1*9a0e4156SSadaf Ebrahimi /* Capstone Disassembler Engine */
2*9a0e4156SSadaf Ebrahimi /* By Nguyen Anh Quynh <[email protected]>, 2013 */
3*9a0e4156SSadaf Ebrahimi
4*9a0e4156SSadaf Ebrahimi #include <stdio.h>
5*9a0e4156SSadaf Ebrahimi #include <stdlib.h>
6*9a0e4156SSadaf Ebrahimi
7*9a0e4156SSadaf Ebrahimi #include <capstone/platform.h>
8*9a0e4156SSadaf Ebrahimi #include <capstone/capstone.h>
9*9a0e4156SSadaf Ebrahimi
10*9a0e4156SSadaf Ebrahimi static csh handle;
11*9a0e4156SSadaf Ebrahimi
12*9a0e4156SSadaf Ebrahimi struct platform {
13*9a0e4156SSadaf Ebrahimi cs_arch arch;
14*9a0e4156SSadaf Ebrahimi cs_mode mode;
15*9a0e4156SSadaf Ebrahimi unsigned char *code;
16*9a0e4156SSadaf Ebrahimi size_t size;
17*9a0e4156SSadaf Ebrahimi const char *comment;
18*9a0e4156SSadaf Ebrahimi };
19*9a0e4156SSadaf Ebrahimi
print_string_hex(const char * comment,unsigned char * str,size_t len)20*9a0e4156SSadaf Ebrahimi static void print_string_hex(const char *comment, unsigned char *str, size_t len)
21*9a0e4156SSadaf Ebrahimi {
22*9a0e4156SSadaf Ebrahimi unsigned char *c;
23*9a0e4156SSadaf Ebrahimi
24*9a0e4156SSadaf Ebrahimi printf("%s", comment);
25*9a0e4156SSadaf Ebrahimi for (c = str; c < str + len; c++) {
26*9a0e4156SSadaf Ebrahimi printf("0x%02x ", *c & 0xff);
27*9a0e4156SSadaf Ebrahimi }
28*9a0e4156SSadaf Ebrahimi
29*9a0e4156SSadaf Ebrahimi printf("\n");
30*9a0e4156SSadaf Ebrahimi }
31*9a0e4156SSadaf Ebrahimi
print_insn_detail(cs_insn * ins)32*9a0e4156SSadaf Ebrahimi static void print_insn_detail(cs_insn *ins)
33*9a0e4156SSadaf Ebrahimi {
34*9a0e4156SSadaf Ebrahimi cs_arm64 *arm64;
35*9a0e4156SSadaf Ebrahimi int i;
36*9a0e4156SSadaf Ebrahimi cs_regs regs_read, regs_write;
37*9a0e4156SSadaf Ebrahimi unsigned char regs_read_count, regs_write_count;
38*9a0e4156SSadaf Ebrahimi unsigned char access;
39*9a0e4156SSadaf Ebrahimi
40*9a0e4156SSadaf Ebrahimi // detail can be NULL if SKIPDATA option is turned ON
41*9a0e4156SSadaf Ebrahimi if (ins->detail == NULL)
42*9a0e4156SSadaf Ebrahimi return;
43*9a0e4156SSadaf Ebrahimi
44*9a0e4156SSadaf Ebrahimi arm64 = &(ins->detail->arm64);
45*9a0e4156SSadaf Ebrahimi if (arm64->op_count)
46*9a0e4156SSadaf Ebrahimi printf("\top_count: %u\n", arm64->op_count);
47*9a0e4156SSadaf Ebrahimi
48*9a0e4156SSadaf Ebrahimi for (i = 0; i < arm64->op_count; i++) {
49*9a0e4156SSadaf Ebrahimi cs_arm64_op *op = &(arm64->operands[i]);
50*9a0e4156SSadaf Ebrahimi switch(op->type) {
51*9a0e4156SSadaf Ebrahimi default:
52*9a0e4156SSadaf Ebrahimi break;
53*9a0e4156SSadaf Ebrahimi case ARM64_OP_REG:
54*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: REG = %s\n", i, cs_reg_name(handle, op->reg));
55*9a0e4156SSadaf Ebrahimi break;
56*9a0e4156SSadaf Ebrahimi case ARM64_OP_IMM:
57*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: IMM = 0x%" PRIx64 "\n", i, op->imm);
58*9a0e4156SSadaf Ebrahimi break;
59*9a0e4156SSadaf Ebrahimi case ARM64_OP_FP:
60*9a0e4156SSadaf Ebrahimi #if defined(_KERNEL_MODE)
61*9a0e4156SSadaf Ebrahimi // Issue #681: Windows kernel does not support formatting float point
62*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: FP = <float_point_unsupported>\n", i);
63*9a0e4156SSadaf Ebrahimi #else
64*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: FP = %f\n", i, op->fp);
65*9a0e4156SSadaf Ebrahimi #endif
66*9a0e4156SSadaf Ebrahimi break;
67*9a0e4156SSadaf Ebrahimi case ARM64_OP_MEM:
