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torvalds
GitHub Repository: torvalds/linux
Path: blob/master/arch/x86/lib/x86-opcode-map.txt
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1
# x86 Opcode Maps
2
#
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# This is (mostly) based on following documentations.
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# - Intel(R) 64 and IA-32 Architectures Software Developer's Manual Vol.2C
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# (#326018-047US, June 2013)
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#
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#<Opcode maps>
8
# Table: table-name
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# Referrer: escaped-name
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# AVXcode: avx-code
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# opcode: mnemonic|GrpXXX [operand1[,operand2...]] [(extra1)[,(extra2)...] [| 2nd-mnemonic ...]
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# (or)
13
# opcode: escape # escaped-name
14
# EndTable
15
#
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# mnemonics that begin with lowercase 'v' accept a VEX or EVEX prefix
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# mnemonics that begin with lowercase 'k' accept a VEX prefix
18
#
19
#<group maps>
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# GrpTable: GrpXXX
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# reg: mnemonic [operand1[,operand2...]] [(extra1)[,(extra2)...] [| 2nd-mnemonic ...]
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# EndTable
23
#
24
# AVX Superscripts
25
# (ev): this opcode requires EVEX prefix.
26
# (es): this opcode requires EVEX prefix and is SCALABALE.
27
# (evo): this opcode is changed by EVEX prefix (EVEX opcode)
28
# (v): this opcode requires VEX prefix.
29
# (v1): this opcode only supports 128bit VEX.
30
# (xop): this opcode accepts XOP prefix.
31
#
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# XOP Superscripts
33
# (W=0): this opcode requires XOP.W == 0
34
# (W=1): this opcode requires XOP.W == 1
35
#
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# Last Prefix Superscripts
37
# - (66): the last prefix is 0x66
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# - (F3): the last prefix is 0xF3
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# - (F2): the last prefix is 0xF2
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# - (!F3) : the last prefix is not 0xF3 (including non-last prefix case)
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# - (66&F2): Both 0x66 and 0xF2 prefixes are specified.
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#
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# REX2 Prefix Superscripts
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# - (!REX2): REX2 is not allowed
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# - (REX2): REX2 variant e.g. JMPABS
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47
Table: one byte opcode
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Referrer:
49
AVXcode:
50
# 0x00 - 0x0f
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00: ADD Eb,Gb
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01: ADD Ev,Gv
53
02: ADD Gb,Eb
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03: ADD Gv,Ev
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04: ADD AL,Ib
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05: ADD rAX,Iz
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06: PUSH ES (i64)
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07: POP ES (i64)
59
08: OR Eb,Gb
60
09: OR Ev,Gv
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0a: OR Gb,Eb
62
0b: OR Gv,Ev
63
0c: OR AL,Ib
64
0d: OR rAX,Iz
65
0e: PUSH CS (i64)
66
0f: escape # 2-byte escape
67
# 0x10 - 0x1f
68
10: ADC Eb,Gb
69
11: ADC Ev,Gv
70
12: ADC Gb,Eb
71
13: ADC Gv,Ev
72
14: ADC AL,Ib
73
15: ADC rAX,Iz
74
16: PUSH SS (i64)
75
17: POP SS (i64)
76
18: SBB Eb,Gb
77
19: SBB Ev,Gv
78
1a: SBB Gb,Eb
79
1b: SBB Gv,Ev
80
1c: SBB AL,Ib
81
1d: SBB rAX,Iz
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1e: PUSH DS (i64)
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1f: POP DS (i64)
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# 0x20 - 0x2f
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20: AND Eb,Gb
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21: AND Ev,Gv
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22: AND Gb,Eb
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23: AND Gv,Ev
89
24: AND AL,Ib
90
25: AND rAx,Iz
91
26: SEG=ES (Prefix)
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27: DAA (i64)
93
28: SUB Eb,Gb
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29: SUB Ev,Gv
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2a: SUB Gb,Eb
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2b: SUB Gv,Ev
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2c: SUB AL,Ib
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2d: SUB rAX,Iz
99
2e: SEG=CS (Prefix)
100
2f: DAS (i64)
101
# 0x30 - 0x3f
102
30: XOR Eb,Gb
103
31: XOR Ev,Gv
104
32: XOR Gb,Eb
105
33: XOR Gv,Ev
106
34: XOR AL,Ib
107
35: XOR rAX,Iz
108
36: SEG=SS (Prefix)
109
37: AAA (i64)
110
38: CMP Eb,Gb
111
39: CMP Ev,Gv
112
3a: CMP Gb,Eb
113
3b: CMP Gv,Ev
114
3c: CMP AL,Ib
115
3d: CMP rAX,Iz
116
3e: SEG=DS (Prefix)
117
3f: AAS (i64)
118
# 0x40 - 0x4f
119
40: INC eAX (i64) | REX (o64)
120
41: INC eCX (i64) | REX.B (o64)
121
42: INC eDX (i64) | REX.X (o64)
122
43: INC eBX (i64) | REX.XB (o64)
123
44: INC eSP (i64) | REX.R (o64)
124
45: INC eBP (i64) | REX.RB (o64)
125
46: INC eSI (i64) | REX.RX (o64)
126
47: INC eDI (i64) | REX.RXB (o64)
127
48: DEC eAX (i64) | REX.W (o64)
128
49: DEC eCX (i64) | REX.WB (o64)
129
4a: DEC eDX (i64) | REX.WX (o64)
130
4b: DEC eBX (i64) | REX.WXB (o64)
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4c: DEC eSP (i64) | REX.WR (o64)
132
4d: DEC eBP (i64) | REX.WRB (o64)
133
4e: DEC eSI (i64) | REX.WRX (o64)
134
4f: DEC eDI (i64) | REX.WRXB (o64)
135
# 0x50 - 0x5f
136
50: PUSH rAX/r8 (d64)
137
51: PUSH rCX/r9 (d64)
138
52: PUSH rDX/r10 (d64)
139
53: PUSH rBX/r11 (d64)
140
54: PUSH rSP/r12 (d64)
141
55: PUSH rBP/r13 (d64)
142
56: PUSH rSI/r14 (d64)
143
57: PUSH rDI/r15 (d64)
144
58: POP rAX/r8 (d64)
145
59: POP rCX/r9 (d64)
146
5a: POP rDX/r10 (d64)
147
5b: POP rBX/r11 (d64)
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5c: POP rSP/r12 (d64)
149
5d: POP rBP/r13 (d64)
150
5e: POP rSI/r14 (d64)
151
5f: POP rDI/r15 (d64)
152
# 0x60 - 0x6f
153
60: PUSHA/PUSHAD (i64)
154
61: POPA/POPAD (i64)
155
62: BOUND Gv,Ma (i64) | EVEX (Prefix),(o64)
156
63: ARPL Ew,Gw (i64) | MOVSXD Gv,Ev (o64)
157
64: SEG=FS (Prefix)
158
65: SEG=GS (Prefix)
159
66: Operand-Size (Prefix)
160
67: Address-Size (Prefix)
161
68: PUSH Iz
162
69: IMUL Gv,Ev,Iz
163
6a: PUSH Ib (d64)
164
6b: IMUL Gv,Ev,Ib
165
6c: INS/INSB Yb,DX
166
6d: INS/INSW/INSD Yz,DX
167
6e: OUTS/OUTSB DX,Xb
168
6f: OUTS/OUTSW/OUTSD DX,Xz
169
# 0x70 - 0x7f
170
70: JO Jb (!REX2)
171
71: JNO Jb (!REX2)
172
72: JB/JNAE/JC Jb (!REX2)
173
73: JNB/JAE/JNC Jb (!REX2)
174
74: JZ/JE Jb (!REX2)
175
75: JNZ/JNE Jb (!REX2)
176
76: JBE/JNA Jb (!REX2)
177
77: JNBE/JA Jb (!REX2)
178
78: JS Jb (!REX2)
179
79: JNS Jb (!REX2)
180
7a: JP/JPE Jb (!REX2)
181
7b: JNP/JPO Jb (!REX2)
182
7c: JL/JNGE Jb (!REX2)
183
7d: JNL/JGE Jb (!REX2)
184
7e: JLE/JNG Jb (!REX2)
185
7f: JNLE/JG Jb (!REX2)
186
# 0x80 - 0x8f
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80: Grp1 Eb,Ib (1A)
188
81: Grp1 Ev,Iz (1A)
189
82: Grp1 Eb,Ib (1A),(i64)
190
83: Grp1 Ev,Ib (1A)
191
84: TEST Eb,Gb
192
85: TEST Ev,Gv
193
86: XCHG Eb,Gb
194
87: XCHG Ev,Gv
195
88: MOV Eb,Gb
196
89: MOV Ev,Gv
197
8a: MOV Gb,Eb
198
8b: MOV Gv,Ev
199
8c: MOV Ev,Sw
200
8d: LEA Gv,M
201
8e: MOV Sw,Ew
202
8f: Grp1A (1A) | POP Ev (d64) | XOP (Prefix)
203
# 0x90 - 0x9f
204
90: NOP | PAUSE (F3) | XCHG r8,rAX
205
91: XCHG rCX/r9,rAX
206
92: XCHG rDX/r10,rAX
207
93: XCHG rBX/r11,rAX
208
94: XCHG rSP/r12,rAX
209
95: XCHG rBP/r13,rAX
210
96: XCHG rSI/r14,rAX
211
97: XCHG rDI/r15,rAX
212
98: CBW/CWDE/CDQE
213
99: CWD/CDQ/CQO
214
9a: CALLF Ap (i64)
215
9b: FWAIT/WAIT
216
9c: PUSHF/D/Q Fv (d64)
217
9d: POPF/D/Q Fv (d64)
218
9e: SAHF
219
9f: LAHF
220
# 0xa0 - 0xaf
221
a0: MOV AL,Ob (!REX2)
222
a1: MOV rAX,Ov (!REX2) | JMPABS O (REX2),(o64)
223
a2: MOV Ob,AL (!REX2)
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a3: MOV Ov,rAX (!REX2)
225
a4: MOVS/B Yb,Xb (!REX2)
226
a5: MOVS/W/D/Q Yv,Xv (!REX2)
227
a6: CMPS/B Xb,Yb (!REX2)
228
a7: CMPS/W/D Xv,Yv (!REX2)
229
a8: TEST AL,Ib (!REX2)
230
a9: TEST rAX,Iz (!REX2)
231
aa: STOS/B Yb,AL (!REX2)
232
ab: STOS/W/D/Q Yv,rAX (!REX2)
233
ac: LODS/B AL,Xb (!REX2)
234
ad: LODS/W/D/Q rAX,Xv (!REX2)
235
ae: SCAS/B AL,Yb (!REX2)
236
# Note: The May 2011 Intel manual shows Xv for the second parameter of the
237
# next instruction but Yv is correct
238
af: SCAS/W/D/Q rAX,Yv (!REX2)
239
# 0xb0 - 0xbf
240
b0: MOV AL/R8L,Ib
241
b1: MOV CL/R9L,Ib
242
b2: MOV DL/R10L,Ib
243
b3: MOV BL/R11L,Ib
244
b4: MOV AH/R12L,Ib
245
b5: MOV CH/R13L,Ib
246
b6: MOV DH/R14L,Ib
247
b7: MOV BH/R15L,Ib
248
b8: MOV rAX/r8,Iv
249
b9: MOV rCX/r9,Iv
250
ba: MOV rDX/r10,Iv
251
bb: MOV rBX/r11,Iv
252
bc: MOV rSP/r12,Iv
253
bd: MOV rBP/r13,Iv
254
be: MOV rSI/r14,Iv
255
bf: MOV rDI/r15,Iv
256
# 0xc0 - 0xcf
257
c0: Grp2 Eb,Ib (1A)
258
c1: Grp2 Ev,Ib (1A)
259
c2: RETN Iw (f64)
260
c3: RETN
261
c4: LES Gz,Mp (i64) | VEX+2byte (Prefix),(o64)
262
c5: LDS Gz,Mp (i64) | VEX+1byte (Prefix),(o64)
263
c6: Grp11A Eb,Ib (1A)
264
c7: Grp11B Ev,Iz (1A)
265
c8: ENTER Iw,Ib
266
c9: LEAVE (d64)
267
ca: RETF Iw
268
cb: RETF
269
cc: INT3
270
cd: INT Ib
271
ce: INTO (i64)
272
cf: IRET/D/Q
273
# 0xd0 - 0xdf
274
d0: Grp2 Eb,1 (1A)
275
d1: Grp2 Ev,1 (1A)
276
d2: Grp2 Eb,CL (1A)
277
d3: Grp2 Ev,CL (1A)
278
d4: AAM Ib (i64)
279
d5: AAD Ib (i64) | REX2 (Prefix),(o64)
280
d6:
