xref: /aosp_15_r20/external/capstone/arch/X86/X86Mapping.c (revision 9a0e4156d50a75a99ec4f1653a0e9602a5d45c18)
1*9a0e4156SSadaf Ebrahimi /* Capstone Disassembly Engine */
2*9a0e4156SSadaf Ebrahimi /* By Nguyen Anh Quynh <[email protected]>, 2013-2015 */
3*9a0e4156SSadaf Ebrahimi 
4*9a0e4156SSadaf Ebrahimi #ifdef CAPSTONE_HAS_X86
5*9a0e4156SSadaf Ebrahimi 
6*9a0e4156SSadaf Ebrahimi #if defined(CAPSTONE_HAS_OSXKERNEL)
7*9a0e4156SSadaf Ebrahimi #include <Availability.h>
8*9a0e4156SSadaf Ebrahimi #endif
9*9a0e4156SSadaf Ebrahimi 
10*9a0e4156SSadaf Ebrahimi #include <string.h>
11*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_HAS_OSXKERNEL
12*9a0e4156SSadaf Ebrahimi #include <stdlib.h>
13*9a0e4156SSadaf Ebrahimi #else
14*9a0e4156SSadaf Ebrahimi #include "qsort.h"
15*9a0e4156SSadaf Ebrahimi #endif
16*9a0e4156SSadaf Ebrahimi 
17*9a0e4156SSadaf Ebrahimi #include "X86Mapping.h"
18*9a0e4156SSadaf Ebrahimi #include "X86DisassemblerDecoder.h"
19*9a0e4156SSadaf Ebrahimi 
20*9a0e4156SSadaf Ebrahimi #include "../../utils.h"
21*9a0e4156SSadaf Ebrahimi 
22*9a0e4156SSadaf Ebrahimi 
23*9a0e4156SSadaf Ebrahimi const uint64_t arch_masks[9] = {
24*9a0e4156SSadaf Ebrahimi 	0, 0xff,
25*9a0e4156SSadaf Ebrahimi 	0xffff,
26*9a0e4156SSadaf Ebrahimi 	0,
27*9a0e4156SSadaf Ebrahimi 	0xffffffff,
28*9a0e4156SSadaf Ebrahimi 	0, 0, 0,
29*9a0e4156SSadaf Ebrahimi 	0xffffffffffffffffLL
30*9a0e4156SSadaf Ebrahimi };
31*9a0e4156SSadaf Ebrahimi 
32*9a0e4156SSadaf Ebrahimi static const x86_reg sib_base_map[] = {
33*9a0e4156SSadaf Ebrahimi 	X86_REG_INVALID,
34*9a0e4156SSadaf Ebrahimi #define ENTRY(x) X86_REG_##x,
35*9a0e4156SSadaf Ebrahimi 	ALL_SIB_BASES
36*9a0e4156SSadaf Ebrahimi #undef ENTRY
37*9a0e4156SSadaf Ebrahimi };
38*9a0e4156SSadaf Ebrahimi 
39*9a0e4156SSadaf Ebrahimi // Fill-ins to make the compiler happy.  These constants are never actually
40*9a0e4156SSadaf Ebrahimi //   assigned; they are just filler to make an automatically-generated switch
41*9a0e4156SSadaf Ebrahimi //   statement work.
42*9a0e4156SSadaf Ebrahimi enum {
43*9a0e4156SSadaf Ebrahimi 	X86_REG_BX_SI = 500,
44*9a0e4156SSadaf Ebrahimi 	X86_REG_BX_DI = 501,
45*9a0e4156SSadaf Ebrahimi 	X86_REG_BP_SI = 502,
46*9a0e4156SSadaf Ebrahimi 	X86_REG_BP_DI = 503,
47*9a0e4156SSadaf Ebrahimi 	X86_REG_sib   = 504,
48*9a0e4156SSadaf Ebrahimi 	X86_REG_sib64 = 505
49*9a0e4156SSadaf Ebrahimi };
50*9a0e4156SSadaf Ebrahimi 
51*9a0e4156SSadaf Ebrahimi static const x86_reg sib_index_map[] = {
52*9a0e4156SSadaf Ebrahimi 	X86_REG_INVALID,
53*9a0e4156SSadaf Ebrahimi #define ENTRY(x) X86_REG_##x,
54*9a0e4156SSadaf Ebrahimi 	ALL_EA_BASES
55*9a0e4156SSadaf Ebrahimi 	REGS_XMM
56*9a0e4156SSadaf Ebrahimi 	REGS_YMM
57*9a0e4156SSadaf Ebrahimi 	REGS_ZMM
58*9a0e4156SSadaf Ebrahimi #undef ENTRY
59*9a0e4156SSadaf Ebrahimi };
60*9a0e4156SSadaf Ebrahimi 
61*9a0e4156SSadaf Ebrahimi static const x86_reg segment_map[] = {
62*9a0e4156SSadaf Ebrahimi 	X86_REG_INVALID,
63*9a0e4156SSadaf Ebrahimi 	X86_REG_CS,
64*9a0e4156SSadaf Ebrahimi 	X86_REG_SS,
65*9a0e4156SSadaf Ebrahimi 	X86_REG_DS,
66*9a0e4156SSadaf Ebrahimi 	X86_REG_ES,
67*9a0e4156SSadaf Ebrahimi 	X86_REG_FS,
68*9a0e4156SSadaf Ebrahimi 	X86_REG_GS,
69*9a0e4156SSadaf Ebrahimi };
70*9a0e4156SSadaf Ebrahimi 
x86_map_sib_base(int r)71*9a0e4156SSadaf Ebrahimi x86_reg x86_map_sib_base(int r)
72*9a0e4156SSadaf Ebrahimi {
73*9a0e4156SSadaf Ebrahimi 	return sib_base_map[r];
74*9a0e4156SSadaf Ebrahimi }
75*9a0e4156SSadaf Ebrahimi 
x86_map_sib_index(int r)76*9a0e4156SSadaf Ebrahimi x86_reg x86_map_sib_index(int r)
77*9a0e4156SSadaf Ebrahimi {
78*9a0e4156SSadaf Ebrahimi 	return sib_index_map[r];
79*9a0e4156SSadaf Ebrahimi }
80*9a0e4156SSadaf Ebrahimi 
x86_map_segment(int r)81*9a0e4156SSadaf Ebrahimi x86_reg x86_map_segment(int r)
82*9a0e4156SSadaf Ebrahimi {
83*9a0e4156SSadaf Ebrahimi 	return segment_map[r];
84*9a0e4156SSadaf Ebrahimi }
85*9a0e4156SSadaf Ebrahimi 
86*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
87*9a0e4156SSadaf Ebrahimi static const name_map reg_name_maps[] = {
88*9a0e4156SSadaf Ebrahimi 	{ X86_REG_INVALID, NULL },
89*9a0e4156SSadaf Ebrahimi 
90*9a0e4156SSadaf Ebrahimi 	{ X86_REG_AH, "ah" },
91*9a0e4156SSadaf Ebrahimi 	{ X86_REG_AL, "al" },
92*9a0e4156SSadaf Ebrahimi 	{ X86_REG_AX, "ax" },
93*9a0e4156SSadaf Ebrahimi 	{ X86_REG_BH, "bh" },
94*9a0e4156SSadaf Ebrahimi 	{ X86_REG_BL, "bl" },
95*9a0e4156SSadaf Ebrahimi 	{ X86_REG_BP, "bp" },
96*9a0e4156SSadaf Ebrahimi 	{ X86_REG_BPL, "bpl" },
97*9a0e4156SSadaf Ebrahimi 	{ X86_REG_BX, "bx" },
98*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CH, "ch" },
99*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CL, "cl" },
100*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CS, "cs" },
101*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CX, "cx" },
102*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DH, "dh" },
103*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DI, "di" },
104*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DIL, "dil" },
105*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DL, "dl" },
106*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DS, "ds" },
107*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DX, "dx" },
108*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EAX, "eax" },
109*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EBP, "ebp" },
110*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EBX, "ebx" },
111*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ECX, "ecx" },
112*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EDI, "edi" },
113*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EDX, "edx" },
114*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EFLAGS, "flags" },
115*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EIP, "eip" },
116*9a0e4156SSadaf Ebrahimi 	{ X86_REG_EIZ, "eiz" },
117*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ES, "es" },
118*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ESI, "esi" },
119*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ESP, "esp" },
120*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FPSW, "fpsw" },
121*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FS, "fs" },
122*9a0e4156SSadaf Ebrahimi 	{ X86_REG_GS, "gs" },
123*9a0e4156SSadaf Ebrahimi 	{ X86_REG_IP, "ip" },
124*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RAX, "rax" },
125*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RBP, "rbp" },
126*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RBX, "rbx" },
127*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RCX, "rcx" },
128*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RDI, "rdi" },
129*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RDX, "rdx" },
130*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RIP, "rip" },
131*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RIZ, "riz" },
132*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RSI, "rsi" },
133*9a0e4156SSadaf Ebrahimi 	{ X86_REG_RSP, "rsp" },
134*9a0e4156SSadaf Ebrahimi 	{ X86_REG_SI, "si" },
135*9a0e4156SSadaf Ebrahimi 	{ X86_REG_SIL, "sil" },
136*9a0e4156SSadaf Ebrahimi 	{ X86_REG_SP, "sp" },
137*9a0e4156SSadaf Ebrahimi 	{ X86_REG_SPL, "spl" },
138*9a0e4156SSadaf Ebrahimi 	{ X86_REG_SS, "ss" },
139*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR0, "cr0" },
140*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR1, "cr1" },
141*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR2, "cr2" },
142*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR3, "cr3" },
143*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR4, "cr4" },
144*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR5, "cr5" },
145*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR6, "cr6" },
146*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR7, "cr7" },
147*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR8, "cr8" },
148*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR9, "cr9" },
149*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR10, "cr10" },
150*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR11, "cr11" },
151*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR12, "cr12" },
152*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR13, "cr13" },
153*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR14, "cr14" },
154*9a0e4156SSadaf Ebrahimi 	{ X86_REG_CR15, "cr15" },
155*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR0, "dr0" },
156*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR1, "dr1" },
157*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR2, "dr2" },
158*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR3, "dr3" },
159*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR4, "dr4" },
160*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR5, "dr5" },
161*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR6, "dr6" },
162*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR7, "dr7" },
163*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR8, "dr8" },
164*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR9, "dr9" },
165*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR10, "dr10" },
166*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR11, "dr11" },
167*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR12, "dr12" },
168*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR13, "dr13" },
169*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR14, "dr14" },
170*9a0e4156SSadaf Ebrahimi 	{ X86_REG_DR15, "dr15" },
171*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP0, "fp0" },
172*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP1, "fp1" },
173*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP2, "fp2" },
174*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP3, "fp3" },
175*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP4, "fp4" },
176*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP5, "fp5" },
177*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP6, "fp6" },
178*9a0e4156SSadaf Ebrahimi 	{ X86_REG_FP7, "fp7" },
179*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K0, "k0" },
180*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K1, "k1" },
181*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K2, "k2" },
182*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K3, "k3" },
183*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K4, "k4" },
184*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K5, "k5" },
185*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K6, "k6" },
186*9a0e4156SSadaf Ebrahimi 	{ X86_REG_K7, "k7" },
187*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM0, "mm0" },
188*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM1, "mm1" },
189*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM2, "mm2" },
190*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM3, "mm3" },
191*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM4, "mm4" },
192*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM5, "mm5" },
193*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM6, "mm6" },
194*9a0e4156SSadaf Ebrahimi 	{ X86_REG_MM7, "mm7" },
195*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R8, "r8" },
196*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R9, "r9" },
197*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R10, "r10" },
198*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R11, "r11" },
199*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R12, "r12" },
200*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R13, "r13" },
201*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R14, "r14" },
202*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R15, "r15" },
203*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST0, "st(0)" },
204*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST1, "st(1)" },
205*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST2, "st(2)" },
206*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST3, "st(3)" },
207*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST4, "st(4)" },
208*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST5, "st(5)" },
209*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST6, "st(6)" },
210*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ST7, "st(7)" },
211*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM0, "xmm0" },
212*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM1, "xmm1" },
213*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM2, "xmm2" },
214*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM3, "xmm3" },
215*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM4, "xmm4" },
216*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM5, "xmm5" },
217*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM6, "xmm6" },
218*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM7, "xmm7" },
219*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM8, "xmm8" },
220*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM9, "xmm9" },
221*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM10, "xmm10" },
222*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM11, "xmm11" },
223*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM12, "xmm12" },
224*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM13, "xmm13" },
225*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM14, "xmm14" },
226*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM15, "xmm15" },
227*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM16, "xmm16" },
228*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM17, "xmm17" },
229*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM18, "xmm18" },
230*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM19, "xmm19" },
231*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM20, "xmm20" },
232*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM21, "xmm21" },
233*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM22, "xmm22" },
234*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM23, "xmm23" },
235*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM24, "xmm24" },
236*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM25, "xmm25" },
237*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM26, "xmm26" },
238*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM27, "xmm27" },
239*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM28, "xmm28" },
240*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM29, "xmm29" },
241*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM30, "xmm30" },
242*9a0e4156SSadaf Ebrahimi 	{ X86_REG_XMM31, "xmm31" },
243*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM0, "ymm0" },
244*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM1, "ymm1" },
245*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM2, "ymm2" },
246*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM3, "ymm3" },
247*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM4, "ymm4" },
248*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM5, "ymm5" },
249*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM6, "ymm6" },
250*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM7, "ymm7" },
251*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM8, "ymm8" },
252*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM9, "ymm9" },
253*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM10, "ymm10" },
254*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM11, "ymm11" },
255*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM12, "ymm12" },
256*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM13, "ymm13" },
257*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM14, "ymm14" },
258*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM15, "ymm15" },
259*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM16, "ymm16" },
260*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM17, "ymm17" },
261*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM18, "ymm18" },
262*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM19, "ymm19" },
263*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM20, "ymm20" },
264*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM21, "ymm21" },
265*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM22, "ymm22" },
266*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM23, "ymm23" },
267*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM24, "ymm24" },
268*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM25, "ymm25" },
269*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM26, "ymm26" },
270*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM27, "ymm27" },
271*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM28, "ymm28" },
272*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM29, "ymm29" },
273*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM30, "ymm30" },
274*9a0e4156SSadaf Ebrahimi 	{ X86_REG_YMM31, "ymm31" },
275*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM0, "zmm0" },
276*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM1, "zmm1" },
277*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM2, "zmm2" },
278*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM3, "zmm3" },
279*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM4, "zmm4" },
280*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM5, "zmm5" },
281*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM6, "zmm6" },
282*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM7, "zmm7" },
283*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM8, "zmm8" },
284*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM9, "zmm9" },
285*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM10, "zmm10" },
286*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM11, "zmm11" },
287*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM12, "zmm12" },
288*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM13, "zmm13" },
289*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM14, "zmm14" },
290*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM15, "zmm15" },
291*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM16, "zmm16" },
292*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM17, "zmm17" },
293*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM18, "zmm18" },
294*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM19, "zmm19" },
295*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM20, "zmm20" },
296*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM21, "zmm21" },
297*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM22, "zmm22" },
298*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM23, "zmm23" },
299*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM24, "zmm24" },
300*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM25, "zmm25" },
301*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM26, "zmm26" },
302*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM27, "zmm27" },
303*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM28, "zmm28" },
304*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM29, "zmm29" },
305*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM30, "zmm30" },
306*9a0e4156SSadaf Ebrahimi 	{ X86_REG_ZMM31, "zmm31" },
307*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R8B, "r8b" },
308*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R9B, "r9b" },
309*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R10B, "r10b" },
310*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R11B, "r11b" },
311*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R12B, "r12b" },
312*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R13B, "r13b" },
313*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R14B, "r14b" },
314*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R15B, "r15b" },
315*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R8D, "r8d" },
316*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R9D, "r9d" },
317*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R10D, "r10d" },
318*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R11D, "r11d" },
319*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R12D, "r12d" },
320*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R13D, "r13d" },
321*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R14D, "r14d" },
322*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R15D, "r15d" },
323*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R8W, "r8w" },
324*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R9W, "r9w" },
325*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R10W, "r10w" },
326*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R11W, "r11w" },
327*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R12W, "r12w" },
328*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R13W, "r13w" },
329*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R14W, "r14w" },
330*9a0e4156SSadaf Ebrahimi 	{ X86_REG_R15W, "r15w" },
331*9a0e4156SSadaf Ebrahimi };
332*9a0e4156SSadaf Ebrahimi #endif
333*9a0e4156SSadaf Ebrahimi 
334*9a0e4156SSadaf Ebrahimi // register size in non-64bit mode
335*9a0e4156SSadaf Ebrahimi const uint8_t regsize_map_32 [] = {
336*9a0e4156SSadaf Ebrahimi 	0,	// 	{ X86_REG_INVALID, NULL },
337*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_AH, "ah" },
338*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_AL, "al" },
339*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_AX, "ax" },
340*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_BH, "bh" },
341*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_BL, "bl" },
342*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_BP, "bp" },
343*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_BPL, "bpl" },
344*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_BX, "bx" },
345*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_CH, "ch" },
346*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_CL, "cl" },
347*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_CS, "cs" },
348*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_CX, "cx" },
349*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_DH, "dh" },
350*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_DI, "di" },
351*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_DIL, "dil" },
352*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_DL, "dl" },
353*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_DS, "ds" },
354*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_DX, "dx" },
355*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EAX, "eax" },
356*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EBP, "ebp" },
357*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EBX, "ebx" },
358*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_ECX, "ecx" },
359*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EDI, "edi" },
360*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EDX, "edx" },
361*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EFLAGS, "flags" },
362*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EIP, "eip" },
363*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EIZ, "eiz" },
364*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_ES, "es" },
365*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_ESI, "esi" },
366*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_ESP, "esp" },
367*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FPSW, "fpsw" },
368*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_FS, "fs" },
369*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_GS, "gs" },
370*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_IP, "ip" },
371*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RAX, "rax" },
372*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RBP, "rbp" },
373*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RBX, "rbx" },
374*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RCX, "rcx" },
375*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RDI, "rdi" },
376*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RDX, "rdx" },
377*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RIP, "rip" },
378*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RIZ, "riz" },
379*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RSI, "rsi" },
380*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RSP, "rsp" },
381*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_SI, "si" },
382*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_SIL, "sil" },
383*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_SP, "sp" },
384*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_SPL, "spl" },
385*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_SS, "ss" },
386*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_CR0, "cr0" },
387*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_CR1, "cr1" },
388*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_CR2, "cr2" },
389*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_CR3, "cr3" },
390*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_CR4, "cr4" },
391*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR5, "cr5" },
392*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR6, "cr6" },
393*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR7, "cr7" },
394*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR8, "cr8" },
395*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR9, "cr9" },
396*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR10, "cr10" },
397*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR11, "cr11" },
398*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR12, "cr12" },
399*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR13, "cr13" },
400*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR14, "cr14" },
401*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR15, "cr15" },
402*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR0, "dr0" },
403*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR1, "dr1" },
404*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR2, "dr2" },
405*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR3, "dr3" },
406*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR4, "dr4" },
407*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR5, "dr5" },
408*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR6, "dr6" },
409*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR7, "dr7" },
410*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR8, "dr8" },
411*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR9, "dr9" },
412*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR10, "dr10" },
413*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR11, "dr11" },
414*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR12, "dr12" },
415*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR13, "dr13" },
416*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR14, "dr14" },
417*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_DR15, "dr15" },
418*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP0, "fp0" },
419*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP1, "fp1" },
420*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP2, "fp2" },
421*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP3, "fp3" },
422*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP4, "fp4" },
423*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP5, "fp5" },
424*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP6, "fp6" },
425*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP7, "fp7" },
426*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K0, "k0" },
427*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K1, "k1" },
428*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K2, "k2" },
429*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K3, "k3" },
430*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K4, "k4" },
431*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K5, "k5" },
432*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K6, "k6" },
433*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K7, "k7" },
434*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM0, "mm0" },
435*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM1, "mm1" },
436*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM2, "mm2" },
437*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM3, "mm3" },
438*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM4, "mm4" },
439*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM5, "mm5" },
440*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM6, "mm6" },
441*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM7, "mm7" },
442*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R8, "r8" },
443*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R9, "r9" },
444*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R10, "r10" },
445*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R11, "r11" },
446*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R12, "r12" },
447*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R13, "r13" },
448*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R14, "r14" },
449*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R15, "r15" },
450*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST0, "st0" },
451*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST1, "st1" },
452*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST2, "st2" },
453*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST3, "st3" },
454*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST4, "st4" },
455*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST5, "st5" },
456*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST6, "st6" },
457*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST7, "st7" },
458*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM0, "xmm0" },
459*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM1, "xmm1" },
460*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM2, "xmm2" },
461*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM3, "xmm3" },
462*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM4, "xmm4" },
463*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM5, "xmm5" },
464*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM6, "xmm6" },
465*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM7, "xmm7" },
466*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM8, "xmm8" },
467*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM9, "xmm9" },
468*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM10, "xmm10" },
469*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM11, "xmm11" },
470*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM12, "xmm12" },
471*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM13, "xmm13" },
472*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM14, "xmm14" },
473*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM15, "xmm15" },
474*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM16, "xmm16" },
475*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM17, "xmm17" },
476*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM18, "xmm18" },
477*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM19, "xmm19" },
478*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM20, "xmm20" },
479*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM21, "xmm21" },
480*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM22, "xmm22" },
481*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM23, "xmm23" },
482*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM24, "xmm24" },
483*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM25, "xmm25" },
484*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM26, "xmm26" },
485*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM27, "xmm27" },
486*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM28, "xmm28" },
487*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM29, "xmm29" },
488*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM30, "xmm30" },
489*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM31, "xmm31" },
490*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM0, "ymm0" },
491*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM1, "ymm1" },
492*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM2, "ymm2" },
493*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM3, "ymm3" },
494*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM4, "ymm4" },
495*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM5, "ymm5" },
496*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM6, "ymm6" },
497*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM7, "ymm7" },
498*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM8, "ymm8" },
499*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM9, "ymm9" },
500*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM10, "ymm10" },
501*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM11, "ymm11" },
502*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM12, "ymm12" },
503*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM13, "ymm13" },
504*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM14, "ymm14" },
505*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM15, "ymm15" },
506*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM16, "ymm16" },
507*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM17, "ymm17" },
508*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM18, "ymm18" },
509*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM19, "ymm19" },
510*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM20, "ymm20" },
511*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM21, "ymm21" },
512*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM22, "ymm22" },
513*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM23, "ymm23" },
514*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM24, "ymm24" },
515*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM25, "ymm25" },
516*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM26, "ymm26" },
517*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM27, "ymm27" },
518*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM28, "ymm28" },
519*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM29, "ymm29" },
520*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM30, "ymm30" },
521*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM31, "ymm31" },
522*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM0, "zmm0" },
523*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM1, "zmm1" },
524*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM2, "zmm2" },
525*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM3, "zmm3" },
526*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM4, "zmm4" },
527*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM5, "zmm5" },
528*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM6, "zmm6" },
529*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM7, "zmm7" },
530*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM8, "zmm8" },
531*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM9, "zmm9" },
532*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM10, "zmm10" },
533*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM11, "zmm11" },
534*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM12, "zmm12" },
535*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM13, "zmm13" },
536*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM14, "zmm14" },
537*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM15, "zmm15" },
538*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM16, "zmm16" },
539*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM17, "zmm17" },
540*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM18, "zmm18" },
541*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM19, "zmm19" },
542*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM20, "zmm20" },
543*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM21, "zmm21" },
544*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM22, "zmm22" },
545*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM23, "zmm23" },
546*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM24, "zmm24" },
547*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM25, "zmm25" },
548*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM26, "zmm26" },
549*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM27, "zmm27" },
550*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM28, "zmm28" },
551*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM29, "zmm29" },
552*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM30, "zmm30" },
553*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM31, "zmm31" },
554*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R8B, "r8b" },
555*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R9B, "r9b" },
556*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R10B, "r10b" },
557*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R11B, "r11b" },
558*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R12B, "r12b" },
559*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R13B, "r13b" },
560*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R14B, "r14b" },
561*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R15B, "r15b" },
562*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R8D, "r8d" },
563*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R9D, "r9d" },
564*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R10D, "r10d" },
565*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R11D, "r11d" },
566*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R12D, "r12d" },
567*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R13D, "r13d" },
568*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R14D, "r14d" },
569*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R15D, "r15d" },
570*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R8W, "r8w" },
571*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R9W, "r9w" },
572*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R10W, "r10w" },
573*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R11W, "r11w" },
574*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R12W, "r12w" },
575*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R13W, "r13w" },
576*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R14W, "r14w" },
577*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R15W, "r15w" },
578*9a0e4156SSadaf Ebrahimi };
579*9a0e4156SSadaf Ebrahimi 
580*9a0e4156SSadaf Ebrahimi // register size in 64bit mode
581*9a0e4156SSadaf Ebrahimi const uint8_t regsize_map_64 [] = {
582*9a0e4156SSadaf Ebrahimi 	0,	// 	{ X86_REG_INVALID, NULL },
