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target-s390: Implement COMPARE AND BRANCH
[qemu.git] / target-s390x / insn-data.def
1 /* ADD */
2 C(0x1a00, AR, RR_a, Z, r1, r2, new, r1_32, add, adds32)
3 C(0xb9f8, ARK, RRF_a, DO, r2, r3, new, r1_32, add, adds32)
4 C(0x5a00, A, RX_a, Z, r1, m2_32s, new, r1_32, add, adds32)
5 C(0xe35a, AY, RXY_a, LD, r1, m2_32s, new, r1_32, add, adds32)
6 C(0xb908, AGR, RRE, Z, r1, r2, r1, 0, add, adds64)
7 C(0xb918, AGFR, RRE, Z, r1, r2_32s, r1, 0, add, adds64)
8 C(0xb9e8, AGRK, RRF_a, DO, r2, r3, r1, 0, add, adds64)
9 C(0xe308, AG, RXY_a, Z, r1, m2_64, r1, 0, add, adds64)
10 C(0xe318, AGF, RXY_a, Z, r1, m2_32s, r1, 0, add, adds64)
11 C(0xb30a, AEBR, RRE, Z, e1, e2, new, e1, aeb, f32)
12 C(0xb31a, ADBR, RRE, Z, f1_o, f2_o, f1, 0, adb, f64)
13 C(0xb34a, AXBR, RRE, Z, 0, x2_o, x1, 0, axb, f128)
14 C(0xed0a, AEB, RXE, Z, e1, m2_32u, new, e1, aeb, f32)
15 C(0xed1a, ADB, RXE, Z, f1_o, m2_64, f1, 0, adb, f64)
16 /* ADD IMMEDIATE */
17 C(0xc209, AFI, RIL_a, EI, r1, i2, new, r1_32, add, adds32)
18 C(0xeb6a, ASI, SIY, GIE, m1_32s, i2, new, m1_32, add, adds32)
19 C(0xecd8, AHIK, RIE_d, DO, r3, i2, new, r1_32, add, adds32)
20 C(0xc208, AGFI, RIL_a, EI, r1, i2, r1, 0, add, adds64)
21 C(0xeb7a, AGSI, SIY, GIE, m1_64, i2, new, m1_64, add, adds64)
22 C(0xecd9, AGHIK, RIE_d, DO, r3, i2, r1, 0, add, adds64)
23 /* ADD HALFWORD */
24 C(0x4a00, AH, RX_a, Z, r1, m2_16s, new, r1_32, add, adds32)
25 C(0xe37a, AHY, RXY_a, LD, r1, m2_16s, new, r1_32, add, adds32)
26 /* ADD HALFWORD IMMEDIATE */
27 C(0xa70a, AHI, RI_a, Z, r1, i2, new, r1_32, add, adds32)
28 C(0xa70b, AGHI, RI_a, Z, r1, i2, r1, 0, add, adds64)
29
30 /* ADD LOGICAL */
31 C(0x1e00, ALR, RR_a, Z, r1, r2, new, r1_32, add, addu32)
32 C(0xb9fa, ALRK, RRF_a, DO, r2, r3, new, r1_32, add, addu32)
33 C(0x5e00, AL, RX_a, Z, r1, m2_32u, new, r1_32, add, addu32)
34 C(0xe35e, ALY, RXY_a, LD, r1, m2_32u, new, r1_32, add, addu32)
35 C(0xb90a, ALGR, RRE, Z, r1, r2, r1, 0, add, addu64)
36 C(0xb91a, ALGFR, RRE, Z, r1, r2_32u, r1, 0, add, addu64)
37 C(0xb9ea, ALGRK, RRF_a, DO, r2, r3, r1, 0, add, addu64)
38 C(0xe30a, ALG, RXY_a, Z, r1, m2_64, r1, 0, add, addu64)
39 C(0xe31a, ALGF, RXY_a, Z, r1, m2_32u, r1, 0, add, addu64)
40 /* ADD LOGICAL IMMEDIATE */
41 C(0xc20b, ALFI, RIL_a, EI, r1, i2_32u, new, r1_32, add, addu32)
42 C(0xc20a, ALGFI, RIL_a, EI, r1, i2_32u, r1, 0, add, addu64)
43 /* ADD LOGICAL WITH SIGNED IMMEDIATE */
44 C(0xeb6e, ALSI, SIY, GIE, m1_32u, i2, new, m1_32, add, addu32)
45 C(0xecda, ALHSIK, RIE_d, DO, r3, i2, new, r1_32, add, addu32)
46 C(0xeb7e, ALGSI, SIY, GIE, m1_64, i2, new, m1_64, add, addu64)
47 C(0xecdb, ALGHSIK, RIE_d, DO, r3, i2, r1, 0, add, addu64)
48 /* ADD LOGICAL WITH CARRY */
49 C(0xb998, ALCR, RRE, Z, r1, r2, new, r1_32, addc, addc32)
50 C(0xb988, ALCGR, RRE, Z, r1, r2, r1, 0, addc, addc64)
51 C(0xe398, ALC, RXY_a, Z, r1, m2_32u, new, r1_32, addc, addc32)
52 C(0xe388, ALCG, RXY_a, Z, r1, m2_64, r1, 0, addc, addc64)
53
54 /* AND */
55 C(0x1400, NR, RR_a, Z, r1, r2, new, r1_32, and, nz32)
56 C(0xb9f4, NRK, RRF_a, DO, r2, r3, new, r1_32, and, nz32)
57 C(0x5400, N, RX_a, Z, r1, m2_32s, new, r1_32, and, nz32)
58 C(0xe354, NY, RXY_a, LD, r1, m2_32s, new, r1_32, and, nz32)
59 C(0xb980, NGR, RRE, Z, r1, r2, r1, 0, and, nz64)
60 C(0xb9e4, NGRK, RRF_a, DO, r2, r3, r1, 0, and, nz64)
61 C(0xe380, NG, RXY_a, Z, r1, m2_64, r1, 0, and, nz64)
62 C(0xd400, NC, SS_a, Z, la1, a2, 0, 0, nc, 0)
63 /* AND IMMEDIATE */
64 D(0xc00a, NIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, andi, 0, 0x2020)
65 D(0xc00b, NILF, RIL_a, EI, r1_o, i2_32u, r1, 0, andi, 0, 0x2000)
66 D(0xa504, NIHH, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1030)
67 D(0xa505, NIHL, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1020)
68 D(0xa506, NILH, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1010)
69 D(0xa507, NILL, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1000)
70 C(0x9400, NI, SI, Z, m1_8u, i2_8u, new, m1_8, and, nz64)
71 C(0xeb54, NIY, SIY, LD, m1_8u, i2_8u, new, m1_8, and, nz64)
72
73 /* BRANCH AND SAVE */
74 C(0x0d00, BASR, RR_a, Z, 0, r2_nz, r1, 0, bas, 0)
75 C(0x4d00, BAS, RX_a, Z, 0, a2, r1, 0, bas, 0)
76 /* BRANCH RELATIVE AND SAVE */
77 C(0xa705, BRAS, RI_b, Z, 0, 0, r1, 0, basi, 0)
78 C(0xc005, BRASL, RIL_b, Z, 0, 0, r1, 0, basi, 0)
79 /* BRANCH ON CONDITION */
80 C(0x0700, BCR, RR_b, Z, 0, r2_nz, 0, 0, bc, 0)
81 C(0x4700, BC, RX_b, Z, 0, a2, 0, 0, bc, 0)
82 /* BRANCH RELATIVE ON CONDITION */
83 C(0xa704, BRC, RI_c, Z, 0, 0, 0, 0, bc, 0)
84 C(0xc004, BRCL, RIL_c, Z, 0, 0, 0, 0, bc, 0)