281
d7: XLAT/XLATB
282
d8: ESC
283
d9: ESC
284
da: ESC
285
db: ESC
286
dc: ESC
287
dd: ESC
288
de: ESC
289
df: ESC
290
# 0xe0 - 0xef
291
# Note: "forced64" is Intel CPU behavior: they ignore 0x66 prefix
292
# in 64-bit mode. AMD CPUs accept 0x66 prefix, it causes RIP truncation
293
# to 16 bits. In 32-bit mode, 0x66 is accepted by both Intel and AMD.
294
e0: LOOPNE/LOOPNZ Jb (f64),(!REX2)
295
e1: LOOPE/LOOPZ Jb (f64),(!REX2)
296
e2: LOOP Jb (f64),(!REX2)
297
e3: JrCXZ Jb (f64),(!REX2)
298
e4: IN AL,Ib (!REX2)
299
e5: IN eAX,Ib (!REX2)
300
e6: OUT Ib,AL (!REX2)
301
e7: OUT Ib,eAX (!REX2)
302
# With 0x66 prefix in 64-bit mode, for AMD CPUs immediate offset
303
# in "near" jumps and calls is 16-bit. For CALL,
304
# push of return address is 16-bit wide, RSP is decremented by 2
305
# but is not truncated to 16 bits, unlike RIP.
306
e8: CALL Jz (f64),(!REX2)
307
e9: JMP-near Jz (f64),(!REX2)
308
ea: JMP-far Ap (i64),(!REX2)
309
eb: JMP-short Jb (f64),(!REX2)
310
ec: IN AL,DX (!REX2)
311
ed: IN eAX,DX (!REX2)
312
ee: OUT DX,AL (!REX2)
313
ef: OUT DX,eAX (!REX2)
314
# 0xf0 - 0xff
315
f0: LOCK (Prefix)
316
f1:
317
f2: REPNE (Prefix) | XACQUIRE (Prefix)
318
f3: REP/REPE (Prefix) | XRELEASE (Prefix)
319
f4: HLT
320
f5: CMC
321
f6: Grp3_1 Eb (1A)
322
f7: Grp3_2 Ev (1A)
323
f8: CLC
324
f9: STC
325
fa: CLI
326
fb: STI
327
fc: CLD
328
fd: STD
329
fe: Grp4 (1A)
330
ff: Grp5 (1A)
331
EndTable
332
333
Table: 2-byte opcode (0x0f)
334
Referrer: 2-byte escape
335
AVXcode: 1
336
# 0x0f 0x00-0x0f
337
00: Grp6 (1A)
338
01: Grp7 (1A)
339
02: LAR Gv,Ew
340
03: LSL Gv,Ew
341
04:
342
05: SYSCALL (o64)
343
06: CLTS
344
07: SYSRET (o64)
345
08: INVD
346
09: WBINVD | WBNOINVD (F3)
347
0a:
348
0b: UD2 (1B)
349
0c:
350
# AMD's prefetch group. Intel supports prefetchw(/1) only.
351
0d: GrpP
352
0e: FEMMS
353
# 3DNow! uses the last imm byte as opcode extension.
354
0f: 3DNow! Pq,Qq,Ib
355
# 0x0f 0x10-0x1f
356
# NOTE: According to Intel SDM opcode map, vmovups and vmovupd has no operands
357
# but it actually has operands. And also, vmovss and vmovsd only accept 128bit.
358
# MOVSS/MOVSD has too many forms(3) on SDM. This map just shows a typical form.
359
# Many AVX instructions lack v1 superscript, according to Intel AVX-Prgramming
360
# Reference A.1
361
10: vmovups Vps,Wps | vmovupd Vpd,Wpd (66) | vmovss Vx,Hx,Wss (F3),(v1) | vmovsd Vx,Hx,Wsd (F2),(v1)
362
11: vmovups Wps,Vps | vmovupd Wpd,Vpd (66) | vmovss Wss,Hx,Vss (F3),(v1) | vmovsd Wsd,Hx,Vsd (F2),(v1)
363
12: vmovlps Vq,Hq,Mq (v1) | vmovhlps Vq,Hq,Uq (v1) | vmovlpd Vq,Hq,Mq (66),(v1) | vmovsldup Vx,Wx (F3) | vmovddup Vx,Wx (F2)
364
13: vmovlps Mq,Vq (v1) | vmovlpd Mq,Vq (66),(v1)
365
14: vunpcklps Vx,Hx,Wx | vunpcklpd Vx,Hx,Wx (66)
366
15: vunpckhps Vx,Hx,Wx | vunpckhpd Vx,Hx,Wx (66)
367
16: vmovhps Vdq,Hq,Mq (v1) | vmovlhps Vdq,Hq,Uq (v1) | vmovhpd Vdq,Hq,Mq (66),(v1) | vmovshdup Vx,Wx (F3)
368
17: vmovhps Mq,Vq (v1) | vmovhpd Mq,Vq (66),(v1)
369
18: Grp16 (1A)
370
19:
371
# Intel SDM opcode map does not list MPX instructions. For now using Gv for
372
# bnd registers and Ev for everything else is OK because the instruction
373
# decoder does not use the information except as an indication that there is
374
# a ModR/M byte.
375
1a: BNDCL Gv,Ev (F3) | BNDCU Gv,Ev (F2) | BNDMOV Gv,Ev (66) | BNDLDX Gv,Ev
376
1b: BNDCN Gv,Ev (F2) | BNDMOV Ev,Gv (66) | BNDMK Gv,Ev (F3) | BNDSTX Ev,Gv
377
1c: Grp20 (1A),(1C)
378
1d:
379
1e: Grp21 (1A)
380
1f: NOP Ev
381
# 0x0f 0x20-0x2f
382
20: MOV Rd,Cd
383
21: MOV Rd,Dd
384
22: MOV Cd,Rd
385
23: MOV Dd,Rd
386
24:
387
25:
388
26:
389
27:
390
28: vmovaps Vps,Wps | vmovapd Vpd,Wpd (66)
391
29: vmovaps Wps,Vps | vmovapd Wpd,Vpd (66)
392
2a: cvtpi2ps Vps,Qpi | cvtpi2pd Vpd,Qpi (66) | vcvtsi2ss Vss,Hss,Ey (F3),(v1) | vcvtsi2sd Vsd,Hsd,Ey (F2),(v1)
393
2b: vmovntps Mps,Vps | vmovntpd Mpd,Vpd (66)
394
2c: cvttps2pi Ppi,Wps | cvttpd2pi Ppi,Wpd (66) | vcvttss2si Gy,Wss (F3),(v1) | vcvttsd2si Gy,Wsd (F2),(v1)
395
2d: cvtps2pi Ppi,Wps | cvtpd2pi Qpi,Wpd (66) | vcvtss2si Gy,Wss (F3),(v1) | vcvtsd2si Gy,Wsd (F2),(v1)
396
2e: vucomiss Vss,Wss (v1) | vucomisd Vsd,Wsd (66),(v1)
397
2f: vcomiss Vss,Wss (v1) | vcomisd Vsd,Wsd (66),(v1)
398
# 0x0f 0x30-0x3f
399
30: WRMSR (!REX2)
400
31: RDTSC (!REX2)
401
32: RDMSR (!REX2)
402
33: RDPMC (!REX2)
403
34: SYSENTER (!REX2)
404
35: SYSEXIT (!REX2)
405
36:
406
37: GETSEC (!REX2)
407
38: escape # 3-byte escape 1
408
39:
409
3a: escape # 3-byte escape 2
410
3b:
411
3c:
412
3d:
413
3e:
414
3f:
415
# 0x0f 0x40-0x4f
416
40: CMOVO Gv,Ev
417
41: CMOVNO Gv,Ev | kandw/q Vk,Hk,Uk | kandb/d Vk,Hk,Uk (66)
418
42: CMOVB/C/NAE Gv,Ev | kandnw/q Vk,Hk,Uk | kandnb/d Vk,Hk,Uk (66)
419
43: CMOVAE/NB/NC Gv,Ev
420
44: CMOVE/Z Gv,Ev | knotw/q Vk,Uk | knotb/d Vk,Uk (66)
421
45: CMOVNE/NZ Gv,Ev | korw/q Vk,Hk,Uk | korb/d Vk,Hk,Uk (66)
422
46: CMOVBE/NA Gv,Ev | kxnorw/q Vk,Hk,Uk | kxnorb/d Vk,Hk,Uk (66)
423
47: CMOVA/NBE Gv,Ev | kxorw/q Vk,Hk,Uk | kxorb/d Vk,Hk,Uk (66)
424
48: CMOVS Gv,Ev
425
49: CMOVNS Gv,Ev
426
4a: CMOVP/PE Gv,Ev | kaddw/q Vk,Hk,Uk | kaddb/d Vk,Hk,Uk (66)
427
4b: CMOVNP/PO Gv,Ev | kunpckbw Vk,Hk,Uk (66) | kunpckwd/dq Vk,Hk,Uk
428
4c: CMOVL/NGE Gv,Ev
429
4d: CMOVNL/GE Gv,Ev
430
4e: CMOVLE/NG Gv,Ev
431
4f: CMOVNLE/G Gv,Ev
432
# 0x0f 0x50-0x5f
433
50: vmovmskps Gy,Ups | vmovmskpd Gy,Upd (66)
434
51: vsqrtps Vps,Wps | vsqrtpd Vpd,Wpd (66) | vsqrtss Vss,Hss,Wss (F3),(v1) | vsqrtsd Vsd,Hsd,Wsd (F2),(v1)
435
52: vrsqrtps Vps,Wps | vrsqrtss Vss,Hss,Wss (F3),(v1)
436
53: vrcpps Vps,Wps | vrcpss Vss,Hss,Wss (F3),(v1)
437
54: vandps Vps,Hps,Wps | vandpd Vpd,Hpd,Wpd (66)
438
55: vandnps Vps,Hps,Wps | vandnpd Vpd,Hpd,Wpd (66)
439
56: vorps Vps,Hps,Wps | vorpd Vpd,Hpd,Wpd (66)
440
57: vxorps Vps,Hps,Wps | vxorpd Vpd,Hpd,Wpd (66)
441
58: vaddps Vps,Hps,Wps | vaddpd Vpd,Hpd,Wpd (66) | vaddss Vss,Hss,Wss (F3),(v1) | vaddsd Vsd,Hsd,Wsd (F2),(v1)
442
59: vmulps Vps,Hps,Wps | vmulpd Vpd,Hpd,Wpd (66) | vmulss Vss,Hss,Wss (F3),(v1) | vmulsd Vsd,Hsd,Wsd (F2),(v1)
443
5a: vcvtps2pd Vpd,Wps | vcvtpd2ps Vps,Wpd (66) | vcvtss2sd Vsd,Hx,Wss (F3),(v1) | vcvtsd2ss Vss,Hx,Wsd (F2),(v1)
444
5b: vcvtdq2ps Vps,Wdq | vcvtqq2ps Vps,Wqq (evo) | vcvtps2dq Vdq,Wps (66) | vcvttps2dq Vdq,Wps (F3)
445
5c: vsubps Vps,Hps,Wps | vsubpd Vpd,Hpd,Wpd (66) | vsubss Vss,Hss,Wss (F3),(v1) | vsubsd Vsd,Hsd,Wsd (F2),(v1)
446
5d: vminps Vps,Hps,Wps | vminpd Vpd,Hpd,Wpd (66) | vminss Vss,Hss,Wss (F3),(v1) | vminsd Vsd,Hsd,Wsd (F2),(v1)
447
5e: vdivps Vps,Hps,Wps | vdivpd Vpd,Hpd,Wpd (66) | vdivss Vss,Hss,Wss (F3),(v1) | vdivsd Vsd,Hsd,Wsd (F2),(v1)
448
5f: vmaxps Vps,Hps,Wps | vmaxpd Vpd,Hpd,Wpd (66) | vmaxss Vss,Hss,Wss (F3),(v1) | vmaxsd Vsd,Hsd,Wsd (F2),(v1)
449
# 0x0f 0x60-0x6f
450
60: punpcklbw Pq,Qd | vpunpcklbw Vx,Hx,Wx (66),(v1)
451
61: punpcklwd Pq,Qd | vpunpcklwd Vx,Hx,Wx (66),(v1)
452
62: punpckldq Pq,Qd | vpunpckldq Vx,Hx,Wx (66),(v1)
453
63: packsswb Pq,Qq | vpacksswb Vx,Hx,Wx (66),(v1)
454
64: pcmpgtb Pq,Qq | vpcmpgtb Vx,Hx,Wx (66),(v1)
455
65: pcmpgtw Pq,Qq | vpcmpgtw Vx,Hx,Wx (66),(v1)
456
66: pcmpgtd Pq,Qq | vpcmpgtd Vx,Hx,Wx (66),(v1)
457
67: packuswb Pq,Qq | vpackuswb Vx,Hx,Wx (66),(v1)
458
68: punpckhbw Pq,Qd | vpunpckhbw Vx,Hx,Wx (66),(v1)
459
69: punpckhwd Pq,Qd | vpunpckhwd Vx,Hx,Wx (66),(v1)
460
6a: punpckhdq Pq,Qd | vpunpckhdq Vx,Hx,Wx (66),(v1)
461
6b: packssdw Pq,Qd | vpackssdw Vx,Hx,Wx (66),(v1)
462
6c: vpunpcklqdq Vx,Hx,Wx (66),(v1)
463
6d: vpunpckhqdq Vx,Hx,Wx (66),(v1)
464
6e: movd/q Pd,Ey | vmovd/q Vy,Ey (66),(v1)
465
6f: movq Pq,Qq | vmovdqa Vx,Wx (66) | vmovdqa32/64 Vx,Wx (66),(evo) | vmovdqu Vx,Wx (F3) | vmovdqu32/64 Vx,Wx (F3),(evo) | vmovdqu8/16 Vx,Wx (F2),(ev)
466
# 0x0f 0x70-0x7f
467
70: pshufw Pq,Qq,Ib | vpshufd Vx,Wx,Ib (66),(v1) | vpshufhw Vx,Wx,Ib (F3),(v1) | vpshuflw Vx,Wx,Ib (F2),(v1)
468
71: Grp12 (1A)
469
72: Grp13 (1A)
470
73: Grp14 (1A)
471
74: pcmpeqb Pq,Qq | vpcmpeqb Vx,Hx,Wx (66),(v1)
472
75: pcmpeqw Pq,Qq | vpcmpeqw Vx,Hx,Wx (66),(v1)
473
76: pcmpeqd Pq,Qq | vpcmpeqd Vx,Hx,Wx (66),(v1)