583*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_AH, "ah" },
584*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_AL, "al" },
585*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_AX, "ax" },
586*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_BH, "bh" },
587*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_BL, "bl" },
588*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_BP, "bp" },
589*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_BPL, "bpl" },
590*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_BX, "bx" },
591*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_CH, "ch" },
592*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_CL, "cl" },
593*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_CS, "cs" },
594*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_CX, "cx" },
595*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_DH, "dh" },
596*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_DI, "di" },
597*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_DIL, "dil" },
598*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_DL, "dl" },
599*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_DS, "ds" },
600*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_DX, "dx" },
601*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EAX, "eax" },
602*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EBP, "ebp" },
603*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EBX, "ebx" },
604*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_ECX, "ecx" },
605*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EDI, "edi" },
606*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EDX, "edx" },
607*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_EFLAGS, "flags" },
608*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EIP, "eip" },
609*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_EIZ, "eiz" },
610*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_ES, "es" },
611*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_ESI, "esi" },
612*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_ESP, "esp" },
613*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FPSW, "fpsw" },
614*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_FS, "fs" },
615*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_GS, "gs" },
616*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_IP, "ip" },
617*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RAX, "rax" },
618*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RBP, "rbp" },
619*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RBX, "rbx" },
620*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RCX, "rcx" },
621*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RDI, "rdi" },
622*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RDX, "rdx" },
623*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RIP, "rip" },
624*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RIZ, "riz" },
625*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RSI, "rsi" },
626*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_RSP, "rsp" },
627*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_SI, "si" },
628*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_SIL, "sil" },
629*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_SP, "sp" },
630*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_SPL, "spl" },
631*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_SS, "ss" },
632*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR0, "cr0" },
633*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR1, "cr1" },
634*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR2, "cr2" },
635*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR3, "cr3" },
636*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR4, "cr4" },
637*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR5, "cr5" },
638*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR6, "cr6" },
639*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR7, "cr7" },
640*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR8, "cr8" },
641*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR9, "cr9" },
642*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR10, "cr10" },
643*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR11, "cr11" },
644*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR12, "cr12" },
645*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR13, "cr13" },
646*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR14, "cr14" },
647*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_CR15, "cr15" },
648*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR0, "dr0" },
649*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR1, "dr1" },
650*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR2, "dr2" },
651*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR3, "dr3" },
652*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR4, "dr4" },
653*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR5, "dr5" },
654*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR6, "dr6" },
655*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR7, "dr7" },
656*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR8, "dr8" },
657*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR9, "dr9" },
658*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR10, "dr10" },
659*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR11, "dr11" },
660*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR12, "dr12" },
661*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR13, "dr13" },
662*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR14, "dr14" },
663*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_DR15, "dr15" },
664*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP0, "fp0" },
665*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP1, "fp1" },
666*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP2, "fp2" },
667*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP3, "fp3" },
668*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP4, "fp4" },
669*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP5, "fp5" },
670*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP6, "fp6" },
671*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_FP7, "fp7" },
672*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K0, "k0" },
673*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K1, "k1" },
674*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K2, "k2" },
675*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K3, "k3" },
676*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K4, "k4" },
677*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K5, "k5" },
678*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K6, "k6" },
679*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_K7, "k7" },
680*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM0, "mm0" },
681*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM1, "mm1" },
682*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM2, "mm2" },
683*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM3, "mm3" },
684*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM4, "mm4" },
685*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM5, "mm5" },
686*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM6, "mm6" },
687*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_MM7, "mm7" },
688*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R8, "r8" },
689*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R9, "r9" },
690*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R10, "r10" },
691*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R11, "r11" },
692*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R12, "r12" },
693*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R13, "r13" },
694*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R14, "r14" },
695*9a0e4156SSadaf Ebrahimi 	8,	// { X86_REG_R15, "r15" },
696*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST0, "st0" },
697*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST1, "st1" },
698*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST2, "st2" },
699*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST3, "st3" },
700*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST4, "st4" },
701*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST5, "st5" },
702*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST6, "st6" },
703*9a0e4156SSadaf Ebrahimi 	10,	// { X86_REG_ST7, "st7" },
704*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM0, "xmm0" },
705*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM1, "xmm1" },
706*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM2, "xmm2" },
707*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM3, "xmm3" },
708*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM4, "xmm4" },
709*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM5, "xmm5" },
710*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM6, "xmm6" },
711*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM7, "xmm7" },
712*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM8, "xmm8" },
713*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM9, "xmm9" },
714*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM10, "xmm10" },
715*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM11, "xmm11" },
716*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM12, "xmm12" },
717*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM13, "xmm13" },
718*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM14, "xmm14" },
719*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM15, "xmm15" },
720*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM16, "xmm16" },
721*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM17, "xmm17" },
722*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM18, "xmm18" },
723*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM19, "xmm19" },
724*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM20, "xmm20" },
725*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM21, "xmm21" },
726*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM22, "xmm22" },
727*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM23, "xmm23" },
728*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM24, "xmm24" },
729*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM25, "xmm25" },
730*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM26, "xmm26" },
731*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM27, "xmm27" },
732*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM28, "xmm28" },
733*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM29, "xmm29" },
734*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM30, "xmm30" },
735*9a0e4156SSadaf Ebrahimi 	16,	// { X86_REG_XMM31, "xmm31" },
736*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM0, "ymm0" },
737*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM1, "ymm1" },
738*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM2, "ymm2" },
739*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM3, "ymm3" },
740*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM4, "ymm4" },
741*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM5, "ymm5" },
742*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM6, "ymm6" },
743*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM7, "ymm7" },
744*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM8, "ymm8" },
745*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM9, "ymm9" },
746*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM10, "ymm10" },
747*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM11, "ymm11" },
748*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM12, "ymm12" },
749*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM13, "ymm13" },
750*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM14, "ymm14" },
751*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM15, "ymm15" },
752*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM16, "ymm16" },
753*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM17, "ymm17" },
754*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM18, "ymm18" },
755*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM19, "ymm19" },
756*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM20, "ymm20" },
757*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM21, "ymm21" },
758*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM22, "ymm22" },
759*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM23, "ymm23" },
760*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM24, "ymm24" },
761*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM25, "ymm25" },
762*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM26, "ymm26" },
763*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM27, "ymm27" },
764*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM28, "ymm28" },
765*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM29, "ymm29" },
766*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM30, "ymm30" },
767*9a0e4156SSadaf Ebrahimi 	32,	// { X86_REG_YMM31, "ymm31" },
768*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM0, "zmm0" },
769*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM1, "zmm1" },
770*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM2, "zmm2" },
771*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM3, "zmm3" },
772*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM4, "zmm4" },
773*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM5, "zmm5" },
774*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM6, "zmm6" },
775*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM7, "zmm7" },
776*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM8, "zmm8" },
777*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM9, "zmm9" },
778*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM10, "zmm10" },
779*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM11, "zmm11" },
780*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM12, "zmm12" },
781*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM13, "zmm13" },
782*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM14, "zmm14" },
783*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM15, "zmm15" },
784*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM16, "zmm16" },
785*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM17, "zmm17" },
786*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM18, "zmm18" },
787*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM19, "zmm19" },
788*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM20, "zmm20" },
789*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM21, "zmm21" },
790*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM22, "zmm22" },
791*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM23, "zmm23" },
792*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM24, "zmm24" },
793*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM25, "zmm25" },
794*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM26, "zmm26" },
795*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM27, "zmm27" },
796*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM28, "zmm28" },
797*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM29, "zmm29" },
798*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM30, "zmm30" },
799*9a0e4156SSadaf Ebrahimi 	64,	// { X86_REG_ZMM31, "zmm31" },
800*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R8B, "r8b" },
801*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R9B, "r9b" },
802*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R10B, "r10b" },
803*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R11B, "r11b" },
804*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R12B, "r12b" },
805*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R13B, "r13b" },
806*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R14B, "r14b" },
807*9a0e4156SSadaf Ebrahimi 	1,	// { X86_REG_R15B, "r15b" },
808*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R8D, "r8d" },
809*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R9D, "r9d" },
810*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R10D, "r10d" },
811*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R11D, "r11d" },
812*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R12D, "r12d" },
813*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R13D, "r13d" },
814*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R14D, "r14d" },
815*9a0e4156SSadaf Ebrahimi 	4,	// { X86_REG_R15D, "r15d" },
816*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R8W, "r8w" },
817*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R9W, "r9w" },
818*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R10W, "r10w" },
819*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R11W, "r11w" },
820*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R12W, "r12w" },
821*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R13W, "r13w" },
822*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R14W, "r14w" },
823*9a0e4156SSadaf Ebrahimi 	2,	// { X86_REG_R15W, "r15w" },
824*9a0e4156SSadaf Ebrahimi };
825*9a0e4156SSadaf Ebrahimi 
X86_reg_name(csh handle,unsigned int reg)826*9a0e4156SSadaf Ebrahimi const char *X86_reg_name(csh handle, unsigned int reg)
827*9a0e4156SSadaf Ebrahimi {
828*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
829*9a0e4156SSadaf Ebrahimi 	cs_struct *ud = (cs_struct *)handle;
830*9a0e4156SSadaf Ebrahimi 
831*9a0e4156SSadaf Ebrahimi 	if (reg >= ARR_SIZE(reg_name_maps))
832*9a0e4156SSadaf Ebrahimi 		return NULL;
833*9a0e4156SSadaf Ebrahimi 
834*9a0e4156SSadaf Ebrahimi 	if (reg == X86_REG_EFLAGS) {
835*9a0e4156SSadaf Ebrahimi 		if (ud->mode & CS_MODE_32)
836*9a0e4156SSadaf Ebrahimi 			return "eflags";
837*9a0e4156SSadaf Ebrahimi 		if (ud->mode & CS_MODE_64)
838*9a0e4156SSadaf Ebrahimi 			return "rflags";
839*9a0e4156SSadaf Ebrahimi 	}
840*9a0e4156SSadaf Ebrahimi 
841*9a0e4156SSadaf Ebrahimi 	return reg_name_maps[reg].name;
842*9a0e4156SSadaf Ebrahimi #else
843*9a0e4156SSadaf Ebrahimi 	return NULL;
844*9a0e4156SSadaf Ebrahimi #endif
845*9a0e4156SSadaf Ebrahimi }
846*9a0e4156SSadaf Ebrahimi 
847*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
848*9a0e4156SSadaf Ebrahimi static const name_map insn_name_maps[] = {
849*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVALID, NULL },
850*9a0e4156SSadaf Ebrahimi 
851*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AAA, "aaa" },
852*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AAD, "aad" },
853*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AAM, "aam" },
854*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AAS, "aas" },
855*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FABS, "fabs" },
856*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADC, "adc" },
857*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADCX, "adcx" },
858*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADD, "add" },
859*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADDPD, "addpd" },
860*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADDPS, "addps" },
861*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADDSD, "addsd" },
862*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADDSS, "addss" },
863*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADDSUBPD, "addsubpd" },
864*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADDSUBPS, "addsubps" },
865*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FADD, "fadd" },
866*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FIADD, "fiadd" },
867*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FADDP, "faddp" },
868*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ADOX, "adox" },
869*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AESDECLAST, "aesdeclast" },
870*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AESDEC, "aesdec" },
871*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AESENCLAST, "aesenclast" },
872*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AESENC, "aesenc" },
873*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AESIMC, "aesimc" },
874*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AESKEYGENASSIST, "aeskeygenassist" },
875*9a0e4156SSadaf Ebrahimi 	{ X86_INS_AND, "and" },
876*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ANDN, "andn" },
877*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ANDNPD, "andnpd" },
878*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ANDNPS, "andnps" },
879*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ANDPD, "andpd" },
880*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ANDPS, "andps" },
881*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ARPL, "arpl" },
882*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BEXTR, "bextr" },
883*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLCFILL, "blcfill" },
884*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLCI, "blci" },
885*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLCIC, "blcic" },
886*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLCMSK, "blcmsk" },
887*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLCS, "blcs" },
888*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLENDPD, "blendpd" },
889*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLENDPS, "blendps" },
890*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLENDVPD, "blendvpd" },
891*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLENDVPS, "blendvps" },
892*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLSFILL, "blsfill" },
893*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLSI, "blsi" },
894*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLSIC, "blsic" },
895*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLSMSK, "blsmsk" },
896*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BLSR, "blsr" },
897*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BOUND, "bound" },
898*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BSF, "bsf" },
899*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BSR, "bsr" },
900*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BSWAP, "bswap" },
901*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BT, "bt" },
902*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BTC, "btc" },
903*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BTR, "btr" },
904*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BTS, "bts" },
905*9a0e4156SSadaf Ebrahimi 	{ X86_INS_BZHI, "bzhi" },
906*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CALL, "call" },
907*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CBW, "cbw" },
908*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CDQ, "cdq" },
909*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CDQE, "cdqe" },
910*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCHS, "fchs" },
911*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLAC, "clac" },
912*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLC, "clc" },
913*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLD, "cld" },
914*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLFLUSH, "clflush" },
915*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLFLUSHOPT, "clflushopt" },
916*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLGI, "clgi" },
917*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLI, "cli" },
918*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLTS, "clts" },
919*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CLWB, "clwb" },
920*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMC, "cmc" },
921*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVA, "cmova" },
922*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVAE, "cmovae" },
923*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVB, "cmovb" },
924*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVBE, "cmovbe" },
925*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVBE, "fcmovbe" },
926*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVB, "fcmovb" },
927*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVE, "cmove" },
928*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVE, "fcmove" },
929*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVG, "cmovg" },
930*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVGE, "cmovge" },
931*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVL, "cmovl" },
932*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVLE, "cmovle" },
933*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVNBE, "fcmovnbe" },
934*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVNB, "fcmovnb" },
935*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVNE, "cmovne" },
936*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVNE, "fcmovne" },
937*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVNO, "cmovno" },
938*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVNP, "cmovnp" },
939*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVNU, "fcmovnu" },
940*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVNS, "cmovns" },
941*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVO, "cmovo" },
942*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVP, "cmovp" },
943*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCMOVU, "fcmovu" },
944*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMOVS, "cmovs" },
945*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMP, "cmp" },
946*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPSB, "cmpsb" },
947*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPSQ, "cmpsq" },
948*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPSW, "cmpsw" },
949*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPXCHG16B, "cmpxchg16b" },
950*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPXCHG, "cmpxchg" },
951*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPXCHG8B, "cmpxchg8b" },
952*9a0e4156SSadaf Ebrahimi 	{ X86_INS_COMISD, "comisd" },
953*9a0e4156SSadaf Ebrahimi 	{ X86_INS_COMISS, "comiss" },
954*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCOMP, "fcomp" },
955*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCOMIP, "fcomip" },
956*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCOMI, "fcomi" },
957*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCOM, "fcom" },
958*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCOS, "fcos" },
959*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CPUID, "cpuid" },
960*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CQO, "cqo" },
961*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CRC32, "crc32" },
962*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTDQ2PD, "cvtdq2pd" },
963*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTDQ2PS, "cvtdq2ps" },
964*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPD2DQ, "cvtpd2dq" },
965*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPD2PS, "cvtpd2ps" },
966*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPS2DQ, "cvtps2dq" },
967*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPS2PD, "cvtps2pd" },
968*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTSD2SI, "cvtsd2si" },
969*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTSD2SS, "cvtsd2ss" },
970*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTSI2SD, "cvtsi2sd" },
971*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTSI2SS, "cvtsi2ss" },
972*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTSS2SD, "cvtss2sd" },
973*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTSS2SI, "cvtss2si" },
974*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTTPD2DQ, "cvttpd2dq" },
975*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTTPS2DQ, "cvttps2dq" },
976*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTTSD2SI, "cvttsd2si" },
977*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTTSS2SI, "cvttss2si" },
978*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CWD, "cwd" },
979*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CWDE, "cwde" },
980*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DAA, "daa" },
981*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DAS, "das" },
982*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DATA16, "data16" },
983*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DEC, "dec" },
984*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DIV, "div" },
985*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DIVPD, "divpd" },
986*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DIVPS, "divps" },
987*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FDIVR, "fdivr" },
988*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FIDIVR, "fidivr" },
989*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FDIVRP, "fdivrp" },
990*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DIVSD, "divsd" },
991*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DIVSS, "divss" },
992*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FDIV, "fdiv" },
993*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FIDIV, "fidiv" },
994*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FDIVP, "fdivp" },
995*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DPPD, "dppd" },
996*9a0e4156SSadaf Ebrahimi 	{ X86_INS_DPPS, "dpps" },
997*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RET, "ret" },
998*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ENCLS, "encls" },
999*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ENCLU, "enclu" },
1000*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ENTER, "enter" },
1001*9a0e4156SSadaf Ebrahimi 	{ X86_INS_EXTRACTPS, "extractps" },
1002*9a0e4156SSadaf Ebrahimi 	{ X86_INS_EXTRQ, "extrq" },
1003*9a0e4156SSadaf Ebrahimi 	{ X86_INS_F2XM1, "f2xm1" },
1004*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LCALL, "lcall" },
1005*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LJMP, "ljmp" },
1006*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FBLD, "fbld" },
1007*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FBSTP, "fbstp" },
1008*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FCOMPP, "fcompp" },
1009*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FDECSTP, "fdecstp" },
1010*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FEMMS, "femms" },
1011*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FFREE, "ffree" },
1012*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FICOM, "ficom" },
1013*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FICOMP, "ficomp" },
1014*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FINCSTP, "fincstp" },
1015*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDCW, "fldcw" },
1016*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDENV, "fldenv" },
1017*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDL2E, "fldl2e" },
1018*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDL2T, "fldl2t" },
1019*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDLG2, "fldlg2" },
1020*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDLN2, "fldln2" },
1021*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDPI, "fldpi" },
1022*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNCLEX, "fnclex" },
1023*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNINIT, "fninit" },
1024*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNOP, "fnop" },
1025*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNSTCW, "fnstcw" },
1026*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNSTSW, "fnstsw" },
1027*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FPATAN, "fpatan" },
1028*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FPREM, "fprem" },
1029*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FPREM1, "fprem1" },
1030*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FPTAN, "fptan" },
1031*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FFREEP, "ffreep" },
1032*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FRNDINT, "frndint" },
1033*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FRSTOR, "frstor" },
1034*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNSAVE, "fnsave" },
1035*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSCALE, "fscale" },
1036*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSETPM, "fsetpm" },
1037*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSINCOS, "fsincos" },
1038*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FNSTENV, "fnstenv" },
1039*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXAM, "fxam" },
1040*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXRSTOR, "fxrstor" },
1041*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXRSTOR64, "fxrstor64" },
1042*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXSAVE, "fxsave" },
1043*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXSAVE64, "fxsave64" },
1044*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXTRACT, "fxtract" },
1045*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FYL2X, "fyl2x" },
1046*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FYL2XP1, "fyl2xp1" },
1047*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVAPD, "movapd" },
1048*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVAPS, "movaps" },
1049*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ORPD, "orpd" },
1050*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ORPS, "orps" },
1051*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVAPD, "vmovapd" },
1052*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVAPS, "vmovaps" },
1053*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XORPD, "xorpd" },
1054*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XORPS, "xorps" },
1055*9a0e4156SSadaf Ebrahimi 	{ X86_INS_GETSEC, "getsec" },
1056*9a0e4156SSadaf Ebrahimi 	{ X86_INS_HADDPD, "haddpd" },
1057*9a0e4156SSadaf Ebrahimi 	{ X86_INS_HADDPS, "haddps" },
1058*9a0e4156SSadaf Ebrahimi 	{ X86_INS_HLT, "hlt" },
1059*9a0e4156SSadaf Ebrahimi 	{ X86_INS_HSUBPD, "hsubpd" },
1060*9a0e4156SSadaf Ebrahimi 	{ X86_INS_HSUBPS, "hsubps" },
1061*9a0e4156SSadaf Ebrahimi 	{ X86_INS_IDIV, "idiv" },
1062*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FILD, "fild" },
1063*9a0e4156SSadaf Ebrahimi 	{ X86_INS_IMUL, "imul" },
1064*9a0e4156SSadaf Ebrahimi 	{ X86_INS_IN, "in" },
1065*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INC, "inc" },
1066*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INSB, "insb" },
1067*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INSERTPS, "insertps" },
1068*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INSERTQ, "insertq" },
1069*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INSD, "insd" },
1070*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INSW, "insw" },
1071*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INT, "int" },
1072*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INT1, "int1" },
1073*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INT3, "int3" },
1074*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INTO, "into" },
1075*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVD, "invd" },
1076*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVEPT, "invept" },
1077*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVLPG, "invlpg" },
1078*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVLPGA, "invlpga" },
1079*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVPCID, "invpcid" },
1080*9a0e4156SSadaf Ebrahimi 	{ X86_INS_INVVPID, "invvpid" },
1081*9a0e4156SSadaf Ebrahimi 	{ X86_INS_IRET, "iret" },
1082*9a0e4156SSadaf Ebrahimi 	{ X86_INS_IRETD, "iretd" },
1083*9a0e4156SSadaf Ebrahimi 	{ X86_INS_IRETQ, "iretq" },
1084*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FISTTP, "fisttp" },
1085*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FIST, "fist" },
1086*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FISTP, "fistp" },
1087*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UCOMISD, "ucomisd" },
1088*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UCOMISS, "ucomiss" },
1089*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCOMISD, "vcomisd" },
1090*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCOMISS, "vcomiss" },
1091*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSD2SS, "vcvtsd2ss" },
1092*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSI2SD, "vcvtsi2sd" },
1093*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSI2SS, "vcvtsi2ss" },
1094*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSS2SD, "vcvtss2sd" },
1095*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTSD2SI, "vcvttsd2si" },
1096*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTSD2USI, "vcvttsd2usi" },
1097*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTSS2SI, "vcvttss2si" },
1098*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTSS2USI, "vcvttss2usi" },
1099*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTUSI2SD, "vcvtusi2sd" },
1100*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTUSI2SS, "vcvtusi2ss" },
1101*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VUCOMISD, "vucomisd" },
1102*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VUCOMISS, "vucomiss" },
1103*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JAE, "jae" },
1104*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JA, "ja" },
1105*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JBE, "jbe" },
1106*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JB, "jb" },
1107*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JCXZ, "jcxz" },
1108*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JECXZ, "jecxz" },
1109*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JE, "je" },
1110*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JGE, "jge" },
1111*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JG, "jg" },
1112*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JLE, "jle" },
1113*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JL, "jl" },
1114*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JMP, "jmp" },
1115*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JNE, "jne" },
1116*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JNO, "jno" },
1117*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JNP, "jnp" },
1118*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JNS, "jns" },
1119*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JO, "jo" },
1120*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JP, "jp" },
1121*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JRCXZ, "jrcxz" },
1122*9a0e4156SSadaf Ebrahimi 	{ X86_INS_JS, "js" },
1123*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDB, "kandb" },