68*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: MEM\n", i);
69*9a0e4156SSadaf Ebrahimi if (op->mem.base != ARM64_REG_INVALID)
70*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.base: REG = %s\n", i, cs_reg_name(handle, op->mem.base));
71*9a0e4156SSadaf Ebrahimi if (op->mem.index != ARM64_REG_INVALID)
72*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.index: REG = %s\n", i, cs_reg_name(handle, op->mem.index));
73*9a0e4156SSadaf Ebrahimi if (op->mem.disp != 0)
74*9a0e4156SSadaf Ebrahimi printf("\t\t\toperands[%u].mem.disp: 0x%x\n", i, op->mem.disp);
75*9a0e4156SSadaf Ebrahimi
76*9a0e4156SSadaf Ebrahimi break;
77*9a0e4156SSadaf Ebrahimi case ARM64_OP_CIMM:
78*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: C-IMM = %u\n", i, (int)op->imm);
79*9a0e4156SSadaf Ebrahimi break;
80*9a0e4156SSadaf Ebrahimi case ARM64_OP_REG_MRS:
81*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: REG_MRS = 0x%x\n", i, op->reg);
82*9a0e4156SSadaf Ebrahimi break;
83*9a0e4156SSadaf Ebrahimi case ARM64_OP_REG_MSR:
84*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: REG_MSR = 0x%x\n", i, op->reg);
85*9a0e4156SSadaf Ebrahimi break;
86*9a0e4156SSadaf Ebrahimi case ARM64_OP_PSTATE:
87*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: PSTATE = 0x%x\n", i, op->pstate);
88*9a0e4156SSadaf Ebrahimi break;
89*9a0e4156SSadaf Ebrahimi case ARM64_OP_SYS:
90*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: SYS = 0x%x\n", i, op->sys);
91*9a0e4156SSadaf Ebrahimi break;
92*9a0e4156SSadaf Ebrahimi case ARM64_OP_PREFETCH:
93*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: PREFETCH = 0x%x\n", i, op->prefetch);
94*9a0e4156SSadaf Ebrahimi break;
95*9a0e4156SSadaf Ebrahimi case ARM64_OP_BARRIER:
96*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].type: BARRIER = 0x%x\n", i, op->barrier);
97*9a0e4156SSadaf Ebrahimi break;
98*9a0e4156SSadaf Ebrahimi }
99*9a0e4156SSadaf Ebrahimi
100*9a0e4156SSadaf Ebrahimi access = op->access;
101*9a0e4156SSadaf Ebrahimi switch(access) {
102*9a0e4156SSadaf Ebrahimi default:
103*9a0e4156SSadaf Ebrahimi break;
104*9a0e4156SSadaf Ebrahimi case CS_AC_READ:
105*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].access: READ\n", i);
106*9a0e4156SSadaf Ebrahimi break;
107*9a0e4156SSadaf Ebrahimi case CS_AC_WRITE:
108*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].access: WRITE\n", i);
109*9a0e4156SSadaf Ebrahimi break;
110*9a0e4156SSadaf Ebrahimi case CS_AC_READ | CS_AC_WRITE:
111*9a0e4156SSadaf Ebrahimi printf("\t\toperands[%u].access: READ | WRITE\n", i);
112*9a0e4156SSadaf Ebrahimi break;
113*9a0e4156SSadaf Ebrahimi }
114*9a0e4156SSadaf Ebrahimi
115*9a0e4156SSadaf Ebrahimi if (op->shift.type != ARM64_SFT_INVALID &&
116*9a0e4156SSadaf Ebrahimi op->shift.value)
117*9a0e4156SSadaf Ebrahimi printf("\t\t\tShift: type = %u, value = %u\n",
118*9a0e4156SSadaf Ebrahimi op->shift.type, op->shift.value);
119*9a0e4156SSadaf Ebrahimi
120*9a0e4156SSadaf Ebrahimi if (op->ext != ARM64_EXT_INVALID)
121*9a0e4156SSadaf Ebrahimi printf("\t\t\tExt: %u\n", op->ext);
122*9a0e4156SSadaf Ebrahimi
123*9a0e4156SSadaf Ebrahimi if (op->vas != ARM64_VAS_INVALID)
124*9a0e4156SSadaf Ebrahimi printf("\t\t\tVector Arrangement Specifier: 0x%x\n", op->vas);
125*9a0e4156SSadaf Ebrahimi
126*9a0e4156SSadaf Ebrahimi if (op->vess != ARM64_VESS_INVALID)
127*9a0e4156SSadaf Ebrahimi printf("\t\t\tVector Element Size Specifier: %u\n", op->vess);
