]> Git Repo - qemu.git/blame - target/s390x/insn-data.def
target/s390x: implement COMPARE LOGICAL LONG UNICODE
[qemu.git] / target / s390x / insn-data.def
CommitLineData
13f67dd5
AG
1/*
2 * Arguments to the opcode prototypes
3 *
4 * C(OPC, NAME, FMT, FAC, I1, I2, P, W, OP, CC)
5 * D(OPC, NAME, FMT, FAC, I1, I2, P, W, OP, CC, DATA)
6 *
7 * OPC = (op << 8) | op2 where op is the major, op2 the minor opcode
8 * NAME = name of the opcode, used internally
9 * FMT = format of the opcode (defined in insn-format.def)
10 * FAC = facility the opcode is available in (defined in DisasFacility)
11 * I1 = func in1_xx fills o->in1
12 * I2 = func in2_xx fills o->in2
13 * P = func prep_xx initializes o->*out*
14 * W = func wout_xx writes o->*out* somewhere
15 * OP = func op_xx does the bulk of the operation
16 * CC = func cout_xx defines how cc should get set
17 * DATA = immediate argument to op_xx function
18 *
19 * The helpers get called in order: I1, I2, P, OP, W, CC
20 */
21
ad044d09
RH
22/* ADD */
23 C(0x1a00, AR, RR_a, Z, r1, r2, new, r1_32, add, adds32)
24 C(0xb9f8, ARK, RRF_a, DO, r2, r3, new, r1_32, add, adds32)
25 C(0x5a00, A, RX_a, Z, r1, m2_32s, new, r1_32, add, adds32)
26 C(0xe35a, AY, RXY_a, LD, r1, m2_32s, new, r1_32, add, adds32)
27 C(0xb908, AGR, RRE, Z, r1, r2, r1, 0, add, adds64)
28 C(0xb918, AGFR, RRE, Z, r1, r2_32s, r1, 0, add, adds64)
29 C(0xb9e8, AGRK, RRF_a, DO, r2, r3, r1, 0, add, adds64)
30 C(0xe308, AG, RXY_a, Z, r1, m2_64, r1, 0, add, adds64)
31 C(0xe318, AGF, RXY_a, Z, r1, m2_32s, r1, 0, add, adds64)
587626f8
RH
32 C(0xb30a, AEBR, RRE, Z, e1, e2, new, e1, aeb, f32)
33 C(0xb31a, ADBR, RRE, Z, f1_o, f2_o, f1, 0, adb, f64)
34 C(0xb34a, AXBR, RRE, Z, 0, x2_o, x1, 0, axb, f128)
35 C(0xed0a, AEB, RXE, Z, e1, m2_32u, new, e1, aeb, f32)
36 C(0xed1a, ADB, RXE, Z, f1_o, m2_64, f1, 0, adb, f64)
a1f12d85
AJ
37/* ADD HIGH */
38 C(0xb9c8, AHHHR, RRF_a, HW, r2_sr32, r3_sr32, new, r1_32h, add, adds32)
39 C(0xb9d8, AHHLR, RRF_a, HW, r2_sr32, r3, new, r1_32h, add, adds32)
ad044d09
RH
40/* ADD IMMEDIATE */
41 C(0xc209, AFI, RIL_a, EI, r1, i2, new, r1_32, add, adds32)
42 C(0xeb6a, ASI, SIY, GIE, m1_32s, i2, new, m1_32, add, adds32)
43 C(0xecd8, AHIK, RIE_d, DO, r3, i2, new, r1_32, add, adds32)
44 C(0xc208, AGFI, RIL_a, EI, r1, i2, r1, 0, add, adds64)
45 C(0xeb7a, AGSI, SIY, GIE, m1_64, i2, new, m1_64, add, adds64)
46 C(0xecd9, AGHIK, RIE_d, DO, r3, i2, r1, 0, add, adds64)
a1f12d85
AJ
47/* ADD IMMEDIATE HIGH */
48 C(0xcc08, AIH, RIL_a, HW, r1_sr32, i2, new, r1_32h, add, adds32)
d82287de
RH
49/* ADD HALFWORD */
50 C(0x4a00, AH, RX_a, Z, r1, m2_16s, new, r1_32, add, adds32)
51 C(0xe37a, AHY, RXY_a, LD, r1, m2_16s, new, r1_32, add, adds32)
52/* ADD HALFWORD IMMEDIATE */
53 C(0xa70a, AHI, RI_a, Z, r1, i2, new, r1_32, add, adds32)
54 C(0xa70b, AGHI, RI_a, Z, r1, i2, r1, 0, add, adds64)
55
ad044d09
RH
56/* ADD LOGICAL */
57 C(0x1e00, ALR, RR_a, Z, r1, r2, new, r1_32, add, addu32)
58 C(0xb9fa, ALRK, RRF_a, DO, r2, r3, new, r1_32, add, addu32)
59 C(0x5e00, AL, RX_a, Z, r1, m2_32u, new, r1_32, add, addu32)
60 C(0xe35e, ALY, RXY_a, LD, r1, m2_32u, new, r1_32, add, addu32)
61 C(0xb90a, ALGR, RRE, Z, r1, r2, r1, 0, add, addu64)
62 C(0xb91a, ALGFR, RRE, Z, r1, r2_32u, r1, 0, add, addu64)
63 C(0xb9ea, ALGRK, RRF_a, DO, r2, r3, r1, 0, add, addu64)
64 C(0xe30a, ALG, RXY_a, Z, r1, m2_64, r1, 0, add, addu64)
65 C(0xe31a, ALGF, RXY_a, Z, r1, m2_32u, r1, 0, add, addu64)
a1f12d85
AJ
66/* ADD LOGICAL HIGH */
67 C(0xb9ca, ALHHHR, RRF_a, HW, r2_sr32, r3_sr32, new, r1_32h, add, addu32)
68 C(0xb9da, ALHHLR, RRF_a, HW, r2_sr32, r3, new, r1_32h, add, addu32)
ad044d09
RH
69/* ADD LOGICAL IMMEDIATE */
70 C(0xc20b, ALFI, RIL_a, EI, r1, i2_32u, new, r1_32, add, addu32)
71 C(0xc20a, ALGFI, RIL_a, EI, r1, i2_32u, r1, 0, add, addu64)
e272b3ac
RH
72/* ADD LOGICAL WITH SIGNED IMMEDIATE */
73 C(0xeb6e, ALSI, SIY, GIE, m1_32u, i2, new, m1_32, add, addu32)
74 C(0xecda, ALHSIK, RIE_d, DO, r3, i2, new, r1_32, add, addu32)
75 C(0xeb7e, ALGSI, SIY, GIE, m1_64, i2, new, m1_64, add, addu64)
76 C(0xecdb, ALGHSIK, RIE_d, DO, r3, i2, r1, 0, add, addu64)
a1f12d85
AJ
77/* ADD LOGICAL WITH SIGNED IMMEDIATE HIGH */
78 C(0xcc0a, ALSIH, RIL_a, HW, r1_sr32, i2, new, r1_32h, add, addu32)
79 C(0xcc0b, ALSIHN, RIL_a, HW, r1_sr32, i2, new, r1_32h, add, 0)
4e4bb438
RH
80/* ADD LOGICAL WITH CARRY */
81 C(0xb998, ALCR, RRE, Z, r1, r2, new, r1_32, addc, addc32)
82 C(0xb988, ALCGR, RRE, Z, r1, r2, r1, 0, addc, addc64)
83 C(0xe398, ALC, RXY_a, Z, r1, m2_32u, new, r1_32, addc, addc32)
84 C(0xe388, ALCG, RXY_a, Z, r1, m2_64, r1, 0, addc, addc64)
ad044d09 85
3bbfbd1f
RH
86/* AND */
87 C(0x1400, NR, RR_a, Z, r1, r2, new, r1_32, and, nz32)
88 C(0xb9f4, NRK, RRF_a, DO, r2, r3, new, r1_32, and, nz32)
89 C(0x5400, N, RX_a, Z, r1, m2_32s, new, r1_32, and, nz32)
90 C(0xe354, NY, RXY_a, LD, r1, m2_32s, new, r1_32, and, nz32)
91 C(0xb980, NGR, RRE, Z, r1, r2, r1, 0, and, nz64)
92 C(0xb9e4, NGRK, RRF_a, DO, r2, r3, r1, 0, and, nz64)
93 C(0xe380, NG, RXY_a, Z, r1, m2_64, r1, 0, and, nz64)
0a949039 94 C(0xd400, NC, SS_a, Z, la1, a2, 0, 0, nc, 0)
facfc864
RH
95/* AND IMMEDIATE */
96 D(0xc00a, NIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, andi, 0, 0x2020)
97 D(0xc00b, NILF, RIL_a, EI, r1_o, i2_32u, r1, 0, andi, 0, 0x2000)
98 D(0xa504, NIHH, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1030)
99 D(0xa505, NIHL, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1020)
100 D(0xa506, NILH, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1010)
101 D(0xa507, NILL, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1000)
a05d2b6b
RH
102 C(0x9400, NI, SI, Z, m1_8u, i2_8u, new, m1_8, and, nz64)
103 C(0xeb54, NIY, SIY, LD, m1_8u, i2_8u, new, m1_8, and, nz64)
3bbfbd1f 104
8ac33cdb
RH
105/* BRANCH AND SAVE */
106 C(0x0d00, BASR, RR_a, Z, 0, r2_nz, r1, 0, bas, 0)
107 C(0x4d00, BAS, RX_a, Z, 0, a2, r1, 0, bas, 0)
108/* BRANCH RELATIVE AND SAVE */
109 C(0xa705, BRAS, RI_b, Z, 0, 0, r1, 0, basi, 0)
110 C(0xc005, BRASL, RIL_b, Z, 0, 0, r1, 0, basi, 0)
7233f2ed
RH
111/* BRANCH ON CONDITION */
112 C(0x0700, BCR, RR_b, Z, 0, r2_nz, 0, 0, bc, 0)
113 C(0x4700, BC, RX_b, Z, 0, a2, 0, 0, bc, 0)
114/* BRANCH RELATIVE ON CONDITION */
115 C(0xa704, BRC, RI_c, Z, 0, 0, 0, 0, bc, 0)
116 C(0xc004, BRCL, RIL_c, Z, 0, 0, 0, 0, bc, 0)
c61aad69
RH
117/* BRANCH ON COUNT */