1124*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDD, "kandd" },
1125*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDNB, "kandnb" },
1126*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDND, "kandnd" },
1127*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDNQ, "kandnq" },
1128*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDNW, "kandnw" },
1129*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDQ, "kandq" },
1130*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KANDW, "kandw" },
1131*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KMOVB, "kmovb" },
1132*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KMOVD, "kmovd" },
1133*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KMOVQ, "kmovq" },
1134*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KMOVW, "kmovw" },
1135*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KNOTB, "knotb" },
1136*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KNOTD, "knotd" },
1137*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KNOTQ, "knotq" },
1138*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KNOTW, "knotw" },
1139*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORB, "korb" },
1140*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORD, "kord" },
1141*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORQ, "korq" },
1142*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORTESTB, "kortestb" },
1143*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORTESTD, "kortestd" },
1144*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORTESTQ, "kortestq" },
1145*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORTESTW, "kortestw" },
1146*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KORW, "korw" },
1147*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTLB, "kshiftlb" },
1148*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTLD, "kshiftld" },
1149*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTLQ, "kshiftlq" },
1150*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTLW, "kshiftlw" },
1151*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTRB, "kshiftrb" },
1152*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTRD, "kshiftrd" },
1153*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTRQ, "kshiftrq" },
1154*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KSHIFTRW, "kshiftrw" },
1155*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KUNPCKBW, "kunpckbw" },
1156*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXNORB, "kxnorb" },
1157*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXNORD, "kxnord" },
1158*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXNORQ, "kxnorq" },
1159*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXNORW, "kxnorw" },
1160*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXORB, "kxorb" },
1161*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXORD, "kxord" },
1162*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXORQ, "kxorq" },
1163*9a0e4156SSadaf Ebrahimi 	{ X86_INS_KXORW, "kxorw" },
1164*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LAHF, "lahf" },
1165*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LAR, "lar" },
1166*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LDDQU, "lddqu" },
1167*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LDMXCSR, "ldmxcsr" },
1168*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LDS, "lds" },
1169*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLDZ, "fldz" },
1170*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLD1, "fld1" },
1171*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FLD, "fld" },
1172*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LEA, "lea" },
1173*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LEAVE, "leave" },
1174*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LES, "les" },
1175*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LFENCE, "lfence" },
1176*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LFS, "lfs" },
1177*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LGDT, "lgdt" },
1178*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LGS, "lgs" },
1179*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LIDT, "lidt" },
1180*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LLDT, "lldt" },
1181*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LMSW, "lmsw" },
1182*9a0e4156SSadaf Ebrahimi 	{ X86_INS_OR, "or" },
1183*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SUB, "sub" },
1184*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XOR, "xor" },
1185*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LODSB, "lodsb" },
1186*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LODSD, "lodsd" },
1187*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LODSQ, "lodsq" },
1188*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LODSW, "lodsw" },
1189*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LOOP, "loop" },
1190*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LOOPE, "loope" },
1191*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LOOPNE, "loopne" },
1192*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RETF, "retf" },
1193*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RETFQ, "retfq" },
1194*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LSL, "lsl" },
1195*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LSS, "lss" },
1196*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LTR, "ltr" },
1197*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XADD, "xadd" },
1198*9a0e4156SSadaf Ebrahimi 	{ X86_INS_LZCNT, "lzcnt" },
1199*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MASKMOVDQU, "maskmovdqu" },
1200*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MAXPD, "maxpd" },
1201*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MAXPS, "maxps" },
1202*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MAXSD, "maxsd" },
1203*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MAXSS, "maxss" },
1204*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MFENCE, "mfence" },
1205*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MINPD, "minpd" },
1206*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MINPS, "minps" },
1207*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MINSD, "minsd" },
1208*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MINSS, "minss" },
1209*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPD2PI, "cvtpd2pi" },
1210*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPI2PD, "cvtpi2pd" },
1211*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPI2PS, "cvtpi2ps" },
1212*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTPS2PI, "cvtps2pi" },
1213*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTTPD2PI, "cvttpd2pi" },
1214*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CVTTPS2PI, "cvttps2pi" },
1215*9a0e4156SSadaf Ebrahimi 	{ X86_INS_EMMS, "emms" },
1216*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MASKMOVQ, "maskmovq" },
1217*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVD, "movd" },
1218*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVDQ2Q, "movdq2q" },
1219*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTQ, "movntq" },
1220*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVQ2DQ, "movq2dq" },
1221*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVQ, "movq" },
1222*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PABSB, "pabsb" },
1223*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PABSD, "pabsd" },
1224*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PABSW, "pabsw" },
1225*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PACKSSDW, "packssdw" },
1226*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PACKSSWB, "packsswb" },
1227*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PACKUSWB, "packuswb" },
1228*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDB, "paddb" },
1229*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDD, "paddd" },
1230*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDQ, "paddq" },
1231*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDSB, "paddsb" },
1232*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDSW, "paddsw" },
1233*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDUSB, "paddusb" },
1234*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDUSW, "paddusw" },
1235*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PADDW, "paddw" },
1236*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PALIGNR, "palignr" },
1237*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PANDN, "pandn" },
1238*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PAND, "pand" },
1239*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PAVGB, "pavgb" },
1240*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PAVGW, "pavgw" },
1241*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPEQB, "pcmpeqb" },
1242*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPEQD, "pcmpeqd" },
1243*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPEQW, "pcmpeqw" },
1244*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPGTB, "pcmpgtb" },
1245*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPGTD, "pcmpgtd" },
1246*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPGTW, "pcmpgtw" },
1247*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PEXTRW, "pextrw" },
1248*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHADDSW, "phaddsw" },
1249*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHADDW, "phaddw" },
1250*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHADDD, "phaddd" },
1251*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHSUBD, "phsubd" },
1252*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHSUBSW, "phsubsw" },
1253*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHSUBW, "phsubw" },
1254*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PINSRW, "pinsrw" },
1255*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMADDUBSW, "pmaddubsw" },
1256*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMADDWD, "pmaddwd" },
1257*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMAXSW, "pmaxsw" },
1258*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMAXUB, "pmaxub" },
1259*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMINSW, "pminsw" },
1260*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMINUB, "pminub" },
1261*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVMSKB, "pmovmskb" },
1262*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULHRSW, "pmulhrsw" },
1263*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULHUW, "pmulhuw" },
1264*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULHW, "pmulhw" },
1265*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULLW, "pmullw" },
1266*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULUDQ, "pmuludq" },
1267*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POR, "por" },
1268*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSADBW, "psadbw" },
1269*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSHUFB, "pshufb" },
1270*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSHUFW, "pshufw" },
1271*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSIGNB, "psignb" },
1272*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSIGND, "psignd" },
1273*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSIGNW, "psignw" },
1274*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSLLD, "pslld" },
1275*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSLLQ, "psllq" },
1276*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSLLW, "psllw" },
1277*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSRAD, "psrad" },
1278*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSRAW, "psraw" },
1279*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSRLD, "psrld" },
1280*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSRLQ, "psrlq" },
1281*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSRLW, "psrlw" },
1282*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBB, "psubb" },
1283*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBD, "psubd" },
1284*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBQ, "psubq" },
1285*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBSB, "psubsb" },
1286*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBSW, "psubsw" },
1287*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBUSB, "psubusb" },
1288*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBUSW, "psubusw" },
1289*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSUBW, "psubw" },
1290*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKHBW, "punpckhbw" },
1291*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKHDQ, "punpckhdq" },
1292*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKHWD, "punpckhwd" },
1293*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKLBW, "punpcklbw" },
1294*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKLDQ, "punpckldq" },
1295*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKLWD, "punpcklwd" },
1296*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PXOR, "pxor" },
1297*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MONITOR, "monitor" },
1298*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MONTMUL, "montmul" },
1299*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOV, "mov" },
1300*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVABS, "movabs" },
1301*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVBE, "movbe" },
1302*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVDDUP, "movddup" },
1303*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVDQA, "movdqa" },
1304*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVDQU, "movdqu" },
1305*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVHLPS, "movhlps" },
1306*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVHPD, "movhpd" },
1307*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVHPS, "movhps" },
1308*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVLHPS, "movlhps" },
1309*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVLPD, "movlpd" },
1310*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVLPS, "movlps" },
1311*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVMSKPD, "movmskpd" },
1312*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVMSKPS, "movmskps" },
1313*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTDQA, "movntdqa" },
1314*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTDQ, "movntdq" },
1315*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTI, "movnti" },
1316*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTPD, "movntpd" },
1317*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTPS, "movntps" },
1318*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTSD, "movntsd" },
1319*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVNTSS, "movntss" },
1320*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSB, "movsb" },
1321*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSD, "movsd" },
1322*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSHDUP, "movshdup" },
1323*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSLDUP, "movsldup" },
1324*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSQ, "movsq" },
1325*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSS, "movss" },
1326*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSW, "movsw" },
1327*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSX, "movsx" },
1328*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVSXD, "movsxd" },
1329*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVUPD, "movupd" },
1330*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVUPS, "movups" },
1331*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MOVZX, "movzx" },
1332*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MPSADBW, "mpsadbw" },
1333*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MUL, "mul" },
1334*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MULPD, "mulpd" },
1335*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MULPS, "mulps" },
1336*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MULSD, "mulsd" },
1337*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MULSS, "mulss" },
1338*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MULX, "mulx" },
1339*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FMUL, "fmul" },
1340*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FIMUL, "fimul" },
1341*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FMULP, "fmulp" },
1342*9a0e4156SSadaf Ebrahimi 	{ X86_INS_MWAIT, "mwait" },
1343*9a0e4156SSadaf Ebrahimi 	{ X86_INS_NEG, "neg" },
1344*9a0e4156SSadaf Ebrahimi 	{ X86_INS_NOP, "nop" },
1345*9a0e4156SSadaf Ebrahimi 	{ X86_INS_NOT, "not" },
1346*9a0e4156SSadaf Ebrahimi 	{ X86_INS_OUT, "out" },
1347*9a0e4156SSadaf Ebrahimi 	{ X86_INS_OUTSB, "outsb" },
1348*9a0e4156SSadaf Ebrahimi 	{ X86_INS_OUTSD, "outsd" },
1349*9a0e4156SSadaf Ebrahimi 	{ X86_INS_OUTSW, "outsw" },
1350*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PACKUSDW, "packusdw" },
1351*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PAUSE, "pause" },
1352*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PAVGUSB, "pavgusb" },
1353*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PBLENDVB, "pblendvb" },
1354*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PBLENDW, "pblendw" },
1355*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCLMULQDQ, "pclmulqdq" },
1356*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPEQQ, "pcmpeqq" },
1357*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPESTRI, "pcmpestri" },
1358*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPESTRM, "pcmpestrm" },
1359*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPGTQ, "pcmpgtq" },
1360*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPISTRI, "pcmpistri" },
1361*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCMPISTRM, "pcmpistrm" },
1362*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PCOMMIT, "pcommit" },
1363*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PDEP, "pdep" },
1364*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PEXT, "pext" },
1365*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PEXTRB, "pextrb" },
1366*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PEXTRD, "pextrd" },
1367*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PEXTRQ, "pextrq" },
1368*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PF2ID, "pf2id" },
1369*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PF2IW, "pf2iw" },
1370*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFACC, "pfacc" },
1371*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFADD, "pfadd" },
1372*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFCMPEQ, "pfcmpeq" },
1373*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFCMPGE, "pfcmpge" },
1374*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFCMPGT, "pfcmpgt" },
1375*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFMAX, "pfmax" },
1376*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFMIN, "pfmin" },
1377*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFMUL, "pfmul" },
1378*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFNACC, "pfnacc" },
1379*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFPNACC, "pfpnacc" },
1380*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFRCPIT1, "pfrcpit1" },
1381*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFRCPIT2, "pfrcpit2" },
1382*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFRCP, "pfrcp" },
1383*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFRSQIT1, "pfrsqit1" },
1384*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFRSQRT, "pfrsqrt" },
1385*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFSUBR, "pfsubr" },
1386*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PFSUB, "pfsub" },
1387*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PHMINPOSUW, "phminposuw" },
1388*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PI2FD, "pi2fd" },
1389*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PI2FW, "pi2fw" },
1390*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PINSRB, "pinsrb" },
1391*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PINSRD, "pinsrd" },
1392*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PINSRQ, "pinsrq" },
1393*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMAXSB, "pmaxsb" },
1394*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMAXSD, "pmaxsd" },
1395*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMAXUD, "pmaxud" },
1396*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMAXUW, "pmaxuw" },
1397*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMINSB, "pminsb" },
1398*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMINSD, "pminsd" },
1399*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMINUD, "pminud" },
1400*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMINUW, "pminuw" },
1401*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVSXBD, "pmovsxbd" },
1402*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVSXBQ, "pmovsxbq" },
1403*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVSXBW, "pmovsxbw" },
1404*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVSXDQ, "pmovsxdq" },
1405*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVSXWD, "pmovsxwd" },
1406*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVSXWQ, "pmovsxwq" },
1407*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVZXBD, "pmovzxbd" },
1408*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVZXBQ, "pmovzxbq" },
1409*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVZXBW, "pmovzxbw" },
1410*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVZXDQ, "pmovzxdq" },
1411*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVZXWD, "pmovzxwd" },
1412*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMOVZXWQ, "pmovzxwq" },
1413*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULDQ, "pmuldq" },
1414*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULHRW, "pmulhrw" },
1415*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PMULLD, "pmulld" },
1416*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POP, "pop" },
1417*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POPAW, "popaw" },
1418*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POPAL, "popal" },
1419*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POPCNT, "popcnt" },
1420*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POPF, "popf" },
1421*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POPFD, "popfd" },
1422*9a0e4156SSadaf Ebrahimi 	{ X86_INS_POPFQ, "popfq" },
1423*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PREFETCH, "prefetch" },
1424*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PREFETCHNTA, "prefetchnta" },
1425*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PREFETCHT0, "prefetcht0" },
1426*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PREFETCHT1, "prefetcht1" },
1427*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PREFETCHT2, "prefetcht2" },
1428*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PREFETCHW, "prefetchw" },
1429*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSHUFD, "pshufd" },
1430*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSHUFHW, "pshufhw" },
1431*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSHUFLW, "pshuflw" },
1432*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSLLDQ, "pslldq" },
1433*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSRLDQ, "psrldq" },
1434*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PSWAPD, "pswapd" },
1435*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PTEST, "ptest" },
1436*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKHQDQ, "punpckhqdq" },
1437*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUNPCKLQDQ, "punpcklqdq" },
1438*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUSH, "push" },
1439*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUSHAW, "pushaw" },
1440*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUSHAL, "pushal" },
1441*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUSHF, "pushf" },
1442*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUSHFD, "pushfd" },
1443*9a0e4156SSadaf Ebrahimi 	{ X86_INS_PUSHFQ, "pushfq" },
1444*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RCL, "rcl" },
1445*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RCPPS, "rcpps" },
1446*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RCPSS, "rcpss" },
1447*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RCR, "rcr" },
1448*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDFSBASE, "rdfsbase" },
1449*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDGSBASE, "rdgsbase" },
1450*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDMSR, "rdmsr" },
1451*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDPMC, "rdpmc" },
1452*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDRAND, "rdrand" },
1453*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDSEED, "rdseed" },
1454*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDTSC, "rdtsc" },
1455*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RDTSCP, "rdtscp" },
1456*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ROL, "rol" },
1457*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ROR, "ror" },
1458*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RORX, "rorx" },
1459*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ROUNDPD, "roundpd" },
1460*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ROUNDPS, "roundps" },
1461*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ROUNDSD, "roundsd" },
1462*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ROUNDSS, "roundss" },
1463*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RSM, "rsm" },
1464*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RSQRTPS, "rsqrtps" },
1465*9a0e4156SSadaf Ebrahimi 	{ X86_INS_RSQRTSS, "rsqrtss" },
1466*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SAHF, "sahf" },
1467*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SAL, "sal" },
1468*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SALC, "salc" },
1469*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SAR, "sar" },
1470*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SARX, "sarx" },
1471*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SBB, "sbb" },
1472*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SCASB, "scasb" },
1473*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SCASD, "scasd" },
1474*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SCASQ, "scasq" },
1475*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SCASW, "scasw" },
1476*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETAE, "setae" },
1477*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETA, "seta" },
1478*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETBE, "setbe" },
1479*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETB, "setb" },
1480*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETE, "sete" },
1481*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETGE, "setge" },
1482*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETG, "setg" },
1483*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETLE, "setle" },
1484*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETL, "setl" },
1485*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETNE, "setne" },
1486*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETNO, "setno" },
1487*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETNP, "setnp" },
1488*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETNS, "setns" },
1489*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETO, "seto" },
1490*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETP, "setp" },
1491*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SETS, "sets" },
1492*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SFENCE, "sfence" },
1493*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SGDT, "sgdt" },
1494*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA1MSG1, "sha1msg1" },
1495*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA1MSG2, "sha1msg2" },
1496*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA1NEXTE, "sha1nexte" },
1497*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA1RNDS4, "sha1rnds4" },
1498*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA256MSG1, "sha256msg1" },
1499*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA256MSG2, "sha256msg2" },
1500*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHA256RNDS2, "sha256rnds2" },
1501*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHL, "shl" },
1502*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHLD, "shld" },
1503*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHLX, "shlx" },
1504*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHR, "shr" },
1505*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHRD, "shrd" },
1506*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHRX, "shrx" },
1507*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHUFPD, "shufpd" },
1508*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SHUFPS, "shufps" },
1509*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SIDT, "sidt" },
1510*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSIN, "fsin" },
1511*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SKINIT, "skinit" },
1512*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SLDT, "sldt" },
1513*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SMSW, "smsw" },
1514*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SQRTPD, "sqrtpd" },
1515*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SQRTPS, "sqrtps" },
1516*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SQRTSD, "sqrtsd" },
1517*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SQRTSS, "sqrtss" },
1518*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSQRT, "fsqrt" },
1519*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STAC, "stac" },
1520*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STC, "stc" },
1521*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STD, "std" },
1522*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STGI, "stgi" },
1523*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STI, "sti" },
1524*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STMXCSR, "stmxcsr" },
1525*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STOSB, "stosb" },
1526*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STOSD, "stosd" },
1527*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STOSQ, "stosq" },
1528*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STOSW, "stosw" },
1529*9a0e4156SSadaf Ebrahimi 	{ X86_INS_STR, "str" },
1530*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FST, "fst" },
1531*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSTP, "fstp" },
1532*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSTPNCE, "fstpnce" },
1533*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FXCH, "fxch" },
1534*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SUBPD, "subpd" },
1535*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SUBPS, "subps" },
1536*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSUBR, "fsubr" },
1537*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FISUBR, "fisubr" },
1538*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSUBRP, "fsubrp" },
1539*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SUBSD, "subsd" },
1540*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SUBSS, "subss" },
1541*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSUB, "fsub" },
1542*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FISUB, "fisub" },
1543*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FSUBP, "fsubp" },
1544*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SWAPGS, "swapgs" },
1545*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SYSCALL, "syscall" },
1546*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SYSENTER, "sysenter" },
1547*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SYSEXIT, "sysexit" },
1548*9a0e4156SSadaf Ebrahimi 	{ X86_INS_SYSRET, "sysret" },
1549*9a0e4156SSadaf Ebrahimi 	{ X86_INS_T1MSKC, "t1mskc" },
1550*9a0e4156SSadaf Ebrahimi 	{ X86_INS_TEST, "test" },
1551*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UD2, "ud2" },
1552*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FTST, "ftst" },
1553*9a0e4156SSadaf Ebrahimi 	{ X86_INS_TZCNT, "tzcnt" },
1554*9a0e4156SSadaf Ebrahimi 	{ X86_INS_TZMSK, "tzmsk" },
1555*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FUCOMIP, "fucomip" },
1556*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FUCOMI, "fucomi" },
1557*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FUCOMPP, "fucompp" },
1558*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FUCOMP, "fucomp" },
1559*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FUCOM, "fucom" },
1560*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UD2B, "ud2b" },
1561*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UNPCKHPD, "unpckhpd" },
1562*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UNPCKHPS, "unpckhps" },
1563*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UNPCKLPD, "unpcklpd" },
1564*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UNPCKLPS, "unpcklps" },
1565*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VADDPD, "vaddpd" },
1566*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VADDPS, "vaddps" },
1567*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VADDSD, "vaddsd" },
1568*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VADDSS, "vaddss" },
1569*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VADDSUBPD, "vaddsubpd" },
1570*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VADDSUBPS, "vaddsubps" },
1571*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VAESDECLAST, "vaesdeclast" },
1572*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VAESDEC, "vaesdec" },
1573*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VAESENCLAST, "vaesenclast" },
1574*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VAESENC, "vaesenc" },
1575*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VAESIMC, "vaesimc" },
1576*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VAESKEYGENASSIST, "vaeskeygenassist" },
1577*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VALIGND, "valignd" },
1578*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VALIGNQ, "valignq" },
1579*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VANDNPD, "vandnpd" },
1580*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VANDNPS, "vandnps" },
1581*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VANDPD, "vandpd" },
1582*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VANDPS, "vandps" },
1583*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBLENDMPD, "vblendmpd" },
1584*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBLENDMPS, "vblendmps" },
1585*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBLENDPD, "vblendpd" },
1586*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBLENDPS, "vblendps" },
1587*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBLENDVPD, "vblendvpd" },
1588*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBLENDVPS, "vblendvps" },
1589*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBROADCASTF128, "vbroadcastf128" },
1590*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBROADCASTI32X4, "vbroadcasti32x4" },
1591*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBROADCASTI64X4, "vbroadcasti64x4" },
1592*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBROADCASTSD, "vbroadcastsd" },
1593*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VBROADCASTSS, "vbroadcastss" },
1594*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCOMPRESSPD, "vcompresspd" },
1595*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCOMPRESSPS, "vcompressps" },
1596*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTDQ2PD, "vcvtdq2pd" },
1597*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTDQ2PS, "vcvtdq2ps" },
1598*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPD2DQX, "vcvtpd2dqx" },
1599*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPD2DQ, "vcvtpd2dq" },
1600*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPD2PSX, "vcvtpd2psx" },
1601*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPD2PS, "vcvtpd2ps" },
1602*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPD2UDQ, "vcvtpd2udq" },
1603*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPH2PS, "vcvtph2ps" },
1604*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPS2DQ, "vcvtps2dq" },
1605*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPS2PD, "vcvtps2pd" },
1606*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPS2PH, "vcvtps2ph" },
1607*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTPS2UDQ, "vcvtps2udq" },
1608*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSD2SI, "vcvtsd2si" },
1609*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSD2USI, "vcvtsd2usi" },
1610*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSS2SI, "vcvtss2si" },
1611*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTSS2USI, "vcvtss2usi" },
1612*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTPD2DQX, "vcvttpd2dqx" },
1613*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTPD2DQ, "vcvttpd2dq" },
1614*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTPD2UDQ, "vcvttpd2udq" },
1615*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTPS2DQ, "vcvttps2dq" },
1616*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTTPS2UDQ, "vcvttps2udq" },
1617*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTUDQ2PD, "vcvtudq2pd" },
1618*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCVTUDQ2PS, "vcvtudq2ps" },
1619*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VDIVPD, "vdivpd" },
1620*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VDIVPS, "vdivps" },
1621*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VDIVSD, "vdivsd" },
1622*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VDIVSS, "vdivss" },
1623*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VDPPD, "vdppd" },
1624*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VDPPS, "vdpps" },
1625*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VERR, "verr" },
1626*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VERW, "verw" },
1627*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXP2PD, "vexp2pd" },
