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target-s390: Convert FP STORE
[qemu.git] / target-s390x / insn-data.def
CommitLineData
ad044d09
RH
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/* ADD IMMEDIATE */
12 C(0xc209, AFI, RIL_a, EI, r1, i2, new, r1_32, add, adds32)
13 C(0xeb6a, ASI, SIY, GIE, m1_32s, i2, new, m1_32, add, adds32)
14 C(0xecd8, AHIK, RIE_d, DO, r3, i2, new, r1_32, add, adds32)
15 C(0xc208, AGFI, RIL_a, EI, r1, i2, r1, 0, add, adds64)
16 C(0xeb7a, AGSI, SIY, GIE, m1_64, i2, new, m1_64, add, adds64)
17 C(0xecd9, AGHIK, RIE_d, DO, r3, i2, r1, 0, add, adds64)
d82287de
RH
18/* ADD HALFWORD */
19 C(0x4a00, AH, RX_a, Z, r1, m2_16s, new, r1_32, add, adds32)
20 C(0xe37a, AHY, RXY_a, LD, r1, m2_16s, new, r1_32, add, adds32)
21/* ADD HALFWORD IMMEDIATE */
22 C(0xa70a, AHI, RI_a, Z, r1, i2, new, r1_32, add, adds32)
23 C(0xa70b, AGHI, RI_a, Z, r1, i2, r1, 0, add, adds64)
24
ad044d09
RH
25/* ADD LOGICAL */
26 C(0x1e00, ALR, RR_a, Z, r1, r2, new, r1_32, add, addu32)
27 C(0xb9fa, ALRK, RRF_a, DO, r2, r3, new, r1_32, add, addu32)
28 C(0x5e00, AL, RX_a, Z, r1, m2_32u, new, r1_32, add, addu32)
29 C(0xe35e, ALY, RXY_a, LD, r1, m2_32u, new, r1_32, add, addu32)
30 C(0xb90a, ALGR, RRE, Z, r1, r2, r1, 0, add, addu64)
31 C(0xb91a, ALGFR, RRE, Z, r1, r2_32u, r1, 0, add, addu64)
32 C(0xb9ea, ALGRK, RRF_a, DO, r2, r3, r1, 0, add, addu64)
33 C(0xe30a, ALG, RXY_a, Z, r1, m2_64, r1, 0, add, addu64)
34 C(0xe31a, ALGF, RXY_a, Z, r1, m2_32u, r1, 0, add, addu64)
35/* ADD LOGICAL IMMEDIATE */
36 C(0xc20b, ALFI, RIL_a, EI, r1, i2_32u, new, r1_32, add, addu32)
37 C(0xc20a, ALGFI, RIL_a, EI, r1, i2_32u, r1, 0, add, addu64)
e272b3ac
RH
38/* ADD LOGICAL WITH SIGNED IMMEDIATE */
39 C(0xeb6e, ALSI, SIY, GIE, m1_32u, i2, new, m1_32, add, addu32)
40 C(0xecda, ALHSIK, RIE_d, DO, r3, i2, new, r1_32, add, addu32)
41 C(0xeb7e, ALGSI, SIY, GIE, m1_64, i2, new, m1_64, add, addu64)
42 C(0xecdb, ALGHSIK, RIE_d, DO, r3, i2, r1, 0, add, addu64)
4e4bb438
RH
43/* ADD LOGICAL WITH CARRY */
44 C(0xb998, ALCR, RRE, Z, r1, r2, new, r1_32, addc, addc32)
45 C(0xb988, ALCGR, RRE, Z, r1, r2, r1, 0, addc, addc64)
46 C(0xe398, ALC, RXY_a, Z, r1, m2_32u, new, r1_32, addc, addc32)
47 C(0xe388, ALCG, RXY_a, Z, r1, m2_64, r1, 0, addc, addc64)
ad044d09 48
3bbfbd1f
RH
49/* AND */
50 C(0x1400, NR, RR_a, Z, r1, r2, new, r1_32, and, nz32)
51 C(0xb9f4, NRK, RRF_a, DO, r2, r3, new, r1_32, and, nz32)
52 C(0x5400, N, RX_a, Z, r1, m2_32s, new, r1_32, and, nz32)