474
# Note: Remove (v), because vzeroall and vzeroupper becomes emms without VEX.
475
77: emms | vzeroupper | vzeroall
476
78: VMREAD Ey,Gy | vcvttps2udq/pd2udq Vx,Wpd (evo) | vcvttsd2usi Gv,Wx (F2),(ev) | vcvttss2usi Gv,Wx (F3),(ev) | vcvttps2uqq/pd2uqq Vx,Wx (66),(ev)
477
79: VMWRITE Gy,Ey | vcvtps2udq/pd2udq Vx,Wpd (evo) | vcvtsd2usi Gv,Wx (F2),(ev) | vcvtss2usi Gv,Wx (F3),(ev) | vcvtps2uqq/pd2uqq Vx,Wx (66),(ev)
478
7a: vcvtudq2pd/uqq2pd Vpd,Wx (F3),(ev) | vcvtudq2ps/uqq2ps Vpd,Wx (F2),(ev) | vcvttps2qq/pd2qq Vx,Wx (66),(ev)
479
7b: vcvtusi2sd Vpd,Hpd,Ev (F2),(ev) | vcvtusi2ss Vps,Hps,Ev (F3),(ev) | vcvtps2qq/pd2qq Vx,Wx (66),(ev)
480
7c: vhaddpd Vpd,Hpd,Wpd (66) | vhaddps Vps,Hps,Wps (F2)
481
7d: vhsubpd Vpd,Hpd,Wpd (66) | vhsubps Vps,Hps,Wps (F2)
482
7e: movd/q Ey,Pd | vmovd/q Ey,Vy (66),(v1) | vmovq Vq,Wq (F3),(v1)
483
7f: movq Qq,Pq | vmovdqa Wx,Vx (66) | vmovdqa32/64 Wx,Vx (66),(evo) | vmovdqu Wx,Vx (F3) | vmovdqu32/64 Wx,Vx (F3),(evo) | vmovdqu8/16 Wx,Vx (F2),(ev)
484
# 0x0f 0x80-0x8f
485
# Note: "forced64" is Intel CPU behavior (see comment about CALL insn).
486
80: JO Jz (f64),(!REX2)
487
81: JNO Jz (f64),(!REX2)
488
82: JB/JC/JNAE Jz (f64),(!REX2)
489
83: JAE/JNB/JNC Jz (f64),(!REX2)
490
84: JE/JZ Jz (f64),(!REX2)
491
85: JNE/JNZ Jz (f64),(!REX2)
492
86: JBE/JNA Jz (f64),(!REX2)
493
87: JA/JNBE Jz (f64),(!REX2)
494
88: JS Jz (f64),(!REX2)
495
89: JNS Jz (f64),(!REX2)
496
8a: JP/JPE Jz (f64),(!REX2)
497
8b: JNP/JPO Jz (f64),(!REX2)
498
8c: JL/JNGE Jz (f64),(!REX2)
499
8d: JNL/JGE Jz (f64),(!REX2)
500
8e: JLE/JNG Jz (f64),(!REX2)
501
8f: JNLE/JG Jz (f64),(!REX2)
502
# 0x0f 0x90-0x9f
503
90: SETO Eb | kmovw/q Vk,Wk | kmovb/d Vk,Wk (66)
504
91: SETNO Eb | kmovw/q Mv,Vk | kmovb/d Mv,Vk (66)
505
92: SETB/C/NAE Eb | kmovw Vk,Rv | kmovb Vk,Rv (66) | kmovq/d Vk,Rv (F2)
506
93: SETAE/NB/NC Eb | kmovw Gv,Uk | kmovb Gv,Uk (66) | kmovq/d Gv,Uk (F2)
507
94: SETE/Z Eb
508
95: SETNE/NZ Eb
509
96: SETBE/NA Eb
510
97: SETA/NBE Eb
511
98: SETS Eb | kortestw/q Vk,Uk | kortestb/d Vk,Uk (66)
512
99: SETNS Eb | ktestw/q Vk,Uk | ktestb/d Vk,Uk (66)
513
9a: SETP/PE Eb
514
9b: SETNP/PO Eb
515
9c: SETL/NGE Eb
516
9d: SETNL/GE Eb
517
9e: SETLE/NG Eb
518
9f: SETNLE/G Eb
519
# 0x0f 0xa0-0xaf
520
a0: PUSH FS (d64)
521
a1: POP FS (d64)
522
a2: CPUID
523
a3: BT Ev,Gv
524
a4: SHLD Ev,Gv,Ib
525
a5: SHLD Ev,Gv,CL
526
a6: GrpPDLK
527
a7: GrpRNG
528
a8: PUSH GS (d64)
529
a9: POP GS (d64)
530
aa: RSM
531
ab: BTS Ev,Gv
532
ac: SHRD Ev,Gv,Ib
533
ad: SHRD Ev,Gv,CL
534
ae: Grp15 (1A),(1C)
535
af: IMUL Gv,Ev
536
# 0x0f 0xb0-0xbf
537
b0: CMPXCHG Eb,Gb
538
b1: CMPXCHG Ev,Gv
539
b2: LSS Gv,Mp
540
b3: BTR Ev,Gv
541
b4: LFS Gv,Mp
542
b5: LGS Gv,Mp
543
b6: MOVZX Gv,Eb
544
b7: MOVZX Gv,Ew
545
b8: JMPE (!F3) | POPCNT Gv,Ev (F3)
546
b9: Grp10 (1A)
547
ba: Grp8 Ev,Ib (1A)
548
bb: BTC Ev,Gv
549
bc: BSF Gv,Ev (!F3) | TZCNT Gv,Ev (F3)
550
bd: BSR Gv,Ev (!F3) | LZCNT Gv,Ev (F3)
551
be: MOVSX Gv,Eb
552
bf: MOVSX Gv,Ew
553
# 0x0f 0xc0-0xcf
554
c0: XADD Eb,Gb
555
c1: XADD Ev,Gv
556
c2: vcmpps Vps,Hps,Wps,Ib | vcmppd Vpd,Hpd,Wpd,Ib (66) | vcmpss Vss,Hss,Wss,Ib (F3),(v1) | vcmpsd Vsd,Hsd,Wsd,Ib (F2),(v1)
557
c3: movnti My,Gy
558
c4: pinsrw Pq,Ry/Mw,Ib | vpinsrw Vdq,Hdq,Ry/Mw,Ib (66),(v1)
559
c5: pextrw Gd,Nq,Ib | vpextrw Gd,Udq,Ib (66),(v1)
560
c6: vshufps Vps,Hps,Wps,Ib | vshufpd Vpd,Hpd,Wpd,Ib (66)
561
c7: Grp9 (1A)
562
c8: BSWAP RAX/EAX/R8/R8D
563
c9: BSWAP RCX/ECX/R9/R9D
564
ca: BSWAP RDX/EDX/R10/R10D
565
cb: BSWAP RBX/EBX/R11/R11D
566
cc: BSWAP RSP/ESP/R12/R12D
567
cd: BSWAP RBP/EBP/R13/R13D
568
ce: BSWAP RSI/ESI/R14/R14D
569
cf: BSWAP RDI/EDI/R15/R15D
570
# 0x0f 0xd0-0xdf
571
d0: vaddsubpd Vpd,Hpd,Wpd (66) | vaddsubps Vps,Hps,Wps (F2)
572
d1: psrlw Pq,Qq | vpsrlw Vx,Hx,Wx (66),(v1)
573
d2: psrld Pq,Qq | vpsrld Vx,Hx,Wx (66),(v1)
574
d3: psrlq Pq,Qq | vpsrlq Vx,Hx,Wx (66),(v1)
575
d4: paddq Pq,Qq | vpaddq Vx,Hx,Wx (66),(v1)
576
d5: pmullw Pq,Qq | vpmullw Vx,Hx,Wx (66),(v1)
577
d6: vmovq Wq,Vq (66),(v1) | movq2dq Vdq,Nq (F3) | movdq2q Pq,Uq (F2)
578
d7: pmovmskb Gd,Nq | vpmovmskb Gd,Ux (66),(v1)
579
d8: psubusb Pq,Qq | vpsubusb Vx,Hx,Wx (66),(v1)
580
d9: psubusw Pq,Qq | vpsubusw Vx,Hx,Wx (66),(v1)
581
da: pminub Pq,Qq | vpminub Vx,Hx,Wx (66),(v1)
582
db: pand Pq,Qq | vpand Vx,Hx,Wx (66),(v1) | vpandd/q Vx,Hx,Wx (66),(evo)
583
dc: paddusb Pq,Qq | vpaddusb Vx,Hx,Wx (66),(v1)
584
dd: paddusw Pq,Qq | vpaddusw Vx,Hx,Wx (66),(v1)
585
de: pmaxub Pq,Qq | vpmaxub Vx,Hx,Wx (66),(v1)
586
df: pandn Pq,Qq | vpandn Vx,Hx,Wx (66),(v1) | vpandnd/q Vx,Hx,Wx (66),(evo)
587
# 0x0f 0xe0-0xef
588
e0: pavgb Pq,Qq | vpavgb Vx,Hx,Wx (66),(v1)
589
e1: psraw Pq,Qq | vpsraw Vx,Hx,Wx (66),(v1)
590
e2: psrad Pq,Qq | vpsrad Vx,Hx,Wx (66),(v1)
591
e3: pavgw Pq,Qq | vpavgw Vx,Hx,Wx (66),(v1)
592
e4: pmulhuw Pq,Qq | vpmulhuw Vx,Hx,Wx (66),(v1)
593
e5: pmulhw Pq,Qq | vpmulhw Vx,Hx,Wx (66),(v1)
594
e6: vcvttpd2dq Vx,Wpd (66) | vcvtdq2pd Vx,Wdq (F3) | vcvtdq2pd/qq2pd Vx,Wdq (F3),(evo) | vcvtpd2dq Vx,Wpd (F2)
595
e7: movntq Mq,Pq | vmovntdq Mx,Vx (66)
596
e8: psubsb Pq,Qq | vpsubsb Vx,Hx,Wx (66),(v1)
597
e9: psubsw Pq,Qq | vpsubsw Vx,Hx,Wx (66),(v1)
598
ea: pminsw Pq,Qq | vpminsw Vx,Hx,Wx (66),(v1)
599
eb: por Pq,Qq | vpor Vx,Hx,Wx (66),(v1) | vpord/q Vx,Hx,Wx (66),(evo)
600
ec: paddsb Pq,Qq | vpaddsb Vx,Hx,Wx (66),(v1)
601
ed: paddsw Pq,Qq | vpaddsw Vx,Hx,Wx (66),(v1)
602
ee: pmaxsw Pq,Qq | vpmaxsw Vx,Hx,Wx (66),(v1)
603
ef: pxor Pq,Qq | vpxor Vx,Hx,Wx (66),(v1) | vpxord/q Vx,Hx,Wx (66),(evo)
604
# 0x0f 0xf0-0xff
605
f0: vlddqu Vx,Mx (F2)
606
f1: psllw Pq,Qq | vpsllw Vx,Hx,Wx (66),(v1)
607
f2: pslld Pq,Qq | vpslld Vx,Hx,Wx (66),(v1)
608
f3: psllq Pq,Qq | vpsllq Vx,Hx,Wx (66),(v1)
609
f4: pmuludq Pq,Qq | vpmuludq Vx,Hx,Wx (66),(v1)
610
f5: pmaddwd Pq,Qq | vpmaddwd Vx,Hx,Wx (66),(v1)
611
f6: psadbw Pq,Qq | vpsadbw Vx,Hx,Wx (66),(v1)
612
f7: maskmovq Pq,Nq | vmaskmovdqu Vx,Ux (66),(v1)
613
f8: psubb Pq,Qq | vpsubb Vx,Hx,Wx (66),(v1)
614
f9: psubw Pq,Qq | vpsubw Vx,Hx,Wx (66),(v1)
615
fa: psubd Pq,Qq | vpsubd Vx,Hx,Wx (66),(v1)
616
fb: psubq Pq,Qq | vpsubq Vx,Hx,Wx (66),(v1)
617
fc: paddb Pq,Qq | vpaddb Vx,Hx,Wx (66),(v1)
618
fd: paddw Pq,Qq | vpaddw Vx,Hx,Wx (66),(v1)
619
fe: paddd Pq,Qq | vpaddd Vx,Hx,Wx (66),(v1)
620
ff: UD0
621
EndTable
622
623
Table: 3-byte opcode 1 (0x0f 0x38)
624
Referrer: 3-byte escape 1
625
AVXcode: 2
626
# 0x0f 0x38 0x00-0x0f
627
00: pshufb Pq,Qq | vpshufb Vx,Hx,Wx (66),(v1)
628
01: phaddw Pq,Qq | vphaddw Vx,Hx,Wx (66),(v1)
629
02: phaddd Pq,Qq | vphaddd Vx,Hx,Wx (66),(v1)
630
03: phaddsw Pq,Qq | vphaddsw Vx,Hx,Wx (66),(v1)
631