85 /* BRANCH ON COUNT */
86 C(0x0600, BCTR, RR_a, Z, 0, r2_nz, 0, 0, bct32, 0)
87 C(0xb946, BCTGR, RRE, Z, 0, r2_nz, 0, 0, bct64, 0)
88 C(0x4600, BCT, RX_a, Z, 0, a2, 0, 0, bct32, 0)
89 C(0xe346, BCTG, RXY_a, Z, 0, a2, 0, 0, bct64, 0)
90 /* BRANCH RELATIVE ON COUNT */
91 C(0xa706, BRCT, RI_b, Z, 0, 0, 0, 0, bct32, 0)
92 C(0xa707, BRCTG, RI_b, Z, 0, 0, 0, 0, bct64, 0)
93 /* BRANCH ON INDEX */
94 D(0x8600, BXH, RS_a, Z, 0, a2, 0, 0, bx32, 0, 0)
95 D(0x8700, BXLE, RS_a, Z, 0, a2, 0, 0, bx32, 0, 1)
96 D(0xeb44, BXHG, RSY_a, Z, 0, a2, 0, 0, bx64, 0, 0)
97 D(0xeb45, BXLEG, RSY_a, Z, 0, a2, 0, 0, bx64, 0, 1)
98 /* BRANCH RELATIVE ON INDEX */
99 D(0x8400, BRXH, RSI, Z, 0, 0, 0, 0, bx32, 0, 0)
100 D(0x8500, BRXLE, RSI, Z, 0, 0, 0, 0, bx32, 0, 1)
101 D(0xec44, BRXHG, RIE_e, Z, 0, 0, 0, 0, bx64, 0, 0)
102 D(0xec45, BRXHLE, RIE_e, Z, 0, 0, 0, 0, bx64, 0, 1)
103
104 /* CHECKSUM */
105 C(0xb241, CKSM, RRE, Z, r1_o, ra2, new, r1_32, cksm, 0)
106
107 /* COMPARE */
108 C(0x1900, CR, RR_a, Z, r1_o, r2_o, 0, 0, 0, cmps32)
109 C(0x5900, C, RX_a, Z, r1_o, m2_32s, 0, 0, 0, cmps32)
110 C(0xe359, CY, RXY_a, LD, r1_o, m2_32s, 0, 0, 0, cmps32)
111 C(0xb920, CGR, RRE, Z, r1_o, r2_o, 0, 0, 0, cmps64)
112 C(0xb930, CGFR, RRE, Z, r1_o, r2_32s, 0, 0, 0, cmps64)
113 C(0xe320, CG, RXY_a, Z, r1_o, m2_64, 0, 0, 0, cmps64)
114 C(0xe330, CGF, RXY_a, Z, r1_o, m2_32s, 0, 0, 0, cmps64)
115 C(0xb309, CEBR, RRE, Z, e1, e2, 0, 0, ceb, 0)
116 C(0xb319, CDBR, RRE, Z, f1_o, f2_o, 0, 0, cdb, 0)
117 C(0xb349, CXBR, RRE, Z, x1_o, x2_o, 0, 0, cxb, 0)
118 C(0xed09, CEB, RXE, Z, e1, m2_32u, 0, 0, ceb, 0)
119 C(0xed19, CDB, RXE, Z, f1_o, m2_64, 0, 0, cdb, 0)
120 /* COMPARE IMMEDIATE */
121 C(0xc20d, CFI, RIL_a, EI, r1, i2, 0, 0, 0, cmps32)
122 C(0xc20c, CGFI, RIL_a, EI, r1, i2, 0, 0, 0, cmps64)
123 /* COMPARE HALFWORD */
124 C(0x4900, CH, RX_a, Z, r1_o, m2_16s, 0, 0, 0, cmps32)
125 C(0xe379, CHY, RXY_a, LD, r1_o, m2_16s, 0, 0, 0, cmps32)
126 C(0xe334, CGH, RXY_a, GIE, r1_o, m2_16s, 0, 0, 0, cmps64)
127 /* COMPARE HALFWORD IMMEDIATE */
128 C(0xa70e, CHI, RI_a, Z, r1_o, i2, 0, 0, 0, cmps32)
129 C(0xa70f, CGHI, RI_a, Z, r1_o, i2, 0, 0, 0, cmps64)
130 C(0xe554, CHHSI, SIL, GIE, m1_16s, i2, 0, 0, 0, cmps64)
131 C(0xe55c, CHSI, SIL, GIE, m1_32s, i2, 0, 0, 0, cmps64)
132 C(0xe558, CGHSI, SIL, GIE, m1_64, i2, 0, 0, 0, cmps64)
133 /* COMPARE HALFWORD RELATIVE LONG */
134 C(0xc605, CHRL, RIL_a, GIE, r1_o, mri2_32s, 0, 0, 0, cmps32)
135 C(0xc604, CGHRL, RIL_a, GIE, r1_o, mri2_64, 0, 0, 0, cmps64)
136
137 /* COMPARE LOGICAL */
138 C(0x1500, CLR, RR_a, Z, r1, r2, 0, 0, 0, cmpu32)
139 C(0x5500, CL, RX_a, Z, r1, m2_32s, 0, 0, 0, cmpu32)
140 C(0xe355, CLY, RXY_a, LD, r1, m2_32s, 0, 0, 0, cmpu32)
141 C(0xb921, CLGR, RRE, Z, r1, r2, 0, 0, 0, cmpu64)
142 C(0xb931, CLGFR, RRE, Z, r1, r2_32u, 0, 0, 0, cmpu64)
143 C(0xe321, CLG, RXY_a, Z, r1, m2_64, 0, 0, 0, cmpu64)
144 C(0xe331, CLGF, RXY_a, Z, r1, m2_32u, 0, 0, 0, cmpu64)
145 C(0xd500, CLC, SS_a, Z, la1, a2, 0, 0, clc, 0)
146 /* COMPARE LOGICAL IMMEDIATE */
147 C(0xc20f, CLFI, RIL_a, EI, r1, i2, 0, 0, 0, cmpu32)
148 C(0xc20e, CLGFI, RIL_a, EI, r1, i2_32u, 0, 0, 0, cmpu64)
149 C(0x9500, CLI, SI, Z, m1_8u, i2_8u, 0, 0, 0, cmpu64)
150 C(0xeb55, CLIY, SIY, LD, m1_8u, i2_8u, 0, 0, 0, cmpu64)
151 C(0xe555, CLHHSI, SIL, GIE, m1_16u, i2_16u, 0, 0, 0, cmpu64)
152 C(0xe55d, CLFHSI, SIL, GIE, m1_32u, i2_16u, 0, 0, 0, cmpu64)
153 C(0xe559, CLGHSI, SIL, GIE, m1_64, i2_16u, 0, 0, 0, cmpu64)
154 /* COMPARE LOGICAL RELATIVE LONG */
155 C(0xc60f, CLRL, RIL_b, GIE, r1_o, mri2_32u, 0, 0, 0, cmpu32)
156 C(0xc60a, CLGRL, RIL_b, GIE, r1_o, mri2_64, 0, 0, 0, cmpu64)
157 C(0xc60e, CLGFRL, RIL_b, GIE, r1_o, mri2_32u, 0, 0, 0, cmpu64)
158 C(0xc607, CLHRL, RIL_b, GIE, r1_o, mri2_16u, 0, 0, 0, cmpu32)
159 C(0xc606, CLGHRL, RIL_b, GIE, r1_o, mri2_16u, 0, 0, 0, cmpu64)
160 /* COMPARE LOGICAL LONG EXTENDED */
161 C(0xa900, CLCLE, RS_a, Z, 0, a2, 0, 0, clcle, 0)
162 /* COMPARE LOGICAL CHARACTERS UNDER MASK */
163 C(0xbd00, CLM, RS_b, Z, r1_o, a2, 0, 0, clm, 0)
164 C(0xeb21, CLMY, RSY_b, LD, r1_o, a2, 0, 0, clm, 0)
165 C(0xeb20, CLMH, RSY_b, Z, r1_sr32, a2, 0, 0, clm, 0)
166 /* COMPARE LOGICAL STRING */
167 C(0xb25d, CLST, RRE, Z, r1_o, r2_o, 0, 0, clst, 0)
168
169 /* COMPARE AND BRANCH */
170 D(0xecf6, CRB, RRS, GIE, r1_32s, r2_32s, 0, 0, cj, 0, 0)
171 D(0xece4, CGRB, RRS, GIE, r1_o, r2_o, 0, 0, cj, 0, 0)
172 D(0xec76, CRJ, RIE_b, GIE, r1_32s, r2_32s, 0, 0, cj, 0, 0)
173 D(0xec64, CGRJ, RIE_b, GIE, r1_o, r2_o, 0, 0, cj, 0, 0)
174 D(0xecfe, CIB, RIS, GIE, r1_32s, i2, 0, 0, cj, 0, 0)
175 D(0xecfc, CGIB, RIS, GIE, r1_o, i2, 0, 0, cj, 0, 0)