53 C(0xe354, NY, RXY_a, LD, r1, m2_32s, new, r1_32, and, nz32)
54 C(0xb980, NGR, RRE, Z, r1, r2, r1, 0, and, nz64)
55 C(0xb9e4, NGRK, RRF_a, DO, r2, r3, r1, 0, and, nz64)
56 C(0xe380, NG, RXY_a, Z, r1, m2_64, r1, 0, and, nz64)
facfc864
RH
57/* AND IMMEDIATE */
58 D(0xc00a, NIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, andi, 0, 0x2020)
59 D(0xc00b, NILF, RIL_a, EI, r1_o, i2_32u, r1, 0, andi, 0, 0x2000)
60 D(0xa504, NIHH, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1030)
61 D(0xa505, NIHL, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1020)
62 D(0xa506, NILH, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1010)
63 D(0xa507, NILL, RI_a, Z, r1_o, i2_16u, r1, 0, andi, 0, 0x1000)
3bbfbd1f 64
8ac33cdb
RH
65/* BRANCH AND SAVE */
66 C(0x0d00, BASR, RR_a, Z, 0, r2_nz, r1, 0, bas, 0)
67 C(0x4d00, BAS, RX_a, Z, 0, a2, r1, 0, bas, 0)
68/* BRANCH RELATIVE AND SAVE */
69 C(0xa705, BRAS, RI_b, Z, 0, 0, r1, 0, basi, 0)
70 C(0xc005, BRASL, RIL_b, Z, 0, 0, r1, 0, basi, 0)
7233f2ed
RH
71/* BRANCH ON CONDITION */
72 C(0x0700, BCR, RR_b, Z, 0, r2_nz, 0, 0, bc, 0)
73 C(0x4700, BC, RX_b, Z, 0, a2, 0, 0, bc, 0)
74/* BRANCH RELATIVE ON CONDITION */
75 C(0xa704, BRC, RI_c, Z, 0, 0, 0, 0, bc, 0)
76 C(0xc004, BRCL, RIL_c, Z, 0, 0, 0, 0, bc, 0)
c61aad69
RH
77/* BRANCH ON COUNT */
78 C(0x0600, BCTR, RR_a, Z, 0, r2_nz, 0, 0, bct32, 0)
79 C(0xb946, BCTGR, RRE, Z, 0, r2_nz, 0, 0, bct64, 0)
80 C(0x4600, BCT, RX_a, Z, 0, a2, 0, 0, bct32, 0)
81 C(0xe346, BCTG, RXY_a, Z, 0, a2, 0, 0, bct64, 0)
82/* BRANCH RELATIVE ON COUNT */
83 C(0xa706, BRCT, RI_b, Z, 0, 0, 0, 0, bct32, 0)
84 C(0xa707, BRCTG, RI_b, Z, 0, 0, 0, 0, bct64, 0)
8ac33cdb 85
a7e836d5
RH
86/* COMPARE */
87 C(0x1900, CR, RR_a, Z, r1_o, r2_o, 0, 0, 0, cmps32)
88 C(0x5900, C, RX_a, Z, r1_o, m2_32s, 0, 0, 0, cmps32)
89 C(0xe359, CY, RXY_a, LD, r1_o, m2_32s, 0, 0, 0, cmps32)
90 C(0xb920, CGR, RRE, Z, r1_o, r2_o, 0, 0, 0, cmps64)
91 C(0xb930, CGFR, RRE, Z, r1_o, r2_32s, 0, 0, 0, cmps64)
92 C(0xe320, CG, RXY_a, Z, r1_o, m2_64, 0, 0, 0, cmps64)
93 C(0xe330, CGF, RXY_a, Z, r1_o, m2_32s, 0, 0, 0, cmps64)
94/* COMPARE IMMEDIATE */
95 C(0xc20d, CFI, RIL_a, EI, r1, i2, 0, 0, 0, cmps32)
96 C(0xc20c, CGFI, RIL_a, EI, r1, i2, 0, 0, 0, cmps64)
97/* COMPARE HALFWORD */
98 C(0x4900, CH, RX_a, Z, r1_o, m2_16s, 0, 0, 0, cmps32)
99 C(0xe379, CHY, RXY_a, LD, r1_o, m2_16s, 0, 0, 0, cmps32)
100 C(0xe334, CGH, RXY_a, GIE, r1_o, m2_16s, 0, 0, 0, cmps64)
101/* COMPARE HALFWORD IMMEDIATE */