118 C(0x0600, BCTR, RR_a, Z, 0, r2_nz, 0, 0, bct32, 0)
119 C(0xb946, BCTGR, RRE, Z, 0, r2_nz, 0, 0, bct64, 0)
120 C(0x4600, BCT, RX_a, Z, 0, a2, 0, 0, bct32, 0)
121 C(0xe346, BCTG, RXY_a, Z, 0, a2, 0, 0, bct64, 0)
122/* BRANCH RELATIVE ON COUNT */
123 C(0xa706, BRCT, RI_b, Z, 0, 0, 0, 0, bct32, 0)
124 C(0xa707, BRCTG, RI_b, Z, 0, 0, 0, 0, bct64, 0)
a1f12d85
AJ
125/* BRANCH RELATIVE ON COUNT HIGH */
126 C(0xcc06, BRCTH, RIL_b, HW, 0, 0, 0, 0, bcth, 0)
2cf5e350
RH
127/* BRANCH ON INDEX */
128 D(0x8600, BXH, RS_a, Z, 0, a2, 0, 0, bx32, 0, 0)
129 D(0x8700, BXLE, RS_a, Z, 0, a2, 0, 0, bx32, 0, 1)
130 D(0xeb44, BXHG, RSY_a, Z, 0, a2, 0, 0, bx64, 0, 0)
131 D(0xeb45, BXLEG, RSY_a, Z, 0, a2, 0, 0, bx64, 0, 1)
132/* BRANCH RELATIVE ON INDEX */
133 D(0x8400, BRXH, RSI, Z, 0, 0, 0, 0, bx32, 0, 0)
134 D(0x8500, BRXLE, RSI, Z, 0, 0, 0, 0, bx32, 0, 1)
135 D(0xec44, BRXHG, RIE_e, Z, 0, 0, 0, 0, bx64, 0, 0)
136 D(0xec45, BRXHLE, RIE_e, Z, 0, 0, 0, 0, bx64, 0, 1)
8ac33cdb 137
374724f9
RH
138/* CHECKSUM */
139 C(0xb241, CKSM, RRE, Z, r1_o, ra2, new, r1_32, cksm, 0)
140
2db014b5
RH
141/* COPY SIGN */
142 C(0xb372, CPSDR, RRF_b, FPSSH, f3_o, f2_o, f1, 0, cps, 0)
143
a7e836d5
RH
144/* COMPARE */
145 C(0x1900, CR, RR_a, Z, r1_o, r2_o, 0, 0, 0, cmps32)
146 C(0x5900, C, RX_a, Z, r1_o, m2_32s, 0, 0, 0, cmps32)
147 C(0xe359, CY, RXY_a, LD, r1_o, m2_32s, 0, 0, 0, cmps32)
148 C(0xb920, CGR, RRE, Z, r1_o, r2_o, 0, 0, 0, cmps64)
149 C(0xb930, CGFR, RRE, Z, r1_o, r2_32s, 0, 0, 0, cmps64)
150 C(0xe320, CG, RXY_a, Z, r1_o, m2_64, 0, 0, 0, cmps64)
151 C(0xe330, CGF, RXY_a, Z, r1_o, m2_32s, 0, 0, 0, cmps64)
587626f8
RH
152 C(0xb309, CEBR, RRE, Z, e1, e2, 0, 0, ceb, 0)
153 C(0xb319, CDBR, RRE, Z, f1_o, f2_o, 0, 0, cdb, 0)
154 C(0xb349, CXBR, RRE, Z, x1_o, x2_o, 0, 0, cxb, 0)
155 C(0xed09, CEB, RXE, Z, e1, m2_32u, 0, 0, ceb, 0)
156 C(0xed19, CDB, RXE, Z, f1_o, m2_64, 0, 0, cdb, 0)
9c8be598
AJ
157/* COMPARE AND SIGNAL */
158 C(0xb308, KEBR, RRE, Z, e1, e2, 0, 0, keb, 0)
159 C(0xb318, KDBR, RRE, Z, f1_o, f2_o, 0, 0, kdb, 0)
160 C(0xb348, KXBR, RRE, Z, x1_o, x2_o, 0, 0, kxb, 0)
161 C(0xed08, KEB, RXE, Z, e1, m2_32u, 0, 0, keb, 0)
162 C(0xed18, KDB, RXE, Z, f1_o, m2_64, 0, 0, kdb, 0)
a7e836d5
RH
163/* COMPARE IMMEDIATE */
164 C(0xc20d, CFI, RIL_a, EI, r1, i2, 0, 0, 0, cmps32)
165 C(0xc20c, CGFI, RIL_a, EI, r1, i2, 0, 0, 0, cmps64)
403e217f
RH
166/* COMPARE RELATIVE LONG */
167 C(0xc60d, CRL, RIL_b, GIE, r1, mri2_32s, 0, 0, 0, cmps32)
168 C(0xc608, CGRL, RIL_b, GIE, r1, mri2_64, 0, 0, 0, cmps64)
169 C(0xc60c, CGFRL, RIL_b, GIE, r1, mri2_32s, 0, 0, 0, cmps64)
a7e836d5
RH
170/* COMPARE HALFWORD */
171 C(0x4900, CH, RX_a, Z, r1_o, m2_16s, 0, 0, 0, cmps32)
172 C(0xe379, CHY, RXY_a, LD, r1_o, m2_16s, 0, 0, 0, cmps32)
173 C(0xe334, CGH, RXY_a, GIE, r1_o, m2_16s, 0, 0, 0, cmps64)
174/* COMPARE HALFWORD IMMEDIATE */
175 C(0xa70e, CHI, RI_a, Z, r1_o, i2, 0, 0, 0, cmps32)
176 C(0xa70f, CGHI, RI_a, Z, r1_o, i2, 0, 0, 0, cmps64)
177 C(0xe554, CHHSI, SIL, GIE, m1_16s, i2, 0, 0, 0, cmps64)
178 C(0xe55c, CHSI, SIL, GIE, m1_32s, i2, 0, 0, 0, cmps64)
179 C(0xe558, CGHSI, SIL, GIE, m1_64, i2, 0, 0, 0, cmps64)
180/* COMPARE HALFWORD RELATIVE LONG */
74266b4a
AJ
181 C(0xc605, CHRL, RIL_b, GIE, r1_o, mri2_32s, 0, 0, 0, cmps32)
182 C(0xc604, CGHRL, RIL_b, GIE, r1_o, mri2_64, 0, 0, 0, cmps64)
a1f12d85
AJ
183/* COMPARE HIGH */
184 C(0xb9cd, CHHR, RRE, HW, r1_sr32, r2_sr32, 0, 0, 0, cmps32)
185 C(0xb9dd, CHLR, RRE, HW, r1_sr32, r2_o, 0, 0, 0, cmps32)
186 C(0xe3cd, CHF, RXY_a, HW, r1_sr32, m2_32s, 0, 0, 0, cmps32)
187/* COMPARE IMMEDIATE HIGH */
188 C(0xcc0d, CIH, RIL_a, HW, r1_sr32, i2, 0, 0, 0, cmps32)
a7e836d5
RH
189
190/* COMPARE LOGICAL */
191 C(0x1500, CLR, RR_a, Z, r1, r2, 0, 0, 0, cmpu32)
192 C(0x5500, CL, RX_a, Z, r1, m2_32s, 0, 0, 0, cmpu32)
193 C(0xe355, CLY, RXY_a, LD, r1, m2_32s, 0, 0, 0, cmpu32)
194 C(0xb921, CLGR, RRE, Z, r1, r2, 0, 0, 0, cmpu64)
195 C(0xb931, CLGFR, RRE, Z, r1, r2_32u, 0, 0, 0, cmpu64)
196 C(0xe321, CLG, RXY_a, Z, r1, m2_64, 0, 0, 0, cmpu64)
197 C(0xe331, CLGF, RXY_a, Z, r1, m2_32u, 0, 0, 0, cmpu64)
4f7403d5 198 C(0xd500, CLC, SS_a, Z, la1, a2, 0, 0, clc, 0)
a1f12d85
AJ
199/* COMPARE LOGICAL HIGH */
200 C(0xb9cf, CLHHR, RRE, HW, r1_sr32, r2_sr32, 0, 0, 0, cmpu32)
201 C(0xb9df, CLHLR, RRE, HW, r1_sr32, r2_o, 0, 0, 0, cmpu32)
202 C(0xe3cf, CLHF, RXY_a, HW, r1_sr32, m2_32s, 0, 0, 0, cmpu32)
a7e836d5
RH
203/* COMPARE LOGICAL IMMEDIATE */
204 C(0xc20f, CLFI, RIL_a, EI, r1, i2, 0, 0, 0, cmpu32)
205 C(0xc20e, CLGFI, RIL_a, EI, r1, i2_32u, 0, 0, 0, cmpu64)
206 C(0x9500, CLI, SI, Z, m1_8u, i2_8u, 0, 0, 0, cmpu64)
207 C(0xeb55, CLIY, SIY, LD, m1_8u, i2_8u, 0, 0, 0, cmpu64)
208 C(0xe555, CLHHSI, SIL, GIE, m1_16u, i2_16u, 0, 0, 0, cmpu64)
209 C(0xe55d, CLFHSI, SIL, GIE, m1_32u, i2_16u, 0, 0, 0, cmpu64)
210 C(0xe559, CLGHSI, SIL, GIE, m1_64, i2_16u, 0, 0, 0, cmpu64)
a1f12d85
AJ
211/* COMPARE LOGICAL IMMEDIATE HIGH */
212 C(0xcc0f, CLIH, RIL_a, HW, r1_sr32, i2, 0, 0, 0, cmpu32)
a7e836d5
RH
213/* COMPARE LOGICAL RELATIVE LONG */
214 C(0xc60f, CLRL, RIL_b, GIE, r1_o, mri2_32u, 0, 0, 0, cmpu32)
215 C(0xc60a, CLGRL, RIL_b, GIE, r1_o, mri2_64, 0, 0, 0, cmpu64)
216 C(0xc60e, CLGFRL, RIL_b, GIE, r1_o, mri2_32u, 0, 0, 0, cmpu64)
217 C(0xc607, CLHRL, RIL_b, GIE, r1_o, mri2_16u, 0, 0, 0, cmpu32)
218 C(0xc606, CLGHRL, RIL_b, GIE, r1_o, mri2_16u, 0, 0, 0, cmpu64)
5c2b48a8
AJ
219/* COMPARE LOGICAL LONG */
220 C(0x0f00, CLCL, RR_a, Z, 0, 0, 0, 0, clcl, 0)
eb66e6a9
RH
221/* COMPARE LOGICAL LONG EXTENDED */
222 C(0xa900, CLCLE, RS_a, Z, 0, a2, 0, 0, clcle, 0)
31006af3
AJ
223/* COMPARE LOGICAL LONG UNICODE */
224 C(0xeb8f, CLCLU, RSY_a, E2, 0, a2, 0, 0, clclu, 0)
32a44d58
RH
225/* COMPARE LOGICAL CHARACTERS UNDER MASK */
226 C(0xbd00, CLM, RS_b, Z, r1_o, a2, 0, 0, clm, 0)
227 C(0xeb21, CLMY, RSY_b, LD, r1_o, a2, 0, 0, clm, 0)
228 C(0xeb20, CLMH, RSY_b, Z, r1_sr32, a2, 0, 0, clm, 0)
aa31bf60
RH
229/* COMPARE LOGICAL STRING */
230 C(0xb25d, CLST, RRE, Z, r1_o, r2_o, 0, 0, clst, 0)
a7e836d5 231
5550359f
RH
232/* COMPARE AND BRANCH */
233 D(0xecf6, CRB, RRS, GIE, r1_32s, r2_32s, 0, 0, cj, 0, 0)
234 D(0xece4, CGRB, RRS, GIE, r1_o, r2_o, 0, 0, cj, 0, 0)
235 D(0xec76, CRJ, RIE_b, GIE, r1_32s, r2_32s, 0, 0, cj, 0, 0)
236 D(0xec64, CGRJ, RIE_b, GIE, r1_o, r2_o, 0, 0, cj, 0, 0)
237 D(0xecfe, CIB, RIS, GIE, r1_32s, i2, 0, 0, cj, 0, 0)