04: pmaddubsw Pq,Qq | vpmaddubsw Vx,Hx,Wx (66),(v1)
632
05: phsubw Pq,Qq | vphsubw Vx,Hx,Wx (66),(v1)
633
06: phsubd Pq,Qq | vphsubd Vx,Hx,Wx (66),(v1)
634
07: phsubsw Pq,Qq | vphsubsw Vx,Hx,Wx (66),(v1)
635
08: psignb Pq,Qq | vpsignb Vx,Hx,Wx (66),(v1)
636
09: psignw Pq,Qq | vpsignw Vx,Hx,Wx (66),(v1)
637
0a: psignd Pq,Qq | vpsignd Vx,Hx,Wx (66),(v1)
638
0b: pmulhrsw Pq,Qq | vpmulhrsw Vx,Hx,Wx (66),(v1)
639
0c: vpermilps Vx,Hx,Wx (66),(v)
640
0d: vpermilpd Vx,Hx,Wx (66),(v)
641
0e: vtestps Vx,Wx (66),(v)
642
0f: vtestpd Vx,Wx (66),(v)
643
# 0x0f 0x38 0x10-0x1f
644
10: pblendvb Vdq,Wdq (66) | vpsrlvw Vx,Hx,Wx (66),(evo) | vpmovuswb Wx,Vx (F3),(ev)
645
11: vpmovusdb Wx,Vd (F3),(ev) | vpsravw Vx,Hx,Wx (66),(ev)
646
12: vpmovusqb Wx,Vq (F3),(ev) | vpsllvw Vx,Hx,Wx (66),(ev)
647
13: vcvtph2ps Vx,Wx (66),(v) | vpmovusdw Wx,Vd (F3),(ev)
648
14: blendvps Vdq,Wdq (66) | vpmovusqw Wx,Vq (F3),(ev) | vprorvd/q Vx,Hx,Wx (66),(evo)
649
15: blendvpd Vdq,Wdq (66) | vpmovusqd Wx,Vq (F3),(ev) | vprolvd/q Vx,Hx,Wx (66),(evo)
650
16: vpermps Vqq,Hqq,Wqq (66),(v) | vpermps/d Vqq,Hqq,Wqq (66),(evo)
651
17: vptest Vx,Wx (66)
652
18: vbroadcastss Vx,Wd (66),(v)
653
19: vbroadcastsd Vqq,Wq (66),(v) | vbroadcastf32x2 Vqq,Wq (66),(evo)
654
1a: vbroadcastf128 Vqq,Mdq (66),(v) | vbroadcastf32x4/64x2 Vqq,Wq (66),(evo)
655
1b: vbroadcastf32x8/64x4 Vqq,Mdq (66),(ev)
656
1c: pabsb Pq,Qq | vpabsb Vx,Wx (66),(v1)
657
1d: pabsw Pq,Qq | vpabsw Vx,Wx (66),(v1)
658
1e: pabsd Pq,Qq | vpabsd Vx,Wx (66),(v1)
659
1f: vpabsq Vx,Wx (66),(ev)
660
# 0x0f 0x38 0x20-0x2f
661
20: vpmovsxbw Vx,Ux/Mq (66),(v1) | vpmovswb Wx,Vx (F3),(ev)
662
21: vpmovsxbd Vx,Ux/Md (66),(v1) | vpmovsdb Wx,Vd (F3),(ev)
663
22: vpmovsxbq Vx,Ux/Mw (66),(v1) | vpmovsqb Wx,Vq (F3),(ev)
664
23: vpmovsxwd Vx,Ux/Mq (66),(v1) | vpmovsdw Wx,Vd (F3),(ev)
665
24: vpmovsxwq Vx,Ux/Md (66),(v1) | vpmovsqw Wx,Vq (F3),(ev)
666
25: vpmovsxdq Vx,Ux/Mq (66),(v1) | vpmovsqd Wx,Vq (F3),(ev)
667
26: vptestmb/w Vk,Hx,Wx (66),(ev) | vptestnmb/w Vk,Hx,Wx (F3),(ev)
668
27: vptestmd/q Vk,Hx,Wx (66),(ev) | vptestnmd/q Vk,Hx,Wx (F3),(ev)
669
28: vpmuldq Vx,Hx,Wx (66),(v1) | vpmovm2b/w Vx,Uk (F3),(ev)
670
29: vpcmpeqq Vx,Hx,Wx (66),(v1) | vpmovb2m/w2m Vk,Ux (F3),(ev)
671
2a: vmovntdqa Vx,Mx (66),(v1) | vpbroadcastmb2q Vx,Uk (F3),(ev)
672
2b: vpackusdw Vx,Hx,Wx (66),(v1)
673
2c: vmaskmovps Vx,Hx,Mx (66),(v) | vscalefps/d Vx,Hx,Wx (66),(evo)
674
2d: vmaskmovpd Vx,Hx,Mx (66),(v) | vscalefss/d Vx,Hx,Wx (66),(evo)
675
2e: vmaskmovps Mx,Hx,Vx (66),(v)
676
2f: vmaskmovpd Mx,Hx,Vx (66),(v)
677
# 0x0f 0x38 0x30-0x3f
678
30: vpmovzxbw Vx,Ux/Mq (66),(v1) | vpmovwb Wx,Vx (F3),(ev)
679
31: vpmovzxbd Vx,Ux/Md (66),(v1) | vpmovdb Wx,Vd (F3),(ev)
680
32: vpmovzxbq Vx,Ux/Mw (66),(v1) | vpmovqb Wx,Vq (F3),(ev)
681
33: vpmovzxwd Vx,Ux/Mq (66),(v1) | vpmovdw Wx,Vd (F3),(ev)
682
34: vpmovzxwq Vx,Ux/Md (66),(v1) | vpmovqw Wx,Vq (F3),(ev)
683
35: vpmovzxdq Vx,Ux/Mq (66),(v1) | vpmovqd Wx,Vq (F3),(ev)
684
36: vpermd Vqq,Hqq,Wqq (66),(v) | vpermd/q Vqq,Hqq,Wqq (66),(evo)
685
37: vpcmpgtq Vx,Hx,Wx (66),(v1)
686
38: vpminsb Vx,Hx,Wx (66),(v1) | vpmovm2d/q Vx,Uk (F3),(ev)
687
39: vpminsd Vx,Hx,Wx (66),(v1) | vpminsd/q Vx,Hx,Wx (66),(evo) | vpmovd2m/q2m Vk,Ux (F3),(ev)
688
3a: vpminuw Vx,Hx,Wx (66),(v1) | vpbroadcastmw2d Vx,Uk (F3),(ev)
689
3b: vpminud Vx,Hx,Wx (66),(v1) | vpminud/q Vx,Hx,Wx (66),(evo)
690
3c: vpmaxsb Vx,Hx,Wx (66),(v1)
691
3d: vpmaxsd Vx,Hx,Wx (66),(v1) | vpmaxsd/q Vx,Hx,Wx (66),(evo)
692
3e: vpmaxuw Vx,Hx,Wx (66),(v1)
693
3f: vpmaxud Vx,Hx,Wx (66),(v1) | vpmaxud/q Vx,Hx,Wx (66),(evo)
694
# 0x0f 0x38 0x40-0x8f
695
40: vpmulld Vx,Hx,Wx (66),(v1) | vpmulld/q Vx,Hx,Wx (66),(evo)
696
41: vphminposuw Vdq,Wdq (66),(v1)
697
42: vgetexpps/d Vx,Wx (66),(ev)
698
43: vgetexpss/d Vx,Hx,Wx (66),(ev)
699
44: vplzcntd/q Vx,Wx (66),(ev)
700
45: vpsrlvd/q Vx,Hx,Wx (66),(v)
701
46: vpsravd Vx,Hx,Wx (66),(v) | vpsravd/q Vx,Hx,Wx (66),(evo)
702
47: vpsllvd/q Vx,Hx,Wx (66),(v)
703
# Skip 0x48
704
49: TILERELEASE (v1),(000),(11B) | LDTILECFG Mtc (v1)(000) | STTILECFG Mtc (66),(v1),(000) | TILEZERO Vt (F2),(v1),(11B)
705
# Skip 0x4a
706
4b: TILELOADD Vt,Wsm (F2),(v1) | TILELOADDT1 Vt,Wsm (66),(v1) | TILESTORED Wsm,Vt (F3),(v)
707
4c: vrcp14ps/d Vpd,Wpd (66),(ev)
708
4d: vrcp14ss/d Vsd,Hpd,Wsd (66),(ev)
709
4e: vrsqrt14ps/d Vpd,Wpd (66),(ev)
710
4f: vrsqrt14ss/d Vsd,Hsd,Wsd (66),(ev)
711
50: vpdpbusd Vx,Hx,Wx (66) | vpdpbssd Vx,Hx,Wx (F2),(v) | vpdpbsud Vx,Hx,Wx (F3),(v) | vpdpbuud Vx,Hx,Wx (v)
712
51: vpdpbusds Vx,Hx,Wx (66) | vpdpbssds Vx,Hx,Wx (F2),(v) | vpdpbsuds Vx,Hx,Wx (F3),(v) | vpdpbuuds Vx,Hx,Wx (v)
713
52: vdpbf16ps Vx,Hx,Wx (F3),(ev) | vpdpwssd Vx,Hx,Wx (66) | vp4dpwssd Vdqq,Hdqq,Wdq (F2),(ev)
714
53: vpdpwssds Vx,Hx,Wx (66) | vp4dpwssds Vdqq,Hdqq,Wdq (F2),(ev)
715
54: vpopcntb/w Vx,Wx (66),(ev)
716
55: vpopcntd/q Vx,Wx (66),(ev)
717
58: vpbroadcastd Vx,Wx (66),(v)
718
59: vpbroadcastq Vx,Wx (66),(v) | vbroadcasti32x2 Vx,Wx (66),(evo)
719
5a: vbroadcasti128 Vqq,Mdq (66),(v) | vbroadcasti32x4/64x2 Vx,Wx (66),(evo)
720
5b: vbroadcasti32x8/64x4 Vqq,Mdq (66),(ev)
721
5c: TDPBF16PS Vt,Wt,Ht (F3),(v1) | TDPFP16PS Vt,Wt,Ht (F2),(v1),(o64)
722
# Skip 0x5d
723
5e: TDPBSSD Vt,Wt,Ht (F2),(v1) | TDPBSUD Vt,Wt,Ht (F3),(v1) | TDPBUSD Vt,Wt,Ht (66),(v1) | TDPBUUD Vt,Wt,Ht (v1)
724
# Skip 0x5f-0x61
725
62: vpexpandb/w Vx,Wx (66),(ev)
726
63: vpcompressb/w Wx,Vx (66),(ev)
727
64: vpblendmd/q Vx,Hx,Wx (66),(ev)
728
65: vblendmps/d Vx,Hx,Wx (66),(ev)
729
66: vpblendmb/w Vx,Hx,Wx (66),(ev)
730
68: vp2intersectd/q Kx,Hx,Wx (F2),(ev)
731
# Skip 0x69-0x6b
732
6c: TCMMIMFP16PS Vt,Wt,Ht (66),(v1),(o64) | TCMMRLFP16PS Vt,Wt,Ht (v1),(o64)
733
# Skip 0x6d-0x6f
734
70: vpshldvw Vx,Hx,Wx (66),(ev)
735
71: vpshldvd/q Vx,Hx,Wx (66),(ev)
736
72: vcvtne2ps2bf16 Vx,Hx,Wx (F2),(ev) | vcvtneps2bf16 Vx,Wx (F3) | vpshrdvw Vx,Hx,Wx (66),(ev)
737
73: vpshrdvd/q Vx,Hx,Wx (66),(ev)
738
75: vpermi2b/w Vx,Hx,Wx (66),(ev)
739
76: vpermi2d/q Vx,Hx,Wx (66),(ev)
740
77: vpermi2ps/d Vx,Hx,Wx (66),(ev)
741
78: vpbroadcastb Vx,Wx (66),(v)
742
79: vpbroadcastw Vx,Wx (66),(v)
743
7a: vpbroadcastb Vx,Rv (66),(ev)
744
7b: vpbroadcastw Vx,Rv (66),(ev)
745
7c: vpbroadcastd/q Vx,Rv (66),(ev)
746
7d: vpermt2b/w Vx,Hx,Wx (66),(ev)
747
7e: vpermt2d/q Vx,Hx,Wx (66),(ev)
748
7f: vpermt2ps/d Vx,Hx,Wx (66),(ev)
749
80: INVEPT Gy,Mdq (66)
750
81: INVVPID Gy,Mdq (66)
751
82: INVPCID Gy,Mdq (66)
752
83: vpmultishiftqb Vx,Hx,Wx (66),(ev)
753
88: vexpandps/d Vpd,Wpd (66),(ev)
754
89: vpexpandd/q Vx,Wx (66),(ev)
755
8a: vcompressps/d Wx,Vx (66),(ev)
756