102 C(0xa70e, CHI, RI_a, Z, r1_o, i2, 0, 0, 0, cmps32)
103 C(0xa70f, CGHI, RI_a, Z, r1_o, i2, 0, 0, 0, cmps64)
104 C(0xe554, CHHSI, SIL, GIE, m1_16s, i2, 0, 0, 0, cmps64)
105 C(0xe55c, CHSI, SIL, GIE, m1_32s, i2, 0, 0, 0, cmps64)
106 C(0xe558, CGHSI, SIL, GIE, m1_64, i2, 0, 0, 0, cmps64)
107/* COMPARE HALFWORD RELATIVE LONG */
108 C(0xc605, CHRL, RIL_a, GIE, r1_o, mri2_32s, 0, 0, 0, cmps32)
109 C(0xc604, CGHRL, RIL_a, GIE, r1_o, mri2_64, 0, 0, 0, cmps64)
110
111/* COMPARE LOGICAL */
112 C(0x1500, CLR, RR_a, Z, r1, r2, 0, 0, 0, cmpu32)
113 C(0x5500, CL, RX_a, Z, r1, m2_32s, 0, 0, 0, cmpu32)
114 C(0xe355, CLY, RXY_a, LD, r1, m2_32s, 0, 0, 0, cmpu32)
115 C(0xb921, CLGR, RRE, Z, r1, r2, 0, 0, 0, cmpu64)
116 C(0xb931, CLGFR, RRE, Z, r1, r2_32u, 0, 0, 0, cmpu64)
117 C(0xe321, CLG, RXY_a, Z, r1, m2_64, 0, 0, 0, cmpu64)
118 C(0xe331, CLGF, RXY_a, Z, r1, m2_32u, 0, 0, 0, cmpu64)
119/* COMPARE LOGICAL IMMEDIATE */
120 C(0xc20f, CLFI, RIL_a, EI, r1, i2, 0, 0, 0, cmpu32)
121 C(0xc20e, CLGFI, RIL_a, EI, r1, i2_32u, 0, 0, 0, cmpu64)
122 C(0x9500, CLI, SI, Z, m1_8u, i2_8u, 0, 0, 0, cmpu64)
123 C(0xeb55, CLIY, SIY, LD, m1_8u, i2_8u, 0, 0, 0, cmpu64)
124 C(0xe555, CLHHSI, SIL, GIE, m1_16u, i2_16u, 0, 0, 0, cmpu64)
125 C(0xe55d, CLFHSI, SIL, GIE, m1_32u, i2_16u, 0, 0, 0, cmpu64)
126 C(0xe559, CLGHSI, SIL, GIE, m1_64, i2_16u, 0, 0, 0, cmpu64)
127/* COMPARE LOGICAL RELATIVE LONG */
128 C(0xc60f, CLRL, RIL_b, GIE, r1_o, mri2_32u, 0, 0, 0, cmpu32)
129 C(0xc60a, CLGRL, RIL_b, GIE, r1_o, mri2_64, 0, 0, 0, cmpu64)
130 C(0xc60e, CLGFRL, RIL_b, GIE, r1_o, mri2_32u, 0, 0, 0, cmpu64)
131 C(0xc607, CLHRL, RIL_b, GIE, r1_o, mri2_16u, 0, 0, 0, cmpu32)
132 C(0xc606, CLGHRL, RIL_b, GIE, r1_o, mri2_16u, 0, 0, 0, cmpu64)
133
891452e5
RH
134/* DIVIDE */
135 C(0x1d00, DR, RR_a, Z, r1_D32, r2_32s, new_P, r1_P32, divs32, 0)
136 C(0x5d00, D, RX_a, Z, r1_D32, m2_32s, new_P, r1_P32, divs32, 0)
137/* DIVIDE LOGICAL */
138 C(0xb997, DLR, RRE, Z, r1_D32, r2_32u, new_P, r1_P32, divu32, 0)
139 C(0xe397, DL, RXY_a, Z, r1_D32, m2_32u, new_P, r1_P32, divu32, 0)
140 C(0xb987, DLGR, RRE, Z, 0, r2_o, r1_P, 0, divu64, 0)
141 C(0xe387, DLG, RXY_a, Z, 0, m2_64, r1_P, 0, divu64, 0)
142/* DIVIDE SINGLE */
143 C(0xb90d, DSGR, RRE, Z, r1p1, r2, r1_P, 0, divs64, 0)
144 C(0xb91d, DSGFR, RRE, Z, r1p1, r2_32s, r1_P, 0, divs64, 0)
145 C(0xe30d, DSG, RXY_a, Z, r1p1, m2_64, r1_P, 0, divs64, 0)
146 C(0xe31d, DSGF, RXY_a, Z, r1p1, m2_32s, r1_P, 0, divs64, 0)
147
3bbfbd1f
RH