1628*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXP2PS, "vexp2ps" },
1629*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXPANDPD, "vexpandpd" },
1630*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXPANDPS, "vexpandps" },
1631*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTF128, "vextractf128" },
1632*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTF32X4, "vextractf32x4" },
1633*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTF64X4, "vextractf64x4" },
1634*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTI128, "vextracti128" },
1635*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTI32X4, "vextracti32x4" },
1636*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTI64X4, "vextracti64x4" },
1637*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VEXTRACTPS, "vextractps" },
1638*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD132PD, "vfmadd132pd" },
1639*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD132PS, "vfmadd132ps" },
1640*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDPD, "vfmaddpd" },
1641*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD213PD, "vfmadd213pd" },
1642*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD231PD, "vfmadd231pd" },
1643*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDPS, "vfmaddps" },
1644*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD213PS, "vfmadd213ps" },
1645*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD231PS, "vfmadd231ps" },
1646*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSD, "vfmaddsd" },
1647*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD213SD, "vfmadd213sd" },
1648*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD132SD, "vfmadd132sd" },
1649*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD231SD, "vfmadd231sd" },
1650*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSS, "vfmaddss" },
1651*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD213SS, "vfmadd213ss" },
1652*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD132SS, "vfmadd132ss" },
1653*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADD231SS, "vfmadd231ss" },
1654*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUB132PD, "vfmaddsub132pd" },
1655*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUB132PS, "vfmaddsub132ps" },
1656*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUBPD, "vfmaddsubpd" },
1657*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUB213PD, "vfmaddsub213pd" },
1658*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUB231PD, "vfmaddsub231pd" },
1659*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUBPS, "vfmaddsubps" },
1660*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUB213PS, "vfmaddsub213ps" },
1661*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMADDSUB231PS, "vfmaddsub231ps" },
1662*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB132PD, "vfmsub132pd" },
1663*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB132PS, "vfmsub132ps" },
1664*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADD132PD, "vfmsubadd132pd" },
1665*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADD132PS, "vfmsubadd132ps" },
1666*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADDPD, "vfmsubaddpd" },
1667*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADD213PD, "vfmsubadd213pd" },
1668*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADD231PD, "vfmsubadd231pd" },
1669*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADDPS, "vfmsubaddps" },
1670*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADD213PS, "vfmsubadd213ps" },
1671*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBADD231PS, "vfmsubadd231ps" },
1672*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBPD, "vfmsubpd" },
1673*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB213PD, "vfmsub213pd" },
1674*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB231PD, "vfmsub231pd" },
1675*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBPS, "vfmsubps" },
1676*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB213PS, "vfmsub213ps" },
1677*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB231PS, "vfmsub231ps" },
1678*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBSD, "vfmsubsd" },
1679*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB213SD, "vfmsub213sd" },
1680*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB132SD, "vfmsub132sd" },
1681*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB231SD, "vfmsub231sd" },
1682*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUBSS, "vfmsubss" },
1683*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB213SS, "vfmsub213ss" },
1684*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB132SS, "vfmsub132ss" },
1685*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFMSUB231SS, "vfmsub231ss" },
1686*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD132PD, "vfnmadd132pd" },
1687*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD132PS, "vfnmadd132ps" },
1688*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADDPD, "vfnmaddpd" },
1689*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD213PD, "vfnmadd213pd" },
1690*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD231PD, "vfnmadd231pd" },
1691*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADDPS, "vfnmaddps" },
1692*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD213PS, "vfnmadd213ps" },
1693*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD231PS, "vfnmadd231ps" },
1694*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADDSD, "vfnmaddsd" },
1695*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD213SD, "vfnmadd213sd" },
1696*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD132SD, "vfnmadd132sd" },
1697*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD231SD, "vfnmadd231sd" },
1698*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADDSS, "vfnmaddss" },
1699*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD213SS, "vfnmadd213ss" },
1700*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD132SS, "vfnmadd132ss" },
1701*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMADD231SS, "vfnmadd231ss" },
1702*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB132PD, "vfnmsub132pd" },
1703*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB132PS, "vfnmsub132ps" },
1704*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUBPD, "vfnmsubpd" },
1705*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB213PD, "vfnmsub213pd" },
1706*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB231PD, "vfnmsub231pd" },
1707*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUBPS, "vfnmsubps" },
1708*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB213PS, "vfnmsub213ps" },
1709*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB231PS, "vfnmsub231ps" },
1710*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUBSD, "vfnmsubsd" },
1711*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB213SD, "vfnmsub213sd" },
1712*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB132SD, "vfnmsub132sd" },
1713*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB231SD, "vfnmsub231sd" },
1714*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUBSS, "vfnmsubss" },
1715*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB213SS, "vfnmsub213ss" },
1716*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB132SS, "vfnmsub132ss" },
1717*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFNMSUB231SS, "vfnmsub231ss" },
1718*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFRCZPD, "vfrczpd" },
1719*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFRCZPS, "vfrczps" },
1720*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFRCZSD, "vfrczsd" },
1721*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VFRCZSS, "vfrczss" },
1722*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VORPD, "vorpd" },
1723*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VORPS, "vorps" },
1724*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VXORPD, "vxorpd" },
1725*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VXORPS, "vxorps" },
1726*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERDPD, "vgatherdpd" },
1727*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERDPS, "vgatherdps" },
1728*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF0DPD, "vgatherpf0dpd" },
1729*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF0DPS, "vgatherpf0dps" },
1730*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF0QPD, "vgatherpf0qpd" },
1731*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF0QPS, "vgatherpf0qps" },
1732*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF1DPD, "vgatherpf1dpd" },
1733*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF1DPS, "vgatherpf1dps" },
1734*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF1QPD, "vgatherpf1qpd" },
1735*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERPF1QPS, "vgatherpf1qps" },
1736*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERQPD, "vgatherqpd" },
1737*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VGATHERQPS, "vgatherqps" },
1738*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VHADDPD, "vhaddpd" },
1739*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VHADDPS, "vhaddps" },
1740*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VHSUBPD, "vhsubpd" },
1741*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VHSUBPS, "vhsubps" },
1742*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTF128, "vinsertf128" },
1743*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTF32X4, "vinsertf32x4" },
1744*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTF32X8, "vinsertf32x8" },
1745*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTF64X2, "vinsertf64x2" },
1746*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTF64X4, "vinsertf64x4" },
1747*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTI128, "vinserti128" },
1748*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTI32X4, "vinserti32x4" },
1749*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTI32X8, "vinserti32x8" },
1750*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTI64X2, "vinserti64x2" },
1751*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTI64X4, "vinserti64x4" },
1752*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VINSERTPS, "vinsertps" },
1753*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VLDDQU, "vlddqu" },
1754*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VLDMXCSR, "vldmxcsr" },
1755*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMASKMOVDQU, "vmaskmovdqu" },
1756*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMASKMOVPD, "vmaskmovpd" },
1757*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMASKMOVPS, "vmaskmovps" },
1758*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMAXPD, "vmaxpd" },
1759*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMAXPS, "vmaxps" },
1760*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMAXSD, "vmaxsd" },
1761*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMAXSS, "vmaxss" },
1762*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMCALL, "vmcall" },
1763*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMCLEAR, "vmclear" },
1764*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMFUNC, "vmfunc" },
1765*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMINPD, "vminpd" },
1766*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMINPS, "vminps" },
1767*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMINSD, "vminsd" },
1768*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMINSS, "vminss" },
1769*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMLAUNCH, "vmlaunch" },
1770*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMLOAD, "vmload" },
1771*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMMCALL, "vmmcall" },
1772*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVQ, "vmovq" },
1773*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDDUP, "vmovddup" },
1774*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVD, "vmovd" },
1775*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQA32, "vmovdqa32" },
1776*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQA64, "vmovdqa64" },
1777*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQA, "vmovdqa" },
1778*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQU16, "vmovdqu16" },
1779*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQU32, "vmovdqu32" },
1780*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQU64, "vmovdqu64" },
1781*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQU8, "vmovdqu8" },
1782*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVDQU, "vmovdqu" },
1783*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVHLPS, "vmovhlps" },
1784*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVHPD, "vmovhpd" },
1785*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVHPS, "vmovhps" },
1786*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVLHPS, "vmovlhps" },
1787*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVLPD, "vmovlpd" },
1788*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVLPS, "vmovlps" },
1789*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVMSKPD, "vmovmskpd" },
1790*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVMSKPS, "vmovmskps" },
1791*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVNTDQA, "vmovntdqa" },
1792*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVNTDQ, "vmovntdq" },
1793*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVNTPD, "vmovntpd" },
1794*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVNTPS, "vmovntps" },
1795*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVSD, "vmovsd" },
1796*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVSHDUP, "vmovshdup" },
1797*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVSLDUP, "vmovsldup" },
1798*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVSS, "vmovss" },
1799*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVUPD, "vmovupd" },
1800*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMOVUPS, "vmovups" },
1801*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMPSADBW, "vmpsadbw" },
1802*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMPTRLD, "vmptrld" },
1803*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMPTRST, "vmptrst" },
1804*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMREAD, "vmread" },
1805*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMRESUME, "vmresume" },
1806*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMRUN, "vmrun" },
1807*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMSAVE, "vmsave" },
1808*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMULPD, "vmulpd" },
1809*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMULPS, "vmulps" },
1810*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMULSD, "vmulsd" },
1811*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMULSS, "vmulss" },
1812*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMWRITE, "vmwrite" },
1813*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMXOFF, "vmxoff" },
1814*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VMXON, "vmxon" },
1815*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPABSB, "vpabsb" },
1816*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPABSD, "vpabsd" },
1817*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPABSQ, "vpabsq" },
1818*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPABSW, "vpabsw" },
1819*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPACKSSDW, "vpackssdw" },
1820*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPACKSSWB, "vpacksswb" },
1821*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPACKUSDW, "vpackusdw" },
1822*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPACKUSWB, "vpackuswb" },
1823*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDB, "vpaddb" },
1824*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDD, "vpaddd" },
1825*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDQ, "vpaddq" },
1826*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDSB, "vpaddsb" },
1827*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDSW, "vpaddsw" },
1828*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDUSB, "vpaddusb" },
1829*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDUSW, "vpaddusw" },
1830*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPADDW, "vpaddw" },
1831*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPALIGNR, "vpalignr" },
1832*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPANDD, "vpandd" },
1833*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPANDND, "vpandnd" },
1834*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPANDNQ, "vpandnq" },
1835*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPANDN, "vpandn" },
1836*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPANDQ, "vpandq" },
1837*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPAND, "vpand" },
1838*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPAVGB, "vpavgb" },
1839*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPAVGW, "vpavgw" },
1840*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDD, "vpblendd" },
1841*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDMB, "vpblendmb" },
1842*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDMD, "vpblendmd" },
1843*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDMQ, "vpblendmq" },
1844*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDMW, "vpblendmw" },
1845*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDVB, "vpblendvb" },
1846*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBLENDW, "vpblendw" },
1847*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBROADCASTB, "vpbroadcastb" },
1848*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBROADCASTD, "vpbroadcastd" },
1849*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBROADCASTMB2Q, "vpbroadcastmb2q" },
1850*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBROADCASTMW2D, "vpbroadcastmw2d" },
1851*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBROADCASTQ, "vpbroadcastq" },
1852*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPBROADCASTW, "vpbroadcastw" },
1853*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCLMULQDQ, "vpclmulqdq" },
1854*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMOV, "vpcmov" },
1855*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPB, "vpcmpb" },
1856*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPD, "vpcmpd" },
1857*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPEQB, "vpcmpeqb" },
1858*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPEQD, "vpcmpeqd" },
1859*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPEQQ, "vpcmpeqq" },
1860*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPEQW, "vpcmpeqw" },
1861*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPESTRI, "vpcmpestri" },
1862*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPESTRM, "vpcmpestrm" },
1863*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPGTB, "vpcmpgtb" },
1864*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPGTD, "vpcmpgtd" },
1865*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPGTQ, "vpcmpgtq" },
1866*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPGTW, "vpcmpgtw" },
1867*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPISTRI, "vpcmpistri" },
1868*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPISTRM, "vpcmpistrm" },
1869*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPQ, "vpcmpq" },
1870*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPUB, "vpcmpub" },
1871*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPUD, "vpcmpud" },
1872*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPUQ, "vpcmpuq" },
1873*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPUW, "vpcmpuw" },
1874*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCMPW, "vpcmpw" },
1875*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMB, "vpcomb" },
1876*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMD, "vpcomd" },
1877*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMPRESSD, "vpcompressd" },
1878*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMPRESSQ, "vpcompressq" },
1879*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMQ, "vpcomq" },
1880*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMUB, "vpcomub" },
1881*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMUD, "vpcomud" },
1882*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMUQ, "vpcomuq" },
1883*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMUW, "vpcomuw" },
1884*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCOMW, "vpcomw" },
1885*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCONFLICTD, "vpconflictd" },
1886*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPCONFLICTQ, "vpconflictq" },
1887*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERM2F128, "vperm2f128" },
1888*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERM2I128, "vperm2i128" },
1889*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMD, "vpermd" },
1890*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMI2D, "vpermi2d" },
1891*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMI2PD, "vpermi2pd" },
1892*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMI2PS, "vpermi2ps" },
1893*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMI2Q, "vpermi2q" },
1894*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMIL2PD, "vpermil2pd" },
1895*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMIL2PS, "vpermil2ps" },
1896*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMILPD, "vpermilpd" },
1897*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMILPS, "vpermilps" },
1898*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMPD, "vpermpd" },
1899*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMPS, "vpermps" },
1900*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMQ, "vpermq" },
1901*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMT2D, "vpermt2d" },
1902*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMT2PD, "vpermt2pd" },
1903*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMT2PS, "vpermt2ps" },
1904*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPERMT2Q, "vpermt2q" },
1905*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPEXPANDD, "vpexpandd" },
1906*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPEXPANDQ, "vpexpandq" },
1907*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPEXTRB, "vpextrb" },
1908*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPEXTRD, "vpextrd" },
1909*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPEXTRQ, "vpextrq" },
1910*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPEXTRW, "vpextrw" },
1911*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPGATHERDD, "vpgatherdd" },
1912*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPGATHERDQ, "vpgatherdq" },
1913*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPGATHERQD, "vpgatherqd" },
1914*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPGATHERQQ, "vpgatherqq" },
1915*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDBD, "vphaddbd" },
1916*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDBQ, "vphaddbq" },
1917*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDBW, "vphaddbw" },
1918*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDDQ, "vphadddq" },
1919*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDD, "vphaddd" },
1920*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDSW, "vphaddsw" },
1921*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDUBD, "vphaddubd" },
1922*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDUBQ, "vphaddubq" },
1923*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDUBW, "vphaddubw" },
1924*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDUDQ, "vphaddudq" },
1925*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDUWD, "vphadduwd" },
1926*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDUWQ, "vphadduwq" },
1927*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDWD, "vphaddwd" },
1928*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDWQ, "vphaddwq" },
1929*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHADDW, "vphaddw" },
1930*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHMINPOSUW, "vphminposuw" },
1931*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHSUBBW, "vphsubbw" },
1932*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHSUBDQ, "vphsubdq" },
1933*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHSUBD, "vphsubd" },
1934*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHSUBSW, "vphsubsw" },
1935*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHSUBWD, "vphsubwd" },
1936*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPHSUBW, "vphsubw" },
1937*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPINSRB, "vpinsrb" },
1938*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPINSRD, "vpinsrd" },
1939*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPINSRQ, "vpinsrq" },
1940*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPINSRW, "vpinsrw" },
1941*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPLZCNTD, "vplzcntd" },
1942*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPLZCNTQ, "vplzcntq" },
1943*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSDD, "vpmacsdd" },
1944*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSDQH, "vpmacsdqh" },
1945*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSDQL, "vpmacsdql" },
1946*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSSDD, "vpmacssdd" },
1947*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSSDQH, "vpmacssdqh" },
1948*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSSDQL, "vpmacssdql" },
1949*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSSWD, "vpmacsswd" },
1950*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSSWW, "vpmacssww" },
1951*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSWD, "vpmacswd" },
1952*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMACSWW, "vpmacsww" },
1953*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMADCSSWD, "vpmadcsswd" },
1954*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMADCSWD, "vpmadcswd" },
1955*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMADDUBSW, "vpmaddubsw" },
1956*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMADDWD, "vpmaddwd" },
1957*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMASKMOVD, "vpmaskmovd" },
1958*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMASKMOVQ, "vpmaskmovq" },
1959*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXSB, "vpmaxsb" },
1960*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXSD, "vpmaxsd" },
1961*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXSQ, "vpmaxsq" },
1962*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXSW, "vpmaxsw" },
1963*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXUB, "vpmaxub" },
1964*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXUD, "vpmaxud" },
1965*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXUQ, "vpmaxuq" },
1966*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMAXUW, "vpmaxuw" },
1967*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINSB, "vpminsb" },
1968*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINSD, "vpminsd" },
1969*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINSQ, "vpminsq" },
1970*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINSW, "vpminsw" },
1971*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINUB, "vpminub" },
1972*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINUD, "vpminud" },
1973*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINUQ, "vpminuq" },
1974*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMINUW, "vpminuw" },
1975*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVDB, "vpmovdb" },
1976*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVDW, "vpmovdw" },
1977*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVM2B, "vpmovm2b" },
1978*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVM2D, "vpmovm2d" },
1979*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVM2Q, "vpmovm2q" },
1980*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVM2W, "vpmovm2w" },
1981*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVMSKB, "vpmovmskb" },
1982*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVQB, "vpmovqb" },
1983*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVQD, "vpmovqd" },
1984*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVQW, "vpmovqw" },
1985*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSDB, "vpmovsdb" },
1986*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSDW, "vpmovsdw" },
1987*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSQB, "vpmovsqb" },
1988*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSQD, "vpmovsqd" },
1989*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSQW, "vpmovsqw" },
1990*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSXBD, "vpmovsxbd" },
1991*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSXBQ, "vpmovsxbq" },
1992*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSXBW, "vpmovsxbw" },
1993*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSXDQ, "vpmovsxdq" },
1994*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSXWD, "vpmovsxwd" },
1995*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVSXWQ, "vpmovsxwq" },
1996*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVUSDB, "vpmovusdb" },
1997*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVUSDW, "vpmovusdw" },
1998*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVUSQB, "vpmovusqb" },
1999*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVUSQD, "vpmovusqd" },
2000*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVUSQW, "vpmovusqw" },
2001*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVZXBD, "vpmovzxbd" },
2002*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVZXBQ, "vpmovzxbq" },
2003*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVZXBW, "vpmovzxbw" },
2004*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVZXDQ, "vpmovzxdq" },
2005*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVZXWD, "vpmovzxwd" },
2006*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMOVZXWQ, "vpmovzxwq" },
2007*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULDQ, "vpmuldq" },
2008*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULHRSW, "vpmulhrsw" },
2009*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULHUW, "vpmulhuw" },
2010*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULHW, "vpmulhw" },
2011*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULLD, "vpmulld" },
2012*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULLQ, "vpmullq" },
2013*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULLW, "vpmullw" },
2014*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPMULUDQ, "vpmuludq" },
2015*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPORD, "vpord" },
2016*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPORQ, "vporq" },
2017*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPOR, "vpor" },
2018*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPPERM, "vpperm" },
2019*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPROTB, "vprotb" },
2020*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPROTD, "vprotd" },
2021*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPROTQ, "vprotq" },
2022*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPROTW, "vprotw" },
2023*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSADBW, "vpsadbw" },
2024*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSCATTERDD, "vpscatterdd" },
2025*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSCATTERDQ, "vpscatterdq" },
2026*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSCATTERQD, "vpscatterqd" },
2027*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSCATTERQQ, "vpscatterqq" },
2028*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHAB, "vpshab" },
2029*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHAD, "vpshad" },
2030*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHAQ, "vpshaq" },
2031*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHAW, "vpshaw" },
2032*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHLB, "vpshlb" },
2033*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHLD, "vpshld" },
2034*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHLQ, "vpshlq" },
2035*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHLW, "vpshlw" },
2036*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHUFB, "vpshufb" },
2037*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHUFD, "vpshufd" },
2038*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHUFHW, "vpshufhw" },
2039*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSHUFLW, "vpshuflw" },
2040*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSIGNB, "vpsignb" },
2041*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSIGND, "vpsignd" },
2042*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSIGNW, "vpsignw" },
2043*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSLLDQ, "vpslldq" },
2044*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSLLD, "vpslld" },
2045*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSLLQ, "vpsllq" },
2046*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSLLVD, "vpsllvd" },
2047*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSLLVQ, "vpsllvq" },
2048*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSLLW, "vpsllw" },
2049*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRAD, "vpsrad" },
2050*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRAQ, "vpsraq" },
2051*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRAVD, "vpsravd" },
2052*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRAVQ, "vpsravq" },
2053*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRAW, "vpsraw" },
2054*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRLDQ, "vpsrldq" },
2055*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRLD, "vpsrld" },
2056*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRLQ, "vpsrlq" },
2057*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRLVD, "vpsrlvd" },
2058*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRLVQ, "vpsrlvq" },
2059*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSRLW, "vpsrlw" },
2060*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBB, "vpsubb" },
2061*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBD, "vpsubd" },
2062*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBQ, "vpsubq" },
2063*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBSB, "vpsubsb" },
2064*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBSW, "vpsubsw" },
2065*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBUSB, "vpsubusb" },
2066*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBUSW, "vpsubusw" },
2067*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPSUBW, "vpsubw" },
2068*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPTESTMD, "vptestmd" },
2069*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPTESTMQ, "vptestmq" },
2070*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPTESTNMD, "vptestnmd" },
2071*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPTESTNMQ, "vptestnmq" },
2072*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPTEST, "vptest" },
2073*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKHBW, "vpunpckhbw" },
2074*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKHDQ, "vpunpckhdq" },
2075*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKHQDQ, "vpunpckhqdq" },
2076*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKHWD, "vpunpckhwd" },
2077*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKLBW, "vpunpcklbw" },
2078*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKLDQ, "vpunpckldq" },
2079*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKLQDQ, "vpunpcklqdq" },
2080*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPUNPCKLWD, "vpunpcklwd" },
2081*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPXORD, "vpxord" },
2082*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPXORQ, "vpxorq" },
2083*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VPXOR, "vpxor" },
2084*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP14PD, "vrcp14pd" },
2085*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP14PS, "vrcp14ps" },
2086*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP14SD, "vrcp14sd" },
2087*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP14SS, "vrcp14ss" },
2088*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP28PD, "vrcp28pd" },
2089*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP28PS, "vrcp28ps" },
2090*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP28SD, "vrcp28sd" },
2091*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCP28SS, "vrcp28ss" },
2092*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCPPS, "vrcpps" },
2093*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRCPSS, "vrcpss" },
2094*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRNDSCALEPD, "vrndscalepd" },
2095*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRNDSCALEPS, "vrndscaleps" },
2096*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRNDSCALESD, "vrndscalesd" },
2097*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRNDSCALESS, "vrndscaless" },
2098*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VROUNDPD, "vroundpd" },
2099*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VROUNDPS, "vroundps" },
2100*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VROUNDSD, "vroundsd" },
2101*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VROUNDSS, "vroundss" },
2102*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT14PD, "vrsqrt14pd" },
2103*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT14PS, "vrsqrt14ps" },
2104*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT14SD, "vrsqrt14sd" },
2105*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT14SS, "vrsqrt14ss" },
2106*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT28PD, "vrsqrt28pd" },
2107*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT28PS, "vrsqrt28ps" },
2108*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT28SD, "vrsqrt28sd" },
2109*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRT28SS, "vrsqrt28ss" },
2110*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRTPS, "vrsqrtps" },
2111*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VRSQRTSS, "vrsqrtss" },