8b: vpcompressd/q Wx,Vx (66),(ev)
757
8c: vpmaskmovd/q Vx,Hx,Mx (66),(v)
758
8d: vpermb/w Vx,Hx,Wx (66),(ev)
759
8e: vpmaskmovd/q Mx,Vx,Hx (66),(v)
760
8f: vpshufbitqmb Kx,Hx,Wx (66),(ev)
761
# 0x0f 0x38 0x90-0xbf (FMA)
762
90: vgatherdd/q Vx,Hx,Wx (66),(v) | vpgatherdd/q Vx,Wx (66),(evo)
763
91: vgatherqd/q Vx,Hx,Wx (66),(v) | vpgatherqd/q Vx,Wx (66),(evo)
764
92: vgatherdps/d Vx,Hx,Wx (66),(v)
765
93: vgatherqps/d Vx,Hx,Wx (66),(v)
766
94:
767
95:
768
96: vfmaddsub132ps/d Vx,Hx,Wx (66),(v)
769
97: vfmsubadd132ps/d Vx,Hx,Wx (66),(v)
770
98: vfmadd132ps/d Vx,Hx,Wx (66),(v)
771
99: vfmadd132ss/d Vx,Hx,Wx (66),(v),(v1)
772
9a: vfmsub132ps/d Vx,Hx,Wx (66),(v) | v4fmaddps Vdqq,Hdqq,Wdq (F2),(ev)
773
9b: vfmsub132ss/d Vx,Hx,Wx (66),(v),(v1) | v4fmaddss Vdq,Hdq,Wdq (F2),(ev)
774
9c: vfnmadd132ps/d Vx,Hx,Wx (66),(v)
775
9d: vfnmadd132ss/d Vx,Hx,Wx (66),(v),(v1)
776
9e: vfnmsub132ps/d Vx,Hx,Wx (66),(v)
777
9f: vfnmsub132ss/d Vx,Hx,Wx (66),(v),(v1)
778
a0: vpscatterdd/q Wx,Vx (66),(ev)
779
a1: vpscatterqd/q Wx,Vx (66),(ev)
780
a2: vscatterdps/d Wx,Vx (66),(ev)
781
a3: vscatterqps/d Wx,Vx (66),(ev)
782
a6: vfmaddsub213ps/d Vx,Hx,Wx (66),(v)
783
a7: vfmsubadd213ps/d Vx,Hx,Wx (66),(v)
784
a8: vfmadd213ps/d Vx,Hx,Wx (66),(v)
785
a9: vfmadd213ss/d Vx,Hx,Wx (66),(v),(v1)
786
aa: vfmsub213ps/d Vx,Hx,Wx (66),(v) | v4fnmaddps Vdqq,Hdqq,Wdq (F2),(ev)
787
ab: vfmsub213ss/d Vx,Hx,Wx (66),(v),(v1) | v4fnmaddss Vdq,Hdq,Wdq (F2),(ev)
788
ac: vfnmadd213ps/d Vx,Hx,Wx (66),(v)
789
ad: vfnmadd213ss/d Vx,Hx,Wx (66),(v),(v1)
790
ae: vfnmsub213ps/d Vx,Hx,Wx (66),(v)
791
af: vfnmsub213ss/d Vx,Hx,Wx (66),(v),(v1)
792
b0: vcvtneebf162ps Vx,Mx (F3),(!11B),(v) | vcvtneeph2ps Vx,Mx (66),(!11B),(v) | vcvtneobf162ps Vx,Mx (F2),(!11B),(v) | vcvtneoph2ps Vx,Mx (!11B),(v)
793
b1: vbcstnebf162ps Vx,Mw (F3),(!11B),(v) | vbcstnesh2ps Vx,Mw (66),(!11B),(v)
794
b4: vpmadd52luq Vx,Hx,Wx (66)
795
b5: vpmadd52huq Vx,Hx,Wx (66)
796
b6: vfmaddsub231ps/d Vx,Hx,Wx (66),(v)
797
b7: vfmsubadd231ps/d Vx,Hx,Wx (66),(v)
798
b8: vfmadd231ps/d Vx,Hx,Wx (66),(v)
799
b9: vfmadd231ss/d Vx,Hx,Wx (66),(v),(v1)
800
ba: vfmsub231ps/d Vx,Hx,Wx (66),(v)
801
bb: vfmsub231ss/d Vx,Hx,Wx (66),(v),(v1)
802
bc: vfnmadd231ps/d Vx,Hx,Wx (66),(v)
803
bd: vfnmadd231ss/d Vx,Hx,Wx (66),(v),(v1)
804
be: vfnmsub231ps/d Vx,Hx,Wx (66),(v)
805
bf: vfnmsub231ss/d Vx,Hx,Wx (66),(v),(v1)
806
# 0x0f 0x38 0xc0-0xff
807
c4: vpconflictd/q Vx,Wx (66),(ev)
808
c6: Grp18 (1A)
809
c7: Grp19 (1A)
810
c8: sha1nexte Vdq,Wdq | vexp2ps/d Vx,Wx (66),(ev)
811
c9: sha1msg1 Vdq,Wdq
812
ca: sha1msg2 Vdq,Wdq | vrcp28ps/d Vx,Wx (66),(ev)
813
cb: sha256rnds2 Vdq,Wdq | vrcp28ss/d Vx,Hx,Wx (66),(ev) | vsha512rnds2 Vqq,Hqq,Udq (F2),(11B),(v)
814
cc: sha256msg1 Vdq,Wdq | vrsqrt28ps/d Vx,Wx (66),(ev) | vsha512msg1 Vqq,Udq (F2),(11B),(v)
815
cd: sha256msg2 Vdq,Wdq | vrsqrt28ss/d Vx,Hx,Wx (66),(ev) | vsha512msg2 Vqq,Uqq (F2),(11B),(v)
816
cf: vgf2p8mulb Vx,Wx (66)
817
d2: vpdpwsud Vx,Hx,Wx (F3),(v) | vpdpwusd Vx,Hx,Wx (66),(v) | vpdpwuud Vx,Hx,Wx (v)
818
d3: vpdpwsuds Vx,Hx,Wx (F3),(v) | vpdpwusds Vx,Hx,Wx (66),(v) | vpdpwuuds Vx,Hx,Wx (v)
819
d8: AESENCWIDE128KL Qpi (F3),(000),(00B) | AESENCWIDE256KL Qpi (F3),(000),(10B) | AESDECWIDE128KL Qpi (F3),(000),(01B) | AESDECWIDE256KL Qpi (F3),(000),(11B)
820
da: vsm3msg1 Vdq,Hdq,Udq (v1) | vsm3msg2 Vdq,Hdq,Udq (66),(v1) | vsm4key4 Vx,Hx,Wx (F3),(v) | vsm4rnds4 Vx,Hx,Wx (F2),(v)
821
db: VAESIMC Vdq,Wdq (66),(v1)
822
dc: vaesenc Vx,Hx,Wx (66) | LOADIWKEY Vx,Hx (F3) | AESENC128KL Vpd,Qpi (F3)
823
dd: vaesenclast Vx,Hx,Wx (66) | AESDEC128KL Vpd,Qpi (F3)
824
de: vaesdec Vx,Hx,Wx (66) | AESENC256KL Vpd,Qpi (F3)
825
df: vaesdeclast Vx,Hx,Wx (66) | AESDEC256KL Vpd,Qpi (F3)
826
e0: CMPOXADD My,Gy,By (66),(v1),(o64)
827
e1: CMPNOXADD My,Gy,By (66),(v1),(o64)
828
e2: CMPBXADD My,Gy,By (66),(v1),(o64)
829
e3: CMPNBXADD My,Gy,By (66),(v1),(o64)
830
e4: CMPZXADD My,Gy,By (66),(v1),(o64)
831
e5: CMPNZXADD My,Gy,By (66),(v1),(o64)
832
e6: CMPBEXADD My,Gy,By (66),(v1),(o64)
833
e7: CMPNBEXADD My,Gy,By (66),(v1),(o64)
834
e8: CMPSXADD My,Gy,By (66),(v1),(o64)
835
e9: CMPNSXADD My,Gy,By (66),(v1),(o64)
836
ea: CMPPXADD My,Gy,By (66),(v1),(o64)
837
eb: CMPNPXADD My,Gy,By (66),(v1),(o64)
838
ec: CMPLXADD My,Gy,By (66),(v1),(o64)
839
ed: CMPNLXADD My,Gy,By (66),(v1),(o64)
840
ee: CMPLEXADD My,Gy,By (66),(v1),(o64)
841
ef: CMPNLEXADD My,Gy,By (66),(v1),(o64)
842
f0: MOVBE Gy,My | MOVBE Gw,Mw (66) | CRC32 Gd,Eb (F2) | CRC32 Gd,Eb (66&F2)
843
f1: MOVBE My,Gy | MOVBE Mw,Gw (66) | CRC32 Gd,Ey (F2) | CRC32 Gd,Ew (66&F2)
844
f2: ANDN Gy,By,Ey (v)
845
f3: Grp17 (1A)
846
f5: BZHI Gy,Ey,By (v) | PEXT Gy,By,Ey (F3),(v) | PDEP Gy,By,Ey (F2),(v) | WRUSSD/Q My,Gy (66)
847
f6: ADCX Gy,Ey (66) | ADOX Gy,Ey (F3) | MULX By,Gy,rDX,Ey (F2),(v) | WRSSD/Q My,Gy
848
f7: BEXTR Gy,Ey,By (v) | SHLX Gy,Ey,By (66),(v) | SARX Gy,Ey,By (F3),(v) | SHRX Gy,Ey,By (F2),(v)
849
f8: MOVDIR64B Gv,Mdqq (66) | ENQCMD Gv,Mdqq (F2) | ENQCMDS Gv,Mdqq (F3) | URDMSR Rq,Gq (F2),(11B) | UWRMSR Gq,Rq (F3),(11B)
850
f9: MOVDIRI My,Gy
851
fa: ENCODEKEY128 Ew,Ew (F3)
852
fb: ENCODEKEY256 Ew,Ew (F3)
853
fc: AADD My,Gy | AAND My,Gy (66) | AOR My,Gy (F2) | AXOR My,Gy (F3)
854
EndTable
855
856
Table: 3-byte opcode 2 (0x0f 0x3a)
857
Referrer: 3-byte escape 2
858
AVXcode: 3
859
# 0x0f 0x3a 0x00-0xff
860
00: vpermq Vqq,Wqq,Ib (66),(v)
861
01: vpermpd Vqq,Wqq,Ib (66),(v)
862
02: vpblendd Vx,Hx,Wx,Ib (66),(v)
863
03: valignd/q Vx,Hx,Wx,Ib (66),(ev)
864
04: vpermilps Vx,Wx,Ib (66),(v)
865
05: vpermilpd Vx,Wx,Ib (66),(v)
866
06: vperm2f128 Vqq,Hqq,Wqq,Ib (66),(v)
867
07:
868
08: vroundps Vx,Wx,Ib (66) | vrndscaleps Vx,Wx,Ib (66),(evo) | vrndscaleph Vx,Wx,Ib (evo)
869
09: vroundpd Vx,Wx,Ib (66) | vrndscalepd Vx,Wx,Ib (66),(evo)
870
0a: vroundss Vss,Wss,Ib (66),(v1) | vrndscaless Vx,Hx,Wx,Ib (66),(evo) | vrndscalesh Vx,Hx,Wx,Ib (evo)
871
0b: vroundsd Vsd,Wsd,Ib (66),(v1) | vrndscalesd Vx,Hx,Wx,Ib (66),(evo)
872
0c: vblendps Vx,Hx,Wx,Ib (66)
873
0d: vblendpd Vx,Hx,Wx,Ib (66)
874
0e: vpblendw Vx,Hx,Wx,Ib (66),(v1)
875
0f: palignr Pq,Qq,Ib | vpalignr Vx,Hx,Wx,Ib (66),(v1)
876
14: vpextrb Rd/Mb,Vdq,Ib (66),(v1)
877
15: vpextrw Rd/Mw,Vdq,Ib (66),(v1)
878
16: vpextrd/q Ey,Vdq,Ib (66),(v1)
879
17: vextractps Ed,Vdq,Ib (66),(v1)
880
18: vinsertf128 Vqq,Hqq,Wqq,Ib (66),(v) | vinsertf32x4/64x2 Vqq,Hqq,Wqq,Ib (66),(evo)
881
19: vextractf128 Wdq,Vqq,Ib (66),(v) | vextractf32x4/64x2 Wdq,Vqq,Ib (66),(evo)
882
1a: vinsertf32x8/64x4 Vqq,Hqq,Wqq,Ib (66),(ev)
883
1b: vextractf32x8/64x4 Wdq,Vqq,Ib (66),(ev)
884
1d: vcvtps2ph Wx,Vx,Ib (66),(v)
885
