x86: rework UWRMSR operand swapping
[binutils-gdb.git] / opcodes / i386-opc.tbl
1 // i386 opcode table.
2 // Copyright (C) 2007-2023 Free Software Foundation, Inc.
3 //
4 // This file is part of the GNU opcodes library.
5 //
6 // This library is free software; you can redistribute it and/or modify
7 // it under the terms of the GNU General Public License as published by
8 // the Free Software Foundation; either version 3, or (at your option)
9 // any later version.
10 //
11 // It is distributed in the hope that it will be useful, but WITHOUT
12 // ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
13 // or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
14 // License for more details.
15 //
16 // You should have received a copy of the GNU General Public License
17 // along with GAS; see the file COPYING. If not, write to the Free
18 // Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
19 // 02110-1301, USA.
20
21 #define OPCODE_I386_H
22 #include "i386-opc.h"
23
24 // When necessary lines can be split in a non-standard way, by placing a
25 // trailing + on a to-be-continued line. This is intended mainly for non-insn
26 // templates. Insn templates are better kept all on one line to make grep and
27 // alike produce useful results.
28
29 #define Amd64 ISA64=AMD64
30 #define Intel64 ISA64=INTEL64
31 #define Intel64Only ISA64=INTEL64ONLY
32
33 #define Reg8 Class=Reg|Byte
34 #define Reg16 Class=Reg|Word
35 #define Reg32 Class=Reg|Dword
36 #define Reg64 Class=Reg|Qword
37
38 #define Acc Instance=Accum
39 #define RegC Instance=RegC
40 #define RegD Instance=RegD
41 #define RegB Instance=RegB
42
43 #define ShiftCount RegC|Byte
44 #define InOutPortReg RegD|Word
45
46 #define FloatAcc Acc|Tbyte
47 #define FloatReg Class=Reg|Tbyte
48
49 #define SReg Class=SReg
50
51 #define Control Class=RegCR
52 #define Debug Class=RegDR
53 #define Test Class=RegTR
54
55 #define RegMMX Class=RegMMX
56 #define RegXMM Class=RegSIMD|Xmmword
57 #define RegYMM Class=RegSIMD|Ymmword
58 #define RegZMM Class=RegSIMD|Zmmword
59 #define RegTMM Class=RegSIMD|Tmmword
60
61 #define RegMask Class=RegMask
62
63 #define RegBND Class=RegBND
64
65 #define Mmword Qword
66 #define Oword Xmmword
67
68 #define JumpByte Jump=JUMP_BYTE
69 #define JumpDword Jump=JUMP_DWORD
70 #define JumpAbsolute Jump=JUMP_ABSOLUTE
71 #define JumpInterSegment Jump=JUMP_INTERSEGMENT
72
73 #define Size16 Size=SIZE16
74 #define Size32 Size=SIZE32
75 #define Size64 Size=SIZE64
76
77 #define NoSuf No_bSuf|No_wSuf|No_lSuf|No_sSuf|No_qSuf
78
79 #define AddrPrefixOpReg OperandConstraint=ADDR_PREFIX_OP_REG
80 #define Anysize OperandConstraint=ANY_SIZE
81 #define DistinctDest OperandConstraint=DISTINCT_DEST
82 #define Implicit1stXmm0 OperandConstraint=IMPLICIT_1ST_XMM0
83 #define ImplicitQuadGroup OperandConstraint=IMPLICIT_QUAD_GROUP
84 #define NoDefMask OperandConstraint=NO_DEFAULT_MASK
85 #define RegKludge OperandConstraint=REG_KLUDGE
86 #define SwapSources OperandConstraint=SWAP_SOURCES
87 #define Ugh OperandConstraint=UGH
88
89 #define IgnoreSize MnemonicSize=IGNORESIZE
90 #define DefaultSize MnemonicSize=DEFAULTSIZE
91
92 // RegMem implies a ModR/M byte
93 #define RegMem Modrm|RegMem
94
95 #define IsStringEsOp0 IsString=IS_STRING_ES_OP0
96 #define IsStringEsOp1 IsString=IS_STRING_ES_OP1
97
98 #define RepPrefixOk PrefixOk=PrefixRep
99 #define LockPrefixOk PrefixOk=PrefixLock
100 #define HLEPrefixAny PrefixOk=PrefixHLEAny
101 #define HLEPrefixLock PrefixOk=PrefixHLELock
102 #define HLEPrefixRelease PrefixOk=PrefixHLERelease
103 #define NoTrackPrefixOk PrefixOk=PrefixNoTrack
104
105 #define Space0F OpcodeSpace=SPACE_0F
106 #define Space0F38 OpcodeSpace=SPACE_0F38
107 #define Space0F3A OpcodeSpace=SPACE_0F3A
108 #define SpaceXOP08 OpcodeSpace=SPACE_XOP08
109 #define SpaceXOP09 OpcodeSpace=SPACE_XOP09
110 #define SpaceXOP0A OpcodeSpace=SPACE_XOP0A
111
112 #define EVexMap5 OpcodeSpace=SPACE_EVEXMAP5
113 #define EVexMap6 OpcodeSpace=SPACE_EVEXMAP6
114
115 #define VexMap7 OpcodeSpace=SPACE_VEXMAP7
116
117 #define VexW0 VexW=VEXW0
118 #define VexW1 VexW=VEXW1
119 #define VexWIG VexW=VEXWIG
120
121 #define Vex128 Vex=VEX128
122 #define Vex256 Vex=VEX256
123 #define VexLIG Vex=VEXScalar
124
125 #define VecSIB128 SIB=VECSIB128
126 #define VecSIB256 SIB=VECSIB256
127 #define VecSIB512 SIB=VECSIB512
128 #define Sibmem SIB=SIBMEM|Modrm
129
130 #define EVex128 EVex=EVEX128
131 #define EVex256 EVex=EVEX256
132 #define EVex512 EVex=EVEX512
133 #define EVexLIG EVex=EVEXLIG
134 #define EVexDYN EVex=EVEXDYN
135
136 #define Disp8ShiftVL Disp8MemShift=DISP8_SHIFT_VL
137
138 #define Vsz256 Vsz=VSZ256
139 #define Vsz512 Vsz=VSZ512
140
141 // The EVEX purpose of StaticRounding appears only together with SAE. Re-use
142 // the bit to mark commutative VEX encodings where swapping the source
143 // operands may allow to switch from 3-byte to 2-byte VEX encoding.
144 #define C StaticRounding
145
146 #define FP 387|287|8087
147
148 // To avoid CPU specifiers to look like plain number tokens in the table,
149 // introduce some aliases.
150 #define i186 186
151 #define i286 286
152 #undef i386
153 #define i386 386
154 #define i486 486
155 #define i586 586
156 #define i686 686
157 #define i8087 8087
158 #define i287 287
159 #define i387 387
160 #define i687 687
161 // Note: Don't add this one to any templates already specifying a 64-bit-mode-
162 // only ISA extension: i386-gen takes care of adding such dependencies.
163 #define x64 64
164
165 ### MARKER ###
166
167 // Move instructions.
168 mov, 0xa0, No64, D|W|CheckOperandSize|No_sSuf|No_qSuf, { Disp16|Disp32|Unspecified|Byte|Word|Dword, Acc|Byte|Word|Dword }
169 mov, 0xa0, x64, D|W|CheckOperandSize|No_sSuf, { Disp64|Unspecified|Byte|Word|Dword|Qword, Acc|Byte|Word|Dword|Qword }
170 movabs, 0xa0, x64, D|W|CheckOperandSize|No_sSuf, { Disp64|Unspecified|Byte|Word|Dword|Qword, Acc|Byte|Word|Dword|Qword }
171 mov, 0x88, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixRelease, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
172 // In the 64bit mode the short form mov immediate is redefined to have
173 // 64bit value.
174 mov, 0xb0, 0, W|No_sSuf|No_qSuf, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32 }
175 mov, 0xc6/0, 0, W|Modrm|No_sSuf|HLEPrefixRelease|Optimize, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
176 mov, 0xb8, x64, No_bSuf|No_wSuf|No_lSuf|No_sSuf|Optimize, { Imm64, Reg64 }
177 movabs, 0xb8, x64, No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Imm64, Reg64 }
178 // The segment register moves accept WordReg so that a segment register
179 // can be copied to a 32 bit register, and vice versa, without using a
180 // size prefix. When moving to a 32 bit register, the upper 16 bits
181 // are set to an implementation defined value (on the Pentium Pro, the
182 // implementation defined value is zero).
183 mov, 0x8c, 0, RegMem|No_bSuf|No_sSuf|NoRex64, { SReg, Reg16|Reg32|Reg64 }
184 mov, 0x8c, 0, D|Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { SReg, Word|Unspecified|BaseIndex }
185 mov, 0x8e, 0, Modrm|IgnoreSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64, SReg }
186 // Move to/from control debug registers. In the 16 or 32bit modes
187 // they are 32bit. In the 64bit mode they are 64bit.
188 mov, 0xf20, i386&No64, D|RegMem|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Control, Reg32 }
189 mov, 0xf20, x64, D|RegMem|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Control, Reg64 }
190 mov, 0xf21, i386&No64, D|RegMem|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Debug, Reg32 }
191 mov, 0xf21, x64, D|RegMem|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Debug, Reg64 }
192 mov, 0xf24, i386&No64, D|RegMem|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Test, Reg32 }
193
194 // Move after swapping the bytes
195 movbe, 0x0f38f0, Movbe, D|Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
196
197 // Move with sign extend.
198 movsb, 0xfbe, i386, Modrm|No_bSuf|No_sSuf, { Reg8|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
199 movsw, 0xfbf, i386, Modrm|No_bSuf|No_wSuf|No_sSuf, { Reg16|Unspecified|BaseIndex, Reg32|Reg64 }
200 movsl, 0x63, x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Reg32|Unspecified|BaseIndex, Reg64 }
201 movsx, 0xfbe, i386, W|Modrm|No_lSuf|No_sSuf|No_qSuf, { Reg8|Reg16|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
202 movsx, 0x63, x64, Modrm|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Reg32|Unspecified|BaseIndex, Reg32|Reg64 }
203 movsxd, 0x63, x64, Modrm|NoSuf, { Reg32|Unspecified|BaseIndex, Reg32|Reg64 }
204 movsxd, 0x63, x64, Amd64|Modrm|NoSuf, { Reg32|Unspecified|BaseIndex, Reg16 }
205 movsxd, 0x63, x64, Intel64|Modrm|NoSuf, { Reg16|Unspecified|BaseIndex, Reg16 }
206
207 // Move with zero extend.
208 movzb, 0xfb6, i386, Modrm|No_bSuf|No_sSuf, { Reg8|Byte|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
209 movzw, 0xfb7, i386, Modrm|No_bSuf|No_wSuf|No_sSuf, { Reg16|Word|Unspecified|BaseIndex, Reg32|Reg64 }
210 // The 64-bit variant is not particularly useful since the zero extend
211 // 32->64 is implicit, but we can encode them.
212 movzx, 0xfb6, i386, W|Modrm|No_lSuf|No_sSuf|No_qSuf, { Reg8|Reg16|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
213
214 // Push instructions.
215 push, 0x50, No64, No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32 }
216 push, 0xff/6, No64, Modrm|DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32|Word|Dword|Unspecified|BaseIndex }
217 push, 0x6a, i186&No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Imm8S }
218 push, 0x68, i186&No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Imm16|Imm32 }
219 push, 0x6, No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, { SReg }
220 // In 64bit mode, the operand size is implicitly 64bit.
221 push, 0x50, x64, No_bSuf|No_lSuf|No_sSuf|NoRex64, { Reg16|Reg64 }
222 push, 0xff/6, x64, Modrm|DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { Reg16|Reg64|Word|Qword|Unspecified|BaseIndex }
223 push, 0x6a, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { Imm8S }
224 push, 0x68, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { Imm16|Imm32S }
225 push, 0xfa0, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { SReg }
226
227 pusha, 0x60, i186&No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, {}
228
229 // Pop instructions.
230 pop, 0x58, No64, No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32 }
231 pop, 0x8f/0, No64, Modrm|DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32|Word|Dword|Unspecified|BaseIndex }
232 pop, 0x7, No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, { SReg }
233 // In 64bit mode, the operand size is implicitly 64bit.
234 pop, 0x58, x64, No_bSuf|No_lSuf|No_sSuf|NoRex64, { Reg16|Reg64 }
235 pop, 0x8f/0, x64, Modrm|DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { Reg16|Reg64|Word|Qword|Unspecified|BaseIndex }
236 pop, 0xfa1, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { SReg }
237
238 popa, 0x61, i186&No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, {}
239
240 // Exchange instructions.
241 // xchg commutes: we allow both operand orders.
242
243 // In the 64bit code, xchg rax, rax is reused for new nop instruction.
244 xchg, 0x90, 0, D|C|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64, Acc|Word|Dword|Qword }
245 xchg, 0x86, 0, D|W|C|CheckOperandSize|Modrm|No_sSuf|HLEPrefixAny, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Unspecified|BaseIndex }
246
247 // In/out from ports.
248 in, 0xe4, 0, W|No_sSuf|No_qSuf, { Imm8, Acc|Byte|Word|Dword }
249 in, 0xec, 0, W|No_sSuf|No_qSuf, { InOutPortReg, Acc|Byte|Word|Dword }
250 in, 0xe4, 0, W|No_sSuf|No_qSuf, { Imm8 }
251 in, 0xec, 0, W|No_sSuf|No_qSuf, { InOutPortReg }
252 out, 0xe6, 0, W|No_sSuf|No_qSuf, { Acc|Byte|Word|Dword, Imm8 }
253 out, 0xee, 0, W|No_sSuf|No_qSuf, { Acc|Byte|Word|Dword, InOutPortReg }
254 out, 0xe6, 0, W|No_sSuf|No_qSuf, { Imm8 }
255 out, 0xee, 0, W|No_sSuf|No_qSuf, { InOutPortReg }
256
257 // Load effective address.
258 lea, 0x8d, 0, Modrm|Anysize|No_bSuf|No_sSuf|Optimize, { BaseIndex, Reg16|Reg32|Reg64 }
259
260 // Load segment registers from memory.
261 lds, 0xc5, No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { DWord|Fword|Unspecified|BaseIndex, Reg16|Reg32 }
262 les, 0xc4, No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { DWord|Fword|Unspecified|BaseIndex, Reg16|Reg32 }
263 lfs, 0xfb4, i386, Amd64|Modrm|No_bSuf|No_sSuf|No_qSuf, { Dword|Fword|Unspecified|BaseIndex, Reg16|Reg32 }
264 lfs, 0xfb4, x64, Intel64|Modrm|No_bSuf|No_sSuf, { Dword|Fword|Tbyte|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
265 lgs, 0xfb5, i386, Amd64|Modrm|No_bSuf|No_sSuf|No_qSuf, { Dword|Fword|Unspecified|BaseIndex, Reg16|Reg32 }
266 lgs, 0xfb5, x64, Intel64|Modrm|No_bSuf|No_sSuf, { Dword|Fword|Tbyte|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
267 lss, 0xfb2, i386, Amd64|Modrm|No_bSuf|No_sSuf|No_qSuf, { Dword|Fword|Unspecified|BaseIndex, Reg16|Reg32 }
268 lss, 0xfb2, x64, Intel64|Modrm|No_bSuf|No_sSuf, { Dword|Fword|Tbyte|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
269
270 // Flags register instructions.
271 clc, 0xf8, 0, NoSuf, {}
272 cld, 0xfc, 0, NoSuf, {}
273 cli, 0xfa, 0, NoSuf, {}
274 clts, 0xf06, i286, NoSuf, {}
275 cmc, 0xf5, 0, NoSuf, {}
276 lahf, 0x9f, No64, NoSuf, {}
277 lahf, 0x9f, LAHF_SAHF, NoSuf, {}
278 sahf, 0x9e, No64, NoSuf, {}
279 sahf, 0x9e, LAHF_SAHF, NoSuf, {}
280 pushf, 0x9c, No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, {}
281 pushf, 0x9c, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, {}
282 popf, 0x9d, No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, {}
283 popf, 0x9d, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, {}
284 stc, 0xf9, 0, NoSuf, {}
285 std, 0xfd, 0, NoSuf, {}
286 sti, 0xfb, 0, NoSuf, {}
287
288 // Arithmetic.
289 add, 0x0, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
290 add, 0x83/0, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
291 add, 0x4, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
292 add, 0x80/0, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
293
294 inc, 0x40, No64, No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32 }
295 inc, 0xfe/0, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
296
297 sub, 0x28, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock|Optimize, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
298 sub, 0x83/5, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
299 sub, 0x2c, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
300 sub, 0x80/5, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
301
302 dec, 0x48, No64, No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32 }
303 dec, 0xfe/1, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
304
305 sbb, 0x18, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
306 sbb, 0x83/3, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
307 sbb, 0x1c, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
308 sbb, 0x80/3, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
309
310 cmp, 0x38, 0, D|W|CheckOperandSize|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
311 cmp, 0x83/7, 0, Modrm|No_bSuf|No_sSuf, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
312 cmp, 0x3c, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
313 cmp, 0x80/7, 0, W|Modrm|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
314
315 test, 0x84, 0, D|W|C|CheckOperandSize|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Unspecified|BaseIndex }
316 test, 0xa8, 0, W|No_sSuf|Optimize, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
317 test, 0xf6/0, 0, W|Modrm|No_sSuf|Optimize, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
318
319 and, 0x20, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock|Optimize, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
320 and, 0x83/4, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock|Optimize, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
321 and, 0x24, 0, W|No_sSuf|Optimize, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
322 and, 0x80/4, 0, W|Modrm|No_sSuf|HLEPrefixLock|Optimize, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
323
324 or, 0x8, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock|Optimize, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
325 or, 0x83/1, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
326 or, 0xc, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
327 or, 0x80/1, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
328
329 xor, 0x30, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock|Optimize, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
330 xor, 0x83/6, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
331 xor, 0x34, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
332 xor, 0x80/6, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
333
334 // clr with 1 operand is really xor with 2 operands.
335 clr, 0x30, 0, W|Modrm|No_sSuf|RegKludge|Optimize, { Reg8|Reg16|Reg32|Reg64 }
336
337 adc, 0x10, 0, D|W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
338 adc, 0x83/2, 0, Modrm|No_bSuf|No_sSuf|HLEPrefixLock, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
339 adc, 0x14, 0, W|No_sSuf, { Imm8|Imm16|Imm32|Imm32S, Acc|Byte|Word|Dword|Qword }
340 adc, 0x80/2, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Imm8|Imm16|Imm32|Imm32S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
341
342 neg, 0xf6/3, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
343 not, 0xf6/2, 0, W|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
344
345 aaa, 0x37, No64, NoSuf, {}
346 aas, 0x3f, No64, NoSuf, {}
347 daa, 0x27, No64, NoSuf, {}
348 das, 0x2f, No64, NoSuf, {}
349 aad, 0xd50a, No64, NoSuf, {}
350 aad, 0xd5, No64, NoSuf, { Imm8 }
351 aam, 0xd40a, No64, NoSuf, {}
352 aam, 0xd4, No64, NoSuf, { Imm8 }
353
354 // Conversion insns.
355 // Intel naming
356 cbw, 0x98, 0, Size16|NoSuf, {}
357 cwde, 0x98, i386, Size32|NoSuf, {}
358 cdqe, 0x98, x64, Size64|NoSuf, {}
359 cwd, 0x99, 0, Size16|NoSuf, {}
360 cdq, 0x99, i386, Size32|NoSuf, {}
361 cqo, 0x99, x64, Size64|NoSuf, {}
362 // AT&T naming
363 cbtw, 0x98, 0, Size16|NoSuf, {}
364 cwtl, 0x98, i386, Size32|NoSuf, {}
365 cltq, 0x98, x64, Size64|NoSuf, {}
366 cwtd, 0x99, 0, Size16|NoSuf, {}
367 cltd, 0x99, i386, Size32|NoSuf, {}
368 cqto, 0x99, x64, Size64|NoSuf, {}
369
370 // Warning! the mul/imul (opcode 0xf6) must only have 1 operand! They are
371 // expanding 64-bit multiplies, and *cannot* be selected to accomplish
372 // 'imul %ebx, %eax' (opcode 0x0faf must be used in this case)
373 // These multiplies can only be selected with single operand forms.
374 mul, 0xf6/4, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
375 imul, 0xf6/5, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
376 imul, 0xfaf, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Unspecified|Word|Dword|Qword|BaseIndex, Reg16|Reg32|Reg64 }
377 imul, 0x6b, i186, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Imm8S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
378 imul, 0x69, i186, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Imm16|Imm32|Imm32S, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
379 // imul with 2 operands mimics imul with 3 by putting the register in
380 // both i.rm.reg & i.rm.regmem fields. RegKludge enables this
381 // transformation.
382 imul, 0x6b, i186, Modrm|No_bSuf|No_sSuf|RegKludge, { Imm8S, Reg16|Reg32|Reg64 }
383 imul, 0x69, i186, Modrm|No_bSuf|No_sSuf|RegKludge, { Imm16|Imm32|Imm32S, Reg16|Reg32|Reg64 }
384
385 div, 0xf6/6, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
386 div, 0xf6/6, 0, W|CheckOperandSize|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex, Acc|Byte|Word|Dword|Qword }
387 idiv, 0xf6/7, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
388 idiv, 0xf6/7, 0, W|CheckOperandSize|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex, Acc|Byte|Word|Dword|Qword }
389
390 rol, 0xd0/0, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
391 rol, 0xc0/0, i186, W|Modrm|No_sSuf, { Imm8|Imm8S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
392 rol, 0xd2/0, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
393 rol, 0xd0/0, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
394
395 ror, 0xd0/1, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
396 ror, 0xc0/1, i186, W|Modrm|No_sSuf, { Imm8|Imm8S, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
397 ror, 0xd2/1, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
398 ror, 0xd0/1, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
399
400 rcl, 0xd0/2, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
401 rcl, 0xc0/2, i186, W|Modrm|No_sSuf, { Imm8, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
402 rcl, 0xd2/2, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
403 rcl, 0xd0/2, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
404
405 rcr, 0xd0/3, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
406 rcr, 0xc0/3, i186, W|Modrm|No_sSuf, { Imm8, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
407 rcr, 0xd2/3, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
408 rcr, 0xd0/3, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
409
410 sal, 0xd0/4, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
411 sal, 0xc0/4, i186, W|Modrm|No_sSuf, { Imm8, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
412 sal, 0xd2/4, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
413 sal, 0xd0/4, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
414
415 shl, 0xd0/4, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
416 shl, 0xc0/4, i186, W|Modrm|No_sSuf, { Imm8, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
417 shl, 0xd2/4, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
418 shl, 0xd0/4, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
419
420 shr, 0xd0/5, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
421 shr, 0xc0/5, i186, W|Modrm|No_sSuf, { Imm8, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
422 shr, 0xd2/5, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
423 shr, 0xd0/5, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
424
425 sar, 0xd0/7, 0, W|Modrm|No_sSuf, { Imm1, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
426 sar, 0xc0/7, i186, W|Modrm|No_sSuf, { Imm8, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
427 sar, 0xd2/7, 0, W|Modrm|No_sSuf, { ShiftCount, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
428 sar, 0xd0/7, 0, W|Modrm|No_sSuf, { Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
429
430 shld, 0xfa4, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Imm8, Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
431 shld, 0xfa5, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { ShiftCount, Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
432 shld, 0xfa5, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
433
434 shrd, 0xfac, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Imm8, Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
435 shrd, 0xfad, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { ShiftCount, Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
436 shrd, 0xfad, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
437
438 // Control transfer instructions.
439 call, 0xe8, No64, JumpDword|DefaultSize|No_bSuf|No_sSuf|No_qSuf|BNDPrefixOk, { Disp16|Disp32 }
440 call, 0xe8, x64, Amd64|JumpDword|DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64|BNDPrefixOk, { Disp16|Disp32 }
441 call, 0xe8, x64, Intel64|JumpDword|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64|BNDPrefixOk, { Disp32 }
442 call, 0xff/2, No64, Modrm|JumpAbsolute|DefaultSize|No_bSuf|No_sSuf|No_qSuf|BNDPrefixOk|NoTrackPrefixOk, { Reg16|Reg32|Unspecified|BaseIndex }
443 call, 0xff/2, x64, Amd64|Modrm|JumpAbsolute|DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64|BNDPrefixOk|NoTrackPrefixOk, { Reg16|Reg64|Unspecified|BaseIndex }
444 call, 0xff/2, x64, Intel64|Modrm|JumpAbsolute|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64|BNDPrefixOk|NoTrackPrefixOk, { Reg64|Unspecified|BaseIndex }
445 // Intel Syntax remaining call instances.
446 call, 0x9a, No64, JumpInterSegment|DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Imm16, Imm16|Imm32 }
447 call, 0xff/3, 0, Amd64|Modrm|JumpAbsolute|DefaultSize|NoSuf, { Dword|Fword|BaseIndex }
448 call, 0xff/3, x64, Intel64|Modrm|JumpAbsolute|NoSuf, { Dword|Fword|Tbyte|BaseIndex }
449 lcall, 0x9a, No64, JumpInterSegment|DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Imm16, Imm16|Imm32 }
450 lcall, 0xff/3, 0, Amd64|Modrm|JumpAbsolute|DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Unspecified|BaseIndex }
451 lcall, 0xff/3, x64, Intel64|Modrm|JumpAbsolute|No_bSuf|No_sSuf, { Unspecified|BaseIndex }
452
453 jmp, 0xeb, 0, Amd64|Jump|NoSuf|BNDPrefixOk, { Disp8|Disp16|Disp32 }
454 jmp, 0xeb, x64, Intel64|Jump|NoSuf|BNDPrefixOk, { Disp8|Disp32 }
455 jmp, 0xff/4, No64, Modrm|JumpAbsolute|No_bSuf|No_sSuf|No_qSuf|BNDPrefixOk|NoTrackPrefixOk, { Reg16|Reg32|Unspecified|BaseIndex }
456 jmp, 0xff/4, x64, Amd64|Modrm|JumpAbsolute|No_bSuf|No_lSuf|No_sSuf|NoRex64|BNDPrefixOk|NoTrackPrefixOk, { Reg16|Reg64|Unspecified|BaseIndex }
457 jmp, 0xff/4, x64, Intel64|Modrm|JumpAbsolute|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64|BNDPrefixOk|NoTrackPrefixOk, { Reg64|Unspecified|BaseIndex }
458 // Intel Syntax remaining jmp instances.
459 jmp, 0xea, No64, JumpInterSegment|No_bSuf|No_sSuf|No_qSuf, { Imm16, Imm16|Imm32 }
460 jmp, 0xff/5, 0, Amd64|Modrm|JumpAbsolute|NoSuf, { Dword|Fword|BaseIndex }
461 jmp, 0xff/5, x64, Intel64|Modrm|JumpAbsolute|NoSuf, { Dword|Fword|Tbyte|BaseIndex }
462 ljmp, 0xea, No64, JumpInterSegment|No_bSuf|No_sSuf|No_qSuf, { Imm16, Imm16|Imm32 }
463 ljmp, 0xff/5, 0, Amd64|Modrm|JumpAbsolute|No_bSuf|No_sSuf|No_qSuf, { Unspecified|BaseIndex }
464 ljmp, 0xff/5, x64, Intel64|Modrm|JumpAbsolute|No_bSuf|No_sSuf, { Unspecified|BaseIndex }
465
466 ret, 0xc3, No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf|RepPrefixOk|BNDPrefixOk, {}
467 ret, 0xc2, No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf|RepPrefixOk|BNDPrefixOk, { Imm16 }
468 ret, 0xc3, x64, Amd64|DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64|RepPrefixOk|BNDPrefixOk, {}
469 ret, 0xc2, x64, Amd64|DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64|RepPrefixOk|BNDPrefixOk, { Imm16 }
470 ret, 0xc3, x64, Intel64|Size64|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64|RepPrefixOk|BNDPrefixOk, {}
471 ret, 0xc2, x64, Intel64|Size64|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64|RepPrefixOk|BNDPrefixOk, { Imm16 }
472 lret, 0xcb, 0, DefaultSize|No_bSuf|No_sSuf, {}
473 lret, 0xca, 0, DefaultSize|No_bSuf|No_sSuf, { Imm16 }
474 // Intel Syntax.
475 retf, 0xcb, 0, DefaultSize|No_bSuf|No_sSuf, {}
476 retf, 0xca, 0, DefaultSize|No_bSuf|No_sSuf, { Imm16 }
477
478 enter, 0xc8, i186&No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, { Imm16, Imm8 }
479 enter, 0xc8, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, { Imm16, Imm8 }
480 leave, 0xc9, i186&No64, DefaultSize|No_bSuf|No_sSuf|No_qSuf, {}
481 leave, 0xc9, x64, DefaultSize|No_bSuf|No_lSuf|No_sSuf|NoRex64, {}
482
483 <cc:opc, o:0, no:1, b:2, c:2, nae:2, nb:3, nc:3, ae:3, e:4, z:4, ne:5, nz:5, be:6, na:6, nbe:7, a:7, +
484 s:8, ns:9, p:a, pe:a, np:b, po:b, l:c, nge:c, nl:d, ge:d, le:e, ng:e, nle:f, g:f>
485
486 // Conditional jumps.
487 j<cc>, 0x7<cc:opc>, 0, Jump|NoSuf|BNDPrefixOk, { Disp8|Disp16|Disp32 }
488
489 // jcxz vs. jecxz is chosen on the basis of the address size prefix.
490 jcxz, 0xe3, No64, JumpByte|Size16|NoSuf, { Disp8 }
491 jecxz, 0xe3, i386, JumpByte|Size32|NoSuf, { Disp8 }
492 jrcxz, 0xe3, x64, JumpByte|Size64|NoSuf|NoRex64, { Disp8 }
493
494 // The loop instructions also use the address size prefix to select
495 // %cx rather than %ecx for the loop count, so the `w' form of these
496 // instructions emit an address size prefix rather than a data size
497 // prefix.
498 loop, 0xe2, No64, JumpByte|No_bSuf|No_sSuf|No_qSuf, { Disp8 }
499 loop, 0xe2, x64, JumpByte|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Disp8 }
500 loopz, 0xe1, No64, JumpByte|No_bSuf|No_sSuf|No_qSuf, { Disp8 }
501 loopz, 0xe1, x64, JumpByte|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Disp8 }
502 loope, 0xe1, No64, JumpByte|No_bSuf|No_sSuf|No_qSuf, { Disp8 }
503 loope, 0xe1, x64, JumpByte|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Disp8 }
504 loopnz, 0xe0, No64, JumpByte|No_bSuf|No_sSuf|No_qSuf, { Disp8 }
505 loopnz, 0xe0, x64, JumpByte|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Disp8 }
506 loopne, 0xe0, No64, JumpByte|No_bSuf|No_sSuf|No_qSuf, { Disp8 }
507 loopne, 0xe0, x64, JumpByte|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Disp8 }
508
509 // Set byte on flag instructions.
510 set<cc>, 0xf9<cc:opc>/0, i386, Modrm|No_wSuf|No_lSuf|No_sSuf|No_qSuf, { Reg8|Byte|Unspecified|BaseIndex }
511
512 // String manipulation.
