0e4156SSadaf Ebrahimi return "MOD_C2";
143*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_MODIFY_C3:
144*9a0e4156SSadaf Ebrahimi return "MOD_C3";
145*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_RESET_C0:
146*9a0e4156SSadaf Ebrahimi return "RESET_C0";
147*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_RESET_C1:
148*9a0e4156SSadaf Ebrahimi return "RESET_C1";
149*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_RESET_C2:
150*9a0e4156SSadaf Ebrahimi return "RESET_C2";
151*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_RESET_C3:
152*9a0e4156SSadaf Ebrahimi return "RESET_C3";
153*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_SET_C0:
154*9a0e4156SSadaf Ebrahimi return "SET_C0";
155*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_SET_C1:
156*9a0e4156SSadaf Ebrahimi return "SET_C1";
157*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_SET_C2:
158*9a0e4156SSadaf Ebrahimi return "SET_C2";
159*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_SET_C3:
160*9a0e4156SSadaf Ebrahimi return "SET_C3";
161*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_UNDEFINED_C0:
162*9a0e4156SSadaf Ebrahimi return "UNDEF_C0";
163*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_UNDEFINED_C1:
164*9a0e4156SSadaf Ebrahimi return "UNDEF_C1";
165*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_UNDEFINED_C2:
166*9a0e4156SSadaf Ebrahimi return "UNDEF_C2";
167*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_UNDEFINED_C3:
168*9a0e4156SSadaf Ebrahimi return "UNDEF_C3";
169*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_TEST_C0:
170*9a0e4156SSadaf Ebrahimi return "TEST_C0";
171*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_TEST_C1:
172*9a0e4156SSadaf Ebrahimi return "TEST_C1";
173*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_TEST_C2:
174*9a0e4156SSadaf Ebrahimi return "TEST_C2";
175*9a0e4156SSadaf Ebrahimi case X86_FPU_FLAGS_TEST_C3:
176*9a0e4156SSadaf Ebrahimi return "TEST_C3";
177*9a0e4156SSadaf Ebrahimi }
178*9a0e4156SSadaf Ebrahimi }
179*9a0e4156SSadaf Ebrahimi
print_insn_detail_x86(csh ud,cs_mode mode,cs_insn * ins)180*9a0e4156SSadaf Ebrahimi void print_insn_detail_x86(csh ud, cs_mode mode, cs_insn *ins)
181*9a0e4156SSadaf Ebrahimi {
182*9a0e4156SSadaf Ebrahimi int count, i;
183*9a0e4156SSadaf Ebrahimi cs_x86 *x86;
184*9a0e4156SSadaf Ebrahimi cs_regs regs_read, regs_write;
185*9a0e4156SSadaf Ebrahimi uint8_t regs_read_count, regs_write_count;
186*9a0e4156SSadaf Ebrahimi
187*9a0e4156SSadaf Ebrahimi // detail can be NULL on "data" instruction if SKIPDATA option is turned ON
188*9a0e4156SSadaf Ebrahimi if (ins->detail == NULL)
189*9a0e4156SSadaf Ebrahimi return;
190*9a0e4156SSadaf Ebrahimi
191*9a0e4156SSadaf Ebrahimi x86 = &(ins->detail->x86);
192*9a0e4156SSadaf Ebrahimi