148/* EXCLUSIVE OR */
149 C(0x1700, XR, RR_a, Z, r1, r2, new, r1_32, xor, nz32)
150 C(0xb9f7, XRK, RRF_a, DO, r2, r3, new, r1_32, xor, nz32)
151 C(0x5700, X, RX_a, Z, r1, m2_32s, new, r1_32, xor, nz32)
152 C(0xe357, XY, RXY_a, LD, r1, m2_32s, new, r1_32, xor, nz32)
153 C(0xb982, XGR, RRE, Z, r1, r2, r1, 0, xor, nz64)
154 C(0xb9e7, XGRK, RRF_a, DO, r2, r3, r1, 0, xor, nz64)
155 C(0xe382, XG, RXY_a, Z, r1, m2_64, r1, 0, xor, nz64)
facfc864
RH
156/* EXCLUSIVE OR IMMEDIATE */
157 D(0xc006, XIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, xori, 0, 0x2020)
158 D(0xc007, XILF, RIL_a, EI, r1_o, i2_32u, r1, 0, xori, 0, 0x2000)
159
6e764e97
RH
160/* EXECUTE */
161 C(0x4400, EX, RX_a, Z, r1_o, a2, 0, 0, ex, 0)
162/* EXECUTE RELATIVE LONG */
163 C(0xc600, EXRL, RIL_b, EE, r1_o, ri2, 0, 0, ex, 0)
164
afdc70be
RH
165/* INSERT CHARACTER */
166 C(0x4300, IC, RX_a, Z, 0, m2_8u, 0, r1_8, mov2, 0)
167 C(0xe373, ICY, RXY_a, LD, 0, m2_8u, 0, r1_8, mov2, 0)
58a9e35b
RH
168/* INSERT CHARACTERS UNDER MASK */
169 D(0xbf00, ICM, RS_b, Z, 0, a2, r1, 0, icm, 0, 0)
170 D(0xeb81, ICMY, RSY_b, LD, 0, a2, r1, 0, icm, 0, 0)
171 D(0xeb80, ICMH, RSY_b, Z, 0, a2, r1, 0, icm, 0, 32)
facfc864
RH
172/* INSERT IMMEDIATE */
173 D(0xc008, IIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, insi, 0, 0x2020)
174 D(0xc009, IILF, RIL_a, EI, r1_o, i2_32u, r1, 0, insi, 0, 0x2000)
175 D(0xa500, IIHH, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1030)
176 D(0xa501, IIHL, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1020)
177 D(0xa502, IILH, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1010)
178 D(0xa503, IILL, RI_a, Z, r1_o, i2_16u, r1, 0, insi, 0, 0x1000)
3bbfbd1f 179
22c37a08
RH
180/* LOAD */
181 C(0x1800, LR, RR_a, Z, 0, r2_o, 0, cond_r1r2_32, mov2, 0)
182 C(0x5800, L, RX_a, Z, 0, a2, new, r1_32, ld32s, 0)
183 C(0xe358, LY, RXY_a, Z, 0, a2, new, r1_32, ld32s, 0)
184 C(0xb904, LGR, RRE, Z, 0, r2_o, 0, r1, mov2, 0)
185 C(0xb914, LGFR, RRE, Z, 0, r2_32s, 0, r1, mov2, 0)
186 C(0xe304, LG, RXY_a, Z, 0, a2, r1, 0, ld64, 0)
187 C(0xe314, LGF, RXY_a, Z, 0, a2, r1, 0, ld32s, 0)
d764a8d1
RH
188 C(0x2800, LDR, RR_a, Z, 0, f2_o, 0, f1, mov2, 0)
189 C(0x6800, LD, RX_a, Z, 0, m2_64, 0, f1, mov2, 0)
190 C(0xed65, LDY, RXY_a, LD, 0, m2_64, 0, f1, mov2, 0)
191 C(0x3800, LER, RR_a, Z, 0, e2, 0, cond_e1e2, mov2, 0)
192 C(0x7800, LE, RX_a, Z, 0, m2_32u, 0, e1, mov2, 0)
193 C(0xed64, LEY, RXY_a, LD, 0, m2_32u, 0, e1, mov2, 0)
194 C(0xb365, LXR, RRE, Z, 0, x2_o, 0, x1, movx, 0)