513 cmps, 0xa6, 0, W|No_sSuf|RepPrefixOk, {}
514 cmps, 0xa6, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Byte|Word|Dword|Qword|Unspecified|BaseIndex }
515 scmp, 0xa6, 0, W|No_sSuf|RepPrefixOk, {}
516 scmp, 0xa6, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Byte|Word|Dword|Qword|Unspecified|BaseIndex }
517 ins, 0x6c, i186, W|No_sSuf|No_qSuf|RepPrefixOk, {}
518 ins, 0x6c, i186, W|No_sSuf|No_qSuf|IsStringEsOp1|RepPrefixOk, { InOutPortReg, Byte|Word|Dword|Unspecified|BaseIndex }
519 outs, 0x6e, i186, W|No_sSuf|No_qSuf|RepPrefixOk, {}
520 outs, 0x6e, i186, W|No_sSuf|No_qSuf|IsString|RepPrefixOk, { Byte|Word|Dword|Unspecified|BaseIndex, InOutPortReg }
521 lods, 0xac, 0, W|No_sSuf|RepPrefixOk, {}
522 lods, 0xac, 0, W|No_sSuf|IsString|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex }
523 lods, 0xac, 0, W|No_sSuf|IsString|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Acc|Byte|Word|Dword|Qword }
524 slod, 0xac, 0, W|No_sSuf|RepPrefixOk, {}
525 slod, 0xac, 0, W|No_sSuf|IsString|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex }
526 slod, 0xac, 0, W|No_sSuf|IsString|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Acc|Byte|Word|Dword|Qword }
527 movs, 0xa4, 0, W|No_sSuf|RepPrefixOk, {}
528 movs, 0xa4, 0, W|No_sSuf|IsStringEsOp1|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Byte|Word|Dword|Qword|Unspecified|BaseIndex }
529 smov, 0xa4, 0, W|No_sSuf|RepPrefixOk, {}
530 smov, 0xa4, 0, W|No_sSuf|IsStringEsOp1|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Byte|Word|Dword|Qword|Unspecified|BaseIndex }
531 scas, 0xae, 0, W|No_sSuf|RepPrefixOk, {}
532 scas, 0xae, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex }
533 scas, 0xae, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Acc|Byte|Word|Dword|Qword }
534 ssca, 0xae, 0, W|No_sSuf|RepPrefixOk, {}
535 ssca, 0xae, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex }
536 ssca, 0xae, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex, Acc|Byte|Word|Dword|Qword }
537 stos, 0xaa, 0, W|No_sSuf|RepPrefixOk, {}
538 stos, 0xaa, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex }
539 stos, 0xaa, 0, W|No_sSuf|IsStringEsOp1|RepPrefixOk, { Acc|Byte|Word|Dword|Qword, Byte|Word|Dword|Qword|Unspecified|BaseIndex }
540 ssto, 0xaa, 0, W|No_sSuf|RepPrefixOk, {}
541 ssto, 0xaa, 0, W|No_sSuf|IsStringEsOp0|RepPrefixOk, { Byte|Word|Dword|Qword|Unspecified|BaseIndex }
542 ssto, 0xaa, 0, W|No_sSuf|IsStringEsOp1|RepPrefixOk, { Acc|Byte|Word|Dword|Qword, Byte|Word|Dword|Qword|Unspecified|BaseIndex }
543 xlat, 0xd7, 0, No_wSuf|No_lSuf|No_sSuf|No_qSuf, {}
544 xlat, 0xd7, 0, No_wSuf|No_lSuf|No_sSuf|No_qSuf|IsString, { Byte|Unspecified|BaseIndex }
545
546 // Bit manipulation.
547 bsf, 0xfbc, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf|RepPrefixOk, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
548 bsr, 0xfbd, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf|RepPrefixOk, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
549 bt, 0xfa3, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
550 bt, 0xfba/4, i386, Modrm|No_bSuf|No_sSuf|Optimize, { Imm8, Reg16|Reg32|Reg64|Unspecified|BaseIndex }
551 btc, 0xfbb, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf|HLEPrefixLock, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
552 btc, 0xfba/7, i386, Modrm|No_bSuf|No_sSuf|Optimize|HLEPrefixLock, { Imm8, Reg16|Reg32|Reg64|Unspecified|BaseIndex }
553 btr, 0xfb3, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf|HLEPrefixLock, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
554 btr, 0xfba/6, i386, Modrm|No_bSuf|No_sSuf|Optimize|HLEPrefixLock, { Imm8, Reg16|Reg32|Reg64|Unspecified|BaseIndex }
555 bts, 0xfab, i386, Modrm|CheckOperandSize|No_bSuf|No_sSuf|HLEPrefixLock, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
556 bts, 0xfba/5, i386, Modrm|No_bSuf|No_sSuf|Optimize|HLEPrefixLock, { Imm8, Reg16|Reg32|Reg64|Unspecified|BaseIndex }
557
558 // Interrupts & op. sys insns.
559 // See gas/config/tc-i386.c for conversion of 'int $3' into the special
560 // int 3 insn.
561 int, 0xcd, 0, NoSuf, { Imm8 }
562 int1, 0xf1, 0, NoSuf, {}
563 int3, 0xcc, 0, NoSuf, {}
564 into, 0xce, No64, NoSuf, {}
565 iret, 0xcf, 0, DefaultSize|No_bSuf|No_sSuf, {}
566 // i386sl, i486sl, later 486, and Pentium.
567 rsm, 0xfaa, i386, NoSuf, {}
568
569 bound, 0x62, i186&No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32, Dword|Qword|Unspecified|BaseIndex }
570
571 hlt, 0xf4, 0, NoSuf, {}
572
573 nop, 0xf1f/0, Nop, Modrm|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex }
574
575 // nop is actually "xchg %ax,%ax" in 16bit mode, "xchg %eax,%eax" in
576 // 32bit mode and "xchg %rax,%rax" in 64bit mode.
577 nop, 0x90, 0, NoSuf|RepPrefixOk, {}
578
579 // Protection control.
580 arpl, 0x63, i286&No64, RegMem|CheckOperandSize|IgnoreSize|No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32, Reg16|Reg32 }
581 arpl, 0x63, i286&No64, Modrm|IgnoreSize|No_bSuf|No_sSuf|No_qSuf, { Reg16|Reg32, Word|Unspecified|BaseIndex }
582 lar, 0xf02, i286, Modrm|CheckOperandSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64 }
583 lar, 0xf02, i286, Modrm|No_bSuf|No_sSuf|NoRex64, { Reg16|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
584 lgdt, 0xf01/2, i286&No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { Fword|Unspecified|BaseIndex }
585 lgdt, 0xf01/2, x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Tbyte|Unspecified|BaseIndex }
586 lidt, 0xf01/3, i286&No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { Fword|Unspecified|BaseIndex }
587 lidt, 0xf01/3, x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Tbyte|Unspecified|BaseIndex }
588 lldt, 0xf00/2, i286, Modrm|IgnoreSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
589 lldt, 0xf00/2, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
590 lmsw, 0xf01/6, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Reg16|Word|Unspecified|BaseIndex }
591 lsl, 0xf03, i286, Modrm|CheckOperandSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64, Reg16|Reg32|Reg64 }
592 lsl, 0xf03, i286, Modrm|No_bSuf|No_sSuf|NoRex64, { Reg16|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
593 ltr, 0xf00/3, i286, Modrm|IgnoreSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
594 ltr, 0xf00/3, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
595
596 sgdt, 0xf01/0, i286&No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { Fword|Unspecified|BaseIndex }
597 sgdt, 0xf01/0, x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Tbyte|Unspecified|BaseIndex }
598 sidt, 0xf01/1, i286&No64, Modrm|No_bSuf|No_sSuf|No_qSuf, { Fword|Unspecified|BaseIndex }
599 sidt, 0xf01/1, x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Tbyte|Unspecified|BaseIndex }
600 sldt, 0xf00/0, i286, Modrm|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
601 sldt, 0xf00/0, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
602 smsw, 0xf01/4, i286, Modrm|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64 }
603 smsw, 0xf01/4, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
604 str, 0xf00/1, i286, Modrm|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
605 str, 0xf00/1, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
606
607 verr, 0xf00/4, i286, Modrm|IgnoreSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
608 verr, 0xf00/4, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
609 verw, 0xf00/5, i286, Modrm|IgnoreSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
610 verw, 0xf00/5, i286, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
611
612 // Floating point instructions.
613
614 // load
615 fld, 0xd9/0, FP, Modrm|NoSuf, { FloatReg }
616 fld, 0xd9/0, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
617 fld, 0xd9/0, FP, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf|Ugh, { FloatReg }
618 // Intel Syntax
619 fld, 0xdb/5, FP, Modrm|NoSuf, { Tbyte|Unspecified|BaseIndex }
620 fild, 0xdf/0, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
621 fild, 0xdf/5, FP, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Qword|Unspecified|BaseIndex }
622 fildll, 0xdf/5, FP, Modrm|NoSuf|ATTSyntax, { Unspecified|BaseIndex }
623 fldt, 0xdb/5, FP, Modrm|NoSuf, { Unspecified|BaseIndex }
624 fbld, 0xdf/4, FP, Modrm|NoSuf, { Tbyte|Unspecified|BaseIndex }
625
626 // store (no pop)
627 fst, 0xdd/2, FP, Modrm|NoSuf, { FloatReg }
628 fst, 0xd9/2, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
629 fst, 0xdd/2, FP, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf|Ugh, { FloatReg }
630 fist, 0xdf/2, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
631
632 // store (with pop)
633 fstp, 0xdd/3, FP, Modrm|NoSuf, { FloatReg }
634 fstp, 0xd9/3, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
635 fstp, 0xdd/3, FP, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf|Ugh, { FloatReg }
636 // Intel Syntax
637 fstp, 0xdb/7, FP, Modrm|NoSuf, { Tbyte|Unspecified|BaseIndex }
638 fistp, 0xdf/3, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
639 fistp, 0xdf/7, FP, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Qword|Unspecified|BaseIndex }
640 fistpll, 0xdf/7, FP, Modrm|NoSuf|ATTSyntax, { Unspecified|BaseIndex }
641 fstpt, 0xdb/7, FP, Modrm|NoSuf, { Unspecified|BaseIndex }
642 fbstp, 0xdf/6, FP, Modrm|NoSuf, { Tbyte|Unspecified|BaseIndex }
643
644 // exchange %st<n> with %st0
645 fxch, 0xd9/1, FP, Modrm|NoSuf, { FloatReg }
646 // alias for fxch %st(1)
647 fxch, 0xd9c9, FP, NoSuf, {}
648
649 // comparison (without pop)
650 fcom, 0xd8/2, FP, Modrm|NoSuf, { FloatReg }
651 // alias for fcom %st(1)
652 fcom, 0xd8d1, FP, NoSuf, {}
653 fcom, 0xd8/2, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
654 fcom, 0xd8/2, FP, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf|Ugh, { FloatReg }
655 ficom, 0xde/2, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
656
657 // comparison (with pop)
658 fcomp, 0xd8/3, FP, Modrm|NoSuf, { FloatReg }
659 // alias for fcomp %st(1)
660 fcomp, 0xd8d9, FP, NoSuf, {}
661 fcomp, 0xd8/3, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
662 fcomp, 0xd8/3, FP, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf|Ugh, { FloatReg }
663 ficomp, 0xde/3, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
664 fcompp, 0xded9, FP, NoSuf, {}
665
666 // unordered comparison (with pop)
667 fucom, 0xdd/4, i387, Modrm|NoSuf, { FloatReg }
668 // alias for fucom %st(1)
669 fucom, 0xdde1, i387, NoSuf, {}
670 fucomp, 0xdd/5, i387, Modrm|NoSuf, { FloatReg }
671 // alias for fucomp %st(1)
672 fucomp, 0xdde9, i387, NoSuf, {}
673 fucompp, 0xdae9, i387, NoSuf, {}
674
675 ftst, 0xd9e4, FP, NoSuf, {}
676 fxam, 0xd9e5, FP, NoSuf, {}
677
678 // load constants into %st0
679 fld1, 0xd9e8, FP, NoSuf, {}
680 fldl2t, 0xd9e9, FP, NoSuf, {}
681 fldl2e, 0xd9ea, FP, NoSuf, {}
682 fldpi, 0xd9eb, FP, NoSuf, {}
683 fldlg2, 0xd9ec, FP, NoSuf, {}
684 fldln2, 0xd9ed, FP, NoSuf, {}
685 fldz, 0xd9ee, FP, NoSuf, {}
686
687 // Arithmetic.
688
689 // add
690 fadd, 0xd8/0, FP, D|Modrm|NoSuf, { FloatReg, FloatAcc }
691 // alias for fadd %st(i), %st
692 fadd, 0xd8/0, FP, Modrm|NoSuf, { FloatReg }
693 // alias for faddp
694 fadd, 0xdec1, FP, NoSuf|Ugh|ATTMnemonic, {}
695 fadd, 0xd8/0, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
696 fiadd, 0xde/0, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
697
698 faddp, 0xde/0, FP, D|Modrm|NoSuf|Ugh, { FloatAcc, FloatReg }
699 faddp, 0xde/0, FP, Modrm|NoSuf, { FloatReg }
700 // alias for faddp %st, %st(1)
701 faddp, 0xdec1, FP, NoSuf, {}
702
703 // subtract
704 fsub, 0xd8/4, FP, Modrm|NoSuf, { FloatReg }
705 fsub, 0xd8/4, FP, D|Modrm|NoSuf, { FloatReg, FloatAcc }
706 // alias for fsubp
707 fsub, 0xdee1, FP, NoSuf|Ugh|ATTMnemonic|ATTSyntax, {}
708 fsub, 0xdee9, FP, NoSuf|Ugh|ATTMnemonic, {}
709 fsub, 0xd8/4, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
710 fisub, 0xde/4, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
711
712 fsubp, 0xde/4, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatAcc, FloatReg }
713 fsubp, 0xde/4, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatReg }
714 fsubp, 0xdee1, FP, NoSuf|ATTMnemonic|ATTSyntax, {}
715 fsubp, 0xde/5, FP, Modrm|NoSuf, { FloatAcc, FloatReg }
716 fsubp, 0xde/5, FP, Modrm|NoSuf, { FloatReg }
717 fsubp, 0xdee9, FP, NoSuf, {}
718
719 // subtract reverse
720 fsubr, 0xd8/5, FP, Modrm|NoSuf, { FloatReg }
721 fsubr, 0xd8/5, FP, D|Modrm|NoSuf, { FloatReg, FloatAcc }
722 // alias for fsubrp
723 fsubr, 0xdee9, FP, NoSuf|Ugh|ATTMnemonic|ATTSyntax, {}
724 fsubr, 0xdee1, FP, NoSuf|Ugh|ATTMnemonic, {}
725 fsubr, 0xd8/5, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
726 fisubr, 0xde/5, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
727
728 fsubrp, 0xde/5, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatAcc, FloatReg }
729 fsubrp, 0xde/5, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatReg }
730 fsubrp, 0xdee9, FP, NoSuf|ATTMnemonic|ATTSyntax, {}
731 fsubrp, 0xde/4, FP, Modrm|NoSuf, { FloatAcc, FloatReg }
732 fsubrp, 0xde/4, FP, Modrm|NoSuf, { FloatReg }
733 fsubrp, 0xdee1, FP, NoSuf, {}
734
735 // multiply
736 fmul, 0xd8/1, FP, D|Modrm|NoSuf, { FloatReg, FloatAcc }
737 fmul, 0xd8/1, FP, Modrm|NoSuf, { FloatReg }
738 // alias for fmulp
739 fmul, 0xdec9, FP, NoSuf|Ugh|ATTMnemonic, {}
740 fmul, 0xd8/1, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
741 fimul, 0xde/1, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
742
743 fmulp, 0xde/1, FP, D|Modrm|NoSuf|Ugh, { FloatAcc, FloatReg }
744 fmulp, 0xde/1, FP, Modrm|NoSuf, { FloatReg }
745 // alias for fmulp %st, %st(1)
746 fmulp, 0xdec9, FP, NoSuf, {}
747
748 // divide
749 fdiv, 0xd8/6, FP, Modrm|NoSuf, { FloatReg }
750 fdiv, 0xd8/6, FP, D|Modrm|NoSuf, { FloatReg, FloatAcc }
751 // alias for fdivp
752 fdiv, 0xdef1, FP, NoSuf|Ugh|ATTMnemonic|ATTSyntax, {}
753 fdiv, 0xdef9, FP, NoSuf|Ugh|ATTMnemonic, {}
754 fdiv, 0xd8/6, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
755 fidiv, 0xde/6, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
756
757 fdivp, 0xde/6, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatAcc, FloatReg }
758 fdivp, 0xde/6, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatReg }
759 fdivp, 0xdef1, FP, NoSuf|ATTMnemonic|ATTSyntax, {}
760 fdivp, 0xde/7, FP, Modrm|NoSuf, { FloatAcc, FloatReg }
761 fdivp, 0xde/7, FP, Modrm|NoSuf, { FloatReg }
762 fdivp, 0xdef9, FP, NoSuf, {}
763
764 // divide reverse
765 fdivr, 0xd8/7, FP, Modrm|NoSuf, { FloatReg }
766 fdivr, 0xd8/7, FP, D|Modrm|NoSuf, { FloatReg, FloatAcc }
767 // alias for fdivrp
768 fdivr, 0xdef9, FP, NoSuf|Ugh|ATTMnemonic|ATTSyntax, {}
769 fdivr, 0xdef1, FP, NoSuf|Ugh|ATTMnemonic, {}
770 fdivr, 0xd8/7, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Dword|Qword|Unspecified|BaseIndex }
771 fidivr, 0xde/7, FP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
772
773 fdivrp, 0xde/7, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatAcc, FloatReg }
774 fdivrp, 0xde/7, FP, Modrm|NoSuf|ATTMnemonic|ATTSyntax, { FloatReg }
775 fdivrp, 0xdef9, FP, NoSuf|ATTMnemonic|ATTSyntax, {}
776 fdivrp, 0xde/6, FP, Modrm|NoSuf, { FloatAcc, FloatReg }
777 fdivrp, 0xde/6, FP, Modrm|NoSuf, { FloatReg }
778 fdivrp, 0xdef1, FP, NoSuf, {}
779
780 f2xm1, 0xd9f0, FP, NoSuf, {}
781 fyl2x, 0xd9f1, FP, NoSuf, {}
782 fptan, 0xd9f2, FP, NoSuf, {}
783 fpatan, 0xd9f3, FP, NoSuf, {}
784 fxtract, 0xd9f4, FP, NoSuf, {}
785 fprem1, 0xd9f5, i387, NoSuf, {}
786 fdecstp, 0xd9f6, FP, NoSuf, {}
787 fincstp, 0xd9f7, FP, NoSuf, {}
788 fprem, 0xd9f8, FP, NoSuf, {}
789 fyl2xp1, 0xd9f9, FP, NoSuf, {}
790 fsqrt, 0xd9fa, FP, NoSuf, {}
791 fsincos, 0xd9fb, i387, NoSuf, {}
792 frndint, 0xd9fc, FP, NoSuf, {}
793 fscale, 0xd9fd, FP, NoSuf, {}
794 fsin, 0xd9fe, i387, NoSuf, {}
795 fcos, 0xd9ff, i387, NoSuf, {}
796 fchs, 0xd9e0, FP, NoSuf, {}
797 fabs, 0xd9e1, FP, NoSuf, {}
798
799 // processor control
800 fninit, 0xdbe3, FP, NoSuf, {}
801 finit, 0xdbe3, FP, NoSuf|FWait, {}
802 fldcw, 0xd9/5, FP, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
803 fnstcw, 0xd9/7, FP, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
804 fstcw, 0xd9/7, FP, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf|FWait, { Word|Unspecified|BaseIndex }
805 fnstsw, 0xdfe0, i287|i387, IgnoreSize|NoSuf, { Acc|Word }
806 fnstsw, 0xdd/7, FP, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
807 fnstsw, 0xdfe0, i287|i387, NoSuf, {}
808 fstsw, 0xdfe0, i287|i387, IgnoreSize|NoSuf|FWait, { Acc|Word }
809 fstsw, 0xdd/7, FP, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf|FWait, { Word|Unspecified|BaseIndex }
810 fstsw, 0xdfe0, i287|i387, NoSuf|FWait, {}
811 fnclex, 0xdbe2, FP, NoSuf, {}
812 fclex, 0xdbe2, FP, NoSuf|FWait, {}
813 // Short forms of fldenv, fstenv, fsave, and frstor use data size prefix.
814 fnstenv, 0xd9/6, FP, Modrm|No_bSuf|No_wSuf|No_qSuf, { Unspecified|BaseIndex }
815 fstenv, 0xd9/6, FP, Modrm|No_bSuf|No_wSuf|No_qSuf|FWait, { Unspecified|BaseIndex }
816 fldenv, 0xd9/4, FP, Modrm|No_bSuf|No_wSuf|No_qSuf, { Unspecified|BaseIndex }
817 fnsave, 0xdd/6, FP, Modrm|No_bSuf|No_wSuf|No_qSuf, { Unspecified|BaseIndex }
818 fsave, 0xdd/6, FP, Modrm|No_bSuf|No_wSuf|No_qSuf|FWait, { Unspecified|BaseIndex }
819 frstor, 0xdd/4, FP, Modrm|No_bSuf|No_wSuf|No_qSuf, { Unspecified|BaseIndex }
820 // 8087 only
821 fneni, 0xdbe0, i8087, NoSuf, {}
822 feni, 0xdbe0, i8087, NoSuf|FWait, {}
823 fndisi, 0xdbe1, i8087, NoSuf, {}
824 fdisi, 0xdbe1, i8087, NoSuf|FWait, {}
825 // 287 only
826 fnsetpm, 0xdbe4, i287, NoSuf, {}
827 fsetpm, 0xdbe4, i287, NoSuf|FWait, {}
828 frstpm, 0xdbe5, i287, NoSuf, {}
829
830 ffree, 0xdd/0, FP, Modrm|NoSuf, { FloatReg }
831 // P6:free st(i), pop st
832 ffreep, 0xdf/0, i687, Modrm|NoSuf, { FloatReg }
833 fnop, 0xd9d0, FP, NoSuf, {}
834 fwait, 0x9b, FP, NoSuf, {}
835
836 // Opcode prefixes; we allow them as separate insns too.
837
838 addr16, 0x67, i386&No64, Size16|IgnoreSize|NoSuf|IsPrefix, {}
839 addr32, 0x67, i386, Size32|IgnoreSize|NoSuf|IsPrefix, {}
840 aword, 0x67, i386&No64, Size16|IgnoreSize|NoSuf|IsPrefix, {}
841 adword, 0x67, i386, Size32|IgnoreSize|NoSuf|IsPrefix, {}
842 data16, 0x66, i386, Size16|IgnoreSize|NoSuf|IsPrefix, {}
843 data32, 0x66, i386&No64, Size32|IgnoreSize|NoSuf|IsPrefix, {}
844 word, 0x66, i386, Size16|IgnoreSize|NoSuf|IsPrefix, {}
845 dword, 0x66, i386&No64, Size32|IgnoreSize|NoSuf|IsPrefix, {}
846 lock, 0xf0, 0, NoSuf|IsPrefix, {}
847 wait, 0x9b, 0, NoSuf|IsPrefix, {}
848 cs, 0x2e, 0, NoSuf|IsPrefix, {}
849 ds, 0x3e, 0, NoSuf|IsPrefix, {}
850 es, 0x26, No64, NoSuf|IsPrefix, {}
851 fs, 0x64, i386, NoSuf|IsPrefix, {}
852 gs, 0x65, i386, NoSuf|IsPrefix, {}
853 ss, 0x36, No64, NoSuf|IsPrefix, {}
854 rep, 0xf3, 0, NoSuf|IsPrefix, {}
855 repe, 0xf3, 0, NoSuf|IsPrefix, {}
856 repz, 0xf3, 0, NoSuf|IsPrefix, {}
857 repne, 0xf2, 0, NoSuf|IsPrefix, {}
858 repnz, 0xf2, 0, NoSuf|IsPrefix, {}
859 ht, 0x3e, 0, NoSuf|IsPrefix, {}
860 hnt, 0x2e, 0, NoSuf|IsPrefix, {}
861 rex, 0x40, x64, NoSuf|IsPrefix, {}
862 rexz, 0x41, x64, NoSuf|IsPrefix, {}
863 rexy, 0x42, x64, NoSuf|IsPrefix, {}
864 rexyz, 0x43, x64, NoSuf|IsPrefix, {}
865 rexx, 0x44, x64, NoSuf|IsPrefix, {}
866 rexxz, 0x45, x64, NoSuf|IsPrefix, {}
867 rexxy, 0x46, x64, NoSuf|IsPrefix, {}
868 rexxyz, 0x47, x64, NoSuf|IsPrefix, {}
869 rex64, 0x48, x64, NoSuf|IsPrefix, {}
870 rex64z, 0x49, x64, NoSuf|IsPrefix, {}
871 rex64y, 0x4a, x64, NoSuf|IsPrefix, {}
872 rex64yz, 0x4b, x64, NoSuf|IsPrefix, {}
873 rex64x, 0x4c, x64, NoSuf|IsPrefix, {}
874 rex64xz, 0x4d, x64, NoSuf|IsPrefix, {}
875 rex64xy, 0x4e, x64, NoSuf|IsPrefix, {}
876 rex64xyz, 0x4f, x64, NoSuf|IsPrefix, {}
877 rex.b, 0x41, x64, NoSuf|IsPrefix, {}
878 rex.x, 0x42, x64, NoSuf|IsPrefix, {}
879 rex.xb, 0x43, x64, NoSuf|IsPrefix, {}
880 rex.r, 0x44, x64, NoSuf|IsPrefix, {}
881 rex.rb, 0x45, x64, NoSuf|IsPrefix, {}
882 rex.rx, 0x46, x64, NoSuf|IsPrefix, {}
883 rex.rxb, 0x47, x64, NoSuf|IsPrefix, {}
884 rex.w, 0x48, x64, NoSuf|IsPrefix, {}
885 rex.wb, 0x49, x64, NoSuf|IsPrefix, {}
886 rex.wx, 0x4a, x64, NoSuf|IsPrefix, {}
887 rex.wxb, 0x4b, x64, NoSuf|IsPrefix, {}
888 rex.wr, 0x4c, x64, NoSuf|IsPrefix, {}
889 rex.wrb, 0x4d, x64, NoSuf|IsPrefix, {}
890 rex.wrx, 0x4e, x64, NoSuf|IsPrefix, {}
891 rex.wrxb, 0x4f, x64, NoSuf|IsPrefix, {}
892
893 // Pseudo prefixes (base_opcode == PSEUDO_PREFIX)
894
895 <pseudopfx:ident:cpu, disp8:Disp8:0, disp16:Disp16:0, disp32:Disp32:0, +
896 load:Load:0, store:Store:0, +
897 vex:VEX:0, vex2:VEX:0, vex3:VEX3:0, evex:EVEX:0, +
898 rex:REX:x64, nooptimize:NoOptimize:0>
899
900 {<pseudopfx>}, PSEUDO_PREFIX/Prefix_<pseudopfx:ident>, <pseudopfx:cpu>, NoSuf|IsPrefix, {}
901
902 // 486 extensions.
903
904 bswap, 0xfc8, i486, No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64 }
905 xadd, 0xfc0, i486, W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
906 cmpxchg, 0xfb0, i486, W|CheckOperandSize|Modrm|No_sSuf|HLEPrefixLock, { Reg8|Reg16|Reg32|Reg64, Reg8|Reg16|Reg32|Reg64|Byte|Word|Dword|Qword|Unspecified|BaseIndex }
907 invd, 0xf08, i486, NoSuf, {}
908 wbinvd, 0xf09, i486, NoSuf, {}
909 invlpg, 0xf01/7, i486, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
910
911 // 586 and late 486 extensions.
912 cpuid, 0xfa2, i486, NoSuf, {}
913
914 // Pentium extensions.
915 wrmsr, 0xf30, i586, NoSuf, {}
916 rdtsc, 0xf31, i586, NoSuf, {}
917 rdmsr, 0xf32, i586, NoSuf, {}
918 cmpxchg8b, 0xfc7/1, i586, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64|HLEPrefixLock, { Qword|Unspecified|BaseIndex }
919
920 // Pentium II/Pentium Pro extensions.
921 sysenter, 0xf34, x64, Intel64Only|NoSuf, {}
922 sysenter, 0xf34, i686&No64, NoSuf, {}
923 sysexit, 0xf35, x64, Intel64Only|No_bSuf|No_wSuf|No_sSuf, {}
924 sysexit, 0xf35, i686&No64, NoSuf, {}
925 fxsave, 0xfae/0, FXSR, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Unspecified|BaseIndex }
926 fxsave64, 0xfae/0, FXSR&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
927 fxrstor, 0xfae/1, FXSR, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Unspecified|BaseIndex }
928 fxrstor64, 0xfae/1, FXSR&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
929 rdpmc, 0xf33, i686, NoSuf, {}
930 // official undefined instr.
931 ud2, 0xf0b, i186, NoSuf, {}
932 // alias for ud2
933 ud2a, 0xf0b, i186, NoSuf, {}
934 // 2nd. official undefined instr.
935 ud1, 0xfb9, i186, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
936 // alias for ud1
937 ud2b, 0xfb9, i186, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
938 // 3rd official undefined instr (older CPUs don't take a ModR/M byte)
939 ud0, 0xfff, i186, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
940
941 cmov<cc>, 0xf4<cc:opc>, CMOV, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
942
943 fcmovb, 0xda/0, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
944 fcmovnae, 0xda/0, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
945 fcmove, 0xda/1, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
946 fcmovbe, 0xda/2, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
947 fcmovna, 0xda/2, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
948 fcmovu, 0xda/3, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
949 fcmovae, 0xdb/0, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
950 fcmovnb, 0xdb/0, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
951 fcmovne, 0xdb/1, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
952 fcmova, 0xdb/2, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
953 fcmovnbe, 0xdb/2, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
954 fcmovnu, 0xdb/3, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
955
956 fcomi, 0xdb/6, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
957 fcomi, 0xdbf1, i687, NoSuf, {}
958 fcomi, 0xdb/6, i687, Modrm|NoSuf, { FloatReg }
959 fucomi, 0xdb/5, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
960 fucomi, 0xdbe9, i687, NoSuf, {}
961 fucomi, 0xdb/5, i687, Modrm|NoSuf, { FloatReg }
962 fcomip, 0xdf/6, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
963 fcomip, 0xdff1, i687, NoSuf, {}
964 fcomip, 0xdf/6, i687, Modrm|NoSuf, { FloatReg }
965 fcompi, 0xdf/6, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
966 fcompi, 0xdff1, i687, NoSuf, {}
967 fcompi, 0xdf/6, i687, Modrm|NoSuf, { FloatReg }
968 fucomip, 0xdf/5, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
969 fucomip, 0xdfe9, i687, NoSuf, {}
970 fucomip, 0xdf/5, i687, Modrm|NoSuf, { FloatReg }
971 fucompi, 0xdf/5, i687, Modrm|NoSuf, { FloatReg, FloatAcc }
972 fucompi, 0xdfe9, i687, NoSuf, {}
973 fucompi, 0xdf/5, i687, Modrm|NoSuf, { FloatReg }
974
975 // Pentium4 extensions.
976
977 movnti, 0xfc3, SSE2, Modrm|CheckOperandSize|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
978 clflush, 0xfae/7, Clflush, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
979 lfence, 0xfaee8, SSE2, NoSuf, {}
980 mfence, 0xfaef0, SSE2, NoSuf, {}
981 // Processors that do not support PAUSE treat this opcode as a NOP instruction.
982 pause, 0xf390, i186, NoSuf, {}
983
984 // MMX/SSE2 instructions.
985
986 <mmx:cpu:pfx:attr:reg:mem, +
987 $avx:AVX:66:Vex128|VexVVVV|VexW0|SSE2AVX:RegXMM:Xmmword, +
988 $sse:SSE2:66::RegXMM:Xmmword, +
989 $mmx:MMX:::RegMMX:Qword>
990
991 <sse2:cpu:attr:scal:vvvv, +
992 $avx:AVX:Vex128|VexW0|SSE2AVX:VexLIG|VexW0|SSE2AVX:VexVVVV, +
993 $sse:SSE2:::>
994
995 <bw:opc:vexw:elem:kcpu:kpfx:cpubmi, +
996 b:0:VexW0:Byte:AVX512DQ:66:AVX512VBMI, +
997 w:1:VexW1:Word:AVX512F::AVX512BW>
998
999 <dq:opc:vexw:vexw64:elem:cpu64:gpr:kpfx:kvsz, +
1000 d:0:VexW0::Dword::Reg32:66:Vsz256, +
1001 q:1:VexW1:VexW1:Qword:x64:Reg64::Vsz512>
1002
1003 emms, 0xf77, MMX, NoSuf, {}
1004 // These really shouldn't allow for Reg64 (movq is the right mnemonic for
1005 // copying between Reg64/Mem64 and RegXMM/RegMMX, as is mandated by Intel's
1006 // spec). AMD's spec, having been in existence for much longer, failed to
1007 // recognize that and specified movd for 32- and 64-bit operations.
1008 movd, 0x666e, AVX, D|Modrm|Vex128|Space0F|VexW0|NoSuf|SSE2AVX, { Reg32|Unspecified|BaseIndex, RegXMM }
1009 movd, 0x666e, AVX&x64, D|Modrm|Vex=1|Space0F|VexW1|NoSuf|Size64|SSE2AVX, { Reg64|BaseIndex, RegXMM }
1010 movd, 0x660f6e, SSE2, D|Modrm|IgnoreSize|NoSuf, { Reg32|Unspecified|BaseIndex, RegXMM }
1011 movd, 0x660f6e, SSE2&x64, D|Modrm|NoSuf|Size64, { Reg64|BaseIndex, RegXMM }
1012 // The MMX templates have to remain after at least the SSE2AVX ones.