176 D(0xec7e, CIJ, RIE_c, GIE, r1_32s, i2, 0, 0, cj, 0, 0)
177 D(0xec7c, CGIJ, RIE_c, GIE, r1_o, i2, 0, 0, cj, 0, 0)
178 /* COMPARE LOGICAL AND BRANCH */
179 D(0xecf7, CLRB, RRS, GIE, r1_32u, r2_32u, 0, 0, cj, 0, 1)
180 D(0xece5, CLGRB, RRS, GIE, r1_o, r2_o, 0, 0, cj, 0, 1)
181 D(0xec77, CLRJ, RIE_b, GIE, r1_32u, r2_32u, 0, 0, cj, 0, 1)
182 D(0xec65, CLGRJ, RIE_b, GIE, r1_o, r2_o, 0, 0, cj, 0, 1)
183 D(0xecff, CLIB, RIS, GIE, r1_32u, i2_8u, 0, 0, cj, 0, 1)
184 D(0xecfd, CLGIB, RIS, GIE, r1_o, i2_8u, 0, 0, cj, 0, 1)
185 D(0xec7f, CLIJ, RIE_c, GIE, r1_32u, i2_8u, 0, 0, cj, 0, 1)
186 D(0xec7d, CLGIJ, RIE_c, GIE, r1_o, i2_8u, 0, 0, cj, 0, 1)
187
188 /* COMPARE AND SWAP */
189 C(0xba00, CS, RS_a, Z, r1_o, a2, new, r1_32, cs, 0)
190 C(0xeb14, CSY, RSY_a, LD, r1_o, a2, new, r1_32, cs, 0)
191 C(0xeb30, CSG, RSY_a, Z, r1_o, a2, r1, 0, csg, 0)
192 /* COMPARE DOUBLE AND SWAP */
193 C(0xbb00, CDS, RS_a, Z, r1_D32, a2, new, r1_D32, cds, 0)
194 C(0xeb31, CDSY, RSY_a, LD, r1_D32, a2, new, r1_D32, cds, 0)
195 C(0xeb3e, CDSG, RSY_a, Z, 0, a2, 0, 0, cdsg, 0)
196
197 /* CONVERT TO DECIMAL */
198 C(0x4e00, CVD, RX_a, Z, r1_o, a2, 0, 0, cvd, 0)
199 C(0xe326, CVDY, RXY_a, LD, r1_o, a2, 0, 0, cvd, 0)
200 /* CONVERT TO FIXED */
201 C(0xb398, CFEBR, RRF_e, Z, 0, e2, new, r1_32, cfeb, 0)
202 C(0xb399, CFDBR, RRF_e, Z, 0, f2_o, new, r1_32, cfdb, 0)
203 C(0xb39a, CFXBR, RRF_e, Z, 0, x2_o, new, r1_32, cfxb, 0)
204 C(0xb3a8, CGEBR, RRF_e, Z, 0, e2, r1, 0, cgeb, 0)
205 C(0xb3a9, CGDBR, RRF_e, Z, 0, f2_o, r1, 0, cgdb, 0)
206 C(0xb3aa, CGXBR, RRF_e, Z, 0, x2_o, r1, 0, cgxb, 0)
207 /* CONVERT FROM FIXED */
208 C(0xb394, CEFBR, RRF_e, Z, 0, r2_32s, new, e1, cegb, 0)
209 C(0xb395, CDFBR, RRF_e, Z, 0, r2_32s, f1, 0, cdgb, 0)
210 C(0xb396, CXFBR, RRF_e, Z, 0, r2_32s, x1, 0, cxgb, 0)
211 C(0xb3a4, CEGBR, RRF_e, Z, 0, r2_o, new, e1, cegb, 0)
212 C(0xb3a5, CDGBR, RRF_e, Z, 0, r2_o, f1, 0, cdgb, 0)
213 C(0xb3a6, CXGBR, RRF_e, Z, 0, r2_o, x1, 0, cxgb, 0)
214
215 /* DIVIDE */
216 C(0x1d00, DR, RR_a, Z, r1_D32, r2_32s, new_P, r1_P32, divs32, 0)
217 C(0x5d00, D, RX_a, Z, r1_D32, m2_32s, new_P, r1_P32, divs32, 0)
218 C(0xb30d, DEBR, RRE, Z, e1, e2, new, e1, deb, 0)
219 C(0xb31d, DDBR, RRE, Z, f1_o, f2_o, f1, 0, ddb, 0)
220 C(0xb34d, DXBR, RRE, Z, 0, x2_o, x1, 0, dxb, 0)
221 C(0xed0d, DEB, RXE, Z, e1, m2_32u, new, e1, deb, 0)
222 C(0xed1d, DDB, RXE, Z, f1_o, m2_64, f1, 0, ddb, 0)
223 /* DIVIDE LOGICAL */
224 C(0xb997, DLR, RRE, Z, r1_D32, r2_32u, new_P, r1_P32, divu32, 0)
225 C(0xe397, DL, RXY_a, Z, r1_D32, m2_32u, new_P, r1_P32, divu32, 0)
226 C(0xb987, DLGR, RRE, Z, 0, r2_o, r1_P, 0, divu64, 0)
227 C(0xe387, DLG, RXY_a, Z, 0, m2_64, r1_P, 0, divu64, 0)
228 /* DIVIDE SINGLE */
229 C(0xb90d, DSGR, RRE, Z, r1p1, r2, r1_P, 0, divs64, 0)
230 C(0xb91d, DSGFR, RRE, Z, r1p1, r2_32s, r1_P, 0, divs64, 0)
231 C(0xe30d, DSG, RXY_a, Z, r1p1, m2_64, r1_P, 0, divs64, 0)
232 C(0xe31d, DSGF, RXY_a, Z, r1p1, m2_32s, r1_P, 0, divs64, 0)
233
234 /* EXCLUSIVE OR */
235 C(0x1700, XR, RR_a, Z, r1, r2, new, r1_32, xor, nz32)
236 C(0xb9f7, XRK, RRF_a, DO, r2, r3, new, r1_32, xor, nz32)
237 C(0x5700, X, RX_a, Z, r1, m2_32s, new, r1_32, xor, nz32)
238 C(0xe357, XY, RXY_a, LD, r1, m2_32s, new, r1_32, xor, nz32)
239 C(0xb982, XGR, RRE, Z, r1, r2, r1, 0, xor, nz64)
240 C(0xb9e7, XGRK, RRF_a, DO, r2, r3, r1, 0, xor, nz64)
241 C(0xe382, XG, RXY_a, Z, r1, m2_64, r1, 0, xor, nz64)
242 C(0xd700, XC, SS_a, Z, la1, a2, 0, 0, xc, 0)
243 /* EXCLUSIVE OR IMMEDIATE */
244 D(0xc006, XIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, xori, 0, 0x2020)
245 D(0xc007, XILF, RIL_a, EI, r1_o, i2_32u, r1, 0, xori, 0, 0x2000)
246 C(0x9700, XI, SI, Z, m1_8u, i2_8u, new, m1_8, xor, nz64)
247 C(0xeb57, XIY, SIY, LD, m1_8u, i2_8u, new, m1_8, xor, nz64)
248
249 /* EXECUTE */
250 C(0x4400, EX, RX_a, Z, r1_o, a2, 0, 0, ex, 0)
251 /* EXECUTE RELATIVE LONG */
252 C(0xc600, EXRL, RIL_b, EE, r1_o, ri2, 0, 0, ex, 0)
253
254 /* EXTRACT ACCESS */
255 C(0xb24f, EAR, RRE, Z, 0, 0, new, r1_32, ear, 0)
256 /* EXTRACT FPC */
257 C(0xb38c, EFPC, RRE, Z, 0, 0, new, r1_32, efpc, 0)
258
259 /* FIND LEFTMOST ONE */
260 C(0xb983, FLOGR, RRE, EI, 0, r2_o, r1_P, 0, flogr, 0)
261
262 /* INSERT CHARACTER */
263 C(0x4300, IC, RX_a, Z, 0, m2_8u, 0, r1_8, mov2, 0)
264 C(0xe373, ICY, RXY_a, LD, 0, m2_8u, 0, r1_8, mov2, 0)
265 /* INSERT CHARACTERS UNDER MASK */
266 D(0xbf00, ICM, RS_b, Z, 0, a2, r1, 0, icm, 0, 0)
267 D(0xeb81, ICMY, RSY_b, LD, 0, a2, r1, 0, icm, 0, 0)
268 D(0xeb80, ICMH, RSY_b, Z, 0, a2, r1, 0, icm, 0, 32)
269 /* INSERT IMMEDIATE */