1e: vpcmpud/q Vk,Hd,Wd,Ib (66),(ev)
886
1f: vpcmpd/q Vk,Hd,Wd,Ib (66),(ev)
887
20: vpinsrb Vdq,Hdq,Ry/Mb,Ib (66),(v1)
888
21: vinsertps Vdq,Hdq,Udq/Md,Ib (66),(v1)
889
22: vpinsrd/q Vdq,Hdq,Ey,Ib (66),(v1)
890
23: vshuff32x4/64x2 Vx,Hx,Wx,Ib (66),(ev)
891
25: vpternlogd/q Vx,Hx,Wx,Ib (66),(ev)
892
26: vgetmantps/d Vx,Wx,Ib (66),(ev) | vgetmantph Vx,Wx,Ib (ev)
893
27: vgetmantss/d Vx,Hx,Wx,Ib (66),(ev) | vgetmantsh Vx,Hx,Wx,Ib (ev)
894
30: kshiftrb/w Vk,Uk,Ib (66),(v)
895
31: kshiftrd/q Vk,Uk,Ib (66),(v)
896
32: kshiftlb/w Vk,Uk,Ib (66),(v)
897
33: kshiftld/q Vk,Uk,Ib (66),(v)
898
38: vinserti128 Vqq,Hqq,Wqq,Ib (66),(v) | vinserti32x4/64x2 Vqq,Hqq,Wqq,Ib (66),(evo)
899
39: vextracti128 Wdq,Vqq,Ib (66),(v) | vextracti32x4/64x2 Wdq,Vqq,Ib (66),(evo)
900
3a: vinserti32x8/64x4 Vqq,Hqq,Wqq,Ib (66),(ev)
901
3b: vextracti32x8/64x4 Wdq,Vqq,Ib (66),(ev)
902
3e: vpcmpub/w Vk,Hk,Wx,Ib (66),(ev)
903
3f: vpcmpb/w Vk,Hk,Wx,Ib (66),(ev)
904
40: vdpps Vx,Hx,Wx,Ib (66)
905
41: vdppd Vdq,Hdq,Wdq,Ib (66),(v1)
906
42: vmpsadbw Vx,Hx,Wx,Ib (66),(v1) | vdbpsadbw Vx,Hx,Wx,Ib (66),(evo)
907
43: vshufi32x4/64x2 Vx,Hx,Wx,Ib (66),(ev)
908
44: vpclmulqdq Vx,Hx,Wx,Ib (66)
909
46: vperm2i128 Vqq,Hqq,Wqq,Ib (66),(v)
910
4a: vblendvps Vx,Hx,Wx,Lx (66),(v)
911
4b: vblendvpd Vx,Hx,Wx,Lx (66),(v)
912
4c: vpblendvb Vx,Hx,Wx,Lx (66),(v1)
913
50: vrangeps/d Vx,Hx,Wx,Ib (66),(ev)
914
51: vrangess/d Vx,Hx,Wx,Ib (66),(ev)
915
54: vfixupimmps/d Vx,Hx,Wx,Ib (66),(ev)
916
55: vfixupimmss/d Vx,Hx,Wx,Ib (66),(ev)
917
56: vreduceps/d Vx,Wx,Ib (66),(ev) | vreduceph Vx,Wx,Ib (ev)
918
57: vreducess/d Vx,Hx,Wx,Ib (66),(ev) | vreducesh Vx,Hx,Wx,Ib (ev)
919
60: vpcmpestrm Vdq,Wdq,Ib (66),(v1)
920
61: vpcmpestri Vdq,Wdq,Ib (66),(v1)
921
62: vpcmpistrm Vdq,Wdq,Ib (66),(v1)
922
63: vpcmpistri Vdq,Wdq,Ib (66),(v1)
923
66: vfpclassps/d Vk,Wx,Ib (66),(ev) | vfpclassph Vx,Wx,Ib (ev)
924
67: vfpclassss/d Vk,Wx,Ib (66),(ev) | vfpclasssh Vx,Wx,Ib (ev)
925
70: vpshldw Vx,Hx,Wx,Ib (66),(ev)
926
71: vpshldd/q Vx,Hx,Wx,Ib (66),(ev)
927
72: vpshrdw Vx,Hx,Wx,Ib (66),(ev)
928
73: vpshrdd/q Vx,Hx,Wx,Ib (66),(ev)
929
c2: vcmpph Vx,Hx,Wx,Ib (ev) | vcmpsh Vx,Hx,Wx,Ib (F3),(ev)
930
cc: sha1rnds4 Vdq,Wdq,Ib
931
ce: vgf2p8affineqb Vx,Wx,Ib (66)
932
cf: vgf2p8affineinvqb Vx,Wx,Ib (66)
933
de: vsm3rnds2 Vdq,Hdq,Wdq,Ib (66),(v1)
934
df: VAESKEYGEN Vdq,Wdq,Ib (66),(v1)
935
f0: RORX Gy,Ey,Ib (F2),(v) | HRESET Gv,Ib (F3),(000),(11B)
936
EndTable
937
938
Table: EVEX map 4
939
Referrer:
940
AVXcode: 4
941
00: ADD Eb,Gb (ev)
942
01: ADD Ev,Gv (es) | ADD Ev,Gv (66),(es)
943
02: ADD Gb,Eb (ev)
944
03: ADD Gv,Ev (es) | ADD Gv,Ev (66),(es)
945
08: OR Eb,Gb (ev)
946
09: OR Ev,Gv (es) | OR Ev,Gv (66),(es)
947
0a: OR Gb,Eb (ev)
948
0b: OR Gv,Ev (es) | OR Gv,Ev (66),(es)
949
10: ADC Eb,Gb (ev)
950
11: ADC Ev,Gv (es) | ADC Ev,Gv (66),(es)
951
12: ADC Gb,Eb (ev)
952
13: ADC Gv,Ev (es) | ADC Gv,Ev (66),(es)
953
18: SBB Eb,Gb (ev)
954
19: SBB Ev,Gv (es) | SBB Ev,Gv (66),(es)
955
1a: SBB Gb,Eb (ev)
956
1b: SBB Gv,Ev (es) | SBB Gv,Ev (66),(es)
957
20: AND Eb,Gb (ev)
958
21: AND Ev,Gv (es) | AND Ev,Gv (66),(es)
959
22: AND Gb,Eb (ev)
960
23: AND Gv,Ev (es) | AND Gv,Ev (66),(es)
961
24: SHLD Ev,Gv,Ib (es) | SHLD Ev,Gv,Ib (66),(es)
962
28: SUB Eb,Gb (ev)
963
29: SUB Ev,Gv (es) | SUB Ev,Gv (66),(es)
964
2a: SUB Gb,Eb (ev)
965
2b: SUB Gv,Ev (es) | SUB Gv,Ev (66),(es)
966
2c: SHRD Ev,Gv,Ib (es) | SHRD Ev,Gv,Ib (66),(es)
967
30: XOR Eb,Gb (ev)
968
31: XOR Ev,Gv (es) | XOR Ev,Gv (66),(es)
969
32: XOR Gb,Eb (ev)
970
33: XOR Gv,Ev (es) | XOR Gv,Ev (66),(es)
971
# CCMPSCC instructions are: CCOMB, CCOMBE, CCOMF, CCOML, CCOMLE, CCOMNB, CCOMNBE, CCOMNL, CCOMNLE,
972
# CCOMNO, CCOMNS, CCOMNZ, CCOMO, CCOMS, CCOMT, CCOMZ
973
38: CCMPSCC Eb,Gb (ev)
974
39: CCMPSCC Ev,Gv (es) | CCMPSCC Ev,Gv (66),(es)
975
3a: CCMPSCC Gv,Ev (ev)
976
3b: CCMPSCC Gv,Ev (es) | CCMPSCC Gv,Ev (66),(es)
977
40: CMOVO Gv,Ev (es) | CMOVO Gv,Ev (66),(es) | CFCMOVO Ev,Ev (es) | CFCMOVO Ev,Ev (66),(es) | SETO Eb (F2),(ev)
978
41: CMOVNO Gv,Ev (es) | CMOVNO Gv,Ev (66),(es) | CFCMOVNO Ev,Ev (es) | CFCMOVNO Ev,Ev (66),(es) | SETNO Eb (F2),(ev)
979
42: CMOVB Gv,Ev (es) | CMOVB Gv,Ev (66),(es) | CFCMOVB Ev,Ev (es) | CFCMOVB Ev,Ev (66),(es) | SETB Eb (F2),(ev)
980
43: CMOVNB Gv,Ev (es) | CMOVNB Gv,Ev (66),(es) | CFCMOVNB Ev,Ev (es) | CFCMOVNB Ev,Ev (66),(es) | SETNB Eb (F2),(ev)
981
44: CMOVZ Gv,Ev (es) | CMOVZ Gv,Ev (66),(es) | CFCMOVZ Ev,Ev (es) | CFCMOVZ Ev,Ev (66),(es) | SETZ Eb (F2),(ev)
982
45: CMOVNZ Gv,Ev (es) | CMOVNZ Gv,Ev (66),(es) | CFCMOVNZ Ev,Ev (es) | CFCMOVNZ Ev,Ev (66),(es) | SETNZ Eb (F2),(ev)
983
46: CMOVBE Gv,Ev (es) | CMOVBE Gv,Ev (66),(es) | CFCMOVBE Ev,Ev (es) | CFCMOVBE Ev,Ev (66),(es) | SETBE Eb (F2),(ev)
984
47: CMOVNBE Gv,Ev (es) | CMOVNBE Gv,Ev (66),(es) | CFCMOVNBE Ev,Ev (es) | CFCMOVNBE Ev,Ev (66),(es) | SETNBE Eb (F2),(ev)
985
48: CMOVS Gv,Ev (es) | CMOVS Gv,Ev (66),(es) | CFCMOVS Ev,Ev (es) | CFCMOVS Ev,Ev (66),(es) | SETS Eb (F2),(ev)
986
49: CMOVNS Gv,Ev (es) | CMOVNS Gv,Ev (66),(es) | CFCMOVNS Ev,Ev (es) | CFCMOVNS Ev,Ev (66),(es) | SETNS Eb (F2),(ev)
987
4a: CMOVP Gv,Ev (es) | CMOVP Gv,Ev (66),(es) | CFCMOVP Ev,Ev (es) | CFCMOVP Ev,Ev (66),(es) | SETP Eb (F2),(ev)
988
4b: CMOVNP Gv,Ev (es) | CMOVNP Gv,Ev (66),(es) | CFCMOVNP Ev,Ev (es) | CFCMOVNP Ev,Ev (66),(es) | SETNP Eb (F2),(ev)
989
4c: CMOVL Gv,Ev (es) | CMOVL Gv,Ev (66),(es) | CFCMOVL Ev,Ev (es) | CFCMOVL Ev,Ev (66),(es) | SETL Eb (F2),(ev)
990
4d: CMOVNL Gv,Ev (es) | CMOVNL Gv,Ev (66),(es) | CFCMOVNL Ev,Ev (es) | CFCMOVNL Ev,Ev (66),(es) | SETNL Eb (F2),(ev)
991
4e: CMOVLE Gv,Ev (es) | CMOVLE Gv,Ev (66),(es) | CFCMOVLE Ev,Ev (es) | CFCMOVLE Ev,Ev (66),(es) | SETLE Eb (F2),(ev)
992
4f: CMOVNLE Gv,Ev (es) | CMOVNLE Gv,Ev (66),(es) | CFCMOVNLE Ev,Ev (es) | CFCMOVNLE Ev,Ev (66),(es) | SETNLE Eb (F2),(ev)
993
60: MOVBE Gv,Ev (es) | MOVBE Gv,Ev (66),(es)
994
61: MOVBE Ev,Gv (es) | MOVBE Ev,Gv (66),(es)
995
65: WRUSSD Md,Gd (66),(ev) | WRUSSQ Mq,Gq (66),(ev)
996
66: ADCX Gy,Ey (66),(ev) | ADOX Gy,Ey (F3),(ev) | WRSSD Md,Gd (ev) | WRSSQ Mq,Gq (66),(ev)
997
69: IMUL Gv,Ev,Iz (es) | IMUL Gv,Ev,Iz (66),(es)
998
6b: IMUL Gv,Ev,Ib (es) | IMUL Gv,Ev,Ib (66),(es)
999
80: Grp1 Eb,Ib (1A),(ev)
1000
81: Grp1 Ev,Iz (1A),(es)
1001
83: Grp1 Ev,Ib (1A),(es)
1002
# CTESTSCC instructions are: CTESTB, CTESTBE, CTESTF, CTESTL, CTESTLE, CTESTNB, CTESTNBE, CTESTNL,
1003
# CTESTNLE, CTESTNO, CTESTNS, CTESTNZ, CTESTO, CTESTS, CTESTT, CTESTZ
1004
84: CTESTSCC Eb,Gb (ev)
1005
85: CTESTSCC Ev,Gv (es) | CTESTSCC Ev,Gv (66),(es)
1006
88: POPCNT Gv,Ev (es) | POPCNT Gv,Ev (66),(es)