238 D(0xecfc, CGIB, RIS, GIE, r1_o, i2, 0, 0, cj, 0, 0)
239 D(0xec7e, CIJ, RIE_c, GIE, r1_32s, i2, 0, 0, cj, 0, 0)
240 D(0xec7c, CGIJ, RIE_c, GIE, r1_o, i2, 0, 0, cj, 0, 0)
241/* COMPARE LOGICAL AND BRANCH */
242 D(0xecf7, CLRB, RRS, GIE, r1_32u, r2_32u, 0, 0, cj, 0, 1)
243 D(0xece5, CLGRB, RRS, GIE, r1_o, r2_o, 0, 0, cj, 0, 1)
244 D(0xec77, CLRJ, RIE_b, GIE, r1_32u, r2_32u, 0, 0, cj, 0, 1)
245 D(0xec65, CLGRJ, RIE_b, GIE, r1_o, r2_o, 0, 0, cj, 0, 1)
246 D(0xecff, CLIB, RIS, GIE, r1_32u, i2_8u, 0, 0, cj, 0, 1)
247 D(0xecfd, CLGIB, RIS, GIE, r1_o, i2_8u, 0, 0, cj, 0, 1)
248 D(0xec7f, CLIJ, RIE_c, GIE, r1_32u, i2_8u, 0, 0, cj, 0, 1)
249 D(0xec7d, CLGIJ, RIE_c, GIE, r1_o, i2_8u, 0, 0, cj, 0, 1)
250
f3de39c4 251/* COMPARE AND SWAP */
303a9ab8
RH
252 D(0xba00, CS, RS_a, Z, r3_32u, r1_32u, new, r1_32, cs, 0, MO_TEUL)
253 D(0xeb14, CSY, RSY_a, LD, r3_32u, r1_32u, new, r1_32, cs, 0, MO_TEUL)
254 D(0xeb30, CSG, RSY_a, Z, r3_o, r1_o, new, r1, cs, 0, MO_TEQ)
f3de39c4 255/* COMPARE DOUBLE AND SWAP */
303a9ab8
RH
256 D(0xbb00, CDS, RS_a, Z, r3_D32, r1_D32, new, r1_D32, cs, 0, MO_TEQ)
257 D(0xeb31, CDSY, RSY_a, LD, r3_D32, r1_D32, new, r1_D32, cs, 0, MO_TEQ)
b7886de3 258 C(0xeb3e, CDSG, RSY_a, Z, 0, 0, 0, 0, cdsg, 0)
f3de39c4 259
1c268751
RH
260/* COMPARE AND TRAP */
261 D(0xb972, CRT, RRF_c, GIE, r1_32s, r2_32s, 0, 0, ct, 0, 0)
262 D(0xb960, CGRT, RRF_c, GIE, r1_o, r2_o, 0, 0, ct, 0, 0)
263 D(0xec72, CIT, RIE_a, GIE, r1_32s, i2, 0, 0, ct, 0, 0)
264 D(0xec70, CGIT, RIE_a, GIE, r1_o, i2, 0, 0, ct, 0, 0)
265/* COMPARE LOGICAL AND TRAP */
266 D(0xb973, CLRT, RRF_c, GIE, r1_32u, r2_32u, 0, 0, ct, 0, 1)
267 D(0xb961, CLGRT, RRF_c, GIE, r1_o, r2_o, 0, 0, ct, 0, 1)
375ee58b
AJ
268 D(0xeb23, CLT, RSY_b, MIE, r1_32u, m2_32u, 0, 0, ct, 0, 1)
269 D(0xeb2b, CLGT, RSY_b, MIE, r1_o, m2_64, 0, 0, ct, 0, 1)
1c268751 270 D(0xec73, CLFIT, RIE_a, GIE, r1_32u, i2_32u, 0, 0, ct, 0, 1)
1dedb9b7 271 D(0xec71, CLGIT, RIE_a, GIE, r1_o, i2_32u, 0, 0, ct, 0, 1)
1c268751 272
c49daa51
RH
273/* CONVERT TO DECIMAL */
274 C(0x4e00, CVD, RX_a, Z, r1_o, a2, 0, 0, cvd, 0)
275 C(0xe326, CVDY, RXY_a, LD, r1_o, a2, 0, 0, cvd, 0)
68c8bd93
RH
276/* CONVERT TO FIXED */
277 C(0xb398, CFEBR, RRF_e, Z, 0, e2, new, r1_32, cfeb, 0)
278 C(0xb399, CFDBR, RRF_e, Z, 0, f2_o, new, r1_32, cfdb, 0)
279 C(0xb39a, CFXBR, RRF_e, Z, 0, x2_o, new, r1_32, cfxb, 0)
280 C(0xb3a8, CGEBR, RRF_e, Z, 0, e2, r1, 0, cgeb, 0)
281 C(0xb3a9, CGDBR, RRF_e, Z, 0, f2_o, r1, 0, cgdb, 0)
282 C(0xb3aa, CGXBR, RRF_e, Z, 0, x2_o, r1, 0, cgxb, 0)
683bb9a8
RH
283/* CONVERT FROM FIXED */
284 C(0xb394, CEFBR, RRF_e, Z, 0, r2_32s, new, e1, cegb, 0)
285 C(0xb395, CDFBR, RRF_e, Z, 0, r2_32s, f1, 0, cdgb, 0)
286 C(0xb396, CXFBR, RRF_e, Z, 0, r2_32s, x1, 0, cxgb, 0)
287 C(0xb3a4, CEGBR, RRF_e, Z, 0, r2_o, new, e1, cegb, 0)
288 C(0xb3a5, CDGBR, RRF_e, Z, 0, r2_o, f1, 0, cdgb, 0)
289 C(0xb3a6, CXGBR, RRF_e, Z, 0, r2_o, x1, 0, cxgb, 0)
6ac1b45f
RH
290/* CONVERT TO LOGICAL */
291 C(0xb39c, CLFEBR, RRF_e, FPE, 0, e2, new, r1_32, clfeb, 0)
292 C(0xb39d, CLFDBR, RRF_e, FPE, 0, f2_o, new, r1_32, clfdb, 0)
293 C(0xb39e, CLFXBR, RRF_e, FPE, 0, x2_o, new, r1_32, clfxb, 0)
294 C(0xb3ac, CLGEBR, RRF_e, FPE, 0, e2, r1, 0, clgeb, 0)
295 C(0xb3ad, CLGDBR, RRF_e, FPE, 0, f2_o, r1, 0, clgdb, 0)
296 C(0xb3ae, CLGXBR, RRF_e, FPE, 0, x2_o, r1, 0, clgxb, 0)
2112bf1b
RH
297/* CONVERT FROM LOGICAL */
298 C(0xb390, CELFBR, RRF_e, FPE, 0, r2_32u, new, e1, celgb, 0)
299 C(0xb391, CDLFBR, RRF_e, FPE, 0, r2_32u, f1, 0, cdlgb, 0)
300 C(0xb392, CXLFBR, RRF_e, FPE, 0, r2_32u, x1, 0, cxlgb, 0)
301 C(0xb3a0, CELGBR, RRF_e, FPE, 0, r2_o, new, e1, celgb, 0)
302 C(0xb3a1, CDLGBR, RRF_e, FPE, 0, r2_o, f1, 0, cdlgb, 0)
303 C(0xb3a2, CXLGBR, RRF_e, FPE, 0, r2_o, x1, 0, cxlgb, 0)
c49daa51 304
891452e5
RH
305/* DIVIDE */
306 C(0x1d00, DR, RR_a, Z, r1_D32, r2_32s, new_P, r1_P32, divs32, 0)
307 C(0x5d00, D, RX_a, Z, r1_D32, m2_32s, new_P, r1_P32, divs32, 0)
f08a5c31
RH
308 C(0xb30d, DEBR, RRE, Z, e1, e2, new, e1, deb, 0)
309 C(0xb31d, DDBR, RRE, Z, f1_o, f2_o, f1, 0, ddb, 0)
310 C(0xb34d, DXBR, RRE, Z, 0, x2_o, x1, 0, dxb, 0)
311 C(0xed0d, DEB, RXE, Z, e1, m2_32u, new, e1, deb, 0)
312 C(0xed1d, DDB, RXE, Z, f1_o, m2_64, f1, 0, ddb, 0)
891452e5
RH
313/* DIVIDE LOGICAL */
314 C(0xb997, DLR, RRE, Z, r1_D32, r2_32u, new_P, r1_P32, divu32, 0)
315 C(0xe397, DL, RXY_a, Z, r1_D32, m2_32u, new_P, r1_P32, divu32, 0)
316 C(0xb987, DLGR, RRE, Z, 0, r2_o, r1_P, 0, divu64, 0)
317 C(0xe387, DLG, RXY_a, Z, 0, m2_64, r1_P, 0, divu64, 0)
318/* DIVIDE SINGLE */
319 C(0xb90d, DSGR, RRE, Z, r1p1, r2, r1_P, 0, divs64, 0)
320 C(0xb91d, DSGFR, RRE, Z, r1p1, r2_32s, r1_P, 0, divs64, 0)
321 C(0xe30d, DSG, RXY_a, Z, r1p1, m2_64, r1_P, 0, divs64, 0)
322 C(0xe31d, DSGF, RXY_a, Z, r1p1, m2_32s, r1_P, 0, divs64, 0)
323
3bbfbd1f
RH
324/* EXCLUSIVE OR */
325 C(0x1700, XR, RR_a, Z, r1, r2, new, r1_32, xor, nz32)
326 C(0xb9f7, XRK, RRF_a, DO, r2, r3, new, r1_32, xor, nz32)
327 C(0x5700, X, RX_a, Z, r1, m2_32s, new, r1_32, xor, nz32)
328 C(0xe357, XY, RXY_a, LD, r1, m2_32s, new, r1_32, xor, nz32)
329 C(0xb982, XGR, RRE, Z, r1, r2, r1, 0, xor, nz64)
330 C(0xb9e7, XGRK, RRF_a, DO, r2, r3, r1, 0, xor, nz64)
331 C(0xe382, XG, RXY_a, Z, r1, m2_64, r1, 0, xor, nz64)
d074ac6d 332 C(0xd700, XC, SS_a, Z, 0, 0, 0, 0, xc, 0)
facfc864
RH
333/* EXCLUSIVE OR IMMEDIATE */
334 D(0xc006, XIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, xori, 0, 0x2020)
335 D(0xc007, XILF, RIL_a, EI, r1_o, i2_32u, r1, 0, xori, 0, 0x2000)
a05d2b6b
RH
336 C(0x9700, XI, SI, Z, m1_8u, i2_8u, new, m1_8, xor, nz64)
337 C(0xeb57, XIY, SIY, LD, m1_8u, i2_8u, new, m1_8, xor, nz64)
facfc864 338
6e764e97 339/* EXECUTE */
a72da8b7 340 C(0x4400, EX, RX_a, Z, 0, a2, 0, 0, ex, 0)
6e764e97 341/* EXECUTE RELATIVE LONG */
a72da8b7 342 C(0xc600, EXRL, RIL_b, EE, 0, ri2, 0, 0, ex, 0)
6e764e97 343
d62a4c97
RH
344/* EXTRACT ACCESS */
345 C(0xb24f, EAR, RRE, Z, 0, 0, new, r1_32, ear, 0)
0774710f
RH
346/* EXTRACT CPU ATTRIBUTE */
347 C(0xeb4c, ECAG, RSY_a, GIE, 0, a2, r1, 0, ecag, 0)
ea20490f
RH
348/* EXTRACT FPC */
349 C(0xb38c, EFPC, RRE, Z, 0, 0, new, r1_32, efpc, 0)
e30a9d3f
RH
350/* EXTRACT PSW */
351 C(0xb98d, EPSW, RRE, Z, 0, 0, 0, 0, epsw, 0)
ea20490f 352
102bf2c6
RH
353/* FIND LEFTMOST ONE */
354 C(0xb983, FLOGR, RRE, EI, 0, r2_o, r1_P, 0, flogr, 0)
355
afdc70be
RH