22c37a08
RH
195/* LOAD IMMEDIATE */
196 C(0xc001, LGFI, RIL_a, EI, 0, i2, 0, r1, mov2, 0)
197/* LOAD RELATIVE LONG */
198 C(0xc40d, LRL, RIL_b, GIE, 0, ri2, new, r1_32, ld32s, 0)
199 C(0xc408, LGRL, RIL_b, GIE, 0, ri2, r1, 0, ld64, 0)
200 C(0xc40c, LGFRL, RIL_b, GIE, 0, ri2, r1, 0, ld32s, 0)
aedec19d
RH
201/* LOAD ADDRESS */
202 C(0x4100, LA, RX_a, Z, 0, a2, 0, r1, mov2, 0)
203 C(0xe371, LAY, RXY_a, LD, 0, a2, 0, r1, mov2, 0)
204/* LOAD ADDRESS RELATIVE LONG */
205 C(0xc000, LARL, RIL_b, Z, 0, ri2, 0, r1, mov2, 0)
11bf2d73
RH
206/* LOAD AND TEST */
207 C(0x1200, LTR, RR_a, Z, 0, r2_o, 0, cond_r1r2_32, mov2, s32)
208 C(0xb902, LTGR, RRE, Z, 0, r2_o, 0, r1, mov2, s64)
209 C(0xb912, LTGFR, RRE, Z, 0, r2_32s, 0, r1, mov2, s64)
210 C(0xe312, LT, RXY_a, EI, 0, a2, new, r1_32, ld32s, s64)
211 C(0xe302, LTG, RXY_a, EI, 0, a2, r1, 0, ld64, s64)
212 C(0xe332, LTGF, RXY_a, GIE, 0, a2, r1, 0, ld32s, s64)
c698d876
RH
213/* LOAD BYTE */
214 C(0xb926, LBR, RRE, EI, 0, r2_8s, 0, r1_32, mov2, 0)
215 C(0xb906, LGBR, RRE, EI, 0, r2_8s, 0, r1, mov2, 0)
216 C(0xe376, LB, RXY_a, LD, 0, a2, new, r1_32, ld8s, 0)
217 C(0xe377, LGB, RXY_a, LD, 0, a2, r1, 0, ld8s, 0)
b9bca3e5
RH
218/* LOAD COMPLEMENT */
219 C(0x1300, LCR, RR_a, Z, 0, r2, new, r1_32, neg, neg32)
220 C(0xb903, LCGR, RRE, Z, 0, r2, r1, 0, neg, neg64)
221 C(0xb913, LCGFR, RRE, Z, 0, r2_32s, r1, 0, neg, neg64)
c698d876
RH
222/* LOAD HALFWORD */
223 C(0xb927, LHR, RRE, EI, 0, r2_16s, 0, r1_32, mov2, 0)
224 C(0xb907, LGHR, RRE, EI, 0, r2_16s, 0, r1, mov2, 0)
225 C(0x4800, LH, RX_a, Z, 0, a2, new, r1_32, ld16s, 0)
226 C(0xe378, LHY, RXY_a, LD, 0, a2, new, r1_32, ld16s, 0)
227 C(0xe315, LGH, RXY_a, Z, 0, a2, r1, 0, ld16s, 0)
228/* LOAD HALFWORD IMMEDIATE */
229 C(0xa708, LHI, RI_a, Z, 0, i2, 0, r1_32, mov2, 0)
230 C(0xa709, LGHI, RI_a, Z, 0, i2, 0, r1, mov2, 0)
231/* LOAD HALFWORD RELATIVE LONG */
232 C(0xc405, LHRL, RIL_b, GIE, 0, ri2, new, r1_32, ld16s, 0)
233 C(0xc404, LGHRL, RIL_b, GIE, 0, ri2, r1, 0, ld16s, 0)
22c37a08
RH
234/* LOAD LOGICAL */
235 C(0xb916, LLGFR, RRE, Z, 0, r2_32u, 0, r1, mov2, 0)
236 C(0xe316, LLGF, RXY_a, Z, 0, a2, r1, 0, ld32u, 0)
237/* LOAD LOGICAL RELATIVE LONG */
238 C(0xc40e, LLGFRL, RIL_b, GIE, 0, ri2, r1, 0, ld32u, 0)
c698d876
RH
239/* LOAD LOGICAL CHARACTER */
240 C(0xb994, LLCR, RRE, EI, 0, r2_8u, 0, r1_32, mov2, 0)
241 C(0xb984, LLGCR, RRE, EI, 0, r2_8u, 0, r1, mov2, 0)
242 C(0xe394, LLC, RXY_a, EI, 0, a2, new, r1_32, ld8u, 0)