1007
8f: POP2 Bq,Rq (000),(11B),(ev)
1008
a5: SHLD Ev,Gv,CL (es) | SHLD Ev,Gv,CL (66),(es)
1009
ad: SHRD Ev,Gv,CL (es) | SHRD Ev,Gv,CL (66),(es)
1010
af: IMUL Gv,Ev (es) | IMUL Gv,Ev (66),(es)
1011
c0: Grp2 Eb,Ib (1A),(ev)
1012
c1: Grp2 Ev,Ib (1A),(es)
1013
d0: Grp2 Eb,1 (1A),(ev)
1014
d1: Grp2 Ev,1 (1A),(es)
1015
d2: Grp2 Eb,CL (1A),(ev)
1016
d3: Grp2 Ev,CL (1A),(es)
1017
f0: CRC32 Gy,Eb (es) | INVEPT Gq,Mdq (F3),(ev)
1018
f1: CRC32 Gy,Ey (es) | CRC32 Gy,Ey (66),(es) | INVVPID Gy,Mdq (F3),(ev)
1019
f2: INVPCID Gy,Mdq (F3),(ev)
1020
f4: TZCNT Gv,Ev (es) | TZCNT Gv,Ev (66),(es)
1021
f5: LZCNT Gv,Ev (es) | LZCNT Gv,Ev (66),(es)
1022
f6: Grp3_1 Eb (1A),(ev)
1023
f7: Grp3_2 Ev (1A),(es)
1024
f8: MOVDIR64B Gv,Mdqq (66),(ev) | ENQCMD Gv,Mdqq (F2),(ev) | ENQCMDS Gv,Mdqq (F3),(ev) | URDMSR Rq,Gq (F2),(11B),(ev) | UWRMSR Gq,Rq (F3),(11B),(ev)
1025
f9: MOVDIRI My,Gy (ev)
1026
fe: Grp4 (1A),(ev)
1027
ff: Grp5 (1A),(es) | PUSH2 Bq,Rq (110),(11B),(ev)
1028
EndTable
1029
1030
Table: EVEX map 5
1031
Referrer:
1032
AVXcode: 5
1033
10: vmovsh Vx,Hx,Wx (F3),(ev) | vmovsh Vx,Wx (F3),(ev)
1034
11: vmovsh Wx,Hx,Vx (F3),(ev) | vmovsh Wx,Vx (F3),(ev)
1035
1d: vcvtps2phx Vx,Wx (66),(ev) | vcvtss2sh Vx,Hx,Wx (ev)
1036
2a: vcvtsi2sh Vx,Hx,Wx (F3),(ev)
1037
2c: vcvttsh2si Vx,Wx (F3),(ev)
1038
2d: vcvtsh2si Vx,Wx (F3),(ev)
1039
2e: vucomish Vx,Wx (ev)
1040
2f: vcomish Vx,Wx (ev)
1041
51: vsqrtph Vx,Wx (ev) | vsqrtsh Vx,Hx,Wx (F3),(ev)
1042
58: vaddph Vx,Hx,Wx (ev) | vaddsh Vx,Hx,Wx (F3),(ev)
1043
59: vmulph Vx,Hx,Wx (ev) | vmulsh Vx,Hx,Wx (F3),(ev)
1044
5a: vcvtpd2ph Vx,Wx (66),(ev) | vcvtph2pd Vx,Wx (ev) | vcvtsd2sh Vx,Hx,Wx (F2),(ev) | vcvtsh2sd Vx,Hx,Wx (F3),(ev)
1045
5b: vcvtdq2ph Vx,Wx (ev) | vcvtph2dq Vx,Wx (66),(ev) | vcvtqq2ph Vx,Wx (ev) | vcvttph2dq Vx,Wx (F3),(ev)
1046
5c: vsubph Vx,Hx,Wx (ev) | vsubsh Vx,Hx,Wx (F3),(ev)
1047
5d: vminph Vx,Hx,Wx (ev) | vminsh Vx,Hx,Wx (F3),(ev)
1048
5e: vdivph Vx,Hx,Wx (ev) | vdivsh Vx,Hx,Wx (F3),(ev)
1049
5f: vmaxph Vx,Hx,Wx (ev) | vmaxsh Vx,Hx,Wx (F3),(ev)
1050
6e: vmovw Vx,Wx (66),(ev)
1051
78: vcvttph2udq Vx,Wx (ev) | vcvttph2uqq Vx,Wx (66),(ev) | vcvttsh2usi Vx,Wx (F3),(ev)
1052
79: vcvtph2udq Vx,Wx (ev) | vcvtph2uqq Vx,Wx (66),(ev) | vcvtsh2usi Vx,Wx (F3),(ev)
1053
7a: vcvttph2qq Vx,Wx (66),(ev) | vcvtudq2ph Vx,Wx (F2),(ev) | vcvtuqq2ph Vx,Wx (F2),(ev)
1054
7b: vcvtph2qq Vx,Wx (66),(ev) | vcvtusi2sh Vx,Hx,Wx (F3),(ev)
1055
7c: vcvttph2uw Vx,Wx (ev) | vcvttph2w Vx,Wx (66),(ev)
1056
7d: vcvtph2uw Vx,Wx (ev) | vcvtph2w Vx,Wx (66),(ev) | vcvtuw2ph Vx,Wx (F2),(ev) | vcvtw2ph Vx,Wx (F3),(ev)
1057
7e: vmovw Wx,Vx (66),(ev)
1058
EndTable
1059
1060
Table: EVEX map 6
1061
Referrer:
1062
AVXcode: 6
1063
13: vcvtph2psx Vx,Wx (66),(ev) | vcvtsh2ss Vx,Hx,Wx (ev)
1064
2c: vscalefph Vx,Hx,Wx (66),(ev)
1065
2d: vscalefsh Vx,Hx,Wx (66),(ev)
1066
42: vgetexpph Vx,Wx (66),(ev)
1067
43: vgetexpsh Vx,Hx,Wx (66),(ev)
1068
4c: vrcpph Vx,Wx (66),(ev)
1069
4d: vrcpsh Vx,Hx,Wx (66),(ev)
1070
4e: vrsqrtph Vx,Wx (66),(ev)
1071
4f: vrsqrtsh Vx,Hx,Wx (66),(ev)
1072
56: vfcmaddcph Vx,Hx,Wx (F2),(ev) | vfmaddcph Vx,Hx,Wx (F3),(ev)
1073
57: vfcmaddcsh Vx,Hx,Wx (F2),(ev) | vfmaddcsh Vx,Hx,Wx (F3),(ev)
1074
96: vfmaddsub132ph Vx,Hx,Wx (66),(ev)
1075
97: vfmsubadd132ph Vx,Hx,Wx (66),(ev)
1076
98: vfmadd132ph Vx,Hx,Wx (66),(ev)
1077
99: vfmadd132sh Vx,Hx,Wx (66),(ev)
1078
9a: vfmsub132ph Vx,Hx,Wx (66),(ev)
1079
9b: vfmsub132sh Vx,Hx,Wx (66),(ev)
1080
9c: vfnmadd132ph Vx,Hx,Wx (66),(ev)
1081
9d: vfnmadd132sh Vx,Hx,Wx (66),(ev)
1082
9e: vfnmsub132ph Vx,Hx,Wx (66),(ev)
1083
9f: vfnmsub132sh Vx,Hx,Wx (66),(ev)
1084
a6: vfmaddsub213ph Vx,Hx,Wx (66),(ev)
1085
a7: vfmsubadd213ph Vx,Hx,Wx (66),(ev)
1086
a8: vfmadd213ph Vx,Hx,Wx (66),(ev)
1087
a9: vfmadd213sh Vx,Hx,Wx (66),(ev)
1088
aa: vfmsub213ph Vx,Hx,Wx (66),(ev)
1089
ab: vfmsub213sh Vx,Hx,Wx (66),(ev)
1090
ac: vfnmadd213ph Vx,Hx,Wx (66),(ev)
1091
ad: vfnmadd213sh Vx,Hx,Wx (66),(ev)
1092
ae: vfnmsub213ph Vx,Hx,Wx (66),(ev)
1093
af: vfnmsub213sh Vx,Hx,Wx (66),(ev)
1094
b6: vfmaddsub231ph Vx,Hx,Wx (66),(ev)
1095
b7: vfmsubadd231ph Vx,Hx,Wx (66),(ev)
1096
b8: vfmadd231ph Vx,Hx,Wx (66),(ev)
1097
b9: vfmadd231sh Vx,Hx,Wx (66),(ev)
1098
ba: vfmsub231ph Vx,Hx,Wx (66),(ev)
1099
bb: vfmsub231sh Vx,Hx,Wx (66),(ev)
1100
bc: vfnmadd231ph Vx,Hx,Wx (66),(ev)
1101
bd: vfnmadd231sh Vx,Hx,Wx (66),(ev)
1102
be: vfnmsub231ph Vx,Hx,Wx (66),(ev)
1103
bf: vfnmsub231sh Vx,Hx,Wx (66),(ev)
1104
d6: vfcmulcph Vx,Hx,Wx (F2),(ev) | vfmulcph Vx,Hx,Wx (F3),(ev)
1105
d7: vfcmulcsh Vx,Hx,Wx (F2),(ev) | vfmulcsh Vx,Hx,Wx (F3),(ev)
1106
EndTable
1107
1108
Table: VEX map 7
1109
Referrer:
1110
AVXcode: 7
1111
f8: URDMSR Rq,Id (F2),(v1),(11B) | UWRMSR Id,Rq (F3),(v1),(11B)
1112
EndTable
1113
1114
# From AMD64 Architecture Programmer's Manual Vol3, Appendix A.1.5
1115
Table: XOP map 8h
1116
Referrer:
1117
XOPcode: 0
1118
85: VPMACSSWW Vo,Ho,Wo,Lo
1119
86: VPMACSSWD Vo,Ho,Wo,Lo
1120
87: VPMACSSDQL Vo,Ho,Wo,Lo
1121
8e: VPMACSSDD Vo,Ho,Wo,Lo
1122
8f: VPMACSSDQH Vo,Ho,Wo,Lo
1123
95: VPMACSWW Vo,Ho,Wo,Lo
1124
96: VPMACSWD Vo,Ho,Wo,Lo
1125
97: VPMACSDQL Vo,Ho,Wo,Lo
1126
9e: VPMACSDD Vo,Ho,Wo,Lo
1127
9f: VPMACSDQH Vo,Ho,Wo,Lo
1128
a2: VPCMOV Vx,Hx,Wx,Lx (W=0) | VPCMOV Vx,Hx,Lx,Wx (W=1)
1129
a3: VPPERM Vo,Ho,Wo,Lo (W=0) | VPPERM Vo,Ho,Lo,Wo (W=1)
1130
a6: VPMADCSSWD Vo,Ho,Wo,Lo
1131
b6: VPMADCSWD Vo,Ho,Wo,Lo
1132
c0: VPROTB Vo,Wo,Ib
1133
c1: VPROTW Vo,Wo,Ib
1134
c2: VPROTD Vo,Wo,Ib
1135
c3: VPROTQ Vo,Wo,Ib
1136
cc: VPCOMccB Vo,Ho,Wo,Ib
1137
cd: VPCOMccW Vo,Ho,Wo,Ib
1138
ce: VPCOMccD Vo,Ho,Wo,Ib
1139
cf: VPCOMccQ Vo,Ho,Wo,Ib
1140
ec: VPCOMccUB Vo,Ho,Wo,Ib
1141
ed: VPCOMccUW Vo,Ho,Wo,Ib
1142
ee: VPCOMccUD Vo,Ho,Wo,Ib
1143
ef: VPCOMccUQ Vo,Ho,Wo,Ib
1144
EndTable
1145
1146
Table: XOP map 9h
1147
Referrer:
1148
XOPcode: 1
1149
01: GrpXOP1
1150
02: GrpXOP2
1151
12: GrpXOP3
1152
80: VFRCZPS Vx,Wx
1153
81: VFRCZPD Vx,Wx
1154
82: VFRCZSS Vq,Wss
1155
83: VFRCZSD Vq,Wsd
1156
90: VPROTB Vo,Wo,Ho (W=0) | VPROTB Vo,Ho,Wo (W=1)
1157
91: VPROTW Vo,Wo,Ho (W=0) | VPROTB Vo,Ho,Wo (W=1)
1158
92: VPROTD Vo,Wo,Ho (W=0) | VPROTB Vo,Ho,Wo (W=1)
1159
93: VPROTQ Vo,Wo,Ho (W=0) | VPROTB Vo,Ho,Wo (W=1)
1160
94: VPSHLB Vo,Wo,Ho (W=0) | VPSHLB Vo,Ho,Wo (W=1)
1161
95: VPSHLW Vo,Wo,Ho (W=0) | VPSHLW Vo,Ho,Wo (W=1)
1162
96: VPSHLD Vo,Wo,Ho (W=0) | VPSHLD Vo,Ho,Wo (W=1)
1163
97: VPSHLQ Vo,Wo,Ho (W=0) | VPSHLQ Vo,Ho,Wo (W=1)
1164
98: VPSHAB Vo,Wo,Ho (W=0) | VPSHAB Vo,Ho,Wo (W=1)
1165
99: VPSHAW Vo,Wo,Ho (W=0) | VPSHAW Vo,Ho,Wo (W=1)
1166
9a: VPSHAD Vo,Wo,Ho (W=0) | VPSHAD Vo,Ho,Wo (W=1)
1167