356/* INSERT CHARACTER */
357 C(0x4300, IC, RX_a, Z, 0, m2_8u, 0, r1_8, mov2, 0)
358 C(0xe373, ICY, RXY_a, LD, 0, m2_8u, 0, r1_8, mov2, 0)
58a9e35b
RH
359/* INSERT CHARACTERS UNDER MASK */
360 D(0xbf00, ICM, RS_b, Z, 0, a2, r1, 0, icm, 0, 0)
361 D(0xeb81, ICMY, RSY_b, LD, 0, a2, r1, 0, icm, 0, 0)
362 D(0xeb80, ICMH, RSY_b, Z, 0, a2, r1, 0, icm, 0, 32)
facfc864
RH
363/* INSERT IMMEDIATE */
364 D(0xc008, IIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, insi, 0, 0x2020)
365 D(0xc009, IILF, RIL_a, EI, r1_o, i2_32u, r1, 0, insi, 0, 0x2000)
366 D(0xa500, IIHH, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1030)
367 D(0xa501, IIHL, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1020)
368 D(0xa502, IILH, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1010)
369 D(0xa503, IILL, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1000)
6e2704e7
RH
370/* INSERT PROGRAM MASK */
371 C(0xb222, IPM, RRE, Z, 0, 0, r1, 0, ipm, 0)
3bbfbd1f 372
22c37a08
RH
373/* LOAD */
374 C(0x1800, LR, RR_a, Z, 0, r2_o, 0, cond_r1r2_32, mov2, 0)
375 C(0x5800, L, RX_a, Z, 0, a2, new, r1_32, ld32s, 0)
92892330 376 C(0xe358, LY, RXY_a, LD, 0, a2, new, r1_32, ld32s, 0)
22c37a08
RH
377 C(0xb904, LGR, RRE, Z, 0, r2_o, 0, r1, mov2, 0)
378 C(0xb914, LGFR, RRE, Z, 0, r2_32s, 0, r1, mov2, 0)
379 C(0xe304, LG, RXY_a, Z, 0, a2, r1, 0, ld64, 0)
380 C(0xe314, LGF, RXY_a, Z, 0, a2, r1, 0, ld32s, 0)
d764a8d1
RH
381 C(0x2800, LDR, RR_a, Z, 0, f2_o, 0, f1, mov2, 0)
382 C(0x6800, LD, RX_a, Z, 0, m2_64, 0, f1, mov2, 0)
383 C(0xed65, LDY, RXY_a, LD, 0, m2_64, 0, f1, mov2, 0)
384 C(0x3800, LER, RR_a, Z, 0, e2, 0, cond_e1e2, mov2, 0)
385 C(0x7800, LE, RX_a, Z, 0, m2_32u, 0, e1, mov2, 0)
386 C(0xed64, LEY, RXY_a, LD, 0, m2_32u, 0, e1, mov2, 0)
387 C(0xb365, LXR, RRE, Z, 0, x2_o, 0, x1, movx, 0)
22c37a08
RH
388/* LOAD IMMEDIATE */
389 C(0xc001, LGFI, RIL_a, EI, 0, i2, 0, r1, mov2, 0)
390/* LOAD RELATIVE LONG */
391 C(0xc40d, LRL, RIL_b, GIE, 0, ri2, new, r1_32, ld32s, 0)
392 C(0xc408, LGRL, RIL_b, GIE, 0, ri2, r1, 0, ld64, 0)
393 C(0xc40c, LGFRL, RIL_b, GIE, 0, ri2, r1, 0, ld32s, 0)
aedec19d
RH
394/* LOAD ADDRESS */
395 C(0x4100, LA, RX_a, Z, 0, a2, 0, r1, mov2, 0)
396 C(0xe371, LAY, RXY_a, LD, 0, a2, 0, r1, mov2, 0)
a1c7610a
AJ
397/* LOAD ADDRESS EXTENDED */
398 C(0x5100, LAE, RX_a, Z, 0, a2, 0, r1, mov2e, 0)
399 C(0xe375, LAEY, RXY_a, GIE, 0, a2, 0, r1, mov2e, 0)
aedec19d
RH
400/* LOAD ADDRESS RELATIVE LONG */
401 C(0xc000, LARL, RIL_b, Z, 0, ri2, 0, r1, mov2, 0)
57af7289 402/* LOAD AND ADD */
4dba4d6f
RH
403 D(0xebf8, LAA, RSY_a, ILA, r3_32s, a2, new, in2_r1_32, laa, adds32, MO_TESL)
404 D(0xebe8, LAAG, RSY_a, ILA, r3, a2, new, in2_r1, laa, adds64, MO_TEQ)
57af7289 405/* LOAD AND ADD LOGICAL */
4dba4d6f
RH
406 D(0xebfa, LAAL, RSY_a, ILA, r3_32u, a2, new, in2_r1_32, laa, addu32, MO_TEUL)
407 D(0xebea, LAALG, RSY_a, ILA, r3, a2, new, in2_r1, laa, addu64, MO_TEQ)
57af7289 408/* LOAD AND AND */
4dba4d6f
RH
409 D(0xebf4, LAN, RSY_a, ILA, r3_32s, a2, new, in2_r1_32, lan, nz32, MO_TESL)
410 D(0xebe4, LANG, RSY_a, ILA, r3, a2, new, in2_r1, lan, nz64, MO_TEQ)
57af7289 411/* LOAD AND EXCLUSIVE OR */
4dba4d6f
RH
412 D(0xebf7, LAX, RSY_a, ILA, r3_32s, a2, new, in2_r1_32, lax, nz32, MO_TESL)
413 D(0xebe7, LAXG, RSY_a, ILA, r3, a2, new, in2_r1, lax, nz64, MO_TEQ)
57af7289 414/* LOAD AND OR */
4dba4d6f
RH
415 D(0xebf6, LAO, RSY_a, ILA, r3_32s, a2, new, in2_r1_32, lao, nz32, MO_TESL)
416 D(0xebe6, LAOG, RSY_a, ILA, r3, a2, new, in2_r1, lao, nz64, MO_TEQ)
11bf2d73
RH
417/* LOAD AND TEST */
418 C(0x1200, LTR, RR_a, Z, 0, r2_o, 0, cond_r1r2_32, mov2, s32)
419 C(0xb902, LTGR, RRE, Z, 0, r2_o, 0, r1, mov2, s64)
420 C(0xb912, LTGFR, RRE, Z, 0, r2_32s, 0, r1, mov2, s64)
421 C(0xe312, LT, RXY_a, EI, 0, a2, new, r1_32, ld32s, s64)
422 C(0xe302, LTG, RXY_a, EI, 0, a2, r1, 0, ld64, s64)
423 C(0xe332, LTGF, RXY_a, GIE, 0, a2, r1, 0, ld32s, s64)
587626f8
RH
424 C(0xb302, LTEBR, RRE, Z, 0, e2, 0, cond_e1e2, mov2, f32)
425 C(0xb312, LTDBR, RRE, Z, 0, f2_o, 0, f1, mov2, f64)
426 C(0xb342, LTXBR, RRE, Z, 0, x2_o, 0, x1, movx, f128)
782a8479
AJ
427/* LOAD AND TRAP */
428 C(0xe39f, LAT, RXY_a, LAT, 0, m2_32u, r1, 0, lat, 0)
429 C(0xe385, LGAT, RXY_a, LAT, 0, a2, r1, 0, lgat, 0)
c698d876
RH
430/* LOAD BYTE */
431 C(0xb926, LBR, RRE, EI, 0, r2_8s, 0, r1_32, mov2, 0)
432 C(0xb906, LGBR, RRE, EI, 0, r2_8s, 0, r1, mov2, 0)
433 C(0xe376, LB, RXY_a, LD, 0, a2, new, r1_32, ld8s, 0)
434 C(0xe377, LGB, RXY_a, LD, 0, a2, r1, 0, ld8s, 0)
a1f12d85
AJ
435/* LOAD BYTE HIGH */
436 C(0xe3c0, LBH, RXY_a, HW, 0, a2, new, r1_32h, ld8s, 0)
b9bca3e5
RH
437/* LOAD COMPLEMENT */
438 C(0x1300, LCR, RR_a, Z, 0, r2, new, r1_32, neg, neg32)
439 C(0xb903, LCGR, RRE, Z, 0, r2, r1, 0, neg, neg64)
440 C(0xb913, LCGFR, RRE, Z, 0, r2_32s, r1, 0, neg, neg64)
5d7fd045
RH
441 C(0xb303, LCEBR, RRE, Z, 0, e2, new, e1, negf32, f32)
442 C(0xb313, LCDBR, RRE, Z, 0, f2_o, f1, 0, negf64, f64)
443 C(0xb343, LCXBR, RRE, Z, 0, x2_o, x1, 0, negf128, f128)
1d1f6301 444 C(0xb373, LCDFR, RRE, FPSSH, 0, f2_o, f1, 0, negf64, 0)
c698d876
RH
445/* LOAD HALFWORD */
446 C(0xb927, LHR, RRE, EI, 0, r2_16s, 0, r1_32, mov2, 0)
447 C(0xb907, LGHR, RRE, EI, 0, r2_16s, 0, r1, mov2, 0)
448 C(0x4800, LH, RX_a, Z, 0, a2, new, r1_32, ld16s, 0)
449 C(0xe378, LHY, RXY_a, LD, 0, a2, new, r1_32, ld16s, 0)
450 C(0xe315, LGH, RXY_a, Z, 0, a2, r1, 0, ld16s, 0)
a1f12d85
AJ
451/* LOAD HALFWORD HIGH */
452 C(0xe3c4, LHH, RXY_a, HW, 0, a2, new, r1_32h, ld16s, 0)
c698d876
RH
453/* LOAD HALFWORD IMMEDIATE */
454 C(0xa708, LHI, RI_a, Z, 0, i2, 0, r1_32, mov2, 0)
455 C(0xa709, LGHI, RI_a, Z, 0, i2, 0, r1, mov2, 0)
456/* LOAD HALFWORD RELATIVE LONG */
457 C(0xc405, LHRL, RIL_b, GIE, 0, ri2, new, r1_32, ld16s, 0)
458 C(0xc404, LGHRL, RIL_b, GIE, 0, ri2, r1, 0, ld16s, 0)
a1f12d85
AJ
459/* LOAD HIGH */
460 C(0xe3ca, LFH, RXY_a, HW, 0, a2, new, r1_32h, ld32u, 0)
782a8479
AJ
461/* LOAG HIGH AND TRAP */
462 C(0xe3c8, LFHAT, RXY_a, LAT, 0, m2_32u, r1, 0, lfhat, 0)
22c37a08
RH
463/* LOAD LOGICAL */
464 C(0xb916, LLGFR, RRE, Z, 0, r2_32u, 0, r1, mov2, 0)
465 C(0xe316, LLGF, RXY_a, Z, 0, a2, r1, 0, ld32u, 0)
782a8479
AJ
466/* LOAD LOGICAL AND TRAP */
467 C(0xe39d, LLGFAT, RXY_a, LAT, 0, a2, r1, 0, llgfat, 0)
22c37a08
RH
468/* LOAD LOGICAL RELATIVE LONG */
469 C(0xc40e, LLGFRL, RIL_b, GIE, 0, ri2, r1, 0, ld32u, 0)