243 C(0xe390, LLGC, RXY_a, Z, 0, a2, r1, 0, ld8u, 0)
244/* LOAD LOGICAL HALFWORD */
245 C(0xb995, LLHR, RRE, EI, 0, r2_16u, 0, r1_32, mov2, 0)
246 C(0xb985, LLGHR, RRE, EI, 0, r2_16u, 0, r1, mov2, 0)
247 C(0xe395, LLH, RXY_a, EI, 0, a2, new, r1_32, ld16u, 0)
248 C(0xe391, LLGH, RXY_a, Z, 0, a2, r1, 0, ld16u, 0)
249/* LOAD LOGICAL HALFWORD RELATIVE LONG */
250 C(0xc402, LLHRL, RIL_b, GIE, 0, ri2, new, r1_32, ld16u, 0)
251 C(0xc406, LLGHRL, RIL_b, GIE, 0, ri2, r1, 0, ld16u, 0)
ade9dea4
RH
252/* LOAD LOGICAL IMMEDATE */
253 D(0xc00e, LLIHF, RIL_a, EI, 0, i2_32u_shl, 0, r1, mov2, 0, 32)
254 D(0xc00f, LLILF, RIL_a, EI, 0, i2_32u_shl, 0, r1, mov2, 0, 0)
255 D(0xa50c, LLIHH, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 48)
256 D(0xa50d, LLIHL, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 32)
257 D(0xa50e, LLILH, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 16)
258 D(0xa50f, LLILL, RI_a, Z, 0, i2_16u_shl, 0, r1, mov2, 0, 0)
b9bca3e5
RH
259/* LOAD NEGATIVE */
260 C(0x1100, LNR, RR_a, Z, 0, r2_32s, new, r1_32, nabs, nabs32)
261 C(0xb901, LNGR, RRE, Z, 0, r2, r1, 0, nabs, nabs64)
262 C(0xb911, LNGFR, RRE, Z, 0, r2_32s, r1, 0, nabs, nabs64)
263/* LOAD POSITIVE */
264 C(0x1000, LPR, RR_a, Z, 0, r2_32s, new, r1_32, abs, abs32)
265 C(0xb900, LPGR, RRE, Z, 0, r2, r1, 0, abs, abs64)
266 C(0xb910, LPGFR, RRE, Z, 0, r2_32s, r1, 0, abs, abs64)
22c37a08 267
e1eaada9
RH
268/* MOVE LONG */
269 C(0x0e00, MVCL, RR_a, Z, 0, 0, 0, 0, mvcl, 0)
270
d87aaf93
RH
271/* MULTIPLY */
272 C(0x1c00, MR, RR_a, Z, r1p1_32s, r2_32s, new, r1_D32, mul, 0)
273 C(0x5c00, M, RX_a, Z, r1p1_32s, m2_32s, new, r1_D32, mul, 0)
274 C(0xe35c, MFY, RXY_a, GIE, r1p1_32s, m2_32s, new, r1_D32, mul, 0)
d1c04a2b
RH
275/* MULTIPLY HALFWORD */
276 C(0x4c00, MH, RX_a, Z, r1_o, m2_16s, new, r1_32, mul, 0)
277 C(0xe37c, MHY, RXY_a, GIE, r1_o, m2_16s, new, r1_32, mul, 0)
278/* MULTIPLY HALFWORD IMMEDIATE */
279 C(0xa70c, MHI, RI_a, Z, r1_o, i2, new, r1_32, mul, 0)
280 C(0xa70d, MGHI, RI_a, Z, r1_o, i2, r1, 0, mul, 0)
d87aaf93
RH
281/* MULTIPLY LOGICAL */
282 C(0xb996, MLR, RRE, Z, r1p1_32u, r2_32u, new, r1_D32, mul, 0)
283 C(0xe396, ML, RXY_a, Z, r1p1_32u, m2_32u, new, r1_D32, mul, 0)
1ac5889f
RH
284 C(0xb986, MLGR, RRE, Z, r1p1, r2_o, r1_P, 0, mul128, 0)
285 C(0xe386, MLG, RXY_a, Z, r1p1, m2_64, r1_P, 0, mul128, 0)
d1c04a2b
RH
286/* MULTIPLY SINGLE */
287 C(0xb252, MSR, RRE, Z, r1_o, r2_o, new, r1_32, mul, 0)
288 C(0x7100, MS, RX_a, Z, r1_o, m2_32s, new, r1_32, mul, 0)