193*9a0e4156SSadaf Ebrahimi print_string_hex("\tPrefix:", x86->prefix, 4);
194*9a0e4156SSadaf Ebrahimi print_string_hex("\tOpcode:", x86->opcode, 4);
195*9a0e4156SSadaf Ebrahimi printf("\trex: 0x%x\n", x86->rex);
196*9a0e4156SSadaf Ebrahimi printf("\taddr_size: %u\n", x86->addr_size);
197*9a0e4156SSadaf Ebrahimi printf("\tmodrm: 0x%x\n", x86->modrm);
198*9a0e4156SSadaf Ebrahimi printf("\tdisp: 0x%" PRIx64 "\n", x86->disp);
199*9a0e4156SSadaf Ebrahimi
200*9a0e4156SSadaf Ebrahimi // SIB is not available in 16-bit mode
201*9a0e4156SSadaf Ebrahimi if ((mode & CS_MODE_16) == 0) {
202*9a0e4156SSadaf Ebrahimi printf("\tsib: 0x%x\n", x86->sib);
203*9a0e4156SSadaf Ebrahimi if (x86->sib_base != X86_REG_INVALID)
204*9a0e4156SSadaf Ebrahimi printf("\t\tsib_base: %s\n", cs_reg_name(ud, x86->sib_base));
205*9a0e4156SSadaf Ebrahimi if (x86->sib_index != X86_REG_INVALID)
206*9a0e4156SSadaf Ebrahimi printf("\t\tsib_index: %s\n", cs_reg_name(ud, x86->sib_index));
207*9a0e4156SSadaf Ebrahimi if (x86->sib_scale != 0)
208*9a0e4156SSadaf Ebrahimi printf("\t\tsib_scale: %d\n", x86->sib_scale);
209*9a0e4156SSadaf Ebrahimi }
210*9a0e4156SSadaf Ebrahimi
211*9a0e4156SSadaf Ebrahimi // XOP code condition
212*9a0e4156SSadaf Ebrahimi if (x86->xop_cc != X86_XOP_CC_INVALID) {
213*9a0e4156SSadaf Ebrahimi printf("\txop_cc: %u\n", x86->xop_cc);
214*9a0e4156SSadaf Ebrahimi }
215*9a0e4156SSadaf Ebrahimi
216*9a0e4156SSadaf Ebrahimi // SSE code condition
217*9a0e4156SSadaf Ebrahimi if (x86->sse_cc != X86_SSE_CC_INVALID) {
218*9a0e4156SSadaf Ebrahimi printf("\tsse_cc: %u\n", x86->sse_cc);
219*9a0e4156SSadaf Ebrahimi }
220*9a0e4156SSadaf Ebrahimi
221*9a0e4156SSadaf Ebrahimi // AVX code condition
222*9a0e4156SSadaf Ebrahimi if (x86->avx_cc != X86_AVX_CC_INVALID) {
223*9a0e4156SSadaf Ebrahimi printf("\tavx_cc: %u\n", x86->avx_cc);
224*9a0e4156SSadaf Ebrahimi }
225*9a0e4156SSadaf Ebrahimi
226*9a0e4156SSadaf Ebrahimi // AVX Suppress All Exception
227*9a0e4156SSadaf Ebrahimi if (x86->avx_sae) {
228*9a0e4156SSadaf Ebrahimi printf("\tavx_sae: %u\n", x86->avx_sae);
229*9a0e4156SSadaf Ebrahimi }
230*9a0e4156SSadaf Ebrahimi
231*9a0e4156SSadaf Ebrahimi // AVX Rounding Mode
232*9a0e4156SSadaf Ebrahimi if (x86->avx_rm != X86_AVX_RM_INVALID) {
233*9a0e4156SSadaf Ebrahimi printf("\tavx_rm: %u\n", x86->avx_rm);
234*9a0e4156SSadaf Ebrahimi }
235*9a0e4156SSadaf Ebrahimi
236*9a0e4156SSadaf Ebrahimi // Print out all immediate operands
237*9a0e4156SSadaf Ebrahimi count = cs_op_count(ud, ins, X86_OP_IMM);
238*9a0e4156SSadaf Ebrahimi if (count > 0) {
239*9a0e4156SSadaf Ebrahimi printf("\timm_count: %u\n", count);
240*9a0e4156SSadaf Ebrahimi for (i = 1; i < count + 1; i++) {
241*9a0e4156SSadaf Ebrahimi int index = cs_op_index(ud, ins, X86_OP_IMM, i);