270 D(0xc008, IIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, insi, 0, 0x2020)
271 D(0xc009, IILF, RIL_a, EI, r1_o, i2_32u, r1, 0, insi, 0, 0x2000)
272 D(0xa500, IIHH, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1030)
273 D(0xa501, IIHL, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1020)
274 D(0xa502, IILH, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1010)
275 D(0xa503, IILL, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1000)
276 /* INSERT PROGRAM MASK */
277 C(0xb222, IPM, RRE, Z, 0, 0, r1, 0, ipm, 0)
278
279 /* LOAD */
280 C(0x1800, LR, RR_a, Z, 0, r2_o, 0, cond_r1r2_32, mov2, 0)
281 C(0x5800, L, RX_a, Z, 0, a2, new, r1_32, ld32s, 0)
282 C(0xe358, LY, RXY_a, Z, 0, a2, new, r1_32, ld32s, 0)
283 C(0xb904, LGR, RRE, Z, 0, r2_o, 0, r1, mov2, 0)
284 C(0xb914, LGFR, RRE, Z, 0, r2_32s, 0, r1, mov2, 0)
285 C(0xe304, LG, RXY_a, Z, 0, a2, r1, 0, ld64, 0)
286 C(0xe314, LGF, RXY_a, Z, 0, a2, r1, 0, ld32s, 0)
287 C(0x2800, LDR, RR_a, Z, 0, f2_o, 0, f1, mov2, 0)
288 C(0x6800, LD, RX_a, Z, 0, m2_64, 0, f1, mov2, 0)
289 C(0xed65, LDY, RXY_a, LD, 0, m2_64, 0, f1, mov2, 0)
290 C(0x3800, LER, RR_a, Z, 0, e2, 0, cond_e1e2, mov2, 0)
291 C(0x7800, LE, RX_a, Z, 0, m2_32u, 0, e1, mov2, 0)
292 C(0xed64, LEY, RXY_a, LD, 0, m2_32u, 0, e1, mov2, 0)
293 C(0xb365, LXR, RRE, Z, 0, x2_o, 0, x1, movx, 0)
294 /* LOAD IMMEDIATE */
295 C(0xc001, LGFI, RIL_a, EI, 0, i2, 0, r1, mov2, 0)
296 /* LOAD RELATIVE LONG */
297 C(0xc40d, LRL, RIL_b, GIE, 0, ri2, new, r1_32, ld32s, 0)
298 C(0xc408, LGRL, RIL_b, GIE, 0, ri2, r1, 0, ld64, 0)
299 C(0xc40c, LGFRL, RIL_b, GIE, 0, ri2, r1, 0, ld32s, 0)
300 /* LOAD ADDRESS */
301 C(0x4100, LA, RX_a, Z, 0, a2, 0, r1, mov2, 0)
302 C(0xe371, LAY, RXY_a, LD, 0, a2, 0, r1, mov2, 0)
303 /* LOAD ADDRESS RELATIVE LONG */
304 C(0xc000, LARL, RIL_b, Z, 0, ri2, 0, r1, mov2, 0)
305 /* LOAD AND TEST */
306 C(0x1200, LTR, RR_a, Z, 0, r2_o, 0, cond_r1r2_32, mov2, s32)
307 C(0xb902, LTGR, RRE, Z, 0, r2_o, 0, r1, mov2, s64)
308 C(0xb912, LTGFR, RRE, Z, 0, r2_32s, 0, r1, mov2, s64)
309 C(0xe312, LT, RXY_a, EI, 0, a2, new, r1_32, ld32s, s64)
310 C(0xe302, LTG, RXY_a, EI, 0, a2, r1, 0, ld64, s64)
311 C(0xe332, LTGF, RXY_a, GIE, 0, a2, r1, 0, ld32s, s64)
312 C(0xb302, LTEBR, RRE, Z, 0, e2, 0, cond_e1e2, mov2, f32)
313 C(0xb312, LTDBR, RRE, Z, 0, f2_o, 0, f1, mov2, f64)
314 C(0xb342, LTXBR, RRE, Z, 0, x2_o, 0, x1, movx, f128)
315 /* LOAD BYTE */
316 C(0xb926, LBR, RRE, EI, 0, r2_8s, 0, r1_32, mov2, 0)
317 C(0xb906, LGBR, RRE, EI, 0, r2_8s, 0, r1, mov2, 0)
318 C(0xe376, LB, RXY_a, LD, 0, a2, new, r1_32, ld8s, 0)
319 C(0xe377, LGB, RXY_a, LD, 0, a2, r1, 0, ld8s, 0)
320 /* LOAD COMPLEMENT */
321 C(0x1300, LCR, RR_a, Z, 0, r2, new, r1_32, neg, neg32)
322 C(0xb903, LCGR, RRE, Z, 0, r2, r1, 0, neg, neg64)
323 C(0xb913, LCGFR, RRE, Z, 0, r2_32s, r1, 0, neg, neg64)
324 C(0xb303, LCEBR, RRE, Z, 0, e2, new, e1, negf32, f32)
325 C(0xb313, LCDBR, RRE, Z, 0, f2_o, f1, 0, negf64, f64)
326 C(0xb343, LCXBR, RRE, Z, 0, x2_o, x1, 0, negf128, f128)
327 /* LOAD HALFWORD */
328 C(0xb927, LHR, RRE, EI, 0, r2_16s, 0, r1_32, mov2, 0)
329 C(0xb907, LGHR, RRE, EI, 0, r2_16s, 0, r1, mov2, 0)
330 C(0x4800, LH, RX_a, Z, 0, a2, new, r1_32, ld16s, 0)
331 C(0xe378, LHY, RXY_a, LD, 0, a2, new, r1_32, ld16s, 0)
332 C(0xe315, LGH, RXY_a, Z, 0, a2, r1, 0, ld16s, 0)
333 /* LOAD HALFWORD IMMEDIATE */
334 C(0xa708, LHI, RI_a, Z, 0, i2, 0, r1_32, mov2, 0)
335 C(0xa709, LGHI, RI_a, Z, 0, i2, 0, r1, mov2, 0)
336 /* LOAD HALFWORD RELATIVE LONG */
337 C(0xc405, LHRL, RIL_b, GIE, 0, ri2, new, r1_32, ld16s, 0)
338 C(0xc404, LGHRL, RIL_b, GIE, 0, ri2, r1, 0, ld16s, 0)
339 /* LOAD LOGICAL */
340 C(0xb916, LLGFR, RRE, Z, 0, r2_32u, 0, r1, mov2, 0)
341 C(0xe316, LLGF, RXY_a, Z, 0, a2, r1, 0, ld32u, 0)
342 /* LOAD LOGICAL RELATIVE LONG */
343 C(0xc40e, LLGFRL, RIL_b, GIE, 0, ri2, r1, 0, ld32u, 0)
344 /* LOAD LOGICAL CHARACTER */
345 C(0xb994, LLCR, RRE, EI, 0, r2_8u, 0, r1_32, mov2, 0)
346 C(0xb984, LLGCR, RRE, EI, 0, r2_8u, 0, r1, mov2, 0)
347 C(0xe394, LLC, RXY_a, EI, 0, a2, new, r1_32, ld8u, 0)
348 C(0xe390, LLGC, RXY_a, Z, 0, a2, r1, 0, ld8u, 0)
349 /* LOAD LOGICAL HALFWORD */
350 C(0xb995, LLHR, RRE, EI, 0, r2_16u, 0, r1_32, mov2, 0)
351 C(0xb985, LLGHR, RRE, EI, 0, r2_16u, 0, r1, mov2, 0)
352 C(0xe395, LLH, RXY_a, EI, 0, a2, new, r1_32, ld16u, 0)
353 C(0xe391, LLGH, RXY_a, Z, 0, a2, r1, 0, ld16u, 0)
354 /* LOAD LOGICAL HALFWORD RELATIVE LONG */
355 C(0xc402, LLHRL, RIL_b, GIE, 0, ri2, new, r1_32, ld16u, 0)
356 C(0xc406, LLGHRL, RIL_b, GIE, 0, ri2, r1, 0, ld16u, 0)
357 /* LOAD LOGICAL IMMEDATE */