289 C(0xe351, MSY, RXY_a, LD, r1_o, m2_32s, new, r1_32, mul, 0)
290 C(0xb90c, MSGR, RRE, Z, r1_o, r2_o, r1, 0, mul, 0)
291 C(0xb91c, MSGFR, RRE, Z, r1_o, r2_32s, r1, 0, mul, 0)
292 C(0xe30c, MSG, RXY_a, Z, r1_o, m2_64, r1, 0, mul, 0)
293 C(0xe31c, MSGF, RXY_a, Z, r1_o, m2_32s, r1, 0, mul, 0)
294/* MULTIPLY SINGLE IMMEDIATE */
295 C(0xc201, MSFI, RIL_a, GIE, r1_o, i2, new, r1_32, mul, 0)
296 C(0xc200, MSGFI, RIL_a, GIE, r1_o, i2, r1, 0, mul, 0)
297
3bbfbd1f
RH
298/* OR */
299 C(0x1600, OR, RR_a, Z, r1, r2, new, r1_32, or, nz32)
300 C(0xb9f6, ORK, RRF_a, DO, r2, r3, new, r1_32, or, nz32)
301 C(0x5600, O, RX_a, Z, r1, m2_32s, new, r1_32, or, nz32)
302 C(0xe356, OY, RXY_a, LD, r1, m2_32s, new, r1_32, or, nz32)
303 C(0xb981, OGR, RRE, Z, r1, r2, r1, 0, or, nz64)
304 C(0xb9e6, OGRK, RRF_a, DO, r2, r3, r1, 0, or, nz64)
305 C(0xe381, OG, RXY_a, Z, r1, m2_64, r1, 0, or, nz64)
facfc864
RH
306/* OR IMMEDIATE */
307 D(0xc00c, OIHF, RIL_a, EI, r1_o, i2_32u, r1, 0, ori, 0, 0x2020)
308 D(0xc00d, OILF, RIL_a, EI, r1_o, i2_32u, r1, 0, ori, 0, 0x2000)
309 D(0xa508, OIHH, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1030)
310 D(0xa509, OIHL, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1020)
311 D(0xa50a, OILH, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1010)
312 D(0xa50b, OILL, RI_a, Z, r1_o, i2_16u, r1, 0, ori, 0, 0x1000)
3bbfbd1f 313
2b280b97
RH
314/* STORE */
315 C(0x5000, ST, RX_a, Z, r1_o, a2, 0, 0, st32, 0)
316 C(0xe350, STY, RXY_a, LD, r1_o, a2, 0, 0, st32, 0)
317 C(0xe324, STG, RXY_a, Z, r1_o, a2, 0, 0, st64, 0)
00574261
RH
318 C(0x6000, STD, RX_a, Z, f1_o, a2, 0, 0, st64, 0)
319 C(0xed67, STDY, RXY_a, LD, f1_o, a2, 0, 0, st64, 0)
320 C(0x7000, STE, RX_a, Z, e1, a2, 0, 0, st32, 0)
321 C(0xed66, STEY, RXY_a, LD, e1, a2, 0, 0, st32, 0)
2b280b97
RH
322/* STORE RELATIVE LONG */
323 C(0xc40f, STRL, RIL_b, GIE, r1_o, ri2, 0, 0, st32, 0)
324 C(0xc40b, STGRL, RIL_b, GIE, r1_o, ri2, 0, 0, st64, 0)
325/* STORE CHARACTER */
326 C(0x4200, STC, RX_a, Z, r1_o, a2, 0, 0, st8, 0)
327 C(0xe372, STCY, RXY_a, LD, r1_o, a2, 0, 0, st8, 0)
328/* STORE HALFWORD */
329 C(0x4000, STH, RX_a, Z, r1_o, a2, 0, 0, st16, 0)
330 C(0xe370, STHY, RXY_a, LD, r1_o, a2, 0, 0, st16, 0)
331/* STORE HALFWORD RELATIVE LONG */
332 C(0xc407, STHRL, RIL_b, GIE, r1_o, ri2, 0, 0, st16, 0)
333
ad044d09
RH
334/* SUBTRACT */
335 C(0x1b00, SR, RR_a, Z, r1, r2, new, r1_32, sub, subs32)
336 C(0xb9f9, SRK, RRF_a, DO, r2, r3, new, r1_32, sub, subs32)