2112*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERDPD, "vscatterdpd" },
2113*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERDPS, "vscatterdps" },
2114*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF0DPD, "vscatterpf0dpd" },
2115*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF0DPS, "vscatterpf0dps" },
2116*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF0QPD, "vscatterpf0qpd" },
2117*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF0QPS, "vscatterpf0qps" },
2118*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF1DPD, "vscatterpf1dpd" },
2119*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF1DPS, "vscatterpf1dps" },
2120*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF1QPD, "vscatterpf1qpd" },
2121*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERPF1QPS, "vscatterpf1qps" },
2122*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERQPD, "vscatterqpd" },
2123*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSCATTERQPS, "vscatterqps" },
2124*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSHUFPD, "vshufpd" },
2125*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSHUFPS, "vshufps" },
2126*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSQRTPD, "vsqrtpd" },
2127*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSQRTPS, "vsqrtps" },
2128*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSQRTSD, "vsqrtsd" },
2129*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSQRTSS, "vsqrtss" },
2130*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSTMXCSR, "vstmxcsr" },
2131*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSUBPD, "vsubpd" },
2132*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSUBPS, "vsubps" },
2133*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSUBSD, "vsubsd" },
2134*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VSUBSS, "vsubss" },
2135*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VTESTPD, "vtestpd" },
2136*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VTESTPS, "vtestps" },
2137*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VUNPCKHPD, "vunpckhpd" },
2138*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VUNPCKHPS, "vunpckhps" },
2139*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VUNPCKLPD, "vunpcklpd" },
2140*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VUNPCKLPS, "vunpcklps" },
2141*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VZEROALL, "vzeroall" },
2142*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VZEROUPPER, "vzeroupper" },
2143*9a0e4156SSadaf Ebrahimi 	{ X86_INS_WAIT, "wait" },
2144*9a0e4156SSadaf Ebrahimi 	{ X86_INS_WBINVD, "wbinvd" },
2145*9a0e4156SSadaf Ebrahimi 	{ X86_INS_WRFSBASE, "wrfsbase" },
2146*9a0e4156SSadaf Ebrahimi 	{ X86_INS_WRGSBASE, "wrgsbase" },
2147*9a0e4156SSadaf Ebrahimi 	{ X86_INS_WRMSR, "wrmsr" },
2148*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XABORT, "xabort" },
2149*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XACQUIRE, "xacquire" },
2150*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XBEGIN, "xbegin" },
2151*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XCHG, "xchg" },
2152*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XCRYPTCBC, "xcryptcbc" },
2153*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XCRYPTCFB, "xcryptcfb" },
2154*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XCRYPTCTR, "xcryptctr" },
2155*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XCRYPTECB, "xcryptecb" },
2156*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XCRYPTOFB, "xcryptofb" },
2157*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XEND, "xend" },
2158*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XGETBV, "xgetbv" },
2159*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XLATB, "xlatb" },
2160*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XRELEASE, "xrelease" },
2161*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XRSTOR, "xrstor" },
2162*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XRSTOR64, "xrstor64" },
2163*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XRSTORS, "xrstors" },
2164*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XRSTORS64, "xrstors64" },
2165*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVE, "xsave" },
2166*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVE64, "xsave64" },
2167*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVEC, "xsavec" },
2168*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVEC64, "xsavec64" },
2169*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVEOPT, "xsaveopt" },
2170*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVEOPT64, "xsaveopt64" },
2171*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVES, "xsaves" },
2172*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSAVES64, "xsaves64" },
2173*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSETBV, "xsetbv" },
2174*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSHA1, "xsha1" },
2175*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSHA256, "xsha256" },
2176*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XSTORE, "xstore" },
2177*9a0e4156SSadaf Ebrahimi 	{ X86_INS_XTEST, "xtest" },
2178*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FDISI8087_NOP, "fdisi8087_nop" },
2179*9a0e4156SSadaf Ebrahimi 	{ X86_INS_FENI8087_NOP, "feni8087_nop" },
2180*9a0e4156SSadaf Ebrahimi 
2181*9a0e4156SSadaf Ebrahimi 	// pseudo instructions
2182*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPSS, "cmpss" },
2183*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPEQSS, "cmpeqss" },
2184*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLTSS, "cmpltss" },
2185*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLESS, "cmpless" },
2186*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPUNORDSS, "cmpunordss" },
2187*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNEQSS, "cmpneqss" },
2188*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLTSS, "cmpnltss" },
2189*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLESS, "cmpnless" },
2190*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPORDSS, "cmpordss" },
2191*9a0e4156SSadaf Ebrahimi 
2192*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPSD, "cmpsd" },
2193*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPEQSD, "cmpeqsd" },
2194*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLTSD, "cmpltsd" },
2195*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLESD, "cmplesd" },
2196*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPUNORDSD, "cmpunordsd" },
2197*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNEQSD, "cmpneqsd" },
2198*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLTSD, "cmpnltsd" },
2199*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLESD, "cmpnlesd" },
2200*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPORDSD, "cmpordsd" },
2201*9a0e4156SSadaf Ebrahimi 
2202*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPPS, "cmpps" },
2203*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPEQPS, "cmpeqps" },
2204*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLTPS, "cmpltps" },
2205*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLEPS, "cmpleps" },
2206*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPUNORDPS, "cmpunordps" },
2207*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNEQPS, "cmpneqps" },
2208*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLTPS, "cmpnltps" },
2209*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLEPS, "cmpnleps" },
2210*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPORDPS, "cmpordps" },
2211*9a0e4156SSadaf Ebrahimi 
2212*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPPD, "cmppd" },
2213*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPEQPD, "cmpeqpd" },
2214*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLTPD, "cmpltpd" },
2215*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPLEPD, "cmplepd" },
2216*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPUNORDPD, "cmpunordpd" },
2217*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNEQPD, "cmpneqpd" },
2218*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLTPD, "cmpnltpd" },
2219*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPNLEPD, "cmpnlepd" },
2220*9a0e4156SSadaf Ebrahimi 	{ X86_INS_CMPORDPD, "cmpordpd" },
2221*9a0e4156SSadaf Ebrahimi 
2222*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPSS, "vcmpss" },
2223*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQSS, "vcmpeqss" },
2224*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLTSS, "vcmpltss" },
2225*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLESS, "vcmpless" },
2226*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORDSS, "vcmpunordss" },
2227*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQSS, "vcmpneqss" },
2228*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLTSS, "vcmpnltss" },
2229*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLESS, "vcmpnless" },
2230*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORDSS, "vcmpordss" },
2231*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_UQSS, "vcmpeq_uqss" },
2232*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGESS, "vcmpngess" },
2233*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGTSS, "vcmpngtss" },
2234*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSESS, "vcmpfalsess" },
2235*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OQSS, "vcmpneq_oqss" },
2236*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGESS, "vcmpgess" },
2237*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGTSS, "vcmpgtss" },
2238*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUESS, "vcmptruess" },
2239*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_OSSS, "vcmpeq_osss" },
2240*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLT_OQSS, "vcmplt_oqss" },
2241*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLE_OQSS, "vcmple_oqss" },
2242*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORD_SSS, "vcmpunord_sss" },
2243*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_USSS, "vcmpneq_usss" },
2244*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLT_UQSS, "vcmpnlt_uqss" },
2245*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLE_UQSS, "vcmpnle_uqss" },
2246*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORD_SSS, "vcmpord_sss" },
2247*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_USSS, "vcmpeq_usss" },
2248*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGE_UQSS, "vcmpnge_uqss" },
2249*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGT_UQSS, "vcmpngt_uqss" },
2250*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSE_OSSS, "vcmpfalse_osss" },
2251*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OSSS, "vcmpneq_osss" },
2252*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGE_OQSS, "vcmpge_oqss" },
2253*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGT_OQSS, "vcmpgt_oqss" },
2254*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUE_USSS, "vcmptrue_usss" },
2255*9a0e4156SSadaf Ebrahimi 
2256*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPSD, "vcmpsd" },
2257*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQSD, "vcmpeqsd" },
2258*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLTSD, "vcmpltsd" },
2259*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLESD, "vcmplesd" },
2260*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORDSD, "vcmpunordsd" },
2261*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQSD, "vcmpneqsd" },
2262*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLTSD, "vcmpnltsd" },
2263*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLESD, "vcmpnlesd" },
2264*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORDSD, "vcmpordsd" },
2265*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_UQSD, "vcmpeq_uqsd" },
2266*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGESD, "vcmpngesd" },
2267*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGTSD, "vcmpngtsd" },
2268*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSESD, "vcmpfalsesd" },
2269*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OQSD, "vcmpneq_oqsd" },
2270*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGESD, "vcmpgesd" },
2271*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGTSD, "vcmpgtsd" },
2272*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUESD, "vcmptruesd" },
2273*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_OSSD, "vcmpeq_ossd" },
2274*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLT_OQSD, "vcmplt_oqsd" },
2275*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLE_OQSD, "vcmple_oqsd" },
2276*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORD_SSD, "vcmpunord_ssd" },
2277*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_USSD, "vcmpneq_ussd" },
2278*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLT_UQSD, "vcmpnlt_uqsd" },
2279*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLE_UQSD, "vcmpnle_uqsd" },
2280*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORD_SSD, "vcmpord_ssd" },
2281*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_USSD, "vcmpeq_ussd" },
2282*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGE_UQSD, "vcmpnge_uqsd" },
2283*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGT_UQSD, "vcmpngt_uqsd" },
2284*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSE_OSSD, "vcmpfalse_ossd" },
2285*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OSSD, "vcmpneq_ossd" },
2286*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGE_OQSD, "vcmpge_oqsd" },
2287*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGT_OQSD, "vcmpgt_oqsd" },
2288*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUE_USSD, "vcmptrue_ussd" },
2289*9a0e4156SSadaf Ebrahimi 
2290*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPPS, "vcmpps" },
2291*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQPS, "vcmpeqps" },
2292*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLTPS, "vcmpltps" },
2293*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLEPS, "vcmpleps" },
2294*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORDPS, "vcmpunordps" },
2295*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQPS, "vcmpneqps" },
2296*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLTPS, "vcmpnltps" },
2297*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLEPS, "vcmpnleps" },
2298*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORDPS, "vcmpordps" },
2299*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_UQPS, "vcmpeq_uqps" },
2300*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGEPS, "vcmpngeps" },
2301*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGTPS, "vcmpngtps" },
2302*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSEPS, "vcmpfalseps" },
2303*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OQPS, "vcmpneq_oqps" },
2304*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGEPS, "vcmpgeps" },
2305*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGTPS, "vcmpgtps" },
2306*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUEPS, "vcmptrueps" },
2307*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_OSPS, "vcmpeq_osps" },
2308*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLT_OQPS, "vcmplt_oqps" },
2309*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLE_OQPS, "vcmple_oqps" },
2310*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORD_SPS, "vcmpunord_sps" },
2311*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_USPS, "vcmpneq_usps" },
2312*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLT_UQPS, "vcmpnlt_uqps" },
2313*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLE_UQPS, "vcmpnle_uqps" },
2314*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORD_SPS, "vcmpord_sps" },
2315*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_USPS, "vcmpeq_usps" },
2316*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGE_UQPS, "vcmpnge_uqps" },
2317*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGT_UQPS, "vcmpngt_uqps" },
2318*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSE_OSPS, "vcmpfalse_osps" },
2319*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OSPS, "vcmpneq_osps" },
2320*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGE_OQPS, "vcmpge_oqps" },
2321*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGT_OQPS, "vcmpgt_oqps" },
2322*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUE_USPS, "vcmptrue_usps" },
2323*9a0e4156SSadaf Ebrahimi 
2324*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPPD, "vcmppd" },
2325*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQPD, "vcmpeqpd" },
2326*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLTPD, "vcmpltpd" },
2327*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLEPD, "vcmplepd" },
2328*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORDPD, "vcmpunordpd" },
2329*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQPD, "vcmpneqpd" },
2330*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLTPD, "vcmpnltpd" },
2331*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLEPD, "vcmpnlepd" },
2332*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORDPD, "vcmpordpd" },
2333*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_UQPD, "vcmpeq_uqpd" },
2334*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGEPD, "vcmpngepd" },
2335*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGTPD, "vcmpngtpd" },
2336*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSEPD, "vcmpfalsepd" },
2337*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OQPD, "vcmpneq_oqpd" },
2338*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGEPD, "vcmpgepd" },
2339*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGTPD, "vcmpgtpd" },
2340*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUEPD, "vcmptruepd" },
2341*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_OSPD, "vcmpeq_ospd" },
2342*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLT_OQPD, "vcmplt_oqpd" },
2343*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPLE_OQPD, "vcmple_oqpd" },
2344*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPUNORD_SPD, "vcmpunord_spd" },
2345*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_USPD, "vcmpneq_uspd" },
2346*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLT_UQPD, "vcmpnlt_uqpd" },
2347*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNLE_UQPD, "vcmpnle_uqpd" },
2348*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPORD_SPD, "vcmpord_spd" },
2349*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPEQ_USPD, "vcmpeq_uspd" },
2350*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGE_UQPD, "vcmpnge_uqpd" },
2351*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNGT_UQPD, "vcmpngt_uqpd" },
2352*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPFALSE_OSPD, "vcmpfalse_ospd" },
2353*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPNEQ_OSPD, "vcmpneq_ospd" },
2354*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGE_OQPD, "vcmpge_oqpd" },
2355*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPGT_OQPD, "vcmpgt_oqpd" },
2356*9a0e4156SSadaf Ebrahimi 	{ X86_INS_VCMPTRUE_USPD, "vcmptrue_uspd" },
2357*9a0e4156SSadaf Ebrahimi 
2358*9a0e4156SSadaf Ebrahimi 	{ X86_INS_UD0, "ud0" },
2359*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ENDBR32, "endbr32" },
2360*9a0e4156SSadaf Ebrahimi 	{ X86_INS_ENDBR64, "endbr64" },
2361*9a0e4156SSadaf Ebrahimi };
2362*9a0e4156SSadaf Ebrahimi #endif
2363*9a0e4156SSadaf Ebrahimi 
X86_insn_name(csh handle,unsigned int id)2364*9a0e4156SSadaf Ebrahimi const char *X86_insn_name(csh handle, unsigned int id)
2365*9a0e4156SSadaf Ebrahimi {
2366*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2367*9a0e4156SSadaf Ebrahimi 	if (id >= X86_INS_ENDING)
2368*9a0e4156SSadaf Ebrahimi 		return NULL;
2369*9a0e4156SSadaf Ebrahimi 
2370*9a0e4156SSadaf Ebrahimi 	return insn_name_maps[id].name;
2371*9a0e4156SSadaf Ebrahimi #else
2372*9a0e4156SSadaf Ebrahimi 	return NULL;
2373*9a0e4156SSadaf Ebrahimi #endif
2374*9a0e4156SSadaf Ebrahimi }
2375*9a0e4156SSadaf Ebrahimi 
2376*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2377*9a0e4156SSadaf Ebrahimi static const name_map group_name_maps[] = {
2378*9a0e4156SSadaf Ebrahimi 	// generic groups
2379*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_INVALID, NULL },
2380*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_JUMP,	"jump" },
2381*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_CALL,	"call" },
2382*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_RET, "ret" },
2383*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_INT, "int" },
2384*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_IRET,	"iret" },
2385*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_PRIVILEGE, "privilege" },
2386*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_BRANCH_RELATIVE, "branch_relative" },
2387*9a0e4156SSadaf Ebrahimi 
2388*9a0e4156SSadaf Ebrahimi 	// architecture-specific groups
2389*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_VM, "vm" },
2390*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_3DNOW, "3dnow" },
2391*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_AES, "aes" },
2392*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_ADX, "adx" },
2393*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_AVX, "avx" },
2394*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_AVX2, "avx2" },
2395*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_AVX512, "avx512" },
2396*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_BMI, "bmi" },
2397*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_BMI2, "bmi2" },
2398*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_CMOV, "cmov" },
2399*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_F16C, "fc16" },
2400*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_FMA, "fma" },
2401*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_FMA4, "fma4" },
2402*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_FSGSBASE, "fsgsbase" },
2403*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_HLE, "hle" },
2404*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_MMX, "mmx" },
2405*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_MODE32, "mode32" },
2406*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_MODE64, "mode64" },
2407*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_RTM, "rtm" },
2408*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SHA, "sha" },
2409*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSE1, "sse1" },
2410*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSE2, "sse2" },
2411*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSE3, "sse3" },
2412*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSE41, "sse41" },
2413*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSE42, "sse42" },
2414*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSE4A, "sse4a" },
2415*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SSSE3, "ssse3" },
2416*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_PCLMUL, "pclmul" },
2417*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_XOP, "xop" },
2418*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_CDI, "cdi" },
2419*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_ERI, "eri" },
2420*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_TBM, "tbm" },
2421*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_16BITMODE, "16bitmode" },
2422*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_NOT64BITMODE, "not64bitmode" },
2423*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SGX,	"sgx" },
2424*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_DQI,	"dqi" },
2425*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_BWI,	"bwi" },
2426*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_PFI,	"pfi" },
2427*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_VLX,	"vlx" },
2428*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_SMAP,	"smap" },
2429*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_NOVLX, "novlx" },
2430*9a0e4156SSadaf Ebrahimi 	{ X86_GRP_FPU, "fpu" },
2431*9a0e4156SSadaf Ebrahimi };
2432*9a0e4156SSadaf Ebrahimi #endif
2433*9a0e4156SSadaf Ebrahimi 
X86_group_name(csh handle,unsigned int id)2434*9a0e4156SSadaf Ebrahimi const char *X86_group_name(csh handle, unsigned int id)
2435*9a0e4156SSadaf Ebrahimi {
2436*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2437*9a0e4156SSadaf Ebrahimi 	return id2name(group_name_maps, ARR_SIZE(group_name_maps), id);
2438*9a0e4156SSadaf Ebrahimi #else
2439*9a0e4156SSadaf Ebrahimi 	return NULL;
2440*9a0e4156SSadaf Ebrahimi #endif
2441*9a0e4156SSadaf Ebrahimi }
2442*9a0e4156SSadaf Ebrahimi 
2443*9a0e4156SSadaf Ebrahimi #define GET_INSTRINFO_ENUM
2444*9a0e4156SSadaf Ebrahimi #ifdef CAPSTONE_X86_REDUCE
2445*9a0e4156SSadaf Ebrahimi #include "X86GenInstrInfo_reduce.inc"
2446*9a0e4156SSadaf Ebrahimi #else
2447*9a0e4156SSadaf Ebrahimi #include "X86GenInstrInfo.inc"
2448*9a0e4156SSadaf Ebrahimi #endif
2449*9a0e4156SSadaf Ebrahimi 
2450*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
2451*9a0e4156SSadaf Ebrahimi static const insn_map insns[] = {	// full x86 instructions
2452*9a0e4156SSadaf Ebrahimi 	// dummy item
2453*9a0e4156SSadaf Ebrahimi 	{
2454*9a0e4156SSadaf Ebrahimi 		0, 0,
2455*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2456*9a0e4156SSadaf Ebrahimi 		{ 0 }, { 0 }, { 0 }, 0, 0
2457*9a0e4156SSadaf Ebrahimi #endif
2458*9a0e4156SSadaf Ebrahimi 	},
2459*9a0e4156SSadaf Ebrahimi 
2460*9a0e4156SSadaf Ebrahimi #include "X86MappingInsn.inc"
2461*9a0e4156SSadaf Ebrahimi };
2462*9a0e4156SSadaf Ebrahimi #else	// X86 reduce (defined CAPSTONE_X86_REDUCE)
2463*9a0e4156SSadaf Ebrahimi static insn_map insns[] = {	// reduce x86 instructions
2464*9a0e4156SSadaf Ebrahimi 	// dummy item
2465*9a0e4156SSadaf Ebrahimi 	{
2466*9a0e4156SSadaf Ebrahimi 		0, 0,
2467*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2468*9a0e4156SSadaf Ebrahimi 		{ 0 }, { 0 }, { 0 }, 0, 0
2469*9a0e4156SSadaf Ebrahimi #endif
2470*9a0e4156SSadaf Ebrahimi 	},
2471*9a0e4156SSadaf Ebrahimi 
2472*9a0e4156SSadaf Ebrahimi #include "X86MappingInsn_reduce.inc"
2473*9a0e4156SSadaf Ebrahimi };
2474*9a0e4156SSadaf Ebrahimi #endif
2475*9a0e4156SSadaf Ebrahimi 
2476*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2477*9a0e4156SSadaf Ebrahimi // replace r1 = r2
arr_replace(uint16_t * arr,uint8_t max,x86_reg r1,x86_reg r2)2478*9a0e4156SSadaf Ebrahimi static void arr_replace(uint16_t *arr, uint8_t max, x86_reg r1, x86_reg r2)
2479*9a0e4156SSadaf Ebrahimi {
2480*9a0e4156SSadaf Ebrahimi 	uint8_t i;
2481*9a0e4156SSadaf Ebrahimi 
2482*9a0e4156SSadaf Ebrahimi 	for(i = 0; i < max; i++) {
2483*9a0e4156SSadaf Ebrahimi 		if (arr[i] == r1) {
2484*9a0e4156SSadaf Ebrahimi 			arr[i] = r2;
2485*9a0e4156SSadaf Ebrahimi 			break;
2486*9a0e4156SSadaf Ebrahimi 		}
2487*9a0e4156SSadaf Ebrahimi 	}
2488*9a0e4156SSadaf Ebrahimi }
2489*9a0e4156SSadaf Ebrahimi #endif
2490*9a0e4156SSadaf Ebrahimi 
2491*9a0e4156SSadaf Ebrahimi // given internal insn id, return public instruction info
X86_get_insn_id(cs_struct * h,cs_insn * insn,unsigned int id)2492*9a0e4156SSadaf Ebrahimi void X86_get_insn_id(cs_struct *h, cs_insn *insn, unsigned int id)
2493*9a0e4156SSadaf Ebrahimi {
2494*9a0e4156SSadaf Ebrahimi 	int i = insn_find(insns, ARR_SIZE(insns), id, &h->insn_cache);
2495*9a0e4156SSadaf Ebrahimi 	if (i != 0) {
2496*9a0e4156SSadaf Ebrahimi 		insn->id = insns[i].mapid;
2497*9a0e4156SSadaf Ebrahimi 
2498*9a0e4156SSadaf Ebrahimi 		if (h->detail) {
2499*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
2500*9a0e4156SSadaf Ebrahimi 			memcpy(insn->detail->regs_read, insns[i].regs_use, sizeof(insns[i].regs_use));
2501*9a0e4156SSadaf Ebrahimi 			insn->detail->regs_read_count = (uint8_t)count_positive(insns[i].regs_use);
2502*9a0e4156SSadaf Ebrahimi 
2503*9a0e4156SSadaf Ebrahimi 			// special cases when regs_write[] depends on arch
2504*9a0e4156SSadaf Ebrahimi 			switch(id) {
2505*9a0e4156SSadaf Ebrahimi 				default:
2506*9a0e4156SSadaf Ebrahimi 					memcpy(insn->detail->regs_write, insns[i].regs_mod, sizeof(insns[i].regs_mod));
2507*9a0e4156SSadaf Ebrahimi 					insn->detail->regs_write_count = (uint8_t)count_positive(insns[i].regs_mod);
2508*9a0e4156SSadaf Ebrahimi 					break;
2509*9a0e4156SSadaf Ebrahimi 				case X86_RDTSC:
2510*9a0e4156SSadaf Ebrahimi 					if (h->mode == CS_MODE_64) {
2511*9a0e4156SSadaf Ebrahimi 						memcpy(insn->detail->regs_write, insns[i].regs_mod, sizeof(insns[i].regs_mod));
2512*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write_count = (uint8_t)count_positive(insns[i].regs_mod);
2513*9a0e4156SSadaf Ebrahimi 					} else {
2514*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write[0] = X86_REG_EAX;
2515*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write[1] = X86_REG_EDX;
2516*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write_count = 2;
2517*9a0e4156SSadaf Ebrahimi 					}
2518*9a0e4156SSadaf Ebrahimi 					break;
2519*9a0e4156SSadaf Ebrahimi 				case X86_RDTSCP:
2520*9a0e4156SSadaf Ebrahimi 					if (h->mode == CS_MODE_64) {
2521*9a0e4156SSadaf Ebrahimi 						memcpy(insn->detail->regs_write, insns[i].regs_mod, sizeof(insns[i].regs_mod));
2522*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write_count = (uint8_t)count_positive(insns[i].regs_mod);
2523*9a0e4156SSadaf Ebrahimi 					} else {
2524*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write[0] = X86_REG_EAX;
2525*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write[1] = X86_REG_ECX;
2526*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write[2] = X86_REG_EDX;
2527*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_write_count = 3;
2528*9a0e4156SSadaf Ebrahimi 					}
2529*9a0e4156SSadaf Ebrahimi 					break;
2530*9a0e4156SSadaf Ebrahimi 			}
2531*9a0e4156SSadaf Ebrahimi 
2532*9a0e4156SSadaf Ebrahimi 			switch(insn->id) {
2533*9a0e4156SSadaf Ebrahimi 				default:
2534*9a0e4156SSadaf Ebrahimi 					break;
2535*9a0e4156SSadaf Ebrahimi 
2536*9a0e4156SSadaf Ebrahimi 				case X86_INS_LOOP:
2537*9a0e4156SSadaf Ebrahimi 				case X86_INS_LOOPE:
2538*9a0e4156SSadaf Ebrahimi 				case X86_INS_LOOPNE:
2539*9a0e4156SSadaf Ebrahimi 					switch(h->mode) {
2540*9a0e4156SSadaf Ebrahimi 						default: break;
2541*9a0e4156SSadaf Ebrahimi 						case CS_MODE_16:
2542*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_read[0] = X86_REG_CX;
2543*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_read_count = 1;
2544*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_write[0] = X86_REG_CX;
2545*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_write_count = 1;
2546*9a0e4156SSadaf Ebrahimi 								 break;
2547*9a0e4156SSadaf Ebrahimi 						case CS_MODE_32:
2548*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_read[0] = X86_REG_ECX;
2549*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_read_count = 1;
2550*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_write[0] = X86_REG_ECX;
2551*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_write_count = 1;
2552*9a0e4156SSadaf Ebrahimi 								 break;
2553*9a0e4156SSadaf Ebrahimi 						case CS_MODE_64:
2554*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_read[0] = X86_REG_RCX;
2555*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_read_count = 1;
2556*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_write[0] = X86_REG_RCX;
2557*9a0e4156SSadaf Ebrahimi 								 insn->detail->regs_write_count = 1;
2558*9a0e4156SSadaf Ebrahimi 								 break;
2559*9a0e4156SSadaf Ebrahimi 					}
2560*9a0e4156SSadaf Ebrahimi 
2561*9a0e4156SSadaf Ebrahimi 					// LOOPE & LOOPNE also read EFLAGS
2562*9a0e4156SSadaf Ebrahimi 					if (insn->id != X86_INS_LOOP) {
2563*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_read[1] = X86_REG_EFLAGS;
2564*9a0e4156SSadaf Ebrahimi 						insn->detail->regs_read_count = 2;
2565*9a0e4156SSadaf Ebrahimi 					}
2566*9a0e4156SSadaf Ebrahimi 
2567*9a0e4156SSadaf Ebrahimi 					break;
2568*9a0e4156SSadaf Ebrahimi 
2569*9a0e4156SSadaf Ebrahimi 				case X86_INS_LODSB:
2570*9a0e4156SSadaf Ebrahimi 				case X86_INS_LODSD:
2571*9a0e4156SSadaf Ebrahimi 				case X86_INS_LODSQ:
2572*9a0e4156SSadaf Ebrahimi 				case X86_INS_LODSW:
2573*9a0e4156SSadaf Ebrahimi 					switch(h->mode) {
2574*9a0e4156SSadaf Ebrahimi 						default:
2575*9a0e4156SSadaf Ebrahimi 							break;
2576*9a0e4156SSadaf Ebrahimi 						case CS_MODE_16:
2577*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_ESI, X86_REG_SI);
2578*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_ESI, X86_REG_SI);
2579*9a0e4156SSadaf Ebrahimi 							break;
2580*9a0e4156SSadaf Ebrahimi 						case CS_MODE_64:
2581*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_ESI, X86_REG_RSI);
2582*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_ESI, X86_REG_RSI);
2583*9a0e4156SSadaf Ebrahimi 							break;
2584*9a0e4156SSadaf Ebrahimi 					}
2585*9a0e4156SSadaf Ebrahimi 					break;
2586*9a0e4156SSadaf Ebrahimi 
2587*9a0e4156SSadaf Ebrahimi 				case X86_INS_SCASB:
2588*9a0e4156SSadaf Ebrahimi 				case X86_INS_SCASW:
2589*9a0e4156SSadaf Ebrahimi 				case X86_INS_SCASQ:
2590*9a0e4156SSadaf Ebrahimi 				case X86_INS_STOSB:
2591*9a0e4156SSadaf Ebrahimi 				case X86_INS_STOSD:
2592*9a0e4156SSadaf Ebrahimi 				case X86_INS_STOSQ:
2593*9a0e4156SSadaf Ebrahimi 				case X86_INS_STOSW:
2594*9a0e4156SSadaf Ebrahimi 					switch(h->mode) {
2595*9a0e4156SSadaf Ebrahimi 						default:
2596*9a0e4156SSadaf Ebrahimi 							break;
2597*9a0e4156SSadaf Ebrahimi 						case CS_MODE_16:
2598*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_EDI, X86_REG_DI);
2599*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_EDI, X86_REG_DI);
2600*9a0e4156SSadaf Ebrahimi 							break;
2601*9a0e4156SSadaf Ebrahimi 						case CS_MODE_64:
2602*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_EDI, X86_REG_RDI);
2603*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_EDI, X86_REG_RDI);
2604*9a0e4156SSadaf Ebrahimi 							break;
2605*9a0e4156SSadaf Ebrahimi 					}
2606*9a0e4156SSadaf Ebrahimi 					break;
2607*9a0e4156SSadaf Ebrahimi 
2608*9a0e4156SSadaf Ebrahimi 				case X86_INS_CMPSB:
2609*9a0e4156SSadaf Ebrahimi 				case X86_INS_CMPSD:
2610*9a0e4156SSadaf Ebrahimi 				case X86_INS_CMPSQ:
2611*9a0e4156SSadaf Ebrahimi 				case X86_INS_CMPSW:
2612*9a0e4156SSadaf Ebrahimi 				case X86_INS_MOVSB:
2613*9a0e4156SSadaf Ebrahimi 				case X86_INS_MOVSW:
2614*9a0e4156SSadaf Ebrahimi 				case X86_INS_MOVSD:
2615*9a0e4156SSadaf Ebrahimi 				case X86_INS_MOVSQ:
2616*9a0e4156SSadaf Ebrahimi 					switch(h->mode) {
2617*9a0e4156SSadaf Ebrahimi 						default:
2618*9a0e4156SSadaf Ebrahimi 							break;
2619*9a0e4156SSadaf Ebrahimi 						case CS_MODE_16:
2620*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_EDI, X86_REG_DI);
2621*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_EDI, X86_REG_DI);
2622*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_ESI, X86_REG_SI);
2623*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_ESI, X86_REG_SI);
2624*9a0e4156SSadaf Ebrahimi 							break;
2625*9a0e4156SSadaf Ebrahimi 						case CS_MODE_64:
2626*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_EDI, X86_REG_RDI);
2627*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_EDI, X86_REG_RDI);
2628*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_read, insn->detail->regs_read_count, X86_REG_ESI, X86_REG_RSI);
2629*9a0e4156SSadaf Ebrahimi 							arr_replace(insn->detail->regs_write, insn->detail->regs_write_count, X86_REG_ESI, X86_REG_RSI);
2630*9a0e4156SSadaf Ebrahimi 							break;
2631*9a0e4156SSadaf Ebrahimi 					}
2632*9a0e4156SSadaf Ebrahimi 					break;
2633*9a0e4156SSadaf Ebrahimi 
2634*9a0e4156SSadaf Ebrahimi 				case X86_INS_RET:
2635*9a0e4156SSadaf Ebrahimi 					switch(h->mode) {
2636*9a0e4156SSadaf Ebrahimi 						case CS_MODE_16:
2637*9a0e4156SSadaf Ebrahimi 							insn->detail->regs_write[0] = X86_REG_SP;
2638*9a0e4156SSadaf Ebrahimi 							insn->detail->regs_read[0] = X86_REG_SP;
2639*9a0e4156SSadaf Ebrahimi 							break;
2640*9a0e4156SSadaf Ebrahimi 						case CS_MODE_32:
2641*9a0e4156SSadaf Ebrahimi 							insn->detail->regs_write[0] = X86_REG_ESP;
2642*9a0e4156SSadaf Ebrahimi 							insn->detail->regs_read[0] = X86_REG_ESP;
2643*9a0e4156SSadaf Ebrahimi 							break;
2644*9a0e4156SSadaf Ebrahimi 						default:	// 64-bit
2645*9a0e4156SSadaf Ebrahimi 							insn->detail->regs_write[0] = X86_REG_RSP;
2646*9a0e4156SSadaf Ebrahimi 							insn->detail->regs_read[0] = X86_REG_RSP;
2647*9a0e4156SSadaf Ebrahimi 							break;
2648*9a0e4156SSadaf Ebrahimi 					}
2649*9a0e4156SSadaf Ebrahimi 					insn->detail->regs_write_count = 1;
2650*9a0e4156SSadaf Ebrahimi 					insn->detail->regs_read_count = 1;
2651*9a0e4156SSadaf Ebrahimi 					break;
2652*9a0e4156SSadaf Ebrahimi 			}
2653*9a0e4156SSadaf Ebrahimi 
2654*9a0e4156SSadaf Ebrahimi 			memcpy(insn->detail->groups, insns[i].groups, sizeof(insns[i].groups));
2655*9a0e4156SSadaf Ebrahimi 			insn->detail->groups_count = (uint8_t)count_positive8(insns[i].groups);
2656*9a0e4156SSadaf Ebrahimi 
2657*9a0e4156SSadaf Ebrahimi 			if (insns[i].branch || insns[i].indirect_branch) {
2658*9a0e4156SSadaf Ebrahimi 				// this insn also belongs to JUMP group. add JUMP group
2659*9a0e4156SSadaf Ebrahimi 				insn->detail->groups[insn->detail->groups_count] = X86_GRP_JUMP;
2660*9a0e4156SSadaf Ebrahimi 				insn->detail->groups_count++;
2661*9a0e4156SSadaf Ebrahimi 			}
2662*9a0e4156SSadaf Ebrahimi 
2663*9a0e4156SSadaf Ebrahimi 			switch (insns[i].id) {
2664*9a0e4156SSadaf Ebrahimi 				case X86_OUT8ir:
2665*9a0e4156SSadaf Ebrahimi 				case X86_OUT16ir:
2666*9a0e4156SSadaf Ebrahimi 				case X86_OUT32ir:
2667*9a0e4156SSadaf Ebrahimi 					if (insn->detail->x86.operands[0].imm == -78) {
2668*9a0e4156SSadaf Ebrahimi 						// Writing to port 0xb2 causes an SMI on most platforms
2669*9a0e4156SSadaf Ebrahimi 						// See: http://cs.gmu.edu/~tr-admin/papers/GMU-CS-TR-2011-8.pdf
2670*9a0e4156SSadaf Ebrahimi 						insn->detail->groups[insn->detail->groups_count] = X86_GRP_INT;
2671*9a0e4156SSadaf Ebrahimi 						insn->detail->groups_count++;
2672*9a0e4156SSadaf Ebrahimi 					}
2673*9a0e4156SSadaf Ebrahimi 					break;
2674*9a0e4156SSadaf Ebrahimi 
2675*9a0e4156SSadaf Ebrahimi 				default:
2676*9a0e4156SSadaf Ebrahimi 					break;
2677*9a0e4156SSadaf Ebrahimi 			}
2678*9a0e4156SSadaf Ebrahimi #endif
2679*9a0e4156SSadaf Ebrahimi 		}
2680*9a0e4156SSadaf Ebrahimi 	}
2681*9a0e4156SSadaf Ebrahimi }
2682*9a0e4156SSadaf Ebrahimi 
2683*9a0e4156SSadaf Ebrahimi // map special instructions with accumulate registers.
