14 byte[] data =
new byte[
len / 2];
15 for (
int i = 0;
i <
len;
i += 2) {
16 data[
i / 2] = (byte) ((Character.digit(
s.charAt(
i), 16) << 4)
17 + Character.digit(
s.charAt(
i+1), 16));
22 static final String ARM64_CODE =
"090038d5bf4000d50c0513d52050020e20e43d0f0018a05fa200ae9e9f3703d5bf3303d5df3f03d5217c029b217c00530040214be10b40b9200481da2008028b105be83c";
24 public static Capstone
cs;
27 return Integer.toString(
i, 16);
31 return Long.toString(
i, 16);
35 System.out.printf(
"0x%x:\t%s\t%s\n", ins.address, ins.mnemonic, ins.opStr);
40 System.out.printf(
"\top_count: %d\n",
operands.op.length);
45 System.out.printf(
"\t\toperands[%d].type: REG = %s\n",
c, ins.regName(
i.value.reg));
47 System.out.printf(
"\t\toperands[%d].type: REG_MRS = 0x%x\n",
c,
i.value.reg);
49 System.out.printf(
"\t\toperands[%d].type: REG_MSR = 0x%x\n",
c,
i.value.reg);
51 System.out.printf(
"\t\toperands[%d].type: PSTATE = 0x%x\n",
c,
i.value.imm);
53 System.out.printf(
"\t\toperands[%d].type: BARRIER = 0x%x\n",
c,
i.value.imm);
56 System.out.printf(
"\t\toperands[%d].type: IMM = 0x%x\n",
c,
i.value.imm);
58 System.out.printf(
"\t\toperands[%d].type: C-IMM = %d\n",
c,
i.value.imm);
60 System.out.printf(
"\t\toperands[%d].type: FP = %f\n",
c,
i.value.fp);
62 System.out.printf(
"\t\toperands[%d].type: MEM\n",
c);
63 String base = ins.regName(
i.value.mem.base);
64 String index = ins.regName(
i.value.mem.index);
66 System.out.printf(
"\t\t\toperands[%d].mem.base: REG = %s\n",
c, base);
68 System.out.printf(
"\t\t\toperands[%d].mem.index: REG = %s\n",
c, index);
69 if (
i.value.mem.disp != 0)
70 System.out.printf(
"\t\t\toperands[%d].mem.disp: 0x%x\n",
c,
i.value.mem.disp);
73 System.out.printf(
"\t\t\tShift: type = %d, value = %d\n",
i.shift.type,
i.shift.value);
75 System.out.printf(
"\t\t\tExt: %d\n",
i.ext);
77 System.out.printf(
"\t\t\tVector Arrangement Specifier: 0x%x\n",
i.vas);
79 System.out.printf(
"\t\t\tVector Element Size Specifier: %d\n",
i.vess);
80 if (
i.vector_index != -1)
81 System.out.printf(
"\t\t\tVector Index: %d\n",
i.vector_index);
87 System.out.println(
"\tWrite-back: True");
90 System.out.println(
"\tUpdate-flags: True");
93 System.out.printf(
"\tCode-condition: %d\n",
operands.cc);
105 System.out.println(
new String(
new char[16]).
replace(
"\0",
"*"));
106 System.out.println(
"Platform: " +
test.comment);
108 System.out.println(
"Disasm:");
111 cs.setDetail(Capstone.CS_OPT_ON);
112 Capstone.CsInsn[] all_ins =
cs.disasm(
test.code, 0x2c);
114 for (
int j = 0; j < all_ins.length; j++) {
116 System.out.println();
119 System.out.printf(
"0x%x: \n\n", all_ins[all_ins.length-1].address + all_ins[all_ins.length-1].size);
@ ARM64_OP_FP
= CS_OP_FP (Floating-Point operand).
@ ARM64_OP_PSTATE
PState operand.
@ ARM64_OP_BARRIER
Memory barrier operand (ISB/DMB/DSB instructions).
@ ARM64_OP_REG
= CS_OP_REG (Register operand).
@ ARM64_OP_MEM
= CS_OP_MEM (Memory operand).
@ ARM64_OP_REG_MRS
MRS register operand.
@ ARM64_OP_CIMM
C-Immediate.
@ ARM64_OP_IMM
= CS_OP_IMM (Immediate operand).
@ ARM64_OP_REG_MSR
MSR register operand.
@ ARM64_CC_AL
Always (unconditional): Always (unconditional)
static void print_ins_detail(Capstone.CsInsn ins)
static void main(String argv[])
static byte[] hexString2Byte(String s)
static final String ARM64_CODE
static String hex(long i)
static String stringToHex(byte[] code)
static static fork const void static count static fd const char const char static newpath char char argv
int replace(char *string, const char *token, const char *fmt,...)
if(dbg->bits==RZ_SYS_BITS_64)