128*9a0e4156SSadaf Ebrahimi
129*9a0e4156SSadaf Ebrahimi if (op->vector_index != -1)
130*9a0e4156SSadaf Ebrahimi printf("\t\t\tVector Index: %u\n", op->vector_index);
131*9a0e4156SSadaf Ebrahimi }
132*9a0e4156SSadaf Ebrahimi
133*9a0e4156SSadaf Ebrahimi if (arm64->update_flags)
134*9a0e4156SSadaf Ebrahimi printf("\tUpdate-flags: True\n");
135*9a0e4156SSadaf Ebrahimi
136*9a0e4156SSadaf Ebrahimi if (arm64->writeback)
137*9a0e4156SSadaf Ebrahimi printf("\tWrite-back: True\n");
138*9a0e4156SSadaf Ebrahimi
139*9a0e4156SSadaf Ebrahimi if (arm64->cc)
140*9a0e4156SSadaf Ebrahimi printf("\tCode-condition: %u\n", arm64->cc);
141*9a0e4156SSadaf Ebrahimi
142*9a0e4156SSadaf Ebrahimi // Print out all registers accessed by this instruction (either implicit or explicit)
143*9a0e4156SSadaf Ebrahimi if (!cs_regs_access(handle, ins,
144*9a0e4156SSadaf Ebrahimi regs_read, ®s_read_count,
145*9a0e4156SSadaf Ebrahimi regs_write, ®s_write_count)) {
146*9a0e4156SSadaf Ebrahimi if (regs_read_count) {
147*9a0e4156SSadaf Ebrahimi printf("\tRegisters read:");
148*9a0e4156SSadaf Ebrahimi for(i = 0; i < regs_read_count; i++) {
149*9a0e4156SSadaf Ebrahimi printf(" %s", cs_reg_name(handle, regs_read[i]));
150*9a0e4156SSadaf Ebrahimi }
151*9a0e4156SSadaf Ebrahimi printf("\n");
152*9a0e4156SSadaf Ebrahimi }
153*9a0e4156SSadaf Ebrahimi
154*9a0e4156SSadaf Ebrahimi if (regs_write_count) {
155*9a0e4156SSadaf Ebrahimi printf("\tRegisters modified:");
156*9a0e4156SSadaf Ebrahimi for(i = 0; i < regs_write_count; i++) {
157*9a0e4156SSadaf Ebrahimi printf(" %s", cs_reg_name(handle, regs_write[i]));
158*9a0e4156SSadaf Ebrahimi }
159*9a0e4156SSadaf Ebrahimi printf("\n");
160*9a0e4156SSadaf Ebrahimi }
161*9a0e4156SSadaf Ebrahimi }
162*9a0e4156SSadaf Ebrahimi
163*9a0e4156SSadaf Ebrahimi printf("\n");
164*9a0e4156SSadaf Ebrahimi }
165*9a0e4156SSadaf Ebrahimi
test()166*9a0e4156SSadaf Ebrahimi static void test()
167*9a0e4156SSadaf Ebrahimi {
168*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\xe1\x0b\x40\xb9" // ldr w1, [sp, #0x8]
169*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x21\x7c\x00\x53" // lsr w1, w1, #0x0
170*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x21\x7c\x02\x9b"
171*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x04\x81\xda" // csneg x0, x1, x1, eq | cneg x0, x1, ne
172*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x08\x02\x8b" // add x0, x1, x2, lsl #2
173*9a0e4156SSadaf Ebrahimi
174*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\xcc\x20\x8b"
175*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\xe2\x8f\x40\xa9" // ldp x2, x3, [sp, #8]
176*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x40\x60\x1e" // fmov d0, d1
177*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x7c\x7d\x93" // sbfiz x0, x1, #3, #32
178*9a0e4156SSadaf Ebrahimi
179*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x88\x43\xb3" // bfxil x0, x1, #3, #32
180*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x01\x71\x08\xd5" // sys #0, c7, c1, #0, x1
181*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x00\x71\x28\xd5" // sysl x0, #0, c7, c1, #0
182*9a0e4156SSadaf Ebrahimi
183*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\xf4\x18\x9e" // fcvtzs x0, s1, #3
184*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x74\x0b\xd5" // dc zva, x0: FIXME: handle as "sys" insn