2684*9a0e4156SSadaf Ebrahimi // this is needed because LLVM embeds these register names into AsmStrs[],
2685*9a0e4156SSadaf Ebrahimi // but not separately in operands
2686*9a0e4156SSadaf Ebrahimi struct insn_reg {
2687*9a0e4156SSadaf Ebrahimi 	uint16_t insn;
2688*9a0e4156SSadaf Ebrahimi 	x86_reg reg;
2689*9a0e4156SSadaf Ebrahimi 	enum cs_ac_type access;
2690*9a0e4156SSadaf Ebrahimi };
2691*9a0e4156SSadaf Ebrahimi 
2692*9a0e4156SSadaf Ebrahimi struct insn_reg2 {
2693*9a0e4156SSadaf Ebrahimi 	uint16_t insn;
2694*9a0e4156SSadaf Ebrahimi 	x86_reg reg1, reg2;
2695*9a0e4156SSadaf Ebrahimi 	enum cs_ac_type access1, access2;
2696*9a0e4156SSadaf Ebrahimi };
2697*9a0e4156SSadaf Ebrahimi 
2698*9a0e4156SSadaf Ebrahimi static struct insn_reg insn_regs_att[] = {
2699*9a0e4156SSadaf Ebrahimi 	{ X86_INSB, X86_REG_DX },
2700*9a0e4156SSadaf Ebrahimi 	{ X86_INSW, X86_REG_DX },
2701*9a0e4156SSadaf Ebrahimi 	{ X86_INSL, X86_REG_DX },
2702*9a0e4156SSadaf Ebrahimi 
2703*9a0e4156SSadaf Ebrahimi 	{ X86_MOV8o16a, X86_REG_AL },
2704*9a0e4156SSadaf Ebrahimi 	{ X86_MOV8o32a, X86_REG_AL },
2705*9a0e4156SSadaf Ebrahimi 	{ X86_MOV8o64a, X86_REG_AL },
2706*9a0e4156SSadaf Ebrahimi 
2707*9a0e4156SSadaf Ebrahimi 	{ X86_MOV16o16a, X86_REG_AX },
2708*9a0e4156SSadaf Ebrahimi 	{ X86_MOV16o32a, X86_REG_AX },
2709*9a0e4156SSadaf Ebrahimi 	{ X86_MOV16o64a, X86_REG_AX },
2710*9a0e4156SSadaf Ebrahimi 
2711*9a0e4156SSadaf Ebrahimi 	{ X86_MOV32o16a, X86_REG_EAX },
2712*9a0e4156SSadaf Ebrahimi 	{ X86_MOV32o32a, X86_REG_EAX },
2713*9a0e4156SSadaf Ebrahimi 	{ X86_MOV32o64a, X86_REG_EAX },
2714*9a0e4156SSadaf Ebrahimi 
2715*9a0e4156SSadaf Ebrahimi 	{ X86_MOV64o32a, X86_REG_RAX },
2716*9a0e4156SSadaf Ebrahimi 	{ X86_MOV64o64a, X86_REG_RAX },
2717*9a0e4156SSadaf Ebrahimi 
2718*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHCS32, X86_REG_CS },
2719*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHDS32, X86_REG_DS },
2720*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHES32, X86_REG_ES },
2721*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHFS32, X86_REG_FS },
2722*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHGS32, X86_REG_GS },
2723*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHSS32, X86_REG_SS },
2724*9a0e4156SSadaf Ebrahimi 
2725*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHFS64, X86_REG_FS },
2726*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHGS64, X86_REG_GS },
2727*9a0e4156SSadaf Ebrahimi 
2728*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHCS16, X86_REG_CS },
2729*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHDS16, X86_REG_DS },
2730*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHES16, X86_REG_ES },
2731*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHFS16, X86_REG_FS },
2732*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHGS16, X86_REG_GS },
2733*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHSS16, X86_REG_SS },
2734*9a0e4156SSadaf Ebrahimi 
2735*9a0e4156SSadaf Ebrahimi 	{ X86_POPDS32, X86_REG_DS },
2736*9a0e4156SSadaf Ebrahimi 	{ X86_POPES32, X86_REG_ES },
2737*9a0e4156SSadaf Ebrahimi 	{ X86_POPFS32, X86_REG_FS },
2738*9a0e4156SSadaf Ebrahimi 	{ X86_POPGS32, X86_REG_GS },
2739*9a0e4156SSadaf Ebrahimi 	{ X86_POPSS32, X86_REG_SS },
2740*9a0e4156SSadaf Ebrahimi 
2741*9a0e4156SSadaf Ebrahimi 	{ X86_POPFS64, X86_REG_FS },
2742*9a0e4156SSadaf Ebrahimi 	{ X86_POPGS64, X86_REG_GS },
2743*9a0e4156SSadaf Ebrahimi 
2744*9a0e4156SSadaf Ebrahimi 	{ X86_POPDS16, X86_REG_DS },
2745*9a0e4156SSadaf Ebrahimi 	{ X86_POPES16, X86_REG_ES },
2746*9a0e4156SSadaf Ebrahimi 	{ X86_POPFS16, X86_REG_FS },
2747*9a0e4156SSadaf Ebrahimi 	{ X86_POPGS16, X86_REG_GS },
2748*9a0e4156SSadaf Ebrahimi 	{ X86_POPSS16, X86_REG_SS },
2749*9a0e4156SSadaf Ebrahimi 
2750*9a0e4156SSadaf Ebrahimi 	{ X86_RCL32rCL, X86_REG_CL },
2751*9a0e4156SSadaf Ebrahimi 	{ X86_SHL8rCL, X86_REG_CL },
2752*9a0e4156SSadaf Ebrahimi 	{ X86_SHL16rCL, X86_REG_CL },
2753*9a0e4156SSadaf Ebrahimi 	{ X86_SHL32rCL, X86_REG_CL },
2754*9a0e4156SSadaf Ebrahimi 	{ X86_SHL64rCL, X86_REG_CL },
2755*9a0e4156SSadaf Ebrahimi 	{ X86_SAL8rCL, X86_REG_CL },
2756*9a0e4156SSadaf Ebrahimi 	{ X86_SAL16rCL, X86_REG_CL },
2757*9a0e4156SSadaf Ebrahimi 	{ X86_SAL32rCL, X86_REG_CL },
2758*9a0e4156SSadaf Ebrahimi 	{ X86_SAL64rCL, X86_REG_CL },
2759*9a0e4156SSadaf Ebrahimi 	{ X86_SHR8rCL, X86_REG_CL },
2760*9a0e4156SSadaf Ebrahimi 	{ X86_SHR16rCL, X86_REG_CL },
2761*9a0e4156SSadaf Ebrahimi 	{ X86_SHR32rCL, X86_REG_CL },
2762*9a0e4156SSadaf Ebrahimi 	{ X86_SHR64rCL, X86_REG_CL },
2763*9a0e4156SSadaf Ebrahimi 	{ X86_SAR8rCL, X86_REG_CL },
2764*9a0e4156SSadaf Ebrahimi 	{ X86_SAR16rCL, X86_REG_CL },
2765*9a0e4156SSadaf Ebrahimi 	{ X86_SAR32rCL, X86_REG_CL },
2766*9a0e4156SSadaf Ebrahimi 	{ X86_SAR64rCL, X86_REG_CL },
2767*9a0e4156SSadaf Ebrahimi 	{ X86_RCL8rCL, X86_REG_CL },
2768*9a0e4156SSadaf Ebrahimi 	{ X86_RCL16rCL, X86_REG_CL },
2769*9a0e4156SSadaf Ebrahimi 	{ X86_RCL32rCL, X86_REG_CL },
2770*9a0e4156SSadaf Ebrahimi 	{ X86_RCL64rCL, X86_REG_CL },
2771*9a0e4156SSadaf Ebrahimi 	{ X86_RCR8rCL, X86_REG_CL },
2772*9a0e4156SSadaf Ebrahimi 	{ X86_RCR16rCL, X86_REG_CL },
2773*9a0e4156SSadaf Ebrahimi 	{ X86_RCR32rCL, X86_REG_CL },
2774*9a0e4156SSadaf Ebrahimi 	{ X86_RCR64rCL, X86_REG_CL },
2775*9a0e4156SSadaf Ebrahimi 	{ X86_ROL8rCL, X86_REG_CL },
2776*9a0e4156SSadaf Ebrahimi 	{ X86_ROL16rCL, X86_REG_CL },
2777*9a0e4156SSadaf Ebrahimi 	{ X86_ROL32rCL, X86_REG_CL },
2778*9a0e4156SSadaf Ebrahimi 	{ X86_ROL64rCL, X86_REG_CL },
2779*9a0e4156SSadaf Ebrahimi 	{ X86_ROR8rCL, X86_REG_CL },
2780*9a0e4156SSadaf Ebrahimi 	{ X86_ROR16rCL, X86_REG_CL },
2781*9a0e4156SSadaf Ebrahimi 	{ X86_ROR32rCL, X86_REG_CL },
2782*9a0e4156SSadaf Ebrahimi 	{ X86_ROR64rCL, X86_REG_CL },
2783*9a0e4156SSadaf Ebrahimi 	{ X86_SHLD16rrCL, X86_REG_CL },
2784*9a0e4156SSadaf Ebrahimi 	{ X86_SHRD16rrCL, X86_REG_CL },
2785*9a0e4156SSadaf Ebrahimi 	{ X86_SHLD32rrCL, X86_REG_CL },
2786*9a0e4156SSadaf Ebrahimi 	{ X86_SHRD32rrCL, X86_REG_CL },
2787*9a0e4156SSadaf Ebrahimi 	{ X86_SHLD64rrCL, X86_REG_CL },
2788*9a0e4156SSadaf Ebrahimi 	{ X86_SHRD64rrCL, X86_REG_CL },
2789*9a0e4156SSadaf Ebrahimi 	{ X86_SHLD16mrCL, X86_REG_CL },
2790*9a0e4156SSadaf Ebrahimi 	{ X86_SHRD16mrCL, X86_REG_CL },
2791*9a0e4156SSadaf Ebrahimi 	{ X86_SHLD32mrCL, X86_REG_CL },
2792*9a0e4156SSadaf Ebrahimi 	{ X86_SHRD32mrCL, X86_REG_CL },
2793*9a0e4156SSadaf Ebrahimi 	{ X86_SHLD64mrCL, X86_REG_CL },
2794*9a0e4156SSadaf Ebrahimi 	{ X86_SHRD64mrCL, X86_REG_CL },
2795*9a0e4156SSadaf Ebrahimi 
2796*9a0e4156SSadaf Ebrahimi 	{ X86_OUT8ir, X86_REG_AL },
2797*9a0e4156SSadaf Ebrahimi 	{ X86_OUT16ir, X86_REG_AX },
2798*9a0e4156SSadaf Ebrahimi 	{ X86_OUT32ir, X86_REG_EAX },
2799*9a0e4156SSadaf Ebrahimi 
2800*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
2801*9a0e4156SSadaf Ebrahimi 	{ X86_SKINIT, X86_REG_EAX },
2802*9a0e4156SSadaf Ebrahimi 	{ X86_VMRUN32, X86_REG_EAX },
2803*9a0e4156SSadaf Ebrahimi 	{ X86_VMRUN64, X86_REG_RAX },
2804*9a0e4156SSadaf Ebrahimi 	{ X86_VMLOAD32, X86_REG_EAX },
2805*9a0e4156SSadaf Ebrahimi 	{ X86_VMLOAD64, X86_REG_RAX },
2806*9a0e4156SSadaf Ebrahimi 	{ X86_VMSAVE32, X86_REG_EAX },
2807*9a0e4156SSadaf Ebrahimi 	{ X86_VMSAVE64, X86_REG_RAX },
2808*9a0e4156SSadaf Ebrahimi 
2809*9a0e4156SSadaf Ebrahimi 	{ X86_FNSTSW16r, X86_REG_AX },
2810*9a0e4156SSadaf Ebrahimi 
2811*9a0e4156SSadaf Ebrahimi 	{ X86_ADD_FrST0, X86_REG_ST0 },
2812*9a0e4156SSadaf Ebrahimi 	{ X86_SUB_FrST0, X86_REG_ST0 },
2813*9a0e4156SSadaf Ebrahimi 	{ X86_SUBR_FrST0, X86_REG_ST0 },
2814*9a0e4156SSadaf Ebrahimi 	{ X86_MUL_FrST0, X86_REG_ST0 },
2815*9a0e4156SSadaf Ebrahimi 	{ X86_DIV_FrST0, X86_REG_ST0 },
2816*9a0e4156SSadaf Ebrahimi 	{ X86_DIVR_FrST0, X86_REG_ST0 },
2817*9a0e4156SSadaf Ebrahimi #endif
2818*9a0e4156SSadaf Ebrahimi };
2819*9a0e4156SSadaf Ebrahimi 
2820*9a0e4156SSadaf Ebrahimi static struct insn_reg insn_regs_intel[] = {
2821*9a0e4156SSadaf Ebrahimi 	{ X86_OUTSB, X86_REG_DX, CS_AC_WRITE },
2822*9a0e4156SSadaf Ebrahimi 	{ X86_OUTSW, X86_REG_DX, CS_AC_WRITE },
2823*9a0e4156SSadaf Ebrahimi 	{ X86_OUTSL, X86_REG_DX, CS_AC_WRITE },
2824*9a0e4156SSadaf Ebrahimi 
2825*9a0e4156SSadaf Ebrahimi 	{ X86_MOV8ao16, X86_REG_AL, CS_AC_WRITE },     // 16-bit A0 1020                  // mov     al, byte ptr [0x2010]
2826*9a0e4156SSadaf Ebrahimi 	{ X86_MOV8ao32, X86_REG_AL, CS_AC_WRITE },     // 32-bit A0 10203040              // mov     al, byte ptr [0x40302010]
2827*9a0e4156SSadaf Ebrahimi 	{ X86_MOV8ao64, X86_REG_AL, CS_AC_WRITE },     // 64-bit 66 A0 1020304050607080   // movabs  al, byte ptr [0x8070605040302010]
2828*9a0e4156SSadaf Ebrahimi 
2829*9a0e4156SSadaf Ebrahimi 	{ X86_MOV16ao16, X86_REG_AX, CS_AC_WRITE },    // 16-bit A1 1020                  // mov     ax, word ptr [0x2010]
2830*9a0e4156SSadaf Ebrahimi 	{ X86_MOV16ao32, X86_REG_AX, CS_AC_WRITE },    // 32-bit A1 10203040              // mov     ax, word ptr [0x40302010]
2831*9a0e4156SSadaf Ebrahimi 	{ X86_MOV16ao64, X86_REG_AX, CS_AC_WRITE },    // 64-bit 66 A1 1020304050607080   // movabs  ax, word ptr [0x8070605040302010]
2832*9a0e4156SSadaf Ebrahimi 
2833*9a0e4156SSadaf Ebrahimi 	{ X86_MOV32ao16, X86_REG_EAX, CS_AC_WRITE },   // 32-bit 67 A1 1020               // mov     eax, dword ptr [0x2010]
2834*9a0e4156SSadaf Ebrahimi 	{ X86_MOV32ao32, X86_REG_EAX, CS_AC_WRITE },   // 32-bit A1 10203040              // mov     eax, dword ptr [0x40302010]
2835*9a0e4156SSadaf Ebrahimi 	{ X86_MOV32ao64, X86_REG_EAX, CS_AC_WRITE },   // 64-bit A1 1020304050607080      // movabs  eax, dword ptr [0x8070605040302010]
2836*9a0e4156SSadaf Ebrahimi 
2837*9a0e4156SSadaf Ebrahimi 	{ X86_MOV64ao32, X86_REG_RAX, CS_AC_WRITE },   // 64-bit 48 8B04 10203040         // mov     rax, qword ptr [0x40302010]
2838*9a0e4156SSadaf Ebrahimi 	{ X86_MOV64ao64, X86_REG_RAX, CS_AC_WRITE },   // 64-bit 48 A1 1020304050607080   // movabs  rax, qword ptr [0x8070605040302010]
2839*9a0e4156SSadaf Ebrahimi 
2840*9a0e4156SSadaf Ebrahimi 	{ X86_LODSQ, X86_REG_RAX, CS_AC_WRITE },
2841*9a0e4156SSadaf Ebrahimi 	{ X86_OR32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2842*9a0e4156SSadaf Ebrahimi 	{ X86_SUB32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2843*9a0e4156SSadaf Ebrahimi 	{ X86_TEST32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2844*9a0e4156SSadaf Ebrahimi 	{ X86_ADD32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2845*9a0e4156SSadaf Ebrahimi 	{ X86_XCHG64ar, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2846*9a0e4156SSadaf Ebrahimi 	{ X86_LODSB, X86_REG_AL, CS_AC_WRITE },
2847*9a0e4156SSadaf Ebrahimi 	{ X86_AND32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2848*9a0e4156SSadaf Ebrahimi 	{ X86_IN16ri, X86_REG_AX, CS_AC_WRITE },
2849*9a0e4156SSadaf Ebrahimi 	{ X86_CMP64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2850*9a0e4156SSadaf Ebrahimi 	{ X86_XOR32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2851*9a0e4156SSadaf Ebrahimi 	{ X86_XCHG16ar, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2852*9a0e4156SSadaf Ebrahimi 	{ X86_LODSW, X86_REG_AX, CS_AC_WRITE },
2853*9a0e4156SSadaf Ebrahimi 	{ X86_AND16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2854*9a0e4156SSadaf Ebrahimi 	{ X86_ADC16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2855*9a0e4156SSadaf Ebrahimi 	{ X86_XCHG32ar64, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2856*9a0e4156SSadaf Ebrahimi 	{ X86_ADC8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2857*9a0e4156SSadaf Ebrahimi 	{ X86_CMP32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2858*9a0e4156SSadaf Ebrahimi 	{ X86_AND8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2859*9a0e4156SSadaf Ebrahimi 	{ X86_SCASW, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2860*9a0e4156SSadaf Ebrahimi 	{ X86_XOR8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2861*9a0e4156SSadaf Ebrahimi 	{ X86_SUB16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2862*9a0e4156SSadaf Ebrahimi 	{ X86_OR16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2863*9a0e4156SSadaf Ebrahimi 	{ X86_XCHG32ar, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2864*9a0e4156SSadaf Ebrahimi 	{ X86_SBB8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2865*9a0e4156SSadaf Ebrahimi 	{ X86_SCASQ, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2866*9a0e4156SSadaf Ebrahimi 	{ X86_SBB32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2867*9a0e4156SSadaf Ebrahimi 	{ X86_XOR64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2868*9a0e4156SSadaf Ebrahimi 	{ X86_SUB64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2869*9a0e4156SSadaf Ebrahimi 	{ X86_ADD64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2870*9a0e4156SSadaf Ebrahimi 	{ X86_OR8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2871*9a0e4156SSadaf Ebrahimi 	{ X86_TEST64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2872*9a0e4156SSadaf Ebrahimi 	{ X86_SBB16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2873*9a0e4156SSadaf Ebrahimi 	{ X86_TEST8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2874*9a0e4156SSadaf Ebrahimi 	{ X86_IN8ri, X86_REG_AL, CS_AC_WRITE },
2875*9a0e4156SSadaf Ebrahimi 	{ X86_TEST16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2876*9a0e4156SSadaf Ebrahimi 	{ X86_SCASL, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2877*9a0e4156SSadaf Ebrahimi 	{ X86_SUB8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2878*9a0e4156SSadaf Ebrahimi 	{ X86_ADD8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2879*9a0e4156SSadaf Ebrahimi 	{ X86_OR64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2880*9a0e4156SSadaf Ebrahimi 	{ X86_SCASB, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2881*9a0e4156SSadaf Ebrahimi 	{ X86_SBB64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2882*9a0e4156SSadaf Ebrahimi 	{ X86_ADD16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2883*9a0e4156SSadaf Ebrahimi 	{ X86_XOR16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2884*9a0e4156SSadaf Ebrahimi 	{ X86_AND64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2885*9a0e4156SSadaf Ebrahimi 	{ X86_LODSL, X86_REG_EAX, CS_AC_WRITE },
2886*9a0e4156SSadaf Ebrahimi 	{ X86_CMP8i8, X86_REG_AL, CS_AC_WRITE | CS_AC_READ },
2887*9a0e4156SSadaf Ebrahimi 	{ X86_ADC64i32, X86_REG_RAX, CS_AC_WRITE | CS_AC_READ },
2888*9a0e4156SSadaf Ebrahimi 	{ X86_CMP16i16, X86_REG_AX, CS_AC_WRITE | CS_AC_READ },
2889*9a0e4156SSadaf Ebrahimi 	{ X86_ADC32i32, X86_REG_EAX, CS_AC_WRITE | CS_AC_READ },
2890*9a0e4156SSadaf Ebrahimi 	{ X86_IN32ri, X86_REG_EAX, CS_AC_WRITE },
2891*9a0e4156SSadaf Ebrahimi 
2892*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHCS32, X86_REG_CS, CS_AC_READ },
2893*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHDS32, X86_REG_DS, CS_AC_READ },
2894*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHES32, X86_REG_ES, CS_AC_READ },
2895*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHFS32, X86_REG_FS, CS_AC_READ },
2896*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHGS32, X86_REG_GS, CS_AC_READ },
2897*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHSS32, X86_REG_SS, CS_AC_READ },
2898*9a0e4156SSadaf Ebrahimi 
2899*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHFS64, X86_REG_FS, CS_AC_READ },
2900*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHGS64, X86_REG_GS, CS_AC_READ },
2901*9a0e4156SSadaf Ebrahimi 
2902*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHCS16, X86_REG_CS, CS_AC_READ },
2903*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHDS16, X86_REG_DS, CS_AC_READ },
2904*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHES16, X86_REG_ES, CS_AC_READ },
2905*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHFS16, X86_REG_FS, CS_AC_READ },
2906*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHGS16, X86_REG_GS, CS_AC_READ },
2907*9a0e4156SSadaf Ebrahimi 	{ X86_PUSHSS16, X86_REG_SS, CS_AC_READ },
2908*9a0e4156SSadaf Ebrahimi 
2909*9a0e4156SSadaf Ebrahimi 	{ X86_POPDS32, X86_REG_DS, CS_AC_WRITE },
2910*9a0e4156SSadaf Ebrahimi 	{ X86_POPES32, X86_REG_ES, CS_AC_WRITE },
2911*9a0e4156SSadaf Ebrahimi 	{ X86_POPFS32, X86_REG_FS, CS_AC_WRITE },
2912*9a0e4156SSadaf Ebrahimi 	{ X86_POPGS32, X86_REG_GS, CS_AC_WRITE },
2913*9a0e4156SSadaf Ebrahimi 	{ X86_POPSS32, X86_REG_SS, CS_AC_WRITE },
2914*9a0e4156SSadaf Ebrahimi 
2915*9a0e4156SSadaf Ebrahimi 	{ X86_POPFS64, X86_REG_FS, CS_AC_WRITE },
2916*9a0e4156SSadaf Ebrahimi 	{ X86_POPGS64, X86_REG_GS, CS_AC_WRITE },
2917*9a0e4156SSadaf Ebrahimi 
2918*9a0e4156SSadaf Ebrahimi 	{ X86_POPDS16, X86_REG_DS, CS_AC_WRITE },
2919*9a0e4156SSadaf Ebrahimi 	{ X86_POPES16, X86_REG_ES, CS_AC_WRITE },
2920*9a0e4156SSadaf Ebrahimi 	{ X86_POPFS16, X86_REG_FS, CS_AC_WRITE },
2921*9a0e4156SSadaf Ebrahimi 	{ X86_POPGS16, X86_REG_GS, CS_AC_WRITE },
2922*9a0e4156SSadaf Ebrahimi 	{ X86_POPSS16, X86_REG_SS, CS_AC_WRITE },
2923*9a0e4156SSadaf Ebrahimi 
2924*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
2925*9a0e4156SSadaf Ebrahimi 	{ X86_SKINIT, X86_REG_EAX, CS_AC_WRITE },
2926*9a0e4156SSadaf Ebrahimi 	{ X86_VMRUN32, X86_REG_EAX, CS_AC_WRITE },
2927*9a0e4156SSadaf Ebrahimi 	{ X86_VMRUN64, X86_REG_RAX, CS_AC_WRITE },
2928*9a0e4156SSadaf Ebrahimi 	{ X86_VMLOAD32, X86_REG_EAX, CS_AC_WRITE },
2929*9a0e4156SSadaf Ebrahimi 	{ X86_VMLOAD64, X86_REG_RAX, CS_AC_WRITE },
2930*9a0e4156SSadaf Ebrahimi 	{ X86_VMSAVE32, X86_REG_EAX, CS_AC_READ },
2931*9a0e4156SSadaf Ebrahimi 	{ X86_VMSAVE64, X86_REG_RAX, CS_AC_READ },
2932*9a0e4156SSadaf Ebrahimi 
2933*9a0e4156SSadaf Ebrahimi 	{ X86_FNSTSW16r, X86_REG_AX, CS_AC_WRITE },
2934*9a0e4156SSadaf Ebrahimi 
2935*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVB_F, X86_REG_ST0, CS_AC_WRITE },
2936*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVBE_F, X86_REG_ST0, CS_AC_WRITE },
2937*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVE_F, X86_REG_ST0, CS_AC_WRITE },
2938*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVP_F, X86_REG_ST0, CS_AC_WRITE },
2939*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVNB_F, X86_REG_ST0, CS_AC_WRITE },
2940*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVNBE_F, X86_REG_ST0, CS_AC_WRITE },
2941*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVNE_F, X86_REG_ST0, CS_AC_WRITE },
2942*9a0e4156SSadaf Ebrahimi 	{ X86_CMOVNP_F, X86_REG_ST0, CS_AC_WRITE },
2943*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FXCHST0r, X86_REG_ST0, CS_AC_WRITE },