337 C(0x5b00, S, RX_a, Z, r1, m2_32s, new, r1_32, sub, subs32)
338 C(0xe35b, SY, RXY_a, LD, r1, m2_32s, new, r1_32, sub, subs32)
339 C(0xb909, SGR, RRE, Z, r1, r2, r1, 0, sub, subs64)
340 C(0xb919, SGFR, RRE, Z, r1, r2_32s, r1, 0, sub, subs64)
341 C(0xb9e9, SGRK, RRF_a, DO, r2, r3, r1, 0, sub, subs64)
342 C(0xe309, SG, RXY_a, Z, r1, m2_64, r1, 0, sub, subs64)
343 C(0xe319, SGF, RXY_a, Z, r1, m2_32s, r1, 0, sub, subs64)
3f4cb56a
RH
344/* SUBTRACT HALFWORD */
345 C(0x4b00, SH, RX_a, Z, r1, m2_16s, new, r1_32, sub, subs32)
346 C(0xe37b, SHY, RXY_a, LD, r1, m2_16s, new, r1_32, sub, subs32)
ad044d09
RH
347/* SUBTRACT LOGICAL */
348 C(0x1f00, SLR, RR_a, Z, r1, r2, new, r1_32, sub, subu32)
349 C(0xb9fb, SLRK, RRF_a, DO, r2, r3, new, r1_32, sub, subu32)
350 C(0x5f00, SL, RX_a, Z, r1, m2_32u, new, r1_32, sub, subu32)
351 C(0xe35f, SLY, RXY_a, LD, r1, m2_32u, new, r1_32, sub, subu32)
352 C(0xb90b, SLGR, RRE, Z, r1, r2, r1, 0, sub, subu64)
353 C(0xb91b, SLGFR, RRE, Z, r1, r2_32u, r1, 0, sub, subu64)
354 C(0xb9eb, SLGRK, RRF_a, DO, r2, r3, r1, 0, sub, subu64)
355 C(0xe30b, SLG, RXY_a, Z, r1, m2_64, r1, 0, sub, subu64)
356 C(0xe31b, SLGF, RXY_a, Z, r1, m2_32u, r1, 0, sub, subu64)
357/* SUBTRACT LOGICAL IMMEDIATE */
358 C(0xc205, SLFI, RIL_a, EI, r1, i2_32u, new, r1_32, sub, subu32)
359 C(0xc204, SLGFI, RIL_a, EI, r1, i2_32u, r1, 0, sub, subu64)
4e4bb438
RH
360/* SUBTRACT LOGICAL WITH BORROW */
361 C(0xb999, SLBR, RRE, Z, r1, r2, new, r1_32, subb, subb32)
362 C(0xb989, SLBGR, RRE, Z, r1, r2, r1, 0, subb, subb64)
363 C(0xe399, SLB, RXY_a, Z, r1, m2_32u, new, r1_32, subb, subb32)
364 C(0xe389, SLBG, RXY_a, Z, r1, m2_64, r1, 0, subb, subb64)
00d2dc19 365
b9836c1a
RH
366/* SUPERVISOR CALL */
367 C(0x0a00, SVC, I, Z, 0, 0, 0, 0, svc, 0)
368
00d2dc19
RH
369/* TEST UNDER MASK */
370 C(0x9100, TM, SI, Z, m1_8u, i2_8u, 0, 0, 0, tm32)
371 C(0xeb51, TMY, SIY, LD, m1_8u, i2_8u, 0, 0, 0, tm32)
372 D(0xa702, TMHH, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 48)
373 D(0xa703, TMHL, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 32)
374 D(0xa700, TMLH, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 16)
375 D(0xa701, TMLL, RI_a, Z, r1_o, i2_16u_shl, 0, 0, 0, tm64, 0)
d9a39927
RH
376
377#ifndef CONFIG_USER_ONLY
378/* SET ADDRESSING MODE */
379 /* We only do 64-bit, so accept this as a no-op.
380 Let SAM24 and SAM31 signal illegal instruction. */
381 C(0x010e, SAM64, E, Z, 0, 0, 0, 0, 0, 0)
382#endif /* CONFIG_USER_ONLY */