9b: VPSHAQ Vo,Wo,Ho (W=0) | VPSHAQ Vo,Ho,Wo (W=1)
1168
c1: VPHADDBW Vo,Wo
1169
c2: VPHADDBD Vo,Wo
1170
c3: VPHADDBQ Vo,Wo
1171
c6: VPHADDWD Vo,Wo
1172
c7: VPHADDWQ Vo,Wo
1173
cb: VPHADDDQ Vo,Wo
1174
d1: VPHADDUBWD Vo,Wo
1175
d2: VPHADDUBD Vo,Wo
1176
d3: VPHADDUBQ Vo,Wo
1177
d6: VPHADDUWD Vo,Wo
1178
d7: VPHADDUWQ Vo,Wo
1179
db: VPHADDUDQ Vo,Wo
1180
e1: VPHSUBBW Vo,Wo
1181
e2: VPHSUBWD Vo,Wo
1182
e3: VPHSUBDQ Vo,Wo
1183
EndTable
1184
1185
Table: XOP map Ah
1186
Referrer:
1187
XOPcode: 2
1188
10: BEXTR Gy,Ey,Id
1189
12: GrpXOP4
1190
EndTable
1191
1192
GrpTable: Grp1
1193
0: ADD
1194
1: OR
1195
2: ADC
1196
3: SBB
1197
4: AND
1198
5: SUB
1199
6: XOR
1200
7: CMP
1201
EndTable
1202
1203
GrpTable: Grp1A
1204
0: POP
1205
EndTable
1206
1207
GrpTable: Grp2
1208
0: ROL
1209
1: ROR
1210
2: RCL
1211
3: RCR
1212
4: SHL/SAL
1213
5: SHR
1214
6:
1215
7: SAR
1216
EndTable
1217
1218
GrpTable: Grp3_1
1219
0: TEST Eb,Ib
1220
1: TEST Eb,Ib
1221
2: NOT Eb
1222
3: NEG Eb
1223
4: MUL AL,Eb
1224
5: IMUL AL,Eb
1225
6: DIV AL,Eb
1226
7: IDIV AL,Eb
1227
EndTable
1228
1229
GrpTable: Grp3_2
1230
0: TEST Ev,Iz
1231
1: TEST Ev,Iz
1232
2: NOT Ev
1233
3: NEG Ev
1234
4: MUL rAX,Ev
1235
5: IMUL rAX,Ev
1236
6: DIV rAX,Ev
1237
7: IDIV rAX,Ev
1238
EndTable
1239
1240
GrpTable: Grp4
1241
0: INC Eb
1242
1: DEC Eb
1243
EndTable
1244
1245
GrpTable: Grp5
1246
0: INC Ev
1247
1: DEC Ev
1248
# Note: "forced64" is Intel CPU behavior (see comment about CALL insn).
1249
2: CALLN Ev (f64)
1250
3: CALLF Ep
1251
4: JMPN Ev (f64)
1252
5: JMPF Mp
1253
6: PUSH Ev (d64)
1254
7:
1255
EndTable
1256
1257
GrpTable: Grp6
1258
0: SLDT Rv/Mw
1259
1: STR Rv/Mw
1260
2: LLDT Ew
1261
3: LTR Ew
1262
4: VERR Ew
1263
5: VERW Ew
1264
6: LKGS Ew (F2)
1265
EndTable
1266
1267
GrpTable: Grp7
1268
0: SGDT Ms | VMCALL (001),(11B) | VMLAUNCH (010),(11B) | VMRESUME (011),(11B) | VMXOFF (100),(11B) | PCONFIG (101),(11B) | ENCLV (000),(11B) | WRMSRNS (110),(11B) | RDMSRLIST (F2),(110),(11B) | WRMSRLIST (F3),(110),(11B) | PBNDKB (111),(11B)
1269
1: SIDT Ms | MONITOR (000),(11B) | MWAIT (001),(11B) | CLAC (010),(11B) | STAC (011),(11B) | ENCLS (111),(11B) | ERETU (F3),(010),(11B) | ERETS (F2),(010),(11B)
1270
2: LGDT Ms | XGETBV (000),(11B) | XSETBV (001),(11B) | VMFUNC (100),(11B) | XEND (101)(11B) | XTEST (110)(11B) | ENCLU (111),(11B)
1271
3: LIDT Ms
1272
4: SMSW Mw/Rv
1273
5: rdpkru (110),(11B) | wrpkru (111),(11B) | SAVEPREVSSP (F3),(010),(11B) | RSTORSSP Mq (F3) | SETSSBSY (F3),(000),(11B) | CLUI (F3),(110),(11B) | SERIALIZE (000),(11B) | STUI (F3),(111),(11B) | TESTUI (F3)(101)(11B) | UIRET (F3),(100),(11B) | XRESLDTRK (F2),(000),(11B) | XSUSLDTRK (F2),(001),(11B)
1274
6: LMSW Ew
1275
7: INVLPG Mb | SWAPGS (o64),(000),(11B) | RDTSCP (001),(11B)
1276
EndTable
1277
1278
GrpTable: Grp8
1279
4: BT
1280
5: BTS
1281
6: BTR
1282
7: BTC
1283
EndTable
1284
1285
GrpTable: Grp9
1286
1: CMPXCHG8B/16B Mq/Mdq
1287
3: xrstors
1288
4: xsavec
1289
5: xsaves
1290
6: VMPTRLD Mq | VMCLEAR Mq (66) | VMXON Mq (F3) | RDRAND Rv (11B) | SENDUIPI Gq (F3)
1291
7: VMPTRST Mq | VMPTRST Mq (F3) | RDSEED Rv (11B)
1292
EndTable
1293
1294
GrpTable: Grp10
1295
# all are UD1
1296
0: UD1
1297
1: UD1
1298
2: UD1
1299
3: UD1
1300
4: UD1
1301
5: UD1
1302
6: UD1
1303
7: UD1
1304
EndTable
1305
1306
# Grp11A and Grp11B are expressed as Grp11 in Intel SDM
1307
GrpTable: Grp11A
1308
0: MOV Eb,Ib
1309
7: XABORT Ib (000),(11B)
1310
EndTable
1311
1312
GrpTable: Grp11B
1313
0: MOV Eb,Iz
1314
7: XBEGIN Jz (000),(11B)
1315
EndTable
1316
1317
GrpTable: Grp12
1318
2: psrlw Nq,Ib (11B) | vpsrlw Hx,Ux,Ib (66),(11B),(v1)
1319
4: psraw Nq,Ib (11B) | vpsraw Hx,Ux,Ib (66),(11B),(v1)
1320
6: psllw Nq,Ib (11B) | vpsllw Hx,Ux,Ib (66),(11B),(v1)
1321
EndTable
1322
1323
GrpTable: Grp13
1324
0: vprord/q Hx,Wx,Ib (66),(ev)
1325
1: vprold/q Hx,Wx,Ib (66),(ev)
1326
2: psrld Nq,Ib (11B) | vpsrld Hx,Ux,Ib (66),(11B),(v1)
1327
4: psrad Nq,Ib (11B) | vpsrad Hx,Ux,Ib (66),(11B),(v1) | vpsrad/q Hx,Ux,Ib (66),(evo)
1328
6: pslld Nq,Ib (11B) | vpslld Hx,Ux,Ib (66),(11B),(v1)
1329
EndTable
1330
1331
GrpTable: Grp14
1332
2: psrlq Nq,Ib (11B) | vpsrlq Hx,Ux,Ib (66),(11B),(v1)
1333
3: vpsrldq Hx,Ux,Ib (66),(11B),(v1)
1334
6: psllq Nq,Ib (11B) | vpsllq Hx,Ux,Ib (66),(11B),(v1)
1335
7: vpslldq Hx,Ux,Ib (66),(11B),(v1)
1336
EndTable
1337
1338
GrpTable: Grp15
1339
0: fxsave | RDFSBASE Ry (F3),(11B)
1340
1: fxstor | RDGSBASE Ry (F3),(11B)
1341
2: vldmxcsr Md (v1) | WRFSBASE Ry (F3),(11B)
1342
3: vstmxcsr Md (v1) | WRGSBASE Ry (F3),(11B)
1343
4: XSAVE | ptwrite Ey (F3),(11B)
1344
5: XRSTOR | lfence (11B) | INCSSPD/Q Ry (F3),(11B)
1345
6: XSAVEOPT | clwb (66) | mfence (11B) | TPAUSE Rd (66),(11B) | UMONITOR Rv (F3),(11B) | UMWAIT Rd (F2),(11B) | CLRSSBSY Mq (F3)
1346
7: clflush | clflushopt (66) | sfence (11B)
1347
EndTable
1348
1349
GrpTable: Grp16
1350
0: prefetch NTA
1351
1: prefetch T0
1352
2: prefetch T1
1353
3: prefetch T2
1354
6: prefetch IT1
1355
7: prefetch IT0
1356
EndTable
1357
1358
GrpTable: Grp17
1359
1: BLSR By,Ey (v)
1360
2: BLSMSK By,Ey (v)
1361
3: BLSI By,Ey (v)
1362
EndTable
1363
1364
GrpTable: Grp18
1365
1: vgatherpf0dps/d Wx (66),(ev)
1366
2: vgatherpf1dps/d Wx (66),(ev)
1367
5: vscatterpf0dps/d Wx (66),(ev)
1368
6: vscatterpf1dps/d Wx (66),(ev)
1369
EndTable
1370
1371
GrpTable: Grp19
1372
1: vgatherpf0qps/d Wx (66),(ev)
1373
2: vgatherpf1qps/d Wx (66),(ev)
1374
5: vscatterpf0qps/d Wx (66),(ev)
1375
6: vscatterpf1qps/d Wx (66),(ev)
1376
EndTable
1377
1378
GrpTable: Grp20
1379
0: cldemote Mb
1380
EndTable
1381
1382
GrpTable: Grp21
1383
1: RDSSPD/Q Ry (F3),(11B)
1384
7: ENDBR64 (F3),(010),(11B) | ENDBR32 (F3),(011),(11B)
1385
EndTable
1386
1387
# AMD's Prefetch Group
1388
GrpTable: GrpP
1389
0: PREFETCH
1390
1: PREFETCHW
1391
EndTable
1392
1393
GrpTable: GrpPDLK
1394
0: MONTMUL
1395
1: XSHA1
1396
2: XSHA2
1397
EndTable
1398
1399
GrpTable: GrpRNG
1400
0: xstore-rng
1401
1: xcrypt-ecb
1402
2: xcrypt-cbc
1403
4: xcrypt-cfb
1404
5: xcrypt-ofb
1405
EndTable
1406
1407
# GrpXOP1-4 is shown in AMD APM Vol.3 Appendix A as XOP group #1-4
1408
GrpTable: GrpXOP1
1409
1: BLCFILL By,Ey (xop)
1410
2: BLSFILL By,Ey (xop)
1411
3: BLCS By,Ey (xop)
1412
4: TZMSK By,Ey (xop)
1413
5: BLCIC By,Ey (xop)
1414
6: BLSIC By,Ey (xop)
1415
7: T1MSKC By,Ey (xop)
1416
EndTable
1417
1418
GrpTable: GrpXOP2
1419
1: BLCMSK By,Ey (xop)
1420
6: BLCI By,Ey (xop)
1421
EndTable
1422
1423
GrpTable: GrpXOP3
1424
0: LLWPCB Ry (xop)
1425
1: SLWPCB Ry (xop)
1426
EndTable
1427
1428
GrpTable: GrpXOP4
1429
0: LWPINS By,Ed,Id (xop)
1430
1: LWPVAL By,Ed,Id (xop)
1431
EndTable
1432
1433