358 D(0xc00e, LLIHF, RIL_a, EI, 0, i2_32u_shl, 0, r1, mov2, 0, 32)
359 D(0xc00f, LLILF, RIL_a, EI, 0, i2_32u_shl, 0, r1, mov2, 0, 0)
360 D(0xa50c, LLIHH, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 48)
361 D(0xa50d, LLIHL, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 32)
362 D(0xa50e, LLILH, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 16)
363 D(0xa50f, LLILL, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 0)
364 /* LOAD LOGICAL THIRTY ONE BITS */
365 C(0xb917, LLGTR, RRE, Z, 0, r2_o, r1, 0, llgt, 0)
366 C(0xe317, LLGT, RXY_a, Z, 0, m2_32u, r1, 0, llgt, 0)
367 /* LOAD NEGATIVE */
368 C(0x1100, LNR, RR_a, Z, 0, r2_32s, new, r1_32, nabs, nabs32)
369 C(0xb901, LNGR, RRE, Z, 0, r2, r1, 0, nabs, nabs64)
370 C(0xb911, LNGFR, RRE, Z, 0, r2_32s, r1, 0, nabs, nabs64)
371 C(0xb301, LNEBR, RRE, Z, 0, e2, new, e1, nabsf32, f32)
372 C(0xb311, LNDBR, RRE, Z, 0, f2_o, f1, 0, nabsf64, f64)
373 C(0xb341, LNXBR, RRE, Z, 0, x2_o, x1, 0, nabsf128, f128)
374 /* LOAD POSITIVE */
375 C(0x1000, LPR, RR_a, Z, 0, r2_32s, new, r1_32, abs, abs32)
376 C(0xb900, LPGR, RRE, Z, 0, r2, r1, 0, abs, abs64)
377 C(0xb910, LPGFR, RRE, Z, 0, r2_32s, r1, 0, abs, abs64)
378 C(0xb300, LPEBR, RRE, Z, 0, e2, new, e1, absf32, f32)
379 C(0xb310, LPDBR, RRE, Z, 0, f2_o, f1, 0, absf64, f64)
380 C(0xb340, LPXBR, RRE, Z, 0, x2_o, x1, 0, absf128, f128)
381 /* LOAD REVERSED */
382 C(0xb91f, LRVR, RRE, Z, 0, r2_32u, new, r1_32, rev32, 0)
383 C(0xb90f, LRVGR, RRE, Z, 0, r2_o, r1, 0, rev64, 0)
384 C(0xe31f, LRVH, RXY_a, Z, 0, m2_16u, new, r1_16, rev16, 0)
385 C(0xe31e, LRV, RXY_a, Z, 0, m2_32u, new, r1_32, rev32, 0)
386 C(0xe30f, LRVG, RXY_a, Z, 0, m2_64, r1, 0, rev64, 0)
387 /* LOAD ZERO */
388 C(0xb374, LZER, RRE, Z, 0, 0, 0, e1, zero, 0)
389 C(0xb375, LZDR, RRE, Z, 0, 0, 0, f1, zero, 0)
390 C(0xb376, LZXR, RRE, Z, 0, 0, 0, x1, zero2, 0)
391
392 /* LOAD FPC */
393 C(0xb29d, LFPC, S, Z, 0, m2_32u, 0, 0, sfpc, 0)
394
395 /* LOAD LENGTHENED */
396 C(0xb304, LDEBR, RRE, Z, 0, e2, f1, 0, ldeb, 0)
397 C(0xb305, LXDBR, RRE, Z, 0, f2_o, x1, 0, lxdb, 0)
398 C(0xb306, LXEBR, RRE, Z, 0, e2, x1, 0, lxeb, 0)
399 C(0xed04, LDEB, RXE, Z, 0, m2_32u, f1, 0, ldeb, 0)
400 C(0xed05, LXDB, RXE, Z, 0, m2_64, x1, 0, lxdb, 0)
401 C(0xed06, LXEB, RXE, Z, 0, m2_32u, x1, 0, lxeb, 0)
402 /* LOAD ROUNDED */
403 C(0xb344, LEDBR, RRE, Z, 0, f2_o, new, e1, ledb, 0)
404 C(0xb345, LDXBR, RRE, Z, 0, x2_o, f1, 0, ldxb, 0)
405 C(0xb346, LEXBR, RRE, Z, 0, x2_o, new, e1, lexb, 0)
406
407 /* LOAD MULTIPLE */
408 C(0x9800, LM, RS_a, Z, 0, a2, 0, 0, lm32, 0)
409 C(0xeb98, LMY, RSY_a, LD, 0, a2, 0, 0, lm32, 0)
410 C(0xeb04, LMG, RSY_a, Z, 0, a2, 0, 0, lm64, 0)
411 /* LOAD MULTIPLE HIGH */
412 C(0xeb96, LMH, RSY_a, Z, 0, a2, 0, 0, lmh, 0)
413 /* LOAD ACCESS MULTIPLE */
414 C(0x9a00, LAM, RS_a, Z, 0, a2, 0, 0, lam, 0)
415 C(0xeb9a, LAMY, RSY_a, LD, 0, a2, 0, 0, lam, 0)
416
417 /* MOVE */
418 C(0xd200, MVC, SS_a, Z, la1, a2, 0, 0, mvc, 0)
419 C(0xe544, MVHHI, SIL, GIE, la1, i2, 0, m1_16, mov2, 0)
420 C(0xe54c, MVHI, SIL, GIE, la1, i2, 0, m1_32, mov2, 0)
421 C(0xe548, MVGHI, SIL, GIE, la1, i2, 0, m1_64, mov2, 0)
422 C(0x9200, MVI, SI, Z, la1, i2, 0, m1_8, mov2, 0)
423 C(0xeb52, MVIY, SIY, LD, la1, i2, 0, m1_8, mov2, 0)
424 /* MOVE LONG */
425 C(0x0e00, MVCL, RR_a, Z, 0, 0, 0, 0, mvcl, 0)
426 /* MOVE LONG EXTENDED */
427 C(0xa800, MVCLE, RS_a, Z, 0, a2, 0, 0, mvcle, 0)
428 /* MOVE PAGE */
429 C(0xb254, MVPG, RRE, Z, r1_o, r2_o, 0, 0, mvpg, 0)
430 /* MOVE STRING */
431 C(0xb255, MVST, RRE, Z, r1_o, r2_o, 0, 0, mvst, 0)
432
433 /* MULTIPLY */
434 C(0x1c00, MR, RR_a, Z, r1p1_32s, r2_32s, new, r1_D32, mul, 0)
435 C(0x5c00, M, RX_a, Z, r1p1_32s, m2_32s, new, r1_D32, mul, 0)
436 C(0xe35c, MFY, RXY_a, GIE, r1p1_32s, m2_32s, new, r1_D32, mul, 0)
437 C(0xb317, MEEBR, RRE, Z, e1, e2, new, e1, meeb, 0)
438 C(0xb31c, MDBR, RRE, Z, f1_o, f2_o, f1, 0, mdb, 0)
439 C(0xb34c, MXBR, RRE, Z, 0, x2_o, x1, 0, mxb, 0)
440 C(0xb30c, MDEBR, RRE, Z, f1_o, e2, f1, 0, mdeb, 0)
441 C(0xb307, MXDBR, RRE, Z, 0, f2_o, x1, 0, mxdb, 0)
442 C(0xed17, MEEB, RXE, Z, e1, m2_32u, new, e1, meeb, 0)
443 C(0xed1c, MDB, RXE, Z, f1_o, m2_64, f1, 0, mdb, 0)
444 C(0xed0c, MDEB, RXE, Z, f1_o, m2_32u, f1, 0, mdeb, 0)
445 C(0xed07, MXDB, RXE, Z, 0, m2_64, x1, 0, mxdb, 0)
446 /* MULTIPLY HALFWORD */
447 C(0x4c00, MH, RX_a, Z, r1_o, m2_16s, new, r1_32, mul, 0)
448 C(0xe37c, MHY, RXY_a, GIE, r1_o, m2_16s, new, r1_32, mul, 0)
449 /* MULTIPLY HALFWORD IMMEDIATE */
450 C(0xa70c, MHI, RI_a, Z, r1_o, i2, new, r1_32, mul, 0)
451 C(0xa70d, MGHI, RI_a, Z, r1_o, i2, r1, 0, mul, 0)
452 /* MULTIPLY LOGICAL */