242*9a0e4156SSadaf Ebrahimi printf("\t\timms[%u]: 0x%" PRIx64 "\n", i, x86->operands[index].imm);
243*9a0e4156SSadaf Ebrahimi }
244*9a0e4156SSadaf Ebrahimi }
245*9a0e4156SSadaf Ebrahimi
246*9a0e4156SSadaf Ebrahimi if (x86->op_count)
247*9a0e4156SSadaf Ebrahimi printf("\top_count: %u\n", x86->op_count);
248*9a0e4156SSadaf Ebrahimi
249*9a0e4156SSadaf Ebrahimi // Print out all operands
250*9a0e4156SSadaf Ebrahimi for (i = 0; i < x86->op_count; i++) {
251*9a0e4156SSadaf Ebrahimi cs_x86_op *op = &(x86->operands[i]);
252*9a0e4156SSadaf Ebrahimi
253*9a0e4156SSadaf Ebrahimi switch((int)op->type) {
254*9a0e4156SSadaf Ebrahimi case X86_OP_REG:
255*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: REG = %s\n", i, cs_reg_name(ud, op->reg));
256*9a0e4156SSadaf Ebrahimi break;
257*9a0e4156SSadaf Ebrahimi case X86_OP_IMM:
258*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: IMM = 0x%" PRIx64 "\n", i, op->imm);
259*9a0e4156SSadaf Ebrahimi break;
260*9a0e4156SSadaf Ebrahimi case X86_OP_MEM:
261*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: MEM\n", i);
262*9a0e4156SSadaf Ebrahimi if (op->mem.segment != X86_REG_INVALID)
263*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.segment: REG = %s\n", i, cs_reg_name(ud, op->mem.segment));
264*9a0e4156SSadaf Ebrahimi if (op->mem.base != X86_REG_INVALID)
265*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.base: REG = %s\n", i, cs_reg_name(ud, op->mem.base));
266*9a0e4156SSadaf Ebrahimi if (op->mem.index != X86_REG_INVALID)
267*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.index: REG = %s\n", i, cs_reg_name(ud, op->mem.index));
268*9a0e4156SSadaf Ebrahimi if (op->mem.scale != 1)
269*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.scale: %u\n", i, op->mem.scale);
270*9a0e4156SSadaf Ebrahimi if (op->mem.disp != 0)
271*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.disp: 0x%" PRIx64 "\n", i, op->mem.disp);
272*9a0e4156SSadaf Ebrahimi break;
273*9a0e4156SSadaf Ebrahimi default:
274*9a0e4156SSadaf Ebrahimi break;
275*9a0e4156SSadaf Ebrahimi }
276*9a0e4156SSadaf Ebrahimi
277*9a0e4156SSadaf Ebrahimi // AVX broadcast type
278*9a0e4156SSadaf Ebrahimi if (op->avx_bcast != X86_AVX_BCAST_INVALID)
279*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].avx_bcast: %u\n", i, op->avx_bcast);
280*9a0e4156SSadaf Ebrahimi
281*9a0e4156SSadaf Ebrahimi // AVX zero opmask {z}
282*9a0e4156SSadaf Ebrahimi if (op->avx_zero_opmask != false)
283*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].avx_zero_opmask: TRUE\n", i);
284*9a0e4156SSadaf Ebrahimi
285*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].size: %u\n", i, op->size);
286*9a0e4156SSadaf Ebrahimi
287*9a0e4156SSadaf Ebrahimi switch(op->access) {
288*9a0e4156SSadaf Ebrahimi default:
289*9a0e4156SSadaf Ebrahimi break;
290*9a0e4156SSadaf Ebrahimi case CS_AC_READ:
291*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].access: READ\n", i);
292*9a0e4156SSadaf Ebrahimi break;
293*9a0e4156SSadaf Ebrahimi case CS_AC_WRITE:
294*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].access: WRITE\n", i);
295*9a0e4156SSadaf Ebrahimi break;
296*9a0e4156SSadaf Ebrahimi case CS_AC_READ | CS_AC_WRITE:
297*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].access: READ | WRITE\n", i);
298*9a0e4156SSadaf Ebrahimi break;
299*9a0e4156SSadaf Ebrahimi }
300*9a0e4156SSadaf Ebrahimi }
301*9a0e4156SSadaf Ebrahimi
302*9a0e4156SSadaf Ebrahimi // Print out all registers accessed by this instruction (either implicit or explicit)
303*9a0e4156SSadaf Ebrahimi if (!cs_regs_access(ud, ins,
304*9a0e4156SSadaf Ebrahimi regs_read, ®s_read_count,
305*9a0e4156SSadaf Ebrahimi regs_write, ®s_write_count)) {
306*9a0e4156SSadaf Ebrahimi if (regs_read_count) {
307*9a0e4156SSadaf Ebrahimi printf("\tRegisters read:");
308*9a0e4156SSadaf Ebrahimi for(i = 0; i < regs_read_count; i++) {
309*9a0e4156SSadaf Ebrahimi printf(" %s", cs_reg_name(ud, regs_read[i]));
310*9a0e4156SSadaf Ebrahimi }
311*9a0e4156SSadaf Ebrahimi printf("\n");
312*9a0e4156SSadaf Ebrahimi }
313*9a0e4156SSadaf Ebrahimi
314*9a0e4156SSadaf Ebrahimi if (regs_write_count) {
315*9a0e4156SSadaf Ebrahimi printf("\tRegisters modified:");
316*9a0e4156SSadaf Ebrahimi for(i = 0; i < regs_write_count; i++) {
317*9a0e4156SSadaf Ebrahimi printf(" %s", cs_reg_name(ud, regs_write[i]));
318*9a0e4156SSadaf Ebrahimi }
319*9a0e4156SSadaf Ebrahimi printf("\n");
320*9a0e4156SSadaf Ebrahimi }
321*9a0e4156SSadaf Ebrahimi }
322*9a0e4156SSadaf Ebrahimi
323*9a0e4156SSadaf Ebrahimi if (x86->eflags || x86->fpu_flags) {
324*9a0e4156SSadaf Ebrahimi for(i = 0; i < ins->detail->groups_count; i++) {
325*9a0e4156SSadaf Ebrahimi if (ins->detail->groups[i] == X86_GRP_FPU) {
326*9a0e4156SSadaf Ebrahimi printf("\tFPU_FLAGS:");
327*9a0e4156SSadaf Ebrahimi for(i = 0; i <= 63; i++)
328*9a0e4156SSadaf Ebrahimi if (x86->fpu_flags & ((uint64_t)1 << i)) {
329*9a0e4156SSadaf Ebrahimi printf(" %s", get_fpu_flag_name((uint64_t)1 << i));
330*9a0e4156SSadaf Ebrahimi }
331*9a0e4156SSadaf Ebrahimi printf("\n");
332*9a0e4156SSadaf Ebrahimi break;
333*9a0e4156SSadaf Ebrahimi }
334*9a0e4156SSadaf Ebrahimi }
335*9a0e4156SSadaf Ebrahimi
336*9a0e4156SSadaf Ebrahimi if (i == ins->detail->groups_count) {
337*9a0e4156SSadaf Ebrahimi printf("\tEFLAGS:");
338*9a0e4156SSadaf Ebrahimi for(i = 0; i <= 63; i++)
339*9a0e4156SSadaf Ebrahimi if (x86->eflags & ((uint64_t)1 << i)) {
340*9a0e4156SSadaf Ebrahimi printf(" %s", get_eflag_name((uint64_t)1 << i));
341*9a0e4156SSadaf Ebrahimi }
342*9a0e4156SSadaf Ebrahimi printf("\n");
343*9a0e4156SSadaf Ebrahimi }
344*9a0e4156SSadaf Ebrahimi }
345*9a0e4156SSadaf Ebrahimi }
346