185*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x00\x90\x24\x1e" // fmov s0, ##10.00000000
186*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\xe1\x0b\x40\xb9" // ldr w1, [sp, #0x8]
187*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x78\x62\xf8" // ldr x0, [x1, x2, lsl #3]
188*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x41\x14\x44\xb3" // bfm x1, x2, #4, #5
189*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x80\x23\x29\xd5" // sysl x0, #1, c2, c3, #4
190*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x00\x24\x1e" // fcvtas w0, s1
191*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x41\x04\x40\xd2" // eor x1, x2, #0x3
192*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x9f\x33\x03\xd5" // dsb osh
193*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x41\x10\x23\x8a" // bic x1, x2, x3, lsl #4
194*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x16\x41\x3c\xd5" // mrs x22, sp_el1
195*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x41\x1c\x63\x0e" // bic v1.8b, v2.8b, v3.8b
196*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x41\xd4\xe3\x6e" // fabd v1.2d, v2.2d, v3.2d
197*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x8c\x62\x2e" // cmeq v0.4h, v1.4h, v2.4h
198*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x98\x20\x4e" // cmeq v0.16b, v1.16b, #0
199*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x2c\x05\x4e" // smov x0, v1.b[2]
200*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x21\xe4\x00\x2f" // movi d1, #0xff
201*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x60\x78\x08\xd5" // at s1e0w, x0 // FIXME: same problem with dc ZVA
202*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x00\xa0\xf2" // movk x0, #1, lsl #16
203*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x08\x00\xb1" // adds x0, x1, #0x2
204*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x41\x04\x00\x0f" // movi v1.2s, #0x2
205*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x06\x00\x00\x14" // b 0x44
206*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x00\x90\x24\x1e" // fmov s0, ##10.00000000
207*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x5f\x3f\x03\xd5" // clrex
208*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x5f\x3e\x03\xd5" // clrex #14
209*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\x00\x02\xab" // adds x0, x1, x2 (alias of adds x0, x1, x2, lsl #0)
210*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\xf4\x18\x9e" // fcvtzs x0, s1, #3
211*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\xfc\x02\x9b" // mneg x0, x1, x2
212*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\xd0\xb6\x1e\xd5" // msr s3_6_c11_c6_6, x16
213*9a0e4156SSadaf Ebrahimi
214*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x21\x7c\x02\x9b\x21\x7c\x00\x53\x00\x40\x21\x4b\xe1\x0b\x40\xb9\x20\x04\x81\xda\x20\x08\x02\x8b"
215*9a0e4156SSadaf Ebrahimi
216*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x09\x00\x38\xd5" // DBarrier
217*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x20\xe4\x3d\x0f\xa2\x00\xae\x9e"
218*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x9f\x37\x03\xd5\xbf\x33\x03\xd5\xdf\x3f\x03\xd5" // DBarrier
219*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x10\x5b\xe8\x3c"
220*9a0e4156SSadaf Ebrahimi //#define ARM64_CODE "\x00\x18\xa0\x5f\xa2\x00\xae\x9e"
221*9a0e4156SSadaf Ebrahimi