c698d876
RH
470/* LOAD LOGICAL CHARACTER */
471 C(0xb994, LLCR, RRE, EI, 0, r2_8u, 0, r1_32, mov2, 0)
472 C(0xb984, LLGCR, RRE, EI, 0, r2_8u, 0, r1, mov2, 0)
473 C(0xe394, LLC, RXY_a, EI, 0, a2, new, r1_32, ld8u, 0)
474 C(0xe390, LLGC, RXY_a, Z, 0, a2, r1, 0, ld8u, 0)
a1f12d85
AJ
475/* LOAD LOGICAL CHARACTER HIGH */
476 C(0xe3c2, LLCH, RXY_a, HW, 0, a2, new, r1_32h, ld8u, 0)
c698d876
RH
477/* LOAD LOGICAL HALFWORD */
478 C(0xb995, LLHR, RRE, EI, 0, r2_16u, 0, r1_32, mov2, 0)
479 C(0xb985, LLGHR, RRE, EI, 0, r2_16u, 0, r1, mov2, 0)
480 C(0xe395, LLH, RXY_a, EI, 0, a2, new, r1_32, ld16u, 0)
481 C(0xe391, LLGH, RXY_a, Z, 0, a2, r1, 0, ld16u, 0)
a1f12d85
AJ
482/* LOAD LOGICAL HALFWORD HIGH */
483 C(0xe3c6, LLHH, RXY_a, HW, 0, a2, new, r1_32h, ld16u, 0)
c698d876
RH
484/* LOAD LOGICAL HALFWORD RELATIVE LONG */
485 C(0xc402, LLHRL, RIL_b, GIE, 0, ri2, new, r1_32, ld16u, 0)
486 C(0xc406, LLGHRL, RIL_b, GIE, 0, ri2, r1, 0, ld16u, 0)
ade9dea4
RH
487/* LOAD LOGICAL IMMEDATE */
488 D(0xc00e, LLIHF, RIL_a, EI, 0, i2_32u_shl, 0, r1, mov2, 0, 32)
489 D(0xc00f, LLILF, RIL_a, EI, 0, i2_32u_shl, 0, r1, mov2, 0, 0)
490 D(0xa50c, LLIHH, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 48)
491 D(0xa50d, LLIHL, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 32)
492 D(0xa50e, LLILH, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 16)
493 D(0xa50f, LLILL, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 0)
7691c23b
RH
494/* LOAD LOGICAL THIRTY ONE BITS */
495 C(0xb917, LLGTR, RRE, Z, 0, r2_o, r1, 0, llgt, 0)
496 C(0xe317, LLGT, RXY_a, Z, 0, m2_32u, r1, 0, llgt, 0)
782a8479
AJ
497/* LOAD LOGICAL THIRTY ONE BITS AND TRAP */
498 C(0xe39c, LLGTAT, RXY_a, LAT, 0, m2_32u, r1, 0, llgtat, 0)
499
143cbbc5
RH
500/* LOAD FPR FROM GR */
501 C(0xb3c1, LDGR, RRE, FPRGR, 0, r2_o, 0, f1, mov2, 0)
502/* LOAD GR FROM FPR */
503 C(0xb3cd, LGDR, RRE, FPRGR, 0, f2_o, 0, r1, mov2, 0)
b9bca3e5
RH
504/* LOAD NEGATIVE */
505 C(0x1100, LNR, RR_a, Z, 0, r2_32s, new, r1_32, nabs, nabs32)
506 C(0xb901, LNGR, RRE, Z, 0, r2, r1, 0, nabs, nabs64)
507 C(0xb911, LNGFR, RRE, Z, 0, r2_32s, r1, 0, nabs, nabs64)
5d7fd045
RH
508 C(0xb301, LNEBR, RRE, Z, 0, e2, new, e1, nabsf32, f32)
509 C(0xb311, LNDBR, RRE, Z, 0, f2_o, f1, 0, nabsf64, f64)
510 C(0xb341, LNXBR, RRE, Z, 0, x2_o, x1, 0, nabsf128, f128)
df46283c 511 C(0xb371, LNDFR, RRE, FPSSH, 0, f2_o, f1, 0, nabsf64, 0)
632086da
RH
512/* LOAD ON CONDITION */
513 C(0xb9f2, LOCR, RRF_c, LOC, r1, r2, new, r1_32, loc, 0)
514 C(0xb9e2, LOCGR, RRF_c, LOC, r1, r2, r1, 0, loc, 0)
515 C(0xebf2, LOC, RSY_b, LOC, r1, m2_32u, new, r1_32, loc, 0)
516 C(0xebe2, LOCG, RSY_b, LOC, r1, m2_64, r1, 0, loc, 0)
1807aaa5
EB
517/* LOAD PAIR DISJOINT */
518 D(0xc804, LPD, SSF, ILA, 0, 0, new_P, r3_P32, lpd, 0, MO_TEUL)
519 D(0xc805, LPDG, SSF, ILA, 0, 0, new_P, r3_P64, lpd, 0, MO_TEQ)
b9bca3e5
RH
520/* LOAD POSITIVE */
521 C(0x1000, LPR, RR_a, Z, 0, r2_32s, new, r1_32, abs, abs32)
522 C(0xb900, LPGR, RRE, Z, 0, r2, r1, 0, abs, abs64)
523 C(0xb910, LPGFR, RRE, Z, 0, r2_32s, r1, 0, abs, abs64)
5d7fd045
RH
524 C(0xb300, LPEBR, RRE, Z, 0, e2, new, e1, absf32, f32)
525 C(0xb310, LPDBR, RRE, Z, 0, f2_o, f1, 0, absf64, f64)
526 C(0xb340, LPXBR, RRE, Z, 0, x2_o, x1, 0, absf128, f128)
df46283c 527 C(0xb370, LPDFR, RRE, FPSSH, 0, f2_o, f1, 0, absf64, 0)
d54f5865
RH
528/* LOAD REVERSED */
529 C(0xb91f, LRVR, RRE, Z, 0, r2_32u, new, r1_32, rev32, 0)
530 C(0xb90f, LRVGR, RRE, Z, 0, r2_o, r1, 0, rev64, 0)
531 C(0xe31f, LRVH, RXY_a, Z, 0, m2_16u, new, r1_16, rev16, 0)
532 C(0xe31e, LRV, RXY_a, Z, 0, m2_32u, new, r1_32, rev32, 0)
533 C(0xe30f, LRVG, RXY_a, Z, 0, m2_64, r1, 0, rev64, 0)
24db8412
RH
534/* LOAD ZERO */
535 C(0xb374, LZER, RRE, Z, 0, 0, 0, e1, zero, 0)
536 C(0xb375, LZDR, RRE, Z, 0, 0, 0, f1, zero, 0)
537 C(0xb376, LZXR, RRE, Z, 0, 0, 0, x1, zero2, 0)
22c37a08 538
8379bfdb
RH
539/* LOAD FPC */
540 C(0xb29d, LFPC, S, Z, 0, m2_32u, 0, 0, sfpc, 0)
411edc22
RH
541/* LOAD FPC AND SIGNAL */
542 C(0xb2bd, LFAS, S, IEEEE_SIM, 0, m2_32u, 0, 0, sfas, 0)
ed0bcece
AJ
543/* LOAD FP INTEGER */
544 C(0xb357, FIEBR, RRF_e, Z, 0, e2, new, e1, fieb, 0)
545 C(0xb35f, FIDBR, RRF_e, Z, 0, f2_o, f1, 0, fidb, 0)
546 C(0xb347, FIXBR, RRF_e, Z, 0, x2_o, x1, 0, fixb, 0)
8379bfdb 547
587626f8
RH
548/* LOAD LENGTHENED */
549 C(0xb304, LDEBR, RRE, Z, 0, e2, f1, 0, ldeb, 0)
550 C(0xb305, LXDBR, RRE, Z, 0, f2_o, x1, 0, lxdb, 0)
551 C(0xb306, LXEBR, RRE, Z, 0, e2, x1, 0, lxeb, 0)
552 C(0xed04, LDEB, RXE, Z, 0, m2_32u, f1, 0, ldeb, 0)
553 C(0xed05, LXDB, RXE, Z, 0, m2_64, x1, 0, lxdb, 0)
554 C(0xed06, LXEB, RXE, Z, 0, m2_32u, x1, 0, lxeb, 0)
555/* LOAD ROUNDED */
556 C(0xb344, LEDBR, RRE, Z, 0, f2_o, new, e1, ledb, 0)
557 C(0xb345, LDXBR, RRE, Z, 0, x2_o, f1, 0, ldxb, 0)
558 C(0xb346, LEXBR, RRE, Z, 0, x2_o, new, e1, lexb, 0)
559
77f8d6c3
RH
560/* LOAD MULTIPLE */
561 C(0x9800, LM, RS_a, Z, 0, a2, 0, 0, lm32, 0)
562 C(0xeb98, LMY, RSY_a, LD, 0, a2, 0, 0, lm32, 0)
563 C(0xeb04, LMG, RSY_a, Z, 0, a2, 0, 0, lm64, 0)
564/* LOAD MULTIPLE HIGH */
565 C(0xeb96, LMH, RSY_a, Z, 0, a2, 0, 0, lmh, 0)
7df3e93a
RH
566/* LOAD ACCESS MULTIPLE */
567 C(0x9a00, LAM, RS_a, Z, 0, a2, 0, 0, lam, 0)
568 C(0xeb9a, LAMY, RSY_a, LD, 0, a2, 0, 0, lam, 0)
77f8d6c3 569
6a04d76a 570/* MOVE */
af9e5a04 571 C(0xd200, MVC, SS_a, Z, la1, a2, 0, 0, mvc, 0)
6a04d76a
RH
572 C(0xe544, MVHHI, SIL, GIE, la1, i2, 0, m1_16, mov2, 0)
573 C(0xe54c, MVHI, SIL, GIE, la1, i2, 0, m1_32, mov2, 0)
574 C(0xe548, MVGHI, SIL, GIE, la1, i2, 0, m1_64, mov2, 0)
575 C(0x9200, MVI, SI, Z, la1, i2, 0, m1_8, mov2, 0)
576 C(0xeb52, MVIY, SIY, LD, la1, i2, 0, m1_8, mov2, 0)
6c9deca8
AJ
577/* MOVE INVERSE */
578 C(0xe800, MVCIN, SS_a, Z, la1, a2, 0, 0, mvcin, 0)
e1eaada9
RH
579/* MOVE LONG */
580 C(0x0e00, MVCL, RR_a, Z, 0, 0, 0, 0, mvcl, 0)
eb66e6a9
RH
581/* MOVE LONG EXTENDED */
582 C(0xa800, MVCLE, RS_a, Z, 0, a2, 0, 0, mvcle, 0)
256dab6f
AJ
583/* MOVE NUMERICS */
584 C(0xd100, MVN, SS_a, Z, la1, a2, 0, 0, mvn, 0)
ee6c38d5
RH
585/* MOVE PAGE */
586 C(0xb254, MVPG, RRE, Z, r1_o, r2_o, 0, 0, mvpg, 0)
aa31bf60
RH
587/* MOVE STRING */
588 C(0xb255, MVST, RRE, Z, r1_o, r2_o, 0, 0, mvst, 0)
fdc0a747
AJ
589/* MOVE WITH OFFSET */
590 /* Really format SS_b, but we pack both lengths into one argument
591 for the helper call, so we might as well leave one 8-bit field. */