2944*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FXCHST0r_alt, X86_REG_ST0, CS_AC_WRITE },
2945*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FCOMST0r, X86_REG_ST0, CS_AC_WRITE },
2946*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FCOMPST0r, X86_REG_ST0, CS_AC_WRITE },
2947*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FCOMPST0r_alt, X86_REG_ST0, CS_AC_WRITE },
2948*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FPST0r, X86_REG_ST0, CS_AC_WRITE },
2949*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FPST0r_alt, X86_REG_ST0, CS_AC_WRITE },
2950*9a0e4156SSadaf Ebrahimi 	{ X86_ST_FPNCEST0r, X86_REG_ST0, CS_AC_WRITE },
2951*9a0e4156SSadaf Ebrahimi #endif
2952*9a0e4156SSadaf Ebrahimi };
2953*9a0e4156SSadaf Ebrahimi 
2954*9a0e4156SSadaf Ebrahimi static struct insn_reg2 insn_regs_intel2[] = {
2955*9a0e4156SSadaf Ebrahimi 	{ X86_IN8rr, X86_REG_AL, X86_REG_DX, CS_AC_WRITE, CS_AC_READ },
2956*9a0e4156SSadaf Ebrahimi 	{ X86_IN16rr, X86_REG_AX, X86_REG_DX, CS_AC_WRITE, CS_AC_READ },
2957*9a0e4156SSadaf Ebrahimi 	{ X86_IN32rr, X86_REG_EAX, X86_REG_DX, CS_AC_WRITE, CS_AC_READ },
2958*9a0e4156SSadaf Ebrahimi 
2959*9a0e4156SSadaf Ebrahimi 	{ X86_OUT8rr, X86_REG_DX, X86_REG_AL, CS_AC_READ, CS_AC_READ },
2960*9a0e4156SSadaf Ebrahimi 	{ X86_OUT16rr, X86_REG_DX, X86_REG_AX, CS_AC_READ, CS_AC_READ },
2961*9a0e4156SSadaf Ebrahimi 	{ X86_OUT32rr, X86_REG_DX, X86_REG_EAX, CS_AC_READ, CS_AC_READ },
2962*9a0e4156SSadaf Ebrahimi 
2963*9a0e4156SSadaf Ebrahimi 	{ X86_INVLPGA32, X86_REG_EAX, X86_REG_ECX, CS_AC_READ, CS_AC_READ },
2964*9a0e4156SSadaf Ebrahimi 	{ X86_INVLPGA64, X86_REG_RAX, X86_REG_ECX, CS_AC_READ, CS_AC_READ },
2965*9a0e4156SSadaf Ebrahimi };
2966*9a0e4156SSadaf Ebrahimi 
2967*9a0e4156SSadaf Ebrahimi static struct insn_reg insn_regs_intel_sorted [ARR_SIZE(insn_regs_intel)];
2968*9a0e4156SSadaf Ebrahimi 
2969*9a0e4156SSadaf Ebrahimi // Explicitly specified calling convention with CAPSTONE_API so that it is always
2970*9a0e4156SSadaf Ebrahimi // compiled as __cdecl on MSVC and does not cause a compile error even when
2971*9a0e4156SSadaf Ebrahimi // default calling convention is __stdcall (eg. capstone_static_winkernel project)
regs_cmp(const void * a,const void * b)2972*9a0e4156SSadaf Ebrahimi static int CAPSTONE_API regs_cmp(const void *a, const void *b)
2973*9a0e4156SSadaf Ebrahimi {
2974*9a0e4156SSadaf Ebrahimi 	uint16_t l = ((struct insn_reg *)a)->insn;
2975*9a0e4156SSadaf Ebrahimi 	uint16_t r = ((struct insn_reg *)b)->insn;
2976*9a0e4156SSadaf Ebrahimi 	return (l - r);
2977*9a0e4156SSadaf Ebrahimi }
2978*9a0e4156SSadaf Ebrahimi 
2979*9a0e4156SSadaf Ebrahimi // return register of given instruction id
2980*9a0e4156SSadaf Ebrahimi // return 0 if not found
2981*9a0e4156SSadaf Ebrahimi // this is to handle instructions embedding accumulate registers into AsmStrs[]
X86_insn_reg_intel(unsigned int id,enum cs_ac_type * access)2982*9a0e4156SSadaf Ebrahimi x86_reg X86_insn_reg_intel(unsigned int id, enum cs_ac_type *access)
2983*9a0e4156SSadaf Ebrahimi {
2984*9a0e4156SSadaf Ebrahimi 	static bool intel_regs_sorted = false;
2985*9a0e4156SSadaf Ebrahimi 	unsigned int first = 0;
2986*9a0e4156SSadaf Ebrahimi 	unsigned int last = ARR_SIZE(insn_regs_intel) - 1;
2987*9a0e4156SSadaf Ebrahimi 	unsigned int mid;
2988*9a0e4156SSadaf Ebrahimi 
2989*9a0e4156SSadaf Ebrahimi 	if (!intel_regs_sorted) {
2990*9a0e4156SSadaf Ebrahimi 		memcpy(insn_regs_intel_sorted, insn_regs_intel,
2991*9a0e4156SSadaf Ebrahimi 				sizeof(insn_regs_intel_sorted));
2992*9a0e4156SSadaf Ebrahimi 		qsort(insn_regs_intel_sorted,
2993*9a0e4156SSadaf Ebrahimi 				ARR_SIZE(insn_regs_intel_sorted),
2994*9a0e4156SSadaf Ebrahimi 				sizeof(struct insn_reg), regs_cmp);
2995*9a0e4156SSadaf Ebrahimi 		intel_regs_sorted = true;
2996*9a0e4156SSadaf Ebrahimi 	}
2997*9a0e4156SSadaf Ebrahimi 
2998*9a0e4156SSadaf Ebrahimi 	if (insn_regs_intel_sorted[0].insn > id ||
2999*9a0e4156SSadaf Ebrahimi 			insn_regs_intel_sorted[last].insn < id) {
3000*9a0e4156SSadaf Ebrahimi 		return 0;
3001*9a0e4156SSadaf Ebrahimi 	}
3002*9a0e4156SSadaf Ebrahimi 
3003*9a0e4156SSadaf Ebrahimi 	while (first <= last) {
3004*9a0e4156SSadaf Ebrahimi 		mid = (first + last) / 2;
3005*9a0e4156SSadaf Ebrahimi 		if (insn_regs_intel_sorted[mid].insn < id) {
3006*9a0e4156SSadaf Ebrahimi 			first = mid + 1;
3007*9a0e4156SSadaf Ebrahimi 		} else if (insn_regs_intel_sorted[mid].insn == id) {
3008*9a0e4156SSadaf Ebrahimi 			if (access) {
3009*9a0e4156SSadaf Ebrahimi 				*access = insn_regs_intel_sorted[mid].access;
3010*9a0e4156SSadaf Ebrahimi 			}
3011*9a0e4156SSadaf Ebrahimi 			return insn_regs_intel_sorted[mid].reg;
3012*9a0e4156SSadaf Ebrahimi 		} else {
3013*9a0e4156SSadaf Ebrahimi 			if (mid == 0)
3014*9a0e4156SSadaf Ebrahimi 				break;
3015*9a0e4156SSadaf Ebrahimi 			last = mid - 1;
3016*9a0e4156SSadaf Ebrahimi 		}
3017*9a0e4156SSadaf Ebrahimi 	}
3018*9a0e4156SSadaf Ebrahimi 
3019*9a0e4156SSadaf Ebrahimi 	// not found
3020*9a0e4156SSadaf Ebrahimi 	return 0;
3021*9a0e4156SSadaf Ebrahimi }
3022*9a0e4156SSadaf Ebrahimi 
X86_insn_reg_intel2(unsigned int id,x86_reg * reg1,enum cs_ac_type * access1,x86_reg * reg2,enum cs_ac_type * access2)3023*9a0e4156SSadaf Ebrahimi bool X86_insn_reg_intel2(unsigned int id, x86_reg *reg1, enum cs_ac_type *access1, x86_reg *reg2, enum cs_ac_type *access2)
3024*9a0e4156SSadaf Ebrahimi {
3025*9a0e4156SSadaf Ebrahimi 	unsigned int i;
3026*9a0e4156SSadaf Ebrahimi 
3027*9a0e4156SSadaf Ebrahimi 	for (i = 0; i < ARR_SIZE(insn_regs_intel2); i++) {
3028*9a0e4156SSadaf Ebrahimi 		if (insn_regs_intel2[i].insn == id) {
3029*9a0e4156SSadaf Ebrahimi 			*reg1 = insn_regs_intel2[i].reg1;
3030*9a0e4156SSadaf Ebrahimi 			*reg2 = insn_regs_intel2[i].reg2;
3031*9a0e4156SSadaf Ebrahimi 			if (access1)
3032*9a0e4156SSadaf Ebrahimi 				*access1 = insn_regs_intel2[i].access1;
3033*9a0e4156SSadaf Ebrahimi 			if (access2)
3034*9a0e4156SSadaf Ebrahimi 				*access2 = insn_regs_intel2[i].access2;
3035*9a0e4156SSadaf Ebrahimi 			return true;
3036*9a0e4156SSadaf Ebrahimi 		}
3037*9a0e4156SSadaf Ebrahimi 	}
3038*9a0e4156SSadaf Ebrahimi 
3039*9a0e4156SSadaf Ebrahimi 	// not found
3040*9a0e4156SSadaf Ebrahimi 	return false;
3041*9a0e4156SSadaf Ebrahimi }
3042*9a0e4156SSadaf Ebrahimi 
3043*9a0e4156SSadaf Ebrahimi // ATT just reuses Intel data, but with the order of registers reversed
X86_insn_reg_att2(unsigned int id,x86_reg * reg1,enum cs_ac_type * access1,x86_reg * reg2,enum cs_ac_type * access2)3044*9a0e4156SSadaf Ebrahimi bool X86_insn_reg_att2(unsigned int id, x86_reg *reg1, enum cs_ac_type *access1, x86_reg *reg2, enum cs_ac_type *access2)
3045*9a0e4156SSadaf Ebrahimi {
3046*9a0e4156SSadaf Ebrahimi 	unsigned int i;
3047*9a0e4156SSadaf Ebrahimi 
3048*9a0e4156SSadaf Ebrahimi 	for (i = 0; i < ARR_SIZE(insn_regs_intel2); i++) {
3049*9a0e4156SSadaf Ebrahimi 		if (insn_regs_intel2[i].insn == id) {
3050*9a0e4156SSadaf Ebrahimi 			// reverse order of Intel syntax registers
3051*9a0e4156SSadaf Ebrahimi 			*reg1 = insn_regs_intel2[i].reg2;
3052*9a0e4156SSadaf Ebrahimi 			*reg2 = insn_regs_intel2[i].reg1;
3053*9a0e4156SSadaf Ebrahimi             if (access1)
3054*9a0e4156SSadaf Ebrahimi                 *access1 = insn_regs_intel2[i].access2;
3055*9a0e4156SSadaf Ebrahimi             if (access2)
3056*9a0e4156SSadaf Ebrahimi                 *access2 = insn_regs_intel2[i].access1;
3057*9a0e4156SSadaf Ebrahimi 			return true;
3058*9a0e4156SSadaf Ebrahimi 		}
3059*9a0e4156SSadaf Ebrahimi 	}
3060*9a0e4156SSadaf Ebrahimi 
3061*9a0e4156SSadaf Ebrahimi 	// not found
3062*9a0e4156SSadaf Ebrahimi 	return false;
3063*9a0e4156SSadaf Ebrahimi }
3064*9a0e4156SSadaf Ebrahimi 
X86_insn_reg_att(unsigned int id,enum cs_ac_type * access)3065*9a0e4156SSadaf Ebrahimi x86_reg X86_insn_reg_att(unsigned int id, enum cs_ac_type *access)
3066*9a0e4156SSadaf Ebrahimi {
3067*9a0e4156SSadaf Ebrahimi 	unsigned int i;
3068*9a0e4156SSadaf Ebrahimi 
3069*9a0e4156SSadaf Ebrahimi 	for (i = 0; i < ARR_SIZE(insn_regs_att); i++) {
3070*9a0e4156SSadaf Ebrahimi 		if (insn_regs_att[i].insn == id) {
3071*9a0e4156SSadaf Ebrahimi 			if (access)
3072*9a0e4156SSadaf Ebrahimi 				*access = insn_regs_att[i].access;
3073*9a0e4156SSadaf Ebrahimi 			return insn_regs_att[i].reg;
3074*9a0e4156SSadaf Ebrahimi 		}
3075*9a0e4156SSadaf Ebrahimi 	}
3076*9a0e4156SSadaf Ebrahimi 
3077*9a0e4156SSadaf Ebrahimi 	// not found
3078*9a0e4156SSadaf Ebrahimi 	return 0;
3079*9a0e4156SSadaf Ebrahimi }
3080*9a0e4156SSadaf Ebrahimi 
3081*9a0e4156SSadaf Ebrahimi // given MCInst's id, find out if this insn is valid for REPNE prefix
valid_repne(cs_struct * h,unsigned int opcode)3082*9a0e4156SSadaf Ebrahimi static bool valid_repne(cs_struct *h, unsigned int opcode)
3083*9a0e4156SSadaf Ebrahimi {
3084*9a0e4156SSadaf Ebrahimi 	unsigned int id;
3085*9a0e4156SSadaf Ebrahimi 	int i = insn_find(insns, ARR_SIZE(insns), opcode, &h->insn_cache);
3086*9a0e4156SSadaf Ebrahimi 	if (i != 0) {
3087*9a0e4156SSadaf Ebrahimi 		id = insns[i].mapid;
3088*9a0e4156SSadaf Ebrahimi 		switch(id) {
3089*9a0e4156SSadaf Ebrahimi 			default:
3090*9a0e4156SSadaf Ebrahimi 				return false;
3091*9a0e4156SSadaf Ebrahimi 
3092*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSB:
3093*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSW:
3094*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSQ:
3095*9a0e4156SSadaf Ebrahimi 
3096*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASB:
3097*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASW:
3098*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASQ:
3099*9a0e4156SSadaf Ebrahimi 
3100*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSB:
3101*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSW:
3102*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSQ:
3103*9a0e4156SSadaf Ebrahimi 
3104*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSB:
3105*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSW:
3106*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSD:
3107*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSQ:
3108*9a0e4156SSadaf Ebrahimi 
3109*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSB:
3110*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSW:
3111*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSD:
3112*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSQ:
3113*9a0e4156SSadaf Ebrahimi 
3114*9a0e4156SSadaf Ebrahimi 			case X86_INS_INSB:
3115*9a0e4156SSadaf Ebrahimi 			case X86_INS_INSW:
3116*9a0e4156SSadaf Ebrahimi 			case X86_INS_INSD:
3117*9a0e4156SSadaf Ebrahimi 
3118*9a0e4156SSadaf Ebrahimi 			case X86_INS_OUTSB:
3119*9a0e4156SSadaf Ebrahimi 			case X86_INS_OUTSW:
3120*9a0e4156SSadaf Ebrahimi 			case X86_INS_OUTSD:
3121*9a0e4156SSadaf Ebrahimi 
3122*9a0e4156SSadaf Ebrahimi 				return true;
3123*9a0e4156SSadaf Ebrahimi 
3124*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSD:
3125*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_MOVSL) // REP MOVSD
3126*9a0e4156SSadaf Ebrahimi 					return true;
3127*9a0e4156SSadaf Ebrahimi 				return false;
3128*9a0e4156SSadaf Ebrahimi 
3129*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSD:
3130*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_CMPSL) // REP CMPSD
3131*9a0e4156SSadaf Ebrahimi 					return true;
3132*9a0e4156SSadaf Ebrahimi 				return false;
3133*9a0e4156SSadaf Ebrahimi 
3134*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASD:
3135*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_SCASL) // REP SCASD
3136*9a0e4156SSadaf Ebrahimi 					return true;
3137*9a0e4156SSadaf Ebrahimi 				return false;
3138*9a0e4156SSadaf Ebrahimi 		}
3139*9a0e4156SSadaf Ebrahimi 	}
3140*9a0e4156SSadaf Ebrahimi 
3141*9a0e4156SSadaf Ebrahimi 	// not found
3142*9a0e4156SSadaf Ebrahimi 	return false;
3143*9a0e4156SSadaf Ebrahimi }
3144*9a0e4156SSadaf Ebrahimi 
3145*9a0e4156SSadaf Ebrahimi // given MCInst's id, find out if this insn is valid for BND prefix
3146*9a0e4156SSadaf Ebrahimi // BND prefix is valid for CALL/JMP/RET
3147*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
valid_bnd(cs_struct * h,unsigned int opcode)3148*9a0e4156SSadaf Ebrahimi static bool valid_bnd(cs_struct *h, unsigned int opcode)
3149*9a0e4156SSadaf Ebrahimi {
3150*9a0e4156SSadaf Ebrahimi 	unsigned int id;
3151*9a0e4156SSadaf Ebrahimi 	int i = insn_find(insns, ARR_SIZE(insns), opcode, &h->insn_cache);
3152*9a0e4156SSadaf Ebrahimi 	if (i != 0) {
3153*9a0e4156SSadaf Ebrahimi 		id = insns[i].mapid;
3154*9a0e4156SSadaf Ebrahimi 		switch(id) {
3155*9a0e4156SSadaf Ebrahimi 			default:
3156*9a0e4156SSadaf Ebrahimi 				return false;
3157*9a0e4156SSadaf Ebrahimi 
3158*9a0e4156SSadaf Ebrahimi 			case X86_INS_JAE:
3159*9a0e4156SSadaf Ebrahimi 			case X86_INS_JA:
3160*9a0e4156SSadaf Ebrahimi 			case X86_INS_JBE:
3161*9a0e4156SSadaf Ebrahimi 			case X86_INS_JB:
3162*9a0e4156SSadaf Ebrahimi 			case X86_INS_JCXZ:
3163*9a0e4156SSadaf Ebrahimi 			case X86_INS_JECXZ:
3164*9a0e4156SSadaf Ebrahimi 			case X86_INS_JE:
3165*9a0e4156SSadaf Ebrahimi 			case X86_INS_JGE:
3166*9a0e4156SSadaf Ebrahimi 			case X86_INS_JG:
3167*9a0e4156SSadaf Ebrahimi 			case X86_INS_JLE:
3168*9a0e4156SSadaf Ebrahimi 			case X86_INS_JL:
3169*9a0e4156SSadaf Ebrahimi 			case X86_INS_JMP:
3170*9a0e4156SSadaf Ebrahimi 			case X86_INS_JNE:
3171*9a0e4156SSadaf Ebrahimi 			case X86_INS_JNO:
3172*9a0e4156SSadaf Ebrahimi 			case X86_INS_JNP:
3173*9a0e4156SSadaf Ebrahimi 			case X86_INS_JNS:
3174*9a0e4156SSadaf Ebrahimi 			case X86_INS_JO:
3175*9a0e4156SSadaf Ebrahimi 			case X86_INS_JP:
3176*9a0e4156SSadaf Ebrahimi 			case X86_INS_JRCXZ:
3177*9a0e4156SSadaf Ebrahimi 			case X86_INS_JS:
3178*9a0e4156SSadaf Ebrahimi 
3179*9a0e4156SSadaf Ebrahimi 			case X86_INS_CALL:
3180*9a0e4156SSadaf Ebrahimi 			case X86_INS_RET:
3181*9a0e4156SSadaf Ebrahimi 			case X86_INS_RETF:
3182*9a0e4156SSadaf Ebrahimi 			case X86_INS_RETFQ:
3183*9a0e4156SSadaf Ebrahimi 				return true;
3184*9a0e4156SSadaf Ebrahimi 		}
3185*9a0e4156SSadaf Ebrahimi 	}
3186*9a0e4156SSadaf Ebrahimi 
3187*9a0e4156SSadaf Ebrahimi 	// not found
3188*9a0e4156SSadaf Ebrahimi 	return false;
3189*9a0e4156SSadaf Ebrahimi }
3190*9a0e4156SSadaf Ebrahimi #endif
3191*9a0e4156SSadaf Ebrahimi 
3192*9a0e4156SSadaf Ebrahimi // given MCInst's id, find out if this insn is valid for REP prefix
valid_rep(cs_struct * h,unsigned int opcode)3193*9a0e4156SSadaf Ebrahimi static bool valid_rep(cs_struct *h, unsigned int opcode)
3194*9a0e4156SSadaf Ebrahimi {
3195*9a0e4156SSadaf Ebrahimi 	unsigned int id;
3196*9a0e4156SSadaf Ebrahimi 	int i = insn_find(insns, ARR_SIZE(insns), opcode, &h->insn_cache);
3197*9a0e4156SSadaf Ebrahimi 	if (i != 0) {
3198*9a0e4156SSadaf Ebrahimi 		id = insns[i].mapid;
3199*9a0e4156SSadaf Ebrahimi 		switch(id) {
3200*9a0e4156SSadaf Ebrahimi 			default:
3201*9a0e4156SSadaf Ebrahimi 				return false;
3202*9a0e4156SSadaf Ebrahimi 
3203*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSB:
3204*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSW:
3205*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSQ:
3206*9a0e4156SSadaf Ebrahimi 
3207*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSB:
3208*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSW:
3209*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSQ:
3210*9a0e4156SSadaf Ebrahimi 
3211*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSB:
3212*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSW:
3213*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSQ:
3214*9a0e4156SSadaf Ebrahimi 
3215*9a0e4156SSadaf Ebrahimi 			case X86_INS_INSB:
3216*9a0e4156SSadaf Ebrahimi 			case X86_INS_INSW:
3217*9a0e4156SSadaf Ebrahimi 			case X86_INS_INSD:
3218*9a0e4156SSadaf Ebrahimi 
3219*9a0e4156SSadaf Ebrahimi 			case X86_INS_OUTSB:
3220*9a0e4156SSadaf Ebrahimi 			case X86_INS_OUTSW:
3221*9a0e4156SSadaf Ebrahimi 			case X86_INS_OUTSD:
3222*9a0e4156SSadaf Ebrahimi 				return true;
3223*9a0e4156SSadaf Ebrahimi 
3224*9a0e4156SSadaf Ebrahimi 			// following are some confused instructions, which have the same
3225*9a0e4156SSadaf Ebrahimi 			// mnemonics in 128bit media instructions. Intel is horribly crazy!
3226*9a0e4156SSadaf Ebrahimi 			case X86_INS_MOVSD:
3227*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_MOVSL) // REP MOVSD
3228*9a0e4156SSadaf Ebrahimi 					return true;
3229*9a0e4156SSadaf Ebrahimi 				return false;
3230*9a0e4156SSadaf Ebrahimi 
3231*9a0e4156SSadaf Ebrahimi 			case X86_INS_LODSD:
3232*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_LODSL) // REP LODSD
3233*9a0e4156SSadaf Ebrahimi 					return true;
3234*9a0e4156SSadaf Ebrahimi 				return false;
3235*9a0e4156SSadaf Ebrahimi 
3236*9a0e4156SSadaf Ebrahimi 			case X86_INS_STOSD:
3237*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_STOSL) // REP STOSD
3238*9a0e4156SSadaf Ebrahimi 					return true;
3239*9a0e4156SSadaf Ebrahimi 				return false;
3240*9a0e4156SSadaf Ebrahimi 		}
3241*9a0e4156SSadaf Ebrahimi 	}
3242*9a0e4156SSadaf Ebrahimi 
3243*9a0e4156SSadaf Ebrahimi 	// not found
3244*9a0e4156SSadaf Ebrahimi 	return false;
3245*9a0e4156SSadaf Ebrahimi }
3246*9a0e4156SSadaf Ebrahimi 
3247*9a0e4156SSadaf Ebrahimi // given MCInst's id, find out if this insn is valid for REPE prefix
valid_repe(cs_struct * h,unsigned int opcode)3248*9a0e4156SSadaf Ebrahimi static bool valid_repe(cs_struct *h, unsigned int opcode)
3249*9a0e4156SSadaf Ebrahimi {
3250*9a0e4156SSadaf Ebrahimi 	unsigned int id;
3251*9a0e4156SSadaf Ebrahimi 	int i = insn_find(insns, ARR_SIZE(insns), opcode, &h->insn_cache);
3252*9a0e4156SSadaf Ebrahimi 	if (i != 0) {
3253*9a0e4156SSadaf Ebrahimi 		id = insns[i].mapid;
3254*9a0e4156SSadaf Ebrahimi 		switch(id) {
3255*9a0e4156SSadaf Ebrahimi 			default:
3256*9a0e4156SSadaf Ebrahimi 				return false;
3257*9a0e4156SSadaf Ebrahimi 
3258*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSB:
3259*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSW:
3260*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSQ:
3261*9a0e4156SSadaf Ebrahimi 
3262*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASB:
3263*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASW:
3264*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASQ:
3265*9a0e4156SSadaf Ebrahimi 				return true;
3266*9a0e4156SSadaf Ebrahimi 
3267*9a0e4156SSadaf Ebrahimi 			// following are some confused instructions, which have the same
3268*9a0e4156SSadaf Ebrahimi 			// mnemonics in 128bit media instructions. Intel is horribly crazy!