1013 movd, 0xf6e, MMX, D|Modrm|IgnoreSize|NoSuf, { Reg32|Unspecified|BaseIndex, RegMMX }
1014 movd, 0xf6e, MMX&x64, D|Modrm|NoSuf|Size64, { Reg64|BaseIndex, RegMMX }
1015 movq, 0xf37e, AVX, Load|Modrm|Vex=1|Space0F|VexWIG|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1016 movq, 0x66d6, AVX, Modrm|Vex=1|Space0F|VexWIG|NoSuf|SSE2AVX, { RegXMM, Qword|Unspecified|BaseIndex|RegXMM }
1017 movq, 0x666e, AVX&x64, D|Modrm|Vex=1|Space0F|VexW1|NoSuf|Size64|SSE2AVX, { Reg64|Unspecified|BaseIndex, RegXMM }
1018 movq, 0xf30f7e, SSE2, Load|Modrm|NoSuf, { Unspecified|Qword|BaseIndex|RegXMM, RegXMM }
1019 movq, 0x660fd6, SSE2, Modrm|NoSuf, { RegXMM, Unspecified|Qword|BaseIndex|RegXMM }
1020 movq, 0x660f6e, SSE2&x64, D|Modrm|NoSuf|Size64, { Reg64|Unspecified|BaseIndex, RegXMM }
1021 // The MMX templates have to remain after at least the SSE2AVX ones.
1022 movq, 0xf6f, MMX, D|Modrm|NoSuf, { Unspecified|Qword|BaseIndex|RegMMX, RegMMX }
1023 movq, 0xf6e, MMX&x64, D|Modrm|NoSuf|Size64, { Reg64|Unspecified|BaseIndex, RegMMX }
1024 packssdw<mmx>, 0x<mmx:pfx>0f6b, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1025 packsswb<mmx>, 0x<mmx:pfx>0f63, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1026 packuswb<mmx>, 0x<mmx:pfx>0f67, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1027 padd<bw><mmx>, 0x<mmx:pfx>0ffc | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1028 paddd<mmx>, 0x<mmx:pfx>0ffe, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1029 paddq<sse2>, 0x660fd4, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1030 paddq, 0xfd4, SSE2, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1031 padds<bw><mmx>, 0x<mmx:pfx>0fec | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1032 paddus<bw><mmx>, 0x<mmx:pfx>0fdc | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1033 pand<mmx>, 0x<mmx:pfx>0fdb, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1034 pandn<mmx>, 0x<mmx:pfx>0fdf, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1035 pcmpeq<bw><mmx>, 0x<mmx:pfx>0f74 | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1036 pcmpeqd<mmx>, 0x<mmx:pfx>0f76, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1037 pcmpgt<bw><mmx>, 0x<mmx:pfx>0f64 | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf|Optimize, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1038 pcmpgtd<mmx>, 0x<mmx:pfx>0f66, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf|Optimize, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1039 pmaddwd<mmx>, 0x<mmx:pfx>0ff5, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1040 pmulhw<mmx>, 0x<mmx:pfx>0fe5, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1041 pmullw<mmx>, 0x<mmx:pfx>0fd5, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1042 por<mmx>, 0x<mmx:pfx>0feb, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1043 psllw<mmx>, 0x<mmx:pfx>0ff1, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1044 psllw<mmx>, 0x<mmx:pfx>0f71/6, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { Imm8, <mmx:reg> }
1045 psll<dq><mmx>, 0x<mmx:pfx>0ff2 | <dq:opc>, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1046 psll<dq><mmx>, 0x<mmx:pfx>0f72 | <dq:opc>/6, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { Imm8, <mmx:reg> }
1047 psraw<mmx>, 0x<mmx:pfx>0fe1, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1048 psraw<mmx>, 0x<mmx:pfx>0f71/4, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { Imm8, <mmx:reg> }
1049 psrad<mmx>, 0x<mmx:pfx>0fe2, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1050 psrad<mmx>, 0x<mmx:pfx>0f72/4, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { Imm8, <mmx:reg> }
1051 psrlw<mmx>, 0x<mmx:pfx>0fd1, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1052 psrlw<mmx>, 0x<mmx:pfx>0f71/2, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { Imm8, <mmx:reg> }
1053 psrl<dq><mmx>, 0x<mmx:pfx>0fd2 | <dq:opc>, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1054 psrl<dq><mmx>, 0x<mmx:pfx>0f72 | <dq:opc>/2, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { Imm8, <mmx:reg> }
1055 psub<bw><mmx>, 0x<mmx:pfx>0ff8 | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1056 psubd<mmx>, 0x<mmx:pfx>0ffa, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1057 psubq<sse2>, 0x660ffb, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1058 psubq, 0xffb, SSE2, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1059 psubs<bw><mmx>, 0x<mmx:pfx>0fe8 | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1060 psubus<bw><mmx>, 0x<mmx:pfx>0fd8 | <bw:opc>, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1061 punpckhbw<mmx>, 0x<mmx:pfx>0f68, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1062 punpckhwd<mmx>, 0x<mmx:pfx>0f69, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1063 punpckhdq<mmx>, 0x<mmx:pfx>0f6a, <mmx:cpu>, Modrm|<mmx:attr>|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1064 punpcklbw<sse2>, 0x660f60, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1065 punpcklbw, 0xf60, MMX, Modrm|NoSuf, { Dword|Unspecified|BaseIndex|RegMMX, RegMMX }
1066 punpcklwd<sse2>, 0x660f61, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1067 punpcklwd, 0xf61, MMX, Modrm|NoSuf, { Dword|Unspecified|BaseIndex|RegMMX, RegMMX }
1068 punpckldq<sse2>, 0x660f62, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1069 punpckldq, 0xf62, MMX, Modrm|NoSuf, { Dword|Unspecified|BaseIndex|RegMMX, RegMMX }
1070 pxor<mmx>, 0x<mmx:pfx>0fef, <mmx:cpu>, Modrm|<mmx:attr>|C|NoSuf, { <mmx:reg>|<mmx:mem>|Unspecified|BaseIndex, <mmx:reg> }
1071
1072 // SSE instructions.
1073
1074 <sse:cpu:attr:scal:vvvv, +
1075 $avx:AVX:Vex128|VexW0|SSE2AVX:VexLIG|VexW0|SSE2AVX:VexVVVV, +
1076 $sse:SSE:::>
1077 <frel:imm:comm, eq:0:C, lt:1:, le:2:, unord:3:C, neq:4:C, nlt:5:, nle:6:, ord:7:C>
1078
1079 addps<sse>, 0x0f58, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1080 addss<sse>, 0xf30f58, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1081 andnps<sse>, 0x0f55, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1082 andps<sse>, 0x0f54, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1083 cmp<frel>ps<sse>, 0x0fc2/<frel:imm>, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|<frel:comm>|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM }
1084 cmp<frel>ss<sse>, 0xf30fc2/<frel:imm>, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|<frel:comm>|NoSuf|ImmExt, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM }
1085 cmpps<sse>, 0x0fc2, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1086 cmpss<sse>, 0xf30fc2, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Imm8, Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1087 comiss<sse>, 0x0f2f, <sse:cpu>, Modrm|<sse:scal>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1088 cvtpi2ps, 0xf2a, SSE, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegXMM }
1089 cvtps2pi, 0xf2d, SSE, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegMMX }
1090 cvtsi2ss<sse>, 0xf30f2a, <sse:cpu>&No64, Modrm|<sse:scal>|<sse:vvvv>|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Reg32|Unspecified|BaseIndex, RegXMM }
1091 cvtsi2ss, 0xf32a, AVX&x64, Modrm|Vex=3|Space0F|VexVVVV|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|SSE2AVX|ATTSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1092 cvtsi2ss, 0xf32a, AVX&x64, Modrm|Vex=3|Space0F|VexVVVV|No_bSuf|No_wSuf|No_sSuf|SSE2AVX|IntelSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1093 cvtsi2ss, 0xf30f2a, SSE&x64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|ATTSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1094 cvtsi2ss, 0xf30f2a, SSE&x64, Modrm|No_bSuf|No_wSuf|No_sSuf|IntelSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1095 cvtss2si, 0xf32d, AVX, Modrm|VexLIG|Space0F|No_bSuf|No_wSuf|No_sSuf|SSE2AVX, { Dword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1096 cvtss2si, 0xf30f2d, SSE, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Dword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1097 cvttps2pi, 0xf2c, SSE, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegMMX }
1098 cvttss2si, 0xf32c, AVX, Modrm|VexLIG|Space0F|No_bSuf|No_wSuf|No_sSuf|SSE2AVX, { Dword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1099 cvttss2si, 0xf30f2c, SSE, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Dword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1100 divps<sse>, 0x0f5e, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1101 divss<sse>, 0xf30f5e, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1102 ldmxcsr<sse>, 0x0fae/2, <sse:cpu>, Modrm|<sse:attr>|NoSuf, { Dword|Unspecified|BaseIndex }
1103 maskmovq, 0xff7, SSE|3dnowA, Modrm|NoSuf, { RegMMX, RegMMX }
1104 maxps<sse>, 0x0f5f, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1105 maxss<sse>, 0xf30f5f, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1106 minps<sse>, 0x0f5d, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1107 minss<sse>, 0xf30f5d, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1108 movaps<sse>, 0x0f28, <sse:cpu>, D|Modrm|<sse:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1109 movhlps<sse>, 0x0f12, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM, RegXMM }
1110 movhps, 0x16, AVX, Modrm|Vex|Space0F|VexVVVV|VexW0|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex, RegXMM }
1111 movhps, 0x17, AVX, Modrm|Vex|Space0F|VexW0|NoSuf|SSE2AVX, { RegXMM, Qword|Unspecified|BaseIndex }
1112 movhps, 0xf16, SSE, D|Modrm|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM }
1113 movlhps<sse>, 0x0f16, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM, RegXMM }
1114 movlps, 0x12, AVX, Modrm|Vex|Space0F|VexVVVV|VexW0|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex, RegXMM }
1115 movlps, 0x13, AVX, Modrm|Vex|Space0F|VexW0|NoSuf|SSE2AVX, { RegXMM, Qword|Unspecified|BaseIndex }
1116 movlps, 0xf12, SSE, D|Modrm|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM }
1117 movmskps<sse>, 0x0f50, <sse:cpu>, Modrm|<sse:attr>|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|NoRex64, { RegXMM, Reg32|Reg64 }
1118 movntps<sse>, 0x0f2b, <sse:cpu>, Modrm|<sse:attr>|NoSuf, { RegXMM, Xmmword|Unspecified|BaseIndex }
1119 movntq, 0xfe7, SSE|3dnowA, Modrm|NoSuf, { RegMMX, Qword|Unspecified|BaseIndex }
1120 movntdq<sse2>, 0x660fe7, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM, Xmmword|Unspecified|BaseIndex }
1121 movss, 0xf310, AVX, D|Modrm|VexLIG|Space0F|VexW0|NoSuf|SSE2AVX, { Dword|Unspecified|BaseIndex, RegXMM }
1122 movss, 0xf310, AVX, D|Modrm|VexLIG|Space0F|VexVVVV|VexW0|NoSuf|SSE2AVX, { RegXMM, RegXMM }
1123 movss, 0xf30f10, SSE, D|Modrm|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1124 movups<sse>, 0x0f10, <sse:cpu>, D|Modrm|<sse:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1125 mulps<sse>, 0x0f59, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1126 mulss<sse>, 0xf30f59, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1127 orps<sse>, 0x0f56, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1128 pavg<bw>, 0xfe0 | (3 * <bw:opc>), SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1129 pavg<bw><sse2>, 0x660fe0 | (3 * <bw:opc>), <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1130 pextrw<sse2>, 0x660fc5, <sse2:cpu>, Load|Modrm|<sse2:attr>|No_bSuf|No_wSuf|No_sSuf|IgnoreSize|NoRex64, { Imm8, RegXMM, Reg32|Reg64 }
1131 pextrw, 0xfc5, SSE|3dnowA, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Imm8, RegMMX, Reg32|Reg64 }
1132 pinsrw<sse2>, 0x660fc4, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|No_bSuf|No_wSuf|No_sSuf|IgnoreSize|NoRex64, { Imm8, Reg32|Reg64, RegXMM }
1133 pinsrw<sse2>, 0x660fc4, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { Imm8, Word|Unspecified|BaseIndex, RegXMM }
1134 pinsrw, 0xfc4, SSE|3dnowA, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|NoRex64, { Imm8, Reg32|Reg64, RegMMX }
1135 pinsrw, 0xfc4, SSE|3dnowA, Modrm|NoSuf, { Imm8, Word|Unspecified|BaseIndex, RegMMX }
1136 pmaxsw<sse2>, 0x660fee, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1137 pmaxsw, 0xfee, SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1138 pmaxub<sse2>, 0x660fde, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1139 pmaxub, 0xfde, SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1140 pminsw<sse2>, 0x660fea, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1141 pminsw, 0xfea, SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1142 pminub<sse2>, 0x660fda, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1143 pminub, 0xfda, SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1144 pmovmskb<sse2>, 0x660fd7, <sse2:cpu>, Modrm|<sse2:attr>|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|NoRex64, { RegXMM, Reg32|Reg64 }
1145 pmovmskb, 0xfd7, SSE|3dnowA, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|NoRex64, { RegMMX, Reg32|Reg64 }
1146 pmulhuw<sse2>, 0x660fe4, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1147 pmulhuw, 0xfe4, SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1148 prefetchnta, 0xf18/0, SSE|3dnowA, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
1149 prefetcht0, 0xf18/1, SSE|3dnowA, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
1150 prefetcht1, 0xf18/2, SSE|3dnowA, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
1151 prefetcht2, 0xf18/3, SSE|3dnowA, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
1152 psadbw, 0xff6, SSE|3dnowA, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1153 psadbw<sse2>, 0x660ff6, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1154 pshufw, 0xf70, SSE|3dnowA, Modrm|NoSuf, { Imm8|Imm8S, Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1155 rcpps<sse>, 0x0f53, <sse:cpu>, Modrm|<sse:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1156 rcpss<sse>, 0xf30f53, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1157 rsqrtps<sse>, 0x0f52, <sse:cpu>, Modrm|<sse:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1158 rsqrtss<sse>, 0xf30f52, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1159 sfence, 0xfaef8, SSE|3dnowA, NoSuf, {}
1160 shufps<sse>, 0x0fc6, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1161 sqrtps<sse>, 0x0f51, <sse:cpu>, Modrm|<sse:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1162 sqrtss<sse>, 0xf30f51, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1163 stmxcsr<sse>, 0x0fae/3, <sse:cpu>, Modrm|<sse:attr>|NoSuf, { Dword|Unspecified|BaseIndex }
1164 subps<sse>, 0x0f5c, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1165 subss<sse>, 0xf30f5c, <sse:cpu>, Modrm|<sse:scal>|<sse:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1166 ucomiss<sse>, 0x0f2e, <sse:cpu>, Modrm|<sse:scal>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1167 unpckhps<sse>, 0x0f15, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1168 unpcklps<sse>, 0x0f14, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1169 xorps<sse>, 0x0f57, <sse:cpu>, Modrm|<sse:attr>|<sse:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1170
1171 // SSE2 instructions.
1172
1173 addpd<sse2>, 0x660f58, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1174 addsd<sse2>, 0xf20f58, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1175 andnpd<sse2>, 0x660f55, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1176 andpd<sse2>, 0x660f54, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1177 cmp<frel>pd<sse2>, 0x660fc2/<frel:imm>, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|<frel:comm>|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM }
1178 cmp<frel>sd<sse2>, 0xf20fc2/<frel:imm>, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|<frel:comm>|NoSuf|ImmExt, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
1179 cmppd<sse2>, 0x660fc2, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1180 cmpsd<sse2>, 0xf20fc2, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Imm8, Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1181 comisd<sse2>, 0x660f2f, <sse2:cpu>, Modrm|<sse2:scal>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1182 cvtpi2pd, 0x660f2a, SSE2, Modrm|NoSuf, { RegMMX, RegXMM }
1183 cvtpi2pd, 0xf3e6, AVX, Modrm|Vex|Space0F|VexW0|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex, RegXMM }
1184 cvtpi2pd, 0x660f2a, SSE2, Modrm|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM }
1185 cvtsi2sd<sse2>, 0xf20f2a, <sse2:cpu>&No64, Modrm|IgnoreSize|<sse2:scal>|<sse2:vvvv>|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Reg32|Unspecified|BaseIndex, RegXMM }
1186 cvtsi2sd, 0xf22a, AVX&x64, Modrm|Vex=3|Space0F|VexVVVV|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|SSE2AVX|ATTSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1187 cvtsi2sd, 0xf22a, AVX&x64, Modrm|Vex=3|Space0F|VexVVVV|No_bSuf|No_wSuf|No_sSuf|SSE2AVX|IntelSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1188 cvtsi2sd, 0xf20f2a, SSE2&x64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|ATTSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1189 cvtsi2sd, 0xf20f2a, SSE2&x64, Modrm|No_bSuf|No_wSuf|No_sSuf|IntelSyntax, { Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, RegXMM }
1190 divpd<sse2>, 0x660f5e, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1191 divsd<sse2>, 0xf20f5e, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1192 maxpd<sse2>, 0x660f5f, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1193 maxsd<sse2>, 0xf20f5f, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1194 minpd<sse2>, 0x660f5d, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1195 minsd<sse2>, 0xf20f5d, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1196 movapd<sse2>, 0x660f28, <sse2:cpu>, D|Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1197 movhpd, 0x6616, AVX, Modrm|Vex|Space0F|VexVVVV|VexW0|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex, RegXMM }
1198 movhpd, 0x6617, AVX, Modrm|Vex|Space0F|VexW0|NoSuf|SSE2AVX, { RegXMM, Qword|Unspecified|BaseIndex }
1199 movhpd, 0x660f16, SSE2, D|Modrm|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM }
1200 movlpd, 0x6612, AVX, Modrm|Vex|Space0F|VexVVVV|VexW0|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex, RegXMM }
1201 movlpd, 0x6613, AVX, Modrm|Vex|Space0F|VexW0|NoSuf|SSE2AVX, { RegXMM, Qword|Unspecified|BaseIndex }
1202 movlpd, 0x660f12, SSE2, D|Modrm|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM }
1203 movmskpd<sse2>, 0x660f50, <sse2:cpu>, Modrm|<sse2:attr>|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|NoRex64, { RegXMM, Reg32|Reg64 }
1204 movntpd<sse2>, 0x660f2b, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM, Xmmword|Unspecified|BaseIndex }
1205 movsd, 0xf210, AVX, D|Modrm|VexLIG|Space0F|VexW0|NoSuf|SSE2AVX, { Qword|Unspecified|BaseIndex, RegXMM }
1206 movsd, 0xf210, AVX, D|Modrm|VexLIG|Space0F|VexVVVV|VexW0|NoSuf|SSE2AVX, { RegXMM, RegXMM }
1207 movsd, 0xf20f10, SSE2, D|Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1208 movupd<sse2>, 0x660f10, <sse2:cpu>, D|Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1209 mulpd<sse2>, 0x660f59, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1210 mulsd<sse2>, 0xf20f59, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1211 orpd<sse2>, 0x660f56, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1212 shufpd<sse2>, 0x660fc6, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1213 sqrtpd<sse2>, 0x660f51, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1214 sqrtsd<sse2>, 0xf20f51, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1215 subpd<sse2>, 0x660f5c, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1216 subsd<sse2>, 0xf20f5c, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1217 ucomisd<sse2>, 0x660f2e, <sse2:cpu>, Modrm|<sse2:scal>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1218 unpckhpd<sse2>, 0x660f15, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1219 unpcklpd<sse2>, 0x660f14, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1220 xorpd<sse2>, 0x660f57, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1221 cvtdq2pd<sse2>, 0xf30fe6, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1222 cvtpd2dq<sse2>, 0xf20fe6, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1223 cvtdq2ps<sse2>, 0x0f5b, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1224 cvtpd2pi, 0x660f2d, SSE2, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegMMX }
1225 cvtpd2ps<sse2>, 0x660f5a, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1226 cvtps2pd<sse2>, 0x0f5a, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1227 cvtps2dq<sse2>, 0x660f5b, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1228 cvtsd2si, 0xf22d, AVX, Modrm|VexLIG|Space0F|No_bSuf|No_wSuf|No_sSuf|SSE2AVX, { Qword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1229 cvtsd2si, 0xf20f2d, SSE2, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Qword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1230 cvtsd2ss<sse2>, 0xf20f5a, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1231 cvtss2sd<sse2>, 0xf30f5a, <sse2:cpu>, Modrm|<sse2:scal>|<sse2:vvvv>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1232
1233 cvttpd2pi, 0x660f2c, SSE2, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegMMX }
1234 cvttsd2si, 0xf22c, AVX, Modrm|VexLIG|Space0F|No_bSuf|No_wSuf|No_sSuf|SSE2AVX, { Qword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1235 cvttsd2si, 0xf20f2c, SSE2, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Qword|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1236 cvttpd2dq<sse2>, 0x660fe6, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1237 cvttps2dq<sse2>, 0xf30f5b, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1238 maskmovdqu<sse2>, 0x660ff7, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { RegXMM, RegXMM }
1239 movdqa<sse2>, 0x660f6f, <sse2:cpu>, D|Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1240 movdqu<sse2>, 0xf30f6f, <sse2:cpu>, D|Modrm|<sse2:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1241 movdq2q, 0xf20fd6, SSE2, Modrm|NoSuf, { RegXMM, RegMMX }
1242 movq2dq, 0xf30fd6, SSE2, Modrm|NoSuf, { RegMMX, RegXMM }
1243 pmuludq<sse2>, 0x660ff4, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|C|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1244 pmuludq, 0xff4, SSE2, Modrm|NoSuf, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1245 pshufd<sse2>, 0x660f70, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1246 pshufhw<sse2>, 0xf30f70, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1247 pshuflw<sse2>, 0xf20f70, <sse2:cpu>, Modrm|<sse2:attr>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1248 pslldq<sse2>, 0x660f73/7, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { Imm8, RegXMM }
1249 psrldq<sse2>, 0x660f73/3, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { Imm8, RegXMM }
1250 punpckhqdq<sse2>, 0x660f6d, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1251 punpcklqdq<sse2>, 0x660f6c, <sse2:cpu>, Modrm|<sse2:attr>|<sse2:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1252
1253 <frel>
1254
1255 // SSE3 instructions.
1256
1257 <sse3:cpu:attr:vvvv, $avx:AVX:Vex128|VexW0|SSE2AVX:VexVVVV, $sse:SSE3::>
1258
1259 addsubpd<sse3>, 0x660fd0, <sse3:cpu>, Modrm|<sse3:attr>|<sse3:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1260 addsubps<sse3>, 0xf20fd0, <sse3:cpu>, Modrm|<sse3:attr>|<sse3:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1261 haddpd<sse3>, 0x660f7c, <sse3:cpu>, Modrm|<sse3:attr>|<sse3:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1262 haddps<sse3>, 0xf20f7c, <sse3:cpu>, Modrm|<sse3:attr>|<sse3:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1263 hsubpd<sse3>, 0x660f7d, <sse3:cpu>, Modrm|<sse3:attr>|<sse3:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1264 hsubps<sse3>, 0xf20f7d, <sse3:cpu>, Modrm|<sse3:attr>|<sse3:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1265 lddqu<sse3>, 0xf20ff0, <sse3:cpu>, Modrm|<sse3:attr>|NoSuf, { Xmmword|Unspecified|BaseIndex, RegXMM }
1266 movddup<sse3>, 0xf20f12, <sse3:cpu>, Modrm|<sse3:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1267 movshdup<sse3>, 0xf30f16, <sse3:cpu>, Modrm|<sse3:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1268 movsldup<sse3>, 0xf30f12, <sse3:cpu>, Modrm|<sse3:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1269
1270 // FPU instructions also covered by SSE3 CPUID flag.
1271
1272 fisttp, 0xdf/1, FISTTP, Modrm|FloatMF|No_bSuf|No_wSuf|No_qSuf, { Word|Dword|Unspecified|BaseIndex }
1273 fisttp, 0xdd/1, FISTTP, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Qword|Unspecified|BaseIndex }
1274 fisttpll, 0xdd/1, FISTTP, Modrm|NoSuf|ATTSyntax, { Unspecified|BaseIndex }
1275
1276 // CMPXCHG16B instruction.
1277
1278 cmpxchg16b, 0xfc7/1, CX16, Modrm|NoSuf|Size64|LockPrefixOk, { Oword|Unspecified|BaseIndex }
1279
1280 // MONITOR instructions.
1281
1282 monitor, 0xf01c8, MONITOR, NoSuf, {}
1283 // monitor is very special. CX and DX are always 32 bits. The
1284 // address size override prefix can be used to overrride the AX size in
1285 // all modes.
1286 monitor, 0xf01c8, MONITOR, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword, RegC|Dword, RegD|Dword }
1287 // The 64-bit form exists only for compatibility with older gas.
1288 monitor, 0xf01c8, MONITOR&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword, RegC|Qword, RegD|Qword }
1289 mwait, 0xf01c9, MONITOR, NoSuf, {}
1290 // mwait is very special. AX and CX are always 32 bits.
1291 // The 64-bit form exists only for compatibility with older gas.
1292 mwait, 0xf01c9, MONITOR, CheckOperandSize|IgnoreSize|NoSuf|NoRex64, { Acc|Dword|Qword, RegC|Dword|Qword }
1293
1294 // VMX instructions.
1295
1296 vmcall, 0xf01c1, VMX, NoSuf, {}
1297 vmclear, 0x660fc7/6, VMX, Modrm|NoSuf, { Qword|Unspecified|BaseIndex }
1298 vmlaunch, 0xf01c2, VMX, NoSuf, {}
1299 vmresume, 0xf01c3, VMX, NoSuf, {}
1300 vmptrld, 0xfc7/6, VMX, Modrm|NoSuf, { Qword|Unspecified|BaseIndex }
1301 vmptrst, 0xfc7/7, VMX, Modrm|NoSuf, { Qword|Unspecified|BaseIndex }
1302 vmread, 0xf78, VMX&No64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Reg32, Reg32|Unspecified|BaseIndex }
1303 vmread, 0xf78, VMX&x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Reg64, Reg64|Qword|Unspecified|BaseIndex }
1304 vmwrite, 0xf79, VMX&No64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|No_qSuf, { Reg32|Unspecified|BaseIndex, Reg32 }
1305 vmwrite, 0xf79, VMX&x64, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf|NoRex64, { Reg64|Qword|Unspecified|BaseIndex, Reg64 }
1306 vmxoff, 0xf01c4, VMX, NoSuf, {}
1307 vmxon, 0xf30fc7/6, VMX, Modrm|NoSuf, { Qword|Unspecified|BaseIndex }
1308
1309 // VMFUNC instruction
1310
1311 vmfunc, 0xf01d4, VMFUNC, NoSuf, {}
1312
1313 // SMX instructions.
1314
1315 getsec, 0xf37, SMX, NoSuf, {}
1316
1317 // EPT instructions.
1318
1319 invept, 0x660f3880, EPT&No64, Modrm|IgnoreSize|NoSuf, { Oword|Unspecified|BaseIndex, Reg32 }
1320 invept, 0x660f3880, EPT&x64, Modrm|NoSuf|NoRex64, { Oword|Unspecified|BaseIndex, Reg64 }
1321 invvpid, 0x660f3881, EPT&No64, Modrm|IgnoreSize|NoSuf, { Oword|Unspecified|BaseIndex, Reg32 }
1322 invvpid, 0x660f3881, EPT&x64, Modrm|NoSuf|NoRex64, { Oword|Unspecified|BaseIndex, Reg64 }
1323
1324 // INVPCID instruction
1325
1326 invpcid, 0x660f3882, INVPCID&No64, Modrm|IgnoreSize|NoSuf, { Oword|Unspecified|BaseIndex, Reg32 }
1327 invpcid, 0x660f3882, INVPCID&x64, Modrm|NoSuf|NoRex64, { Oword|Unspecified|BaseIndex, Reg64 }
1328
1329 // SSSE3 instructions.
1330
1331 <ssse3:cpu:pfx:attr:vvvv:reg:mem, +
1332 $avx:AVX:66:Vex128|VexW0|SSE2AVX:VexVVVV:RegXMM:Xmmword, +
1333 $sse:SSSE3:66:::RegXMM:Xmmword, +
1334 $mmx:SSSE3::::RegMMX:Qword>
1335
1336 phaddw<ssse3>, 0x<ssse3:pfx>0f3801, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1337 phaddd<ssse3>, 0x<ssse3:pfx>0f3802, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1338 phaddsw<ssse3>, 0x<ssse3:pfx>0f3803, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1339 phsubw<ssse3>, 0x<ssse3:pfx>0f3805, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1340 phsubd<ssse3>, 0x<ssse3:pfx>0f3806, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1341 phsubsw<ssse3>, 0x<ssse3:pfx>0f3807, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1342 pmaddubsw<ssse3>, 0x<ssse3:pfx>0f3804, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1343 pmulhrsw<ssse3>, 0x<ssse3:pfx>0f380b, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1344 pshufb<ssse3>, 0x<ssse3:pfx>0f3800, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1345 psign<bw><ssse3>, 0x<ssse3:pfx>0f3808 | <bw:opc>, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1346 psignd<ssse3>, 0x<ssse3:pfx>0f380a, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1347 palignr<ssse3>, 0x<ssse3:pfx>0f3a0f, <ssse3:cpu>, Modrm|<ssse3:attr>|<ssse3:vvvv>|NoSuf, { Imm8, <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1348 pabs<bw><ssse3>, 0x<ssse3:pfx>0f381c | <bw:opc>, <ssse3:cpu>, Modrm|<ssse3:attr>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1349 pabsd<ssse3>, 0x<ssse3:pfx>0f381e, <ssse3:cpu>, Modrm|<ssse3:attr>|NoSuf, { <ssse3:reg>|<ssse3:mem>|Unspecified|BaseIndex, <ssse3:reg> }
1350
1351 // SSE4.1 instructions.