592 C(0xf100, MVO, SS_a, Z, la1, a2, 0, 0, mvo, 0)
01f8db88
AJ
593/* MOVE ZONES */
594 C(0xd300, MVZ, SS_a, Z, la1, a2, 0, 0, mvz, 0)
e1eaada9 595
d87aaf93
RH
596/* MULTIPLY */
597 C(0x1c00, MR, RR_a, Z, r1p1_32s, r2_32s, new, r1_D32, mul, 0)
598 C(0x5c00, M, RX_a, Z, r1p1_32s, m2_32s, new, r1_D32, mul, 0)
599 C(0xe35c, MFY, RXY_a, GIE, r1p1_32s, m2_32s, new, r1_D32, mul, 0)
83b00736
RH
600 C(0xb317, MEEBR, RRE, Z, e1, e2, new, e1, meeb, 0)
601 C(0xb31c, MDBR, RRE, Z, f1_o, f2_o, f1, 0, mdb, 0)
602 C(0xb34c, MXBR, RRE, Z, 0, x2_o, x1, 0, mxb, 0)
603 C(0xb30c, MDEBR, RRE, Z, f1_o, e2, f1, 0, mdeb, 0)
604 C(0xb307, MXDBR, RRE, Z, 0, f2_o, x1, 0, mxdb, 0)
605 C(0xed17, MEEB, RXE, Z, e1, m2_32u, new, e1, meeb, 0)
606 C(0xed1c, MDB, RXE, Z, f1_o, m2_64, f1, 0, mdb, 0)
607 C(0xed0c, MDEB, RXE, Z, f1_o, m2_32u, f1, 0, mdeb, 0)
608 C(0xed07, MXDB, RXE, Z, 0, m2_64, x1, 0, mxdb, 0)
d1c04a2b
RH
609/* MULTIPLY HALFWORD */
610 C(0x4c00, MH, RX_a, Z, r1_o, m2_16s, new, r1_32, mul, 0)
611 C(0xe37c, MHY, RXY_a, GIE, r1_o, m2_16s, new, r1_32, mul, 0)
612/* MULTIPLY HALFWORD IMMEDIATE */
613 C(0xa70c, MHI, RI_a, Z, r1_o, i2, new, r1_32, mul, 0)
614 C(0xa70d, MGHI, RI_a, Z, r1_o, i2, r1, 0, mul, 0)
d87aaf93
RH
615/* MULTIPLY LOGICAL */
616 C(0xb996, MLR, RRE, Z, r1p1_32u, r2_32u, new, r1_D32, mul, 0)
617 C(0xe396, ML, RXY_a, Z, r1p1_32u, m2_32u, new, r1_D32, mul, 0)
1ac5889f
RH
618 C(0xb986, MLGR, RRE, Z, r1p1, r2_o, r1_P, 0, mul128, 0)
619 C(0xe386, MLG, RXY_a, Z, r1p1, m2_64, r1_P, 0, mul128, 0)
d1c04a2b
RH
620/* MULTIPLY SINGLE */
621 C(0xb252, MSR, RRE, Z, r1_o, r2_o, new, r1_32, mul, 0)
622 C(0x7100, MS, RX_a, Z, r1_o, m2_32s, new, r1_32, mul, 0)
623 C(0xe351, MSY, RXY_a, LD, r1_o, m2_32s, new, r1_32, mul, 0)
624 C(0xb90c, MSGR, RRE, Z, r1_o, r2_o, r1, 0, mul, 0)
625 C(0xb91c, MSGFR, RRE, Z, r1_o, r2_32s, r1, 0, mul, 0)
626 C(0xe30c, MSG, RXY_a, Z, r1_o, m2_64, r1, 0, mul, 0)
627 C(0xe31c, MSGF, RXY_a, Z, r1_o, m2_32s, r1, 0, mul, 0)
628/* MULTIPLY SINGLE IMMEDIATE */
629 C(0xc201, MSFI, RIL_a, GIE, r1_o, i2, new, r1_32, mul, 0)
630 C(0xc200, MSGFI, RIL_a, GIE, r1_o, i2, r1, 0, mul, 0)
631
722bfec3
RH
632/* MULTIPLY AND ADD */
633 C(0xb30e, MAEBR, RRD, Z, e1, e2, new, e1, maeb, 0)
634 C(0xb31e, MADBR, RRD, Z, f1_o, f2_o, f1, 0, madb, 0)
635 C(0xed0e, MAEB, RXF, Z, e1, m2_32u, new, e1, maeb, 0)
636 C(0xed1e, MADB, RXF, Z, f1_o, m2_64, f1, 0, madb, 0)
637/* MULTIPLY AND SUBTRACT */
638 C(0xb30f, MSEBR, RRD, Z, e1, e2, new, e1, mseb, 0)
639 C(0xb31f, MSDBR, RRD, Z, f1_o, f2_o, f1, 0, msdb, 0)
640 C(0xed0f, MSEB, RXF, Z, e1, m2_32u, new, e1, mseb, 0)
641 C(0xed1f, MSDB, RXF, Z, f1_o, m2_64, f1, 0, msdb, 0)
642
3bbfbd1f
RH
643/* OR */
644 C(0x1600, OR, RR_a, Z, r1, r2, new, r1_32, or, nz32)
645 C(0xb9f6, ORK, RRF_a, DO, r2, r3, new, r1_32, or, nz32)
646 C(0x5600, O, RX_a, Z, r1, m2_32s, new, r1_32, or, nz32)
647 C(0xe356, OY, RXY_a, LD, r1, m2_32s, new, r1_32, or, nz32)
648 C(0xb981, OGR, RRE, Z, r1, r2, r1, 0, or, nz64)
649 C(0xb9e6, OGRK, RRF_a, DO, r2, r3, r1, 0, or, nz64)
650 C(0xe381, OG, RXY_a, Z, r1, m2_64, r1, 0, or, nz64)
0a949039 651 C(0xd600, OC, SS_a, Z, la1, a2, 0, 0, oc, 0)
facfc864
RH
652/* OR IMMEDIATE */
653 D(0xc00c, OIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, ori, 0, 0x2020)
654 D(0xc00d, OILF, RIL_a, EI, r1_o, i2_32u, r1, 0, ori, 0, 0x2000)
655 D(0xa508, OIHH, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1030)
656 D(0xa509, OIHL, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1020)
657 D(0xa50a, OILH, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1010)
658 D(0xa50b, OILL, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1000)
a05d2b6b
RH
659 C(0x9600, OI, SI, Z, m1_8u, i2_8u, new, m1_8, or, nz64)
660 C(0xeb56, OIY, SIY, LD, m1_8u, i2_8u, new, m1_8, or, nz64)
3bbfbd1f 661
76c57490
AJ
662/* PACK */
663 /* Really format SS_b, but we pack both lengths into one argument
664 for the helper call, so we might as well leave one 8-bit field. */
665 C(0xf200, PACK, SS_a, Z, la1, a2, 0, 0, pack, 0)
666
e0def909
RH
667/* PREFETCH */
668 /* Implemented as nops of course. */
669 C(0xe336, PFD, RXY_b, GIE, 0, 0, 0, 0, 0, 0)
670 C(0xc602, PFDRL, RIL_c, GIE, 0, 0, 0, 0, 0, 0)
671
99b4f24b
RH
672/* POPULATION COUNT */
673 C(0xb9e1, POPCNT, RRE, PC, 0, r2_o, r1, 0, popcnt, nz64)
674
cbe24bfa
RH
675/* ROTATE LEFT SINGLE LOGICAL */
676 C(0xeb1d, RLL, RSY_a, Z, r3_o, sh32, new, r1_32, rll32, 0)
677 C(0xeb1c, RLLG, RSY_a, Z, r3_o, sh64, r1, 0, rll64, 0)
678
2d6a8698
RH
679/* ROTATE THEN INSERT SELECTED BITS */
680 C(0xec55, RISBG, RIE_f, GIE, 0, r2, r1, 0, risbg, s64)
375ee58b 681 C(0xec59, RISBGN, RIE_f, MIE, 0, r2, r1, 0, risbg, 0)
92892330
AJ
682 C(0xec5d, RISBHG, RIE_f, HW, 0, r2, r1, 0, risbg, 0)
683 C(0xec51, RISBLG, RIE_f, HW, 0, r2, r1, 0, risbg, 0)
d6c6372e
RH
684/* ROTATE_THEN <OP> SELECTED BITS */
685 C(0xec54, RNSBG, RIE_f, GIE, 0, r2, r1, 0, rosbg, 0)
686 C(0xec56, ROSBG, RIE_f, GIE, 0, r2, r1, 0, rosbg, 0)
687 C(0xec57, RXSBG, RIE_f, GIE, 0, r2, r1, 0, rosbg, 0)
2d6a8698 688
4600c994
RH
689/* SEARCH STRING */
690 C(0xb25e, SRST, RRE, Z, r1_o, r2_o, 0, 0, srst, 0)
691
d62a4c97
RH
692/* SET ACCESS */
693 C(0xb24e, SAR, RRE, Z, 0, r2_o, 0, 0, sar, 0)
8612c935
RH
694/* SET ADDRESSING MODE */
695 D(0x010c, SAM24, E, Z, 0, 0, 0, 0, sam, 0, 0)
696 D(0x010d, SAM31, E, Z, 0, 0, 0, 0, sam, 0, 1)
697 D(0x010e, SAM64, E, Z, 0, 0, 0, 0, sam, 0, 3)
8379bfdb
RH
698/* SET FPC */
699 C(0xb384, SFPC, RRE, Z, 0, r1_o, 0, 0, sfpc, 0)
411edc22
RH
700/* SET FPC AND SIGNAL */
701 C(0xb385, SFASR, RRE, IEEEE_SIM, 0, r1_o, 0, 0, sfas, 0)
a12000b9
RH
702/* SET BFP ROUNDING MODE */
703 C(0xb299, SRNM, S, Z, 0, 0, 0, 0, srnm, 0)
704 C(0xb2b8, SRNMB, S, FPE, 0, 0, 0, 0, srnm, 0)
705/* SET DFP ROUNDING MODE */
9182886d 706 C(0xb2b9, SRNMT, S, DFPR, 0, 0, 0, 0, srnm, 0)
8379bfdb 707
cbe24bfa
RH
708/* SHIFT LEFT SINGLE */
709 D(0x8b00, SLA, RS_a, Z, r1, sh32, new, r1_32, sla, 0, 31)
710 D(0xebdd, SLAK, RSY_a, DO, r3, sh32, new, r1_32, sla, 0, 31)
711 D(0xeb0b, SLAG, RSY_a, Z, r3, sh64, r1, 0, sla, 0, 63)
712/* SHIFT LEFT SINGLE LOGICAL */
713 C(0x8900, SLL, RS_a, Z, r1_o, sh32, new, r1_32, sll, 0)
714 C(0xebdf, SLLK, RSY_a, DO, r3_o, sh32, new, r1_32, sll, 0)
715 C(0xeb0d, SLLG, RSY_a, Z, r3_o, sh64, r1, 0, sll, 0)
716/* SHIFT RIGHT SINGLE */
717 C(0x8a00, SRA, RS_a, Z, r1_32s, sh32, new, r1_32, sra, s32)