3269*9a0e4156SSadaf Ebrahimi 			case X86_INS_CMPSD:
3270*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_CMPSL) // REP CMPSD
3271*9a0e4156SSadaf Ebrahimi 					return true;
3272*9a0e4156SSadaf Ebrahimi 				return false;
3273*9a0e4156SSadaf Ebrahimi 
3274*9a0e4156SSadaf Ebrahimi 			case X86_INS_SCASD:
3275*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_SCASL) // REP SCASD
3276*9a0e4156SSadaf Ebrahimi 					return true;
3277*9a0e4156SSadaf Ebrahimi 				return false;
3278*9a0e4156SSadaf Ebrahimi 		}
3279*9a0e4156SSadaf Ebrahimi 	}
3280*9a0e4156SSadaf Ebrahimi 
3281*9a0e4156SSadaf Ebrahimi 	// not found
3282*9a0e4156SSadaf Ebrahimi 	return false;
3283*9a0e4156SSadaf Ebrahimi }
3284*9a0e4156SSadaf Ebrahimi 
3285*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
3286*9a0e4156SSadaf Ebrahimi // add *CX register to regs_read[] & regs_write[]
add_cx(MCInst * MI)3287*9a0e4156SSadaf Ebrahimi static void add_cx(MCInst *MI)
3288*9a0e4156SSadaf Ebrahimi {
3289*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3290*9a0e4156SSadaf Ebrahimi 		x86_reg cx;
3291*9a0e4156SSadaf Ebrahimi 
3292*9a0e4156SSadaf Ebrahimi 		if (MI->csh->mode & CS_MODE_16)
3293*9a0e4156SSadaf Ebrahimi 			cx = X86_REG_CX;
3294*9a0e4156SSadaf Ebrahimi 		else if (MI->csh->mode & CS_MODE_32)
3295*9a0e4156SSadaf Ebrahimi 			cx = X86_REG_ECX;
3296*9a0e4156SSadaf Ebrahimi 		else	// 64-bit
3297*9a0e4156SSadaf Ebrahimi 			cx = X86_REG_RCX;
3298*9a0e4156SSadaf Ebrahimi 
3299*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->regs_read[MI->flat_insn->detail->regs_read_count] = cx;
3300*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->regs_read_count++;
3301*9a0e4156SSadaf Ebrahimi 
3302*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->regs_write[MI->flat_insn->detail->regs_write_count] = cx;
3303*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->regs_write_count++;
3304*9a0e4156SSadaf Ebrahimi 	}
3305*9a0e4156SSadaf Ebrahimi }
3306*9a0e4156SSadaf Ebrahimi #endif
3307*9a0e4156SSadaf Ebrahimi 
3308*9a0e4156SSadaf Ebrahimi // return true if we patch the mnemonic
X86_lockrep(MCInst * MI,SStream * O)3309*9a0e4156SSadaf Ebrahimi bool X86_lockrep(MCInst *MI, SStream *O)
3310*9a0e4156SSadaf Ebrahimi {
3311*9a0e4156SSadaf Ebrahimi 	unsigned int opcode;
3312*9a0e4156SSadaf Ebrahimi 	bool res = false;
3313*9a0e4156SSadaf Ebrahimi 
3314*9a0e4156SSadaf Ebrahimi 	switch(MI->x86_prefix[0]) {
3315*9a0e4156SSadaf Ebrahimi 		default:
3316*9a0e4156SSadaf Ebrahimi 			break;
3317*9a0e4156SSadaf Ebrahimi 		case 0xf0:
3318*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
3319*9a0e4156SSadaf Ebrahimi 			SStream_concat(O, "lock|");
3320*9a0e4156SSadaf Ebrahimi #endif
3321*9a0e4156SSadaf Ebrahimi 			break;
3322*9a0e4156SSadaf Ebrahimi 		case 0xf2:	// repne
3323*9a0e4156SSadaf Ebrahimi 			opcode = MCInst_getOpcode(MI);
3324*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET	// only care about memonic in standard (non-diet) mode
3325*9a0e4156SSadaf Ebrahimi 			if (valid_repne(MI->csh, opcode)) {
3326*9a0e4156SSadaf Ebrahimi 				SStream_concat(O, "repne|");
3327*9a0e4156SSadaf Ebrahimi 				add_cx(MI);
3328*9a0e4156SSadaf Ebrahimi 			} else if (valid_bnd(MI->csh, opcode)) {
3329*9a0e4156SSadaf Ebrahimi 				SStream_concat(O, "bnd|");
3330*9a0e4156SSadaf Ebrahimi 			} else {
3331*9a0e4156SSadaf Ebrahimi 				// invalid prefix
3332*9a0e4156SSadaf Ebrahimi 				MI->x86_prefix[0] = 0;
3333*9a0e4156SSadaf Ebrahimi 
3334*9a0e4156SSadaf Ebrahimi 				// handle special cases
3335*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
3336*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_MULPDrr) {
3337*9a0e4156SSadaf Ebrahimi 					MCInst_setOpcode(MI, X86_MULSDrr);
3338*9a0e4156SSadaf Ebrahimi 					SStream_concat(O, "mulsd\t");
3339*9a0e4156SSadaf Ebrahimi 					res = true;
3340*9a0e4156SSadaf Ebrahimi 				}
3341*9a0e4156SSadaf Ebrahimi #endif
3342*9a0e4156SSadaf Ebrahimi 			}
3343*9a0e4156SSadaf Ebrahimi #else	// diet mode -> only patch opcode in special cases
3344*9a0e4156SSadaf Ebrahimi 			if (!valid_repne(MI->csh, opcode)) {
3345*9a0e4156SSadaf Ebrahimi 				MI->x86_prefix[0] = 0;
3346*9a0e4156SSadaf Ebrahimi 			}
3347*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
3348*9a0e4156SSadaf Ebrahimi 			// handle special cases
3349*9a0e4156SSadaf Ebrahimi 			if (opcode == X86_MULPDrr) {
3350*9a0e4156SSadaf Ebrahimi 				MCInst_setOpcode(MI, X86_MULSDrr);
3351*9a0e4156SSadaf Ebrahimi 			}
3352*9a0e4156SSadaf Ebrahimi #endif
3353*9a0e4156SSadaf Ebrahimi #endif
3354*9a0e4156SSadaf Ebrahimi 			break;
3355*9a0e4156SSadaf Ebrahimi 
3356*9a0e4156SSadaf Ebrahimi 		case 0xf3:
3357*9a0e4156SSadaf Ebrahimi 			opcode = MCInst_getOpcode(MI);
3358*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET	// only care about memonic in standard (non-diet) mode
3359*9a0e4156SSadaf Ebrahimi 			if (valid_rep(MI->csh, opcode)) {
3360*9a0e4156SSadaf Ebrahimi 				SStream_concat(O, "rep|");
3361*9a0e4156SSadaf Ebrahimi 				add_cx(MI);
3362*9a0e4156SSadaf Ebrahimi 			} else if (valid_repe(MI->csh, opcode)) {
3363*9a0e4156SSadaf Ebrahimi 				SStream_concat(O, "repe|");
3364*9a0e4156SSadaf Ebrahimi 				add_cx(MI);
3365*9a0e4156SSadaf Ebrahimi 			} else {
3366*9a0e4156SSadaf Ebrahimi 				// invalid prefix
3367*9a0e4156SSadaf Ebrahimi 				MI->x86_prefix[0] = 0;
3368*9a0e4156SSadaf Ebrahimi 
3369*9a0e4156SSadaf Ebrahimi 				// handle special cases
3370*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
3371*9a0e4156SSadaf Ebrahimi 				if (opcode == X86_MULPDrr) {
3372*9a0e4156SSadaf Ebrahimi 					MCInst_setOpcode(MI, X86_MULSSrr);
3373*9a0e4156SSadaf Ebrahimi 					SStream_concat(O, "mulss\t");
3374*9a0e4156SSadaf Ebrahimi 					res = true;
3375*9a0e4156SSadaf Ebrahimi 				}
3376*9a0e4156SSadaf Ebrahimi #endif
3377*9a0e4156SSadaf Ebrahimi 			}
3378*9a0e4156SSadaf Ebrahimi #else	// diet mode -> only patch opcode in special cases
3379*9a0e4156SSadaf Ebrahimi 			if (!valid_rep(MI->csh, opcode) && !valid_repe(MI->csh, opcode)) {
3380*9a0e4156SSadaf Ebrahimi 				MI->x86_prefix[0] = 0;
3381*9a0e4156SSadaf Ebrahimi 			}
3382*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_X86_REDUCE
3383*9a0e4156SSadaf Ebrahimi 			// handle special cases
3384*9a0e4156SSadaf Ebrahimi 			if (opcode == X86_MULPDrr) {
3385*9a0e4156SSadaf Ebrahimi 				MCInst_setOpcode(MI, X86_MULSSrr);
3386*9a0e4156SSadaf Ebrahimi 			}
3387*9a0e4156SSadaf Ebrahimi #endif
3388*9a0e4156SSadaf Ebrahimi #endif
3389*9a0e4156SSadaf Ebrahimi 			break;
3390*9a0e4156SSadaf Ebrahimi 	}
3391*9a0e4156SSadaf Ebrahimi 
3392*9a0e4156SSadaf Ebrahimi 	// copy normalized prefix[] back to x86.prefix[]
3393*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail)
3394*9a0e4156SSadaf Ebrahimi 		memcpy(MI->flat_insn->detail->x86.prefix, MI->x86_prefix, ARR_SIZE(MI->x86_prefix));
3395*9a0e4156SSadaf Ebrahimi 
3396*9a0e4156SSadaf Ebrahimi 	return res;
3397*9a0e4156SSadaf Ebrahimi }
3398*9a0e4156SSadaf Ebrahimi 
op_addReg(MCInst * MI,int reg)3399*9a0e4156SSadaf Ebrahimi void op_addReg(MCInst *MI, int reg)
3400*9a0e4156SSadaf Ebrahimi {
3401*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3402*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].type = X86_OP_REG;
3403*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].reg = reg;
3404*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].size = MI->csh->regsize_map[reg];
3405*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.op_count++;
3406*9a0e4156SSadaf Ebrahimi 	}
3407*9a0e4156SSadaf Ebrahimi 
3408*9a0e4156SSadaf Ebrahimi 	if (MI->op1_size == 0)
3409*9a0e4156SSadaf Ebrahimi 		MI->op1_size = MI->csh->regsize_map[reg];
3410*9a0e4156SSadaf Ebrahimi }
3411*9a0e4156SSadaf Ebrahimi 
op_addImm(MCInst * MI,int v)3412*9a0e4156SSadaf Ebrahimi void op_addImm(MCInst *MI, int v)
3413*9a0e4156SSadaf Ebrahimi {
3414*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3415*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].type = X86_OP_IMM;
3416*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].imm = v;
3417*9a0e4156SSadaf Ebrahimi 		// if op_count > 0, then this operand's size is taken from the destination op
3418*9a0e4156SSadaf Ebrahimi 		if (MI->csh->syntax != CS_OPT_SYNTAX_ATT) {
3419*9a0e4156SSadaf Ebrahimi 			if (MI->flat_insn->detail->x86.op_count > 0)
3420*9a0e4156SSadaf Ebrahimi 				MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].size = MI->flat_insn->detail->x86.operands[0].size;
3421*9a0e4156SSadaf Ebrahimi 			else
3422*9a0e4156SSadaf Ebrahimi 				MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count].size = MI->imm_size;
3423*9a0e4156SSadaf Ebrahimi 		} else
3424*9a0e4156SSadaf Ebrahimi 			MI->has_imm = true;
3425*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.op_count++;
3426*9a0e4156SSadaf Ebrahimi 	}
3427*9a0e4156SSadaf Ebrahimi 
3428*9a0e4156SSadaf Ebrahimi 	if (MI->op1_size == 0)
3429*9a0e4156SSadaf Ebrahimi 		MI->op1_size = MI->imm_size;
3430*9a0e4156SSadaf Ebrahimi }
3431*9a0e4156SSadaf Ebrahimi 
op_addXopCC(MCInst * MI,int v)3432*9a0e4156SSadaf Ebrahimi void op_addXopCC(MCInst *MI, int v)
3433*9a0e4156SSadaf Ebrahimi {
3434*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3435*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.xop_cc = v;
3436*9a0e4156SSadaf Ebrahimi 	}
3437*9a0e4156SSadaf Ebrahimi }
3438*9a0e4156SSadaf Ebrahimi 
op_addSseCC(MCInst * MI,int v)3439*9a0e4156SSadaf Ebrahimi void op_addSseCC(MCInst *MI, int v)
3440*9a0e4156SSadaf Ebrahimi {
3441*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3442*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.sse_cc = v;
3443*9a0e4156SSadaf Ebrahimi 	}
3444*9a0e4156SSadaf Ebrahimi }
3445*9a0e4156SSadaf Ebrahimi 
op_addAvxCC(MCInst * MI,int v)3446*9a0e4156SSadaf Ebrahimi void op_addAvxCC(MCInst *MI, int v)
3447*9a0e4156SSadaf Ebrahimi {
3448*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3449*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.avx_cc = v;
3450*9a0e4156SSadaf Ebrahimi 	}
3451*9a0e4156SSadaf Ebrahimi }
3452*9a0e4156SSadaf Ebrahimi 
op_addAvxRoundingMode(MCInst * MI,int v)3453*9a0e4156SSadaf Ebrahimi void op_addAvxRoundingMode(MCInst *MI, int v)
3454*9a0e4156SSadaf Ebrahimi {
3455*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3456*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.avx_rm = v;
3457*9a0e4156SSadaf Ebrahimi 	}
3458*9a0e4156SSadaf Ebrahimi }
3459*9a0e4156SSadaf Ebrahimi 
3460*9a0e4156SSadaf Ebrahimi // below functions supply details to X86GenAsmWriter*.inc
op_addAvxZeroOpmask(MCInst * MI)3461*9a0e4156SSadaf Ebrahimi void op_addAvxZeroOpmask(MCInst *MI)
3462*9a0e4156SSadaf Ebrahimi {
3463*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3464*9a0e4156SSadaf Ebrahimi 		// link with the previous operand
3465*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count - 1].avx_zero_opmask = true;
3466*9a0e4156SSadaf Ebrahimi 	}
3467*9a0e4156SSadaf Ebrahimi }
3468*9a0e4156SSadaf Ebrahimi 
op_addAvxSae(MCInst * MI)3469*9a0e4156SSadaf Ebrahimi void op_addAvxSae(MCInst *MI)
3470*9a0e4156SSadaf Ebrahimi {
3471*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3472*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.avx_sae = true;
3473*9a0e4156SSadaf Ebrahimi 	}
3474*9a0e4156SSadaf Ebrahimi }
3475*9a0e4156SSadaf Ebrahimi 
op_addAvxBroadcast(MCInst * MI,x86_avx_bcast v)3476*9a0e4156SSadaf Ebrahimi void op_addAvxBroadcast(MCInst *MI, x86_avx_bcast v)
3477*9a0e4156SSadaf Ebrahimi {
3478*9a0e4156SSadaf Ebrahimi 	if (MI->csh->detail) {
3479*9a0e4156SSadaf Ebrahimi 		// link with the previous operand
3480*9a0e4156SSadaf Ebrahimi 		MI->flat_insn->detail->x86.operands[MI->flat_insn->detail->x86.op_count - 1].avx_bcast = v;
3481*9a0e4156SSadaf Ebrahimi 	}
3482*9a0e4156SSadaf Ebrahimi }
3483*9a0e4156SSadaf Ebrahimi 
3484*9a0e4156SSadaf Ebrahimi #ifndef CAPSTONE_DIET
3485*9a0e4156SSadaf Ebrahimi // map instruction to its characteristics
3486*9a0e4156SSadaf Ebrahimi typedef struct insn_op {
3487*9a0e4156SSadaf Ebrahimi 	uint64_t flags;	// how this instruction update EFLAGS(arithmetic instrcutions) of FPU FLAGS(for FPU instructions)
3488*9a0e4156SSadaf Ebrahimi 	uint8_t access[6];
3489*9a0e4156SSadaf Ebrahimi } insn_op;
3490*9a0e4156SSadaf Ebrahimi 
3491*9a0e4156SSadaf Ebrahimi static insn_op insn_ops[] = {
3492*9a0e4156SSadaf Ebrahimi 	{	/* NULL item  */
3493*9a0e4156SSadaf Ebrahimi 		0,
3494*9a0e4156SSadaf Ebrahimi 		{ 0 }
3495*9a0e4156SSadaf Ebrahimi 	},
3496*9a0e4156SSadaf Ebrahimi 
3497*9a0e4156SSadaf Ebrahimi #ifdef CAPSTONE_X86_REDUCE
3498*9a0e4156SSadaf Ebrahimi #include "X86MappingInsnOp_reduce.inc"
3499*9a0e4156SSadaf Ebrahimi #else
3500*9a0e4156SSadaf Ebrahimi #include "X86MappingInsnOp.inc"
3501*9a0e4156SSadaf Ebrahimi #endif
3502*9a0e4156SSadaf Ebrahimi };
3503*9a0e4156SSadaf Ebrahimi 
3504*9a0e4156SSadaf Ebrahimi // given internal insn id, return operand access info
X86_get_op_access(cs_struct * h,unsigned int id,uint64_t * eflags)3505*9a0e4156SSadaf Ebrahimi uint8_t *X86_get_op_access(cs_struct *h, unsigned int id, uint64_t *eflags)
3506*9a0e4156SSadaf Ebrahimi {
3507*9a0e4156SSadaf Ebrahimi 	int i = insn_find(insns, ARR_SIZE(insns), id, &h->insn_cache);
3508*9a0e4156SSadaf Ebrahimi 	if (i != 0) {
3509*9a0e4156SSadaf Ebrahimi 		*eflags = insn_ops[i].flags;
3510*9a0e4156SSadaf Ebrahimi 		return insn_ops[i].access;
3511*9a0e4156SSadaf Ebrahimi 	}
3512*9a0e4156SSadaf Ebrahimi 
3513*9a0e4156SSadaf Ebrahimi 	return NULL;
3514*9a0e4156SSadaf Ebrahimi }
3515*9a0e4156SSadaf Ebrahimi 
X86_reg_access(const cs_insn * insn,cs_regs regs_read,uint8_t * regs_read_count,cs_regs regs_write,uint8_t * regs_write_count)3516*9a0e4156SSadaf Ebrahimi void X86_reg_access(const cs_insn *insn,
3517*9a0e4156SSadaf Ebrahimi 		cs_regs regs_read, uint8_t *regs_read_count,
3518*9a0e4156SSadaf Ebrahimi 		cs_regs regs_write, uint8_t *regs_write_count)
3519*9a0e4156SSadaf Ebrahimi {
3520*9a0e4156SSadaf Ebrahimi 	uint8_t i;
3521*9a0e4156SSadaf Ebrahimi 	uint8_t read_count, write_count;
3522*9a0e4156SSadaf Ebrahimi 	cs_x86 *x86 = &(insn->detail->x86);
3523*9a0e4156SSadaf Ebrahimi 
3524*9a0e4156SSadaf Ebrahimi 	read_count = insn->detail->regs_read_count;
3525*9a0e4156SSadaf Ebrahimi 	write_count = insn->detail->regs_write_count;
3526*9a0e4156SSadaf Ebrahimi 
3527*9a0e4156SSadaf Ebrahimi 	// implicit registers
3528*9a0e4156SSadaf Ebrahimi 	memcpy(regs_read, insn->detail->regs_read, read_count * sizeof(insn->detail->regs_read[0]));
3529*9a0e4156SSadaf Ebrahimi 	memcpy(regs_write, insn->detail->regs_write, write_count * sizeof(insn->detail->regs_write[0]));
3530*9a0e4156SSadaf Ebrahimi 
3531*9a0e4156SSadaf Ebrahimi 	// explicit registers
3532*9a0e4156SSadaf Ebrahimi 	for (i = 0; i < x86->op_count; i++) {
3533*9a0e4156SSadaf Ebrahimi 		cs_x86_op *op = &(x86->operands[i]);
3534*9a0e4156SSadaf Ebrahimi 		switch((int)op->type) {
3535*9a0e4156SSadaf Ebrahimi 			case X86_OP_REG:
3536*9a0e4156SSadaf Ebrahimi 				if ((op->access & CS_AC_READ) && !arr_exist(regs_read, read_count, op->reg)) {
3537*9a0e4156SSadaf Ebrahimi 					regs_read[read_count] = op->reg;
3538*9a0e4156SSadaf Ebrahimi 					read_count++;
3539*9a0e4156SSadaf Ebrahimi 				}
3540*9a0e4156SSadaf Ebrahimi 				if ((op->access & CS_AC_WRITE) && !arr_exist(regs_write, write_count, op->reg)) {
3541*9a0e4156SSadaf Ebrahimi 					regs_write[write_count] = op->reg;
3542*9a0e4156SSadaf Ebrahimi 					write_count++;
3543*9a0e4156SSadaf Ebrahimi 				}
3544*9a0e4156SSadaf Ebrahimi 				break;
3545*9a0e4156SSadaf Ebrahimi 			case X86_OP_MEM:
3546*9a0e4156SSadaf Ebrahimi 				// registers appeared in memory references always being read
3547*9a0e4156SSadaf Ebrahimi 				if ((op->mem.segment != X86_REG_INVALID)) {
3548*9a0e4156SSadaf Ebrahimi 					regs_read[read_count] = op->mem.segment;
3549*9a0e4156SSadaf Ebrahimi 					read_count++;
3550*9a0e4156SSadaf Ebrahimi 				}
3551*9a0e4156SSadaf Ebrahimi 				if ((op->mem.base != X86_REG_INVALID) && !arr_exist(regs_read, read_count, op->mem.base)) {
3552*9a0e4156SSadaf Ebrahimi 					regs_read[read_count] = op->mem.base;
3553*9a0e4156SSadaf Ebrahimi 					read_count++;
3554*9a0e4156SSadaf Ebrahimi 				}
3555*9a0e4156SSadaf Ebrahimi 				if ((op->mem.index != X86_REG_INVALID) && !arr_exist(regs_read, read_count, op->mem.index)) {
3556*9a0e4156SSadaf Ebrahimi 					regs_read[read_count] = op->mem.index;
3557*9a0e4156SSadaf Ebrahimi 					read_count++;
3558*9a0e4156SSadaf Ebrahimi 				}
3559*9a0e4156SSadaf Ebrahimi 			default:
3560*9a0e4156SSadaf Ebrahimi 				break;
3561*9a0e4156SSadaf Ebrahimi 		}
3562*9a0e4156SSadaf Ebrahimi 	}
3563*9a0e4156SSadaf Ebrahimi 
3564*9a0e4156SSadaf Ebrahimi 	*regs_read_count = read_count;
3565*9a0e4156SSadaf Ebrahimi 	*regs_write_count = write_count;
3566*9a0e4156SSadaf Ebrahimi }
3567*9a0e4156SSadaf Ebrahimi #endif
3568*9a0e4156SSadaf Ebrahimi 
3569*9a0e4156SSadaf Ebrahimi // map immediate size to instruction id
3570*9a0e4156SSadaf Ebrahimi static struct size_id {
3571*9a0e4156SSadaf Ebrahimi 	uint8_t		enc_size;
3572*9a0e4156SSadaf Ebrahimi 	uint8_t		size;
3573*9a0e4156SSadaf Ebrahimi 	uint16_t 	id;
3574*9a0e4156SSadaf Ebrahimi } x86_imm_size[] = {
3575*9a0e4156SSadaf Ebrahimi #include "X86ImmSize.inc"
3576*9a0e4156SSadaf Ebrahimi };
3577*9a0e4156SSadaf Ebrahimi 
3578*9a0e4156SSadaf Ebrahimi // given the instruction name, return the size of its immediate operand (or 0)
X86_immediate_size(unsigned int id,uint8_t * enc_size)3579*9a0e4156SSadaf Ebrahimi uint8_t X86_immediate_size(unsigned int id, uint8_t *enc_size)
3580*9a0e4156SSadaf Ebrahimi {
3581*9a0e4156SSadaf Ebrahimi #if 0
3582*9a0e4156SSadaf Ebrahimi 	// linear searching
3583*9a0e4156SSadaf Ebrahimi 	unsigned int i;
3584*9a0e4156SSadaf Ebrahimi 
3585*9a0e4156SSadaf Ebrahimi 	for (i = 0; i < ARR_SIZE(x86_imm_size); i++) {
3586*9a0e4156SSadaf Ebrahimi 		if (id == x86_imm_size[i].id) {
3587*9a0e4156SSadaf Ebrahimi 			return x86_imm_size[i].size;
3588*9a0e4156SSadaf Ebrahimi 		}
3589*9a0e4156SSadaf Ebrahimi 	}
3590*9a0e4156SSadaf Ebrahimi #endif
3591*9a0e4156SSadaf Ebrahimi 
3592*9a0e4156SSadaf Ebrahimi 	// binary searching since the IDs are sorted in order
3593*9a0e4156SSadaf Ebrahimi 	unsigned int left, right, m;
3594*9a0e4156SSadaf Ebrahimi 
3595*9a0e4156SSadaf Ebrahimi 	left = 0;
3596*9a0e4156SSadaf Ebrahimi 	right = ARR_SIZE(x86_imm_size) - 1;
3597*9a0e4156SSadaf Ebrahimi 
3598*9a0e4156SSadaf Ebrahimi 	while(left <= right) {
3599*9a0e4156SSadaf Ebrahimi 		m = (left + right) / 2;
3600*9a0e4156SSadaf Ebrahimi 		if (id == x86_imm_size[m].id) {
3601*9a0e4156SSadaf Ebrahimi 			if (enc_size != NULL)
3602*9a0e4156SSadaf Ebrahimi 				*enc_size = x86_imm_size[m].enc_size;
3603*9a0e4156SSadaf Ebrahimi 
3604*9a0e4156SSadaf Ebrahimi 			return x86_imm_size[m].size;
3605*9a0e4156SSadaf Ebrahimi 		}
3606*9a0e4156SSadaf Ebrahimi 
3607*9a0e4156SSadaf Ebrahimi 		if (id < x86_imm_size[m].id)
3608*9a0e4156SSadaf Ebrahimi 			right = m - 1;
3609*9a0e4156SSadaf Ebrahimi 		else
3610*9a0e4156SSadaf Ebrahimi 			left = m + 1;
3611*9a0e4156SSadaf Ebrahimi 	}
3612*9a0e4156SSadaf Ebrahimi 
3613*9a0e4156SSadaf Ebrahimi 	// not found
3614*9a0e4156SSadaf Ebrahimi 	return 0;
3615*9a0e4156SSadaf Ebrahimi }
3616*9a0e4156SSadaf Ebrahimi 
3617*9a0e4156SSadaf Ebrahimi #endif
3618