1352
1353 <sse41:cpu:attr:scal:vvvv, $avx:AVX:Vex128|VexW0|SSE2AVX:VexLIG|VexW0|SSE2AVX:VexVVVV, $sse:SSE4_1:::>
1354 <sd:ppfx:spfx:opc:vexw:elem, s::f3:0:VexW0:Dword, d:66:f2:1:VexW1:Qword>
1355
1356 blendp<sd><sse41>, 0x660f3a0c | <sd:opc>, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1357 blendvp<sd>, 0x664a | <sd:opc>, AVX, Modrm|Vex128|Space0F3A|VexVVVV|VexW0|NoSuf|SSE2AVX, { Acc|Xmmword, RegXMM|Unspecified|BaseIndex, RegXMM }
1358 blendvp<sd>, 0x664a | <sd:opc>, AVX, Modrm|Vex128|Space0F3A|VexVVVV|VexW0|NoSuf|Implicit1stXmm0|SSE2AVX, { RegXMM|Unspecified|BaseIndex, RegXMM }
1359 blendvp<sd>, 0x660f3814 | <sd:opc>, SSE4_1, Modrm|NoSuf, { Acc|Xmmword, RegXMM|Unspecified|BaseIndex, RegXMM }
1360 blendvp<sd>, 0x660f3814 | <sd:opc>, SSE4_1, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1361 dpp<sd><sse41>, 0x660f3a40 | <sd:opc>, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1362 extractps, 0x6617, AVX, Modrm|Vex|Space0F3A|VexWIG|NoSuf|SSE2AVX, { Imm8, RegXMM, Reg32|Dword|Unspecified|BaseIndex }
1363 extractps, 0x6617, AVX&x64, RegMem|Vex|Space0F3A|VexWIG|NoSuf|SSE2AVX, { Imm8, RegXMM, Reg64 }
1364 extractps, 0x660f3a17, SSE4_1, Modrm|IgnoreSize|NoSuf, { Imm8, RegXMM, Reg32|Dword|Unspecified|BaseIndex }
1365 extractps, 0x660f3a17, SSE4_1&x64, RegMem|NoSuf|NoRex64, { Imm8, RegXMM, Reg64 }
1366 insertps<sse41>, 0x660f3a21, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { Imm8, Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1367 movntdqa<sse41>, 0x660f382a, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Xmmword|Unspecified|BaseIndex, RegXMM }
1368 mpsadbw<sse41>, 0x660f3a42, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1369 packusdw<sse41>, 0x660f382b, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1370 pblendvb, 0x664c, AVX, Modrm|Vex128|Space0F3A|VexVVVV|VexW0|NoSuf|SSE2AVX, { Acc|Xmmword, RegXMM|Unspecified|BaseIndex, RegXMM }
1371 pblendvb, 0x664c, AVX, Modrm|Vex128|Space0F3A|VexVVVV|VexW0|NoSuf|Implicit1stXmm0|SSE2AVX, { RegXMM|Unspecified|BaseIndex, RegXMM }
1372 pblendvb, 0x660f3810, SSE4_1, Modrm|NoSuf, { Acc|Xmmword, RegXMM|Unspecified|BaseIndex, RegXMM }
1373 pblendvb, 0x660f3810, SSE4_1, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1374 pblendw<sse41>, 0x660f3a0e, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1375 pcmpeqq<sse41>, 0x660f3829, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf|Optimize, { RegXMM|Unspecified|BaseIndex, RegXMM }
1376 pextr<bw><sse41>, 0x660f3a14 | <bw:opc>, <sse41:cpu>, RegMem|<sse41:attr>|NoSuf|IgnoreSize|NoRex64, { Imm8, RegXMM, Reg32|Reg64 }
1377 pextr<bw><sse41>, 0x660f3a14 | <bw:opc>, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Imm8, RegXMM, <bw:elem>|Unspecified|BaseIndex }
1378 pextrd<sse41>, 0x660f3a16, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf|IgnoreSize, { Imm8, RegXMM, Reg32|Unspecified|BaseIndex }
1379 pextrq, 0x6616, AVX&x64, Modrm|Vex|Space0F3A|VexW1|NoSuf|SSE2AVX, { Imm8, RegXMM, Reg64|Unspecified|BaseIndex }
1380 pextrq, 0x660f3a16, SSE4_1&x64, Modrm|Size64|NoSuf, { Imm8, RegXMM, Reg64|Unspecified|BaseIndex }
1381 phminposuw<sse41>, 0x660f3841, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1382 pinsrb<sse41>, 0x660f3a20, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf|IgnoreSize|NoRex64, { Imm8, Reg32|Reg64, RegXMM }
1383 pinsrb<sse41>, 0x660f3a20, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { Imm8, Byte|Unspecified|BaseIndex, RegXMM }
1384 pinsrd<sse41>, 0x660f3a22, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf|IgnoreSize, { Imm8, Reg32|Unspecified|BaseIndex, RegXMM }
1385 pinsrq, 0x6622, AVX&x64, Modrm|Vex|Space0F3A|VexVVVV|VexW1|NoSuf|SSE2AVX, { Imm8, Reg64|Unspecified|BaseIndex, RegXMM }
1386 pinsrq, 0x660f3a22, SSE4_1&x64, Modrm|Size64|NoSuf, { Imm8, Reg64|Unspecified|BaseIndex, RegXMM }
1387 pmaxsb<sse41>, 0x660f383c, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1388 pmaxsd<sse41>, 0x660f383d, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1389 pmaxud<sse41>, 0x660f383f, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1390 pmaxuw<sse41>, 0x660f383e, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1391 pminsb<sse41>, 0x660f3838, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1392 pminsd<sse41>, 0x660f3839, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1393 pminud<sse41>, 0x660f383b, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1394 pminuw<sse41>, 0x660f383a, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1395 pmovsxbw<sse41>, 0x660f3820, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1396 pmovsxbd<sse41>, 0x660f3821, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1397 pmovsxbq<sse41>, 0x660f3822, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Word|Unspecified|BaseIndex|RegXMM, RegXMM }
1398 pmovsxwd<sse41>, 0x660f3823, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1399 pmovsxwq<sse41>, 0x660f3824, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1400 pmovsxdq<sse41>, 0x660f3825, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1401 pmovzxbw<sse41>, 0x660f3830, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1402 pmovzxbd<sse41>, 0x660f3831, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1403 pmovzxbq<sse41>, 0x660f3832, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Word|Unspecified|BaseIndex|RegXMM, RegXMM }
1404 pmovzxwd<sse41>, 0x660f3833, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1405 pmovzxwq<sse41>, 0x660f3834, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM }
1406 pmovzxdq<sse41>, 0x660f3835, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1407 pmuldq<sse41>, 0x660f3828, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1408 pmulld<sse41>, 0x660f3840, <sse41:cpu>, Modrm|<sse41:attr>|<sse41:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1409 ptest<sse41>, 0x660f3817, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1410 roundp<sd><sse41>, 0x660f3a08 | <sd:opc>, <sse41:cpu>, Modrm|<sse41:attr>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1411 rounds<sd><sse41>, 0x660f3a0a | <sd:opc>, <sse41:cpu>, Modrm|<sse41:scal>|<sse41:vvvv>|NoSuf, { Imm8, <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM }
1412
1413 // SSE4.2 instructions.
1414
1415 <sse42:cpu:attr:vvvv, $avx:AVX:Vex128|VexW0|SSE2AVX:VexVVVV, $sse:SSE4_2::>
1416
1417 pcmpgtq<sse42>, 0x660f3837, <sse42:cpu>, Modrm|<sse42:attr>|<sse42:vvvv>|NoSuf|Optimize, { RegXMM|Unspecified|BaseIndex, RegXMM }
1418 pcmpestri<sse42>, 0x660f3a61, <sse42:cpu>&No64, Modrm|<sse42:attr>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1419 pcmpestri, 0x6661, AVX&x64, Modrm|Vex|Space0F3A|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|SSE2AVX, { Imm8, Xmmword|Unspecified|BaseIndex|RegXMM, RegXMM }
1420 pcmpestri, 0x660f3a61, SSE4_2&x64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Imm8, Xmmword|Unspecified|BaseIndex|RegXMM, RegXMM }
1421 pcmpestrm<sse42>, 0x660f3a60, <sse42:cpu>&No64, Modrm|<sse42:attr>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1422 pcmpestrm, 0x6660, AVX&x64, Modrm|Vex|Space0F3A|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|SSE2AVX, { Imm8, Xmmword|Unspecified|BaseIndex|RegXMM, RegXMM }
1423 pcmpestrm, 0x660f3a60, SSE4_2&x64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Imm8, Xmmword|Unspecified|BaseIndex|RegXMM, RegXMM }
1424 pcmpistri<sse42>, 0x660f3a63, <sse42:cpu>, Modrm|<sse42:attr>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1425 pcmpistrm<sse42>, 0x660f3a62, <sse42:cpu>, Modrm|<sse42:attr>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1426 crc32, 0xf20f38f0, SSE4_2, W|Modrm|No_sSuf|No_qSuf, { Reg8|Reg16|Reg32|Unspecified|BaseIndex, Reg32 }
1427 crc32, 0xf20f38f0, SSE4_2&x64, W|Modrm|No_wSuf|No_lSuf|No_sSuf, { Reg8|Reg64|Unspecified|BaseIndex, Reg64 }
1428
1429 // xsave/xrstor New Instructions.
1430
1431 xsave, 0xfae/4, Xsave, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Unspecified|BaseIndex }
1432 xsave64, 0xfae/4, Xsave&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
1433 xrstor, 0xfae/5, Xsave, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Unspecified|BaseIndex }
1434 xrstor64, 0xfae/5, Xsave&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
1435 xgetbv, 0xf01d0, Xsave, NoSuf, {}
1436 xsetbv, 0xf01d1, Xsave, NoSuf, {}
1437
1438 // xsaveopt
1439 xsaveopt, 0xfae/6, Xsaveopt, Modrm|No_bSuf|No_wSuf|No_lSuf|No_sSuf, { Unspecified|BaseIndex }
1440 xsaveopt64, 0xfae/6, Xsaveopt&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
1441
1442 // AES instructions.
1443
1444 <aes:cpu:attr:vvvv, $avx:AVX&:Vex128|VexW0|SSE2AVX:VexVVVV, $sse:::>
1445
1446 aesdec<aes>, 0x660f38de, <aes:cpu>AES, Modrm|<aes:attr>|<aes:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1447 aesdeclast<aes>, 0x660f38df, <aes:cpu>AES, Modrm|<aes:attr>|<aes:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1448 aesenc<aes>, 0x660f38dc, <aes:cpu>AES, Modrm|<aes:attr>|<aes:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1449 aesenclast<aes>, 0x660f38dd, <aes:cpu>AES, Modrm|<aes:attr>|<aes:vvvv>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1450 aesimc<aes>, 0x660f38db, <aes:cpu>AES, Modrm|<aes:attr>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1451 aeskeygenassist<aes>, 0x660f3adf, <aes:cpu>AES, Modrm|<aes:attr>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1452
1453 // PCLMULQDQ
1454
1455 <pclmul:cpu:attr, $avx:AVX&:Vex128|VexW0|SSE2AVX|VexVVVV, $sse::>
1456
1457 pclmulqdq<pclmul>, 0x660f3a44, <pclmul:cpu>PCLMULQDQ, Modrm|<pclmul:attr>|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1458 pclmullqlqdq<pclmul>, 0x660f3a44/0x00, <pclmul:cpu>PCLMULQDQ, Modrm|<pclmul:attr>|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM }
1459 pclmulhqlqdq<pclmul>, 0x660f3a44/0x01, <pclmul:cpu>PCLMULQDQ, Modrm|<pclmul:attr>|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM }
1460 pclmullqhqdq<pclmul>, 0x660f3a44/0x10, <pclmul:cpu>PCLMULQDQ, Modrm|<pclmul:attr>|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM }
1461 pclmulhqhqdq<pclmul>, 0x660f3a44/0x11, <pclmul:cpu>PCLMULQDQ, Modrm|<pclmul:attr>|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM }
1462
1463 // GFNI
1464
1465 <gfni:cpu:w0:w1, $avx:AVX&:Vex128|VexW0|SSE2AVX|VexVVVV:Vex128|VexW1|SSE2AVX|VexVVVV, $sse:::>
1466
1467 gf2p8affineqb<gfni>, 0x660f3ace, <gfni:cpu>GFNI, Modrm|<gfni:w1>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1468 gf2p8affineinvqb<gfni>, 0x660f3acf, <gfni:cpu>GFNI, Modrm|<gfni:w1>|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM }
1469 gf2p8mulb<gfni>, 0x660f38cf, <gfni:cpu>GFNI, Modrm|<gfni:w0>|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
1470
1471 // AVX instructions.
1472
1473 <frel:imm:comm, eq:00:C, eq_oq:00:C, lt:01:, lt_os:01:, le:02:, le_os:02:, +
1474 unord:03:C, unord_q:03:C, neq:04:C, neq_uq:04:C, nlt:05:, nlt_us:05:, +
1475 nle:06:, nle_us:06:, ord:07:C, ord_q:07:C, eq_uq:08:C, +
1476 nge:09:, nge_us:09:, ngt:0a:, ngt_us:0a:, false:0b:C, false_oq:0b:C, +
1477 neq_oq:0c:C, ge:0d:, ge_os:0d:, gt:0e:, gt_os:0e:, true:0f:C, +
1478 true_uq:0f:C, eq_os:10:C, lt_oq:11:, le_oq:12:, +
1479 unord_s:13:C, neq_us:14:C, nlt_uq:15:, nle_uq:16:, ord_s:17:C, eq_us:18:C, +
1480 nge_uq:19:, ngt_uq:1a:, false_os:1b:C, neq_os:1c:C, ge_oq:1d:, gt_oq:1e:, +
1481 true_us:1f:C>
1482
1483 // <Vxy> is used for VEX instructions with x/y suffixes.
1484 <Vxy:vex:syntax:src, +
1485 $i:Vex:IntelSyntax:RegXMM|RegYMM|Unspecified|BaseIndex, +
1486 $a:Vex:ATTSyntax:RegXMM|RegYMM, +
1487 x:Vex128:ATTSyntax:RegXMM|Unspecified|BaseIndex, +
1488 y:Vex256:ATTSyntax:RegYMM|Unspecified|BaseIndex>
1489
1490 vaddp<sd>, 0x<sd:ppfx>58, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1491 vadds<sd>, 0x<sd:spfx>58, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1492 vaddsubpd, 0x66d0, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1493 vaddsubps, 0xf2d0, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1494 vandnp<sd>, 0x<sd:ppfx>55, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1495 vandp<sd>, 0x<sd:ppfx>54, AVX, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1496 vblendp<sd>, 0x660c | <sd:opc>, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1497 vblendvp<sd>, 0x664a | <sd:opc>, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1498 vbroadcastf128, 0x661a, AVX, Modrm|Vex=2|Space0F38|VexW=1|NoSuf, { Xmmword|Unspecified|BaseIndex, RegYMM }
1499 vbroadcastsd, 0x6619, AVX, Modrm|Vex256|Space0F38|VexW0|NoSuf, { Qword|Unspecified|BaseIndex, RegYMM }
1500 vbroadcastss, 0x6618, AVX, Modrm|Vex128|Space0F38|VexW0|NoSuf, { Dword|Unspecified|BaseIndex, RegXMM|RegYMM }
1501 vcmp<frel>p<sd>, 0x<sd:ppfx>c2/0x<frel:imm>, AVX, Modrm|<frel:comm>|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
1502 vcmp<frel>s<sd>, 0x<sd:spfx>c2/0x<frel:imm>, AVX, Modrm|<frel:comm>|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf|ImmExt, { RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
1503 vcmpp<sd>, 0x<sd:ppfx>c2, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1504 vcmps<sd>, 0x<sd:spfx>c2, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { Imm8, <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1505 vcomis<sd>, 0x<sd:ppfx>2f, AVX, Modrm|VexLIG|Space0F|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM }
1506 vcvtdq2pd, 0xf3e6, AVX, Modrm|Vex128|Space0F|VexWIG|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
1507 vcvtdq2pd, 0xf3e6, AVX, Modrm|Vex256|Space0F|VexWIG|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
1508 vcvtdq2ps, 0x5b, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1509 vcvtpd2dq<Vxy>, 0xf2e6, AVX, Modrm|<Vxy:vex>|Space0F|VexWIG|NoSuf|<Vxy:syntax>, { <Vxy:src>, RegXMM }
1510 vcvtpd2ps<Vxy>, 0x665a, AVX, Modrm|<Vxy:vex>|Space0F|VexWIG|NoSuf|<Vxy:syntax>, { <Vxy:src>, RegXMM }
1511 vcvtps2dq, 0x665b, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1512 vcvtps2pd, 0x5a, AVX, Modrm|Vex128|Space0F|VexWIG|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
1513 vcvtps2pd, 0x5a, AVX, Modrm|Vex256|Space0F|VexWIG|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
1514 vcvts<sd>2si, 0x<sd:spfx>2d, AVX, Modrm|VexLIG|Space0F|No_bSuf|No_wSuf|No_sSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1515 vcvtsd2ss, 0xf25a, AVX, Modrm|Vex=3|Space0F|VexVVVV|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1516 vcvtsi2s<sd>, 0x<sd:spfx>2a, AVX, Modrm|VexLIG|Space0F|VexVVVV|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|ATTSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
1517 vcvtsi2s<sd>, 0x<sd:spfx>2a, AVX, Modrm|VexLIG|Space0F|VexVVVV|No_bSuf|No_wSuf|No_sSuf|IntelSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
1518 vcvtss2sd, 0xf35a, AVX, Modrm|Vex=3|Space0F|VexVVVV|VexWIG|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1519 vcvttpd2dq<Vxy>, 0x66e6, AVX, Modrm|<Vxy:vex>|Space0F|VexWIG|NoSuf|<Vxy:syntax>, { <Vxy:src>, RegXMM }
1520 vcvttps2dq, 0xf35b, AVX, Modrm|Vex|Space0F|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1521 vcvtts<sd>2si, 0x<sd:spfx>2c, AVX, Modrm|VexLIG|Space0F|No_bSuf|No_wSuf|No_sSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, Reg32|Reg64 }
1522 vdivp<sd>, 0x<sd:ppfx>5e, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1523 vdivs<sd>, 0x<sd:spfx>5e, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1524 vdppd, 0x6641, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1525 vdpps, 0x6640, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1526 vextractf128, 0x6619, AVX, Modrm|Vex=2|Space0F3A|VexW=1|NoSuf, { Imm8, RegYMM, Unspecified|BaseIndex|RegXMM }
1527 vextractps, 0x6617, AVX|AVX512F, Modrm|Vex128|EVex128|Space0F3A|VexWIG|Disp8MemShift=2|NoSuf, { Imm8, RegXMM, Reg32|Dword|Unspecified|BaseIndex }
1528 vextractps, 0x6617, x64&(AVX|AVX512F), RegMem|Vex128|EVex128|Space0F3A|VexWIG|NoSuf, { Imm8, RegXMM, Reg64 }
1529 vhaddpd, 0x667c, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1530 vhaddps, 0xf27c, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1531 vhsubpd, 0x667d, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1532 vhsubps, 0xf27d, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1533 vinsertf128, 0x6618, AVX, Modrm|Vex256|Space0F3A|VexVVVV|VexW0|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegYMM, RegYMM }
1534 vinsertps, 0x6621, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf, { Imm8, Dword|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1535 vlddqu, 0xf2f0, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM }
1536 vldmxcsr, 0xae/2, AVX, Modrm|Vex128|Space0F|VexWIG|NoSuf, { Dword|Unspecified|BaseIndex }
1537 vmaskmovdqu, 0x66f7, AVX, Modrm|Vex|Space0F|VexWIG|NoSuf, { RegXMM, RegXMM }
1538 vmaskmovp<sd>, 0x662e | <sd:opc>, AVX, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM, RegXMM|RegYMM, Xmmword|Ymmword|Unspecified|BaseIndex }
1539 vmaskmovp<sd>, 0x662c | <sd:opc>, AVX, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
1540 vmaxp<sd>, 0x<sd:ppfx>5f, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1541 vmaxs<sd>, 0x<sd:spfx>5f, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1542 vminp<sd>, 0x<sd:ppfx>5d, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1543 vmins<sd>, 0x<sd:spfx>5d, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1544 vmovap<sd>, 0x<sd:ppfx>28, AVX, D|Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1545 // vmovd really shouldn't allow for 64bit operand (vmovq is the right
1546 // mnemonic for copying between Reg64/Mem64 and RegXMM, as is mandated
1547 // by Intel AVX spec). To avoid extra template in gcc x86 backend and
1548 // support assembler for AMD64, we accept 64bit operand on vmovd so
1549 // that we can use one template for both SSE and AVX instructions.
1550 vmovd, 0x666e, AVX|AVX512F, D|Modrm|Vex128|EVex128|Space0F|Disp8MemShift=2|NoSuf, { Reg32|Unspecified|BaseIndex, RegXMM }
1551 vmovd, 0x667e, AVX&x64, D|RegMem|Vex=1|Space0F|VexW=2|NoSuf|Size64, { RegXMM, Reg64 }
1552 vmovddup, 0xf212, AVX, Modrm|Vex|Space0F|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1553 vmovddup, 0xf212, AVX, Modrm|Vex=2|Space0F|VexWIG|NoSuf, { Unspecified|BaseIndex|RegYMM, RegYMM }
1554 vmovdqa, 0x666f, AVX, D|Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1555 vmovdqu, 0xf36f, AVX, D|Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1556 vmovhlps, 0x12, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|NoSuf, { RegXMM, RegXMM, RegXMM }
1557 vmovhp<sd>, 0x<sd:ppfx>16, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM, RegXMM }
1558 vmovhp<sd>, 0x<sd:ppfx>17, AVX, Modrm|Vex|Space0F|VexWIG|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex }
1559 vmovlhps, 0x16, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|NoSuf, { RegXMM, RegXMM, RegXMM }
1560 vmovlp<sd>, 0x<sd:ppfx>12, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM, RegXMM }
1561 vmovlp<sd>, 0x<sd:ppfx>13, AVX, Modrm|Vex|Space0F|VexWIG|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex }
1562 vmovmskp<sd>, 0x<sd:ppfx>50, AVX, Modrm|Vex|Space0F|VexWIG|No_bSuf|No_wSuf|No_sSuf, { RegXMM|RegYMM, Reg32|Reg64 }
1563 vmovntdq, 0x66e7, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { RegXMM|RegYMM, Xmmword|Ymmword|Unspecified|BaseIndex }
1564 vmovntdqa, 0x662a, AVX|AVX2, Modrm|Vex|Space0F38|VexWIG|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM }
1565 vmovntp<sd>, 0x<sd:ppfx>2b, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { RegXMM|RegYMM, Xmmword|Ymmword|Unspecified|BaseIndex }
1566 vmovq, 0xf37e, AVX, Load|Modrm|Vex=1|Space0F|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1567 vmovq, 0x66d6, AVX, Modrm|Vex=1|Space0F|VexWIG|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex|RegXMM }
1568 vmovq, 0x666e, x64&(AVX|AVX512F), D|Modrm|Vex128|EVex128|Space0F|VexW1|Disp8MemShift=3|NoSuf, { Reg64|Unspecified|BaseIndex, RegXMM }
1569 vmovs<sd>, 0x<sd:spfx>10, AVX, D|Modrm|VexLIG|Space0F|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex, RegXMM }
1570 vmovs<sd>, 0x<sd:spfx>10, AVX, D|Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { RegXMM, RegXMM, RegXMM }
1571 vmovshdup, 0xf316, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1572 vmovsldup, 0xf312, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1573 vmovup<sd>, 0x<sd:ppfx>10, AVX, D|Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1574 vmpsadbw, 0x6642, AVX|AVX2, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1575 vmulp<sd>, 0x<sd:ppfx>59, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1576 vmuls<sd>, 0x<sd:spfx>59, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1577 vorp<sd>, 0x<sd:ppfx>56, AVX, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1578 vpabs<bw>, 0x661c | <bw:opc>, AVX|AVX2, Modrm|Vex|Space0F38|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1579 vpabsd, 0x661e, AVX|AVX2, Modrm|Vex|Space0F38|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1580 vpackssdw, 0x666b, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1581 vpacksswb, 0x6663, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1582 vpackusdw, 0x662b, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1583 vpackuswb, 0x6667, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1584 vpadds<bw>, 0x66ec | <bw:opc>, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1585 vpadd<bw>, 0x66fc | <bw:opc>, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1586 vpaddd, 0x66fe, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1587 vpaddq, 0x66d4, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1588 vpaddus<bw>, 0x66dc | <bw:opc>, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1589 vpalignr, 0x660f, AVX|AVX2, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1590 vpand, 0x66db, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1591 vpandn, 0x66df, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1592 vpavg<bw>, 0x66e0 | (3 * <bw:opc>), AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1593 vpblendvb, 0x664c, AVX|AVX2, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { RegXMM|RegYMM, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1594 vpblendw, 0x660e, AVX|AVX2, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1595 vpcmpeq<bw>, 0x6674 | <bw:opc>, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1596 vpcmpeqd, 0x6676, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1597 vpcmpeqq, 0x6629, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1598 vpcmpestri, 0x6661, AVX&No64, Modrm|Vex|Space0F3A|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegXMM }
1599 vpcmpestri, 0x6661, AVX&x64, Modrm|Vex|Space0F3A|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Imm8, Xmmword|Unspecified|BaseIndex|RegXMM, RegXMM }
1600 vpcmpestrm, 0x6660, AVX&No64, Modrm|Vex|Space0F3A|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegXMM }
1601 vpcmpestrm, 0x6660, AVX&x64, Modrm|Vex|Space0F3A|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Imm8, Xmmword|Unspecified|BaseIndex|RegXMM, RegXMM }
1602 vpcmpgt<bw>, 0x6664 | <bw:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1603 vpcmpgtd, 0x6666, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1604 vpcmpgtq, 0x6637, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1605 vpcmpistri, 0x6663, AVX, Modrm|Vex|Space0F3A|VexWIG|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegXMM }
1606 vpcmpistrm, 0x6662, AVX, Modrm|Vex|Space0F3A|VexWIG|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegXMM }
1607 vperm2f128, 0x6606, AVX, Modrm|Vex256|Space0F3A|VexVVVV|VexW0|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegYMM, RegYMM, RegYMM }
1608 vpermilps, 0x660c, AVX|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1609 vpermilps, 0x6604, AVX|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F3A|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
1610 vpermilpd, 0x660d, AVX, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1611 vpermilpd, 0x6605, AVX, Modrm|Vex|Space0F3A|VexW0|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1612 vpextr<dq>, 0x6616, AVX&<dq:cpu64>, Modrm|Vex|Space0F3A|<dq:vexw64>|NoSuf, { Imm8, RegXMM, <dq:gpr>|Unspecified|BaseIndex }
1613 vpextrw, 0x66c5, AVX, Load|Modrm|Vex|Space0F|VexWIG|No_bSuf|No_wSuf|No_sSuf, { Imm8, RegXMM, Reg32|Reg64 }
1614 vpextr<bw>, 0x6614 | <bw:opc>, AVX, RegMem|Vex|Space0F3A|VexWIG|NoSuf, { Imm8, RegXMM, Reg32|Reg64 }
1615 vpextr<bw>, 0x6614 | <bw:opc>, AVX, Modrm|Vex|Space0F3A|VexWIG|NoSuf, { Imm8, RegXMM, <bw:elem>|Unspecified|BaseIndex }
1616 vphaddd, 0x6602, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1617 vphaddsw, 0x6603, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1618 vphaddw, 0x6601, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1619 vphminposuw, 0x6641, AVX, Modrm|Vex|Space0F38|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM }
1620 vphsubd, 0x6606, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1621 vphsubsw, 0x6607, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1622 vphsubw, 0x6605, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1623 vpinsrb, 0x6620, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf, { Imm8, Reg32|Reg64, RegXMM, RegXMM }
1624 vpinsrb, 0x6620, AVX, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf, { Imm8, Byte|Unspecified|BaseIndex, RegXMM, RegXMM }
1625 vpinsr<dq>, 0x6622, AVX&<dq:cpu64>, Modrm|Vex|Space0F3A|VexVVVV|<dq:vexw64>|NoSuf, { Imm8, <dq:gpr>|Unspecified|BaseIndex, RegXMM, RegXMM }
1626 vpinsrw, 0x66c4, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|No_bSuf|No_wSuf|No_sSuf, { Imm8, Reg32|Reg64, RegXMM, RegXMM }
1627 vpinsrw, 0x66c4, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|NoSuf, { Imm8, Word|Unspecified|BaseIndex, RegXMM, RegXMM }
1628 vpmaddubsw, 0x6604, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1629 vpmaddwd, 0x66f5, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1630 vpmaxsb, 0x663c, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1631 vpmaxsd, 0x663d, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1632 vpmaxsw, 0x66ee, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1633 vpmaxub, 0x66de, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1634 vpmaxud, 0x663f, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1635 vpmaxuw, 0x663e, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1636 vpminsb, 0x6638, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1637 vpminsd, 0x6639, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1638 vpminsw, 0x66ea, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1639 vpminub, 0x66da, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1640 vpminud, 0x663b, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1641 vpminuw, 0x663a, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1642 vpmovmskb, 0x66d7, AVX|AVX2, Modrm|Vex|Space0F|VexWIG|No_bSuf|No_wSuf|No_sSuf, { RegXMM|RegYMM, Reg32|Reg64 }
1643 vpmovsxbd, 0x6621, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM }
1644 vpmovsxbq, 0x6622, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=1|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegXMM }
1645 vpmovsxbw, 0x6620, AVX, Modrm|Vex|Space0F38|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1646 vpmovsxdq, 0x6625, AVX, Modrm|Vex|Space0F38|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1647 vpmovsxwd, 0x6623, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
1648 vpmovsxwq, 0x6624, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM }
1649 vpmovzxbd, 0x6631, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM }
1650 vpmovzxbq, 0x6632, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=1|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegXMM }
1651 vpmovzxbw, 0x6630, AVX, Modrm|Vex|Space0F38|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1652 vpmovzxdq, 0x6635, AVX, Modrm|Vex|Space0F38|VexWIG|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1653 vpmovzxwd, 0x6633, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
1654 vpmovzxwq, 0x6634, AVX|AVX512VL, Modrm|Vex128|EVex128|Masking|Space0F38|VexWIG|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM }
1655 vpmuldq, 0x6628, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1656 vpmulhrsw, 0x660b, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1657 vpmulhuw, 0x66e4, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1658 vpmulhw, 0x66e5, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1659 vpmulld, 0x6640, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1660 vpmullw, 0x66d5, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1661 vpmuludq, 0x66f4, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1662 vpor, 0x66eb, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1663 vpsadbw, 0x66f6, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|C|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1664 vpshufb, 0x6600, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1665 vpshufd, 0x6670, AVX|AVX2, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1666 vpshufhw, 0xf370, AVX|AVX2, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1667 vpshuflw, 0xf270, AVX|AVX2, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1668 vpsign<bw>, 0x6608 | <bw:opc>, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1669 vpsignd, 0x660a, AVX|AVX2, Modrm|Vex|Space0F38|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1670 vpsll<dq>, 0x6672 | <dq:opc>/6, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1671 vpsll<dq>, 0x66f2 | <dq:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM, RegXMM|RegYMM }
1672 vpslldq, 0x6673/7, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1673 vpsllw, 0x6671/6, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1674 vpsllw, 0x66f1, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM, RegXMM|RegYMM }
1675 vpsrad, 0x6672/4, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1676 vpsrad, 0x66e2, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM, RegXMM|RegYMM }
1677 vpsraw, 0x6671/4, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1678 vpsraw, 0x66e1, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM, RegXMM|RegYMM }
1679 vpsrl<dq>, 0x6672 | <dq:opc>/2, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1680 vpsrl<dq>, 0x66d2 | <dq:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM, RegXMM|RegYMM }
1681 vpsrldq, 0x6673/3, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1682 vpsrlw, 0x6671/2, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, RegXMM|RegYMM }
1683 vpsrlw, 0x66d1, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM, RegXMM|RegYMM }
1684 vpsub<bw>, 0x66f8 | <bw:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1685 vpsub<dq>, 0x66fa | <dq:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1686 vpsubs<bw>, 0x66e8 | <bw:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1687 vpsubus<bw>, 0x66d8 | <bw:opc>, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1688 vptest, 0x6617, AVX, Modrm|Vex|Space0F38|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1689 vpunpckhbw, 0x6668, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1690 vpunpckhdq, 0x666a, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1691 vpunpckhqdq, 0x666d, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1692 vpunpckhwd, 0x6669, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1693 vpunpcklbw, 0x6660, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1694 vpunpckldq, 0x6662, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1695 vpunpcklqdq, 0x666c, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1696 vpunpcklwd, 0x6661, AVX|AVX2, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1697 vpxor, 0x66ef, AVX|AVX2, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1698 vrcpps, 0x53, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1699 vrcpss, 0xf353, AVX, Modrm|Vex=3|Space0F|VexVVVV|VexWIG|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1700 vroundp<sd>, 0x6608 | <sd:opc>, AVX, Modrm|Vex|Space0F3A|VexWIG|CheckOperandSize|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1701 vrounds<sd>, 0x660a | <sd:opc>, AVX, Modrm|VexLIG|Space0F3A|VexVVVV|VexWIG|NoSuf, { Imm8, <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1702 vrsqrtps, 0x52, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1703 vrsqrtss, 0xf352, AVX, Modrm|Vex=3|Space0F|VexVVVV|VexWIG|NoSuf, { Dword|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1704 vshufp<sd>, 0x<sd:ppfx>c6, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1705 vsqrtp<sd>, 0x<sd:ppfx>51, AVX, Modrm|Vex|Space0F|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1706 vsqrts<sd>, 0x<sd:spfx>51, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1707 vstmxcsr, 0xae/3, AVX, Modrm|Vex128|Space0F|VexWIG|NoSuf, { Dword|Unspecified|BaseIndex }
1708 vsubp<sd>, 0x<sd:ppfx>5c, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1709 vsubs<sd>, 0x<sd:spfx>5c, AVX, Modrm|VexLIG|Space0F|VexVVVV|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1710 vtestp<sd>, 0x660e | <sd:opc>, AVX, Modrm|Vex|Space0F38|VexW0|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1711 vucomis<sd>, 0x<sd:ppfx>2e, AVX, Modrm|VexLIG|Space0F|VexWIG|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM }
1712 vunpckhp<sd>, 0x<sd:ppfx>15, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1713 vunpcklp<sd>, 0x<sd:ppfx>14, AVX, Modrm|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1714 vxorp<sd>, 0x<sd:ppfx>57, AVX, Modrm|C|Vex|Space0F|VexVVVV|VexWIG|CheckOperandSize|NoSuf|Optimize, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1715 vzeroall, 0x77, AVX, Vex=2|Space0F|VexWIG|NoSuf, {}
1716 vzeroupper, 0x77, AVX, Vex|Space0F|VexWIG|NoSuf, {}
1717
1718
1719 // 256bit integer AVX2 instructions.
1720
1721 vpmovsxbd, 0x6621, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegYMM }
1722 vpmovsxbq, 0x6622, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
1723 vpmovsxbw, 0x6620, AVX2, Modrm|Vex=2|Space0F38|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegYMM }
1724 vpmovsxdq, 0x6625, AVX2, Modrm|Vex=2|Space0F38|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegYMM }
1725 vpmovsxwd, 0x6623, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
1726 vpmovsxwq, 0x6624, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegYMM }
1727 vpmovzxbd, 0x6631, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegYMM }
1728 vpmovzxbq, 0x6632, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
1729 vpmovzxbw, 0x6630, AVX2, Modrm|Vex=2|Space0F38|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegYMM }
1730 vpmovzxdq, 0x6635, AVX2, Modrm|Vex=2|Space0F38|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegYMM }
1731 vpmovzxwd, 0x6633, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
1732 vpmovzxwq, 0x6634, AVX2|AVX512VL, Modrm|Vex256|EVex256|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegYMM }
1733
1734 // New AVX2 instructions.