222*9a0e4156SSadaf Ebrahimi #define ARM64_CODE "\x09\x00\x38\xd5\xbf\x40\x00\xd5\x0c\x05\x13\xd5\x20\x50\x02\x0e\x20\xe4\x3d\x0f\x00\x18\xa0\x5f\xa2\x00\xae\x9e\x9f\x37\x03\xd5\xbf\x33\x03\xd5\xdf\x3f\x03\xd5\x21\x7c\x02\x9b\x21\x7c\x00\x53\x00\x40\x21\x4b\xe1\x0b\x40\xb9\x20\x04\x81\xda\x20\x08\x02\x8b\x10\x5b\xe8\x3c"
223*9a0e4156SSadaf Ebrahimi
224*9a0e4156SSadaf Ebrahimi struct platform platforms[] = {
225*9a0e4156SSadaf Ebrahimi {
226*9a0e4156SSadaf Ebrahimi CS_ARCH_ARM64,
227*9a0e4156SSadaf Ebrahimi CS_MODE_ARM,
228*9a0e4156SSadaf Ebrahimi (unsigned char *)ARM64_CODE,
229*9a0e4156SSadaf Ebrahimi sizeof(ARM64_CODE) - 1,
230*9a0e4156SSadaf Ebrahimi "ARM-64"
231*9a0e4156SSadaf Ebrahimi },
232*9a0e4156SSadaf Ebrahimi };
233*9a0e4156SSadaf Ebrahimi
234*9a0e4156SSadaf Ebrahimi uint64_t address = 0x2c;
235*9a0e4156SSadaf Ebrahimi cs_insn *insn;
236*9a0e4156SSadaf Ebrahimi int i;
237*9a0e4156SSadaf Ebrahimi size_t count;
238*9a0e4156SSadaf Ebrahimi
239*9a0e4156SSadaf Ebrahimi for (i = 0; i < sizeof(platforms)/sizeof(platforms[0]); i++) {
240*9a0e4156SSadaf Ebrahimi cs_err err = cs_open(platforms[i].arch, platforms[i].mode, &handle);
241*9a0e4156SSadaf Ebrahimi if (err) {
242*9a0e4156SSadaf Ebrahimi printf("Failed on cs_open() with error returned: %u\n", err);
243*9a0e4156SSadaf Ebrahimi abort();
244*9a0e4156SSadaf Ebrahimi }
245*9a0e4156SSadaf Ebrahimi
246*9a0e4156SSadaf Ebrahimi cs_option(handle, CS_OPT_DETAIL, CS_OPT_ON);
247*9a0e4156SSadaf Ebrahimi
248*9a0e4156SSadaf Ebrahimi count = cs_disasm(handle, platforms[i].code, platforms[i].size, address, 0, &insn);
249*9a0e4156SSadaf Ebrahimi if (count) {
250*9a0e4156SSadaf Ebrahimi size_t j;
251*9a0e4156SSadaf Ebrahimi
252*9a0e4156SSadaf Ebrahimi printf("****************\n");
253*9a0e4156SSadaf Ebrahimi printf("Platform: %s\n", platforms[i].comment);
254*9a0e4156SSadaf Ebrahimi print_string_hex("Code: ", platforms[i].code, platforms[i].size);
255*9a0e4156SSadaf Ebrahimi printf("Disasm:\n");
256*9a0e4156SSadaf Ebrahimi
257*9a0e4156SSadaf Ebrahimi for (j = 0; j < count; j++) {
258*9a0e4156SSadaf Ebrahimi printf("0x%" PRIx64 ":\t%s\t%s\n", insn[j].address, insn[j].mnemonic, insn[j].op_str);
259*9a0e4156SSadaf Ebrahimi print_insn_detail(&insn[j]);
260*9a0e4156SSadaf Ebrahimi }
261*9a0e4156SSadaf Ebrahimi printf("0x%" PRIx64 ":\n", insn[j-1].address + insn[j-1].size);
262*9a0e4156SSadaf Ebrahimi
263*9a0e4156SSadaf Ebrahimi // free memory allocated by cs_disasm()
264*9a0e4156SSadaf Ebrahimi cs_free(insn, count);
265*9a0e4156SSadaf Ebrahimi } else {
266*9a0e4156SSadaf Ebrahimi printf("****************\n");
267*9a0e4156SSadaf Ebrahimi printf("Platform: %s\n", platforms[i].comment);
268*9a0e4156SSadaf Ebrahimi print_string_hex("Code: ", platforms[i].code, platforms[i].size);
269*9a0e4156SSadaf Ebrahimi printf("ERROR: Failed to disasm given code!\n");
270*9a0e4156SSadaf Ebrahimi abort();
271*9a0e4156SSadaf Ebrahimi }
272*9a0e4156SSadaf Ebrahimi
273*9a0e4156SSadaf Ebrahimi printf("\n");
274*9a0e4156SSadaf Ebrahimi
275*9a0e4156SSadaf Ebrahimi cs_close(&handle);
276*9a0e4156SSadaf Ebrahimi }
277*9a0e4156SSadaf Ebrahimi }
278*9a0e4156SSadaf Ebrahimi
main()279*9a0e4156SSadaf Ebrahimi int main()
280*9a0e4156SSadaf Ebrahimi {
281*9a0e4156SSadaf Ebrahimi test();
282*9a0e4156SSadaf Ebrahimi
283*9a0e4156SSadaf Ebrahimi return 0;
284*9a0e4156SSadaf Ebrahimi }
285*9a0e4156SSadaf Ebrahimi
286