453 C(0xb996, MLR, RRE, Z, r1p1_32u, r2_32u, new, r1_D32, mul, 0)
454 C(0xe396, ML, RXY_a, Z, r1p1_32u, m2_32u, new, r1_D32, mul, 0)
455 C(0xb986, MLGR, RRE, Z, r1p1, r2_o, r1_P, 0, mul128, 0)
456 C(0xe386, MLG, RXY_a, Z, r1p1, m2_64, r1_P, 0, mul128, 0)
457 /* MULTIPLY SINGLE */
458 C(0xb252, MSR, RRE, Z, r1_o, r2_o, new, r1_32, mul, 0)
459 C(0x7100, MS, RX_a, Z, r1_o, m2_32s, new, r1_32, mul, 0)
460 C(0xe351, MSY, RXY_a, LD, r1_o, m2_32s, new, r1_32, mul, 0)
461 C(0xb90c, MSGR, RRE, Z, r1_o, r2_o, r1, 0, mul, 0)
462 C(0xb91c, MSGFR, RRE, Z, r1_o, r2_32s, r1, 0, mul, 0)
463 C(0xe30c, MSG, RXY_a, Z, r1_o, m2_64, r1, 0, mul, 0)
464 C(0xe31c, MSGF, RXY_a, Z, r1_o, m2_32s, r1, 0, mul, 0)
465 /* MULTIPLY SINGLE IMMEDIATE */
466 C(0xc201, MSFI, RIL_a, GIE, r1_o, i2, new, r1_32, mul, 0)
467 C(0xc200, MSGFI, RIL_a, GIE, r1_o, i2, r1, 0, mul, 0)
468
469 /* MULTIPLY AND ADD */
470 C(0xb30e, MAEBR, RRD, Z, e1, e2, new, e1, maeb, 0)
471 C(0xb31e, MADBR, RRD, Z, f1_o, f2_o, f1, 0, madb, 0)
472 C(0xed0e, MAEB, RXF, Z, e1, m2_32u, new, e1, maeb, 0)
473 C(0xed1e, MADB, RXF, Z, f1_o, m2_64, f1, 0, madb, 0)
474 /* MULTIPLY AND SUBTRACT */
475 C(0xb30f, MSEBR, RRD, Z, e1, e2, new, e1, mseb, 0)
476 C(0xb31f, MSDBR, RRD, Z, f1_o, f2_o, f1, 0, msdb, 0)
477 C(0xed0f, MSEB, RXF, Z, e1, m2_32u, new, e1, mseb, 0)
478 C(0xed1f, MSDB, RXF, Z, f1_o, m2_64, f1, 0, msdb, 0)
479
480 /* OR */
481 C(0x1600, OR, RR_a, Z, r1, r2, new, r1_32, or, nz32)
482 C(0xb9f6, ORK, RRF_a, DO, r2, r3, new, r1_32, or, nz32)
483 C(0x5600, O, RX_a, Z, r1, m2_32s, new, r1_32, or, nz32)
484 C(0xe356, OY, RXY_a, LD, r1, m2_32s, new, r1_32, or, nz32)
485 C(0xb981, OGR, RRE, Z, r1, r2, r1, 0, or, nz64)
486 C(0xb9e6, OGRK, RRF_a, DO, r2, r3, r1, 0, or, nz64)
487 C(0xe381, OG, RXY_a, Z, r1, m2_64, r1, 0, or, nz64)
488 C(0xd600, OC, SS_a, Z, la1, a2, 0, 0, oc, 0)
489 /* OR IMMEDIATE */
490 D(0xc00c, OIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, ori, 0, 0x2020)
491 D(0xc00d, OILF, RIL_a, EI, r1_o, i2_32u, r1, 0, ori, 0, 0x2000)
492 D(0xa508, OIHH, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1030)
493 D(0xa509, OIHL, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1020)
494 D(0xa50a, OILH, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1010)
495 D(0xa50b, OILL, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1000)
496 C(0x9600, OI, SI, Z, m1_8u, i2_8u, new, m1_8, or, nz64)
497 C(0xeb56, OIY, SIY, LD, m1_8u, i2_8u, new, m1_8, or, nz64)
498
499 /* ROTATE LEFT SINGLE LOGICAL */
500 C(0xeb1d, RLL, RSY_a, Z, r3_o, sh32, new, r1_32, rll32, 0)
501 C(0xeb1c, RLLG, RSY_a, Z, r3_o, sh64, r1, 0, rll64, 0)
502
503 /* SEARCH STRING */
504 C(0xb25e, SRST, RRE, Z, r1_o, r2_o, 0, 0, srst, 0)
505
506 /* SET ACCESS */
507 C(0xb24e, SAR, RRE, Z, 0, r2_o, 0, 0, sar, 0)
508 /* SET FPC */
509 C(0xb384, SFPC, RRE, Z, 0, r1_o, 0, 0, sfpc, 0)
510
511 /* SHIFT LEFT SINGLE */
512 D(0x8b00, SLA, RS_a, Z, r1, sh32, new, r1_32, sla, 0, 31)
513 D(0xebdd, SLAK, RSY_a, DO, r3, sh32, new, r1_32, sla, 0, 31)
514 D(0xeb0b, SLAG, RSY_a, Z, r3, sh64, r1, 0, sla, 0, 63)
515 /* SHIFT LEFT SINGLE LOGICAL */
516 C(0x8900, SLL, RS_a, Z, r1_o, sh32, new, r1_32, sll, 0)
517 C(0xebdf, SLLK, RSY_a, DO, r3_o, sh32, new, r1_32, sll, 0)
518 C(0xeb0d, SLLG, RSY_a, Z, r3_o, sh64, r1, 0, sll, 0)
519 /* SHIFT RIGHT SINGLE */
520 C(0x8a00, SRA, RS_a, Z, r1_32s, sh32, new, r1_32, sra, s32)
521 C(0xebdc, SRAK, RSY_a, DO, r3_32s, sh32, new, r1_32, sra, s32)
522 C(0xeb0a, SRAG, RSY_a, Z, r3_o, sh64, r1, 0, sra, s64)
523 /* SHIFT RIGHT SINGLE LOGICAL */
524 C(0x8800, SRL, RS_a, Z, r1_32u, sh32, new, r1_32, srl, 0)
525 C(0xebde, SRLK, RSY_a, DO, r3_32u, sh32, new, r1_32, srl, 0)
526 C(0xeb0c, SRLG, RSY_a, Z, r3_o, sh64, r1, 0, srl, 0)
527 /* SHIFT LEFT DOUBLE */
528 D(0x8f00, SLDA, RS_a, Z, r1_D32, sh64, new, r1_D32, sla, 0, 31)
529 /* SHIFT LEFT DOUBLE LOGICAL */
530 C(0x8d00, SLDL, RS_a, Z, r1_D32, sh64, new, r1_D32, sll, 0)
531 /* SHIFT RIGHT DOUBLE */
532 C(0x8e00, SRDA, RS_a, Z, r1_D32, sh64, new, r1_D32, sra, s64)
533 /* SHIFT RIGHT DOUBLE LOGICAL */
534 C(0x8c00, SRDL, RS_a, Z, r1_D32, sh64, new, r1_D32, srl, 0)
535
536 /* SQUARE ROOT */
537 C(0xb314, SQEBR, RRE, Z, 0, e2, new, e1, sqeb, 0)
538 C(0xb315, SQDBR, RRE, Z, 0, f2_o, f1, 0, sqdb, 0)
539 C(0xb316, SQXBR, RRE, Z, 0, x2_o, x1, 0, sqxb, 0)
540 C(0xed14, SQEB, RXE, Z, 0, m2_32u, new, e1, sqeb, 0)
541 C(0xed15, SQDB, RXE, Z, 0, m2_64, f1, 0, sqdb, 0)
542
543 /* STORE */
544 C(0x5000, ST, RX_a, Z, r1_o, a2, 0, 0, st32, 0)
545 C(0xe350, STY, RXY_a, LD, r1_o, a2, 0, 0, st32, 0)
546 C(0xe324, STG, RXY_a, Z, r1_o, a2, 0, 0, st64, 0)