1735
1736 vbroadcasti128, 0x665A, AVX2, Modrm|Vex=2|Space0F38|VexW=1|NoSuf, { Xmmword|Unspecified|BaseIndex, RegYMM }
1737 vbroadcastsd, 0x6619, AVX2, Modrm|Vex=2|Space0F38|VexW=1|NoSuf, { RegXMM, RegYMM }
1738 vbroadcastss, 0x6618, AVX2|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
1739 vpblendd, 0x6602, AVX2, Modrm|Vex|Space0F3A|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1740 vpbroadcast<bw>, 0x6678 | <bw:opc>, AVX2, Modrm|Vex|Space0F38|VexW0|NoSuf, { <bw:elem>|Unspecified|BaseIndex|RegXMM, RegXMM|RegYMM }
1741 vpbroadcastd, 0x6658, AVX2|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F38|VexW0|Disp8MemShift|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
1742 vpbroadcastq, 0x6659, AVX2, Modrm|Vex|Space0F38|VexW0|NoSuf|Optimize, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM }
1743 vperm2i128, 0x6646, AVX2, Modrm|Vex=2|Space0F3A|VexVVVV|VexW0|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegYMM, RegYMM, RegYMM }
1744 vpermd, 0x6636, AVX2|AVX512F, Modrm|Vex256|EVexDYN|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
1745 vpermpd, 0x6601, AVX2|AVX512F, Modrm|Vex256|EVexDYN|Masking|Space0F3A|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM }
1746 vpermps, 0x6616, AVX2|AVX512F, Modrm|Vex256|EVexDYN|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
1747 vpermq, 0x6600, AVX2|AVX512F, Modrm|Vex256|EVexDYN|Masking|Space0F3A|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM }
1748 vextracti128, 0x6639, AVX2, Modrm|Vex=2|Space0F3A|VexW=1|NoSuf, { Imm8, RegYMM, Unspecified|BaseIndex|RegXMM }
1749 vinserti128, 0x6638, AVX2, Modrm|Vex256|Space0F3A|VexVVVV|VexW0|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegYMM, RegYMM }
1750 vpmaskmov<dq>, 0x668e, AVX2, Modrm|Vex|Space0F38|VexVVVV|<dq:vexw>|CheckOperandSize|NoSuf, { RegXMM|RegYMM, RegXMM|RegYMM, Xmmword|Ymmword|Unspecified|BaseIndex }
1751 vpmaskmov<dq>, 0x668c, AVX2, Modrm|Vex|Space0F38|VexVVVV|<dq:vexw>|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
1752 vpsllv<dq>, 0x6647, AVX2|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1753 vpsravd, 0x6646, AVX2|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1754 vpsrlv<dq>, 0x6645, AVX2|AVX512F, Modrm|Vex|EVexDYN|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1755
1756 // AVX gather instructions
1757 vgatherdpd, 0x6692, AVX2, Modrm|Vex|Space0F38|VexVVVV|VexW1|SwapSources|CheckOperandSize|NoSuf|VecSIB128, { RegXMM|RegYMM, Qword|Unspecified|BaseIndex, RegXMM|RegYMM }
1758 vgatherdps, 0x6692, AVX2, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf|VecSIB128, { RegXMM, Dword|Unspecified|BaseIndex, RegXMM }
1759 vgatherdps, 0x6692, AVX2, Modrm|Vex256|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf|VecSIB256, { RegYMM, Dword|Unspecified|BaseIndex, RegYMM }
1760 vgatherqp<sd>, 0x6693, AVX2, Modrm|Vex|Space0F38|VexVVVV|<sd:vexw>|SwapSources|NoSuf|VecSIB128, { RegXMM, <sd:elem>|Unspecified|BaseIndex, RegXMM }
1761 vgatherqpd, 0x6693, AVX2, Modrm|Vex256|Space0F38|VexVVVV|VexW1|SwapSources|NoSuf|VecSIB256, { RegYMM, Qword|Unspecified|BaseIndex, RegYMM }
1762 vgatherqps, 0x6693, AVX2, Modrm|Vex256|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf|VecSIB256, { RegXMM, Dword|Unspecified|BaseIndex, RegXMM }
1763 vpgatherdd, 0x6690, AVX2, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf|VecSIB128, { RegXMM, Dword|Unspecified|BaseIndex, RegXMM }
1764 vpgatherdd, 0x6690, AVX2, Modrm|Vex256|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf|VecSIB256, { RegYMM, Dword|Unspecified|BaseIndex, RegYMM }
1765 vpgatherdq, 0x6690, AVX2, Modrm|Vex|Space0F38|VexVVVV|VexW1|SwapSources|CheckOperandSize|NoSuf|VecSIB128, { RegXMM|RegYMM, Qword|Unspecified|BaseIndex, RegXMM|RegYMM }
1766 vpgatherq<dq>, 0x6691, AVX2, Modrm|Vex128|Space0F38|VexVVVV|<dq:vexw>|SwapSources|NoSuf|VecSIB128, { RegXMM, <dq:elem>|Unspecified|BaseIndex, RegXMM }
1767 vpgatherqd, 0x6691, AVX2, Modrm|Vex256|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf|VecSIB256, { RegXMM, Dword|Unspecified|BaseIndex, RegXMM }
1768 vpgatherqq, 0x6691, AVX2, Modrm|Vex256|Space0F38|VexVVVV|VexW1|SwapSources|NoSuf|VecSIB256, { RegYMM, Qword|Unspecified|BaseIndex, RegYMM }
1769
1770 // AES + AVX
1771
1772 vaesdec, 0x66de, AVX&AES, Modrm|Vex|Space0F38|VexVVVV|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1773 vaesdeclast, 0x66df, AVX&AES, Modrm|Vex|Space0F38|VexVVVV|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1774 vaesenc, 0x66dc, AVX&AES, Modrm|Vex|Space0F38|VexVVVV|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1775 vaesenclast, 0x66dd, AVX&AES, Modrm|Vex|Space0F38|VexVVVV|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1776 vaesimc, 0x66db, AVX&AES, Modrm|Vex|Space0F38|VexWIG|NoSuf, { Unspecified|BaseIndex|RegXMM, RegXMM }
1777 vaeskeygenassist, 0x66df, AVX&AES, Modrm|Vex|Space0F3A|VexWIG|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM, RegXMM }
1778
1779 // PCLMULQDQ + AVX
1780
1781 vpclmulqdq, 0x6644, AVX&PCLMULQDQ, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf, { Imm8|Imm8S, Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1782 vpclmullqlqdq, 0x6644/0x00, AVX&PCLMULQDQ, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf|ImmExt, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1783 vpclmulhqlqdq, 0x6644/0x01, AVX&PCLMULQDQ, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf|ImmExt, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1784 vpclmullqhqdq, 0x6644/0x10, AVX&PCLMULQDQ, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf|ImmExt, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1785 vpclmulhqhqdq, 0x6644/0x11, AVX&PCLMULQDQ, Modrm|Vex|Space0F3A|VexVVVV|VexWIG|NoSuf|ImmExt, { Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM }
1786
1787 // GFNI + AVX
1788
1789 vgf2p8affineinvqb, 0x66cf, AVX&GFNI, Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1790 vgf2p8affineqb, 0x66ce, AVX&GFNI, Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1791 vgf2p8mulb, 0x66cf, GFNI&(AVX|AVX512F), Modrm|Vex|EVexDYN|Masking|Space0F38|VexVVVV|VexW0|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1792
1793 // FSGSBASE, RDRND and F16C
1794
1795 rdfsbase, 0xf30fae/0, FSGSBase, Modrm|IgnoreSize|NoSuf, { Reg32|Reg64 }
1796 rdgsbase, 0xf30fae/1, FSGSBase, Modrm|IgnoreSize|NoSuf, { Reg32|Reg64 }
1797 rdrand, 0xfc7/6, RdRnd, Modrm|NoSuf, { Reg16|Reg32|Reg64 }
1798 wrfsbase, 0xf30fae/2, FSGSBase, Modrm|IgnoreSize|NoSuf, { Reg32|Reg64 }
1799 wrgsbase, 0xf30fae/3, FSGSBase, Modrm|IgnoreSize|NoSuf, { Reg32|Reg64 }
1800 vcvtph2ps, 0x6613, F16C, Modrm|Vex|Space0F38|VexW0|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
1801 vcvtph2ps, 0x6613, F16C, Modrm|Vex=2|Space0F38|VexW=1|NoSuf, { Unspecified|BaseIndex|RegXMM, RegYMM }
1802 vcvtps2ph, 0x661d, F16C, Modrm|Vex|Space0F3A|VexW0|NoSuf, { Imm8, RegXMM, Qword|Unspecified|BaseIndex|RegXMM }
1803 vcvtps2ph, 0x661d, F16C, Modrm|Vex=2|Space0F3A|VexW=1|NoSuf, { Imm8, RegYMM, Unspecified|BaseIndex|RegXMM }
1804
1805 // FMA instructions
1806
1807 <fma:opc, 132:10, 213:20, 231:30>
1808
1809 <sdh:cpu:cpudq:fma:ppfx:spfx:pfx:spc1:spc2:opc:vex:vexlig:vexw:elem, +
1810 s:AVX512F:AVX512DQ:FMA|AVX512F::f3:66:Space0F:Space0F38:0:Vex|EVexDYN:VexLIG|EVexLIG:VexW0:Dword, +
1811 d:AVX512F:AVX512DQ:FMA|AVX512F:66:f2:66:Space0F:Space0F38:1:Vex|EVexDYN:VexLIG|EVexLIG:VexW1:Qword, +
1812 h:AVX512_FP16:AVX512_FP16:AVX512_FP16::f3::EVexMap5:EVexMap6:0::EVexLIG:VexW0:Word>
1813
1814 vfmadd<fma>p<sdh>, 0x6688 | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vex>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1815 vfmadd<fma>s<sdh>, 0x6689 | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vexlig>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
1816 vfmaddsub<fma>p<sdh>, 0x6686 | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vex>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1817 vfmsub<fma>p<sdh>, 0x668a | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vex>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1818 vfmsub<fma>s<sdh>, 0x668b | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vexlig>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
1819 vfmsubadd<fma>p<sdh>, 0x6687 | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vex>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1820 vfnmadd<fma>p<sdh>, 0x668c | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vex>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1821 vfnmadd<fma>s<sdh>, 0x668d | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vexlig>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
1822 vfnmsub<fma>p<sdh>, 0x668e | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vex>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
1823 vfnmsub<fma>s<sdh>, 0x668f | 0x<fma:opc>, <sdh:fma>, Modrm|<sdh:vexlig>|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
1824
1825 // HLE prefixes
1826
1827 xacquire, 0xf2, HLE, NoSuf|IsPrefix, {}
1828 xrelease, 0xf3, HLE, NoSuf|IsPrefix, {}
1829
1830 // RTM instructions
1831 xabort, 0xc6f8, RTM, NoSuf, { Imm8 }
1832 xbegin, 0xc7f8, RTM, JumpDword|NoSuf, { Disp16|Disp32 }
1833 xend, 0xf01d5, RTM, NoSuf, {}
1834 xtest, 0xf01d6, HLE|RTM, NoSuf, {}
1835
1836 // BMI2 instructions.
1837
1838 bzhi, 0xf5, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|SwapSources|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1839 mulx, 0xf2f6, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64, Reg32|Reg64 }
1840 pdep, 0xf2f5, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64, Reg32|Reg64 }
1841 pext, 0xf3f5, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64, Reg32|Reg64 }
1842 rorx, 0xf2f0, BMI2, Modrm|CheckOperandSize|Vex128|Space0F3A|No_bSuf|No_wSuf|No_sSuf, { Imm8|Imm8S, Reg32|Reg64|Dword|Qword|Unspecified|BaseIndex, Reg32|Reg64 }
1843 sarx, 0xf3f7, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|SwapSources|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1844 shlx, 0x66f7, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|SwapSources|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1845 shrx, 0xf2f7, BMI2, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|SwapSources|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1846
1847 // FMA4 instructions
1848
1849 vfmaddp<sd>, 0x6668 | <sd:opc>, FMA4, D|Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1850 vfmadds<sd>, 0x666a | <sd:opc>, FMA4, D|Modrm|VexLIG|Space0F3A|VexVVVV|VexW1|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM, RegXMM }
1851 vfmaddsubp<sd>, 0x665c | <sd:opc>, FMA4, D|Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1852 vfmsubaddp<sd>, 0x665e | <sd:opc>, FMA4, D|Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1853 vfmsubp<sd>, 0x666c | <sd:opc>, FMA4, D|Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1854 vfmsubs<sd>, 0x666e | <sd:opc>, FMA4, D|Modrm|VexLIG|Space0F3A|VexVVVV|VexW1|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM, RegXMM }
1855 vfnmaddp<sd>, 0x6678 | <sd:opc>, FMA4, D|Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1856 vfnmadds<sd>, 0x667a | <sd:opc>, FMA4, D|Modrm|VexLIG|Space0F3A|VexVVVV|VexW1|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM, RegXMM }
1857 vfnmsubp<sd>, 0x667c | <sd:opc>, FMA4, D|Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1858 vfnmsubs<sd>, 0x667e | <sd:opc>, FMA4, D|Modrm|VexLIG|Space0F3A|VexVVVV|VexW1|NoSuf, { <sd:elem>|Unspecified|BaseIndex|RegXMM, RegXMM, RegXMM, RegXMM }
1859
1860 // XOP instructions
1861
1862 <xop:opc, b:0, w:1, d:2, q:3>
1863 <irel:imm, lt:0, le:1, gt:2, ge:3, eq:4, neq:5, false:6, true:7>
1864 <sign:opc, :00, u:20>
1865
1866 vfrczp<sd>, 0x80 | <sd:opc>, XOP, Modrm|SpaceXOP09|VexW0|CheckOperandSize|NoSuf|Vex, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM }
1867 vfrczs<sd>, 0x82 | <sd:opc>, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { <sd:elem>|RegXMM|Unspecified|BaseIndex, RegXMM }
1868 vpcmov, 0xa2, XOP, D|Modrm|Vex|SpaceXOP08|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1869 vpcom<sign><xop>, 0xcc | 0x<sign:opc> | <xop:opc>, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1870 vpcom<irel><sign><xop>, 0xcc | 0x<sign:opc> | <xop:opc>/<irel:imm>, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf|ImmExt, { RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1871 vpermil2p<sd>, 0x6648 | <sd:opc>, XOP, Modrm|Vex|Space0F3A|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1872 vpermil2p<sd>, 0x6648 | <sd:opc>, XOP, Modrm|Vex|Space0F3A|VexVVVV|VexW1|CheckOperandSize|NoSuf, { Imm8, Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
1873 vphaddb<dq>, 0xc2 | <dq:opc>, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1874 vphaddbw, 0xc1, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1875 vphadddq, 0xcb, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1876 vphaddub<dq>, 0xd2 | <dq:opc>, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1877 vphaddubw, 0xd1, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1878 vphaddudq, 0xdb, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1879 vphadduw<dq>, 0xd6 | <dq:opc>, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1880 vphaddw<dq>, 0xc6 | <dq:opc>, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1881 vphsubbw, 0xe1, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1882 vphsubdq, 0xe3, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1883 vphsubwd, 0xe2, XOP, Modrm|SpaceXOP09|VexW0|NoSuf|Vex, { RegXMM|Unspecified|BaseIndex, RegXMM }
1884 vpmacsdd, 0x9e, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1885 vpmacsdqh, 0x9f, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1886 vpmacsdql, 0x97, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1887 vpmacssdd, 0x8e, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1888 vpmacssdqh, 0x8f, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1889 vpmacssdql, 0x87, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1890 vpmacsswd, 0x86, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1891 vpmacssww, 0x85, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1892 vpmacswd, 0x96, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1893 vpmacsww, 0x95, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1894 vpmadcsswd, 0xa6, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1895 vpmadcswd, 0xb6, XOP, Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1896 vpperm, 0xa3, XOP, D|Modrm|Vex128|SpaceXOP08|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
1897 vprot<xop>, 0x90 | <xop:opc>, XOP, D|Modrm|Vex128|SpaceXOP09|VexVVVV|SwapSources|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM }
1898 vprot<xop>, 0xc0 | <xop:opc>, XOP, Modrm|Vex128|SpaceXOP08|VexW0|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
1899 vpsha<xop>, 0x98 | <xop:opc>, XOP, D|Modrm|Vex128|SpaceXOP09|VexVVVV|SwapSources|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM }
1900 vpshl<xop>, 0x94 | <xop:opc>, XOP, D|Modrm|Vex128|SpaceXOP09|VexVVVV|SwapSources|VexW0|NoSuf, { RegXMM, RegXMM|Unspecified|BaseIndex, RegXMM }
1901
1902 <xop>
1903 <irel>
1904 <sign>
1905
1906 // LWP instructions
1907
1908 llwpcb, 0x12/0, LWP, Modrm|SpaceXOP09|NoSuf|Vex, { Reg32|Reg64 }
1909 slwpcb, 0x12/1, LWP, Modrm|SpaceXOP09|NoSuf|Vex, { Reg32|Reg64 }
1910 lwpval, 0x12/1, LWP, Modrm|SpaceXOP0A|NoSuf|VexVVVV|Vex, { Imm32|Imm32S, Reg32|Unspecified|BaseIndex, Reg32|Reg64 }
1911 lwpins, 0x12/0, LWP, Modrm|SpaceXOP0A|NoSuf|VexVVVV|Vex, { Imm32|Imm32S, Reg32|Unspecified|BaseIndex, Reg32|Reg64 }
1912
1913 // BMI instructions
1914
1915 andn, 0xf2, BMI, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64, Reg32|Reg64 }
1916 bextr, 0xf7, BMI, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|SwapSources|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1917 blsi, 0xf3/3, BMI, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1918 blsmsk, 0xf3/2, BMI, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1919 blsr, 0xf3/1, BMI, Modrm|CheckOperandSize|Vex128|Space0F38|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1920 tzcnt, 0xf30fbc, BMI, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
1921
1922 // TBM instructions
1923
1924 bextr, 0x10, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP0A|No_bSuf|No_wSuf|No_sSuf, { Imm32|Imm32S, Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1925 blcfill, 0x01/1, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1926 blci, 0x02/6, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1927 blcic, 0x01/5, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1928 blcmsk, 0x02/1, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1929 blcs, 0x01/3, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1930 blsfill, 0x01/2, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1931 blsic, 0x01/6, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1932 t1mskc, 0x01/7, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1933 tzmsk, 0x01/4, TBM, Modrm|CheckOperandSize|Vex128|SpaceXOP09|VexVVVV|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
1934
1935 // AMD 3DNow! instructions.
1936
1937 prefetch, 0xf0d/0, 3dnow|PRFCHW, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
1938 prefetchw, 0xf0d/1, 3dnow|PRFCHW, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
1939 femms, 0xf0e, 3dnow, NoSuf, {}
1940 pavgusb, 0xf0f/0xbf, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1941 pf2id, 0xf0f/0x1d, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1942 pf2iw, 0xf0f/0x1c, 3dnowA, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1943 pfacc, 0xf0f/0xae, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1944 pfadd, 0xf0f/0x9e, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1945 pfcmpeq, 0xf0f/0xb0, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1946 pfcmpge, 0xf0f/0x90, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1947 pfcmpgt, 0xf0f/0xa0, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1948 pfmax, 0xf0f/0xa4, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1949 pfmin, 0xf0f/0x94, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1950 pfmul, 0xf0f/0xb4, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1951 pfnacc, 0xf0f/0x8a, 3dnowA, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1952 pfpnacc, 0xf0f/0x8e, 3dnowA, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1953 pfrcp, 0xf0f/0x96, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1954 pfrcpit1, 0xf0f/0xa6, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1955 pfrcpit2, 0xf0f/0xb6, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1956 pfrsqit1, 0xf0f/0xa7, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1957 pfrsqrt, 0xf0f/0x97, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1958 pfsub, 0xf0f/0x9a, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1959 pfsubr, 0xf0f/0xaa, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1960 pi2fd, 0xf0f/0x0d, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1961 pi2fw, 0xf0f/0x0c, 3dnowA, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1962 pmulhrw, 0xf0f/0xb7, 3dnow, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1963 pswapd, 0xf0f/0xbb, 3dnowA, Modrm|NoSuf|ImmExt, { Qword|Unspecified|BaseIndex|RegMMX, RegMMX }
1964
1965 // AMD extensions.
1966 syscall, 0xf05, SYSCALL, NoSuf, {}
1967 sysret, 0xf07, SYSCALL, No_bSuf|No_wSuf|No_sSuf, {}
1968 swapgs, 0xf01f8, x64, NoSuf, {}
1969 rdtscp, 0xf01f9, Rdtscp, NoSuf, {}
1970
1971 // AMD Pacifica additions.
1972 clgi, 0xf01dd, SVME, NoSuf, {}
1973 invlpga, 0xf01df, SVME, NoSuf, {}
1974 invlpga, 0xf01df, SVME, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword, RegC|Dword }
1975 skinit, 0xf01de, SVME, NoSuf, {}
1976 skinit, 0xf01de, SVME, IgnoreSize|NoSuf, { Acc|Dword }
1977 stgi, 0xf01dc, SVME, NoSuf, {}
1978 vmgexit, 0xf30f01d9, SEV_ES, NoSuf, {}
1979 vmload, 0xf01da, SVME, NoSuf, {}
1980 vmload, 0xf01da, SVME, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword }
1981 vmmcall, 0xf01d9, SVME, NoSuf, {}
1982 vmrun, 0xf01d8, SVME, NoSuf, {}
1983 vmrun, 0xf01d8, SVME, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword }
1984 vmsave, 0xf01db, SVME, NoSuf, {}
1985 vmsave, 0xf01db, SVME, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword }
1986
1987
1988 // SSE4a instructions
1989 movntsd, 0xf20f2b, SSE4a, Modrm|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex }
1990 movntss, 0xf30f2b, SSE4a, Modrm|NoSuf, { RegXMM, Dword|Unspecified|BaseIndex }
1991 extrq, 0x660f78/0, SSE4a, Modrm|NoSuf, { Imm8, Imm8, RegXMM }
1992 extrq, 0x660f79, SSE4a, Modrm|NoSuf, { RegXMM, RegXMM }
1993 insertq, 0xf20f79, SSE4a, Modrm|NoSuf, { RegXMM, RegXMM }
1994 insertq, 0xf20f78, SSE4a, Modrm|NoSuf, { Imm8, Imm8, RegXMM, RegXMM }
1995
1996 // LZCNT instruction
1997 lzcnt, 0xf30fbd, LZCNT, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
1998
1999 // POPCNT instruction
2000 popcnt, 0xf30fb8, POPCNT, Modrm|CheckOperandSize|No_bSuf|No_sSuf, { Reg16|Reg32|Reg64|Word|Dword|Qword|Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
2001
2002 // VIA PadLock extensions.
2003 xstore-rng, 0xfa7c0, PadLock, NoSuf|RepPrefixOk, {}
2004 xcrypt-ecb, 0xf30fa7c8, PadLock, NoSuf|RepPrefixOk, {}
2005 xcrypt-cbc, 0xf30fa7d0, PadLock, NoSuf|RepPrefixOk, {}
2006 xcrypt-ctr, 0xf30fa7d8, PadLock, NoSuf|RepPrefixOk, {}
2007 xcrypt-cfb, 0xf30fa7e0, PadLock, NoSuf|RepPrefixOk, {}
2008 xcrypt-ofb, 0xf30fa7e8, PadLock, NoSuf|RepPrefixOk, {}
2009 montmul, 0xf30fa6c0, PadLock, NoSuf|RepPrefixOk, {}
2010 xsha1, 0xf30fa6c8, PadLock, NoSuf|RepPrefixOk, {}
2011 xsha256, 0xf30fa6d0, PadLock, NoSuf|RepPrefixOk, {}
2012 // Aliases without hyphens.
2013 xstorerng, 0xfa7c0, PadLock, NoSuf|RepPrefixOk, {}
2014 xcryptecb, 0xf30fa7c8, PadLock, NoSuf|RepPrefixOk, {}
2015 xcryptcbc, 0xf30fa7d0, PadLock, NoSuf|RepPrefixOk, {}
2016 xcryptctr, 0xf30fa7d8, PadLock, NoSuf|RepPrefixOk, {}
2017 xcryptcfb, 0xf30fa7e0, PadLock, NoSuf|RepPrefixOk, {}
2018 xcryptofb, 0xf30fa7e8, PadLock, NoSuf|RepPrefixOk, {}
2019 // Alias for xstore-rng.
2020 xstore, 0xfa7c0, PadLock, NoSuf|RepPrefixOk, {}
2021
2022 // Multy-precision Add Carry, rdseed instructions.
2023 adcx, 0x660f38f6, ADX, Modrm|CheckOperandSize|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
2024 adox, 0xf30f38f6, ADX, Modrm|CheckOperandSize|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex, Reg32|Reg64 }
2025 rdseed, 0xfc7/7, RdSeed, Modrm|NoSuf, { Reg16|Reg32|Reg64 }
2026
2027 // SMAP instructions.
2028 clac, 0xf01ca, SMAP, NoSuf, {}
2029 stac, 0xf01cb, SMAP, NoSuf, {}
2030
2031 // BND prefix
2032 bnd, 0xf2, MPX, NoSuf|IsPrefix, {}
2033
2034 // MPX instructions.
2035 bndmk, 0xf30f1b, MPX, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex, RegBND }
2036 bndmov, 0x660f1a, MPX, D|Modrm|NoSuf, { Xmmword|Unspecified|BaseIndex|RegBND, RegBND }
2037 bndcl, 0xf30f1a, MPX&No64, Modrm|Anysize|IgnoreSize|NoSuf, { Reg32|BaseIndex, RegBND }
2038 bndcl, 0xf30f1a, MPX&x64, Modrm|Anysize|IgnoreSize|NoSuf|NoRex64, { Reg64|BaseIndex, RegBND }
2039 bndcu, 0xf20f1a, MPX&No64, Modrm|Anysize|IgnoreSize|NoSuf, { Reg32|BaseIndex, RegBND }
2040 bndcu, 0xf20f1a, MPX&x64, Modrm|Anysize|IgnoreSize|NoSuf|NoRex64, { Reg64|BaseIndex, RegBND }
2041 bndcn, 0xf20f1b, MPX&No64, Modrm|Anysize|IgnoreSize|NoSuf, { Reg32|BaseIndex, RegBND }
2042 bndcn, 0xf20f1b, MPX&x64, Modrm|Anysize|IgnoreSize|NoSuf|NoRex64, { Reg64|BaseIndex, RegBND }
2043 bndstx, 0x0f1b, MPX, Modrm|Anysize|IgnoreSize|NoSuf, { RegBND, BaseIndex }
2044 bndldx, 0x0f1a, MPX, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex, RegBND }
2045
2046 // SHA instructions.
2047 sha1rnds4, 0xf3acc, SHA, Modrm|NoSuf, { Imm8|Imm8S, RegXMM|Unspecified|BaseIndex, RegXMM }
2048 sha1nexte, 0xf38c8, SHA, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
2049 sha1msg1, 0xf38c9, SHA, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
2050 sha1msg2, 0xf38ca, SHA, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
2051 sha256rnds2, 0xf38cb, SHA, Modrm|NoSuf, { Acc|Xmmword, RegXMM|Unspecified|BaseIndex, RegXMM }
2052 sha256rnds2, 0xf38cb, SHA, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
2053 sha256msg1, 0xf38cc, SHA, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
2054 sha256msg2, 0xf38cd, SHA, Modrm|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM }
2055
2056 // SHA512 instructions.
2057
2058 vsha512rnds2, 0xf2cb, SHA512, Modrm|Vex256|Space0F38|VexVVVV|VexW0|NoSuf, { RegXMM, RegYMM, RegYMM }
2059 vsha512msg1, 0xf2cc, SHA512, Modrm|Vex256|Space0F38|VexW0|NoSuf, { RegXMM, RegYMM }
2060 vsha512msg2, 0xf2cd, SHA512, Modrm|Vex256|Space0F38|VexW0|NoSuf, { RegYMM, RegYMM }
2061
2062 // SHA512 instructions end.
2063
2064 // SM3 instructions.
2065 vsm3rnds2, 0x66de, SM3, Modrm|Space0F3A|Vex128|VexVVVV|VexW0|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
2066 vsm3msg1, 0xda, SM3, Modrm|Space0F38|Vex128|VexVVVV|VexW0|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
2067 vsm3msg2, 0x66da, SM3, Modrm|Space0F38|Vex128|VexVVVV|VexW0|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM, RegXMM }
2068
2069 // SM3 instructions end.
2070
2071 // SM4 instructions.
2072
2073 vsm4key4, 0xf3da, SM4, Modrm|Space0F38|Vex|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2074 vsm4rnds4, 0xf2da, SM4, Modrm|Space0F38|Vex|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2075
2076 // SM4 instructions end.
2077
2078 // VAES
2079
2080 vaesdec, 0x66de, VAES&(AVX|AVX512F), Modrm|Vex|EVexDYN|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2081 vaesdeclast, 0x66df, VAES&(AVX|AVX512F), Modrm|Vex|EVexDYN|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2082 vaesenc, 0x66dc, VAES&(AVX|AVX512F), Modrm|Vex|EVexDYN|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2083 vaesenclast, 0x66dd, VAES&(AVX|AVX512F), Modrm|Vex|EVexDYN|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2084
2085 // VAES instructions end
2086
2087 // VPCLMULQDQ instructions
2088
2089 vpclmulqdq, 0x6644, VPCLMULQDQ&(AVX|AVX512F), Modrm|Space0F3A|Vex|EVexDYN|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2090 vpclmullqlqdq, 0x6644/0x00, VPCLMULQDQ&(AVX|AVX512F), Modrm|Space0F3A|Vex|EVexDYN|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2091 vpclmulhqlqdq, 0x6644/0x01, VPCLMULQDQ&(AVX|AVX512F), Modrm|Space0F3A|Vex|EVexDYN|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2092 vpclmullqhqdq, 0x6644/0x10, VPCLMULQDQ&(AVX|AVX512F), Modrm|Space0F3A|Vex|EVexDYN|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2093 vpclmulhqhqdq, 0x6644/0x11, VPCLMULQDQ&(AVX|AVX512F), Modrm|Space0F3A|Vex|EVexDYN|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2094
2095 // VPCLMULQDQ instructions end
2096
2097 // AVX512F instructions.
2098
2099 // <Exy> is used for EVEX instructions with x/y suffixes.