718 C(0xebdc, SRAK, RSY_a, DO, r3_32s, sh32, new, r1_32, sra, s32)
719 C(0xeb0a, SRAG, RSY_a, Z, r3_o, sh64, r1, 0, sra, s64)
720/* SHIFT RIGHT SINGLE LOGICAL */
721 C(0x8800, SRL, RS_a, Z, r1_32u, sh32, new, r1_32, srl, 0)
722 C(0xebde, SRLK, RSY_a, DO, r3_32u, sh32, new, r1_32, srl, 0)
723 C(0xeb0c, SRLG, RSY_a, Z, r3_o, sh64, r1, 0, srl, 0)
a79ba339
RH
724/* SHIFT LEFT DOUBLE */
725 D(0x8f00, SLDA, RS_a, Z, r1_D32, sh64, new, r1_D32, sla, 0, 31)
726/* SHIFT LEFT DOUBLE LOGICAL */
727 C(0x8d00, SLDL, RS_a, Z, r1_D32, sh64, new, r1_D32, sll, 0)
728/* SHIFT RIGHT DOUBLE */
729 C(0x8e00, SRDA, RS_a, Z, r1_D32, sh64, new, r1_D32, sra, s64)
730/* SHIFT RIGHT DOUBLE LOGICAL */
731 C(0x8c00, SRDL, RS_a, Z, r1_D32, sh64, new, r1_D32, srl, 0)
cbe24bfa 732
16d7b2a4
RH
733/* SQUARE ROOT */
734 C(0xb314, SQEBR, RRE, Z, 0, e2, new, e1, sqeb, 0)
735 C(0xb315, SQDBR, RRE, Z, 0, f2_o, f1, 0, sqdb, 0)
736 C(0xb316, SQXBR, RRE, Z, 0, x2_o, x1, 0, sqxb, 0)
737 C(0xed14, SQEB, RXE, Z, 0, m2_32u, new, e1, sqeb, 0)
738 C(0xed15, SQDB, RXE, Z, 0, m2_64, f1, 0, sqdb, 0)
739
2b280b97
RH
740/* STORE */
741 C(0x5000, ST, RX_a, Z, r1_o, a2, 0, 0, st32, 0)
742 C(0xe350, STY, RXY_a, LD, r1_o, a2, 0, 0, st32, 0)
743 C(0xe324, STG, RXY_a, Z, r1_o, a2, 0, 0, st64, 0)
00574261
RH
744 C(0x6000, STD, RX_a, Z, f1_o, a2, 0, 0, st64, 0)
745 C(0xed67, STDY, RXY_a, LD, f1_o, a2, 0, 0, st64, 0)
746 C(0x7000, STE, RX_a, Z, e1, a2, 0, 0, st32, 0)
747 C(0xed66, STEY, RXY_a, LD, e1, a2, 0, 0, st32, 0)
2b280b97
RH
748/* STORE RELATIVE LONG */
749 C(0xc40f, STRL, RIL_b, GIE, r1_o, ri2, 0, 0, st32, 0)
750 C(0xc40b, STGRL, RIL_b, GIE, r1_o, ri2, 0, 0, st64, 0)
751/* STORE CHARACTER */
752 C(0x4200, STC, RX_a, Z, r1_o, a2, 0, 0, st8, 0)
753 C(0xe372, STCY, RXY_a, LD, r1_o, a2, 0, 0, st8, 0)
a1f12d85
AJ
754/* STORE CHARACTER HIGH */
755 C(0xe3c3, STCH, RXY_a, HW, r1_sr32, a2, 0, 0, st8, 0)
2ae68059
RH
756/* STORE CHARACTERS UNDER MASK */
757 D(0xbe00, STCM, RS_b, Z, r1_o, a2, 0, 0, stcm, 0, 0)
758 D(0xeb2d, STCMY, RSY_b, LD, r1_o, a2, 0, 0, stcm, 0, 0)
92892330 759 D(0xeb2c, STCMH, RSY_b, Z, r1_o, a2, 0, 0, stcm, 0, 32)
2b280b97
RH
760/* STORE HALFWORD */
761 C(0x4000, STH, RX_a, Z, r1_o, a2, 0, 0, st16, 0)
762 C(0xe370, STHY, RXY_a, LD, r1_o, a2, 0, 0, st16, 0)
a1f12d85
AJ
763/* STORE HALFWORD HIGH */
764 C(0xe3c7, STHH, RXY_a, HW, r1_sr32, a2, 0, 0, st16, 0)
2b280b97
RH
765/* STORE HALFWORD RELATIVE LONG */
766 C(0xc407, STHRL, RIL_b, GIE, r1_o, ri2, 0, 0, st16, 0)
a1f12d85
AJ
767/* STORE HIGH */
768 C(0xe3cb, STFH, RXY_a, HW, r1_sr32, a2, 0, 0, st32, 0)
b92fa334
RH
769/* STORE ON CONDITION */
770 D(0xebf3, STOC, RSY_b, LOC, 0, 0, 0, 0, soc, 0, 0)
771 D(0xebe3, STOCG, RSY_b, LOC, 0, 0, 0, 0, soc, 0, 1)
e025e52a
RH
772/* STORE REVERSED */
773 C(0xe33f, STRVH, RXY_a, Z, la2, r1_16u, new, m1_16, rev16, 0)
774 C(0xe33e, STRV, RXY_a, Z, la2, r1_32u, new, m1_32, rev32, 0)
775 C(0xe32f, STRVG, RXY_a, Z, la2, r1_o, new, m1_64, rev64, 0)
2b280b97 776
5bf83628
RH
777/* STORE FACILITY LIST EXTENDED */
778 C(0xb2b0, STFLE, S, SFLE, 0, a2, 0, 0, stfle, 0)
ea20490f
RH
779/* STORE FPC */
780 C(0xb29c, STFPC, S, Z, 0, a2, new, m2_32, efpc, 0)
781
77f8d6c3
RH
782/* STORE MULTIPLE */
783 D(0x9000, STM, RS_a, Z, 0, a2, 0, 0, stm, 0, 4)
784 D(0xeb90, STMY, RSY_a, LD, 0, a2, 0, 0, stm, 0, 4)
785 D(0xeb24, STMG, RSY_a, Z, 0, a2, 0, 0, stm, 0, 8)
786/* STORE MULTIPLE HIGH */
787 C(0xeb26, STMH, RSY_a, Z, 0, a2, 0, 0, stmh, 0)
7df3e93a
RH
788/* STORE ACCESS MULTIPLE */
789 C(0x9b00, STAM, RS_a, Z, 0, a2, 0, 0, stam, 0)
790 C(0xeb9b, STAMY, RSY_a, LD, 0, a2, 0, 0, stam, 0)
77f8d6c3 791
ad044d09
RH
792/* SUBTRACT */
793 C(0x1b00, SR, RR_a, Z, r1, r2, new, r1_32, sub, subs32)
794 C(0xb9f9, SRK, RRF_a, DO, r2, r3, new, r1_32, sub, subs32)
795 C(0x5b00, S, RX_a, Z, r1, m2_32s, new, r1_32, sub, subs32)
796 C(0xe35b, SY, RXY_a, LD, r1, m2_32s, new, r1_32, sub, subs32)
797 C(0xb909, SGR, RRE, Z, r1, r2, r1, 0, sub, subs64)
798 C(0xb919, SGFR, RRE, Z, r1, r2_32s, r1, 0, sub, subs64)
799 C(0xb9e9, SGRK, RRF_a, DO, r2, r3, r1, 0, sub, subs64)
800 C(0xe309, SG, RXY_a, Z, r1, m2_64, r1, 0, sub, subs64)
801 C(0xe319, SGF, RXY_a, Z, r1, m2_32s, r1, 0, sub, subs64)
1a800a2d
RH
802 C(0xb30b, SEBR, RRE, Z, e1, e2, new, e1, seb, f32)
803 C(0xb31b, SDBR, RRE, Z, f1_o, f2_o, f1, 0, sdb, f64)
804 C(0xb34b, SXBR, RRE, Z, 0, x2_o, x1, 0, sxb, f128)
805 C(0xed0b, SEB, RXE, Z, e1, m2_32u, new, e1, seb, f32)
806 C(0xed1b, SDB, RXE, Z, f1_o, m2_64, f1, 0, sdb, f64)
3f4cb56a
RH
807/* SUBTRACT HALFWORD */
808 C(0x4b00, SH, RX_a, Z, r1, m2_16s, new, r1_32, sub, subs32)
809 C(0xe37b, SHY, RXY_a, LD, r1, m2_16s, new, r1_32, sub, subs32)
a1f12d85
AJ
810/* SUBTRACT HIGH */
811 C(0xb9c9, SHHHR, RRF_a, HW, r2_sr32, r3_sr32, new, r1_32h, sub, subs32)
812 C(0xb9d9, SHHLR, RRF_a, HW, r2_sr32, r3, new, r1_32h, sub, subs32)
ad044d09
RH
813/* SUBTRACT LOGICAL */
814 C(0x1f00, SLR, RR_a, Z, r1, r2, new, r1_32, sub, subu32)
815 C(0xb9fb, SLRK, RRF_a, DO, r2, r3, new, r1_32, sub, subu32)
816 C(0x5f00, SL, RX_a, Z, r1, m2_32u, new, r1_32, sub, subu32)
817 C(0xe35f, SLY, RXY_a, LD, r1, m2_32u, new, r1_32, sub, subu32)
818 C(0xb90b, SLGR, RRE, Z, r1, r2, r1, 0, sub, subu64)
819 C(0xb91b, SLGFR, RRE, Z, r1, r2_32u, r1, 0, sub, subu64)
820 C(0xb9eb, SLGRK, RRF_a, DO, r2, r3, r1, 0, sub, subu64)
821 C(0xe30b, SLG, RXY_a, Z, r1, m2_64, r1, 0, sub, subu64)
822 C(0xe31b, SLGF, RXY_a, Z, r1, m2_32u, r1, 0, sub, subu64)
a1f12d85
AJ
823/* SUBTRACT LOCICAL HIGH */
824 C(0xb9cb, SLHHHR, RRF_a, HW, r2_sr32, r3_sr32, new, r1_32h, sub, subu32)
825 C(0xb9db, SLHHLR, RRF_a, HW, r2_sr32, r3, new, r1_32h, sub, subu32)
ad044d09
RH
826/* SUBTRACT LOGICAL IMMEDIATE */
827 C(0xc205, SLFI, RIL_a, EI, r1, i2_32u, new, r1_32, sub, subu32)
828 C(0xc204, SLGFI, RIL_a, EI, r1, i2_32u, r1, 0, sub, subu64)
4e4bb438
RH
829/* SUBTRACT LOGICAL WITH BORROW */
830 C(0xb999, SLBR, RRE, Z, r1, r2, new, r1_32, subb, subb32)
831 C(0xb989, SLBGR, RRE, Z, r1, r2, r1, 0, subb, subb64)
832 C(0xe399, SLB, RXY_a, Z, r1, m2_32u, new, r1_32, subb, subb32)
833 C(0xe389, SLBG, RXY_a, Z, r1, m2_64, r1, 0, subb, subb64)
00d2dc19 834
b9836c1a
RH
835/* SUPERVISOR CALL */
836 C(0x0a00, SVC, I, Z, 0, 0, 0, 0, svc, 0)
837
0c0974d7
AJ
838/* TEST ADDRESSING MODE */
839 C(0x010b, TAM, E, Z, 0, 0, 0, 0, tam, 0)