547 C(0x6000, STD, RX_a, Z, f1_o, a2, 0, 0, st64, 0)
548 C(0xed67, STDY, RXY_a, LD, f1_o, a2, 0, 0, st64, 0)
549 C(0x7000, STE, RX_a, Z, e1, a2, 0, 0, st32, 0)
550 C(0xed66, STEY, RXY_a, LD, e1, a2, 0, 0, st32, 0)
551 /* STORE RELATIVE LONG */
552 C(0xc40f, STRL, RIL_b, GIE, r1_o, ri2, 0, 0, st32, 0)
553 C(0xc40b, STGRL, RIL_b, GIE, r1_o, ri2, 0, 0, st64, 0)
554 /* STORE CHARACTER */
555 C(0x4200, STC, RX_a, Z, r1_o, a2, 0, 0, st8, 0)
556 C(0xe372, STCY, RXY_a, LD, r1_o, a2, 0, 0, st8, 0)
557 /* STORE CHARACTERS UNDER MASK */
558 D(0xbe00, STCM, RS_b, Z, r1_o, a2, 0, 0, stcm, 0, 0)
559 D(0xeb2d, STCMY, RSY_b, LD, r1_o, a2, 0, 0, stcm, 0, 0)
560 D(0xeb2c, STCMH, RSY_b, LD, r1_o, a2, 0, 0, stcm, 0, 32)
561 /* STORE HALFWORD */
562 C(0x4000, STH, RX_a, Z, r1_o, a2, 0, 0, st16, 0)
563 C(0xe370, STHY, RXY_a, LD, r1_o, a2, 0, 0, st16, 0)
564 /* STORE HALFWORD RELATIVE LONG */
565 C(0xc407, STHRL, RIL_b, GIE, r1_o, ri2, 0, 0, st16, 0)
566 /* STORE REVERSED */
567 C(0xe33f, STRVH, RXY_a, Z, la2, r1_16u, new, m1_16, rev16, 0)
568 C(0xe33e, STRV, RXY_a, Z, la2, r1_32u, new, m1_32, rev32, 0)
569 C(0xe32f, STRVG, RXY_a, Z, la2, r1_o, new, m1_64, rev64, 0)
570
571 /* STORE FPC */
572 C(0xb29c, STFPC, S, Z, 0, a2, new, m2_32, efpc, 0)
573
574 /* STORE MULTIPLE */
575 D(0x9000, STM, RS_a, Z, 0, a2, 0, 0, stm, 0, 4)
576 D(0xeb90, STMY, RSY_a, LD, 0, a2, 0, 0, stm, 0, 4)
577 D(0xeb24, STMG, RSY_a, Z, 0, a2, 0, 0, stm, 0, 8)
578 /* STORE MULTIPLE HIGH */
579 C(0xeb26, STMH, RSY_a, Z, 0, a2, 0, 0, stmh, 0)
580 /* STORE ACCESS MULTIPLE */
581 C(0x9b00, STAM, RS_a, Z, 0, a2, 0, 0, stam, 0)
582 C(0xeb9b, STAMY, RSY_a, LD, 0, a2, 0, 0, stam, 0)
583
584 /* SUBTRACT */
585 C(0x1b00, SR, RR_a, Z, r1, r2, new, r1_32, sub, subs32)
586 C(0xb9f9, SRK, RRF_a, DO, r2, r3, new, r1_32, sub, subs32)
587 C(0x5b00, S, RX_a, Z, r1, m2_32s, new, r1_32, sub, subs32)
588 C(0xe35b, SY, RXY_a, LD, r1, m2_32s, new, r1_32, sub, subs32)
589 C(0xb909, SGR, RRE, Z, r1, r2, r1, 0, sub, subs64)
590 C(0xb919, SGFR, RRE, Z, r1, r2_32s, r1, 0, sub, subs64)
591 C(0xb9e9, SGRK, RRF_a, DO, r2, r3, r1, 0, sub, subs64)
592 C(0xe309, SG, RXY_a, Z, r1, m2_64, r1, 0, sub, subs64)
593 C(0xe319, SGF, RXY_a, Z, r1, m2_32s, r1, 0, sub, subs64)
594 C(0xb30b, SEBR, RRE, Z, e1, e2, new, e1, seb, f32)
595 C(0xb31b, SDBR, RRE, Z, f1_o, f2_o, f1, 0, sdb, f64)
596 C(0xb34b, SXBR, RRE, Z, 0, x2_o, x1, 0, sxb, f128)
597 C(0xed0b, SEB, RXE, Z, e1, m2_32u, new, e1, seb, f32)
598 C(0xed1b, SDB, RXE, Z, f1_o, m2_64, f1, 0, sdb, f64)
599 /* SUBTRACT HALFWORD */
600 C(0x4b00, SH, RX_a, Z, r1, m2_16s, new, r1_32, sub, subs32)
601 C(0xe37b, SHY, RXY_a, LD, r1, m2_16s, new, r1_32, sub, subs32)
602 /* SUBTRACT LOGICAL */
603 C(0x1f00, SLR, RR_a, Z, r1, r2, new, r1_32, sub, subu32)
604 C(0xb9fb, SLRK, RRF_a, DO, r2, r3, new, r1_32, sub, subu32)
605 C(0x5f00, SL, RX_a, Z, r1, m2_32u, new, r1_32, sub, subu32)
606 C(0xe35f, SLY, RXY_a, LD, r1, m2_32u, new, r1_32, sub, subu32)
607 C(0xb90b, SLGR, RRE, Z, r1, r2, r1, 0, sub, subu64)
608 C(0xb91b, SLGFR, RRE, Z, r1, r2_32u, r1, 0, sub, subu64)
609 C(0xb9eb, SLGRK, RRF_a, DO, r2, r3, r1, 0, sub, subu64)
610 C(0xe30b, SLG, RXY_a, Z, r1, m2_64, r1, 0, sub, subu64)
611 C(0xe31b, SLGF, RXY_a, Z, r1, m2_32u, r1, 0, sub, subu64)
612 /* SUBTRACT LOGICAL IMMEDIATE */
613 C(0xc205, SLFI, RIL_a, EI, r1, i2_32u, new, r1_32, sub, subu32)
614 C(0xc204, SLGFI, RIL_a, EI, r1, i2_32u, r1, 0, sub, subu64)
615 /* SUBTRACT LOGICAL WITH BORROW */
616 C(0xb999, SLBR, RRE, Z, r1, r2, new, r1_32, subb, subb32)
617 C(0xb989, SLBGR, RRE, Z, r1, r2, r1, 0, subb, subb64)
618 C(0xe399, SLB, RXY_a, Z, r1, m2_32u, new, r1_32, subb, subb32)
619 C(0xe389, SLBG, RXY_a, Z, r1, m2_64, r1, 0, subb, subb64)
620
621 /* SUPERVISOR CALL */
622 C(0x0a00, SVC, I, Z, 0, 0, 0, 0, svc, 0)
623
624 /* TEST DATA CLASS */
625 C(0xed10, TCEB, RXE, Z, e1, a2, 0, 0, tceb, 0)
626 C(0xed11, TCDB, RXE, Z, f1_o, a2, 0, 0, tcdb, 0)
627 C(0xed12, TCXB, RXE, Z, x1_o, a2, 0, 0, tcxb, 0)
628
629 /* TEST UNDER MASK */
630 C(0x9100, TM, SI, Z, m1_8u, i2_8u, 0, 0, 0, tm32)
631 C(0xeb51, TMY, SIY, LD, m1_8u, i2_8u, 0, 0, 0, tm32)
632 D(0xa702, TMHH, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 48)
633 D(0xa703, TMHL, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 32)
634 D(0xa700, TMLH, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 16)
635 D(0xa701, TMLL, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 0)
636
637 /* TRANSLATE */
638 C(0xdc00, TR, SS_a, Z, la1, a2, 0, 0, tr, 0)
639
640 /* UNPACK */