2100 <Exy:vl:attr:sr:sae:src:dst, +
2101 $z::EVex512|Disp8MemShift=6:StaticRounding|SAE:SAE:RegZMM|Unspecified|BaseIndex:RegYMM, +
2102 $i:AVX512VL:Disp8ShiftVL|IntelSyntax:::RegXMM|RegYMM|Unspecified|BaseIndex:RegXMM, +
2103 $a:AVX512VL:Disp8ShiftVL|ATTSyntax:::RegXMM|RegYMM|BaseIndex:RegXMM, +
2104 x:AVX512VL:EVex128|Disp8MemShift=4|ATTSyntax:::RegXMM|Unspecified|BaseIndex:RegXMM, +
2105 y:AVX512VL:EVex256|Disp8MemShift=5|ATTSyntax:::RegYMM|Unspecified|BaseIndex:RegXMM>
2106
2107 kand<bw>, 0x<bw:kpfx>41, <bw:kcpu>, Modrm|Vex256|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2108 kandn<bw>, 0x<bw:kpfx>42, <bw:kcpu>, Modrm|Vex256|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2109 kor<bw>, 0x<bw:kpfx>45, <bw:kcpu>, Modrm|Vex256|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2110 kxnor<bw>, 0x<bw:kpfx>46, <bw:kcpu>, Modrm|Vex256|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2111 kxor<bw>, 0x<bw:kpfx>47, <bw:kcpu>, Modrm|Vex256|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2112
2113 kmov<bw>, 0x<bw:kpfx>90, <bw:kcpu>, Modrm|Vex128|Space0F|VexW0|NoSuf, { RegMask|<bw:elem>|Unspecified|BaseIndex, RegMask }
2114 kmov<bw>, 0x<bw:kpfx>91, <bw:kcpu>, Modrm|Vex128|Space0F|VexW0|NoSuf, { RegMask, <bw:elem>|Unspecified|BaseIndex }
2115 kmov<bw>, 0x<bw:kpfx>92, <bw:kcpu>, D|Modrm|Vex128|Space0F|VexW0|NoSuf, { Reg32, RegMask }
2116
2117 knot<bw>, 0x<bw:kpfx>44, <bw:kcpu>, Modrm|Vex128|Space0F|VexW0|NoSuf, { RegMask, RegMask }
2118 kortest<bw>, 0x<bw:kpfx>98, <bw:kcpu>, Modrm|Vex128|Space0F|VexW0|NoSuf, { RegMask, RegMask }
2119
2120 kshiftl<bw>, 0x6632, <bw:kcpu>, Modrm|Vex128|Space0F3A|<bw:vexw>|NoSuf, { Imm8, RegMask, RegMask }
2121 kshiftr<bw>, 0x6630, <bw:kcpu>, Modrm|Vex128|Space0F3A|<bw:vexw>|NoSuf, { Imm8, RegMask, RegMask }
2122
2123 kunpckbw, 0x664B, AVX512F, Modrm|Vex=2|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2124
2125 vaddp<sdh>, 0x<sdh:ppfx>58, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2126 vdivp<sdh>, 0x<sdh:ppfx>5e, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2127 vmulp<sdh>, 0x<sdh:ppfx>59, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2128 vsqrtp<sdh>, 0x<sdh:ppfx>51, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2129 vsubp<sdh>, 0x<sdh:ppfx>5c, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2130
2131 vadds<sdh>, 0x<sdh:spfx>58, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2132 vdivs<sdh>, 0x<sdh:spfx>5e, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2133 vmuls<sdh>, 0x<sdh:spfx>59, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2134 vsqrts<sdh>, 0x<sdh:spfx>51, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2135 vsubs<sdh>, 0x<sdh:spfx>5C, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2136
2137 valign<dq>, 0x6603, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2138 vblendmp<sd>, 0x6665, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2139 vpblendm<dq>, 0x6664, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2140 vpermi2<dq>, 0x6676, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2141 vpermi2p<sd>, 0x6677, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2142 vpermt2<dq>, 0x667E, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2143 vpermt2p<sd>, 0x667F, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2144 vpmaxs<dq>, 0x663D, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2145 vpmaxu<dq>, 0x663F, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2146 vpmins<dq>, 0x6639, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2147 vpminu<dq>, 0x663B, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2148 vpmuldq, 0x6628, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW=2|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2149 vpmulld, 0x6640, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW=1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2150 vprolv<dq>, 0x6615, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2151 vprorv<dq>, 0x6614, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2152 vpsravq, 0x6646, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2153 vpternlog<dq>, 0x6625, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2154
2155 vbroadcastf32x4, 0x661A, AVX512F, Modrm|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { XMMword|Unspecified|BaseIndex, RegYMM|RegZMM }
2156 vbroadcasti32x4, 0x665A, AVX512F, Modrm|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { XMMword|Unspecified|BaseIndex, RegYMM|RegZMM }
2157
2158 vbroadcastf64x4, 0x661B, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=2|Disp8MemShift=5|NoSuf, { YMMword|Unspecified|BaseIndex, RegZMM }
2159 vbroadcasti64x4, 0x665B, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=2|Disp8MemShift=5|NoSuf, { YMMword|Unspecified|BaseIndex, RegZMM }
2160
2161 vbroadcastsd, 0x6619, AVX512F, Modrm|Masking|Space0F38|VexW1|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM }
2162
2163 vpbroadcastq, 0x6659, AVX512F, Modrm|Masking|Space0F38|VexW1|Disp8MemShift|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2164 vpbroadcast<dq>, 0x667c, AVX512F, Modrm|Masking|Space0F38|<dq:vexw64>|NoSuf, { <dq:gpr>, RegXMM|RegYMM|RegZMM }
2165
2166 vcmp<frel>p<sd>, 0x<sd:ppfx>C2/0x<frel:imm>, AVX512F, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt|SAE, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2167 vcmpp<sd>, 0x<sd:ppfx>C2, AVX512F, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8, RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2168
2169 vcmp<frel>s<sd>, 0x<sd:spfx>C2/0x<frel:imm>, AVX512F, Modrm|EVexLIG|Masking|Space0F|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf|SAE|ImmExt, { RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegMask }
2170 vcmps<sd>, 0x<sd:spfx>C2, AVX512F, Modrm|EVexLIG|Masking|Space0F|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf|SAE, { Imm8, RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegMask }
2171
2172 vcomis<sdh>, 0x<sdh:ppfx>2f, <sdh:cpu>, Modrm|EVexLIG|<sdh:spc1>|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM }
2173 vucomis<sdh>, 0x<sdh:ppfx>2e, <sdh:cpu>, Modrm|EVexLIG|<sdh:spc1>|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM }
2174
2175 vcompresspd, 0x668A, AVX512F, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=3|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex }
2176 vcompressps, 0x668A, AVX512F, Modrm|Masking|Space0F38|VexW=1|Disp8MemShift=2|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex }
2177 vpcompressq, 0x668B, AVX512F, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=3|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex }
2178 vpcompressd, 0x668B, AVX512F, Modrm|Masking|Space0F38|VexW=1|Disp8MemShift=2|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex }
2179
2180 vpscatterdd, 0x66A0, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { RegZMM, Dword|Unspecified|BaseIndex }
2181 vpscatterdq, 0x66A0, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { RegZMM, Qword|Unspecified|BaseIndex }
2182 vpscatterqd, 0x66A1, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { RegYMM, Dword|Unspecified|BaseIndex }
2183 vpscatterqq, 0x66A1, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB512|NoSuf, { RegZMM, Qword|Unspecified|BaseIndex }
2184 vscatterdpd, 0x66A2, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { RegZMM, Qword|Unspecified|BaseIndex }
2185 vscatterdps, 0x66A2, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { RegZMM, Dword|Unspecified|BaseIndex }
2186 vscatterqpd, 0x66A3, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB512|NoSuf, { RegZMM, Qword|Unspecified|BaseIndex }
2187 vscatterqps, 0x66A3, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { RegYMM, Dword|Unspecified|BaseIndex }
2188
2189 vcvtdq2pd, 0xF3E6, AVX512F, Modrm|EVex=1|Masking|Space0F|VexW=1|Broadcast|Disp8MemShift=5|NoSuf, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2190 vcvtudq2pd, 0xF37A, AVX512F, Modrm|EVex=1|Masking|Space0F|VexW=1|Broadcast|Disp8MemShift=5|NoSuf, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2191
2192 vcvtdq2ps, 0x5B, AVX512F, Modrm|Masking|Space0F|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2193 vcvtps2udq, 0x79, AVX512F, Modrm|Masking|Space0F|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2194
2195 vcvtpd2dq<Exy>, 0xf2e6, AVX512F&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Qword, <Exy:dst> }
2196
2197 vcvtpd2ps<Exy>, 0x665a, AVX512F&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Qword, <Exy:dst> }
2198
2199 vcvtpd2udq<Exy>, 0x79, AVX512F&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Qword, <Exy:dst> }
2200
2201 vcvtph2ps, 0x6613, AVX512F, Modrm|EVex512|Masking|Space0F38|VexW0|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Unspecified|BaseIndex, RegZMM }
2202
2203 vcvtps2dq, 0x665B, AVX512F, Modrm|Masking|Space0F|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2204
2205 vcvtps2pd, 0x5A, AVX512F, Modrm|EVex512|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2206
2207 vcvtps2ph, 0x661D, AVX512F, Modrm|EVex512|Masking|Space0F3A|VexW0|Disp8MemShift=5|NoSuf|SAE, { Imm8, RegZMM, RegYMM|Unspecified|BaseIndex }
2208
2209 vcvts<sd>2si, 0x<sd:spfx>2d, AVX512F, Modrm|EVexLIG|Space0F|Disp8MemShift|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE, { RegXMM|<sd:elem>|Unspecified|BaseIndex, Reg32|Reg64 }
2210 vcvts<sdh>2usi, 0x<sdh:spfx>79, <sdh:cpu>, Modrm|EVexLIG|<sdh:spc1>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, Reg32|Reg64 }
2211
2212 vcvtsd2ss, 0xF25A, AVX512F, Modrm|EVexLIG|Masking|Space0F|VexVVVV|VexW1|Disp8MemShift=3|NoSuf|StaticRounding|SAE, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM, RegXMM }
2213
2214 vcvtsi2sd, 0xF22A, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|ATTSyntax, { Reg32|Unspecified|BaseIndex, RegXMM, RegXMM }
2215 vcvtsi2sd, 0xF22A, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|ATTSyntax, { Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2216 vcvtsi2sd, 0xF22A, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|IntelSyntax, { Reg32|Unspecified|BaseIndex, RegXMM, RegXMM }
2217 vcvtsi2sd, 0xF22A, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|IntelSyntax, { Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2218 vcvtusi2sd, 0xF27B, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|ATTSyntax, { Reg32|Unspecified|BaseIndex, RegXMM, RegXMM }
2219 vcvtusi2sd, 0xF27B, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|ATTSyntax, { Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2220 vcvtusi2sd, 0xF27B, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|IntelSyntax, { Reg32|Unspecified|BaseIndex, RegXMM, RegXMM }
2221 vcvtusi2sd, 0xF27B, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|IntelSyntax, { Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2222
2223 vcvtsi2ss, 0xF32A, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|ATTSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2224 vcvtsi2ss, 0xF32A, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|IntelSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2225 vcvtusi2ss, 0xF37B, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|ATTSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2226 vcvtusi2ss, 0xF37B, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|IntelSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
2227
2228 vcvtss2sd, 0xF35A, AVX512F, Modrm|EVexLIG|Masking|Space0F|VexVVVV|VexW0|Disp8MemShift=2|NoSuf|SAE, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
2229
2230 vcvttpd2dq<Exy>, 0x66e6, AVX512F&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sae>, { <Exy:src>|Qword, <Exy:dst> }
2231 vcvttpd2udq<Exy>, 0x78, AVX512F&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sae>, { <Exy:src>|Qword, <Exy:dst> }
2232
2233 vcvttps2dq, 0xF35B, AVX512F, Modrm|Masking|Space0F|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2234 vcvttps2udq, 0x78, AVX512F, Modrm|Masking|Space0F|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2235
2236 vcvtts<sd>2si, 0x<sd:spfx>2c, AVX512F, Modrm|EVexLIG|Space0F|Disp8MemShift|No_bSuf|No_wSuf|No_sSuf|SAE, { RegXMM|<sd:elem>|Unspecified|BaseIndex, Reg32|Reg64 }
2237 vcvtts<sdh>2usi, 0x<sdh:spfx>78, <sdh:cpu>, Modrm|EVexLIG|<sdh:spc1>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, Reg32|Reg64 }
2238
2239 vcvtudq2ps, 0xF27A, AVX512F, Modrm|Masking|Space0F|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2240
2241 vexpandpd, 0x6688, AVX512F, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=3|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2242 vpexpandq, 0x6689, AVX512F, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=3|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2243
2244 vexpandps, 0x6688, AVX512F, Modrm|Masking|Space0F38|VexW=1|Disp8MemShift=2|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2245 vpexpandd, 0x6689, AVX512F, Modrm|Masking|Space0F38|VexW=1|Disp8MemShift=2|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2246
2247 vextractf32x4, 0x6619, AVX512F, Modrm|Masking|Space0F3A|VexW=1|Disp8MemShift=4|NoSuf, { Imm8, RegYMM|RegZMM, RegXMM|Unspecified|BaseIndex }
2248 vextracti32x4, 0x6639, AVX512F, Modrm|Masking|Space0F3A|VexW=1|Disp8MemShift=4|NoSuf, { Imm8, RegYMM|RegZMM, RegXMM|Unspecified|BaseIndex }
2249
2250 vextractf64x4, 0x661B, AVX512F, Modrm|EVex=1|Masking|Space0F3A|VexW=2|Disp8MemShift=5|NoSuf, { Imm8, RegZMM, RegYMM|Unspecified|BaseIndex }
2251 vextracti64x4, 0x663B, AVX512F, Modrm|EVex=1|Masking|Space0F3A|VexW=2|Disp8MemShift=5|NoSuf, { Imm8, RegZMM, RegYMM|Unspecified|BaseIndex }
2252
2253 vfixupimmp<sd>, 0x6654, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2254 vfixupimms<sd>, 0x6655, AVX512F, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf|SAE, { Imm8|Imm8S, RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2255
2256 vgetmantp<sdh>, 0x<sdh:pfx>26, <sdh:cpu>, Modrm|Masking|Space0F3A|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8, RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2257 vgetmants<sdh>, 0x<sdh:pfx>27, <sdh:cpu>, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { Imm8, RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2258
2259 vrndscalep<sdh>, 0x<sdh:pfx>08 | <sdh:opc>, <sdh:cpu>, Modrm|Masking|Space0F3A|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8, RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2260 vrndscales<sdh>, 0x<sdh:pfx>0a | <sdh:opc>, <sdh:cpu>, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { Imm8, RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2261
2262 vscalefp<sdh>, 0x662c, <sdh:cpu>, Modrm|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2263 vscalefs<sdh>, 0x662d, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|StaticRounding|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2264
2265 vgatherdpd, 0x6692, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex, RegZMM }
2266 vgatherdps, 0x6692, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex, RegZMM }
2267 vgatherqpd, 0x6693, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB512|NoSuf, { Qword|Unspecified|BaseIndex, RegZMM }
2268 vgatherqps, 0x6693, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex, RegYMM }
2269 vpgatherdd, 0x6690, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex, RegZMM }
2270 vpgatherdq, 0x6690, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex, RegZMM }
2271 vpgatherqd, 0x6691, AVX512F, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex, RegYMM }
2272 vpgatherqq, 0x6691, AVX512F, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB512|NoSuf, { Qword|Unspecified|BaseIndex, RegZMM }
2273
2274 vmovntdqa, 0x662A, AVX512F, Modrm|Space0F38|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf, { XMMword|YMMword|ZMMword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2275
2276 vgetexpp<sdh>, 0x6642, <sdh:cpu>, Modrm|Masking|<sdh:spc2>|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2277 vgetexps<sdh>, 0x6643, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc2>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2278
2279 vinsertf32x4, 0x6618, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Disp8MemShift=4|CheckOperandSize|NoSuf, { Imm8, RegXMM|XMMword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2280 vinserti32x4, 0x6638, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Disp8MemShift=4|CheckOperandSize|NoSuf, { Imm8, RegXMM|XMMword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2281
2282 vinsertf64x4, 0x661A, AVX512F, Modrm|EVex=1|Masking|Space0F3A|VexVVVV|VexW1|Disp8MemShift=5|NoSuf, { Imm8, RegYMM|Unspecified|BaseIndex, RegZMM, RegZMM }
2283 vinserti64x4, 0x663A, AVX512F, Modrm|EVex=1|Masking|Space0F3A|VexVVVV|VexW1|Disp8MemShift=5|NoSuf, { Imm8, RegYMM|Unspecified|BaseIndex, RegZMM, RegZMM }
2284
2285 vinsertps, 0x6621, AVX512F, Modrm|EVex128|Space0F3A|VexVVVV|VexW0|Disp8MemShift=2|NoSuf, { Imm8, RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
2286
2287 vmaxp<sdh>, 0x<sdh:ppfx>5f, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2288 vmaxs<sdh>, 0x<sdh:spfx>5f, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2289
2290 vminp<sdh>, 0x<sdh:ppfx>5d, <sdh:cpu>, Modrm|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2291 vmins<sdh>, 0x<sdh:spfx>5d, <sdh:cpu>, Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2292
2293 vmovap<sd>, 0x<sd:ppfx>28, AVX512F, D|Modrm|Masking|Space0F|<sd:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2294 vmovntp<sd>, 0x<sd:ppfx>2B, AVX512F, Modrm|Space0F|<sd:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, XMMword|YMMword|ZMMword|Unspecified|BaseIndex }
2295 vmovup<sd>, 0x<sd:ppfx>10, AVX512F, D|Modrm|Masking|Space0F|<sd:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2296
2297 vmovddup, 0xF212, AVX512F, Modrm|Masking|Space0F|VexW=2|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegYMM|RegZMM|Unspecified|BaseIndex, RegYMM|RegZMM }
2298
2299 vmovdqa64, 0x666F, AVX512F, D|Modrm|Masking|Space0F|VexW=2|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2300 vmovdqa32, 0x666F, AVX512F, D|Modrm|Masking|Space0F|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2301 vmovntdq, 0x66E7, AVX512F, Modrm|Space0F|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, XMMword|YMMword|ZMMword|Unspecified|BaseIndex }
2302 vmovdqu32, 0xF36F, AVX512F, D|Modrm|Masking|Space0F|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2303 vmovdqu64, 0xF36F, AVX512F, D|Modrm|Masking|Space0F|VexW=2|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2304
2305 vmovhlps, 0x12, AVX512F, Modrm|EVex=4|Space0F|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM, RegXMM }
2306 vmovlhps, 0x16, AVX512F, Modrm|EVex=4|Space0F|VexVVVV|VexW0|NoSuf, { RegXMM, RegXMM, RegXMM }
2307
2308 vmovhp<sd>, 0x<sd:ppfx>16, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|<sd:vexw>|Disp8MemShift=3|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM, RegXMM }
2309 vmovhp<sd>, 0x<sd:ppfx>17, AVX512F, Modrm|EVexLIG|Space0F|<sd:vexw>|Disp8MemShift=3|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex }
2310 vmovlp<sd>, 0x<sd:ppfx>12, AVX512F, Modrm|EVexLIG|Space0F|VexVVVV|<sd:vexw>|Disp8MemShift=3|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM, RegXMM }
2311 vmovlp<sd>, 0x<sd:ppfx>13, AVX512F, Modrm|EVexLIG|Space0F|<sd:vexw>|Disp8MemShift=3|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex }
2312
2313 vmovq, 0xF37E, AVX512F, Load|Modrm|EVex=2|Space0F|VexW1|Disp8MemShift=3|NoSuf, { Qword|Unspecified|BaseIndex|RegXMM, RegXMM }
2314 vmovq, 0x66D6, AVX512F, Modrm|EVex=2|Space0F|VexW1|Disp8MemShift=3|NoSuf, { RegXMM, Qword|Unspecified|BaseIndex|RegXMM }
2315
2316 vmovs<sdh>, 0x<sdh:spfx>10, <sdh:cpu>, D|Modrm|EVexLIG|Masking|<sdh:spc1>|<sdh:vexw>|Disp8MemShift|NoSuf, { <sdh:elem>|Unspecified|BaseIndex, RegXMM }
2317 vmovs<sdh>, 0x<sdh:spfx>10, <sdh:cpu>, D|Modrm|EVexLIG|Masking|<sdh:spc1>|VexVVVV|<sdh:vexw>|NoSuf, { RegXMM, RegXMM, RegXMM }
2318
2319 vmovshdup, 0xF316, AVX512F, Modrm|Masking|Space0F|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2320 vmovsldup, 0xF312, AVX512F, Modrm|Masking|Space0F|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2321
2322 vpabs<dq>, 0x661e | <dq:opc>, AVX512F, Modrm|Masking|Space0F38|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2323 vpaddd, 0x66FE, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2324 vpaddq, 0x66d4, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2325 vpand<dq>, 0x66db, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2326 vpandn<dq>, 0x66df, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2327 vpmuludq, 0x66f4, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2328 vpor<dq>, 0x66eb, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2329 vpsub<dq>, 0x66fa | <dq:opc>, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2330 vpunpckhdq, 0x666A, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2331 vpunpckhqdq, 0x666d, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2332 vpunpckldq, 0x6662, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2333 vpunpcklqdq, 0x666c, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2334 vpxor<dq>, 0x66ef, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2335
2336 <irel:imm, eq:0, lt:1, le:2, neq:4, nlt:5, nle:6>
2337
2338 vpcmpeqd, 0x6676, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2339 vpcmpeqq, 0x6629, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2340 vpcmpgtd, 0x6666, AVX512F, Modrm|Masking|Space0F|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2341 vpcmpgtq, 0x6637, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2342 vpcmp<dq>, 0x661f, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2343 vpcmpu<dq>, 0x661e, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2344 vpcmp<irel><dq>, 0x661f/<irel:imm>, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2345 vpcmp<irel>u<dq>, 0x661e/<irel:imm>, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2346
2347 vptestm<dq>, 0x6627, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2348 vptestnm<dq>, 0xf327, AVX512F, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2349
2350 vpermilpd, 0x6605, AVX512F, Modrm|Masking|Space0F3A|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2351 vpermilpd, 0x660d, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2352
2353 vpermpd, 0x6616, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2354 vpermq, 0x6636, AVX512F, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2355
2356 vpmovdb, 0xF331, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegZMM, RegXMM|Unspecified|BaseIndex }
2357 vpmovsdb, 0xF321, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegZMM, RegXMM|Unspecified|BaseIndex }
2358 vpmovusdb, 0xF311, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegZMM, RegXMM|Unspecified|BaseIndex }
2359
2360 vpmovdw, 0xF333, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2361 vpmovsdw, 0xF323, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2362 vpmovusdw, 0xF313, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2363
2364 vpmovqb, 0xF332, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegZMM, RegXMM|Qword|Unspecified|BaseIndex }
2365 vpmovsqb, 0xF322, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegZMM, RegXMM|Qword|Unspecified|BaseIndex }
2366 vpmovusqb, 0xF312, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegZMM, RegXMM|Qword|Unspecified|BaseIndex }
2367
2368 vpmovqd, 0xF335, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2369 vpmovsqd, 0xF325, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2370 vpmovusqd, 0xF315, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2371
2372 vpmovqw, 0xF334, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegZMM, RegXMM|Unspecified|BaseIndex }
2373 vpmovsqw, 0xF324, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegZMM, RegXMM|Unspecified|BaseIndex }
2374 vpmovusqw, 0xF314, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegZMM, RegXMM|Unspecified|BaseIndex }
2375
2376 vpmovsxbd, 0x6621, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegZMM }
2377 vpmovzxbd, 0x6631, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegZMM }
2378
2379 vpmovsxbq, 0x6622, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegZMM }
2380 vpmovzxbq, 0x6632, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegZMM }
2381
2382 vpmovsxdq, 0x6625, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegYMM|Unspecified|BaseIndex, RegZMM }
2383 vpmovzxdq, 0x6635, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegYMM|Unspecified|BaseIndex, RegZMM }
2384
2385 vpmovsxwd, 0x6623, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=5|NoSuf, { RegYMM|Unspecified|BaseIndex, RegZMM }
2386 vpmovzxwd, 0x6633, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=5|NoSuf, { RegYMM|Unspecified|BaseIndex, RegZMM }
2387
2388 vpmovsxwq, 0x6624, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegZMM }
2389 vpmovzxwq, 0x6634, AVX512F, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegZMM }
2390
2391 vprol<dq>, 0x6672/1, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2392 vpror<dq>, 0x6672/0, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2393
2394 vpshufd, 0x6670, AVX512F, Modrm|Masking|Space0F|VexW=1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2395
2396 vpsll<dq>, 0x66f2 | <dq:opc>, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Disp8MemShift=4|CheckOperandSize|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2397 vpsll<dq>, 0x6672 | <dq:opc>/6, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2398 vpsra<dq>, 0x66e2, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Disp8MemShift=4|CheckOperandSize|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2399 vpsra<dq>, 0x6672/4, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2400 vpsrl<dq>, 0x66d2 | <dq:opc>, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Disp8MemShift=4|CheckOperandSize|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2401 vpsrl<dq>, 0x6672 | <dq:opc>/2, AVX512F, Modrm|Masking|Space0F|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2402
2403 vrcp14p<sd>, 0x664C, AVX512F, Modrm|Masking|Space0F38|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2404 vrcp14s<sd>, 0x664D, AVX512F, Modrm|EVexLIG|Masking|Space0F38|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf, { RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2405
2406 vrsqrt14p<sd>, 0x664E, AVX512F, Modrm|Masking|Space0F38|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2407 vrsqrt14s<sd>, 0x664F, AVX512F, Modrm|EVexLIG|Masking|Space0F38|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf, { RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2408
2409 vshuff32x4, 0x6623, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2410 vshufi32x4, 0x6643, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2411
2412 vshuff64x2, 0x6623, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2413 vshufi64x2, 0x6643, AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2414
2415 vshufp<sd>, 0x<sd:ppfx>C6, AVX512F, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2416
2417 vunpckhp<sd>, 0x<sd:ppfx>15, AVX512F, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2418 vunpcklp<sd>, 0x<sd:ppfx>14, AVX512F, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2419
2420 // AVX512F instructions end.
2421
2422 // AVX512CD instructions.
2423
2424 vpbroadcastmb2q, 0xF32A, AVX512CD, Modrm|Space0F38|EVex=5|VexW=2|NoSuf, { RegMask, RegXMM|RegYMM|RegZMM }
2425 vpbroadcastmw2d, 0xF33A, AVX512CD, Modrm|Space0F38|EVex=5|VexW=1|NoSuf, { RegMask, RegXMM|RegYMM|RegZMM }
2426
2427 vpconflict<dq>, 0x66c4, AVX512CD, Modrm|Masking|Space0F38|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2428
2429 vplzcnt<dq>, 0x6644, AVX512CD, Modrm|Masking|Space0F38|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2430
2431 // AVX512CD instructions end.
2432
2433 // AVX512ER instructions.
2434
2435 vexp2p<sd>, 0x66C8, AVX512ER, Modrm|EVex512|Masking|Space0F38|<sd:vexw>|Broadcast|Disp8MemShift=6|NoSuf|SAE, { RegZMM|<sd:elem>|Unspecified|BaseIndex, RegZMM }
2436
2437 vrcp28p<sd>, 0x66CA, AVX512ER, Modrm|EVex512|Masking|Space0F38|<sd:vexw>|Broadcast|Disp8MemShift=6|NoSuf|SAE, { RegZMM|<sd:elem>|Unspecified|BaseIndex, RegZMM }
2438 vrcp28s<sd>, 0x66CB, AVX512ER, Modrm|EVexLIG|Masking|Space0F38|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2439
2440 vrsqrt28p<sd>, 0x66CC, AVX512ER, Modrm|EVex512|Masking|Space0F38|<sd:vexw>|Broadcast|Disp8MemShift=6|NoSuf|SAE, { RegZMM|<sd:elem>|Unspecified|BaseIndex, RegZMM }
2441 vrsqrt28s<sd>, 0x66CD, AVX512ER, Modrm|EVexLIG|Masking|Space0F38|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf|SAE, { RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2442
2443 // AVX512ER instructions end.
2444
2445 // AVX512PF instructions.
2446
2447 vgatherpf0dpd, 0x66C6/1, AVX512PF, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex }
2448 vgatherpf0dps, 0x66C6/1, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex }
2449 vgatherpf0qp<sd>, 0x66C7/1, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|<sd:vexw>|Disp8MemShift|VecSIB512|NoSuf, { <sd:elem>|Unspecified|BaseIndex }
2450 vgatherpf1dpd, 0x66C6/2, AVX512PF, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex }
2451 vgatherpf1dps, 0x66C6/2, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex }
2452 vgatherpf1qp<sd>, 0x66C7/2, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|<sd:vexw>|Disp8MemShift|VecSIB512|NoSuf, { <sd:elem>|Unspecified|BaseIndex }
2453
2454 vscatterpf0dpd, 0x66C6/5, AVX512PF, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex }
2455 vscatterpf0dps, 0x66C6/5, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex }
2456 vscatterpf0qp<sd>, 0x66C7/5, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|<sd:vexw>|Disp8MemShift|VecSIB512|NoSuf, { <sd:elem>|Unspecified|BaseIndex }
2457 vscatterpf1dpd, 0x66C6/6, AVX512PF, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex }
2458 vscatterpf1dps, 0x66C6/6, AVX512PF, Modrm|EVex=1|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB512|NoSuf, { Dword|Unspecified|BaseIndex }
2459 vscatterpf1qp<sd>, 0x66C7/6, AVX512PF, Modrm|EVex512|Masking|NoDefMask|Space0F38|<sd:vexw>|Disp8MemShift|VecSIB512|NoSuf, { <sd:elem>|Unspecified|BaseIndex }
2460
2461 // AVX512PF instructions end.
2462
2463 // PREFETCHWT1 instructions.
2464
2465 prefetchwt1, 0x0F0D/2, PREFETCHWT1, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
2466
2467 // PREFETCHWT1 instructions end.
2468
2469 // CLFLUSHOPT instructions.
2470
2471 clflushopt, 0x660fae/7, ClflushOpt, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
2472
2473 // CLFLUSHOPT instructions end.
2474
2475 // XSAVES/XRSTORS instructions.
2476
2477 xrstors, 0xfc7/3, XSAVES, Modrm|NoSuf, { Unspecified|BaseIndex }
2478 xrstors64, 0xfc7/3, XSAVES&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
2479 xsaves, 0xfc7/5, XSAVES, Modrm|NoSuf, { Unspecified|BaseIndex }
2480 xsaves64, 0xfc7/5, XSAVES&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
2481
2482 // XSAVES instructions end.
2483
2484 // XSAVEC instructions.
2485
2486 xsavec, 0xfc7/4, XSAVEC, Modrm|NoSuf, { Unspecified|BaseIndex }
2487 xsavec64, 0xfc7/4, XSAVEC&x64, Modrm|NoSuf|Size64, { Unspecified|BaseIndex }
2488
2489 // XSAVEC instructions end.
2490
2491 // SGX instructions.
2492
2493 encls, 0xf01cf, SE1, NoSuf, {}
2494 enclu, 0xf01d7, SE1, NoSuf, {}
2495 enclv, 0xf01c0, SE1, NoSuf, {}
2496
2497 // SGX instructions end.
2498
2499 // AVX512VL instructions.