840
6699adfc
AJ
841/* TEST AND SET */
842 C(0x9300, TS, S, Z, 0, a2, 0, 0, ts, 0)
843
31aa97d1
RH
844/* TEST DATA CLASS */
845 C(0xed10, TCEB, RXE, Z, e1, a2, 0, 0, tceb, 0)
846 C(0xed11, TCDB, RXE, Z, f1_o, a2, 0, 0, tcdb, 0)
847 C(0xed12, TCXB, RXE, Z, x1_o, a2, 0, 0, tcxb, 0)
848
00d2dc19
RH
849/* TEST UNDER MASK */
850 C(0x9100, TM, SI, Z, m1_8u, i2_8u, 0, 0, 0, tm32)
851 C(0xeb51, TMY, SIY, LD, m1_8u, i2_8u, 0, 0, 0, tm32)
852 D(0xa702, TMHH, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 48)
853 D(0xa703, TMHL, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 32)
854 D(0xa700, TMLH, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 16)
855 D(0xa701, TMLL, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 0)
d9a39927 856
0a949039
RH
857/* TRANSLATE */
858 C(0xdc00, TR, SS_a, Z, la1, a2, 0, 0, tr, 0)
54f00775
AJ
859/* TRANSLATE AND TEST */
860 C(0xdd00, TRT, SS_a, Z, la1, a2, 0, 0, trt, 0)
3f4de675
AJ
861/* TRANSLATE EXTENDED */
862 C(0xb2a5, TRE, RRE, Z, 0, r2, r1_P, 0, tre, 0)
0a949039
RH
863
864/* UNPACK */
865 /* Really format SS_b, but we pack both lengths into one argument
866 for the helper call, so we might as well leave one 8-bit field. */
867 C(0xf300, UNPK, SS_a, Z, la1, a2, 0, 0, unpk, 0)
868
d9a39927 869#ifndef CONFIG_USER_ONLY
3d596f49 870/* COMPARE AND SWAP AND PURGE */
31a18b45 871 D(0xb250, CSP, RRE, Z, r1_32u, ra2, r1_P, 0, csp, 0, MO_TEUL)
b26de951 872 D(0xb98a, CSPG, RRE, DAT_ENH, r1_o, ra2, r1_P, 0, csp, 0, MO_TEQ)
972e35b9 873/* DIAGNOSE (KVM hypercall) */
8df7eef3 874 C(0x8300, DIAG, RSI, Z, 0, 0, 0, 0, diag, 0)
8026417c
RH
875/* INSERT STORAGE KEY EXTENDED */
876 C(0xb229, ISKE, RRE, Z, 0, r2_o, new, r1_8, iske, 0)
cfef53e3
RH
877/* INVALIDATE PAGE TABLE ENTRY */
878 C(0xb221, IPTE, RRF_a, Z, r1_o, r2_o, 0, 0, ipte, 0)
504488b8
RH
879/* LOAD CONTROL */
880 C(0xb700, LCTL, RS_a, Z, 0, a2, 0, 0, lctl, 0)
3e398cf9 881 C(0xeb2f, LCTLG, RSY_a, Z, 0, a2, 0, 0, lctlg, 0)
190b2422
MB
882/* LOAD PROGRAM PARAMETER */
883 C(0xb280, LPP, S, LPP, 0, m2_64, 0, 0, lpp, 0)
8b5ff571
RH
884/* LOAD PSW */
885 C(0x8200, LPSW, S, Z, 0, a2, 0, 0, lpsw, 0)
7ab938d7
RH
886/* LOAD PSW EXTENDED */
887 C(0xb2b2, LPSWE, S, Z, 0, a2, 0, 0, lpswe, 0)
d8fe4a9c
RH
888/* LOAD REAL ADDRESS */
889 C(0xb100, LRA, RX_a, Z, 0, a2, r1, 0, lra, 0)
890 C(0xe313, LRAY, RXY_a, LD, 0, a2, r1, 0, lra, 0)
891 C(0xe303, LRAG, RXY_a, Z, 0, a2, r1, 0, lra, 0)
9c3fd85b
RH
892/* LOAD USING REAL ADDRESS */
893 C(0xb24b, LURA, RRE, Z, 0, r2, new, r1_32, lura, 0)
894 C(0xb905, LURAG, RRE, Z, 0, r2, r1, 0, lurag, 0)
97c3ab61
RH
895/* MOVE TO PRIMARY */
896 C(0xda00, MVCP, SS_d, Z, la1, a2, 0, 0, mvcp, 0)
897/* MOVE TO SECONDARY */
898 C(0xdb00, MVCS, SS_d, Z, la1, a2, 0, 0, mvcs, 0)
0568d8aa
RH
899/* PURGE TLB */
900 C(0xb20d, PTLB, S, Z, 0, 0, 0, 0, ptlb, 0)
5cc69c54
RH
901/* RESET REFERENCE BIT EXTENDED */
902 C(0xb22a, RRBE, RRE, Z, 0, r2_o, 0, 0, rrbe, 0)
dc458df9
RH
903/* SERVICE CALL LOGICAL PROCESSOR (PV hypercall) */
904 C(0xb220, SERVC, RRE, Z, r1_o, r2_o, 0, 0, servc, 0)
14244b21
RH
905/* SET ADDRESS SPACE CONTROL FAST */
906 C(0xb279, SACF, S, Z, 0, a2, 0, 0, sacf, 0)
35289799
RH
907/* SET CLOCK */
908 /* ??? Not implemented - is it necessary? */
909 C(0xb204, SCK, S, Z, 0, 0, 0, 0, 0, 0)
dd3eb7b5
RH
910/* SET CLOCK COMPARATOR */
911 C(0xb206, SCKC, S, Z, 0, m2_64, 0, 0, sckc, 0)
c4f0a863
RH
912/* SET CPU TIMER */
913 C(0xb208, SPT, S, Z, 0, m2_64, 0, 0, spt, 0)
e805a0d3
RH
914/* SET PREFIX */
915 C(0xb210, SPX, S, Z, 0, m2_32u, 0, 0, spx, 0)
28d55556
RH
916/* SET PSW KEY FROM ADDRESS */
917 C(0xb20a, SPKA, S, Z, 0, a2, 0, 0, spka, 0)
2bbde27f
RH
918/* SET STORAGE KEY EXTENDED */
919 C(0xb22b, SSKE, RRF_c, Z, r1_o, r2_o, 0, 0, sske, 0)
7d30bb73
RH
920/* SET SYSTEM MASK */
921 C(0x8000, SSM, S, Z, 0, m2_8u, 0, 0, ssm, 0)
0c240015
RH
922/* SIGNAL PROCESSOR */
923 C(0xae00, SIGP, RS_a, Z, r3_o, a2, 0, 0, sigp, 0)
434c91a5
RH
924/* STORE CLOCK */
925 C(0xb205, STCK, S, Z, la2, 0, new, m1_64, stck, 0)
f7c21140 926 C(0xb27c, STCKF, S, SCF, la2, 0, new, m1_64, stck, 0)
39a5003c
RH
927/* STORE CLOCK EXTENDED */
928 C(0xb278, STCKE, S, Z, 0, a2, 0, 0, stcke, 0)
dd3eb7b5
RH
929/* STORE CLOCK COMPARATOR */
930 C(0xb207, STCKC, S, Z, la2, 0, new, m1_64, stckc, 0)
504488b8
RH
931/* STORE CONTROL */
932 C(0xb600, STCTL, RS_a, Z, 0, a2, 0, 0, stctl, 0)
3e398cf9 933 C(0xeb25, STCTG, RSY_a, Z, 0, a2, 0, 0, stctg, 0)
411fea3d
RH
934/* STORE CPU ADDRESS */
935 C(0xb212, STAP, S, Z, la2, 0, new, m1_16, stap, 0)
71bd6669
RH
936/* STORE CPU ID */
937 C(0xb202, STIDP, S, Z, la2, 0, new, m1_64, stidp, 0)
c4f0a863
RH
938/* STORE CPU TIMER */
939 C(0xb209, STPT, S, Z, la2, 0, new, m1_64, stpt, 0)
fc778b55
RH
940/* STORE FACILITY LIST */
941 C(0xb2b1, STFL, S, Z, 0, 0, 0, 0, stfl, 0)
e805a0d3
RH
942/* STORE PREFIX */
943 C(0xb211, STPX, S, Z, la2, 0, new, m1_32, stpx, 0)
d14b3e09
RH
944/* STORE SYSTEM INFORMATION */
945 C(0xb27d, STSI, S, Z, 0, a2, 0, 0, stsi, 0)
145cdb40
RH
946/* STORE THEN AND SYSTEM MASK */
947 C(0xac00, STNSM, SI, Z, la1, 0, 0, 0, stnosm, 0)
948/* STORE THEN OR SYSTEM MASK */
949 C(0xad00, STOSM, SI, Z, la1, 0, 0, 0, stnosm, 0)
204504e2
RH
950/* STORE USING REAL ADDRESS */
951 C(0xb246, STURA, RRE, Z, r1_o, r2_o, 0, 0, stura, 0)
9c3fd85b 952 C(0xb925, STURG, RRE, Z, r1_o, r2_o, 0, 0, sturg, 0)
f79f1ca4
TH
953/* TEST BLOCK */
954 C(0xb22c, TB, RRE, Z, 0, r2_o, 0, 0, testblock, 0)
112bf079
RH
955/* TEST PROTECTION */
956 C(0xe501, TPROT, SSE, Z, la1, a2, 0, 0, tprot, 0)
2c423fc0 957
ad8a4570
AG
958/* CCW I/O Instructions */
959 C(0xb276, XSCH, S, Z, 0, 0, 0, 0, xsch, 0)
960 C(0xb230, CSCH, S, Z, 0, 0, 0, 0, csch, 0)
961 C(0xb231, HSCH, S, Z, 0, 0, 0, 0, hsch, 0)
962 C(0xb232, MSCH, S, Z, 0, insn, 0, 0, msch, 0)
963 C(0xb23b, RCHP, S, Z, 0, 0, 0, 0, rchp, 0)
964 C(0xb238, RSCH, S, Z, 0, 0, 0, 0, rsch, 0)
965 C(0xb233, SSCH, S, Z, 0, insn, 0, 0, ssch, 0)
966 C(0xb234, STSCH, S, Z, 0, insn, 0, 0, stsch, 0)
967 C(0xb235, TSCH, S, Z, 0, insn, 0, 0, tsch, 0)
2c423fc0
RH
968 /* ??? Not listed in PoO ninth edition, but there's a linux driver that
969 uses it: "A CHSC subchannel is usually present on LPAR only." */
ad8a4570 970 C(0xb25f, CHSC, RRE, Z, 0, insn, 0, 0, chsc, 0)
d9a39927 971#endif /* CONFIG_USER_ONLY */
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