641 /* Really format SS_b, but we pack both lengths into one argument
642 for the helper call, so we might as well leave one 8-bit field. */
643 C(0xf300, UNPK, SS_a, Z, la1, a2, 0, 0, unpk, 0)
644
645 #ifndef CONFIG_USER_ONLY
646 /* COMPARE AND SWAP AND PURGE */
647 C(0xb250, CSP, RRE, Z, 0, ra2, 0, 0, csp, 0)
648 /* DIAGNOSE (KVM hypercall) */
649 C(0x8300, DIAG, RX_a, Z, 0, 0, 0, 0, diag, 0)
650 /* INSERT STORAGE KEY EXTENDED */
651 C(0xb229, ISKE, RRE, Z, 0, r2_o, new, r1_8, iske, 0)
652 /* INVALIDATE PAGE TABLE ENTRY */
653 C(0xb221, IPTE, RRF_a, Z, r1_o, r2_o, 0, 0, ipte, 0)
654 /* LOAD CONTROL */
655 C(0xb700, LCTL, RS_a, Z, 0, a2, 0, 0, lctl, 0)
656 C(0xeb2f, LCTLG, RSY_a, Z, 0, a2, 0, 0, lctlg, 0)
657 /* LOAD PSW */
658 C(0x8200, LPSW, S, Z, 0, a2, 0, 0, lpsw, 0)
659 /* LOAD PSW EXTENDED */
660 C(0xb2b2, LPSWE, S, Z, 0, a2, 0, 0, lpswe, 0)
661 /* LOAD REAL ADDRESS */
662 C(0xb100, LRA, RX_a, Z, 0, a2, r1, 0, lra, 0)
663 C(0xe313, LRAY, RXY_a, LD, 0, a2, r1, 0, lra, 0)
664 C(0xe303, LRAG, RXY_a, Z, 0, a2, r1, 0, lra, 0)
665 /* MOVE TO PRIMARY */
666 C(0xda00, MVCP, SS_d, Z, la1, a2, 0, 0, mvcp, 0)
667 /* MOVE TO SECONDARY */
668 C(0xdb00, MVCS, SS_d, Z, la1, a2, 0, 0, mvcs, 0)
669 /* PURGE TLB */
670 C(0xb20d, PTLB, S, Z, 0, 0, 0, 0, ptlb, 0)
671 /* RESET REFERENCE BIT EXTENDED */
672 C(0xb22a, RRBE, RRE, Z, 0, r2_o, 0, 0, rrbe, 0)
673 /* SERVICE CALL LOGICAL PROCESSOR (PV hypercall) */
674 C(0xb220, SERVC, RRE, Z, r1_o, r2_o, 0, 0, servc, 0)
675 /* SET ADDRESSING MODE */
676 /* We only do 64-bit, so accept this as a no-op.
677 Let SAM24 and SAM31 signal illegal instruction. */
678 C(0x010e, SAM64, E, Z, 0, 0, 0, 0, 0, 0)
679 /* SET ADDRESS SPACE CONTROL FAST */
680 C(0xb279, SACF, S, Z, 0, a2, 0, 0, sacf, 0)
681 /* SET CLOCK */
682 /* ??? Not implemented - is it necessary? */
683 C(0xb204, SCK, S, Z, 0, 0, 0, 0, 0, 0)
684 /* SET CLOCK COMPARATOR */
685 C(0xb206, SCKC, S, Z, 0, m2_64, 0, 0, sckc, 0)
686 /* SET CPU TIMER */
687 C(0xb208, SPT, S, Z, 0, m2_64, 0, 0, spt, 0)
688 /* SET PREFIX */
689 C(0xb210, SPX, S, Z, 0, m2_32u, 0, 0, spx, 0)
690 /* SET PSW KEY FROM ADDRESS */
691 C(0xb20a, SPKA, S, Z, 0, a2, 0, 0, spka, 0)
692 /* SET STORAGE KEY EXTENDED */
693 C(0xb22b, SSKE, RRF_c, Z, r1_o, r2_o, 0, 0, sske, 0)
694 /* SET SYSTEM MASK */
695 C(0x8000, SSM, S, Z, 0, m2_8u, 0, 0, ssm, 0)
696 /* SIGNAL PROCESSOR */
697 C(0xae00, SIGP, RS_a, Z, r3_o, a2, 0, 0, sigp, 0)
698 /* STORE CLOCK */
699 C(0xb205, STCK, S, Z, la2, 0, new, m1_64, stck, 0)
700 C(0xb27c, STCKF, S, Z, la2, 0, new, m1_64, stck, 0)
701 /* STORE CLOCK EXTENDED */
702 C(0xb278, STCKE, S, Z, 0, a2, 0, 0, stcke, 0)
703 /* STORE CLOCK COMPARATOR */
704 C(0xb207, STCKC, S, Z, la2, 0, new, m1_64, stckc, 0)
705 /* STORE CONTROL */
706 C(0xb600, STCTL, RS_a, Z, 0, a2, 0, 0, stctl, 0)
707 C(0xeb25, STCTG, RSY_a, Z, 0, a2, 0, 0, stctg, 0)
708 /* STORE CPU ADDRESS */
709 C(0xb212, STAP, S, Z, la2, 0, new, m1_16, stap, 0)
710 /* STORE CPU ID */
711 C(0xb202, STIDP, S, Z, la2, 0, new, m1_64, stidp, 0)
712 /* STORE CPU TIMER */
713 C(0xb209, STPT, S, Z, la2, 0, new, m1_64, stpt, 0)
714 /* STORE FACILITY LIST */
715 C(0xb2b1, STFL, S, Z, 0, 0, 0, 0, stfl, 0)
716 /* STORE PREFIX */
717 C(0xb211, STPX, S, Z, la2, 0, new, m1_32, stpx, 0)
718 /* STORE SYSTEM INFORMATION */
719 C(0xb27d, STSI, S, Z, 0, a2, 0, 0, stsi, 0)
720 /* STORE THEN AND SYSTEM MASK */
721 C(0xac00, STNSM, SI, Z, la1, 0, 0, 0, stnosm, 0)
722 /* STORE THEN OR SYSTEM MASK */
723 C(0xad00, STOSM, SI, Z, la1, 0, 0, 0, stnosm, 0)
724 /* STORE USING REAL ADDRESS */
725 C(0xb246, STURA, RRE, Z, r1_o, r2_o, 0, 0, stura, 0)
726 /* TEST PROTECTION */
727 C(0xe501, TPROT, SSE, Z, la1, a2, 0, 0, tprot, 0)
728
729 /* I/O Instructions. For each we simply indicate non-operation. */
730 C(0xb276, XSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
731 C(0xb230, CSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
732 C(0xb231, HSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
733 C(0xb232, MSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
734 C(0xb23b, RCHP, S, Z, 0, 0, 0, 0, subchannel, 0)
735 C(0xb238, RSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
736 C(0xb233, SSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
737 C(0xb234, STSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
738 C(0xb235, TSCH, S, Z, 0, 0, 0, 0, subchannel, 0)
739 /* ??? Not listed in PoO ninth edition, but there's a linux driver that
740 uses it: "A CHSC subchannel is usually present on LPAR only." */
741 C(0xb25f, CHSC, S, Z, 0, 0, 0, 0, subchannel, 0)
742 #endif /* CONFIG_USER_ONLY */