2500
2501 vgatherdpd, 0x6692, AVX512VL, Modrm|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB128|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM|RegYMM }
2502 vgatherdps, 0x6692, AVX512VL, Modrm|EVex=2|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB128|NoSuf, { Dword|Unspecified|BaseIndex, RegXMM }
2503 vgatherdps, 0x6692, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { Dword|Unspecified|BaseIndex, RegYMM }
2504 vgatherqp<sd>, 0x6693, AVX512VL, Modrm|EVex128|Masking|NoDefMask|Space0F38|<sd:vexw>|Disp8MemShift|VecSIB128|NoSuf, { <sd:elem>|Unspecified|BaseIndex, RegXMM }
2505 vgatherqpd, 0x6693, AVX512VL, Modrm|EVex256|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex, RegYMM }
2506 vgatherqps, 0x6693, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { Dword|Unspecified|BaseIndex, RegXMM }
2507 vpgatherdd, 0x6690, AVX512VL, Modrm|EVex=2|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB128|NoSuf, { Dword|Unspecified|BaseIndex, RegXMM }
2508 vpgatherdd, 0x6690, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { Dword|Unspecified|BaseIndex, RegYMM }
2509 vpgatherdq, 0x6690, AVX512VL, Modrm|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB128|NoSuf, { Qword|Unspecified|BaseIndex, RegXMM|RegYMM }
2510 vpgatherq<dq>, 0x6691, AVX512VL, Modrm|EVex128|Masking|NoDefMask|Space0F38|<dq:vexw>|Disp8MemShift|VecSIB128|NoSuf, { <dq:elem>|Unspecified|BaseIndex, RegXMM }
2511 vpgatherqd, 0x6691, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { Dword|Unspecified|BaseIndex, RegXMM }
2512 vpgatherqq, 0x6691, AVX512VL, Modrm|EVex256|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { Qword|Unspecified|BaseIndex, RegYMM }
2513
2514 vpscatterdd, 0x66A0, AVX512VL, Modrm|EVex=2|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB128|NoSuf, { RegXMM, Dword|Unspecified|BaseIndex }
2515 vpscatterdd, 0x66A0, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { RegYMM, Dword|Unspecified|BaseIndex }
2516 vpscatterdq, 0x66A0, AVX512VL, Modrm|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB128|NoSuf, { RegXMM|RegYMM, Qword|Unspecified|BaseIndex }
2517 vpscatterq<dq>, 0x66A1, AVX512VL, Modrm|EVex128|Masking|NoDefMask|Space0F38|<dq:vexw>|Disp8MemShift|VecSIB128|NoSuf, { RegXMM, <dq:elem>|Unspecified|BaseIndex }
2518 vpscatterqd, 0x66A1, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { RegXMM, Dword|Unspecified|BaseIndex }
2519 vpscatterqq, 0x66A1, AVX512VL, Modrm|EVex256|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { RegYMM, Qword|Unspecified|BaseIndex }
2520 vscatterdpd, 0x66A2, AVX512VL, Modrm|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB128|NoSuf, { RegXMM|RegYMM, Qword|Unspecified|BaseIndex }
2521 vscatterdps, 0x66A2, AVX512VL, Modrm|EVex=2|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB128|NoSuf, { RegXMM, Dword|Unspecified|BaseIndex }
2522 vscatterdps, 0x66A2, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { RegYMM, Dword|Unspecified|BaseIndex }
2523 vscatterqp<sd>, 0x66A3, AVX512VL, Modrm|EVex128|Masking|NoDefMask|Space0F38|<sd:vexw>|Disp8MemShift|VecSIB128|NoSuf, { RegXMM, <sd:elem>|Unspecified|BaseIndex }
2524 vscatterqpd, 0x66A3, AVX512VL, Modrm|EVex256|Masking|NoDefMask|Space0F38|VexW1|Disp8MemShift=3|VecSIB256|NoSuf, { RegYMM, Qword|Unspecified|BaseIndex }
2525 vscatterqps, 0x66A3, AVX512VL, Modrm|EVex=3|Masking|NoDefMask|Space0F38|VexW0|Disp8MemShift=2|VecSIB256|NoSuf, { RegXMM, Dword|Unspecified|BaseIndex }
2526
2527 vcvtdq2pd, 0xF3E6, AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2528 vcvtdq2pd, 0xF3E6, AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2529 vcvtudq2pd, 0xF37A, AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2530 vcvtudq2pd, 0xF37A, AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2531
2532 vcvtph2ps, 0x6613, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
2533 vcvtph2ps, 0x6613, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
2534
2535 vcvtps2pd, 0x5A, AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2536 vcvtps2pd, 0x5A, AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2537
2538 vcvtps2ph, 0x661D, AVX512VL, Modrm|EVex128|Masking|Space0F3A|VexW0|Disp8MemShift=3|NoSuf, { Imm8, RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2539 vcvtps2ph, 0x661D, AVX512VL, Modrm|EVex256|Masking|Space0F3A|VexW0|Disp8MemShift=4|NoSuf, { Imm8, RegYMM, RegXMM|Unspecified|BaseIndex }
2540
2541 vmovddup, 0xF212, AVX512VL, Modrm|EVex=2|Masking|Space0F|VexW1|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
2542
2543 vpmovdb, 0xF331, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM, RegXMM|Dword|Unspecified|BaseIndex }
2544 vpmovdb, 0xF331, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegYMM, RegXMM|Qword|Unspecified|BaseIndex }
2545 vpmovsdb, 0xF321, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM, RegXMM|Dword|Unspecified|BaseIndex }
2546 vpmovsdb, 0xF321, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegYMM, RegXMM|Qword|Unspecified|BaseIndex }
2547 vpmovusdb, 0xF311, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM, RegXMM|Dword|Unspecified|BaseIndex }
2548 vpmovusdb, 0xF311, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegYMM, RegXMM|Qword|Unspecified|BaseIndex }
2549
2550 vpmovdw, 0xF333, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2551 vpmovdw, 0xF333, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2552 vpmovsdw, 0xF323, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2553 vpmovsdw, 0xF323, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2554 vpmovusdw, 0xF313, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2555 vpmovusdw, 0xF313, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2556
2557 vpmovqb, 0xF332, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=1|NoSuf, { RegXMM, RegXMM|Word|Unspecified|BaseIndex }
2558 vpmovqb, 0xF332, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegYMM, RegXMM|Dword|Unspecified|BaseIndex }
2559 vpmovsqb, 0xF322, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=1|NoSuf, { RegXMM, RegXMM|Word|Unspecified|BaseIndex }
2560 vpmovsqb, 0xF322, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegYMM, RegXMM|Dword|Unspecified|BaseIndex }
2561 vpmovusqb, 0xF312, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=1|NoSuf, { RegXMM, RegXMM|Word|Unspecified|BaseIndex }
2562 vpmovusqb, 0xF312, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegYMM, RegXMM|Dword|Unspecified|BaseIndex }
2563
2564 vpmovqd, 0xF335, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2565 vpmovqd, 0xF335, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2566 vpmovsqd, 0xF325, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2567 vpmovsqd, 0xF325, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2568 vpmovusqd, 0xF315, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2569 vpmovusqd, 0xF315, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2570
2571 vpmovqw, 0xF334, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM, RegXMM|Dword|Unspecified|BaseIndex }
2572 vpmovqw, 0xF334, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegYMM, RegXMM|Qword|Unspecified|BaseIndex }
2573 vpmovsqw, 0xF324, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM, RegXMM|Dword|Unspecified|BaseIndex }
2574 vpmovsqw, 0xF324, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegYMM, RegXMM|Qword|Unspecified|BaseIndex }
2575 vpmovusqw, 0xF314, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=2|NoSuf, { RegXMM, RegXMM|Dword|Unspecified|BaseIndex }
2576 vpmovusqw, 0xF314, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegYMM, RegXMM|Qword|Unspecified|BaseIndex }
2577
2578 vpmovsxdq, 0x6625, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
2579 vpmovsxdq, 0x6625, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
2580 vpmovzxdq, 0x6635, AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
2581 vpmovzxdq, 0x6635, AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
2582
2583 // AVX512VL instructions end.
2584
2585 // AVX512BW instructions.
2586
2587 kadd<dq>, 0x<dq:kpfx>4a, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask, RegMask }
2588 kand<dq>, 0x<dq:kpfx>41, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask, RegMask }
2589 kandn<dq>, 0x<dq:kpfx>42, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|<dq:kvsz>|NoSuf|Optimize, { RegMask, RegMask, RegMask }
2590 kmov<dq>, 0x<dq:kpfx>90, AVX512BW, Modrm|Vex128|Space0F|VexW1|<dq:kvsz>|NoSuf, { RegMask|<dq:elem>|Unspecified|BaseIndex, RegMask }
2591 kmov<dq>, 0x<dq:kpfx>91, AVX512BW, Modrm|Vex128|Space0F|VexW1|<dq:kvsz>|NoSuf, { RegMask, <dq:elem>|Unspecified|BaseIndex }
2592 kmov<dq>, 0xf292, AVX512BW, D|Modrm|Vex128|Space0F|<dq:vexw64>|<dq:kvsz>|NoSuf, { <dq:gpr>, RegMask }
2593 knot<dq>, 0x<dq:kpfx>44, AVX512BW, Modrm|Vex128|Space0F|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask }
2594 kor<dq>, 0x<dq:kpfx>45, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask, RegMask }
2595 kortest<dq>, 0x<dq:kpfx>98, AVX512BW, Modrm|Vex128|Space0F|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask }
2596 ktest<dq>, 0x<dq:kpfx>99, AVX512BW, Modrm|Vex128|Space0F|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask }
2597 kxnor<dq>, 0x<dq:kpfx>46, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|<dq:kvsz>|NoSuf, { RegMask, RegMask, RegMask }
2598 kxor<dq>, 0x<dq:kpfx>47, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|<dq:kvsz>|NoSuf|Optimize, { RegMask, RegMask, RegMask }
2599 kunpckdq, 0x4B, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW1|Vsz512|NoSuf, { RegMask, RegMask, RegMask }
2600 kunpckwd, 0x4B, AVX512BW, Modrm|Vex256|Space0F|VexVVVV|VexW0|Vsz256|NoSuf, { RegMask, RegMask, RegMask }
2601 kshiftl<dq>, 0x6633, AVX512BW, Modrm|Vex128|Space0F3A|<dq:vexw>|<dq:kvsz>|NoSuf, { Imm8, RegMask, RegMask }
2602 kshiftr<dq>, 0x6631, AVX512BW, Modrm|Vex128|Space0F3A|<dq:vexw>|<dq:kvsz>|NoSuf, { Imm8, RegMask, RegMask }
2603
2604 vdbpsadbw, 0x6642, AVX512BW, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2605
2606 vmovdqu8, 0xF26F, AVX512BW, D|Modrm|Masking|Space0F|VexW=1|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2607 vmovdqu16, 0xF26F, AVX512BW, D|Modrm|Masking|Space0F|VexW=2|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2608
2609 vpabs<bw>, 0x661c | <bw:opc>, AVX512BW, Modrm|Masking|Space0F38|VexWIG|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2610 vpmaxsb, 0x663C, AVX512BW, Modrm|Masking|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2611 vpminsb, 0x6638, AVX512BW, Modrm|Masking|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2612 vpshufb, 0x6600, AVX512BW, Modrm|Masking|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2613
2614 vpmaddubsw, 0x6604, AVX512BW, Modrm|Masking|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2615 vpmaxuw, 0x663E, AVX512BW, Modrm|Masking|VexWIG|Space0F38|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2616 vpminuw, 0x663A, AVX512BW, Modrm|Masking|VexWIG|Space0F38|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2617 vpmulhrsw, 0x660B, AVX512BW, Modrm|Masking|Space0F38|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2618
2619 vpackssdw, 0x666B, AVX512BW, Modrm|Masking|Space0F|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2620 vpacksswb, 0x6663, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2621 vpackuswb, 0x6667, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2622 vpackusdw, 0x662B, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2623
2624 vpadd<bw>, 0x66fc | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2625 vpadds<bw>, 0x66ec | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2626 vpaddus<bw>, 0x66dc | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2627 vpavg<bw>, 0x66e0 | (3 * <bw:opc>), AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2628 vpmaxub, 0x66DE, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2629 vpminub, 0x66DA, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2630 vpsub<bw>, 0x66f8 | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2631 vpsubs<bw>, 0x66e8 | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2632 vpsubus<bw>, 0x66d8 | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2633 vpunpckhbw, 0x6668, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2634 vpunpcklbw, 0x6660, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2635
2636 vpmaxsw, 0x66EE, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2637 vpminsw, 0x66EA, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2638 vpmulhuw, 0x66E4, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2639 vpmulhw, 0x66E5, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2640 vpmullw, 0x66D5, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2641 vpsllw, 0x6671/6, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2642 vpsllw, 0x66F1, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8MemShift=4|CheckOperandSize|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2643 vpsraw, 0x6671/4, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2644 vpsraw, 0x66E1, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8MemShift=4|CheckOperandSize|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2645 vpsrlw, 0x6671/2, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2646 vpsrlw, 0x66D1, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8MemShift=4|CheckOperandSize|NoSuf, { RegXMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2647 vpunpckhwd, 0x6669, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2648 vpunpcklwd, 0x6661, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2649
2650 vpalignr, 0x660F, AVX512BW, Modrm|Masking|Space0F3A|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2651
2652 vpblendm<bw>, 0x6666, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2653 vpbroadcast<bw>, 0x6678 | <bw:opc>, AVX512BW, Modrm|Masking|Space0F38|VexW0|Disp8MemShift|NoSuf, { RegXMM|<bw:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2654 vpbroadcast<bw>, 0x667a | <bw:opc>, AVX512BW, Modrm|Masking|Space0F38|VexW0|NoSuf, { Reg32, RegXMM|RegYMM|RegZMM }
2655
2656 vpermi2<bw>, 0x6675, <bw:cpubmi>, Modrm|Masking|Space0F38|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2657 vpermt2<bw>, 0x667d, <bw:cpubmi>, Modrm|Masking|Space0F38|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2658 vperm<bw>, 0x668d, <bw:cpubmi>, Modrm|Masking|Space0F38|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2659 vpsllvw, 0x6612, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2660 vpsravw, 0x6611, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2661 vpsrlvw, 0x6610, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2662
2663 vpcmpeq<bw>, 0x6674 | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2664 vpcmpgt<bw>, 0x6664 | <bw:opc>, AVX512BW, Modrm|Masking|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2665 vpcmp<bw>, 0x663f, AVX512BW, Modrm|Masking|Space0F3A|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2666 vpcmpu<bw>, 0x663e, AVX512BW, Modrm|Masking|Space0F3A|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2667 vpcmp<irel><bw>, 0x663f/<irel:imm>, AVX512BW, Modrm|Masking|Space0F3A|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2668 vpcmp<irel>u<bw>, 0x663e/<irel:imm>, AVX512BW, Modrm|Masking|Space0F3A|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2669
2670 vpslldq, 0x6673/7, AVX512BW, Modrm|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2671 vpsrldq, 0x6673/3, AVX512BW, Modrm|Space0F|VexWIG|VexVVVV|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2672
2673 vpextrw, 0x66C5, AVX512BW, Load|Modrm|EVex128|Space0F|VexWIG|NoSuf, { Imm8, RegXMM, Reg32|Reg64 }
2674 vpextr<bw>, 0x6614 | <bw:opc>, AVX512BW, RegMem|EVex128|Space0F3A|VexWIG|NoSuf, { Imm8, RegXMM, Reg32|Reg64 }
2675 vpextr<bw>, 0x6614 | <bw:opc>, AVX512BW, Modrm|EVex128|Space0F3A|VexWIG|Disp8MemShift|NoSuf, { Imm8, RegXMM, <bw:elem>|Unspecified|BaseIndex }
2676
2677 vpinsrw, 0x66C4, AVX512BW, Modrm|EVex128|Space0F|VexWIG|VexVVVV|NoSuf, { Imm8, Reg32|Reg64, RegXMM, RegXMM }
2678 vpinsrw, 0x66C4, AVX512BW, Modrm|EVex128|Space0F|VexWIG|VexVVVV|Disp8MemShift=1|NoSuf, { Imm8, Word|Unspecified|BaseIndex, RegXMM, RegXMM }
2679 vpinsrb, 0x6620, AVX512BW, Modrm|EVex128|Space0F3A|VexWIG|VexVVVV|NoSuf, { Imm8, Reg32|Reg64, RegXMM, RegXMM }
2680 vpinsrb, 0x6620, AVX512BW, Modrm|EVex128|Space0F3A|VexWIG|VexVVVV|NoSuf, { Imm8, Byte|Unspecified|BaseIndex, RegXMM, RegXMM }
2681
2682 vpmaddwd, 0x66F5, AVX512BW, Modrm|Masking|Space0F|VexVVVV|VexWIG|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2683
2684 vpmov<bw>2m, 0xf329, AVX512BW, Modrm|EVexDYN|Space0F38|<bw:vexw>|NoSuf, { RegXMM|RegYMM|RegZMM, RegMask }
2685 vpmovm2<bw>, 0xf328, AVX512BW, Modrm|EVexDYN|Space0F38|<bw:vexw>|NoSuf, { RegMask, RegXMM|RegYMM|RegZMM }
2686
2687 vpmovswb, 0xF320, AVX512BW, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2688 vpmovswb, 0xF320, AVX512BW&AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2689 vpmovswb, 0xF320, AVX512BW&AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2690
2691 vpmovuswb, 0xF310, AVX512BW, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2692 vpmovuswb, 0xF310, AVX512BW&AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2693 vpmovuswb, 0xF310, AVX512BW&AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2694
2695 vpmovwb, 0xF330, AVX512BW, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { RegZMM, RegYMM|Unspecified|BaseIndex }
2696 vpmovwb, 0xF330, AVX512BW&AVX512VL, Modrm|EVex=2|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM, RegXMM|Qword|Unspecified|BaseIndex }
2697 vpmovwb, 0xF330, AVX512BW&AVX512VL, Modrm|EVex=3|Masking|Space0F38|VexW=1|Disp8MemShift=4|NoSuf, { RegYMM, RegXMM|Unspecified|BaseIndex }
2698
2699 vpmovsxbw, 0x6620, AVX512BW, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=5|NoSuf, { RegYMM|Unspecified|BaseIndex, RegZMM }
2700 vpmovsxbw, 0x6620, AVX512BW&AVX512VL, Modrm|EVex=2|Masking|VexWIG|Space0F38|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
2701 vpmovsxbw, 0x6620, AVX512BW&AVX512VL, Modrm|EVex=3|Masking|VexWIG|Space0F38|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
2702 vpmovzxbw, 0x6630, AVX512BW, Modrm|EVex=1|Masking|Space0F38|VexWIG|Disp8MemShift=5|NoSuf, { RegYMM|Unspecified|BaseIndex, RegZMM }
2703 vpmovzxbw, 0x6630, AVX512BW&AVX512VL, Modrm|EVex=2|Masking|VexWIG|Space0F38|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM }
2704 vpmovzxbw, 0x6630, AVX512BW&AVX512VL, Modrm|EVex=3|Masking|VexWIG|Space0F38|Disp8MemShift=4|NoSuf, { RegXMM|Unspecified|BaseIndex, RegYMM }
2705
2706 vpsadbw, 0x66F6, AVX512BW, Modrm|Space0F|VexVVVV|VexWIG|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2707
2708 vpshufhw, 0xF370, AVX512BW, Modrm|Masking|Space0F|VexWIG|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2709 vpshuflw, 0xF270, AVX512BW, Modrm|Masking|Space0F|VexWIG|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2710
2711 vptestm<bw>, 0x6626, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2712 vptestnm<bw>, 0xf326, AVX512BW, Modrm|Masking|Space0F38|VexVVVV|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2713
2714 // AVX512BW instructions end.
2715
2716 // AVX512DQ instructions.
2717
2718 <xyz:vl:attr:sr:att:src, +
2719 $i::Disp8ShiftVL|IntelSyntax:StaticRounding|SAE::RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, +
2720 $a::Disp8ShiftVL|ATTSyntax:StaticRounding|SAE::RegXMM|RegYMM|RegZMM|BaseIndex, +
2721 z::EVex512|Disp8MemShift=6:StaticRounding|SAE:ATTSyntax:RegZMM|Unspecified|BaseIndex, +
2722 x:AVX512VL:EVex128|Disp8MemShift=4::ATTSyntax:RegXMM|Unspecified|BaseIndex, +
2723 y:AVX512VL:EVex256|Disp8MemShift=5::ATTSyntax:RegYMM|Unspecified|BaseIndex>
2724
2725 kadd<bw>, 0x<bw:kpfx>4A, AVX512DQ, Modrm|Vex256|Space0F|VexVVVV|VexW0|NoSuf, { RegMask, RegMask, RegMask }
2726 ktest<bw>, 0x<bw:kpfx>99, AVX512DQ, Modrm|Vex128|Space0F|VexW0|NoSuf, { RegMask, RegMask }
2727
2728 vandnp<sd>, 0x<sd:ppfx>55, AVX512DQ, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2729 vandp<sd>, 0x<sd:ppfx>54, AVX512DQ, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2730 vorp<sd>, 0x<sd:ppfx>56, AVX512DQ, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2731 vxorp<sd>, 0x<sd:ppfx>57, AVX512DQ, Modrm|Masking|Space0F|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|Optimize, { RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2732
2733 vbroadcastf32x2, 0x6619, AVX512DQ, Modrm|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegYMM|RegZMM }
2734 vbroadcastf32x8, 0x661B, AVX512DQ, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { YMMword|Unspecified|BaseIndex, RegZMM }
2735 vbroadcasti32x2, 0x6659, AVX512DQ, Modrm|Masking|Space0F38|VexW0|Disp8MemShift=3|NoSuf, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2736 vbroadcasti32x8, 0x665B, AVX512DQ, Modrm|EVex=1|Masking|Space0F38|VexW=1|Disp8MemShift=5|NoSuf, { YMMword|Unspecified|BaseIndex, RegZMM }
2737
2738 vbroadcastf64x2, 0x661A, AVX512DQ, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=4|NoSuf, { XMMword|Unspecified|BaseIndex, RegYMM|RegZMM }
2739 vbroadcasti64x2, 0x665A, AVX512DQ, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=4|NoSuf, { XMMword|Unspecified|BaseIndex, RegYMM|RegZMM }
2740
2741 vcvtpd2qq, 0x667B, AVX512DQ, Modrm|Masking|Space0F|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2742 vcvtpd2uqq, 0x6679, AVX512DQ, Modrm|Masking|Space0F|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2743
2744 vcvtps2qq, 0x667B, AVX512DQ, Modrm|EVex512|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=5|NoSuf|StaticRounding|SAE, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2745 vcvtps2qq, 0x667B, AVX512DQ&AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2746 vcvtps2qq, 0x667B, AVX512DQ&AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2747 vcvtps2uqq, 0x6679, AVX512DQ, Modrm|EVex512|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=5|NoSuf|StaticRounding|SAE, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2748 vcvtps2uqq, 0x6679, AVX512DQ&AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2749 vcvtps2uqq, 0x6679, AVX512DQ&AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2750
2751 vcvtqq2pd, 0xF3E6, AVX512DQ, Modrm|Masking|Space0F|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2752 vcvtuqq2pd, 0xF37A, AVX512DQ, Modrm|Masking|Space0F|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2753
2754 vcvtqq2ps<Exy>, 0x5b, AVX512DQ&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Qword, <Exy:dst> }
2755
2756 vcvttpd2qq, 0x667A, AVX512DQ, Modrm|Masking|Space0F|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2757 vcvttpd2uqq, 0x6678, AVX512DQ, Modrm|Masking|Space0F|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2758
2759 vcvttps2qq, 0x667A, AVX512DQ, Modrm|EVex512|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2760 vcvttps2qq, 0x667A, AVX512DQ&AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2761 vcvttps2qq, 0x667A, AVX512DQ&AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2762 vcvttps2uqq, 0x6678, AVX512DQ, Modrm|EVex512|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Dword|Unspecified|BaseIndex, RegZMM }
2763 vcvttps2uqq, 0x6678, AVX512DQ&AVX512VL, Modrm|EVex128|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Dword|Qword|Unspecified|BaseIndex, RegXMM }
2764 vcvttps2uqq, 0x6678, AVX512DQ&AVX512VL, Modrm|EVex256|Masking|Space0F|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Dword|Unspecified|BaseIndex, RegYMM }
2765
2766 vcvtuqq2ps<Exy>, 0xf27a, AVX512DQ&<Exy:vl>, Modrm|<Exy:attr>|Masking|Space0F|VexW1|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Qword, <Exy:dst> }
2767
2768 vextractf32x8, 0x661B, AVX512DQ, Modrm|EVex=1|Masking|Space0F3A|VexW=1|Disp8MemShift=5|NoSuf, { Imm8, RegZMM, RegYMM|Unspecified|BaseIndex }
2769 vextracti32x8, 0x663B, AVX512DQ, Modrm|EVex=1|Masking|Space0F3A|VexW=1|Disp8MemShift=5|NoSuf, { Imm8, RegZMM, RegYMM|Unspecified|BaseIndex }
2770 vinsertf32x8, 0x661A, AVX512DQ, Modrm|EVex512|Masking|Space0F3A|VexVVVV|VexW0|Disp8MemShift=5|NoSuf, { Imm8, RegYMM|Unspecified|BaseIndex, RegZMM, RegZMM }
2771 vinserti32x8, 0x663A, AVX512DQ, Modrm|EVex512|Masking|Space0F3A|VexVVVV|VexW0|Disp8MemShift=5|NoSuf, { Imm8, RegYMM|Unspecified|BaseIndex, RegZMM, RegZMM }
2772
2773 vpextr<dq>, 0x6616, AVX512DQ&<dq:cpu64>, Modrm|EVex128|Space0F3A|<dq:vexw64>|Disp8MemShift|NoSuf, { Imm8, RegXMM, <dq:gpr>|Unspecified|BaseIndex }
2774 vpinsr<dq>, 0x6622, AVX512DQ&<dq:cpu64>, Modrm|EVex128|Space0F3A|VexVVVV|<dq:vexw64>|Disp8MemShift|NoSuf, { Imm8, <dq:gpr>|Unspecified|BaseIndex, RegXMM, RegXMM }
2775
2776 vextractf64x2, 0x6619, AVX512DQ, Modrm|Masking|Space0F3A|VexW=2|Disp8MemShift=4|NoSuf, { Imm8, RegYMM|RegZMM, RegXMM|Unspecified|BaseIndex }
2777 vextracti64x2, 0x6639, AVX512DQ, Modrm|Masking|Space0F3A|VexW=2|Disp8MemShift=4|NoSuf, { Imm8, RegYMM|RegZMM, RegXMM|Unspecified|BaseIndex }
2778 vinsertf64x2, 0x6618, AVX512DQ, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Disp8MemShift=4|CheckOperandSize|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2779 vinserti64x2, 0x6638, AVX512DQ, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Disp8MemShift=4|CheckOperandSize|NoSuf, { Imm8, RegXMM|Unspecified|BaseIndex, RegYMM|RegZMM, RegYMM|RegZMM }
2780
2781 vfpclassp<sd>, 0x6666, AVX512DQ, Modrm|Masking|Space0F3A|<sd:vexw>|Broadcast|Disp8ShiftVL|NoSuf|IntelSyntax, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegMask }
2782 vfpclassp<sd>, 0x6666, AVX512DQ, Modrm|Masking|Space0F3A|<sd:vexw>|Broadcast|Disp8ShiftVL|NoSuf|ATTSyntax, { Imm8|Imm8S, RegXMM|RegYMM|RegZMM|<sd:elem>|BaseIndex, RegMask }
2783 vfpclassp<sd>z, 0x6666, AVX512DQ, Modrm|EVex512|Masking|Space0F3A|<sd:vexw>|Broadcast|Disp8MemShift=6|NoSuf, { Imm8|Imm8S, RegZMM|<sd:elem>|Unspecified|BaseIndex, RegMask }
2784 vfpclassp<sd>x, 0x6666, AVX512DQ&AVX512VL, Modrm|EVex128|Masking|Space0F3A|<sd:vexw>|Broadcast|Disp8MemShift=4|NoSuf, { Imm8|Imm8S, RegXMM|<sd:elem>|Unspecified|BaseIndex, RegMask }
2785 vfpclassp<sd>y, 0x6666, AVX512DQ&AVX512VL, Modrm|EVex256|Masking|Space0F3A|<sd:vexw>|Broadcast|Disp8MemShift=5|NoSuf, { Imm8|Imm8S, RegYMM|<sd:elem>|Unspecified|BaseIndex, RegMask }
2786 vfpclasss<sdh>, 0x<sdh:pfx>67, <sdh:cpudq>, Modrm|EVexLIG|Masking|Space0F3A|<sdh:vexw>|Disp8MemShift|NoSuf, { Imm8|Imm8S, RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegMask }
2787
2788 vpmov<dq>2m, 0xf339, AVX512DQ, Modrm|EVexDYN|Space0F38|<dq:vexw>|NoSuf, { RegXMM|RegYMM|RegZMM, RegMask }
2789 vpmovm2<dq>, 0xf338, AVX512DQ, Modrm|EVexDYN|Space0F38|<dq:vexw>|NoSuf, { RegMask, RegXMM|RegYMM|RegZMM }
2790
2791 vpmullq, 0x6640, AVX512DQ, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2792
2793 vrangep<sd>, 0x6650, AVX512DQ, Modrm|Masking|Space0F3A|VexVVVV|<sd:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8, RegXMM|RegYMM|RegZMM|<sd:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2794 vranges<sd>, 0x6651, AVX512DQ, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|<sd:vexw>|Disp8MemShift|NoSuf|SAE, { Imm8, RegXMM|<sd:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2795
2796 vreducep<sdh>, 0x<sdh:pfx>56, <sdh:cpudq>, Modrm|Masking|Space0F3A|<sdh:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8, RegXMM|RegYMM|RegZMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2797 vreduces<sdh>, 0x<sdh:pfx>57, <sdh:cpudq>, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|<sdh:vexw>|Disp8MemShift|NoSuf|SAE, { Imm8, RegXMM|<sdh:elem>|Unspecified|BaseIndex, RegXMM, RegXMM }
2798
2799 // AVX512DQ instructions end.
2800
2801 // CLWB instructions.
2802
2803 clwb, 0x660fae/6, CLWB, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
2804
2805 // CLWB instructions end.
2806
2807 // AVX512IFMA instructions
2808
2809 vpmadd52huq, 0x66B5, AVX512IFMA, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2810 vpmadd52luq, 0x66B4, AVX512IFMA, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2811
2812 // AVX512IFMA instructions end
2813
2814 // AVX-IFMA instructions.
2815
2816 vpmadd52huq, 0x66B5, AVX_IFMA, Modrm|Vex|Space0F38|VexVVVV|VexW1|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2817 vpmadd52luq, 0x66B4, AVX_IFMA, Modrm|Vex|Space0F38|VexVVVV|VexW1|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2818
2819 // AVX-IFMA instructions end.
2820
2821 // AVX512VBMI instructions
2822
2823 vpmultishiftqb, 0x6683, AVX512VBMI, Modrm|Masking|Space0F38|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2824
2825 // AVX512VBMI instructions end
2826
2827 // AVX512_4FMAPS instructions
2828
2829 v4fmaddps, 0xf29a, AVX512_4FMAPS, Modrm|EVex=1|Masking|Space0F38|VexVVVV|VexW0|Disp8MemShift=4|NoSuf|ImplicitQuadGroup, { XMMword|Unspecified|BaseIndex, RegZMM, RegZMM }
2830 v4fnmaddps, 0xf2aa, AVX512_4FMAPS, Modrm|EVex=1|Masking|Space0F38|VexVVVV|VexW0|Disp8MemShift=4|NoSuf|ImplicitQuadGroup, { XMMword|Unspecified|BaseIndex, RegZMM, RegZMM }
2831 v4fmaddss, 0xf29b, AVX512_4FMAPS, Modrm|EVex=4|Masking|Space0F38|VexVVVV|VexW0|Disp8MemShift=4|NoSuf|ImplicitQuadGroup, { XMMword|Unspecified|BaseIndex, RegXMM, RegXMM }
2832 v4fnmaddss, 0xf2ab, AVX512_4FMAPS, Modrm|EVex=4|Masking|Space0F38|VexVVVV|VexW0|Disp8MemShift=4|NoSuf|ImplicitQuadGroup, { XMMword|Unspecified|BaseIndex, RegXMM, RegXMM }
2833
2834 // AVX512_4FMAPS instructions end
2835
2836 // AVX512_4VNNIW instructions
2837
2838 vp4dpwssd, 0xf252, AVX512_4VNNIW, Modrm|EVex=1|Masking|Space0F38|VexVVVV|VexW0|Disp8MemShift=4|NoSuf|ImplicitQuadGroup, { XMMword|Unspecified|BaseIndex, RegZMM, RegZMM }
2839 vp4dpwssds, 0xf253, AVX512_4VNNIW, Modrm|EVex=1|Masking|Space0F38|VexVVVV|VexW0|Disp8MemShift=4|NoSuf|ImplicitQuadGroup, { XMMword|Unspecified|BaseIndex, RegZMM, RegZMM }
2840
2841 // AVX512_4VNNIW instructions end
2842
2843 // AVX512_VPOPCNTDQ instructions
2844
2845 vpopcnt<dq>, 0x6655, AVX512_VPOPCNTDQ, Modrm|Masking|Space0F38|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2846
2847 // AVX512_VPOPCNTDQ instructions end
2848
2849 // AVX512_VBMI2 instructions
2850
2851 vpcompressb, 0x6663, AVX512_VBMI2, Modrm|Masking|Space0F38|VexW=1|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex }
2852 vpcompressw, 0x6663, AVX512_VBMI2, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=1|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex }
2853
2854 vpexpandb, 0x6662, AVX512_VBMI2, Modrm|Masking|Space0F38|VexW=1|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2855 vpexpandw, 0x6662, AVX512_VBMI2, Modrm|Masking|Space0F38|VexW=2|Disp8MemShift=1|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2856
2857 vpshldv<dq>, 0x6671, AVX512_VBMI2, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2858 vpshldvw, 0x6670, AVX512_VBMI2, Modrm|Masking|Space0F38|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2859
2860 vpshrdv<dq>, 0x6673, AVX512_VBMI2, Modrm|Masking|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2861 vpshrdvw, 0x6672, AVX512_VBMI2, Modrm|Masking|Space0F38|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2862
2863 vpshld<dq>, 0x6671, AVX512_VBMI2, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2864 vpshldw, 0x6670, AVX512_VBMI2, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2865
2866 vpshrd<dq>, 0x6673, AVX512_VBMI2, Modrm|Masking|Space0F3A|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2867 vpshrdw, 0x6672, AVX512_VBMI2, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2868
2869 // AVX512_VBMI2 instructions end
2870
2871 // AVX512_VNNI instructions
2872
2873 vpdpbusd, 0x6650, AVX512_VNNI, Modrm|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2874 vpdpwssd, 0x6652, AVX512_VNNI, Modrm|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2875
2876 vpdpbusds, 0x6651, AVX512_VNNI, Modrm|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2877 vpdpwssds, 0x6653, AVX512_VNNI, Modrm|Masking|Space0F38|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2878
2879 // AVX512_VNNI instructions end
2880
2881 // AVX_VNNI instructions
2882
2883 vpdpbusd, 0x6650, AVX_VNNI, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
2884 vpdpwssd, 0x6652, AVX_VNNI, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
2885
2886 vpdpbusds, 0x6651, AVX_VNNI, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
2887 vpdpwssds, 0x6653, AVX_VNNI, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { Unspecified|BaseIndex|RegXMM|RegYMM, RegXMM|RegYMM, RegXMM|RegYMM }
2888
2889 // AVX_VNNI instructions end
2890
2891 // AVX-VNNI-INT8 instructions.
2892
2893 vpdpbuud, 0x50, AVX_VNNI_INT8, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2894 vpdpbuuds, 0x51, AVX_VNNI_INT8, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2895 vpdpbssd, 0xf250, AVX_VNNI_INT8, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2896 vpdpbssds, 0xf251, AVX_VNNI_INT8, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2897 vpdpbsud, 0xf350, AVX_VNNI_INT8, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2898 vpdpbsuds, 0xf351, AVX_VNNI_INT8, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2899
2900 // AVX-VNNI-INT8 instructions end.
2901
2902 // AVX-VNNI-INT16 instructions.
2903
2904 vpdpwuud, 0xd2, AVX_VNNI_INT16, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2905 vpdpwuuds, 0xd3, AVX_VNNI_INT16, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2906 vpdpwusd, 0x66d2, AVX_VNNI_INT16, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2907 vpdpwusds, 0x66d3, AVX_VNNI_INT16, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2908 vpdpwsud, 0xf3d2, AVX_VNNI_INT16, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2909 vpdpwsuds, 0xf3d3, AVX_VNNI_INT16, Modrm|Vex|Space0F38|VexVVVV|VexW0|CheckOperandSize|NoSuf, { RegXMM|RegYMM|Unspecified|BaseIndex, RegXMM|RegYMM, RegXMM|RegYMM }
2910
2911 // AVX-VNNI-INT16 instructions end.
2912
2913 // AVX512_BITALG instructions
2914
2915 vpopcnt<bw>, 0x6654, AVX512_BITALG, Modrm|Masking|Space0F38|<bw:vexw>|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
2916
2917 vpshufbitqmb, 0x668f, AVX512_BITALG, Modrm|Masking|Space0F38|VexVVVV|VexW0|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
2918
2919 // AVX512_BITALG instructions end
2920
2921 // AVX512 + GFNI instructions
2922
2923 vgf2p8affineinvqb, 0x66cf, GFNI&AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2924 vgf2p8affineqb, 0x66ce, GFNI&AVX512F, Modrm|Masking|Space0F3A|VexVVVV|VexW1|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { Imm8, RegXMM|RegYMM|RegZMM|Qword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
2925
2926 // AVX512 + GFNI instructions end
2927
2928 // INVLPGB instructions
2929
2930 invlpgb, 0xf01fe, INVLPGB, NoSuf, {}
2931 invlpgb, 0xf01fe, INVLPGB, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword, RegC|Dword, RegD|Dword }
2932
2933 // INVLPGB instructions end
2934
2935 // TLBSYNC instructions
2936
2937 tlbsync, 0xf01ff, TLBSYNC, NoSuf, {}
2938
2939 // TLBSYNC instructions end
2940
2941 // CLZERO instructions
2942
2943 clzero, 0xf01fc, CLZERO, NoSuf, {}
2944 clzero, 0xf01fc, CLZERO, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword }
2945
2946 // CLZERO instructions end
2947
2948 // MONITORX/MWAITX instructions
2949
2950 monitorx, 0xf01fa, MWAITX, NoSuf, {}
2951 monitorx, 0xf01fa, MWAITX, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword, RegC|Dword, RegD|Dword }
2952 // The 64-bit form exists only for compatibility with older gas.
2953 monitorx, 0xf01fa, MWAITX&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword, RegC|Qword, RegD|Qword }
2954
2955 mwaitx, 0xf01fb, MWAITX, NoSuf, {}
2956 // The 64-bit form exists only for compatibility with older gas.
2957 mwaitx, 0xf01fb, MWAITX, CheckOperandSize|IgnoreSize|NoSuf|NoRex64, { Acc|Dword|Qword, RegC|Dword|Qword, RegB|Dword|Qword }
2958
2959 // MONITORX/MWAITX instructions end
2960
2961 // OSPKE instructions.
2962
2963 rdpkru, 0xf01ee, OSPKE, NoSuf, {}
2964 wrpkru, 0xf01ef, OSPKE, NoSuf, {}
2965
2966 // OSPKE instructions end.
2967
2968 // RDPID instructions.
2969
2970 rdpid, 0xf30fc7/7, RDPID&No64, Modrm|IgnoreSize|NoSuf, { Reg32 }
2971 rdpid, 0xf30fc7/7, RDPID&x64, Modrm|NoSuf|NoRex64, { Reg64 }
2972
2973 // RDPID instructions end.
2974
2975 // PTWRITE instructions.
2976
2977 ptwrite, 0xf30fae/4, PTWRITE&No64, Modrm|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Reg32|Unspecified|BaseIndex }
2978 ptwrite, 0xf30fae/4, PTWRITE&x64, Modrm|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64|Unspecified|BaseIndex }
2979
2980 // PTWRITE instructions end.
2981
2982 // CET instructions.
2983
2984 incsspd, 0xf30fae/5, SHSTK, Modrm|IgnoreSize|NoSuf, { Reg32 }
2985 incsspq, 0xf30fae/5, SHSTK&x64, Modrm|NoSuf, { Reg64 }
2986 rdsspd, 0xf30f1e/1, SHSTK, Modrm|IgnoreSize|NoSuf, { Reg32 }
2987 rdsspq, 0xf30f1e/1, SHSTK&x64, Modrm|NoSuf, { Reg64 }
2988 saveprevssp, 0xf30f01ea, SHSTK, NoSuf, {}
2989 rstorssp, 0xf30f01/5, SHSTK, Modrm|NoSuf, { Qword|Unspecified|BaseIndex }
2990 wrssd, 0x0f38f6, SHSTK, Modrm|IgnoreSize|NoSuf, { Reg32, Dword|Unspecified|BaseIndex }
2991 wrssq, 0x0f38f6, SHSTK&x64, Modrm|NoSuf|Size64, { Reg64, Qword|Unspecified|BaseIndex }
2992 wrussd, 0x660f38f5, SHSTK, Modrm|IgnoreSize|NoSuf, { Reg32, Dword|Unspecified|BaseIndex }
2993 wrussq, 0x660f38f5, SHSTK&x64, Modrm|NoSuf, { Reg64, Qword|Unspecified|BaseIndex }
2994 setssbsy, 0xf30f01e8, SHSTK, NoSuf, {}
2995 clrssbsy, 0xf30fae/6, SHSTK, Modrm|NoSuf, { Qword|Unspecified|BaseIndex }
2996 endbr64, 0xf30f1efa, IBT, NoSuf, {}
2997 endbr32, 0xf30f1efb, IBT, NoSuf, {}
2998
2999 // notrack prefix
3000 notrack, 0x3e, IBT, NoSuf|IsPrefix, {}
3001
3002 // CET instructions end.
3003
3004 // WBNOINVD instruction.
3005
3006 wbnoinvd, 0xf30f09, WBNOINVD, NoSuf, {}
3007
3008 // WBNOINVD instruction end.
3009
3010 // PCONFIG instruction.
3011
3012 pconfig, 0x0f01c5, PCONFIG, NoSuf, {}
3013
3014 // PCONFIG instruction end.
3015
3016 // PBNDKB instruction.
3017
3018 pbndkb, 0x0f01c7, PBNDKB, NoSuf, {}
3019
3020 // PBNDKB instruction end.
3021
3022 // WAITPKG instructions.
3023
3024 umonitor, 0xf30fae/6, WAITPKG, Modrm|AddrPrefixOpReg|NoSuf, { Reg16|Reg32|Reg64 }
3025 tpause, 0x660fae/6, WAITPKG, Modrm|IgnoreSize|NoSuf, { Reg32 }
3026 tpause, 0x660fae/6, WAITPKG, Modrm|IgnoreSize|NoSuf, { Reg32, RegD|Dword, Acc|Dword }
3027 umwait, 0xf20fae/6, WAITPKG, Modrm|IgnoreSize|NoSuf, { Reg32 }
3028 umwait, 0xf20fae/6, WAITPKG, Modrm|IgnoreSize|NoSuf, { Reg32, RegD|Dword, Acc|Dword }
3029
3030 // WAITPKG instructions end.
3031
3032 // CLDEMOTE instructions.
3033
3034 cldemote, 0x0f1c/0, CLDEMOTE, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
3035
3036 // CLDEMOTE instructions end.
3037
3038 // MOVDIR[I,64B] instructions.
3039
3040 movdiri, 0xf38f9, MOVDIRI, Modrm|CheckOperandSize|IgnoreSize|No_bSuf|No_wSuf|No_sSuf, { Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
3041 movdir64b, 0x660f38f8, MOVDIR64B, Modrm|AddrPrefixOpReg|NoSuf, { Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
3042
3043 // MOVEDIR instructions end.
3044
3045 // AVX512_BF16 instructions.
3046
3047 vcvtne2ps2bf16, 0xf272, AVX512_BF16, Modrm|Space0F38|VexVVVV|Masking|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
3048
3049 vcvtneps2bf16<Exy>, 0xf372, AVX512_BF16&<Exy:vl>, Modrm|Space0F38|<Exy:attr>|Masking|VexW0|Broadcast|NoSuf, { <Exy:src>|Dword, <Exy:dst> }
3050
3051 vdpbf16ps, 0xf352, AVX512_BF16, Modrm|Space0F38|VexVVVV|Masking|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
3052
3053 // AVX512_BF16 instructions end.
3054
3055 // AVX-NE-CONVERT instructions.
3056
3057 vbcstnebf162ps, 0xf3b1, AVX_NE_CONVERT, Modrm|Vex|Space0F38|VexW0|NoSuf, { Word|Unspecified|BaseIndex, RegXMM|RegYMM }
3058 vbcstnesh2ps, 0x66b1, AVX_NE_CONVERT, Modrm|Vex|Space0F38|VexW0|NoSuf, { Word|Unspecified|BaseIndex, RegXMM|RegYMM }
3059 vcvtneebf162ps, 0xf3b0, AVX_NE_CONVERT, Modrm|Vex|Space0F38|VexW0|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM }
3060 vcvtneeph2ps, 0x66b0, AVX_NE_CONVERT, Modrm|Vex|Space0F38|VexW0|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM }
3061 vcvtneobf162ps, 0xf2b0, AVX_NE_CONVERT, Modrm|Vex|Space0F38|VexW0|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM }
3062 vcvtneoph2ps, 0xb0, AVX_NE_CONVERT, Modrm|Vex|Space0F38|VexW0|CheckOperandSize|NoSuf, { Xmmword|Ymmword|Unspecified|BaseIndex, RegXMM|RegYMM }
3063 vcvtneps2bf16<Vxy>, 0xf372, AVX_NE_CONVERT, Modrm|<Vxy:vex>|Space0F38|VexW0|NoSuf|<Vxy:syntax>, { <Vxy:src>, RegXMM }
3064
3065 // AVX-NE-CONVERT instructions end.
3066
3067 // ENQCMD instructions.
3068
3069 enqcmd, 0xf20f38f8, ENQCMD, Modrm|AddrPrefixOpReg|NoSuf, { Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
3070 enqcmds, 0xf30f38f8, ENQCMD, Modrm|AddrPrefixOpReg|NoSuf, { Unspecified|BaseIndex, Reg16|Reg32|Reg64 }
3071
3072 // ENQCMD instructions end.
3073
3074 // VP2INTERSECT instructions.
3075
3076 vp2intersect<dq>, 0xf268, AVX512_VP2INTERSECT, Modrm|Space0F38|VexVVVV|<dq:vexw>|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|<dq:elem>|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
3077
3078 // VP2INTERSECT instructions end.
3079
3080 // MCOMMIT instruction
3081
3082 mcommit, 0xf30f01fa, MCOMMIT, NoSuf, {}
3083
3084 // MCOMMIT instruction end
3085
3086 // SNP instructions
3087
3088 psmash, 0xf30f01ff, SNP&x64, NoSuf, {}
3089 psmash, 0xf30f01ff, SNP&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword }
3090 pvalidate, 0xf20f01ff, SNP, NoSuf, {}
3091 pvalidate, 0xf20f01ff, SNP, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword, RegC|Dword, RegD|Dword }
3092 rmpupdate, 0xf20f01fe, SNP&x64, NoSuf, {}
3093 rmpupdate, 0xf20f01fe, SNP&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword, RegC|Qword }
3094 rmpadjust, 0xf30f01fe, SNP&x64, NoSuf, {}
3095 rmpadjust, 0xf30f01fe, SNP&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword, RegC|Qword, RegD|Qword }
3096 // The single-operand forms exist only for compatibility with older gas.
3097 pvalidate, 0xf20f01ff, SNP, AddrPrefixOpReg|NoSuf, { Acc|Word|Dword|Qword }
3098 rmpupdate, 0xf20f01fe, SNP&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword }
3099 rmpadjust, 0xf30f01fe, SNP&x64, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword }
3100
3101 // SNP instructions end
3102
3103 // RMPQUERY instruction
3104
3105 rmpquery, 0xf30f01fd, RMPQUERY, NoSuf, {}
3106 rmpquery, 0xf30f01fd, RMPQUERY, AddrPrefixOpReg|NoSuf, { Acc|Dword|Qword, RegC|Qword, RegD|Qword }
3107
3108 // RMPQUERY instruction end
3109
3110 // RDPRU instruction
3111
3112 rdpru, 0x0f01fd, RDPRU, NoSuf, {}
3113
3114 // RDPRU instruction end
3115
3116 // SERIALIZE instruction.
3117
3118 serialize, 0x0f01e8, SERIALIZE, NoSuf, {}
3119
3120 // SERIALIZE instruction end.
3121
3122 // TSXLDTRK instructions.
3123
3124 xsusldtrk, 0xf20f01e8, TSXLDTRK, NoSuf, {}
3125 xresldtrk, 0xf20f01e9, TSXLDTRK, NoSuf, {}
3126
3127 // TSXLDTRK instructions end.
3128
3129 // AMX instructions.
3130
3131 ldtilecfg, 0x49/0, AMX_TILE, Modrm|Vex128|Space0F38|VexW0|NoSuf, { Unspecified|BaseIndex }
3132 sttilecfg, 0x6649/0, AMX_TILE, Modrm|Vex128|Space0F38|VexW0|NoSuf, { Unspecified|BaseIndex }
3133
3134 tcmmimfp16ps, 0x666c, AMX_COMPLEX, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3135 tcmmrlfp16ps, 0x6c, AMX_COMPLEX, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3136
3137 tdpbf16ps, 0xf35c, AMX_BF16, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3138 tdpfp16ps, 0xf25c, AMX_FP16, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3139 tdpbssd, 0xf25e, AMX_INT8, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3140 tdpbuud, 0x5e, AMX_INT8, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3141 tdpbusd, 0x665e, AMX_INT8, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3142 tdpbsud, 0xf35e, AMX_INT8, Modrm|Vex128|Space0F38|VexVVVV|VexW0|SwapSources|NoSuf, { RegTMM, RegTMM, RegTMM }
3143
3144 tileloadd, 0xf24b, AMX_TILE, Sibmem|Vex128|Space0F38|VexW0|NoSuf, { Unspecified|BaseIndex, RegTMM }
3145 tileloaddt1, 0x664b, AMX_TILE, Sibmem|Vex128|Space0F38|VexW0|NoSuf, { Unspecified|BaseIndex, RegTMM }
3146 tilestored, 0xf34b, AMX_TILE, Sibmem|Vex128|Space0F38|VexW0|NoSuf, { RegTMM, Unspecified|BaseIndex }
3147
3148 tilerelease, 0x49c0, AMX_TILE, Vex128|Space0F38|VexW0|NoSuf, {}
3149
3150 tilezero, 0xf249, AMX_TILE, Modrm|Vex128|Space0F38|VexW0|NoSuf, { RegTMM }
3151
3152 // AMX instructions end.
3153
3154 // KEYLOCKER instructions.
3155
3156 loadiwkey, 0xf30f38dc, KL, Load|Modrm|NoSuf, { RegXMM, RegXMM }
3157 encodekey128, 0xf30f38fa, KL, Modrm|NoSuf, { Reg32, Reg32 }
3158 encodekey256, 0xf30f38fb, KL, Modrm|NoSuf, { Reg32, Reg32 }
3159 aesenc128kl, 0xf30f38dc, KL, Modrm|NoSuf, { Unspecified|BaseIndex, RegXMM }
3160 aesdec128kl, 0xf30f38dd, KL, Modrm|NoSuf, { Unspecified|BaseIndex, RegXMM }
3161 aesenc256kl, 0xf30f38de, KL, Modrm|NoSuf, { Unspecified|BaseIndex, RegXMM }
3162 aesdec256kl, 0xf30f38df, KL, Modrm|NoSuf, { Unspecified|BaseIndex, RegXMM }
3163 aesencwide128kl, 0xf30f38d8/0, WideKL, Modrm|NoSuf, { Unspecified|BaseIndex }
3164 aesdecwide128kl, 0xf30f38d8/1, WideKL, Modrm|NoSuf, { Unspecified|BaseIndex }
3165 aesencwide256kl, 0xf30f38d8/2, WideKL, Modrm|NoSuf, { Unspecified|BaseIndex }
3166 aesdecwide256kl, 0xf30f38d8/3, WideKL, Modrm|NoSuf, { Unspecified|BaseIndex }
3167
3168 // KEYLOCKER instructions end.
3169
3170 // TDX instructions.
3171
3172 tdcall, 0x660f01cc, TDX, NoSuf, {}
3173 seamret, 0x660f01cd, TDX&x64, NoSuf, {}
3174 seamops, 0x660f01ce, TDX&x64, NoSuf, {}
3175 seamcall, 0x660f01cf, TDX&x64, NoSuf, {}
3176
3177 // TDX instructions end.
3178
3179 // UINTR instructions.
3180
3181 uiret, 0xf30f01ec, UINTR, NoSuf, {}
3182 clui, 0xf30f01ee, UINTR, NoSuf, {}
3183 stui, 0xf30f01ef, UINTR, NoSuf, {}
3184 testui, 0xf30f01ed, UINTR, NoSuf, {}
3185 senduipi, 0xf30fc7/6, UINTR, Modrm|NoSuf|NoRex64, { Reg64 }
3186
3187 // UINTR instructions end.
3188
3189 // HRESET instructions.
3190
3191 hreset, 0xf30f3af0c0, HRESET, NoSuf, { Imm8 }
3192
3193 // HRESET instructions end.
3194
3195 // FP16 (HFNI) instructions.
3196
3197 vfcmaddcph, 0xf256, AVX512_FP16, Modrm|VexVVVV|Masking|EVexMap6|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
3198 vfcmaddcsh, 0xf257, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=2|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
3199
3200 vfmaddcph, 0xf356, AVX512_FP16, Modrm|VexVVVV|Masking|EVexMap6|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
3201 vfmaddcsh, 0xf357, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=2|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
3202
3203 vfcmulcph, 0xf2d6, AVX512_FP16, Modrm|VexVVVV|Masking|EVexMap6|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
3204 vfcmulcsh, 0xf2d7, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=2|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
3205
3206 vfmulcph, 0xf3d6, AVX512_FP16, Modrm|VexVVVV|Masking|EVexMap6|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Dword|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegXMM|RegYMM|RegZMM }
3207 vfmulcsh, 0xf3d7, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=2|DistinctDest|NoSuf|StaticRounding|SAE, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
3208
3209 vcmp<frel>ph, 0xc2/0x<frel:imm>, AVX512_FP16, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|ImmExt|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
3210 vcmpph, 0xc2, AVX512_FP16, Modrm|Masking|Space0F3A|VexVVVV|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { Imm8, RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM, RegMask }
3211
3212 vcmp<frel>sh, 0xf3c2/0x<frel:imm>, AVX512_FP16, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|VexW0|Disp8MemShift=1|NoSuf|ImmExt|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegXMM, RegMask }
3213 vcmpsh, 0xf3c2, AVX512_FP16, Modrm|EVexLIG|Masking|Space0F3A|VexVVVV|VexW0|Disp8MemShift=1|NoSuf|SAE, { Imm8, RegXMM|Word|Unspecified|BaseIndex, RegXMM, RegMask }
3214
3215 vcvtdq2ph<Exy>, 0x5b, AVX512_FP16&<Exy:vl>, Modrm|<Exy:attr>|Masking|EVexMap5|VexW0|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Dword, <Exy:dst> }
3216 vcvtudq2ph<Exy>, 0xf27a, AVX512_FP16&<Exy:vl>, Modrm|<Exy:attr>|Masking|EVexMap5|VexW0|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Dword, <Exy:dst> }
3217
3218 vcvtqq2ph<xyz>, 0x5b, AVX512_FP16&<xyz:vl>, Modrm|<xyz:attr>|Masking|EVexMap5|VexW1|Broadcast|NoSuf|<xyz:sr>|<xyz:att>, { <xyz:src>|Qword, RegXMM }
3219 vcvtuqq2ph<xyz>, 0xf27a, AVX512_FP16&<xyz:vl>, Modrm|<xyz:attr>|Masking|EVexMap5|VexW1|Broadcast|NoSuf|<xyz:sr>|<xyz:att>, { <xyz:src>|Qword, RegXMM }
3220
3221 vcvtpd2ph<xyz>, 0x665a, AVX512_FP16&<xyz:vl>, Modrm|<xyz:attr>|Masking|EVexMap5|VexW1|Broadcast|NoSuf|<xyz:sr>|<xyz:att>, { <xyz:src>|Qword, RegXMM }
3222
3223 vcvtps2phx<Exy>, 0x661d, AVX512_FP16&<Exy:vl>, Modrm|<Exy:attr>|Masking|EVexMap5|VexW0|Broadcast|NoSuf|<Exy:sr>, { <Exy:src>|Dword, <Exy:dst> }
3224
3225 vcvtw2ph, 0xf37d, AVX512_FP16, Modrm|Masking|EVexMap5|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3226 vcvtuw2ph, 0xf27d, AVX512_FP16, Modrm|Masking|EVexMap5|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3227
3228 vcvtph2dq, 0x665b, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegXMM }
3229 vcvtph2dq, 0x665b, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegYMM }
3230 vcvtph2dq, 0x665b, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=5|NoSuf|StaticRounding|SAE, { RegYMM|Word|Unspecified|BaseIndex, RegZMM }
3231
3232 vcvtph2udq, 0x79, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegXMM }
3233 vcvtph2udq, 0x79, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegYMM }
3234 vcvtph2udq, 0x79, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=5|NoSuf|StaticRounding|SAE, { RegYMM|Word|Unspecified|BaseIndex, RegZMM }
3235
3236 vcvtph2qq, 0x667b, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=2|NoSuf, { RegXMM|Word|Dword|Unspecified|BaseIndex, RegXMM }
3237 vcvtph2qq, 0x667b, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegYMM }
3238 vcvtph2qq, 0x667b, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf|StaticRounding|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegZMM }
3239
3240 vcvtph2uqq, 0x6679, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=2|NoSuf, { RegXMM|Word|Dword|Unspecified|BaseIndex, RegXMM }
3241 vcvtph2uqq, 0x6679, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegYMM }
3242 vcvtph2uqq, 0x6679, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf|StaticRounding|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegZMM }
3243
3244 vcvtph2pd, 0x5a, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=2|NoSuf, { RegXMM|Word|Dword|Unspecified|BaseIndex, RegXMM }
3245 vcvtph2pd, 0x5a, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegYMM }
3246 vcvtph2pd, 0x5a, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegZMM }
3247
3248 vcvtph2w, 0x667d, AVX512_FP16, Modrm|Masking|EVexMap5|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3249 vcvtph2uw, 0x7d, AVX512_FP16, Modrm|Masking|EVexMap5|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|StaticRounding|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3250
3251 vcvtsd2sh, 0xf25a, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap5|VexVVVV|VexW1|Disp8MemShift=3|NoSuf|StaticRounding|SAE, { RegXMM|Qword|Unspecified|BaseIndex, RegXMM, RegXMM }
3252 vcvtss2sh, 0x1d, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap5|VexVVVV|VexW0|Disp8MemShift=2|NoSuf|StaticRounding|SAE, { RegXMM|Dword|Unspecified|BaseIndex, RegXMM, RegXMM }
3253
3254 vcvtsi2sh, 0xf32a, AVX512_FP16, Modrm|EVexLIG|EVexMap5|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|ATTSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
3255 vcvtsi2sh, 0xf32a, AVX512_FP16, Modrm|EVexLIG|EVexMap5|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|IntelSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
3256
3257 vcvtusi2sh, 0xf37b, AVX512_FP16, Modrm|EVexLIG|EVexMap5|VexVVVV|Disp8ShiftVL|IgnoreSize|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|ATTSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
3258 vcvtusi2sh, 0xf37b, AVX512_FP16, Modrm|EVexLIG|EVexMap5|VexVVVV|Disp8ShiftVL|No_bSuf|No_wSuf|No_sSuf|StaticRounding|SAE|IntelSyntax, { Reg32|Reg64|Unspecified|BaseIndex, RegXMM, RegXMM }
3259
3260 vcvtsh2sd, 0xf35a, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap5|VexVVVV|VexW0|Disp8MemShift=1|NoSuf|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegXMM, RegXMM }
3261 vcvtsh2ss, 0x13, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=1|NoSuf|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegXMM, RegXMM }
3262
3263 vcvtsh2si, 0xf32d, AVX512_FP16, Modrm|EVexLIG|EVexMap5|Disp8MemShift=1|NoSuf|StaticRounding|SAE, { RegXMM|Word|Unspecified|BaseIndex, Reg32|Reg64 }
3264
3265 vcvttph2dq, 0xf35b, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegXMM }
3266 vcvttph2dq, 0xf35b, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegYMM }
3267 vcvttph2dq, 0xf35b, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Word|Unspecified|BaseIndex, RegZMM }
3268
3269 vcvttph2udq, 0x78, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegXMM }
3270 vcvttph2udq, 0x78, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegYMM }
3271 vcvttph2udq, 0x78, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Word|Unspecified|BaseIndex, RegZMM }
3272
3273 vcvttph2qq, 0x667a, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=2|NoSuf, { RegXMM|Word|Dword|Unspecified|BaseIndex, RegXMM }
3274 vcvttph2qq, 0x667a, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegYMM }
3275 vcvttph2qq, 0x667a, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegZMM }
3276
3277 vcvttph2uqq, 0x6678, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=2|NoSuf, { RegXMM|Word|Dword|Unspecified|BaseIndex, RegXMM }
3278 vcvttph2uqq, 0x6678, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegYMM }
3279 vcvttph2uqq, 0x6678, AVX512_FP16, Modrm|EVex512|Masking|EVexMap5|VexW0|Broadcast|Disp8MemShift=4|NoSuf|SAE, { RegXMM|Word|Unspecified|BaseIndex, RegZMM }
3280
3281 vcvtph2psx, 0x6613, AVX512_FP16&AVX512VL, Modrm|EVex128|Masking|EVexMap6|VexW0|Broadcast|Disp8MemShift=3|NoSuf, { RegXMM|Word|Qword|Unspecified|BaseIndex, RegXMM }
3282 vcvtph2psx, 0x6613, AVX512_FP16&AVX512VL, Modrm|EVex256|Masking|EVexMap6|VexW0|Broadcast|Disp8MemShift=4|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegYMM }
3283 vcvtph2psx, 0x6613, AVX512_FP16, Modrm|EVex512|Masking|EVexMap6|VexW0|Broadcast|Disp8MemShift=5|NoSuf|SAE, { RegYMM|Word|Unspecified|BaseIndex, RegZMM }
3284
3285 vcvttph2w, 0x667c, AVX512_FP16, Modrm|Masking|EVexMap5|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3286 vcvttph2uw, 0x7c, AVX512_FP16, Modrm|Masking|EVexMap5|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf|SAE, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3287
3288 vcvttsh2si, 0xf32c, AVX512_FP16, Modrm|EVexLIG|EVexMap5|Disp8MemShift=1|NoSuf|SAE, { RegXMM|Word|Unspecified|BaseIndex, Reg32|Reg64 }
3289
3290 vfpclassph<xyz>, 0x66, AVX512_FP16&<xyz:vl>, Modrm|<xyz:attr>|Masking|Space0F3A|VexW0|Broadcast|NoSuf|<xyz:att>, { Imm8|Imm8S, <xyz:src>|Word, RegMask }
3291
3292 vmovw, 0x666e, AVX512_FP16, D|Modrm|EVex128|VexWIG|EVexMap5|Disp8MemShift=1|NoSuf, { Word|Unspecified|BaseIndex, RegXMM }
3293 vmovw, 0x667e, AVX512_FP16, D|RegMem|EVex128|VexWIG|EVexMap5|NoSuf, { RegXMM, Reg32 }
3294
3295 vrcpph, 0x664c, AVX512_FP16, Modrm|Masking|EVexMap6|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3296
3297 vrcpsh, 0x664d, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=1|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegXMM, RegXMM }
3298
3299 vrsqrtph, 0x664e, AVX512_FP16, Modrm|Masking|EVexMap6|VexW0|Broadcast|Disp8ShiftVL|CheckOperandSize|NoSuf, { RegXMM|RegYMM|RegZMM|Word|Unspecified|BaseIndex, RegXMM|RegYMM|RegZMM }
3300
3301 vrsqrtsh, 0x664f, AVX512_FP16, Modrm|EVexLIG|Masking|EVexMap6|VexVVVV|VexW0|Disp8MemShift=1|NoSuf, { RegXMM|Word|Unspecified|BaseIndex, RegXMM, RegXMM }
3302
3303 // FP16 (HFNI) instructions end.
3304
3305 // PREFETCHI instructions.
3306
3307 prefetchit0, 0xf18/7, PREFETCHI, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
3308 prefetchit1, 0xf18/6, PREFETCHI, Modrm|Anysize|IgnoreSize|NoSuf, { BaseIndex }
3309
3310 // PREFETCHI instructions end.
3311
3312 // CMPCCXADD instructions.
3313
3314 cmp<cc>xadd, 0x66e<cc:opc>, CMPCCXADD, Modrm|Vex|Space0F38|VexVVVV|SwapSources|CheckOperandSize|NoSuf, { Reg32|Reg64, Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
3315
3316 // CMPCCXADD instructions end.
3317
3318 // WRMSRNS instruction.
3319
3320 wrmsrns, 0x0f01c6, WRMSRNS, NoSuf, {}
3321
3322 // WRMSRNS instruction end.
3323
3324 // MSRLIST instructions.
3325
3326 rdmsrlist, 0xf20f01c6, MSRLIST, NoSuf, {}
3327 wrmsrlist, 0xf30f01c6, MSRLIST, NoSuf, {}
3328
3329 // MSRLIST instructions end.
3330
3331 // RAO-INT instructions.
3332
3333 aadd, 0xf38fc, RAO_INT, Modrm|IgnoreSize|CheckOperandSize|NoSuf, { Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
3334 aand, 0x660f38fc, RAO_INT, Modrm|IgnoreSize|CheckOperandSize|NoSuf, { Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
3335 aor, 0xf20f38fc, RAO_INT, Modrm|IgnoreSize|CheckOperandSize|NoSuf, { Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
3336 axor, 0xf30f38fc, RAO_INT, Modrm|IgnoreSize|CheckOperandSize|NoSuf, { Reg32|Reg64, Dword|Qword|Unspecified|BaseIndex }
3337
3338 // RAO-INT instructions end.
3339
3340 // LKGS instruction.
3341
3342 lkgs, 0xf20f00/6, LKGS, Modrm|IgnoreSize|No_bSuf|No_sSuf|NoRex64, { Reg16|Reg32|Reg64 }
3343 lkgs, 0xf20f00/6, LKGS, Modrm|IgnoreSize|No_bSuf|No_lSuf|No_sSuf|No_qSuf, { Word|Unspecified|BaseIndex }
3344
3345 // LKGS instruction end.
3346
3347 // FRED instructions.
3348
3349 erets, 0xf20f01ca, FRED, NoSuf, {}
3350 eretu, 0xf30f01ca, FRED, NoSuf, {}
3351
3352 // FRED instructions end.
3353
3354 // USER_MSR instructions.
3355
3356 urdmsr, 0xf20f38f8, USER_MSR, RegMem|NoSuf|NoRex64, { Reg64, Reg64 }
3357 urdmsr, 0xf2f8/0, USER_MSR, Modrm|Vex128|VexMap7|VexW0|NoSuf, { Imm32, Reg64 }
3358 uwrmsr, 0xf30f38f8, USER_MSR, Modrm|NoSuf|NoRex64, { Reg64, Reg64 }
3359 // Immediates want to be first; md_assemble() takes care of swapping operands
3360 // accordingly.
3361 uwrmsr, 0xf3f8/0, USER_MSR, Modrm|Vex128|VexMap7|VexW0|NoSuf, { Imm32, Reg64 }
3362
3363 // USER_MSR instructions end.